Mechanical Full Syllabus
Mechanical Full Syllabus
Mechanical Full Syllabus
in
M - SCHEME
www.studentsquestionpaper.in
Director
EMRC- Anna University
Chennai.
HOD/Mech.
Murugappa Polytechnic College
S.M.Nagar, Chennai.
Thiru T.Jothiram
HOD/Mech.
NPAC Polytechnic College
Kothagiri, The Nilgiris.
Dr. S.Ravichandran
Dr. K.Pitchaimani
CEO&Chief Scientist
Knowledge Partner Technologies Pvt. Ltd.
A1, NU Tech Narayana Building
48, Thirumalai Road, T.Nagar
Chennai.
Principal
T.J.S.Polytechnic College
Peruvoyal, Gummidipoondi (Tk)
Thiruvallut (Dt)
Thiru N.S.Santhosh
Thiru M.Sugumaran
General Manager-Training
Delphi TVS Diesel Systems Ltd.
Mannur Plant, Sriperumbudur
Kanchipuram (Dt).
Workshop Superintendent
Ramakrishna Mission Polytechnic College
Mylapore, Chennai.
Thiru G.Gopu
Director
Arasan Aluminium Industries
Sivakasi
Lecturer/Mechanical
Central Polytechnic College
Tharamani, Chennai.
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2.
H.Sc Academic
Courses
All the
Regular and
Sandwich
Diploma
Courses
Diploma
course in
Modern
Office
Practice
Subjects Studied
Maths, Physics &
Chemistry
H.Sc Vocational
Subjects Studied
Related subjects Vocational subjects
Maths / Physics /
Related Vocational
Chemistry
Subjects Theory &
Practical
English &
Accountancy,
English &
Elements of
Economics,
English &
Management
Principles
& Techniques,
English &
Typewriting
Accountancy &
Auditing,
Banking,
Business
Management,
Co-operative
Management,
International Trade,
Marketing &
Salesmanship,
Insurance &
Material
Management,
Office
Secretaryship.
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Candidates who have studied Commerce Subjects are not eligible for
Engineering Diploma Courses.
4. Age Limit:
No Age limit.
Minimum
Period
Full Time
3 Years
Full
Time(Lateral 2 Years
Entry)
Sandwich
3 Years
Part Time
4 Years
Diploma Course
7.
Maximum
Period
6 Years
5 Years
6 Years
7 Years
8.
Examinations:
Board Examinations in all subjects of all the semesters under the scheme of
examinations will be conducted at the end of each semester.
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The Internal assessment marks for all the subjects will be awarded on the
basis of continuous internal assessment earned during the semester
concerned. For each subject 25 marks are allotted for internal assessment
and 75 marks are allotted for Board Examination.
9.
i. Subject Attendance
5 Marks
(Award of marks for subject attendance to each subject theory/practical will as
per the range given below)
80%
84%
88%
92%
96%
83%
87%
91%
95%
100%
1
2
3
4
5
Mark
Marks
Marks
Marks
Marks
ii) Test #
10 Marks
TEST
UNITS
Test I
Unit I & II
Test II
Test
III
05 marks
05 marks
Total 10 marks
WHEN TO
MARKS DURATION
CONDUCT
End of 6th
50
2 Hrs
week
End of 12th
50
2 Hrs
week
End of 15th
week
75
3 Hrs
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Question Paper Pattern for the Periodical Test :( Test - I & Test- II)
With no choice:
PART A type questions:
4 Questions X 2 mark
8 marks
4 Questions X 3 marks
12 marks
6 Questions X 5 marks
30 marks
-----------
Total
iii) Assignment
50 marks
----------10 Marks
For each subject Three Assignments are to be given each for 20 marks and
the average marks scored should be reduced for 10 marks
All Test Papers and assignment notebooks after getting the signature with
date from the students must be kept in the safe custody in the Department for
verification and audit. It should be preserved for 2 Semesters and produced
to the flying squad and the inspection team at the time of
inspection/verification.
B. For Practical Subjects:
The internal assessment mark for a total of 25 marks which are to be
distributed as follows:a)
Attendance
: 5 Marks
(Award of marks as same as Theory subjects)
b)
Procedure/ observation and tabulation/
Other Practical related Work
: 10 Marks
c)
Record writing
: 10 Marks
----TOTAL
: 25 Marks
---- All the Experiments/exercises indicated in the syllabus should be
completed and the same to be given for final board examinations.
The Record for every completed exercise should be submitted in the
subsequent Practical classes and marks should be awarded for 20 for
each exercise as per the above allocation.
At the end of the Semester, the average marks of all the exercises should
be calculated for 20 marks and the marks awarded for attendance is to be
added to arrive at the internal assessment mark for Practical. (20+5=25
marks)
The students have to submit the duly signed bonafide record note book/file
during the Practical Board Examinations.
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10.
All the marks awarded for assignment, Test and attendance should be
entered in the Personal Log Book of the staff, who is handling the subject.
This is applicable to both Theory and Practical subjects.
11.
..
25 Marks
Project Work:
The students of all the Diploma Programmes (except Diploma in Modern
Office Practice) have to do a Project Work as part of the Curriculum and in
partial fulfillment for the award of Diploma by the State Board of Technical
Education and Training, Tamilnadu. In order to encourage students to do
worthwhile and innovative projects, every year prizes are awarded for the best
three projects i.e. institution wise, region wise and state wise. The Project
work must be reviewed twice in the same semester.
a) Internal assessment mark for Project Work & Viva Voce:
Project Review I
Project Review II
Attendance
10 marks
10 marks
05 marks (award of marks same as
theory subjects pattern)
----------Total
25 marks
-----------Proper record to be maintained for the two Project Reviews, and It should be
preserved for 2 Semesters and produced to the flying squad and the
inspection team at the time of inspection/verification.
b) Allocation of Mark for Project Work & Viva Voce in Board
Examination:
Viva Voce
43 marks
Demonstration/Presentation
20 marks
-------------Total
63 marks
------------c) Written Test Mark (from 3 topics for 30 minutes duration):
i) Entrepreneurship
2 questions X 2 marks
= 4 marks
2 questions X 2 marks
= 4 marks
2 questions X 2 marks
= 4 marks
----12 marks
-----
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--
63 Marks
--
12 Marks
TOTAL --
75 Marks
Scheme of Examinations:
The Scheme of examinations for subjects is given in Annexure - II.
13.
14.
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16.
Library:
For Library a separate personal log book should be maintained by librarian or
librarian incharge for each branch and record the attendance. The library
attendance should be taken for attendance percentage. It should be
preserved for 2 Semesters and produced to the flying squad and the
inspection team at the time of inspection/verification.
17.
Seminar:
For seminar the total seminar 15 hours(15 weeks x 1hour) should be
distributed equally to total theory subject per semester(i.e 15 hours divided by
3/4 subject). A topic from subject or current scenario is given to students. The
students will allow to collect materials from the library during the library hours
and prepare the seminar paper. During the seminar hour students have to
present the paper and submit seminar material to the respective staff
member, who is handling the subject. It should be preserved for 2 Semesters
and produced to the flying squad and the inspection team at the time of
inspection/verification.
-xXx-
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L-SCHEME
Name of the Subject
Strength of Materials
Fluid Mechanics & Fluid Power
Renewable Energy Sources
Subject
code
32031
32043
32073
32033
32045
22036
Machine Drawing
Mechanical Testing &
Quality Control Practical
Fluid Power Practical
20001
32034
32045
M-SCHEME
Name of Subject
Strength of Materials
Fluid Mechanics and Fluid Power
Renewable Energy Sources and
Energy Conservation
Machine Drawing
Strength of Materials and Fluid
Mechanics Practical
Strength of Materials and Fluid
Mechanics Practical
Computer Applications and CAD
Practical
FOURTH SEMESTER
Subject
code
22041
22042
22043
22044
22045
22046
22047
L-SCHEME
Name of the Subject
Manufacturing Technology I
Thermal Engineering I
Electrical Drives & Control
Computer Aided Machine
Drawing Practical
Manufacturing Technology I
Practical
Metrology & Measurement and
Machine Tool Testing Practical
Electrical Drives & Control
Practical
Subject
code
32032
32041
32044
32034
32036
32065
32047
M-SCHEME
Name of Subject
Manufacturing Processes
Heat Power Engineering
Electrical Drives & Control
Computer Applications and CAD
Practical
Lathe and Drilling Practical
Machine Tool Testing and
Maintenance Practical
Electrical Drives & Control
Practical
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FIFTH SEMESTER
Subject
code
22051
L-SCHEME
Name of the Subject
Thermal Engineering II
22052
Manufacturing Technology II
Elective - I Theory
22071
Total Quality Management
22072
Modern Machining Processes
22073
Power Plant Engineering
Subject
code
32052
32042
32071
32042
32052
22054
22055
32051
32056
22056
Manufacturing Technology II
Practical
Communication and Life Skills
Practical **
32046
20002
30002
M-SCHEME
Name of Subject
Thermal and Automobile
Engineering
Special Machines
Total Quality Management
Special Machines
Thermal and Automobile
Engineering
Design of Machine Elements
Thermal and Automobile
Engineering Practical
Special Machines Practical
Life and Employability Skill
Practical
SIXTH SEMESTER
Subject
code
22061
L-SCHEME
Name of the Subject
Robotics
Refrigeration and Airconditioning
Proto-Typing in Product Design
Computer Integrated
Manufacturing Practical
Process Automation Practical
- II Practical
Automobile Engineering Practical
Robotics Practical
Refrigeration and
Air-conditioning Practical
Rapid Proto-Typing Practical
Project Work
Subject
code
32061
32062
32052
32082
32083
32064
32055
32056
32085
32086
32067
M-SCHEME
Name of Subject
Industrial Engineering and
Management
Computer Aided Design and
Manufacturing
Thermal and Automobile
Engineering
Robotics
Refrigeration and
Air-conditioning
No Equivalent
Computer Aided Design and
Manufacturing Practical
Process Automation Practical
Thermal and Automobile
Engineering Practical
Robotics Practical
Refrigeration and Airconditioning Practical
No Equivalent
Project Work
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ANNEXURE - I
M SCHEME
Implemented from 2015 - 2016
CURRICULUM OUTLINE
1020: DIPLOMA IN MECHANICAL ENGINEERING (FULL TIME)
THIRD SEMESTER
HOURS PER WEEK
Tutorial /
Practical
Drawing
Subject
Code
Subject
32031
Strength of Materials
32032
Manufacturing Processes
32033
Machine Drawing
32034
32035
32036
18
2
1
35
32037
Theory
2
1
13
Total
FOURTH SEMESTER
Subject
Code
Subject
Theory
Total
32041
32042
Special Machines
32043
32044
32045
32046
12
2
1
35
32047
2
1
23
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FIFTH SEMESTER
Subject
Code
32051
32052
32053
32071
32072
32073
32055
32056
30002
Subject
Library
Seminar
TOTAL
** Common to all Diploma Courses
SIXTH SEMESTER
Subject
Code
32061
32062
32081
32082
32083
32064
32065
32084
32085
32086
32067
Subject
Theory
Total
2
1
23
Theory
12
2
1
35
Total
2
1
18
3
2
1
35
17
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32031
32032
32033
32034
32035
32036
32037
Strength of Materials
Manufacturing Processes
Machine Drawing
Computer Applications and CAD
Practical
Foundry and Welding Practical
Lathe and Drilling Practical
Metrology and Metallography
Practical
Duration of
Exam Hours
Minimum
for pass
Total
SUBJECT
Board
Examination
Subject
Code
Internal
Assessment
Marks
25
25
25
75
75
75
100
100
100
40
40
40
3
3
3
25
75
100
50
25
25
75
75
100
100
50
50
3
3
25
75
100
50
FOURTH SEMESTER
32041
32042
32043
32044
32045
32046
32047
Duration of
Exam Hours
Minimum
for pass
Total
SUBJECT
Board
Examination
Subject
Code
Internal
Assessment
Marks
25
25
25
25
75
75
75
75
100
100
100
100
40
40
40
40
3
3
3
3
25
75
100
50
25
75
100
50
25
75
100
50
www.studentsquestionpaper.in
FIFTH SEMESTER
32051
Duration of
Exam Hours
Minimum
for pass
Total
SUBJECT
Board
Examination
Subject
Code
Internal
Assessment
Marks
25
75
100
40
25
75
100
40
25
75
100
40
25
75
100
40
25
75
100
50
25
75
100
50
25
75
100
50
Duration of
Exam Hours
Minimum
for pass
Total
SUBJECT
Board
Examination
Subject
Code
Internal
Assessment
Marks
25
75
100
40
25
75
100
40
25
75
100
40
25
75
100
50
25
75
100
50
25
75
100
50
25
75
100
50
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ANNEXURE I
CURRICULUM OUTLINE
M-SCHEME
2020: DIPLOMA IN MECHANICAL ENGINEERING (SANDWICH)
THIRD SEMESTER
Subject
Code
Subject
Theory
32031
32032
32033
32034
32035
32036
32037
Strength of Materials
Manufacturing Processes
Machine Drawing
Computer Applications and CAD
Practical
Foundry and Welding Practical
Lathe and Drilling Practical
Metrology and Metallography
Practical
TOTAL
6
5
6
6
5
6
6
4
4
4
4
4
4
18
35
11
Total
FOURTH SEMESTER
Subject
Code
32042
32046
32091
Subject
Theory
Special Machines
Special Machines Practical
Industrial Training I
TOTAL
4
3
7
Total
4
3
NA
7
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FIFTH SEMESTER
Subject
Code
Subject
Theory
5
5
5
4
19
Subject
32051
32052
Theory
Total
5
5
5
4
4
4
4
4
16
35
Total
5
5
5
5
5
5
5
4
24
11
35
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SEVENTH SEMESTER
Subject
Code
32061
32065
32067
32092
Subject
Theory
Total
6
NA
14
10
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32031
32032
32033
32034
32035
32036
32037
Strength of Materials
Manufacturing Processes
Machine Drawing
