Astm A312 PDF
Astm A312 PDF
Astm A312 PDF
1
This specification is under the jurisdiction of ASTM Committee A01 on Steel,
Stainless Steel and Related Alloys and is the direct responsibility of Subcommittee
A01.10 on Stainless and Alloy Steel Tubular Products.
Current edition approved March 1, 2015. Published March 2015. Originally
approved in 1948. Last previous edition approved in 2014 as A312/A312M14b.
DOI: 10.1520/A0312_A0312M-15.
2
For ASME Boiler and Pressure Vessel Code applications see related Specification SA-312 in Section II of that Code.
2. Referenced Documents
2.1 ASTM Standards:3
A262 Practices for Detecting Susceptibility to Intergranular
Attack in Austenitic Stainless Steels
A370 Test Methods and Definitions for Mechanical Testing
of Steel Products
A941 Terminology Relating to Steel, Stainless Steel, Related
Alloys, and Ferroalloys
A999/A999M Specification for General Requirements for
Alloy and Stainless Steel Pipe
A1016/A1016M Specification for General Requirements for
Ferritic Alloy Steel, Austenitic Alloy Steel, and Stainless
Steel Tubes
E112 Test Methods for Determining Average Grain Size
E381 Method of Macroetch Testing Steel Bars, Billets,
Blooms, and Forgings
3
For referenced ASTM standards, visit the ASTM website, www.astm.org, or
contact ASTM Customer Service at service@astm.org. For Annual Book of ASTM
Standards volume information, refer to the standards Document Summary page on
the ASTM website.
--`,,```,``,,`,`,,````,``,,,````-`-`,,`,,`,`,,`---
1. Scope*
A312/A312M 15
E527 Practice for Numbering Metals and Alloys in the
Unified Numbering System (UNS)
2.2 ANSI Standards:4
B1.20.1 Pipe Threads, General Purpose
B36.10 Welded and Seamless Wrought Steel Pipe
B36.19 Stainless Steel Pipe
2.3 ASME Standard:
ASME Boiler and Pressure Vessel Code : Section VIII5
2.4 AWS Standard:
A5.9 Corrosion-Resisting Chromium and Chromium-Nickel
Steel Welding Rods and Electrodes6
2.5 Other Standard:
SAE J1086 Practice for Numbering Metals and Alloys
(UNS)7
3.1 Definitions:
3.1.1 The definitions in Specification A999/A999M and
Terminology A941 are applicable to this specification.
4. Ordering Information
7. Chemical Composition
3. Terminology
5. General Requirements
5.1 Material furnished under this specification shall conform to the applicable requirements of the current edition of
Specification A999/A999M unless otherwise provided herein.
6. Materials and Manufacture
6.1 Manufacture:
6.1.1 The pipe shall be manufactured by one of the following processes:
6.1.2 Seamless (SML) pipe shall be made by a process that
does not involve welding at any stage of production.
6.1.3 Welded (WLD) pipe shall be made using an automatic
welding process with no addition of filler metal during the
welding process.
6.1.4 Heavily cold-worked (HCW) pipe shall be made by
applying cold working of not less than 35 % reduction in
thickness of both wall and weld to a welded pipe prior to the
final anneal. No filler shall be used in making the weld. Prior
to cold working, the weld shall be 100 % radiographically
inspected in accordance with the requirements of ASME Boiler
and Pressure Vessel Code, Section VIII, Division 1, latest
revision, Paragraph UW-51.
6.1.5 Welded pipe and HCW pipe of NPS 14 and smaller
shall have a single longitudinal weld. Welded pipe and HCW
pipe of a size larger than NPS 14 shall have a single
--`,,```,``,,`,`,,````,``,,,````-
4
Available from American National Standards Institute (ANSI), 25 W. 43rd St.,
4th Floor, New York, NY 10036, http://www.ansi.org.
5
Available from American Society of Mechanical Engineers (ASME), ASME
International Headquarters, Two Park Ave., New York, NY 10016-5990, http://
www.asme.org.
6
Available from American Welding Society (AWS), 550 NW LeJeune Rd.,
Miami, FL 33126, http://www.aws.org.
7
Available from Society of Automotive Engineers (SAE), 400 Commonwealth
Dr., Warrendale, PA 15096-0001, http://www.sae.org.
8. Product Analysis
8.1 At the request of the purchaser, an analysis of one billet
or one length of flat-rolled stock from each heat, or two pipes
from each lot shall be made by the manufacturer. A lot of pipe
shall consist of the following number of lengths of the same
size and wall thickness from any one heat of steel:
NPS Designator
Under 2
2 to 5
6 and over
S31035
S31009
TP310H
S31002
S31008
0.015
S30941
TP309HCb
TP310S
0.04
0.10
S30940
0.04
0.10
0.04
0.10
0.08
0.04
0.10
0.08
0.16
0.24
0.05
0.10
0.08
0.015
0.018
TP309Cb
0.035
S30909
TP304N
TP309H
S30451
...
