Nothing Special   »   [go: up one dir, main page]

US3908545A - Inking system with means for augmenting transferred ink - Google Patents

Inking system with means for augmenting transferred ink Download PDF

Info

Publication number
US3908545A
US3908545A US494993A US49499374A US3908545A US 3908545 A US3908545 A US 3908545A US 494993 A US494993 A US 494993A US 49499374 A US49499374 A US 49499374A US 3908545 A US3908545 A US 3908545A
Authority
US
United States
Prior art keywords
ink
roller
speed
fountain
press
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Lifetime
Application number
US494993A
Inventor
Claus Simeth
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Roland Offsetmaschinenfabrik Faber and Schleicher AG
Original Assignee
Roland Offsetmaschinenfabrik Faber and Schleicher AG
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Roland Offsetmaschinenfabrik Faber and Schleicher AG filed Critical Roland Offsetmaschinenfabrik Faber and Schleicher AG
Application granted granted Critical
Publication of US3908545A publication Critical patent/US3908545A/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

Links

Images

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41FPRINTING MACHINES OR PRESSES
    • B41F31/00Inking arrangements or devices
    • B41F31/02Ducts, containers, supply or metering devices
    • B41F31/10Applications of feed or duct rollers

Definitions

  • An ink feed system employing a ductor roller oscillatable between a slowly driven fountain roller and more rapidly driven ink drum for pick-up and transfer of ink respectively in which auxiliary means are provided for temporarily speeding up the rotation of the fountain roller thereby to increase the amount of ink fed during each cycle of the ductor roller so as to increase the flow of ink to the plate cylinder for the making of proof copies during initial adjustment and start-up of the press.
  • the speed-up is obtained by an auxiliary electric motor having a series-connected switch interlocked with the oscillating movement of the ductor roller.
  • an object of the present invention to provide, in a fountain roller drive connection, means for temporarily increasing the driving speed for in creasing the rate of ink flow during initial adjustment and start-up. It is another object of the invention to provide means for temporarily increasing the speed of a fountain roller by remote control from a convenient observation post where, in the case of multi-color presses, means may be provided for by bringing about a simultaneous increase in the amount of ink fed in each of the colors.
  • FIG. 1 is a schematic diagram showing an elevation, the rollers typically provided in an inking system and to which the present invention has been applied.
  • FIG. 2 shows the fountain roller of FIG. 1 with normal driving means and an auxiliary electric driving motor with its associated circuitry and with isolation being provided by overrunning clutches.
  • FIG. 3 shows a modified form of the invention in which the temporary increase in speed is brought about by a shiftable transmission providing normal and high speed modes.
  • FIG. 3a is a diagram showing a type of shiftable transmission usable in the arrangement illustrated in FIG. 3.
  • an ink fountain having a trough 11 containing a body of ink 12 in contact with a slowly rotating fountain roller 13 with a shaft 14.
  • the trough 11 has a lip 15 which is spaced at a predetermined distance with respect to the surface of the roller to produce a film of ink, as the roller rotates in the direction shown, which is relatively thick compared to the thin film which is transferred from form roller to plate cylinder in a conventional press.
  • an ink drum 16 Spaced from the fountain roller 13 is an ink drum 16 having associated rollers 17, 18 with the roller 18 serving to feed ink to the next drum 19 and the rest of the rollers in the system, terminating in the form rollers.
  • a ductor roller 20 Interposed in the space between the fountain roller 13 and ink drum 16 is a ductor roller 20, mounted upon a pair of arms 21 (only one being shown) hinged to the press frame at 22 and having a switch operating arm 23 to which reference will be made.
  • the arm 21 is oscillated back and forth by a conventional oscillating drive 25.
  • the ink drum 15 is rotated by the press drive 26 at press speed, that is, at a peripheral speed which corresponds to the peripheral speed of the plate cylinder.
  • the fountain roller 13 is normally rotated at a speed which is only a fraction of press speed by a set of stepdown gearing from the press drive. This has been diagrammatically illustrated in FIG. 1 by the block 27 labeled step-down connection.
  • the oscillating drive 25 which rocks the ductor roller back and forth will normally be powered by the press drive 26.
  • means (not shown) will normally be provided for the purpose of reciprocating, or vibrating, the ink drum 15 back and forth for lateral distribution of the ink received from the ductor although, in the broader aspects of the present invention, vibration of the drum 15 is not essential.
  • auxiliary drive means are provided for the fountain roller for temporarily increasing the speed thereof to bring about a temporary increase in the amount of ink transferred to the ink drum during a cycle of ductor movement, the auxiliary drive being remotely actuatable by the press operator from a control station to facilitate the making of proof copies during initial adjustment and start-up of the press.
  • electric motor 30 having a shaft 31 is mechanically coupled to the shaft of the fountain roller 13.
  • the electric motor is en ergized by terminals 32 connected to a voltage source 33 and having a remotely located manual control switch 35.
  • the electric motor may be either of the AC or DC type, preferably with built-in speed reduction for turning the output shaft 31 at a predetermined speed which is, nonetheless, substantially higher than the normal speed of rotation of the fountain roller, for example, two to three times as great.
  • the fountain roller is coupled to the alternative sources of driving energy by one-way drive connections in the form of a first overrunning clutch 41 interposed in drive shaft 14 and a second overrunning clutch 42 interposed in the drive shaft 31.
  • the overrunning clutches are per se entirely conventional and they may, for example, be of the type employing a coil spring having light encircling engagement with a shaft or pulley, and with the spring tightening to transmit torque in one direction of relative rotation and loosening, for idle slippage, in the opposite direction of relative rotation.