Computer Applications and CAD
Practical
Foundry and Welding Practical
Lathe and Drilling Practical
Metrology and Metallography
Practical
Duration of
Exam Hours
Minimum
for pass
Total
SUBJECT
Board
Examination
Subject
Code
Internal
Assessment
Marks
25
25
25
75
75
75
100
100
100
40
40
40
3
3
3
25
75
100
50
25
25
75
75
100
100
50
50
3
3
25
75
100
50
FOURTH SEMESTER
32042
32046
32091
Special Machines
Special Machines Practical
Industrial Training I #
25
25
25
75
75
75
100
100
100
40
50
50
Duration of
Exam Hours
Minimum
for pass
Total
SUBJECT
Board
Examination
Subject
Code
Internal
Assessment
Marks
3
3
3
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FIFTH SEMESTER
Duration of
Exam Hours
Minimum
for pass
Total
SUBJECT
Board
Examination
Subject
Code
Internal
Assessment
Marks
25
25
25
75
75
75
100
100
100
40
40
40
3
3
3
25
75
100
40
25
75
100
50
25
75
100
50
25
75
100
50
25
75
100
50
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SIXTH SEMESTER
32051
32052
Duration of
Exam Hours
Minimum
for pass
Total
SUBJECT
Board
Examination
Subject
Code
Internal
Assessment
Marks
25
75
100
40
25
75
100
40
25
75
100
40
25
75
100
40
25
75
100
40
25
75
100
50
25
75
100
50
25
75
100
50
25
75
100
50
SEVENTH SEMESTER
32061
32065
32067
32092
Duration of
Exam Hours
Minimum
for pass
25
75
100
40
25
75
100
50
25
25
75
75
100
100
50
50
3
3
Total
SUBJECT
Board
Examination
Subject
Code
Internal
Assessment
Marks
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ANNEXURE- I
CURRICULUM OUTLINE
3020: DIPLOMA IN MECHANICAL ENGINEERING (PART TIME)
THIRD SEMESTER
Subject
Code
Subject
32031
32032
30016
32034
Strength of Materials
Manufacturing Processes
Engineering Graphics-I
Computer Applications and CAD
Practical
Foundry and Welding Practical
TOTAL
32035
Theory
4
3
3
4
3
4
3
4
7
4
18
Total
FOURTH SEMESTER
Subject
Code
32041
32042
30026
32037
32036
Subject
Theory
4
3
4
4
3
3
4
4
8
4
18
Total
FIFTH SEMESTER
Subject
Code
Subject
32043
32044
32033
32045
32047
Theory
4
3
4
4
3
3
4
18
Total
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SIXTH SEMESTER
Subject
Code
32051
32052
32053
32046
32056
Subject
Theory
Total
4
4
4
4
11
3
4
3
4
18
SEVENTH SEMESTER
Subject
Code
Subject
32062
Theory
Total
4
4
4
4
11
18
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EIGHTH SEMESTER
Subject
Code
Subject
32061
Theory
Total
3
10
3
18
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32031
32032
20016
32034
32035
Strength of Materials
Manufacturing Processes
Engineering Graphics-I
Computer Applications and
CAD Practical
Foundry and Welding Practical
Duration of
Exam Hours
Minimum
for pass
Total
SUBJECT
Board
Examination
Subject
Code
Internal
Assessment
Marks
25
25
25
75
75
75
100
100
100
40
40
40
3
3
3
25
75
100
50
25
75
100
50
FOURTH SEMESTER
32041
32042
20026
32037
32036
Duration of
Exam Hours
Minimum
for pass
Total
SUBJECT
Board
Examination
Subject
Code
Internal
Assessment
Marks
25
25
25
75
75
75
100
100
100
40
40
40
3
3
3
25
75
100
50
25
75
100
50
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FIFTH SEMESTER
32043
32044
32033
32045
32047
Duration of
Exam Hours
Minimum
for pass
Total
SUBJECT
Board
Examination
Subject
Code
Internal
Assessment
Marks
25
75
100
40
25
25
75
75
100
100
40
40
3
3
25
75
100
50
25
75
100
50
SIXTH SEMESTER
32051
32052
32053
32046
32056
Duration of
Exam Hours
Minimum
for pass
Total
SUBJECT
Board
Examination
Subject
Code
Internal
Assessment
Marks
25
75
100
40
25
75
100
40
25
75
100
40
25
75
100
50
25
75
100
50
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SEVENTH SEMESTER
32062
Duration of
Exam Hours
Minimum
for pass
Total
SUBJECT
Board
Examination
Subject
Code
Internal
Assessment
Marks
25
75
100
40
25
75
100
40
25
75
100
50
25
75
100
50
25
75
100
50
EIGHTH SEMESTER
32061
Duration of
Exam Hours
Minimum
for pass
Total
SUBJECT
Board
Examination
Subject
Code
Internal
Assessment
Marks
25
75
100
40
25
75
100
40
25
75
100
50
25
75
100
50
25
75
100
50
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Max.Marks: 75
5 x 2 marks
10 Marks
5 x 3 marks
15 Marks
5 x 10 marks
50 Marks
75 Marks
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M SCHEME
2015 -2016 onwards
II YEAR
III SEMESTER
32031 STRENGTH OF MATERIALS
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M-SCHEME
(Implements from the Academic year 2015-2016 onwards)
Course Name
Course Code
1020
Subject Code
32031
Semester
III
Subject Title
STRENGTH OF MATERIALS
Instructions
Hours /
Hours /
Week
Semester
Strength of
Materials
75
Examination
Duration
Marks
Internal
Board
Assessment
Examination
25
75
Total
3 Hrs
100
III
IV
V
Topics
STATICS OF PARTICLE AND FRICTION
MECHANICAL PROPERTIES, SIMPLE STRESSES AND
STRAINS
GEOMETRICAL PROPERTIES OF SECTIONS AND THIN
SHELLS
SHEAR FORCE AND BENDING MOMENT DIAGRAMS,
THEORY OF SIMPLE BENDING
Hours
14
14
14
13
13
Total
75
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RATIONALE:
Day by day, engineering and technology experience tremendous growth.
Design plays a major role in developing engineering and technology. Strength of
material is backbone for design. The strength of material deals generally with the
behaviour of objects, when they are subject to actions of forces. Evaluations derived
from these basic fields provide the tools for investigation of mechanical structure.
OBJECTIVES
Calculate the deformation of materials, which are subjected to axial load and
shear.
Draw the shear force and bending moment diagram of the beam for different
loads.
STRENGTH OF MATERIALS
DETAILED SYLLABUS
Contents: Theory
Unit
I
Hours
14
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FRICTION:
Introduction-Definition-Force of friction-Limiting friction-Static
friction-Dynamic friction-Angle of friction-co-efficient of friction-Laws
of static and dynamic friction.
II
DEFORMATION OF METALS
14
and
non-ferrous
materials
-Definition
of
mechanical
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III
14
Properties of sections: Definition center of gravity and centroid position of centroids of plane geometrical figures such as rectangle,
triangle, circle and trapezium-problems to determine the centroid of
angle, channel, T and I sections only - Definition-centroidal axis-Axis
of symmetry. Moment of Inertia Statement of parallel axis theorem
and perpendicular axis theorem. Moment of Inertia of lamina of
rectangle, circle, triangle, I and channel sections-Definition-Polar
moment of Inertia-radius of gyration Problems computing moment
of inertia and radius of gyration for angle, T, Channel and I sections.
Thin Shells: Definition Thin and thick cylindrical shell Failure of
thin cylindrical shell subjected to internal pressure Derivation of
Hoop and longitudinal stress causes in a thin cylindrical shell
subjected to internal pressure simple problems change in
dimensions of a thin cylindrical shell subjected to internal pressure
problems Derivation of tensile stress induced in a thin spherical
shell subjected to internal pressure simple problems change in
diameter and volume of a thin spherical shell due to internal pressure
problems.
IV
13
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13
Text Books:
1) Strength of Materials, R. S. Khurmi, S.Chand & Co., Ram Nagar, New Delhi.
th
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Max.Marks: 75
PART A (1 TO 8)
Definitions, Statements, Formulae, Theorems etc.
PART B (9 TO 16)
Short answer type questions
5 x 2 marks
10 Marks
5 x 3 marks
15 Marks
5 x 10 marks
50 Marks
75 Marks
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M SCHEME
2015 -2016 onwards
II YEAR
III SEMESTER
32032 MANUFACTURING PROCESSES
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M-SCHEME
(Implements from the Academic year 2015-2016 onwards)
Course Name
Course Code
1020
Subject Code
32032
Semester
III
Subject Title
MANUFACTURING PROCESSES
Instructions
Manufacturing
Hours /
Hours /
Week
Semester
Processes
75
Examination
Duration
Marks
Internal
Board
Assessment
Examination
25
75
Total
3 Hrs
100
Topics
Hours
FOUNDRY TECHNOLOGY
14
II
WELDING TECHNOLOGY
14
III
FORMING TECHNOLOGY
14
IV
13
13
TOTAL
75
RATIONALE:
Manufacturing, the major and the most important aspect in industries needs
utmost care and attention. Knowledge about various processes and allied areas will
be of great use to the personnel involved in production. This will provide the students
an opportunity to skill themselves for the industrial scenario.
Curriculum Development Centre, DOTE.
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OBJECTIVES:
Contents: Theory
Unit
I
Hours
14
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working principles.
Casting: Shell mould casting investment casting pressure die
casting hot chamber die casting cold chamber die casting
gravity die casting centrifugal casting continuous casting defects in casting causes and remedies.
II
Welding Technology
14
Forming Technology
Forging: Hot working, cold working advantages of hot working
and cold working hot working operations rolling, forging, smith
forging, drop forging, upset forging, press forging roll forging.
Press Working: Types of presses - mechanical and hydraulic
presses - press tools and accessories - press working operations bending operations - angle bending - channel bending curling
drawing - shearing operations - blanking, piercing, trimming
notching lancing.
Powder Metallurgy: Methods of manufacturing metal powders
atomization, reduction and electrolysis deposition compacting
14
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13
13
Advantages
requirements
mechanical
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comparator
Principles
advantages
and
disadvantages.
Measuring instruments: Construction and principles only - Steel
rule Callipers: outside calliper inside calliper jenny calliper
Combination set Feeler gauge Pitch screw gauge Vernier
calliper Digital calliper Vernier height gauge Micrometer
Inside micrometer Thread micrometer Slip gauges
requirement Indian standard care and use - Sine bar types
uses
limitations
Working
principle
of
clinometers,
Text Books:
1) Elements of workshop Technology Volume I & II Hajra Chowdry &
Bhattacharaya - IIth Edition - Media Promoters & Publishers Pvt. Ltd., Seewai
Building `B, 20-G, Noshir Bharucha Marg, Mumbai 400 007 2007.
2) Introduction of basic manufacturing processes and workshop technology
Rajendersingh New age International (P) Ltd. Publishers, 4835/24, Ansari
Road, Daryaganj, New Delhi - 110002
Reference Books:
1) Manufacturing process Begeman - 5th Edition -McGraw Hill, New Delhi
1981.
2) Workshop Technology- WAJ Chapman - Volume I, II, & III Vima Books Pvt.
Ltd., 4262/3, Ansari Road, Daryaganj, New Delhi 110 002.
3) Workshop Technology Raghuwanshi - Khanna Publishers. Jain & Gupta,
4) Production Technology, Edn. XII, Khanna Publishers, 2-B, North Market, NAI
Sarak, New Delhi 110 006 - 2006
5) Production Technology - P. C. SHARMA - Edn. X - S.Chand & Co. Ltd., Ram
Nagar, New Delhi 110 055 - 2006
6) Production Technology HMT- Edn. 18 - published by Tata McGraw Hill
publishing Co. Ltd., 7 West Patel nagar, New Delhi 110 008. 2001.
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Max.Marks: 75
PART A (1 TO 8)
Definitions, Statements, Formulae, Theorems etc..
PART B (9 TO 16)
Short answer type questions
5 x 2 marks
10 Marks
5 x 3 marks
15 Marks
5 x 10 marks
50 Marks
75 Marks
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M SCHEME
2015 -2016 onwards
II YEAR
III SEMESTER
32033 MACHINE DRAWING
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M-SCHEME
(Implements from the Academic year 2015-2016 onwards)
Course Name
Course Code
1020
Subject Code
32033
Semester
III
Subject Title
MACHINE DRAWING
Instructions
Hours
Hours/
/Week
Semester
Examination
Internal
Board
Assessment
Examination
25
75
Machine Drawing
4
60
Duration
Marks
Total
3 Hrs
100
Topics
Hours
Sectional Views
II
III
Surface Texture
IV
Assemble drawing
33
Total
60
RATIONALE:
Manufacturing of various parts start from the basic drawing of components.
The assembly of components is also carried out from the drawing. So drawing is an
important subject to be studied by the students to carry and complete the production
and assembly process successfully.
Curriculum Development Centre, DOTE.
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OBJECTIVES:
Select different types of fits and tolerance for various types of mating parts.
MACHINE DRAWING
DETAILED SYLLABUS
Contents: Theory
Unit Name of the Topic
I
SECTIONAL VIEWS
Hours
5
SURFACE TEXTURE
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33
2.
Knuckle join
3.
Screw Jack
4.
5.
Plummer Block
6.
Swivel Bearing
7.
Simple Eccentric
8.
Machine Vice
9.
10.
Connecting Rod
Books:
1) Machine Drawing, P.S. Gill, Katsan Publishing House, Ludiana
2) A Text book of Engineering Drawing, R.B. Gupta, Satya Prakasan, Technical
India Publications, New Delhi
3) Mechanical Draughtsmanship, G.L. Tamta, Dhanpat Rai & Sons, Delhi
4) Geometrical and Machine Drawing, N.D. Bhatt, Cheroter book stalls, Anand,
West Railway
5) Engineering Drawing, D.N. Ghose, Dhanpat Rai & Sons, Delhi
BOARD EXAMINATIONS
Question Pattern
Time: 3 Hrs
Max Marks : 75
Note: All the questions will be answered in drawing sheet only
PART A: (7 x 5 = 35)
Theory questions: (1 TO 8)
Two questions from each unit (I to IV) will be asked.
Answer any seven questions from the given eight questions.
PART B: 40 Marks (Either A or B.)
Answer any one question by selecting either A or B.