0.04
0.10
0.04
0.06
0.08
S30908
S30415
TP304H
0.035
TP309S
S30409
TP304L
0.08
S30815
S30403
TP304
0.08
...
S30400
TPXM-29
0.04
S30615
S24000
TPXM-11
0.08
...
S21904
TPXM-10
0.06
S30601
S21900
TPXM-19
0.030
...
S20910
...
0.03
S30600
S20400
TP201LN
0.15
...
S20153
TP201
Carbon
S30453
S20100
Grade
TP304LN
UNS
DesignationA
0.60
2.00
2.00
2.00
2.00
2.00
2.00
2.00
0.80
0.50
0.80
2.00
2.00
2.00
2.00
0.80
2.00
2.00
5.5
7.5
6.4
7.5
7.0
9.0
4.0
6.0
8.0
10.0
8.0
10.0
11.5
14.5
2.00
Manganese
0.025
0.045
0.045
0.020
0.045
0.045
0.045
0.045
0.040
0.030
0.030
0.02
0.045
0.045
0.045
0.045
0.045
0.045
0.060
0.045
0.045
0.045
0.045
0.045
0.060
Phosphorus
0.015
0.030
0.030
0.015
0.030
0.030
0.030
0.030
0.030
0.03
0.013
0.02
0.030
0.030
0.030
0.030
0.030
0.030
0.030
0.030
0.030
0.030
0.030
0.015
0.030
Sulfur
0.40
1.00
1.00
0.15
1.00
1.00
1.00
3.7
4.3
5.0
5.6
3.2
4.0
1.40
2.00
1.00
1.00
1.00
2.00
1.00
1.00
1.00
1.00
1.00
1.00
1.00
1.00
1.00
0.75
1.00
Silicon
24.0
26.0
24.0
26.0
24.0
26.0
21.5
23.5
22.0
24.0
16.0
18.0
16.0
17.5
15.0
17.0
20.5
23.5
19.0
21.5
19.0
21.5
17.0
19.0
18.0
20.0
18.0
20.0
18.0
20.0
18.0
19.0
18.0
20.0
18.0
20.0
17.0
18.5
17.0
18.0
17.0
19.5
20.0
22.0
22.0
24.0
22.0
24.0
22.0
24.0
Chromium
19.0
22.0
19.0
22.0
19.0
22.0
23.5
26.5
12.0
16.0
3.5
5.5
4.0
5.0
1.50
3.00
11.5
13.5
5.5
7.5
5.5
7.5
2.3
3.7
8.0
11.0
8.0
13.0
8.0
11.0
9.0
10.0
8.0
11.0
8.0
12.0
14.0
15.5
17.0
18.0
13.5
16.0
10.0
12.0
12.0
15.0
12.0
15.0
12.0
16.0
Nickel
...
...
...
...
...
...
...
...
...
...
...
...
...
...
...
...
...
...
...
...
...
...
...
...
Titanium
0.40
0.60
...
...
10 C
min,
1.10 max
10 C
min,
1.10 max
...
...
...
...
...
...
...
...
...
...
...
...
...
...
...
0.10
0.30
...
...
...
...
Columbium
...
...
...
...
...
...
...
...
...
...
...
...
...
...
...
...
...
...
...
...
...
...
...
...
Tantalum,
max
--`,,```,``,,`,`,,````,``,,,````-`-`,,`,,`,`,,`---
...
0.75
0.10
0.75
0.75
...
0.75
...
...
0.20
0.20
...
...
...
...
...
...
...
...
1.50
3.00
...
...
...
...
Molybdenum
Composition, %B
0.20
0.30
...
...
0.10
...
...
...
0.14
0.20
...
...
0.05
0.12
0.18
0.10
0.16
0.10
0.16
...
...
...
0.10
0.25
0.15
0.30
0.20
0.40
0.15
0.40
0.15
0.40
0.20
0.40
...
0.25
NitrogenC
...
...
...
...
...
...
...
...
...
...
...
...
...
...
...
...
...
...
...
0.10
0.30
...
...
...
...
Vanadium
2.5
3.5
...
...
...
...
0.50
max
0.35
...
...
...
...
...
...
...
...
...
...
...
1.00
...
Copper
...
...
0.03
0.08
...
...
...
...
...
0.03
0.08
...
...
...
...
...
...
...
...
...
...
...
Cerium
0.002
0.008
...
...
...
...
...
Boron
0.80
1.50
...
...
...
...
Aluminum
W 3.0
4.0
Co 1.0
2.0
...
Other
A312/A312M 15
0.08
012
0.020
S31050
S31254
S31266
S31272
...
...
...