  • clutch 41 In operation, with the motor 30 stationary the shaft 14 is driven by clutch 41, with idle slippage taking place'in clutch 42.
  • clutch 42 tightens to provide a positive high-speed driving connection, while idle slippage takes place at clutch 41.
  • the clutches 41, 42 perform a selective isolating function, the higher speed taking over control, and preventing any direct connection or interaction between the two power sources.
  • means may be provided in the control circuit for the motor so that the motor is energized for temporary high speed driving only during that time that the ductor roller 20 is in its pick-up position in engagement with the surface of the fountain roller, being deenergized at all other times.
  • a normally open interlock switch 45 which is arranged in the path of movement of the arm 23 which is rigidly connected to the arm 21 upon which the ductor roller 20 is carried.
  • switch 45 is closed, completing a circuit to the motor, when the ductor roller occupies the position shown dotted in FIG. 1.
  • the use of such interlock switch makes it unnecessary for the press operator to time the interval of speed-up to coincide with the pick-up phase of the ductor. The operator, then, may simply close the manual control switch 35 with assurance that closure of the interlock 45 in series therewith will produce automatic timing of the high speed drive connection.
  • FIGS. 1 and 2 While the installation illustrated in FIGS. 1 and 2 has to do with only a single ink feeding arrangement, it will be understood that the invention is particularly applicable to multi-color presses in which individual press units are arranged in satellite fashion about a common impression cylinder.
  • presses of this type the construction is so compact that it is difficult for the operator to manually advance the various fountain rollers, and it is difficult, indeed, to observe when the ductors associated with the respective fountain rollers are in the pick-up phase.
  • all of the control switches 35 associated with the respective motors 30 may be conveniently controlled, and simultaneously energized, if desired, (by coupling the switches mechanically together) at the same control station. As a result, the necessary proof copies may be obtained more reliably and in a fraction of the time previously required.
  • the motor 30 in the above embodiment of the invention has been assumed to be a motor of single operating speed which permits simplified control, or switching, circuitry and which suffices for most applications.
  • the invention contemplates use of a motor having more than one speed, indeed, two or more speeds, controlled by a speed selector switch at the operating station. This has not been illustrated since multi-speed motors, having whatever selectable speeds may be desired, are a readily available catalog item.
  • an electric motor constitutes a convenient auxiliary drive means
  • the invention is not limited to use of an electric motor, and includes use of a remotely shiftable transmission interposed in the connection between the press drive and the main fountain roller drive shaft.
  • the press drive 26a feeds a drive connection 27a for driving a fountain roller 13a having a shaft' 14a.
  • a transmission 50 having an input shaft 51 and an output shaft 52. While the transmission 50 may take various forms, the form illustrated in FIG. 3a will suffice to illustrate the principle involved.
  • the input shaft has a slow speed drive gear 53 and high speed drive gear 54.
  • the latter are selectively engageable by driven gears 55, 56 on the output shaft.
  • the gears 55, 56 have a slidable spline connection 57, with positioning by a yoke 58.
  • the latter shown in neutral, is urged into normal position by a return spring 59.
  • a solenoid 60 is provided having a plunger 61 and coil 62 having electrical connections 63.
  • the solenoid is energized by a power source 34a under the control of a manual switch 35a and interlock switch 45a.
  • the transmission 50 will operate in its normal mode to rotate the fountain roller 13a at the regular, slow operating speed.
  • the switch 35a closes the switch 35a a circuit is set up for the interlock switch 36a so that when the ductor 20 is in its pick-up position the solenoid 60 will be energized shifting the transmission 50 into its temporary high speed mode in which ink is transferred to the ductor roller at a greater rate as desired during the initial adjustment and start-up.
  • differential gearing in which the regular input and output are connected as at 51, 52, and with the third, or differential connection being coupled to an electric motor having irreversible gearing (or an automatic brake) to hold the third connection stationary when the motor is deenergized, but otherwise having the same control circuit as disclosed in FIG. 2.
  • the present invention permits the speed of the fountain roller, or rol-.
  • mote is a relative one not limited to any specific amount of separation and has to do with the fact that the press operator is no longer required to reach in and manually rotate an ink fountain at a high temporary rate of speed.
  • the present arrangement has the added advantage that the high speed mode takes place at a mechanically controlled rate (dependingupon motor.
  • the combination comprising an ink fountain having a fountain roller with means for depositing a relatively thick film of ink thereon, an ink drum spaced from the fountain roller, a ductor roller interposed between the fountain roller and the ink.
  • means for oscillating the ductor roller between a pick-up position in which the ductor roller is in rolling engagement with the fountain roller and a transfer position in which the ductor roller is in rolling engagement with the ink drum means including a press drive for driving the ink drum at press speed, means including a step-down driving connection for normally driving the fountain roller at an operating speed which is substantially slower than press speed, auxiliary drive means coupled to the fountain roller for temporarily increasing the speed thereof to bring about a temporary increase in the amount of ink transferred to the ink drum during a cycle of ductor movement, and control means temporarily actuatable by the press operator for energizing the auxiliary drive means thereby to increase rate of ink feed to facilitate the making of proof copies being independent of press speed.

