Claims
- 1. An improvement in a control mechanism for an offset printing machine having:
- a machine frame and a drive motor;
- a master cylinder adapted to hold a plate thereon, a blanket cylinder, cooperating with said master cylinder and an impression cylinder cooperating with said blanket cylinder, said cylinders being rotatably mounted on said frame;
- inking and dampening means cooperating with said master cylinder and coupled to said frame;
- a control shaft rotatably mounted on said frame;
- a plurality of cams supported by said control shaft;
- means for moving said master cylinder and said inking and dampening means, into and out of cooperation with their respective cylinders, said means for moving being coupled to respective ones of said plurality of cams; and
- a control knob coupled to said shaft in order to rotate said shaft, said knob having at least neutral, printing and blanket cleaning positions;
- said improvement comprising:
- means for controlling the rotating movement of said control shaft comprising a first ratchet coaxially mounted on said shaft, a stop pin planted on and projecting from a side face of said first ratchet, first and second stoppers pivotally mounted on said frame and swingably engageable with said stop pin, said first stopper preventing said control shaft from manually operated reverse rotation and said second stopper preventing said shaft from manually operated progressive rotation, a star-like cam coaxially mounted on said control shaft so as to integrally rotate with said ratchet and having indented portions formed on its circumference, and a stop arm pivotally mounted to said frame and having a roller at one end thereof, said roller being in engagement with said indented portions of said star-like cam;
- transmission means for transmitting the cyclical output of said drive motor of the machine to said first ratchet, and comprising an output cam, a vertically movable link having a claw pivoted thereon so as to engage with the teeth of said first ratchet and to rotate the first ratchet by an amount corresponding to one of said teeth at a time and also having a projection formed on its middle portion, and a first link mechanism for connecting said output cam to said movable link;
- means for controlling said transmission means, comprising a clutch pivotally coupled to said frame and swingably engageable with said projection of said movable link, microswitches, and a solenoid energized by a preselected combination of conditions of said microswitches and connected to disengage said clutch;
- means for setting the time of blanket cleaning, comprising a ratchet tooth feeding arm pivotally coupled to said frame and swinging in association with said first link mechanism, a feed claw pivotally coupled to one end portion of said ratchet tooth feeding arm, a stop claw pivotally mounted to said ratchet tooth feeding arm, a second ratchet pivotally mounted to said frame and engageable with said feed claw and said stop claw to rotate said second ratchet, and a switch plate mounted on said second ratchet and engageable with one of said microswitches; and
- means for controlling blanket cleaning, comprising a further cam for actuating blanket cleaning coaxially mounted on said control shaft, a claw releasing arm pivotally coupled to said frame and having an engaging pin at one end thereof for controlling the engagement of said feed claw and said stop claw with said second ratchet, and a second link mechanism for connecting said blanket cleaning cam to said claw releasing arm, thereby the first link mechanism actuated by the output cam controls both the rotation of the control shaft and the time of blanket cleaning.
- 2. The improvement in a control mechanism as claimed in claim 1, wherein said vertically movable link further includes a pin planted on the upper end thereof and engageable with said second stopper to swing said second stopper.
- 3. The improvement in a control mechanism as claimed in claim 1, wherein said first link mechanism comprises a cam following arm pivotally coupled to said frame, a roller mounted on one end of said cam following arm riding against said output cam, an L-shaped arm pivotally coupled to said frame, one end of said arm being connected to said vertically movable link through a spring, a horizontally movable link connected at both ends thereof to the other ends of said cam following arm and said L-shaped arm, and a driving pin plated on and projecting from the side face of said horizontally movable link.
- 4. The improvement in a control mechanism as claimed in claim 1, including a sheet counter, and wherein one of said microswitches is incorporated in said sheet counter, said microswitch energizing said solenoid to release said clutch from the engagement with said vertically movable link when said sheet counter shows zero.
- 5. The improvement in a control mechanism as claimed in claim 1, wherein another of said microswitches is mounted on said frame adjacent said first stopper, said another microswitch being actuated by said first stopper and de-energizing said solenoid to cause said clutch to engage with said vertically movable link.
- 6. The improvement in a control mechanism as claimed in claim 1, wherein still another of said microswitches is mounted on said frame adjacent said second ratchet, said still another microswitch being actuated by said switch plate and energizing said solenoid is release said clutch from the engagement with said vertically movable link.
- 7. The improvement in a control mechanism as claimed in claim 3, wherein said ratchet tooth feeding arm has one end engaging with said driving pin of said horizontally movable link thereby to rock itself when said driving pin is moved along with said horizontally movable link.
- 8. The improvement in a control mechanism as claimed in claim 1, including a first spring, and wherein said feed claw is positioned at a movable free end of said ratchet tooth feeding arm, said feeding claw being elastically urged toward said second ratchet by means of said spring.
- 9. The improvement in a control mechanism as claimed in claim 1, including a stop claw spring, and wherein said stop claw is positioned at the pivot point of said ratchet tooth feeding arm, said stop claw being urged toward said second ratchet by means of said stop claw spring.
- 10. The improvement in a control mechanism as claimed in claim 1, wherein said switch plate includes an elongated opening along which said switch plate can be adjustably mounted to said second ratchet so as to adjust the time of blanket cleaning.
- 11. The improvement in a control mechanism as claimed in claim 1, including a ratchet spring, and wherein said second ratchet is urged in certain rotational direction by means of said ratchet spring.
- 12. The improvement in a control mechanism as claimed in claim 1, wherein said second link mechanism comprises an arm having three branches thereon and pivotally coupled to said frame, a vertical link having one end connected to a first branch of said arm and another end provided with a pin abutting against said claw releasing arm, a roller mounted to the end of a second branch of said arm and riding against said blanket cleaning cam, a link connecting the blanket cleaning means to a third branch to said arm, and an arm pivotally coupled to said frame and supporting the middle portion of said vertical link for securing vertical movement of said vertical link.
- 13. The improvement in a control mechanism as claimed in claim 1, further including a means for preventing said control shaft from rotating reversely, said means comprising a stopper bracket fastened to said frame adjacent said knob, a bracket button included in said knob, a spring included in said bracket button and elastically urging said bracket button outwardly in the radial direction of said knob, and a stop pin being integral with and projecting from said bracket button.
- 14. The improvement in a control mechanism as claimed in claim 13, wherein said stopper bracket has a lower end shaped in an arc.
- 15. The improvement in a control mechanism as claimed in claim 14, wherein one end of said arc is positioned inside of the circle track of said stop pin and another end of said arc is positioned outside of said circle track.
- 16. The improvement in a control mechanism as claimed in claim 1, further including an automatic stop means comprising a further microswitch mounted on said frame and a switch block fastened to a cam mounted on said control shaft for actuating said further microswitch.
CROSS REFERENCE TO RELATED APPLICATION
This is a Continuation-In-Part of co-pending U.S. application Ser. No. 429,360, now abandoned filed Dec. 28, 1973.
US Referenced Citations (9)
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
429360 |
Dec 1973 |
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