S31653
S31700
S31703
S31725
S31726
S31727
S31730
S32053
S32100
S32109
S32615
S32654
S33228
TP317
TP317L
...
...
...
...
...
TP321
TP321H
...
...
...
S31635
TP316Ti
TP316LN
S31609
TP316H
S31651
S31603
TP316L
TP316N
S31600
TP316
S31277
0.030
S31041
TP310HCb
0.04
0.08
0.020
0.07
0.04
0.10
0.08
0.03
0.030
0.03
0.03
0.03
0.035
0.08
0.035
0.08
0.04
0.10
0.08
0.035
0.08
0.020
0.025
0.04
0.10
0.08
S31040
TP310Cb
Carbon
UNS
DesignationA
Grade
2.0
4.0
1.00
2.00
2.00
2.00
1.00
2.00
1.00
2.00
2.00
2.00
2.00
2.00
2.00
2.00
2.00
2.00
2.00
2.00
4.00
1.5
2.00
3.00
1.00
2.00
2.00
2.00
Manganese
0.030
0.040F
0.020
0.030
0.045
0.045
0.045
0.030
0.040
0.030
0.015
0.005
0.030
0.030
0.030
0.010
0.010
0.030
0.030
0.040
0.030
0.030
0.030
0.030
0.030
0.030
0.030
0.030
0.010
0.015
0.020
0.010
0.015
0.030
0.030
Sulfur
0.045
0.045
0.045
0.045
0.045
0.045
0.045
0.045
0.030
0.030
0.035
0.030
0.020
0.045
0.045
Phosphorus
0.30
4.8
6.0
0.50
1.00
1.00
1.00
1.00
1.00
1.00
1.00
1.00
1.00
1.00
1.00
0.75
1.00
1.00
1.00
0.25
0.75
0.50
1.00
0.80
0.4
1.00
1.00
Silicon
16.5
19.5
24.0
25.0
26.0
28.0
16.0
18.0
16.0
18.0
18.0
20.0
18.0
20.0
18.0
20.0
17.0
20.0
17.5
19.0
17.0
19.0
22.0
24.0
17.0
19.0
17.0
19.0
24.0
26.0
19.5
20.5
23.0
25.0
14.0
16.0
20.5
23.0
16.0
18.0
16.0
18.0
16.0
18.0
16.0
18.0
24.0
26.0
24.0
26.0
Chromium
19.0
22.0
21.0
23.0
31.0
33.0
11.0
14.0E
11.0
14.0E
11.0
15.0
11.0
15.0
13.5
17.5
13.5
17.5
14.5
16.5
15.0
16.5
24.0
26.0
9.0
12.0
9.0
12.0
20.5
23.5
17.5
18.5
21.0
24.0
14.0
16.0
26.0
28.0
11.0
14.0E
10.0
14.0
11.0
14.0E
10.0
14.0
19.0
22.0
19.0
22.0
Nickel
Continued
...
0.60
1.00
...
...
...
...
...
...
...
...
...
...
...
...
...
...
...
...
10 C
min,
1.10 max
10 C
min,
1.10 max
...
Columbium
...
...
...
...
...
...
...
...
5
(C+N)
0.70
...
...
...
0.30
0.60
...
...
...
...
4(C+N)
min;
0.70
max
0.30
...
1.50
7.0
...
8.0
...
...
...
2.00
3.00
2.00
3.00
3.0
4.0
3.0
4.0
4.0
5.0
4.0
5.0
3.8
4.5
3.0
4.0
5.0
6.0
...
1.6
2.6
6.0
6.5
5.2
6.2
1.00
1.40
6.5
8.0
2.00
3.00
2.00
3.00
2.00
3.00
2.00
3.00
0.75
0.75
Titanium
Composition, %B
Molybdenum
TABLE 1
0.45
0.55
...
...
0.10
0.17
0.22
0.10
0.10
0.20
0.15
0.21
0.045
0.10
...
0.10
0.16
0.10
0.16
...
0.10
...
...
0.30
0.40
...
0.09
0.15
0.18
0.25
0.35
0.60
...
...
...
...
...
...
...
...
...
...
...
...
...
...
...
...
...
...
...
...
...
...
Vanadium
1.50
2.50
0.30
0.60
...
...
...
2.8
4.0
4.0
5.0
...
0.75
0.75
...
...
...
...
...
...
...
0.50
1.50
...
0.50
1.00
1.00
2.50
...
Copper
--`,,```,``,,`,`,,````,``,,,````-`-`,,`,,`,`,,`---
...
...
...
...
...
...
...
...
...
...
...
...
...
...
...
...
...
...
...
...
...
...
...
NitrogenC
Tantalum,
max
0.05
0.10
...
...
...
...
...
...
...
...
...
...
...
...
...
...
...
...
...
...
...
...
Cerium
...
...
...
...
...
0.004
0.008
Boron
0.025
...
...
...
...
Aluminum
...