Landscapes

  • Inking, Control Or Cleaning Of Printing Machines (AREA)

Abstract

An ink feed system employing a ductor roller oscillatable between a slowly driven fountain roller and more rapidly driven ink drum for pick-up and transfer of ink respectively in which auxiliary means are provided for temporarily speeding up the rotation of the fountain roller thereby to increase the amount of ink fed during each cycle of the ductor roller so as to increase the flow of ink to the plate cylinder for the making of proof copies during initial adjustment and start-up of the press. In the preferred embodiment the speed-up is obtained by an auxiliary electric motor having a series-connected switch interlocked with the oscillating movement of the ductor roller.

Description

United States Patent Simeth 1 1 Sept. 30, 1975 [75] Inventor: Claus Simeth, Offenbach, Germany Roland Offsetmaschinenfabrik Faber & Schleicher AG 221 Filed: Aug. 5, 1974 211 Appl. No.: 494,993
[73] Assignee:
2,285,052 6/1942 Rosen 1 101/350 2,406,928 9/1946 Taylor et a1. 101/350 2,971,461 2/1961 Bradford et a1 101/350 X 3,170,397 2/1965 Dutro ct a1. 101/350 3,191,528 6/1965 Jorgcnsen 101/350 X 3,584,579 6/1971 Rothenberg [01/350 3,707,123 12/1972 Heasman et a1. 101/207 3,822,643 7/1974 Mikan 101/148 FOREIGN PATENTS OR APPLICATIONS 1,025,717 4/1953 France 101/350 Primary Examiner.1. Reed Fisher Attorney, Agent, or FirmWolfe, Hubbard, Leydig, Voit & Osann, Ltd.
[ 5 7 ABSTRACT An ink feed system employing a ductor roller oscillatable between a slowly driven fountain roller and more rapidly driven ink drum for pick-up and transfer of ink respectively in which auxiliary means are provided for temporarily speeding up the rotation of the fountain roller thereby to increase the amount of ink fed during each cycle of the ductor roller so as to increase the flow of ink to the plate cylinder for the making of proof copies during initial adjustment and start-up of the press. In the preferred embodiment the speed-up is obtained by an auxiliary electric motor having a series-connected switch interlocked with the oscillating movement of the ductor roller.
1 Claim, 4 Drawing Figures US. Patent Sept. 30,1975 3,908,545
INKING SYSTEM WITH MEANS FOR AUGMIENTING TRANSF ERRED INK During adjustment and start-up of a printing press the pressman usually finds it desirable to temporarily increase the ink being fed from the ink fountain. Such temporary increase is generally obtained by manual rotation of the fountain roller at a higher than normal speed. In printing presses capable of printing four to six colors, requiring separate manipulation at each fountain, the process is time consuming and the pressman cannot, in any event, augment the ink flow simultaneously at each of the fountains. Moreover, in machines of the satellite type the fountain rollers are poorly accessible and difficult to keep under observation. A particularly difficult problem is presented when printing takes place at high speed and the reaction time of the pressman is not sufficiently fast as to allow him to momentarily increase the speed of the fountain roller at the precise time that the ductor roller is in its pick-up position.
It is, accordingly, an object of the present invention to provide, in a fountain roller drive connection, means for temporarily increasing the driving speed for in creasing the rate of ink flow during initial adjustment and start-up. It is another object of the invention to provide means for temporarily increasing the speed of a fountain roller by remote control from a convenient observation post where, in the case of multi-color presses, means may be provided for by bringing about a simultaneous increase in the amount of ink fed in each of the colors.
It is a more detailed object of the present invention to provide means for obtaining temporary increase in the amount of ink supplied by a fountain roller by temporarily increasing the speed thereof, but with the increase in speed being limited to those intervals when the ductor roller is in rolling, pick-up engagement with the fountain roller.
Other objects and advantages of the invention will become apparent upon reading the attached detailed description and upon reference to the drawings in which:
FIG. 1 is a schematic diagram showing an elevation, the rollers typically provided in an inking system and to which the present invention has been applied.
FIG. 2 shows the fountain roller of FIG. 1 with normal driving means and an auxiliary electric driving motor with its associated circuitry and with isolation being provided by overrunning clutches.
FIG. 3 shows a modified form of the invention in which the temporary increase in speed is brought about by a shiftable transmission providing normal and high speed modes.
FIG. 3a is a diagram showing a type of shiftable transmission usable in the arrangement illustrated in FIG. 3.
While the invention has been described in connection with certain preferred embodiments, it will be understood that I do not intend that the invention be limited to such embodiments but I intend, on the contrary,
.to cover the various alternative and equivalent forms of the invention included within the spirit and scope of the appended claims.
Turning now to the drawings there is disclosed an ink fountain having a trough 11 containing a body of ink 12 in contact with a slowly rotating fountain roller 13 with a shaft 14. The trough 11 has a lip 15 which is spaced at a predetermined distance with respect to the surface of the roller to produce a film of ink, as the roller rotates in the direction shown, which is relatively thick compared to the thin film which is transferred from form roller to plate cylinder in a conventional press.