9. A. Assemble and Draw any two views and bill of materials.
(OR)
B. Assemble and Draw any two views and bill of material
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M SCHEME
2015 -2016 onwards
II YEAR
III SEMESTER
32034 COMPUTER APPLICATIONS AND
CAD PRACTICAL
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M-SCHEME
(Implements from the Academic year 2015-2016 onwards)
Course Name
Course Code
1020
Subject Code
32034
Semester
III
Subject Title
Instructions
Hours /
Hours /
Week
Semester
90
Examination
Duration
Marks
Internal
Board
Assessment
Examination
25
75
Total
3 Hrs
100
OBJECTIVES:
On completion of the exercises, the students must be able to
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Exercises
1. Create a news letter of three pages with two columns text. The first page contains
some formatting bullets and numbers. Set the document background colour and add
confidential as the watermark. Give the document a title which should be displayed
in the header. The header/ footer of the first page should be different from other two
pages. Also, add author name and date/ time in the header. The footer should have
the page number.
2. Create the following table using align, border, merging and other attributes.
DIRECTORATE OF TECHNICAL EDUCATION
e-governance particulars
Register
Number
June
July
August
September
Cumulative
%
16304501
16304502
16304503
16304504
16304505
SPREADSHEET
Introduction Menus Tool bar Create Edit Save Formatting cells Chart
wizard Fill Colors Creating and using formulas Sorting Filtering.
Exercises
3. Create a table of records with columns as Name and Donation Amount. Donation
amount should be formatted with two decimal places. There should be at least
twenty records in the table. Create a conditional format to highlight the highest
donation with blue colour and lowest donation with red colour. The table should have
a heading.
4. Prepare line, bar and pie chart to illustrate the subject wise performance of the
class for any one semester.
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DATABASE
Introduction Menus Tool bar Create Edit Save Data types Insert
Delete Update View Sorting and filtering Queries Report Page setup
Print.
Exercises
5. Prepare a payroll for employee database of an organization with the following
details: Employee Id, Employee name, Date of Birth, Department and Designation,
Date of appointment, Basic pay, Dearness Allowance, House Rent Allowance and
other deductions if any. Perform simple queries for different categories.
6. Design a pay slip for a particular employee from the above database.
PRESENTATION
Introduction Menus Tool bar Create Edit Save Slide transition Insert
image Hyper link Slide numbers View slide show with sound Photo album
Clip art.
Exercises
7. Make a presentation with atleast 10 slides. Use different customized animation
effects on pictures and clip art on any four of the ten slides.
PART B: CAD
INTRODUCTION
Introduction History of CAD Applications Advantages over manual drafting
Hardware requirements Software requirements Windows desktop CAD screen
interface menus Tool bars How to start CAD How to execute command
types of co-ordinate systems Absolute Relative Polar.
DRAWING AIDS AND EDITING COMMANDS
Creating objects (2D) Using draw commands Creating text Drawing with
precision Osnap options drafting settings drawing aids Fill, Snap, Grid, Ortho
lines Function keys - Editing and modify commands Object selection methods
Erasing object Oops - Cancelling and undoing a command Copy Move Array
Curriculum Development Centre, DOTE.
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Board of Examination
Note: All the exercises have to be completed. Two exercises will be given for
examination by selecting one exercise in each PART.
All the exercises should be given in the question paper and students are
allowed to select by a lot.
Record note book should be submitted during examination.
ALLOCATION OF MARKS
PART - A
25 marks
PART - B
45 marks
Viva-voce
05 marks
Total
75 marks
LIST OF EQUIPMENT
1. Personal computer
30 Nos.
2. Printer
1 No.
3. Required Softwares
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M SCHEME
2015 -2016 onwards
II YEAR
III SEMESTER
32035 FOUNDRY AND WELDING PRACTICAL
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M-SCHEME
(Implements from the Academic year 2015-2016 onwards)
Course Name
Course Code
1020
Subject Code
32035
Semester
III
Subject Title
Foundry and
Instructions
Hours/
Hours/
Week
Semester
Examination
Welding
Practical
60
Duration
Marks
Internal
Board
Assessment
Examination
25
75
OBJECTIVES:
Foundry Section
1. Introduction of tools and equipment
2. Types of patterns
3. Types of sand
4. Preparation of sand moulds
5. Core sands, preparation of cores
Total
100
3 Hrs
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Exercises:
Prepare the green sand mould using the following patterns.
Solid pattern
1. Stepped pulley
2. Bearing top
Split pattern
3. Bent Pipe with core print
4. T-pipes with core print
5. Tumbles
Loose Piece Pattern
6. Dovetail
Core preparation
7. Core preparation for Bent pipe / T-pipe
Welding Section
1. Introduction of Safety in welding shop
2. Introduction to hand tools and equipment
3. Arc and gas welding equipment
4. Types of joints
Exercises :
Make the following welding joint / cutting.
Arc welding (Raw Material: 25 mm x 6mm MS flat)
1. Lap joint
2. Butt joint
3. T- joint
Gas Welding (Raw Material: 25mm x 3mm Ms flat)
4. Lap joint
5. Butt joint
Gas cutting: (GI/MS Sheet - 3mm thickness)
6. Profile cutting circular profile
Spot welding: (GI/MS Sheet)
7. Lap joint
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BOARD EXAMINATION
Note: All the exercises in both sections have to be completed. Two exercises
will be given for examination by selecting one exercise in each section.
All the exercises should be given in the question paper and students are
allowed to select by a lot.
Record note book should be submitted during examination.
Detailed allocation
Foundry
: 35 marks
Preparation of sand
- 10
- 10
Welding
: 35 marks
Edge preparation
- 10
Welding / Cutting
- 15
Joint / Finish
- 10
Viva-voce
Total
: 05 marks
: 75 marks
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LIST OF EQUIPMENT
Welding:
1. Arc welding booth
1 Set
(Oxygen and acetylene cylinder)
3. Flux
Sufficient quantity
4. Electrode
Sufficient quantity
5. Welding rod
Sufficient quantity
6. Welding shield
5 Nos.
5 Nos.
8. Leather Glows 18
10 Sets.
9. Chipping hammer
10 Nos.
1 No.
Sufficient quantity
Sufficient quantity
1. Moulding board
15 Nos.
2. Cope box
15 Nos.
3. Drag box
15 Nos.
4. Core box
10 Nos.
5. Shovel
5 Nos.
6. Rammer set
15 Nos.
7. Slick
15 Nos.
8. Strike-off bar
15 Nos.
9. Riddle
5 Nos.
10. Trowel
15 Nos.
11. Lifter
15 Nos.
20 Nos.
15 Nos.
15 Nos.
15 Nos.
15 Nos. each
17. Patterns
Sufficient quantity
Foundry:
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M SCHEME
2015 -2016 onwards
II YEAR
III SEMESTER
32036 LATHE AND DRILLING PRACTICAL
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M-SCHEME
(Implements from the Academic year 2015-2016 onwards)
Course Name
Course Code
1020
Subject Code
32036
Semester
III
Subject Title
Lathe and
Instructions
Hours/
Hours/
Week
Semester
Examination
Drilling
Practical
60
Duration
Marks
Internal
Board
Assessment
Examination
25
75
OBJECTIVES:
Lathe section:
1. Introduction of safety in operating machines.
2. Study of lathe and its parts.
3. Types of tools used in lathe work.
4. Study of work holding devices and tool holding devices.
Curriculum Development Centre, DOTE.
Total
100
3 Hrs
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BOARD EXAMINATION
Note: All the exercises in both sections have to be completed. Two exercises
will be given for examination by selecting one exercise in each section. All the
exercises should be given in the question paper and students are allowed to
select by a lot.
Record note book should be submitted during examination.
Lathe
Procedure / Preparation
10
Dimensions
25
Finishing
10
Drilling
Procedure / Marking
10
Dimensions
10
Finishing
Viva-voce
Total
45 marks (2hours)
25 marks (1 hour)
05 marks
75 marks
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LIST OF EQUIPMENT
Lathe Section
1. Lathe Minimum 4
15 Nos.
2 Nos.
Required Numbers
4. Chuck key
Required Numbers
5. Spanner
Sufficient quantity
6. Cutting Tools
Sufficient quantity
7. Pitch gauge
5 Nos.
8. Thread gauge
5 Nos.
9. Vernier Caliper
5 Nos.
1 No.
Sufficient quantity
Sufficient quantity
Sufficient quantity
Sufficient quantity
Sufficient quantity
15 Nos.
2 Nos.
1 No.
Sufficient quantity
4. Reaming bit
Sufficient quantity
Sufficient quantity
Sufficient quantity
7. Plug gauges
Sufficient quantity
1 No.
9. Surface plate
2 Nos.
Drilling Section
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M SCHEME
2015 -2016 onwards
II YEAR
III SEMESTER
32037 METROLOGY AND METALLOGRAPHY
PRACTICAL
www.studentsquestionpaper.in
M-SCHEME
(Implements from the Academic year 2015-2016 onwards)
Course Name
Course Code
1020
Subject Code
32037
Semester
III
Subject Title
Metrology &
Instructions
Hours/
Hours/
Week
Semester
Metallography
Practical
60
Examination
Duration
Marks
Internal
Board
Assessment
Examination
25
75
Total
100
OBJECTIVES:
METROLOGY SECTION:
3 Hrs
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Exercises:
1. Measure the dimensions of ground MS flat / cylindrical bush using Vernier
Caliper compare with Digital / Dial Vernier Caliper.
2. Measure the diameter of a wire using micrometer and compare the result with
digital micrometer
3. Measure the thickness of ground MS plates using slip gauges
4. Measure the angle of a V-block / Taper Shank of Drill / Dovetail using
universal bevel protractor.
5. Measure the angle of the machined surface using sine bar with slip gauges.
6. Measure the geometrical dimensions of V-Thread using thread Vernier gauge.
7. Measure the geometrical dimensions of spur gear.
METALLOGRAPHY SECTION:
Exercises:
1. Find the grain structure of the given specimen using the Metallurgical
Microscope.
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2. Prepare a specimen to examine the micro structure of the Ferrous and Nonferrous metal.
3. Detect the cracks in the specimen using Visual Inspection and ring test.
4. Detect of cracks in specimen using Die penetration test.
5. Detect the cracks in specimen using Magnetic particle test.
BOARD EXAMINATION
Note: All the exercises in both sections have to be completed. Two exercises
will be given for examination by selecting one exercise in each section. All the
exercises should be given in the question paper and students are allowed to
select by a lot.
Record note book should be submitted during examination.
Detailed allocation
Metrology Section
45
15
Reading / Calculation
20
Result
10
Matallography Section
25
Procedure
10
10
Result
Viva voice
Total
75
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LIST OF EQUIPMENTS
1. Vernier Caliper
2 Nos.
2 Nos.
2 Nos.
4. Micrometer
2 Nos.
5. Digital Micrometer
2 Nos.
6. Slip gauges
2 Nos.
2 Nos.
8. Sine bar
2 Nos.
9. Thread gauge.
2 Nos.
2 Nos.
1No.
2 Nos.
2 Nos.
1 No.
1 No.
1 No.
1 No.
18. Specimen
Sufficient quantity
Sufficient quantity
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M SCHEME
2015 -2016 onwards
II YEAR
IV SEMESTER
32041 HEAT POWER ENGINEERING
www.studentsquestionpaper.in
M-SCHEME
(Implements from the Academic year 2015-2016 onwards)
Course Name
Course Code
1020
Subject Code
32041
Semester
IV
Subject Title
Instructions
Hours/
Hours/
Week
Semester
Examination
Heat Power
Engineering
75
Duration
Marks
Internal
Board
Assessment
Examination
25
75
Total
100
3 Hrs
II
III
IV
V
Topics
BASICS
Hours
OF
THERMODYNAMICS
AND
THERMODYNAMIC
&
PROPERTIES
OF
STEAM
14
14
14
AND
CALORIMETERS
STEAM
13
13
Total
75
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RATIONALE:
The knowledge on the concept of Thermodynamics, Thermodynamic
Processes, Steady flow energy equation and steam properties and performance of
Boilers are vital.
OBJECTIVES
Contents: Theory
Unit Name of the Topic
I
BASICS
OF
Hours
THERMODYNAMICS
AND
THERMODYNAMIC
laws
14
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14
14
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IV
FORMATION
&
PROPERTIES
OF
STEAM
AND
STEAM
13
CALORIMETERS
Steam - Properties formation of steam saturation temperature
enthalpy of water enthalpy of evaporation conditions of steam
wet, dry and superheated steam -dryness fraction enthalpy of wet,
dry and superheated steam - advantages of superheated steam
Property diagrams p-v diagram - T-H diagram T-V diagram T-S
diagram - phase diagram - H-S diagram P-H diagram critical
conditions of water specific volume of water and steam density
of steam external work done during evaporation internal latent
heat internal energy of steam entropy of water and steam
steam tables - Mollier chart Simple problems.
Expansion process of Steam: Constant Volume process
Constant Pressure Process Constant Temperature process
Hyperbolic Process Isentropic process Polytrobic process
Throttling process. Simple problems.
Steam Calorimeter: Determination of dryness fraction of steam
bucket
calorimeter
combined
separating
and
throttling
calorimeters-Simple problems. .
V
13
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Text Book:
1) Thermal Engg, R.K .Rajput , ,8th Edition, Laxmi publications, Pvt Ltd , New
Delhi.
2) Applied Thermodynamics ,P.K. Nag, ,2nd Edition,TATA Mcgraw - Hill
Publishing Company,
3) New Delhi .
4) Thermal
Engineering,
R.S.
Khurmi
and
J.K.
Gupta,
18th
Edition,S.Chand&Co,NewDelhi
Reference Books:
1) Thermal Engineering ,P.LBallaney , 24th Edition ,Khanna Publishers, New
Delhi.
2) Thermal Engineering ,B.K. Sarkar , 3rd Edition , DhanpatRai& Sons New
Delhi .
3) Applied Thermodynamics, Domkundwar and .P.Kothandaraman, 2ndEdition,
Khanna publishers, New Delhi.
Board Examination - Question paper pattern
Time: 3 Hrs.