W 1.50
2.50
Other
A312/A312M 15
S34565
S34700
S34709
S34751
S34800
S34809
S35045
S35315
S38100
S38815
N08020
N08367
N08800
N08810
...
TP347
TP347H
TP347LN
TP348
TP348H
...
...
TPXM-15
...
Alloy 20
...
800
800H
N08925
N08926
...
...
0.020
0.020
0.05
0.10
0.06
0.10
0.020
0.10
0.030
0.07
0.030
0.04
0.10
0.06
0.10
0.04
0.08
0.08
0.04
0.10
0.005
0.020
0.08
0.08
0.03
Carbon
2.00
1.00
2.00
1.50
1.50
1.50
2.00
2.00
2.00
2.00
2.00
1.50
2.00
2.00
2.00
2.00
5.0
7.0
2.00
Manganese
0.030
0.045
0.040
0.045
0.045
0.045
0.040
0.045
0.040
0.030
0.040
...
0.045
0.045
0.045
0.045
0.045
0.030
Phosphorus
0.010
0.030
0.030
0.015
0.015
0.015
0.030
0.035
0.020
0.030
0.030
0.015
0.030
0.030
0.030
0.030
0.030
0.010
Sulfur
0.50
0.50
1.00
1.00
1.00
1.00
1.00
1.20
2.00
1.50
2.50
5.5
6.5
1.00
1.00
1.00
1.00
1.00
1.00
1.00
1.00
Silicon
23.0
25.0
17.0
19.0
17.0
19.0
17.0
19.0
17.0
19.0
17.0
19.0
25.0
29.0
24.0
26.0
17.0
19.0
13.0
15.0
19.0
21.0
20.0
22.0
19.0
23.0
19.0
23.0
19.0
23.0
19.0
23.0
19.0
21.0
19.0
21.0
Chromium
16.0
18.0
9.0
13.0
9.0
13.0
9.0
13.0
9.0
13.0
9.0
13.0
32.0
37.0
34.0
36.0
17.5
18.5
15.0
17.0
32.0
38.0
23.5
25.5
30.0
35.0
30.0
35.0
30.0
35.0
23.0
28.0
24.0
26.0
24.0
26.0
Nickel
Continued
4.0
5.0
6.0
7.0
6.0
7.0
...
...
0.75
1.50
2.0
3.0
6.0
7.0
...
...
...
...
...
...
...
...
4.0
5.0
...
Molybdenum
...
...
0.15
0.60
0.15
0.60L
...
...
...
...
...
...
0.15
0.60
...
...
...
...
...
...
...
Titanium
0.10
...
...
...
...
...
...
...
...
...
...
...
...
...
...
...
...
...
...
...
...
...
0.10
...
...
...
0.20
0.50J
...
Tantalum,
max
0.10
Columbium
Composition, %B
0.10
0.20
0.15
0.25
0.10
...
...
0.18
0.25
...
...
...
0.12
0.18
...
...
...
0.06
0.10
...
...
0.40
0.60
...
NitrogenC
...
...
...
...
...
...
...
...
...
...
...
...
...
...
...
...
...
...
Vanadium
1.00
2.00
0.80
1.50
0.50
1.50
0.75
0.75
0.75
0.75
1.50
3.0
4.0
0.75
...
...
0.75
...
...
...
...
...
...
Copper
...
...
...
...
...
...
...
...
...
0.03
0.08
...
...
...
...
...
...
...
...
Cerium
...
...
...
...
...
...
...
...
...
...
...
...
...
Boron
...
...
0.15
0.60
0.15
0.60
0.15
0.60L
...
...
...
0.30
0.15
0.60
...
...
Aluminum
FeK
39.5 min.
FeK
39.5 min.
FeK
39.5 min.
Other
New designation established in accordance with Practice E527 and SAE J1086.
Maximum, unless otherwise indicated. Where elipses (...) appear in this table, there is no requirement and analysis for the element need not be determined or reported.
The method of analysis for nitrogen shall be a matter of agreement between the purchaser and manufacturer.
D
For small diameter or thin walls or both, where many drawing passes are required, a carbon maximum of 0.040 % is necessary in grades TP304L and TP316L. Small outside diameter tubes are defined as those less
than 0.500 in. [12.7 mm] in outside diameter and light wall tubes as those less than 0.049 in. [1.20 mm] in average wall thickness (0.044 in. [1.10 mm] in minimum wall thickness).
E
For welded TP316, TP316N, TP316LN, and TP316H pipe, the nickel range shall be 10.014.0 %.
F
For welded pipe, the phosphorus maximum shall be 0.045 %.
G
Ti 5 (C+N) min, 0.70 max.
H
The columbium content shall be not less than ten times the carbon content and not more than 1.00 %.
I
The columbium content shall be not less than eight times the carbon content and not more than 1.0 %.