Spaced from the fountain roller 13 is an ink drum 16 having associated rollers 17, 18 with the roller 18 serving to feed ink to the next drum 19 and the rest of the rollers in the system, terminating in the form rollers.
Interposed in the space between the fountain roller 13 and ink drum 16 is a ductor roller 20, mounted upon a pair of arms 21 (only one being shown) hinged to the press frame at 22 and having a switch operating arm 23 to which reference will be made. The arm 21 is oscillated back and forth by a conventional oscillating drive 25.
The ink drum 15 is rotated by the press drive 26 at press speed, that is, at a peripheral speed which corresponds to the peripheral speed of the plate cylinder. The fountain roller 13 is normally rotated at a speed which is only a fraction of press speed by a set of stepdown gearing from the press drive. This has been diagrammatically illustrated in FIG. 1 by the block 27 labeled step-down connection. The oscillating drive 25 which rocks the ductor roller back and forth will normally be powered by the press drive 26. Also, means (not shown) will normally be provided for the purpose of reciprocating, or vibrating, the ink drum 15 back and forth for lateral distribution of the ink received from the ductor although, in the broader aspects of the present invention, vibration of the drum 15 is not essential.
In accordance with the present invention auxiliary drive means are provided for the fountain roller for temporarily increasing the speed thereof to bring about a temporary increase in the amount of ink transferred to the ink drum during a cycle of ductor movement, the auxiliary drive being remotely actuatable by the press operator from a control station to facilitate the making of proof copies during initial adjustment and start-up of the press. Thus referring to FIG. 2 and electric motor 30 having a shaft 31 is mechanically coupled to the shaft of the fountain roller 13. The electric motor is en ergized by terminals 32 connected to a voltage source 33 and having a remotely located manual control switch 35. The electric motor may be either of the AC or DC type, preferably with built-in speed reduction for turning the output shaft 31 at a predetermined speed which is, nonetheless, substantially higher than the normal speed of rotation of the fountain roller, for example, two to three times as great.
In carrying out the invention the fountain roller is coupled to the alternative sources of driving energy by one-way drive connections in the form of a first overrunning clutch 41 interposed in drive shaft 14 and a second overrunning clutch 42 interposed in the drive shaft 31. It will be understood that the overrunning clutches are per se entirely conventional and they may, for example, be of the type employing a coil spring having light encircling engagement with a shaft or pulley, and with the spring tightening to transmit torque in one direction of relative rotation and loosening, for idle slippage, in the opposite direction of relative rotation.
Thus, in operation, with the motor 30 stationary the shaft 14 is driven by clutch 41, with idle slippage taking place'in clutch 42. However, when the motor 30 is energized driving the shaft 31 at higher than normal fountain roller speed, clutch 42 tightens to provide a positive high-speed driving connection, while idle slippage takes place at clutch 41. Thus the clutches 41, 42 perform a selective isolating function, the higher speed taking over control, and preventing any direct connection or interaction between the two power sources.
In accordance with a further aspect of the present invention means may be provided in the control circuit for the motor so that the motor is energized for temporary high speed driving only during that time that the ductor roller 20 is in its pick-up position in engagement with the surface of the fountain roller, being deenergized at all other times. This is accomplished by a normally open interlock switch 45 which is arranged in the path of movement of the arm 23 which is rigidly connected to the arm 21 upon which the ductor roller 20 is carried. Thus switch 45 is closed, completing a circuit to the motor, when the ductor roller occupies the position shown dotted in FIG. 1. The use of such interlock switch makes it unnecessary for the press operator to time the interval of speed-up to coincide with the pick-up phase of the ductor. The operator, then, may simply close the manual control switch 35 with assurance that closure of the interlock 45 in series therewith will produce automatic timing of the high speed drive connection.
' While the installation illustrated in FIGS. 1 and 2 has to do with only a single ink feeding arrangement, it will be understood that the invention is particularly applicable to multi-color presses in which individual press units are arranged in satellite fashion about a common impression cylinder. In presses of this type the construction is so compact that it is difficult for the operator to manually advance the various fountain rollers, and it is difficult, indeed, to observe when the ductors associated with the respective fountain rollers are in the pick-up phase. By the present remote control speed-up arrangement, all of the control switches 35 associated with the respective motors 30 may be conveniently controlled, and simultaneously energized, if desired, (by coupling the switches mechanically together) at the same control station. As a result, the necessary proof copies may be obtained more reliably and in a fraction of the time previously required.