Max.Marks: 75
5 x 2 marks
10 Marks
5 x 3 marks
15 Marks
5 x 10 marks
50 Marks
75 Marks
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M SCHEME
2015 -2016 onwards
II YEAR
IV SEMESTER
32042 SPECIAL MACHINES
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M-SCHEME
(Implements from the Academic year 2015-2016 onwards)
Course Name
Course Code
1020
Subject Code
32042
Semester
IV
Subject Title
SPECIAL MACHINES
Instructions
Hours
Hours/
/Week
Semester
Special
Machines
75
Examination
Duration
Marks
Internal
Board
Assessment
Examination
25
75
Total
3 Hrs
100
Hours
14
Manufacturing
II
14
III
14
IV
V
13
Processes
CNC Machine and Its Components
13
Total
75
RATIONALE:
In the process of manufacturing we should possess adequate and through
knowledge about the working of conventional as well as non conventional machines.
Curriculum Development Centre, DOTE.
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The topics included aim to inculcate in the students the skills of metal cutting, milling,
grinding, CNC machines and other machining processes which are very much
essential for a technician to at promptly and with precision.
OBJECTIVES:
Study the working of various machine tools: Planer, Shaper and Slotter.
Study the milling procedure for spur, helical and bevel gears.
SPECIAL MACHINES
DETAILED SYLLABUS
Contents: Theory
Unit Name of the Topic
I
Hours
14
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Composite
manufacturing:
Introduction
characteristics
of
RECIPROCATING MACHINES
14
14
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13
PROCESSES
Abrasive Process: Types and classification specifications - rough
grinding pedestal grinders - portable grinders - belt grinders precision grinding - cylindrical grinder - centerless grinders surface
grinder - tool and cutter grinder - planetary grinders - principles of
operations - grinding wheels abrasives - natural and artificial
diamond wheels - types of bonds - grit, grade and structure of wheels wheel shapes and sizes - standard marking systems of grinding
wheels - selection of grinding wheel - mounting of grinding wheels Dressing and Truing of wheels - Balancing of grinding wheels.
Non-Conventional Machining Processes: Construction, working and
applications of Ultrasonic machining - chemical machining - electro
chemical grinding - electrical discharge machining - plasma arc
machining - LASER machining - Advantages Disadvantages.
V
13
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Text Book:
1. Elements of Workshop Technology- Vol. I & II, Hajra Choudry & Battacharya,
Edn. 11, published by
Buildings `B, 20-G, Noshir Bharucha Marg, Mumbai 400 007 2007.
2. Production Technology, Jain & Gupta, Khanna Publishers, 2-B, North Market,
Naisarak, New Delhi 110 006 2006.
Reference Book:
1. Production Technology, HMT, Edn. 18, published by Tata McGraw Hill Publishing
Co. Ltd., 7, West Patel Nagar, New Delhi 110 008.
2. Manufacturing process, Myro N Begman, , Edn. 5, Tata McGraw Hill Publishing
Co. Ltd., 7, West Patel Nagar, New Delhi 110 008.
3. Workshop Tech Vol I,II, III, WAJ. Chapman, published by Viva Books Pvt. Ltd.,
4262/3, Ansari Road, Daryaganj, New Delhi 110 002.
4. Production processes, NITTTR, published by 5, Tata McGraw Hill Publishing Co.
Ltd., West Patel Nagar, New Delhi 110 008.
5. Principles of the manufacturing of Composite materials Suong V Hoa, DES tech
publication. Inc, 439, North Duke street, Lancaster, Pennsylvania 17602 U.S.A.
Board Examination - Question paper pattern
Time: 3 Hrs.
Max.Marks: 75
5 x 2 marks
10 Marks
5 x 3 marks
15 Marks
5 x 10 marks
50 Marks
75 Marks
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M SCHEME
2015 -2016 onwards
II YEAR
IV SEMESTER
32043 FLUID MECHANICS AND FLUID POWER
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M-SCHEME
(Implements from the Academic year 2015-2016 onwards)
Course Name
Course Code
1020
Subject Code
32043
Semester
IV
Subject Title
Instructions
Examination
Hours
Hours/
/Week
Semester
Fluid Mechanics
and Fluid Power
75
Duration
Marks
Internal
Board
Assessment
Examination
25
75
Total
3 Hrs
100
Topics
Hours
PROPERTIES
OF
FLUIDS
AND
PRESSURE
14
MEASUREMENTS
II
14
III
IMPACT
14
OF
JETS,
HYDRAULIC
TURBINES,
PNEUMATIC SYSTEMS
13
HYDRAULIC SYSTEMS
13
Total
75
RATIONALE:
The main objective of this subject Fluid mechanics and Fluid power is to study
the behavior of fluids under the condition of rest and motion. This chapter deals with
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fluid pumps, turbines, hydraulic and pneumatic operation. The overall object is to
impart knowledge of pumps, hydraulic and pneumatic operation of tools and
equipments.
OBJECTIVES:
Contents: Theory
Unit Name of the Topic
I
Hours
measurement -
14
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II
14
Types of fluid flow - path line and stream line - mean velocity of flow discharge of a flowing fluid - equation of continuity of fluid flow energies of fluid - Bernoullis theorem - statement, assumptions and
proof - applications and limitations of Bernoullis theorem - problems
on Bernoullis theorem venturimeter - derivation for discharge orifice
meter - derivation
between
14
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required - coefficient of discharge slip problems - negative slip indicator diagram separation - air vessel (functions and working) Special pumps - Jet pump - Turbine pump - Submersible pump.
IV
PNEUMATIC SYSTEMS
13
Pneumatic Systems elements filter regulator - lubricator unit pressure control valves - pressure relief valves - pressure regulation
valves - directional control valves - 3/2 DCV - 5/2 DCV 5/3 DCV flow
control valves throttle valves shuttle valves quick exhaust valves
ISO symbols of pneumatic components pneumatic circuits direct
control of single acting cylinder operation of double acting cylinder
operation of double acting cylinder with metering-in control - operation
of double acting cylinder with metering-out control use of shuttle valve
in pneumatic circuits use of quick exhaust valve in pneumatic circuits
- automatic operation of double acting cylinder single cycle multiple
cycle merits and demerits of pneumatic system - applications.
V
HYDRAULIC SYSTEMS
Hydraulic system Merits and demerits Service properties of
hydraulic fluids
13
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Text Books :
1) A Text Book of Hydraulics, Fluid Mechanics and Hydraulic Machines, R.S.
Khurmi, - Edn.18, S.Chand & Co., Ram Nagar, New Delhi 110 055, Ram
Nagar, New Delhi
2) A Text Book of Fluid Mechanics and Hydraulic Machines by, R. K Rajput
and S.Chand & Co,Ram Nagar, New Delhi 110 055.
Reference Books:
1) Hydraulic Machines, Jagadishlal, , Metropolitan Book Co. Pvt. Ltd., 1, Faiz
Bazaar, New Delhi 110 006.
2) Hydraulics,Andrew Parr (A Technicians and Engineers Guide)
3) Fundamentals of pneumatic control Engineering -FESTO Manual
4) Fluid Mechanics and Hydraulic Machines,R. K. Bansal, Laxmi Publications
Pvt.,Ltd,22,Golden House, Daryaganj, New Delhi 110 002
Board Examination - Question paper pattern
Time: 3 Hrs.
Max.Marks: 75
5 x 2 marks
10 Marks
5 x 3 marks
15 Marks
5 x 10 marks
50 Marks
75 Marks
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M SCHEME
2015 -2016 onwards
II YEAR
IV SEMESTER
32044 ELECTRICAL DRIVES AND CONTROL
www.studentsquestionpaper.in
M-SCHEME
(Implements from the Academic year 2015-2016 onwards)
Course Name
Course Code
1020
Subject Code
32044
Semester
IV
Subject Title
Instructions
Hours
Hours/
/Week
Semester
Electrical Drives
and Control
75
Examination
Duration
Marks
Internal
Board
Assessment
Examination
25
75
Total
3 Hrs
100
Hours
14
II
14
III
14
IV
13
13
Total
75
RATIONALE:
The automation is being the order of the day to improve the production with
high quality consciousness. Such automation involves electrically operated switches,
sensors controlled through electrically driven motors and actuators. The subject aims
in introducing the basic electrical DC and AC circuits and motors and also focuses
Curriculum Development Centre, DOTE.
www.studentsquestionpaper.in
on the various special control devices like stepper, servo drives and its controlling
elements.
OBJECTIVES:
Compare the use of servo motors and stepper motors in electrical driving
system
Hours
14
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II
14
14
13
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Logic gates: Positive and negative logic, definition, symbol truth table,
Boolean expression for OR, AND, NOT, NOR, NAND, EXOR AND
EXNOR gates Universal logic Gates: NAND, and NOR.
V
13
Photo
electric
sensor,
Inductive
proximity
sensors,
Temperature sensors.
Switches: Push button switch, selector switch, limit switch, pressure
switch,
temperature switch, float switch and reed switch.
Relays NO, NC usage- bimetallic thermal overload relays.
Contactors- usage necessity of contactor- Solenoid type contactor
Circuit breakers Miniature case Circuit breaker (MCCB) and
Miniature Circuit
breaker (MCB), Oil Circuit breakers (OCB), Earth leakage circuit
breaker (ELCB)
Features of PLC-PLC Block diagram- PLC scan - Fixed and modular
PLC Ladder logic-NO, NC contacts-Coils-AND, OR.
Text Books:
1) A course in electrical engineering - B.L.Theraja - Multi Colour Edition, S
Chand & Co, Reprint 2006
2) Control of Machines - S.K Bhattacharya, Brijinder Singh New Age
Publishers, Second Edition- Reprint 2010
3) Electronic Circuits & System- Analog and Digital Y.N.Bapat - Tata Mc Graw
Hill.
Reference Books:
1) Electrical Technology Hughes - 8th Edition, Pearson Education.
2) Electronic Device and Circuits- An introduction Allen Mottershed - Prentice
Hall of India.
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Max.Marks: 75
5 x 2 marks
10 Marks
5 x 3 marks
15 Marks
5 x 10 marks
50 Marks
75 Marks
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M SCHEME
2015 -2016 onwards
II YEAR
IV SEMESTER
32045 STRENGTH MATERIALS AND
FLUID MECHANICS PRACTICAL
www.studentsquestionpaper.in
M-SCHEME
(Implements from the Academic year 2015-2016 onwards)
Course Name
Course Code
1020
Subject Code
32045
Semester
IV
Subject Title
Instructions
Hours/
Hours/
Week
Semster
Materials and
Fluid Mechanics
Practical
90
Examination
Duration
Marks
Internal
Board
Assessment
Examination
25
75
Total
3 Hrs
100
OBJECTIVES:
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BOARD EXAMINATION
Note: All the exercises in both sections have to be completed. Two exercises
will be given for examination by selecting one exercise in each section.
All the exercises should be given in the question paper and students are
allowed to select by a lot.
Record note book should be submitted during examination.
Detailed allocation
35 marks
35 marks.
Viva-voce
05 marks
Total
75 marks
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LIST OF EQUIPMENTS
1. UTM
01
01
01
01
01
01
01
8. Vernier calliper
02
01
01
01
01
01
01
01
01
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M SCHEME
2015 -2016 onwards
II YEAR
IV SEMESTER
32046 SPECIAL MACHINES PRACTICAL
www.studentsquestionpaper.in
M-SCHEME
(Implements from the Academic year 2015-2016 onwards)
Course Name
Course Code
1020
Subject Code
32046
Semester
IV
Subject Title
Instructions
Hours
Hours/
/Week
Semester
Examination
Special
Machines
Internal
4
60
Duration
Marks
Board
Assessment Examination
25
75
Total
3 Hrs
100
OBJECTIVES:
Identify a cylindrical grinder, surface grinder and tool and cutter grinder
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EXERCISES:
1. Produce V Block using shaping machine
2. Produce inverted V using shaping machine
3. Produce a Groove cut using slotting machine
4. Produce a round to square in milling machine by Simple Indexing.
5. Produce a Spur Gear using milling machine by Differential Indexing.
6. Produce a Helical Gear using milling machine
7. Produce a Hexagon using straddle milling method.
8. Produce Progressive type Plug gauge using Cylindrical Grinding machine
9. Produce a turning tool using Tool and Cutter Grinder
10. Produce a plain surface using surface Grinder
BOARD EXAMINATION
Note: All the exercises should be given in the question paper and students are
allowed to select by a lot. Record note book must be submitted for the
examination.
ALLOCATION OF MARKS
Job preparation / Marking
15
Setting / Operations
30
Dimensions / Finish
25
Viva voice
Total
75
LIST OF EQUIPMENTS
1. Vertical milling machine /
Vertical attachment
2 Nos.
2 Nos.
1 No.
1 No.
1 No.
6. Shaping Machine
2 Nos.
7. Slotting Machine
2 Nos
Sufficient quantity.
9. Consumables
Sufficient quantity
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M SCHEME
2015 -2016 onwards
II YEAR
IV SEMESTER
32047 ELECTRICAL DRIVES AND CONTROL
PRACTICAL
www.studentsquestionpaper.in
M-SCHEME
(Implements from the Academic year 2015-2016 onwards)
Course Name
Course Code
1020
Subject Code
32047
Semester
IV
Subject Title
Electrical Drives
Instructions
Hours/
Hours/
Week
Semester
Examination
Internal
Board
Assessment
Examination
25
75
and Control
Practical
60
OBJECTIVES:
Duration
Marks
Total
100
3 Hrs
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LIST OF EXPERIMENTS:
Part A:
1. Verification of Ohms Law
2. Testing of DC starters 3 point and 4 point starter
3. Load test on DC shunt motor
4. Load test on transformer
5. Testing of AC starters- DOL , star - Delta starter
6. Load test on single phase induction motor
7. Load test on three phase squirrel cage motor
8. Testing of relays, contactors, push buttons and limit switch
9. Connection and Testing of MCB, ELCB
Part B
10. Construction and testing of Half wave and Full wave rectifier.
11. Construction and testing of IC voltage regulator using IC 7805.
12. Verification of truth tables for logic gates.
13. Verification of universal gates.
14. Identification and testing of display devices- LED, 7 segment LED, Laser
diode.
15. Testing of Stepper motor drive.
16. Testing of Servo motor drive.
BOARD EXAMINATION
Note: All the exercises are to be completed. One exercise from Part A and
another one from Part B should be given for the Examination.
Part A :
Circuit diagram
05
15
15
Circuit diagram
05
15
Execution
15
Viva Voce
Part B:
Total
Curriculum Development Centre, DOTE.