J
Grade S34751 shall have a columbium (niobium) content of not less than 15 times the carbon content.
K
Iron shall be determined arithmetically by difference of 100 minus the sum of the other specified elements.
L
(Al + Ti) 0.85 1.20.
M
Columbium (Nb) + Tantalum = 8 Carbon min, 1.00 max.
N08904
...
N08811
UNS
DesignationA
Grade
--`,,```,``,,`,`,,````,``,,,````-`-`,,`,,`,`,,`---
TABLE 1
A312/A312M 15
A312/A312M 15
TABLE 2 Annealing Requirements
A
Heat Treating
TemperatureB
2000 F [1100 C]
1925 F [1050 C]
1900 F [1040 C]
1900 F [1040 C]
1900 F [1040 C]
20102140 F
[11001170 C]
20102140 F
[11001170 C]
1920 F [1050 C]
21602280 F
[11801250 C]
2100 F [1150 C]
2100 F [1150 C]
2050 F [1120 C]
19752155 F
[10801180 C]
20502160 F
[11201180 C]
20502140 F
[11201170 C]
2010 F [1100 C]
1950 F [1065 C]
2025 F [1110 C]
17001850 F
[9251010 C]
2050 F [1120 C]
2100 F [1150 C]
2000 F [1100 C]
20102100 F
[11001150 C]
D
D
D
D
D
D
D
D
D
D
D
D
D
D
D
D
New designation established in accordance with Practice E527 and SAE J1086.
Minimum, unless otherwise stated.
C
Quenched in water or rapidly cooled by other means, at a rate sufficient to
prevent re-precipitation of carbides, as demonstrable by the capability of pipes,
heat treated by either separate solution annealing or by direct quenching, of
passing Practices A262, Practice E. The manufacturer is not required to run the
test unless it is specified on the purchase order (see Supplementary Requirement
S7). Note that Practices A262 requires the test to be performed on sensitized
specimens in the low-carbon and stabilized types and on specimens representative of the as-shipped condition for other types. In the case of low-carbon types
containing 3 % or more molybdenum, the applicability of the sensitizing treatment
prior to testing shall be a matter for negotiation between the seller and the
purchaser.
D
Quenched in water or rapidly cooled by other means.
B
12.5
22.5
12.5
15.0
12.5
17.5
12.5
22.5
12.5
15.0
12.5
where:
t
= Nominal Wall Thickness
D = Ordered Outside Diameter
UNS
Designation
Tensile
Strength, min
ksi [MPa]
S20100
S20153
S20400
S20910
S21900
S21904
S24000
S30400
S30403
S30409
S30415
S30451
S30453
S30600
S30601
S30615
S30815
S30908
S30909
S30940
S30941
S31002
S31008
S31009
S31035
S31040
S31041
S31050:
75 [515]
95 [655]
95 [635]
100 [690]
90 [620]
90 [620]
100 [690]
75 [515]
70 [485]
75 [515]
87 [600]
80 [550]
75 [515]
78 [540]
78 [540]
90 [620]
87 [600]
75 [515]
75 [515]
75 [515]
75 [515]
73 [500]
75 [515]
75 [515]
95 [655]
75 [515]
75 [515]
1900 F [1040 C]
NPS Designator
18 to 212 incl., all t/D
ratios
3 to 18 incl., t/D up to
5 % incl.
3 to 18 incl., t/D > 5 %
20 and larger, welded,
all t/D ratios
20 and larger,
seamless, t/D up to
5 % incl.
20 and larger,
seamless, t/D > 5 %
Grade
TP201
TP201LN
...
TPXM-19
TPXM-10
TPXM-11
TPXM-29
TP304
TP304L
TP304H
...
TP304N
TP304LN
...
...
...
...
TP309S
TP309H
TP309Cb
TP309HCb
...
TP310S
TP310H
TP310Cb
TP310HCb
...
t # 0.25 in.
t > 0.25 in.
...
t # 0.187 in. [5.00 mm]
t > 0.187 in. [5.00 mm]
...
...
...
TP316
TP316L
TP316H
...
TP316N
TP316LN
TP317
TP317L
...
...
...
...
...
TP321
Welded
Seamless:
# 38 in.
> 38 in.
TP321H
Welded
Seamless:
# 38 in.
> 38 in.
...
...
...
...
TP347
TP347H
TP347LN
TP348
TP348H
...
...