For simplicity, the motor 30 in the above embodiment of the invention has been assumed to be a motor of single operating speed which permits simplified control, or switching, circuitry and which suffices for most applications. However, it will be understood that the invention contemplates use of a motor having more than one speed, indeed, two or more speeds, controlled by a speed selector switch at the operating station. This has not been illustrated since multi-speed motors, having whatever selectable speeds may be desired, are a readily available catalog item.
ALTERNATE EMBODIMENT While an electric motor constitutes a convenient auxiliary drive means, it will be appreciated by one skilled in the art that the invention is not limited to use of an electric motor, and includes use of a remotely shiftable transmission interposed in the connection between the press drive and the main fountain roller drive shaft. Thus, referring to FIGS. 3 and 3a, where corresponding reference numerals have been employed with addition of subscript a, the press drive 26a feeds a drive connection 27a for driving a fountain roller 13a having a shaft' 14a. Interposed between the drive connection 27a and the shaft 14a is a transmission 50 having an input shaft 51 and an output shaft 52. While the transmission 50 may take various forms, the form illustrated in FIG. 3a will suffice to illustrate the principle involved. In this transmission the input shaft has a slow speed drive gear 53 and high speed drive gear 54. The latter are selectively engageable by driven gears 55, 56 on the output shaft. To provide the selective engagement, the gears 55, 56 have a slidable spline connection 57, with positioning by a yoke 58. The latter, shown in neutral, is urged into normal position by a return spring 59. To shift the yoke to the high speed mode a solenoid 60 is provided having a plunger 61 and coil 62 having electrical connections 63. The solenoid is energized by a power source 34a under the control of a manual switch 35a and interlock switch 45a.
The operation, then, is equivalent to that discussed in FIG. 2. Normally, and without operator intervention, the transmission 50 will operate in its normal mode to rotate the fountain roller 13a at the regular, slow operating speed. However, when the operator at the control station closes the switch 35a a circuit is set up for the interlock switch 36a so that when the ductor 20 is in its pick-up position the solenoid 60 will be energized shifting the transmission 50 into its temporary high speed mode in which ink is transferred to the ductor roller at a greater rate as desired during the initial adjustment and start-up. While the two embodiments suffice to show the generic nature of the invention, one skilled in the art will appreciate that there are still-other equivalents which may be used, for example, differential gearing in which the regular input and output are connected as at 51, 52, and with the third, or differential connection being coupled to an electric motor having irreversible gearing (or an automatic brake) to hold the third connection stationary when the motor is deenergized, but otherwise having the same control circuit as disclosed in FIG. 2.
Although it has been emphasized that the present invention permits the speed of the fountain roller, or rol-.
lers, to be enhanced conveniently from a remote control station, it will be understood-that the term re.
mote is a relative one not limited to any specific amount of separation and has to do with the fact that the press operator is no longer required to reach in and manually rotate an ink fountain at a high temporary rate of speed. The present arrangement has the added advantage that the high speed mode takes place at a mechanically controlled rate (dependingupon motor.
speed and transmission ratio) so that operation is less dependent upon the skill and judgment of the press operator. Indeed, where interlock switches 45, 45a are used the operator is freed from the problem of synchronizing the high speed mode with the pick-up interval of the ductor roller. i
What I claim is:
1. In a printing press, the combination comprising an ink fountain having a fountain roller with means for depositing a relatively thick film of ink thereon, an ink drum spaced from the fountain roller, a ductor roller interposed between the fountain roller and the ink.
drum, means for oscillating the ductor roller between a pick-up position in which the ductor roller is in rolling engagement with the fountain roller and a transfer position in which the ductor roller is in rolling engagement with the ink drum, means including a press drive for driving the ink drum at press speed, means including a step-down driving connection for normally driving the fountain roller at an operating speed which is substantially slower than press speed, auxiliary drive means coupled to the fountain roller for temporarily increasing the speed thereof to bring about a temporary increase in the amount of ink transferred to the ink drum during a cycle of ductor movement, and control means temporarily actuatable by the press operator for energizing the auxiliary drive means thereby to increase rate of ink feed to facilitate the making of proof copies being independent of press speed.