75
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LIST OF EQUIPMENTS
Electrical Lab
1. DC ammeter 0-5A
1no
2. DC ammeter 0-25A
1no
3. DC voltmeter 0-30V
1no
4. DC voltmeter 0-300V
1no
1no
6. AC ammeter 0-5A
1no
7. AC ammeter 0-10A
2nos.
8. AC voltmeter 0-50V
3nos
9. AC wattmeter 5A-10A
3nos
1no
1no
2nos
1no
1no
1no
1no
4nos
2nos
1no
1no
1no
1no
1no
(0-750W,0-600V)
(Analog type)
12. Variac 20A,250V
(Auto transformer )
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Electronics Lab
4 nos.
2. Resistor 1 K / W
3 nos.
4 nos.
4. IC 7805
1 no.
5. Logic Gates IC
7400, 7408, 7432, 7404, 7402, 7486-
1 each
1no.
1no
1no.
1no.
1no.
1no.
1 each
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M SCHEME
2015 -2016 onwards
III YEAR
V SEMESTER
32051 DESIGN OF MACHINE ELEMENTS
www.studentsquestionpaper.in
M-SCHEME
(Implements from the Academic year 2015-2016 onwards)
Course Name
Course Code
1020
Subject Code
32051
Semester
Subject Title
Instructions
Hours/
Hours/
Week
Semester
Design of Machine
Elements
75
Examination
Duration
Marks
Internal
Board
Assessment
Examination
25
75
Total
3 Hrs
100
Topics
Hours
14
II
14
III
14
IV
Design of bearings
13
13
Total
75
RATIONALE:
The main objective of Machine Design is to create new and better machine
components to improve the existing one. A mechanical engineer should have
thorough knowledge of design of machine elements to avoid the failure of machines
or components.
Curriculum Development Centre, DOTE.
www.studentsquestionpaper.in
OBJECTIVES:
Design riveted joints, welded joints, sleeve and cotter joint and knuckle joint.
Hours
14
Engineering materials
14
www.studentsquestionpaper.in
14
Flat Belts: Types of belts - materials for belt - types of belt drives
Speed ratio effect of slip - length of flat belts Tension Ratio
T1/T2=e-
DESIGN OF BEARINGS
13
13
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Text Book:
1) Machine Design, Pandya & Shah, Edn. 1995, Charotar Publishing House.
2) Machine Design,
Reference Book:
1) A text book of Machine Design, R.S. Khurmi & J.K.Gupta, Edn. 18,Eurosia
Publishing House Pvt. Limited, New Delhi-110 055.
2) Machine Design Bandari,
3) Theory and Problems of Machine Design, Holowenko, Laughlin, Schaums
outline Series.
BOARD EXAMINATIONS
QUESTION PATTERN
Note: Five questions will be asked, one question from each unit in either or
pattern. All the five questions are to be answered.
Each question carries 20 marks. These questions may have sub-divisions also.
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M SCHEME
2015 -2016 onwards
III YEAR
V SEMESTER
32052 THERMAL AND AUTOMOBILE ENGINEERING
www.studentsquestionpaper.in
M-SCHEME
(Implements from the Academic year 2015-2016 onwards)
Course Name
Course Code
1020
Subject Code
32052
Semester
Subject Title
Thermal and
Instructions
Hours/
Hours/
Week
Semester
Examination
Internal
Board
Assessment
Examination
25
75
Automobile
Engineering
75
Duration
Marks
Total
3 Hrs
100
II
III
IV
Topics
FUELS & ITS COMBUSTION, IC ENGINES & ITS
PERFORMANCE
THERMAL POWER PLANT AND STEAM TURBINES &
CONDENSERS
AUTOMOBILE ENGINES & FUEL FEED SYSTEMS
AUTOMOBILE CHASIS, TRANSMISSION AND POWER
TRAINS
AUTOMOBILE ELECTRICAL EQUIPMENT & POLLUTION
CONTROL
REVISION AND TEST
14
14
14
13
13
7
Total
Hours
75
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RATIONALE:
Study of fuel and its combustion, IC engines and its performance are required.
Automobile is one of the key areas of development in India facilitated by
Multinational Companies. As Automobile is the Major sources of employing man
power a thorough knowledge on Automobile Engine construction and its functioning
is required with due consideration on pollution control.
OBJECTIVES:
Familiarize the parts, functions and types of Air compressors and determine
their efficiency.
Compare the modes of heat transfer and evaluate the heat transfer by various
modes.
THERMAL AND AUTOMOBILE ENGINEERING
DETAILED SYLLABUS
Contents: Theory
Unit
Hours
14
www.studentsquestionpaper.in
relative
14
Air-conditioning
Definition
Centralised
air
conditioning.
Layout of thermal power plant - merits and demerits of thermal
power plant - pollutants, effects and control cyclone separator
wet scrubber electrostatic precipitator control of No2 and SO2. fluidised bed combustion.
Basic steam power cycles Carnot, Rankine and modified Rankine
cycles classification of steam turbine - Impulse and reaction
turbines - Difference necessity of compounding Methods of
compounding.
Steam condensers elements of condensing plant classification
of condensers jet condenser surface condensers Comparison
of jet and surface condensers sources of air in condenser
condenser vacuum vacuum efficiency condenser efficiency mass of cooling water required mass of air present number of
tubes problems.
III
14
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mechanism Types.
Diesel engine Stages of Combustion Delay period Variables
affecting delay period Methods of generating air swirl in diesel
engine combustion chambers Types of combustion chambers
merits and demerits.
Cooling systems purpose types
TRANSMISSION
AND
POWER
TRAINS
AUTOMOBILE
CHASSIS
Transmission And Power Trains:
General arrangement of power transmission system Arrangement
of front engine rear drive rear engine rear drive front engine
front drive - four wheel drive applications clutch function
13
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service.
V
AUTOMOBILE
ELECTRICAL
EQUIPMENT
&
POLLUTION
13
CONTROL
Battery lead acid battery Nickel alkaline battery construction
battery rating charging - testing starting circuit - construction
and operation of starter motor starting motor drives over running
clutch and Bendix drive construction and operation solenoid
switch - Charging circuit alternator construction and operation
regulators Dynamo.
Ignition system Types battery coil ignition system High tension
magneto electronic ignition Ignition system troubles and
remedies.
Lighting system circuit Head light Aiming and adjustment
sealed beam head lights directional signal circuits fluorescent
lamp - Horn circuits Wind screen wiper.
Pollution Pollutants source of pollutants pollution control
techniques for petrol and diesel engines emissions controlling
crank case emission (PCV) controlling evaporative emission
(VRS , VSS , VVR , ECS and EEC) Treatment of exhaust gas
(Catalytic converter , EGR) introduction to automobile electronics
radio interference suppressors audio, video systems.
Text Books :
1) Thermal Engg, R.K . Rajput , ,8th Edition, Laxmi publications Pvt
Ltd , New
Delhi.
2) Applied Thermodynamics ,P.K. Nag, ,2nd Edition, TATA Mcgraw - Hill
Publishing Co, New Delhi .
3) Thermal Engineering, R.S. Khurmi and J.K. Gupta, 18th Edition,S.Chand &
Co,NewDelhi Automobile engineering vol- 1, vol 2, Kirpal singh, Standard
publishers distributors New Delhi.
4) Automobile Engineering, G.B.S.Narang, Khanna Publishers, New Delhi.
5) Automotive Mechanics, William H.crouse and Donald .L. Anglin, Tata Mc
Graw Hill Publishing Company Ltd, New Delhi.
www.studentsquestionpaper.in
6) The Automobile, Harbans Singh Reyat, S.Chand & Co Ltd, New Delhi
Reference Books:
1) Thermal Engineering ,P.L Ballaney , 24th Edition ,Khanna Publishers,New
Delhi. Thermal Engineering ,B.K. Sarkar , 3rd Edition , Dhanpat Rai & Sons
New Delhi .
2) Applied Thermodynamics, Domkundwar and C.PKothandaraman, 2nd Edition,
Khanna publishers, New Delhi.
3) Vehicle and Engine technology. Vol. I,Heinz Heisler, , ELBS
4) Automotive Mechanics,Joseph Heitner, East west Press (P) Ltd, New Delhi
5) Internal Combustion engines, M.L.Mathur & R.P.Sharma, Dhanpat Rai &
Sons,
Board Examination - Question paper pattern
Time: 3 Hrs.
Max.Marks: 75
5 x 2
marks
PART B (9 TO 16)
5 x 3
marks
10 Marks
15 Marks
5 x 10
marks
50 Marks
75 Marks
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M SCHEME
2015 -2016 onwards
III YEAR
V SEMESTER
32053 PROCESS PLANNING AND
COST ESTIMATION
www.studentsquestionpaper.in
M-SCHEME
(Implements from the Academic year 2015-2016 onwards)
Course Name
Course Code
1020
Subject Code
32053
Semester
Subject Title
Instructions
Hours/
Hours/
Week
Semester
Examination
Internal
5
75
Duration
Marks
Board
Assessment Examination
25
75
Total
3 Hrs
100
Topics
Hours
PROCESS PLANNING
14
II
PROCESS SELECTION
14
III
WORK STUDY
14
IV
COST ESTIMATION
13
13
Total
75
RATIONALE:
In the product manufacturing the process selection and planning are important. In
this subject the work study, cost estimation and machining time calculations are
discussed.
www.studentsquestionpaper.in
OBJECTIVES:
Understand the process planning.
Study the process selection.
Understand the workstudy
Study the cost estimation.
Study the machining time calculations.
Hours
Process Planning
14
of
Process Selection
Process
14
problems - selection
of
Work Study
Objectives of work study - Concept of work content Techniques
to reduce work content - method study Procedure Recording
14
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cycle graph -
Cost Estimation
13
Introduction - Definition
estimation Vs Cost accounting - components of cost direct cost indirect cost - overhead expenses - estimation of cost elements set up time and economic lot size - tool change time - Inspection
time -
13
Elements of metal machining - cutting speed - feed - depth of cut procedure for assigning cutting variables - calculation of machining
time for different lathe operations like - turning - facing chamfering - parting - knurling and forming
- Calculation of
simple problems.
TEXT BOOKS:
1) Industrial Engineering & Management - O.P Khanna
2) Industrial Engineering & Production Management - Martand Telsang
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REFERENCE BOOKS:
1) Production Engineering - P.C.Shrma.
2) Production and Costing - GBS Narang and V.Kumar
3) Mechanical Estimating and Costing - Banga & Sharma.
Board Examination - Question paper pattern
Time: 3 Hrs.
Max.Marks: 75
5 x 2
marks
PART B (9 TO 16)
5 x 3
marks
10 Marks
15 Marks
5 x 10
marks
50 Marks
75 Marks
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M SCHEME
2015 -2016 onwards
III YEAR
V SEMESTER
ELECTIVE THEORY
www.studentsquestionpaper.in
M-SCHEME
(Implements from the Academic year 2015-2016 onwards)
Course Name
Course Code
1020
Subject Code
32071
Semester
Subject Title
Total Quality
Management
Instructions
Hours/
Hours/
Week
Semester
75
Examination
Duration
Marks
Internal
Board
Assessment
Examination
25
75
Total
3 Hrs
100
Topics
Hours
14
II
14
III
Statistical Fundamentals
14
IV
Control
13
13
Total
75
charts
RATIONALE:
Quality and customer satisfaction in every product and every activity is the
order of the day. As there is a shift from quality control to quality management in all
activities, the concept Total Quality Management and the pillars of TQM are to be
given to Engineers, who are designing products and production systems.
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OBJECTIVES:
Hours
14
Elements
implementation
Pillars
Principles
Obstacles
to
TQM
Quality
Management
System
requirements
and
implementation.
II
14
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STATISTICAL FUNDAMENTALS
14
CONTROL CHARTS
13
13
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Text Book:
1) Total Quality Management, Date H.Besterfiled, Pearson Education Asia.
2) Total Quality Management, V.Jayakumar, Lakshmi Publications.
(reprint
2005)
3) Training manual on ISO 9001 : 2000 & TQM, Girdhar J.Gyani, Raj Publishing
House, Second Edition 2001
4) Quality Management, Howard Cuitlow, Tata Mc Graw Hill, 1998
Reference Book:
1) Total Quality Management, Oakiand.J.S. Butterworth Heinemann Ltd. Oxford
1989.
2) Quality
Management
Concepts
and
Tasks-
Narayana.V
and
Max.Marks: 75
5 x 2 marks
10 Marks
5 x 3 marks
15 Marks
5 x 10 marks
50 Marks
75 Marks
www.studentsquestionpaper.in
M SCHEME
2015 -2016 onwards
III YEAR
V SEMESTER
ELECTIVE THEORY
www.studentsquestionpaper.in
M-SCHEME
(Implements from the Academic year 2015-2016 onwards)
Course Name
Course Code
1020
Subject Code
32072
Semester
Subject Title
PRESS TOOLS
Instructions
Hours/
Hours/
Week
Semester
Press Tools
Examination
Marks
Internal
Board
Assessment
Examination
25
75
75
Duration
Total
100
3 Hrs
Topics
Hours
14
II
14
III
14
IV
13
13
Total
75
RATIONALE:
Press working plays a vital role in the metal forming process. The study about the
operations in the press work is important method of manufacturing.
OBJECTIVES:
www.studentsquestionpaper.in
Explain the various bending, forming and other miscellaneous press working
operations.
Explain the basic concepts and the advantages of fine blanking process
Appreciate the concepts of SMED and quick die changes and its advantages
in bringing down the press set up time.
PRESS TOOLS
DETAILED SYLLABUS
Contents: Theory
Unit
I
WORKING
FUNDAMENTALS,
Hours
OPERATIONS,
AND
MACHINERY :
Shearing Theory-Critical stages of shearing, Features of a punched
hole, features of the slug, burr. Clearance - Effects of Optimum,
Excessive and Insufficient clearances, Clearance for blanking and
Piercing, Land and Angular Clearance. Cutting Force Methods to
reduce cutting force, stripping force.
Press working operations - Blanking, Piercing, Cutting off, Parting off,
perforating, embossing, coining, bending, forming, drawing, curling,
bulging, extrusion, swaging, trimming, and shaving. Safety in press
working.