Welded
Seamless
TPXM-15
84 [580]
78 [540]
S31266
S31272
S31277
S31600
S31603
S31609
S31635
S31651
S31653
S31700
S31703
S31725
S31726
S31727
S31730
S32053
S32100:
[260]
[310]
[330]
[380]
[345]
[345]
[380]
[205]
[170]
[205]
[290]
[240]
[205]
[240]
[255]
[275]
[310]
[205]
[205]
[205]
[205]
[205]
[205]
[205]
[310]
[205]
[205]
39 [270]
37 [255]
98 [675]
95 [655]
109 [750]
65 [450]
112 [770]
75 [515]
70 [485]
75 [515]
75 [515]
80 [550]
75 [515]
75 [515]
75 [515]
75 [515]
80 [550]
80 [550]
70 [480]
93 [640]
45
45
61
29
52
30
25
30
30
35
30
30
30
30
35
36
25
43
[310]
[310]
[420]
[200]
[360]
[205]
[170]
[205]
[205]
[240]
[205]
[205]
[205]
[205]
[240]
[245]
[175]
[295]
75 [515]
30 [205]
75 [515]
70 [485]
30 [205]
25 [170]
75 [515]
30 [205]
S32109:
S32615
S32654
S33228
S34565
S34700
S34709
S34751
S34800
S34809
S35045
S35315
S38100
38
45
48
55
50
50
55
30
25
30
42
35
30
35
37
40
45
30
30
30
30
30
30
30
45
30
30
S31254:
--`,,```,``,,`,`,,````,``,,,````-`-`,,`,,`,`,,`---
Yield
Strength, min
ksi [MPa]
75 [515]
70 [480]
80 [550]
109 [750]
73 [500]
115 [795]
75 [515]
75 [515]
75 [515]
75 [515]
75 [515]
70 [485]
94 [650]
87 [600]
75 [515]
30
25
32
62
27
60
30
30
30
30
30
25
[205]
[170]
[220]
[430]
[185]
[415]
[205]
[205]
[205]
[205]
[205]
[170]
39 [270]
38 [260]
30 [205]
A312/A312M 15
TABLE 4
Grade
Continued
UNS
Designation
Tensile
Strength, min
ksi [MPa]
Yield
Strength, min
ksi [MPa]
...
Alloy 20
S38815
N08020
78 [540]
80 [550]
37 [255]
35 [240]
...
t # 0.187
t > 0.187
800
N08367:
100 [690]
95 [655]
45 [310]
45 [310]
75 [515]
30 [205]
65
65
65
71
87
94
25
25
25
31
43
43
N08800
cold-worked
annealed
hot finished annealed
N08810
N08811
N08904
N08925
N08926
800H
...
...
...
Elongation in 2 in. or
50 mm (or 4D), min, %
All Grades except S31050 and S32615
[450]
[450]
[450]
[490]
[600]
[650]
[170]
[170]
[170]
[215]
[295]
[295]
Longitudinal
35
Transverse
25
S32615, S31050
25
...
S31277, N08925
40
...
N08367, N08020,
N08800, N08810,
N08811
30
...
--`,,```,``,,`,`,,````,``,,,````-`-`,,`,,`,`,,`---
UNS Designation
N08810
N08811
S30409
S30909
S30940
S31009
S31035
S31041
S31609
S32109
S32615
S34709
S34809
Grain Size
5 or coarser
5 or coarser
7 or coarser
6 or coarser
6 or coarser
6 or coarser
7 or coarser
6 or coarser
7 or coarser
7 or coarser
3 or finer
7 or coarser
7 or coarser
A312/A312M 15
length of pipe furnished without the completed manufacturers
hydrostatic test shall include with the mandatory markings the
letters NH.
12.4 The nondestructive electric test shall be in accordance
with Specification A999/A999M.
13. Lengths
13.1 Pipe lengths shall be in accordance with the following
regular practice:
13.1.1 Unless otherwise agreed upon, all sizes from NPS
18 to and including NPS 8 are available in a length up to 24 ft
with the permitted range of 15 to 24 ft. Short lengths are
acceptable and the number and minimum length shall be
agreed upon between the manufacturer and the purchaser.
13.1.2 If definite cut lengths are desired, the lengths required shall be specified in the order. No pipe shall be under the
specified length and no pipe shall be more than 14 in. [6 mm]
over the specified length.
13.1.3 No jointers are permitted unless otherwise specified.
14. Workmanship, Finish, and Appearance
14.1 The finished pipes shall be reasonably straight and
shall have a workmanlike finish. Removal of imperfections by
grinding is permitted, provided the wall thicknesses are not
decreased to less than that permitted in Section 9 of Specification A999/A999M.
15. Repair by Welding
15.1 For welded pipe whose diameter equals or exceeds
NPS 6, and whose nominal wall thickness equals or exceeds
0.200, it is permitted to make weld repairs to the weld seam
with the addition of compatible filler metal using the same
procedures specified for plate defects in the section on Repair
by Welding of Specification A999/A999M.
15.2 Weld repairs of the weld seam shall not exceed 20 % of
the seam length.