Claims (1)

1. In a printing press, the combination comprising an ink fountain having a fountain roller with means for depositing a relatively thick film of ink thereon, an ink drum spaced from the fountain roller, a ductor roller interposed between the fountain roller and the ink drum, means for oscillating the ductor roller between a pick-up position in which the ductor roller is in rolling engagement with the fountain roller and a transfer position in which the ductor roller is in rolling engagement with the ink drum, means including a press drive for driving the ink drum at press speed, means including a step-down driving connection for normally driving the fountain roller at an operating speed which is substantially slower than press speed, auxiliary drive means coupled to the fountain roller for temporarily increasing the speed thereof to bring about a temporary increase in the amount of ink transferred to the ink drum during a cycle of ductor movement, and control means temporarily actuatable by the press operator for energizing the auxiliary drive means thereby to increase rate of ink feed to facilitate the making of proof copies during initial adjustment and start-up of the press, the control means including an interlock switch effectively connected in series therewith and having an operating connection to the ductor roller so that the increase in speed of the fountain roller is limited substantially to that interval in which the ductor roller is in rolling engagement with the fountain roller, the fountain rather being continuously driven and the control means for temporarily energizing the auxiliary driving motor being independent of press speed.
US494993A 1973-08-09 1974-08-05 Inking system with means for augmenting transferred ink Expired - Lifetime US3908545A (en)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE2340300A DE2340300C3 (en) 1973-08-09 1973-08-09 Ink fountain roller for a lifter inking unit on printing machines

Publications (1)

Publication Number Publication Date
US3908545A true US3908545A (en) 1975-09-30

Family

ID=5889285

Family Applications (1)

Application Number Title Priority Date Filing Date
US494993A Expired - Lifetime US3908545A (en) 1973-08-09 1974-08-05 Inking system with means for augmenting transferred ink

Country Status (6)

Country Link
US (1) US3908545A (en)
DE (1) DE2340300C3 (en)
FR (1) FR2240109B1 (en)
GB (1) GB1478369A (en)
IT (1) IT1017810B (en)
SE (1) SE403732B (en)