Presses - Common types of Presses, Main parts of a typical power
Curriculum Development Centre, DOTE.
14
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press,
OBI Press,
Specification
of
presses,
Comparison
of
14
14
13
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Drawing
13
APPLICATIONS
Fine blanking - Definition and Applications of fine blanking, Working
principle of fine blanking tool, V Ring, function of V ring. Comparison
of fine blanking with blanking. Clearance and press force calculations.
Fine Blanking Machines - Working principle, Ram movement,
Mechanical drives, hydraulic drives, Machine force, Ring indenter
force, counter force. Fine blanking tools - Compound die tooling
system with sliding punch, compound die tooling with fixed punch.
Specialized Press Tool Applications - Construction, advantage and
applications of advanced multistage tooling, unit tooling, angular
piercing tools, CNC turret press. Principle of Quick Die Change
(QDC) need and advantages. Single Minute Exchange of Dies
(SMED) concept need and advantages. Factors Affecting Tool
Service Life - Introduction, Elements of Tool performance, Procedure
for investigation of tool failure, Trouble shooting in press tools, effect
of heat treatment on service life of tools.
Text Books:
1) Donald F. Eary. & Edward A. Reed, Techniques of Press working sheet
metal, Prentice-Hall,Inc.,
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Time: 3 Hrs.
Max.Marks: 75
5 x 2 marks
10 Marks
5 x 3 marks
15 Marks
5 x 10 marks
50 Marks
75 Marks
www.studentsquestionpaper.in
M SCHEME
2015 -2016 onwards
III YEAR
V SEMESTER
ELECTIVE THEORY
www.studentsquestionpaper.in
M-SCHEME
(Implements from the Academic year 2015-2016 onwards)
Course Name
Course Code
1020
Subject Code
32073
Semester
Subject Title
Instructions
Examination
Hours
Hours/
/Week
Semester
Sources and
Energy
Conservation
75
Duration
Marks
Internal
Board
Assessment
Examination
25
75
Total
3 Hrs
100
Topics
Hours
14
II
SOLAR ENERGY,APPLICATION,STORAGE
14
III
IV
V
SOLAR
PHOTOVOLTAIC
SYSTEM
AND
14
DESIGN,OCEN,TIDAL,WAVE ENERGY
BIO-ENERGY
13
13
AUDIT
REVISION AND TEST
7
TOTAL
75
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RATIONALE:
Electrical Energy requirement is the major crisis and hence any saving in
Electrical energy is equivalent to production of Electrical Energy. Saving can be
achieved by the utilization of Renewable Energy Sources.
OBJECTIVES:
Study of construction and principle of Wind energy, Solar energy, Tidal energy
and Bio energy.
Hours
FUNDAMENTALS OF ENERGY
14
Introduction to Energy-Energy consumption and standard of livingclassification of energy resources-consumption trend of primary
energy resources-importance of renewable energy sources- energy
for sustainable development.
WIND ENERGY
Introduction-Basic principles of wind energy conversion: Nature of
the wind, power in the wind, forces on the blades and wind energy
conversion-wind
data
and
energy
estimation-site
selection-
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II
SOLAR ENERGY
14
a brief
history of
14
PV,PV in silicon: basic
principle, crystalline PV; reducing cost and raising efficiency, thin film
PV, other innovative technologies, electrical characteristics of silicon
PV cells and modules, grid connected PV system, cost of energy
from PV ,Environmental impact and safety.
System design of solar photovoltaic system: Load analysis-solar
array Design-Battery Design-Simple formulas. System design
procedure. Case Studies: Designing solar home lighting system Designing stand alone solar PV Power plant - Designing solar PV
water pumping system - Only arriving load capacity - solar array
sizing - Battery sizing - Inverter capacity and mountings.
Ocean energy, Tidal & Wave energy
Ocean energy resources principle's of ocean thermal energy
conversion (OTEC) Methods of Ocean thermal electric power
generation Energy utilisation basic principle of tidal power
components and operations of tidal power plant Energy and Power
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BIO ENERGY
13
13
Text Books:
1) Non Conventional Energy Sources - G.D. Rai Khanna Publishers, New
Delhi,1999.
2) Non Conventional Energy Sources and Utilisation - R.K. Rajput - S.Chand &
Company Ltd., 2012.
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3) Renewable Energy Sources - Twidell, J.W. and Weir, A. - EFN Spon Ltd.,
1986.
4) Non-Conventional Energy Resources - B.H.Khan - Tata Mc Graw Hill, 2nd
Edn, 2009.
5) Industrial energy conservation- D. A. Ray- Pergaman Press
6) Energy resource management- Kirpal Singh Jogi- Sarup and sons
Max.Marks: 75
5 x 2 marks
10 Marks
5 x 3 marks
15 Marks
5 x 10 marks
50 Marks
75 Marks
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M SCHEME
2015 -2016 onwards
III YEAR
V SEMESTER
32055 PROCESS AUTOMATION PRACTICAL
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M-SCHEME
(Implements from the Academic year 2015-2016 onwards)
Course Name
Course Code
1020
Subject Code
32055
Semester
Subject Title
Process
Instructions
Hours/
Hours/
Week
Semester
Automation
Practical
60
Examination
Duration
Marks
Internal
Board
Assessment
Examination
25
75
Total
100
OBJECTIVES:
3 Hrs
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Exercises
Pneumatics Lab.
1. Direct operation of single and double acting cylinder.
2. Operation of double acting cylinder with quick exhaust valve.
3. Speed control of double acting cylinder using metering-in and metering-out
circuits.
4. Automatic operation of double acting cylinder in single cycle - using limit
switch.
5. Automatic operation of double acting cylinder in multi cycle - using limit
switch.
Hydraulics Lab.
1. Direct operation of double acting cylinder.
2. Direct operation of hydraulic motor.
3. Speed control of double acting cylinder metering-in and metering-out control.
PLC Lab.
1. Direct operation of a motor using latching circuit.
2. Operation of a motor using AND logic control.
3. Operation of a motor using OR control.
4. On-Delay control of a motor and Off Delay control of a motor.
5. Automatic operation of a Double acting cylinder-single cycle.
6. Automatic operation of a Double acting cylinder-single cycle - forward, time
delay, return.
7. Automatic operation of Double acting cylinder-Multi cycle.
8. Sequential operation of double acting cylinder and a motor.
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Board of Examination
Note: All the exercises have to be completed. Two exercises will be given for
examination by selecting one exercise from Pneumatics Lab. or Hydraulics
lab. and one from PLC lab.
All the exercises should be given in the question paper and students are
allowed to select by a lot.
Record note book should be submitted during examination.
Allocation of Marks
Part A: Pneumatics/Hydraulics lab by lot
- 35 marks
- 35 marks
Viva-voce
- 05 marks
Total
- 75 marks
LIST OF EQUIPMENTS
2Nos
1No.
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M SCHEME
2015 -2016 onwards
III YEAR
V SEMESTER
32056 THERMAL AND AUTOMOBILE ENGINEERING
PRACTICAL
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M-SCHEME
(Implements from the Academic year 2015-2016 onwards)
Course Name
Course Code
1020
Subject Code
32056
Semester
Subject Title
Instructions
Hours/
Hours/
Week
Semester
60
Examination
Duration
Marks
Internal
Board
Assessment
Examination
25
75
Total
100
OBJECTIVES:
Determine the flash and fire point of oil by using open & closed cup apparatus
Service carburettors.
3 Hrs
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List of Experiments:
PART-A
1) Determine flash and fire point of the given oil by using open cup apparatus
and closed cup apparatus.
2) Determine the absolute viscosity of the given lubricating oil
by using
Redwood viscometer.
3) Determine the absolute viscosity of the given lubricating oil by using say bolt
viscometer.
4) Draw a Port timing diagram of two stroke petrol (OR) diesel Engines.
5) Draw a Valve time diagram for four stroke petrol (OR) diesel engines.
6) To conduct a load test on a Petrol (OR) diesel Engines.
7) To conduct a Morse test on multi Cylinder petrol (OR) diesel engines.
8) To conduct a Heat balance test on a Four Stroke Petrol (or) Diesel engines.
PART-B
1) Dismantling, assembling of pressure plate, clutch plate and steering gear box.
2) Dismantling, inspecting and assembling of gear box and find out the gear
ratios.
3) Dismantling, inspecting and assembling of final drive and differential units.
Adjusting of backlash and correct tooth contact of crown and pinion of
differential unit.
4) Dismantling and assembling of four stroke petrol engine (OR) diesel engine
and identification of parts.
5) Removing camshaft, replacing timing gears, removing valves, lapping and
adjusting valve clearance.
6) Removing, servicing and replacing Solex carburettor (OR) MPFI system.
7) Dismantling and assembling of inline fuel injection pump (OR) CRDI system
and Injectors
Curriculum Development Centre, DOTE.
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8) Test a battery with specific gravity test and charge the battery with constant
ampere/ voltage method. Dismantling, overhauling and assembling of starter
motor and alternator (OR) dynamo.
Board of Examination
Note: All the exercises have to be completed. Two exercises will be given for
examination by selecting one exercise in each PART.
All the exercises should be given in the question paper and students are
allowed to select by a lot.
Record note book should be submitted during examination.
Allocation of Marks
Part A
35Marks
Part B
35Marks
Viva-Voce
05Marks
Total
75Marks
LIST OF EQUIPMENTS
THERMAL PRACTICAL
1. Open cup apparatus to determine Flash and fire points
2 No
2 No
3. Redwood viscometer
2 No
4. Saybolt viscometer
2 No
2 No
2 No
2 No
2 No
1 No
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AUTOMOBILE PRACTICAL
1.
- 2 Set
2.
- 1No
3.
- 1 No
4.
- 1 No
5.
- 1 No
6.
SOLEX carburetor
- 1 No
7.
MPFI.
- 1 No
8.
- 1 No
9.
CRDI
- 1 No
10. Injectors.
- 1 No
- 1 No
- 1 No
- 1 No
- 1 No
15. Battery
- 1 No
- 1 No
- 1 No
- 1 No
19. Alternator
- 1 No
20. Dynamo
- 1 No
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M SCHEME
2015 -2016 onwards
III YEAR
V SEMESTER
32002 Life and Employability Skill Practical
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M SCHEME
2015 -2016 onwards
III YEAR
VI SEMESTER
32061 INDUSTRIAL ENGINEERING AND MANAGEMENT
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M-SCHEME
(Implemented from the Academic year 2015-2016 onwards)
Course Name
Course Code
1020
Subject Code
32061
Semester
VI
Subject Title
Instructions
Industrial
Hours/
Hours/
Engineering
Week
Semester
Examination
Marks
and
Management
75
Duration
Internal
Board
3 Hours
Assessment
Examination
Total
25
75
100
TOPIC
HOURS
NO.
I
14
II
14
MEASUREMENT
III
14
IV
13
ORGANIZATIOAL BEHAVIOR:
V
13
7
TOTAL
75
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RATIONALE:
In the Indian Economy, Industries and Enterprises always find prominent
place. After globalization, the students should be trained not only in manufacturing
processes but also in managing activities of industries. The knowledge about plant,
safety, work study techniques, personnel management and financial management
will definitely mould the students as managers to suit the industries.
OBJECTIVES:
Contents: Theory
UNIT
I
HOURS
14
maintenance,
preventive
maintenance
and
scheduled
maintenance.
Plant Safety: Importance accident-causes and cost of an
accident-accident
proneness-prevention
of
accidents-Industrial
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14
handed process chart, Man machine chart, String diagram and flow
diagram.
Work Measurement: Definition Basic procedure in making a time
study Employees rating factor Application of time allowances
Rest, Personal, Process, Special and Policy allowances
Calculation of standard time Problems Basic concept of
production study Techniques of work measurement-Ratio delay
study, Synthesis from standard data, analytical estimating and Pre
determined Motion Time System (PMTS).
III
14
of
Registration
ISO
9001:2008
Quality
Management
System
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organization.
IV
13
ORGANIZATIOAL BEHAVIOR:
Principles
of
Management:
Definition
of
management
Positive
and
negative
motivation
--Modern
Responsibility of human
resource
effectBehavior
and
13
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Text Books :
1) Industrial Engineering and Management, O.P. Khanna, Revised Edition
Publications (P) Ltd 2004, 67/4 Madras House, Daryaganj, New Delhi
110002.
2) Engineering Economics and Management, T.R. Banga & S.C. Sharma,
McGraw Hill Editiion. 2 2001, New Delhi.
3) Herald Koontz and Heinz Weihrich,Essentials of Management,McGraw Hill
Publishing Company,Singapore International Edition.Latest
Reference Books :
1) Management, A global perspective, Heinz Weihrich, Harold Koontz, 10th
Edition, McGraw Hill International Edition.Latest.
2) Essentials of Management, 4th Edition, Joseph L.Massie, Prentice-Hall of
India, New Delhi 2004.
3) S.Chandran,Organizational Behaviours,Vikas Publishing House Pvt. Ltd.
Latest
4) M.Govindarajan and S.Natarajan,Principles of Management,Prentce Hall of
India Pvt.Ltd.New Delhi.Latest.
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Max.Marks: 75
5 x 2
marks
PART B (9 TO 16)
5 x 3
marks
10 Marks
15 Marks
5 x 10
marks
50 Marks
75 Marks
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M SCHEME
2015 -2016 onwards
III YEAR
VI SEMESTER
32062 COMPUTER AIDED DESIGN AND
MANUFACTURING
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M-SCHEME
(Implements from the Academic year 2015-2016 onwards)
Course Name
Course Code
1020
Subject Code
32062
Semester
VI
Subject Title
Instructions
Examination
Computer
Hours /
Hours /
Aided Design
Week
Semester
and
Manufacturing
75
Duration
Marks
Internal
Board
Assessment
Examination
25
75
Total
3 Hrs
100
Topics
Hours
14
II
14
III
14
IV
13
MANUFACTURING
SYSTEMS,
AUTOMATIC
GUIDED
VEHICLE, ROBOT
V
CONCURRENT
ENGINEERING,
DEPLOYMENT,
PRODUCT
QUALITY
FUNCTION
DEVELOPMENT
13
CYCLE,
AUGMENTED REALITY.