15.3 Weld repairs shall be made only with the gas tungstenarc welding process using the same classification of bare filler
rod qualified to the most current AWS Specification A5.9 as the
grade of stainless steel pipe being repaired and as shown in
Table 6. Alternatively, subject to approval by the purchaser,
weld repairs shall be made only with the gas tungsten-arc
welding process using a filler metal more highly alloyed than
the base metal when needed for corrosion resistance or other
properties.
15.4 Pipes that have had weld seam repairs with filler metal
shall be uniquely identified and shall be so stated and identified
on the certificate of tests. When filler metal other than that
listed in Table 6 is used, the filler metal shall be identified on
the certificate of tests.
16. Certification
16.1 In addition to the information required by Specification
A999/A999M, the certification shall state whether or not the
material was hydrostatically tested. If the material was nondestructively tested, the certification shall so state and shall state
Filler Metal
UNS
Designation
TP201
TP201LN
TP304
TP304L
TP304N
TP304LN
TP304H
...
TP309Cb
TP309S
TP310Cb
TP310S
...
S20100
S20153
S30400
S30403
S30451
S30453
S30409
S30601
S30940
S30908
S31040
S31008
S31266
TP316
TP316L
TP316N
TP316LN
TP316H
...
S31272
S31600
S31603
S31651
S31653
S31609
S31730
TP321
S32100
TP347
TP348
TPXM-19
TPXM-29
...
Alloy 20
S34700
S34800
S22100
S28300
N08367
N08020
...
800
800H
S20400
N08800
N08810
N08811
N08925
N08926
...
...
AWS A5.9
Class
...
...
ER308
ER308L
ER308
ER308L
ER308
...
...
...
...
...
ERNiCrMo-4
ERNiCrMo-10
ERNiCrMo-13
ERNiCrMo-14
ERNiCrMo-17
...
ER316
ER316L
ER316
ER316L
ER316H
ERNiCr-3, or
ERNiCrMo-3,
or
ERNiCrMo-4
ER321
ER347
ER347
ER347
ER209
ER240
...
ER320
ER320LR
ER209
ERNiCr-3A
ERNiCr-3A
ERNiCr-3A
...
...
...
...
...
...
S30800, W30840
S30883, W30843
S30880, W30840
S30883, W30843
S30880, W30840
...
...
...
...
...
...
...
...
...
N10276
N06022
N06059
N06686
N06200
...
...
S31680, W31640
S31683, W31643
S31680, W31640
S31683, W31643
S31680, W31640
N06082, N06625, N10276
S32180, W32140
S34780, W34740
S34780, W34740
S34780, W34740
S20980, W32240
S23980, W32440
N06625
N08021
N08022
S20980, W32240
N06082
N06082
N06082
N06625
N06625
--`,,```,``,,`,`,,````,``,,,````-`-`,,`,,`,`,,`---
UNS Designation
A312/A312M 15
18.1.1 When specified in the contract or order, the following
requirements shall be considered in the inquiry, contract or
order, for agencies of the U.S. Government where scale free
pipe or tube is required. These requirements shall take precedence if there is a conflict between these requirements and the
product specifications.
18.1.2 The requirements of Specification A999/A999M for
pipe and Specification A1016/A1016M for tubes shall be
applicable when pipe or tube is ordered to this specification.
18.1.3 Pipe and tube shall be one of the following grades as
specified herein:
Grade
TP304
TP304L
TP304N
TP316
TP316L
TP316N
TP317
TP317L
TP321
TP347
UNS Designation
S30400
S30403
S30451
S31600
S31603
S31651
S31700
S31703
S32100
S34700
18.1.4.1
Specification Number
Tube
Grade
Outside Diameter
Wall
SMLS OR WELDED
ASTM A312
T
304
0.250
0.035
WLD
ASTM A312
P
304
12
0.375
SML
SUPPLEMENTARY REQUIREMENTS
One or more of the following supplementary requirements shall apply only when specified in the
purchase order. The purchaser may specify a different frequency of test or analysis than is provided
in the supplementary requirement. Subject to agreement between the purchaser and manufacturer,
retest and retreatment provisions of these supplementary requirements may also be modified.
S1. Product Analysis
S1.1 For all pipe NPS 5 and larger in nominal size there shall
be one product analysis made of a representative sample from
one piece for each ten lengths or fraction thereof from each
heat of steel.
S1.2 For pipe smaller than NPS 5 there shall be one product
analysis made from ten lengths per heat of steel or from 10 %
of the number of lengths per heat of steel, whichever number
is smaller.
S1.3 Individual lengths failing to conform to the chemical
requirements specified in Section 7 shall be rejected.
--`,,```,``,,`,`,,````,``,,,````-`-`,,`,,`,`,,`---
A312/A312M 15
--`,,```,``,,`,`,,````,``,,,````-`-`,,`,,`,`,,`---
R 5 ~W0 2 W!~B0 2 B!
where:
W0 =
W =
B0 =
B =
average
average
average
average
10
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Not for Resale, 05/26/2015 11:08:22 MDT
A312/A312M 15
APPENDIX
(Nonmandatory Information)
X1. DIMENSIONS OF WELDED AND SEAMLESS STAINLESS STEEL PIPE
NOTE 1The decimal thickness listed for the respective pipe sizes represents their nominal or average wall dimensions.