Cited By (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4198908A (en) * 1977-03-11 1980-04-22 Veb Polygraph Druckmaschinenwerke Leipzig Drive for an ink supplying device of a rotary printing press
US4570539A (en) * 1983-08-30 1986-02-18 M.A.N.-Roland Druckmaschinen Aktiengesellschaft Method of adjusting the inking unit of a printing machine and a measuring device for performing the same
US4660470A (en) * 1983-10-20 1987-04-28 M.A.N.-Roland Druckmaschinen Aktiengesellschaft Inking unit pre-adjustment method
DE4140048A1 (en) * 1991-12-05 1993-06-09 Man Roland Druckmaschinen Ag, 6050 Offenbach, De INK FOR A PRINTING MACHINE, ESPECIALLY BOW-OFFSET PRINTING MACHINE
JP2570161Y2 (en) 1988-12-19 1998-05-06 株式会社 小森コーポレーション Ink density control device
US6029573A (en) * 1997-06-19 2000-02-29 Bobst, S.A. Multifunctional inking station for a flexographic printing machine
US6227113B1 (en) 1998-04-06 2001-05-08 Heidelberger Druckmaschinen Ag Printing machine and method of operating a printing machine
US6481352B2 (en) * 1999-12-06 2002-11-19 Heidelberger Druckmaschinen Ag Method for controlling a quantity of ink in an inking unit
US6736060B2 (en) * 2000-09-20 2004-05-18 Koenig & Bauer Aktiengesellschaft Printing unit
US20170225451A1 (en) * 2014-08-09 2017-08-10 manroland sheetfed GmbH Highly dynamic ink density control

Families Citing this family (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE2658362C3 (en) * 1976-12-23 1984-08-09 Hinterkopf, Kurt G., Dipl.-Ing. (FH), 7332 Eislingen Inking unit for a printing machine, especially for printing tubes, sleeves and the like.
DD140440A1 (en) * 1978-10-28 1980-03-05 Horst Schulz COLOR WORK FOR PRINTING MACHINES
DE2945894C2 (en) * 1979-11-14 1982-08-19 M.A.N.- Roland Druckmaschinen AG, 6050 Offenbach Ink fountain roller drive device of an inking unit for printing machines
DD153962A3 (en) * 1980-04-10 1982-02-17 Hans Johne DRIVE DEVICE FOR WETTING WORKS ON PRINTING MACHINES
US4524692A (en) * 1984-04-18 1985-06-25 Didde Graphic Systems Corporation Electronic ink flow control for printing
DE4013462A1 (en) * 1990-04-27 1991-11-07 Heidelberger Druckmasch Ag DEVICE FOR LACQUERING PRINTED SHEETS ON PRINTING MACHINES

Citations (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US1785158A (en) * 1927-09-23 1930-12-16 Wood Newspaper Mach Corp Ink-fountain drive
US2282655A (en) * 1941-06-28 1942-05-12 Hoe & Co R Inking mechanism for printing machines
US2285052A (en) * 1941-07-11 1942-06-02 Wood Newspaper Mach Corp Variable fountain ink supply for presses
US2406928A (en) * 1943-03-02 1946-09-03 Goss Printing Press Co Ltd Fountain inker drive mechanism
US2971461A (en) * 1955-04-22 1961-02-14 Harris Intertype Corp Method and means for measuring ink film thickness
US3170397A (en) * 1962-10-09 1965-02-23 Orville V Dutro Ink fountain and ductor roll drive
US3191528A (en) * 1963-02-21 1965-06-29 Graphic Arts Technical Foundat Automatic dampener control for a rotary lithographic press
US3584579A (en) * 1968-12-03 1971-06-15 Harris Intertype Corp Sensing probe and control for press inker embodying same
US3707123A (en) * 1969-11-14 1972-12-26 Paper Board Printing Res Ass Apparatus for detecting changes in the thickness of an ink film on the roller system of a printing press
US3822643A (en) * 1973-01-26 1974-07-09 Pitney Bowes Inc Dampening control circuit for off-set printing apparatus

Patent Citations (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US1785158A (en) * 1927-09-23 1930-12-16 Wood Newspaper Mach Corp Ink-fountain drive
US2282655A (en) * 1941-06-28 1942-05-12 Hoe & Co R Inking mechanism for printing machines
US2285052A (en) * 1941-07-11 1942-06-02 Wood Newspaper Mach Corp Variable fountain ink supply for presses
US2406928A (en) * 1943-03-02 1946-09-03 Goss Printing Press Co Ltd Fountain inker drive mechanism
US2971461A (en) * 1955-04-22 1961-02-14 Harris Intertype Corp Method and means for measuring ink film thickness
US3170397A (en) * 1962-10-09 1965-02-23 Orville V Dutro Ink fountain and ductor roll drive
US3191528A (en) * 1963-02-21 1965-06-29 Graphic Arts Technical Foundat Automatic dampener control for a rotary lithographic press
US3584579A (en) * 1968-12-03 1971-06-15 Harris Intertype Corp Sensing probe and control for press inker embodying same
US3707123A (en) * 1969-11-14 1972-12-26 Paper Board Printing Res Ass Apparatus for detecting changes in the thickness of an ink film on the roller system of a printing press
US3822643A (en) * 1973-01-26 1974-07-09 Pitney Bowes Inc Dampening control circuit for off-set printing apparatus