REVISION AND TEST
Total
75
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RATIONALE:
As per the latest requirements in the Industries this enables to learn the
assistance of computer in the field of design and manufacturing areas. Its able to
learn the latest manufacturing concepts of in the shop floors and manufacturing
methods like RPT. They are able to know about the CNC programming techniques
are included.
OBJECTIVES:
Understand the concept and requirement of the integration of the design and
manufacturing.
Acquire knowledge about the computer assistance in the design process and
analysis.
Hours
14
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II
14
III
PART
PROGRAMMING:
Manual
part
14
programming
- CNC program
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IV
COMPUTER
INTEGRATED
MANUFACTURING,
FLEXIBLE
13
CONCURRENT
ENGINEERING,
DEPLOYMENT,
PRODUCT
QUALITY
DEVELOPMENT
FUNCTION
CYCLE,
AUGMENTED REALITY.
Concurrent Engineering: Definition Sequential Vs Concurrent
engineering need of CE benefits of CE.
Quality Function Deployment (QFD): Definition House of Quality
(HOQ) advantages disadvantages. Steps in Failure Modes and
Effects Analysis (FMEA) Value Engineering (VE) types of values
identification of poor value areas techniques benefits. Guide
lines of Design for Manufacture and Assembly (DFMA).
Product Development Cycle: Product Life Cycle - New product
development processes.
Augmented Reality (AR) Introduction - concept Applications.
13
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Text Books :
1) CAD/CAM/CIM , R.Radhakrishnan, S.Subramanian, New Age International Pvt.
Ltd.
2) CAD/CAM , Mikell P.Groover, Emory Zimmers, Jr.Prentice Hall of India Pvt., Ltd.
Reference Books :
1) CAD/CAM Principles and Applications, Dr.P.N.Rao, Tata Mc Graw Hill Publishing
Company Ltd.
2) CAD/CAM, Ibrahim Zeid, Mastering Tata McGraw-Hill Publishing Company Ltd.,
New Delhi.
3) Automation, Production Systems, and Computer-Integrated Manufacturing, Mikell
P. Groover, Pearson Education Asia.
4) Computer control of manufacturing systems, Yoram Koren, McGraw Hill Book.
Board Examination - Question paper pattern
Time: 3 Hrs.
Max.Marks: 75
5 x 2 marks
10 Marks
5 x 3 marks
15 Marks
5 x 10 marks
50 Marks
75 Marks
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M SCHEME
2015 -2016 onwards
III YEAR
VI SEMESTER
ELECTIVE THEORY - II
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M-SCHEME
(Implements from the Academic year 2015-2016 onwards)
Course Name
Course Code
1020
Subject Code
32081
Semester
VI
Subject Title
MECHANICAL INSTRUMENTATION
Mechanical
Instrumentation
Instructions
Hours/
Hours/
Week
Semester
75
Examination
Duration
Marks
Internal
Board
Assessment
Examination
25
75
Total
3 Hrs
100
Hours
15
II
15
III
15
IV
MISCELLANEOUS MEASUREMENT
15
CONTROL SYSTEMS
15
TOTAL
75
RATIONALE:
Measurements are more important for the quality of the product. In this subject
various methods of measurements are discussed.
OBJECTIVES
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Contents: Theory
Unit Name of the Topic
I
Hours
14
14
methods
RTD,
Platinum
resistance
thermometer,
14
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IV
Miscellaneous Measurement:
13
&
Shaft
(MechanicalType),
power
Eddy
measurement
Current
Tool
Dynamometer,
Dynamometer
Strain
Gauge
gauge-
bonded
and unbounded,
types
(foil,
Control Systems :
13
Text Books:
1) Mechanical Measurements &Control-D.S.Kumar-Metropolitan Publications,
New Delhi.
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2) Mechanical
&
Industrial
Measurements-R.K.Jain-Khanna
Publications,
NewDelhi,
3) Mechanical Measurements &Instrumentation-A.K.Sawhney-Dhanpat Rai &
Sons, NewDelhi.
4) Measurement Systems-E. O. Doebelin-Tata McGraw Hill Publications.
5) Mechanical
Measurement
House, Pune
Time: 3 Hrs.
Max.Marks: 75
5 x 2 marks
10 Marks
5 x 3 marks
15 Marks
5 x 10 marks
50 Marks
75 Marks
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M SCHEME
2015 -2016 onwards
III YEAR
VI SEMESTER
ELECTIVE THEORY - II
32082 ROBOTICS
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M-SCHEME
(Implements from the Academic year 2015-2016 onwards)
Course Name
Course Code
1020
Subject Code
32082
Semester
VI
Subject Title
ROBOTICS
Instructions
Hours/
Hours/
Week
Semester
Examination
Robotics
5
Duration
Marks
75
Internal
Board
Assessment
Examination
25
75
Total
3 Hrs
100
Unit No
I
II
III
IV
V
Topics
FUNDAMENTALS OF ROBOT TECHNOLOGY
ROBOT CONTROLLER, DRIVE SYSTEMS AND
END EFFECTERS
SENSORS AND MACHINE VISION
ROBOT KINEMATICS AND ROBOT
PROGRAMMING
Hours
14
14
14
13
13
7
Total
75
RATIONALE:
Rapid industrialization and globalization needs industries to be more
competitive and deliver cost effective quality products. This needs industries to
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OBJECTIVES:
ROBOTICS
DETAILED SYLLABUS
Theory contents:
Unit Name of the Topic
I
Hours
14
configuration
of
Robotics
Robot
Components
ROBOT
CONTROLLER,
DRIVE
SYSTEMS
AND
END
EFFECTERS
Robot controller Configuration - Four types of controls Open
loop and closed loop controls Speed of response and stability
Precision of movements: Spatial resolutions, accuracy and
repeatability. Pneumatic drives Hydraulic drives Mechanical
drives Electrical drives Stepper motors, DC Servo motors and
AC
Servo motors
Salient
features
Applications
and
14
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14
13
13
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Text Books:
1) Industrial Robotics Technology, Programming and Applications, .P.Groover,
MC Graw Hill, 2001
Reference Books:
1) Robotics Control, Sensing, Vision and Intelligence, Fu.K.S.Gonzalz.R.C., and
Lee C.S.G, McGraw-Hill Book Co., 1987
2) Robotics for Engineers,Yoram Koren, McGraw-Hill Book Co., 1992
3) Robotics and Image Processing, Janakiraman.P.A, Tata McGraw-Hill,1995
Time: 3 Hrs.
Max.Marks: 75
5 x 2 marks
10 Marks
5 x 3 marks
15 Marks
5 x 10 marks
50 Marks
75 Marks
www.studentsquestionpaper.in
M SCHEME
2015 -2016 onwards
III YEAR
VI SEMESTER
ELECTIVE THEORY - II
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M-SCHEME
(Implements from the Academic year 2016-2017 onwards)
Course Name
Course Code
1020
Subject Code
32083
Semester
VI
Subject Title
Instructions
Hours/
Hours/
Week
Semester
Refrigeration and
Air-Conditioning
75
Examination
Duration
Marks
Internal
Board
Assessment
Examination
25
75
Total
3 Hrs
100
Hours
14
III
14
14
REFRIGERATION
IV
V
13
13
7
75
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RATIONALE:
Hence the study of refrigeration principles, system and its effectiveness are
essential. Comfort is the basic requirement of customers and machines through
air-conditioning and hence learning the concept of air-conditioning and methods of
air-conditioning facilitates quality design of air conditioners.
OBJECTIVES:
Hours
and
rotary
compressors,
hermetically
and
semi
14
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SYSTEM
AND
14
CRYOGENIC
REFRIGERATION SYSTEMS
Principle of working of vapour compression system analysis of
vapour compression cycle using T-s diagram and p-H diagramrefrigerating effect- compression work - C.O.P - effect of superheating
and under cooling effect of evaporative pressure and condenser
pressure-problems liquid vapour refrigeration heat exchangers advantages and disadvantages of superheating and under cooling
use of flash chamber and accumulator.
Simple absorption system Electrolux system - solar absorption
refrigeration system- absorption system comparison with mechanical
refrigeration system.
Refrigerators for above 2 K- Philips Refrigerator--Giffered McMohan
refrigerator- refrigerators for below 2 K - Magnetic refrigeration
systems.
III
REFRIGERATION
FLOW
CONTROLS,
REFRIGERANTS
AND
refrigerants
(R-123a,R-143a,R-69S)-
blends
of
14
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PSYCHOMETRICS
AND
COMFORT
AIR
CONDITIONING
13
SYSTEMS
Psychrometry properties - adiabatic saturation of air by evaporation of
water- psychometric chart and its uses psychometric processes
sensible heating and cooling - humidifying and heating - dehumidifying
and cooling - adiabatic cooling with humidification - total heating or
cooling processes -sensible heat factor - by pass factor adiabatic
mixing evaporative cooling - problems governing optimum effective
temperature comfort chart-design consideration.
Equipment for air conditioning and insulation factors air purification
temperature control humidity control dry and wet filters- centrifugal
dust collector air washer humidifier dehumidifier - fans and blowers
grills and registers summer and winter air conditioning, window
and split air conditioners properties of ideal insulator, types of
insulating materials .
V
13
CONSERVATION TECHNIQUES
Different heat sources conduction heat load radiation load of sun
occupants load equipment load - infiltration air load miscellaneous
heat sources fresh air load - problems.
Classification of duct systems - Duct design equal friction method
velocity reduction method problems. Chilled water Systems -Air
handling Units.
Energy conservation and design decisions - heat reclaim thermal
storage ice builder ice harvester variable refrigerant flow (VRF)
variable primary flow (VPF).
Text books :
1) Refrigeration and air conditioning, P.L . Ballaney, Khanna Publishers, 2B,
North Market, Naisarak, New Delhi 110 006.
2) Refrigeration and air conditioning, V.K. Jain,
3) Industrial Refrigeration Hand Book, Wilbert F. Steocker
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Reference Books:
1) A course in refrigeration and air conditioning , Domkundwar,
2) Principles of refrigeration, Dossat ,
3) Home refrigeration and air conditioning, Audels, Theo.Audel & Co. publisher,
rd
Time: 3 Hrs.
Max.Marks: 75
5 x 2 marks
10 Marks
5 x 3 marks
15 Marks
5 x 10 marks
50 Marks
75 Marks
www.studentsquestionpaper.in
M SCHEME
2015 -2016 onwards
III YEAR
VI SEMESTER
32064 COMPUTER AIDED DESIGN AND
MAUFACTURING PRACTICAL
www.studentsquestionpaper.in
M-SCHEME
(Implements from the Academic year 2015-2016 onwards)
Course Name
Course Code
1020
Subject Code
32064
Semester
VI
Subject Title
Instructions
Computer Aided
Hours/
Hours/
Design And
Week
Semester
Examination
Manufacturing
Practical
90
Duration
Marks
Internal
Board
Assessment
Examination
25
75
Total
3 Hrs
100
OBJECTIVES:
Write program and simulate in the Lathe software and Milling software.
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Introduction
Part modelling - Datum Plane constraint sketch dimensioning extrude
revolve sweep blend protrusion extrusion rib shell hole round
chamfer copy mirror assembly align orient.
Exercises
3D Drawing
1. Geneva Wheel
2. Bearing Block
3. Bushed bearing
4. Gib and Cotter joint
5. Screw Jack
6. Connecting Rod
Note: Print the orthographic view and sectional view from the above assembled 3D
drawing.
Introduction:
1. Study of CNC lathe, milling.
2. Study of international standard codes: G-Codes and M-Codes
3. Format Dimensioning methods.
4. Program writing Turning simulator Milling simulator, IS practice
commands menus.
5. Editing the program in the CNC machines.
6. Execute the program in the CNC machines.
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Exercises
CNC Turning Machine
1. Using Linear and Circular interpolation - Create a part program and produce
component in the Machine.
2. Using Stock removal cycle Create a part program for multiple turning operations
and produce component in the Machine.
3. Using canned cycle - Create a part program for thread cutting, grooving and
produce component in the Machine.
CNC Milling Machine
4. Using Linear interpolation and Circular interpolation Create a part program for
grooving and produce component in the Machine.
5. Using canned cycle - Create a part program for drilling, tapping, counter sinking
and produce component in the Machine.
6. Using subprogram - Create a part program for mirroring and produce component
in the Machine.
Note: Print the part program from the simulation software and make the component
in the CNC machine.
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BOARD EXAMINATION
Note: All exercises should be completed. Two exercises should be carried out
by selecting one exercise in each section. The printouts must be kept along
with the examination paper.
35
Part modelling
15
Assembly
10
Printout
10
35
15
Component manufacturing
10
Finish
10
Viva voice
Total
75
LIST OF EQUIPMENTS
1. Personal computer
- 30 Nos.
- 1 No.
- 1 No.
5. Laser Printer
- 1 No.
6. Consumable
- Sufficient quantity.
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M SCHEME
2015 -2016 onwards
III YEAR
VI SEMESTER
32065 MACHINE TOOL TESTING AND
MAINTENANCE PRACTICAL
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M-SCHEME
(Implements from the Academic year 2015-2016 onwards)
Course Name
Course Code
1020
Subject Code
32065
Semester
VI
Subject Title
Instructions
Machine Tool
Hours/
Hours/
Testing and
Week
Semester
Maintenance
Practical
60
Examination
Duration
Marks
Internal
Board
Assessment
Examination
25
75
Total
100
OBJECTIVES:
1. Study of Indian Standard Test charts.
2. Set up instrument for machine tool testing.
3. Observe the machine tool alignment and results.
4. Observe the manufacturing accuracy of machine tools.
5. Study the maintenance of the machine components.
6. Study the trouble shooting procedures and methods.
7. Prepare the record of work for all the exercises.
MACHINE TOOL TESTING
Prepare a test chart for the various tests and mention the errors.
3 Hrs
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BOARD EXAMINATION
Note: Examinations will be conducted in both Part A and Part B. Students
should be given exercises by selecting one exercise from each part by lot.
All the exercises should be given in the question paper and students are allowed
to select by a lot
Machine Tool Alignment
Procedure
/ Drawing
45
15
Geometrical test
20
10
Maintenance
25
Procedure / Dismantling
10
10
Assembling / Report
Viva-voce
TOTAL
Curriculum Development Centre, DOTE.