NPS
Designator
1 2
3 4
1.0
1 1 4
1 1 2
2
2 1 2
3
3 1 2
4
5
6
8
10
12
14
16
18
20
22
24
30
18
14
38
--`,,```,``,,`,`,,````,``,,,````-`-`,,`,,`,`,,`---
Outside Diameter
in.
0.405
0.540
0.675
0.840
1.050
1.315
1.660
1.900
2.375
2.875
3.500
4.000
4.500
5.563
6.625
8.625
10.750
12.750
14.000
16.000
18.000
20.000
22.000
24.000
30.000
mm
10.29
13.72
17.15
21.34
26.67
33.40
42.16
48.26
60.33
73.03
88.90
101.60
114.30
141.30
168.28
219.08
273.05
323.85
355.60
406.40
457.20
508.00
558.80
609.60
762.00
Schedule 10SA
Schedule 40S
Schedule 80S
in.
mm
in.
mm
in.
mm
in.
mm
...
...
...
0.065
0.065
0.065
0.065
0.065
0.065
0.083
0.083
0.083
0.083
0.109
0.109
0.109
0.134
0.156
0.156
0.165
0.165
0.188
0.188
0.218
0.250
...
...
...
1.65
1.65
1.65
1.65
1.65
1.65
2.11
2.11
2.11
2.11
2.77
2.77
2.77
3.40
3.96
3.96
4.19
4.19
4.78
4.78
5.54
6.35
0.049
0.065
0.065
0.083
0.083
0.109
0.109
0.109
0.109
0.120
0.120
0.120
0.120
0.134
0.134
0.148
0.165
0.180
0.188B
0.188B
0.188B
0.218B
0.218B
0.250
0.312
1.24
1.65
1.65
2.11
2.11
2.77
2.77
2.77
2.77
3.05
3.05
3.05
3.05
3.40
3.40
3.76
4.19
4.57
4.78B
4.78B
4.78B
5.54B
5.54B
6.35
7.92
0.068
0.088
0.091
0.109
0.113
0.133
0.140
0.145
0.154
0.203
0.216
0.226
0.237
0.258
0.280
0.322
0.365
0.375B
...
...
...
...
...
...
...
1.73
2.24
2.31
2.77
2.87
3.38
3.56
3.68
3.91
5.16
5.49
5.74
6.02
6.55
7.11
8.18
9.27
9.52B
...
...
...
...
...
...
...
0.095
0.119
0.126
0.147
0.154
0.179
0.191
0.200
0.218
0.276
0.300
0.318
0.337
0.375
0.432
0.500
0.500B
0.500B
...
...
...
...
...
...
...
2.41
3.02
3.20
3.73
3.91
4.55
4.85
5.08
5.54
7.01
7.62
8.08
8.56
9.52
10.97
12.70
12.70B
12.70B
...
...
...
...
...
...
...
Schedules 5S and 10S wall thicknesses do not permit threading in accordance with the American National Standard for Pipe Threads (ANSI B1.20.1).
These do not conform to the American National Standard for Welded and Seamless Wrought Steel Pipe (ANSI B36.101979).
SUMMARY OF CHANGES
Committee A01 has identified the location of selected changes to this specification since the last issue,
A312/A312M-14b, that may impact the use of this specification. (Approved March 1, 2015)
(1) Revised filler metal choices for UNS S31266 in Table 6.
Committee A01 has identified the location of selected changes to this specification since the last issue,
A312/A312M-14a, that may impact the use of this specification. (Approved November 1, 2014)
(1) The nicked content for UNS S30451 in Table 1 was
corrected.
Committee A01 has identified the location of selected changes to this specification since the last issue,
A312/A312M-14, that may impact the use of this specification. (Approved October 1, 2014)
(1) Added S30601 to Table 1, Table 2, Table 4, and Table 6.
(2) Added grade S31730 to Table 1, Table 4, and Table 6.
Copyright ASTM International
Provided by IHS under license with ASTM
No reproduction or networking permitted without license from IHS
A312/A312M 15
Committee A01 has identified the location of selected changes to this specification since the last issue,
A312/A312M-13b, that may impact the use of this specification. (Approved March 1, 2014)
(1) Revised P, Cb, N, Cu, and W content for UNS S31035 in
Table 1.
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of infringement of such rights, are entirely their own responsibility.
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--`,,```,``,,`,`,,````,``,,,````-`-`,,`,,`,`,,`---
12
Licensee=BP International/5928366101, User=Cavalli, Marcelo
Not for Resale, 05/26/2015 11:08:22 MDT