Cited By (11)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4198908A (en) * 1977-03-11 1980-04-22 Veb Polygraph Druckmaschinenwerke Leipzig Drive for an ink supplying device of a rotary printing press
US4570539A (en) * 1983-08-30 1986-02-18 M.A.N.-Roland Druckmaschinen Aktiengesellschaft Method of adjusting the inking unit of a printing machine and a measuring device for performing the same
US4660470A (en) * 1983-10-20 1987-04-28 M.A.N.-Roland Druckmaschinen Aktiengesellschaft Inking unit pre-adjustment method
JP2570161Y2 (en) 1988-12-19 1998-05-06 株式会社 小森コーポレーション Ink density control device
DE4140048A1 (en) * 1991-12-05 1993-06-09 Man Roland Druckmaschinen Ag, 6050 Offenbach, De INK FOR A PRINTING MACHINE, ESPECIALLY BOW-OFFSET PRINTING MACHINE
US5249523A (en) * 1991-12-05 1993-10-05 Man Roland Druckmaschinen Ag Inking mechanism for a printing machine
US6029573A (en) * 1997-06-19 2000-02-29 Bobst, S.A. Multifunctional inking station for a flexographic printing machine
US6227113B1 (en) 1998-04-06 2001-05-08 Heidelberger Druckmaschinen Ag Printing machine and method of operating a printing machine
US6481352B2 (en) * 1999-12-06 2002-11-19 Heidelberger Druckmaschinen Ag Method for controlling a quantity of ink in an inking unit
US6736060B2 (en) * 2000-09-20 2004-05-18 Koenig & Bauer Aktiengesellschaft Printing unit
US20170225451A1 (en) * 2014-08-09 2017-08-10 manroland sheetfed GmbH Highly dynamic ink density control

Also Published As

Publication number Publication date
FR2240109B1 (en) 1978-12-29
SE7410136L (en) 1975-02-10
DE2340300C3 (en) 1979-09-13
GB1478369A (en) 1977-06-29
SE403732B (en) 1978-09-04
DE2340300A1 (en) 1975-02-27
DE2340300B2 (en) 1979-01-18
IT1017810B (en) 1977-08-10
FR2240109A1 (en) 1975-03-07

Similar Documents

Publication Publication Date Title
US3908545A (en) Inking system with means for augmenting transferred ink
US3221651A (en) Multi-units sheet-fed printing machine drive
US5983793A (en) Drive for a sheet-fed printing machine
US4414896A (en) Sheet-fed rotary prime and verso offset printing machine & method
US4089264A (en) Inking unit for printing machines
JPH0796289B2 (en) Adjusting device for a 5-cylinder printing machine of an offset rotary printing press
US5184551A (en) Printing press
US6634292B2 (en) Printing press with means for connecting and disconnecting motors for oscillating roller
US2444547A (en) Printing machine
US2545836A (en) Ink and water motion trip for offset printing machines
US4409894A (en) Rotary offset sheet selective prime, verso or multicolor printing machine and method
US3703863A (en) Disconnect arrangement for multi-unit printing press
US3608486A (en) Drive means for the inking mechanism of a printing machine
JPH047152A (en) Printing machine
US2672093A (en) Ink distribution for high-speed rotary printing presses
US2705918A (en) Multi-colour sheet printing machine
GB1158056A (en) Improvements in or relating to Rotary Printing Machines
ATE150366T1 (en) PRESSURE SWITCHING DEVICE FOR A SHEETED ROTARY PRINTING MACHINE WITH A TURNING DEVICE
JPS57137245A (en) Sheet feeding device of copying machine etc.
US2483203A (en) Printing machine
US4037531A (en) Rotary printing machine
JPH04146150A (en) Automatic coupling/driving unit for tandem printing unit
EP0264839A3 (en) Adjusting device for the reversing cylinder of a rotary sheet-printing machine
US3046875A (en) Presses working sheet material
US3191529A (en) Successive interruption for letterpress printing machines