5
5
75
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LIST OF EQUIPMENTS
Machine
1. Lathe machine
- 1 No.
2. Shaping machine
- 1 No.
3. Drilling machine
- 1 No.
- 1 No.
5. Milling machine
- 1 No.
6. Slotting machine
- 1 No.
Tools
7. Dial gauge
- 5 Nos.
8. Magnetic stand
- 5 Nos.
9. Surface gauges
- 5 Nos.
- 5 Nos.
- Sufficient quantity
- Sufficient quantity
- Sufficient quantity
14. Hammer
- Sufficient quantity
- Sufficient quantity
- Sufficient quantity
Machine components
17. Lead screw and nut
- 1 No.
18. Tailstock
- 1 No.
- 1 No.
- 1 No.
- 1 No.
- 1 No.
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M SCHEME
2015 -2016 onwards
III YEAR
VI SEMESTER
ELECTIVE PRACTICAL - II
32084 MECHANICAL INSTRUMENTATION
PRACTICAL
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M-SCHEME
(Implements from the Academic year 2015-2016 onwards)
Course Name
Course Code
1020
Subject Code
32084
Semester
VI
Subject Title
Mechanical
Instructions
Hours/
Hours/
Week
Semester
Instrumentation
Practical
60
Examination
Duration
Marks
Internal
Board
Assessment
Examination
25
75
Total
3 Hrs
100
OBJECTIVES:
Know the measurement and control laboratory and study the specifications
of measuring Instruments /devices.
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EXERCISES
BOARD EXAMINATION
Duration: 3hrs
Max marks:75
All the exercises should be given and students are allowed to select an exercise by
lot.
ALLOCATION OF MARKS
Block Diagram
15
35
Execution of circuit
20
Viva voce
TOTAL
75
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M SCHEME
2015 -2016 onwards
III YEAR
VI SEMESTER
ELECTIVE PRACTICAL - II
32085 ROBOTICS PRACTICAL
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M-SCHEME
(Implements from the Academic year 2015-2016 onwards)
Course Name
Course Code
1020
Subject Code
32085
Semester
VI
Subject Title
ROBOTICS PRACTICAL
Instructions
Hours/
Hours/
Week
Semester
Examination
Robotics
Practical
60
Duration
Marks
Internal
Board
Assessment
Examination
25
75
Exercises
1. Study of Robot / Study of robot simulation software
2. Position recording using Cartesian co ordinate system
(No. of positions to be specified - 9)
3. Position recording using Polar co ordinate system
(No. of positions to be specified- 9)
4. Pick and place of objects
(No. of objects to be specified- 6)
5. Pick and stack of objects
(No. of objects to be specified- 6)
6. Spray painting practice
(Area to be specified- 300mm x 300mm)
7. Spot welding practice
(No. of spots to be specified- 9)
Curriculum Development Centre, DOTE.
Total
100
3 Hrs
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Max marks:75
All the exercises should be given and students are allowed to select an exercise by
lot.
Allocation Marks
Writing the Program
20
20
Procedure
10
Execution
20
Viva-Voce
05
Total
75
LIST OF EQUIPMENTS
15 Nos.
Simulation Softwares
ARISTO Software
SCORE BASE Software
Hardware
6 Axis Robot,
Teach Pendant control and PC
Based control through Software
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M SCHEME
2015 -2016 onwards
III YEAR
VI SEMESTER
ELECTIVE PRACTICAL - II
32086 REFRIGERATION AND AIRCONDITIONING
PRACTICAL
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M-SCHEME
(Implements from the Academic year 2015-2016 onwards)
Course Name
Course Code
1020
Subject Code
32086
Semester
VI
Subject Title
Refrigeration and
Instructions
Hours/
Hours/
Week
Semester
Examination
Air-Conditioning
Practical
60
Duration
Marks
Internal
Board
Assessment
Examination
25
75
Total
3 Hrs
100
OBJECTIVES:
PART- A
1. BASIC REFRIGERATION WORKSHOP OPERATION:
(a) Copper and steel tubing
To study the various sizes of copper and steel tubing.
To study the various tools used for operations.
To become familiar with various operations on copper and steel tubingFlaring,
Swaging.
Curriculum Development Centre, DOTE.
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BOARD EXAMINATION
Part A
25 Marks
Part B
45Marks
5Marks
3. Viva voice
External Marks :
75Marks
LIST OF EQUIPMENTS
TOOLS:
1. Mechanics tool set
2. Tube cutter
3. Tube bender type
4. Tube bender spring
5. Swaging tool
6. Flaring block
7. Flaring nut
Curriculum Development Centre, DOTE.
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8. Pinching tool
9. Capillary tube testing gauge
10. Blow Lamp
SERVICE TOOLS:
1. Gas cylinder with receiver valve and key
2. Charging System
3. Blow lamp
4. Stem key
5. Spring remover
6. Service valve
7. t connector
8. High pressure gauge
9. Compound gauge
10. Leak detector
11. Soldering and Brazing kit.
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M SCHEME
2015 -2016 onwards
III YEAR
VI SEMESTER
32067 PROJECT WORK
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M-SCHEME
(Implements from the Academic year 2015-2016 onwards)
Course Name
Course Code
1020
Subject Code
32067
Semester
VI
Subject Title
Project Work
Hours/
Hours/
Week
Semester
Examination
Assessment Marks
Internal
Board
Total
Exam
PROJECT WORK
45
25
75
100
Minimum Marks for Pass is 50 out of which minimum 35 marks should be obtained
out of 75 marks in the board Examination alone.
OBJECTIVES:
Learn and understand the gap between the technological knowledge acquired
through curriculum and the actual industrial need and to compensate it by
acquiring additional knowledge as required.
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INTERNAL ASSESSMENT:
The internal assessment should be calculated based on the review of the progress of
the work done by the student periodically as follows.
Period of
Detail of assessment
assessment
Max. Marks
First Review
6th week
10
Second Review
12th week
10
Attendance
Entire semester
Total
25
Max Marks
63
12
75
DETAILED SYLLABUS
ENTREPRENEURSHIP
1.1
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organizations
supporting
SSI
DIC,NSIC,SIDO,KVIC,
ENVIRONMENTAL MANAGEMENT
2.1
2.2
2.3
2.4
2.5
DISASTER MANAGEMENT
3.1
3.2
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Disaster
Management
Preparedness,
Response,
Recovery
LIST OF QUESTIONS
ENTREPRENEURSHIP
1.
2.
3.
What is innovation?
5.
6.
7.
8.
9.
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4. What is the necessity of pollution control? What are all the different organizations
you know, which deal with pollution control?
5. List out the different types of pollutions caused by a Chemical / Textile / Leather /
Automobile / Cement factory.
6. What is meant by Hazardous waste?
7. Define Industrial waste management.
8. Differentiate between garbage, rubbish, refuse and trash based on their
composition and source.
9. Explain briefly how the quantity of solid waste generated in an industry could be
reduced.
10. What are the objectives of treatments of solid wastes before disposal?
11. What are the different methods of disposal of solid wastes?
12. Explain how the principle of recycling could be applied in the process of waste
minimization.
13. Define the term Environmental Waste Audit.
14. List and discuss the factors pertinent to the selection of landfill site.
15. Explain the purpose of daily cover in a sanitary landfill and state the minimum
desirable depth of daily cover.
16. Describe any two methods of converting waste into energy.
17. What actions, a local body such as a municipality could take when the agency
appointed for collecting and disposing the solid wastes fails to do the work
continuously for number of days?
18. Write a note on Characteristics of hazardous waste.
19. What is the difference between municipal and industrial effluent ?
20. List few of the undesirable parameters / pollutants anticipated in the effluents
from oil refinery industry / thermal power plants / textile industries / woolen mills / dye
industries / electroplating industries / cement plants / leather industries
(any two
may be asked)
21. Explain briefly the process of Equalization and Neutralization of waste water of
varying characteristics discharged from an Industry.
22. Explain briefly the Physical treatments Sedimentation and Floatation
processes in the waste water treatment.
23. Explain briefly when and how chemical / biological treatments are given to the
waste water.
Curriculum Development Centre, DOTE.
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24. List the four common advanced waste water treatment processes and the
pollutants they remove.
25. Describe refractory organics and the method used to remove them from the
effluent.
26. Explain biological nitrification and de-nitrification.
27. Describe the basic approaches to land treatment of Industrial Effluent.
28. Describe the locations for the ultimate disposal of sludge and the treatment steps
needed prior to ultimate disposal.
29. List any five Industries, which act as the major sources for Hazardous Air
Pollutants.
30. List out the names of any three hazardous air pollutants and their effects on
human health.
31. Explain the influence of moisture, temperature and sunlight on the severity of air
pollution effects on materials.
32. Differentiate between acute and chronic health effects from Air pollution.
33. Define the term Acid rain and explain how it occurs.
34. Discuss briefly the causes for global warming and its consequences
35. Suggest suitable Air pollution control devices for a few pollutants and sources.
36. Explain how evaporative emissions and exhaust emissions are commonly
controlled.
37. What are the harmful elements present in the automobile smokes? How their
presence could be controlled?
38. What is the Advantage of Ozone layer in the atmosphere? State few reasons for
its destruction.
39. Explain the mechanism by which hearing damage occurs.
40. List any five effects of noise other than hearing damage.
41. Explain why impulsive noise is more dangerous than steady state noise.
42. briefly the Source Path Receiver concept of Noise control.
43. Where silencers or mufflers are used ? Explain how they reduce the noise.
44. Describe two techniques to protect the receiver from hearing loss when design /
redress for noise control fail.
45. What are the problems faced by the people residing along the side of a railway
track and near to an Airport? What provisions could be made in their houses to
reduce the problem?
Curriculum Development Centre, DOTE.
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DISASTER MANAGEMENT
1. What is meant by Disaster Management? What are the different stages of
Disaster management?
2. Differentiate Natural Disasters and Man made Disasters with examples.
3. Describe the necessity of Risk identification and Assessment Surveys while
planning a project.
4. What is Disasters recovery and what does it mean to an Industry?
5. What are the factors to be considered while planning the rebuilding works after a
major disaster due to flood / cyclone / earthquake? (Any one may be asked)
6. List out the public emergency services available in the state, which could be
approached for help during a natural disaster.
7. Specify the role played by an Engineer in the process of Disaster management.
8. What is the cause for Earthquakes? How they are measured? Which parts of
India are more vulnerable for frequent earthquakes?
9. What was the cause for the Tsunami 2004 which inflicted heavy loss to life and
property along the coast of Tamilnadu ? Specify its epicenter and magnitude.
10. Specify the Earthquake Hazard Zones in which the following towns of Tamilnadu
lie:
(a) Chennai (b) Nagapattinam (c) Coimbatore (d) Madurai (e) Salem.
11. Which parts of India are experiencing frequent natural calamities such as (a)
heavy rain fall (b) huge losses due to floods (c) severe cyclones
12. Define basic wind speed. What will be the peak wind speed in (a) Very high
damage risk zone A, (b) High damage risk zone, (c) Low damage risk zone.
13. Specify the minimum distance from the Sea shore and minimum height above the
mean sea level, desirable for the location of buildings.
14. Explain how the topography of the site plays a role in the disasters caused by
floods and cyclones.
15. Explain how the shape and orientation of buildings could reduce the damages
due to cyclones.
16. What is a cyclone shelter? When and where it is provided? What are its
requirements?
17. What Precautionary measures have to be taken by the authorities before opening
a dam for discharging the excess water into a canal/river ?
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18. What are the causes for fire accidents ? Specify the remedial measures to be
taken in buildings to avoid fire accidents.
19. What is a fire escape in multistoried buildings ? What are its requirements ?
20. How the imamates of a multistory building are to be evacuted in the event of a
fire/Chemical spill/Toxic Air Situation/ Terrorist attack, (any one may be asked).
21. Describe different fire fighting arrangements to be provided in an Industry.
22. Explain the necessity of disaster warning systems in Industries.
23. Explain how rescue operations have to be carried out in the case of collapse of
buildings due to earthquake / blast / Cyclone / flood.
24. What are the necessary steps to be taken to avoid dangerous epidemics after a
flood disaster?
25. What relief works that have to be carried out to save the lives of workers when
the factory area is suddenly affected by a dangerous gas leak / sudden flooding ?
26. What are the difficulties faced by an Industry when there is a sudden power
failure? How such a situation could be managed?
27. What are the difficulties faced by the Management when there is a group clash
between the workers? How such a situation could be managed?
28. What will be the problems faced by the management of an Industry when a
worker dies because of the failure of a mechanical device due to poor maintenance?
How to manage such a situation ?
29. What precautionary measures have to be taken to avoid accidents to labourers in
the Industry in a workshop / during handling of dangerous Chemicals / during
construction of buildings / during the building maintenance works.
30. Explain the necessity of medical care facilities in an Industry / Project site.
31. Explain the necessity of proper training to the employees of Industries dealing
with hazardous products, to act during disasters.
32. What type of disaster is expected in coal mines, cotton mills, Oil refineries, ship
yards and gas plants?
33. What is meant by Emergency Plan Rehearsal? What are the advantages of such
Rehearsals?
34. What action you will take when your employees could not reach the factory site
because of continuous strike by Public Transport workers?
35. What immediate actions you will initiate when the quarters of your factory workers
are suddenly flooded due to the breach in a nearly lake / dam, during heavy rain?
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36. What steps you will take to avoid a break down when the workers union of your
Industry have given a strike notice?
37. List out few possible crisis in an organization caused by its workers? What could
be the part of the middle level officials in managing such crisis?
38. What types of warning systems are available to alert the people in the case of
predicted disasters, such as floods, cyclone etc.
39. Explain the necessity of Team work in the crisis management in an Industry /
Local body.
40. What factors are to be considered while fixing compensation to the workers in the
case of severe accidents causing disability / death to them?
41. Explain the legal / financial problems the management has to face if safely
measures taken by them are found to be in adequate.
42. Describe the importance of insurance to men and machinery of an Industry
dealing with dangerous jobs.
43. What precautions have to be taken while storing explosives in a match/ fire
crackers factory?
44. What are the arrangements required for emergency rescue works in the case of
Atomic Power Plants?
45. Why residential quarters are not constructed nearer to Atomic Power Plants?