Claims
- 1. An inking apparatus control means for a rotary press, comprising:
an oscillating roller rotatable in a circumferential direction and reciprocatable along an axial direction thereof; and control means for controlling at least one of an oscillation width of said oscillating roller and a number of times of oscillations of said oscillating roller relative to a number of revolutions of a plate cylinder, wherein at least one of the oscillation width of said oscillating roller and the number of times of oscillations of said oscillating roller relative to the number of revolutions of the plate cylinder assumes a designated value such that during a cleaning work, at least one of the oscillation width of said oscillating roller and the number of times of oscillations of said oscillating roller relative to the number of revolutions of the plate cylinder assume a predetermined value.
- 2. An inking apparatus control means for a rotary press according to claim 1, further comprising:
an oscillation-width adjustment mechanism for adjusting an oscillation width of said oscillating roller; and oscillation-width adjustment means for operating said oscillation-width adjustment mechanism, wherein said control means controls operation of said oscillation-width adjustment means such that the oscillation width of said oscillating roller assumes a designated value such that said oscillating roller oscillates over a preset oscillation width during the cleaning work.
- 3. An inking apparatus control means for a rotary press according to claim 1, further comprising:
an oscillation mechanism for reciprocating said oscillating roller; and oscillation-mechanism drive means for operating said oscillation mechanism, wherein said control means controls operation of said oscillation-mechanism drive means, on the basis of the number of revolutions of the plate cylinder, such that the number of times of oscillations of said oscillating roller relative to the number of revolutions of the plate cylinder assumes a designated value and such that the number of times of oscillations of said oscillating roller assume a predetermined value during the cleaning work.
- 4. An inking apparatus control means for a rotary press according to claim 2 or 3, wherein said control means rotates said oscillating roller at a preset number of revolutions.
- 5. An inking apparatus control means for a rotary press according to claim 4, wherein said oscillation mechanism drive means rotates said oscillating roller at least during the cleaning work.
- 6. An inking apparatus control means for a rotary press according to claim 5, further comprising:
a clutch for permitting and stopping transmission of rotation from said oscillation mechanism drive means to said oscillating roller.
- 7. An inking apparatus control means for a rotary press according to claim 6, further comprising:
a main motor for rotating said plate cylinder and said oscillating roller; and connecting/disconnecting means for stopping and permitting transmission of rotation from said main motor to said oscillating roller, wherein said clutch is brought into connected and disconnected states in such a manner that transmission of rotation from said oscillation-mechanism drive means to said oscillating roller is stopped when rotation is transmitted from said main motor to said oscillating roller by said connecting/disconnecting means and that rotation is transmitted from said oscillation-mechanism drive means to said oscillating roller when transmission of rotation from said main motor to said oscillating roller is stopped by said connecting/disconnecting means.
- 8. An inking apparatus control means for a rotary press according to claim 2, further comprising:
a switch for starting the cleaning work, wherein in response to an operation of said switch, said control means controls said oscillation-width adjustment means such that said oscillating roller oscillates over a preset oscillation width.
- 9. An inking apparatus control means for a rotary press according to claim 3, further comprising:
a switch for starting the cleaning work, wherein in response to an operation of said switch, said control means controls said oscillation-mechanism drive means such that the number of times of oscillations of said oscillating roller assumes a preset value.
- 10. An inking apparatus control means for a rotary press according to claim 1, further comprising:
a cleaning apparatus for cleaning said oscillating roller and a distribution roller supported to be rotatable in a circumferential direction and unmovable in an axial direction; setting means for setting conditions such that at least one of the oscillation width and the number of times of oscillations of said oscillating roller increases at the beginning of the cleaning; and a memory for storing at least one of a set value for the oscillation width and a set value for the number of times of oscillations of said oscillating roller, which set value is used before the setting is performed by setting means, wherein upon completion of the cleaning, the set value is read out of said memory, and one of the oscillation width and the number of times of oscillations are reset to the original values used before performance of the cleaning.
- 11. An inking apparatus control means for a rotary press according to claim 10, wherein said setting means sets one of the oscillation width and the number of times of oscillations of said oscillating roller to a maximum value.
- 12. An inking apparatus control means for a rotary press according to claim 10, wherein said control means causes said oscillation-mechanism drive means to operate at a higher speed.
- 13. An inking apparatus control means for a rotary press according to claim 1, wherein said cleaning work is performed in a space formed as a result of separating a first frame which supports the cylinder and a second frame which supports said oscillating roller.
- 14. An inking apparatus control means for a rotary press according to claim 1, further comprising:
an oscillation mechanism for reciprocating said oscillating roller; an oscillation-mechanism drive means for operating said oscillation mechanism; an oscillation-width adjustment mechanism for adjusting an oscillation width of said oscillating roller; and oscillation-width adjustment means for operating said oscillation-width adjustment mechanism.
- 15. A printing press according to claim 14, wherein
said oscillation mechanism includes, a swing member which swings upon operation of said oscillation-mechanism drive means, a moving member movably supported on said swing member, and an engagement member rotatably supported on said moving member and being in engagement with said oscillating roller, and wherein said oscillation-width adjustment mechanism is configured such that, upon operation of said oscillation-width adjustment means, said oscillation-width adjustment mechanism moves said moving member to thereby adjust a distance between a swing center of said swing member and a rotation center of said engagement member.
- 16. A printing press according to claim 15, wherein said moving member is slidably supported on said swing member.
- 17. A printing press according to claim 14, wherein
said oscillation mechanism includes, a crank mechanism whose input side is connected to said oscillation-mechanism drive means, a swingably-supported swing lever whose base end side is connected to the output side of said crank mechanism, a slide lever slidably supported by said swing lever such that the distal end side of said slide lever can move toward and away from a swing center of said swing lever, a first link plate whose one end side is rotatably supported by the distal end side of said slide lever, a swingably-supported swing plate, the other end side of said first link plate being rotatably connected to the base end side of said swing plate, and a cam follower provided at the distal end side of said swing plate and inserted into a groove wheel of said oscillating roller, and wherein said oscillation-width adjustment mechanism includes, a worm gear connected to said oscillation-width adjustment means, a worm wheel in meshing engagement with said worm gear, a transmission shaft coaxially connected to said worm wheel, a second link plate whose one end side is connected to said transmission shaft, and said slide lever whose base end side is rotatably connected to the other end side of said second link plate.
Priority Claims (1)
Number |
Date |
Country |
Kind |
2000-197726 |
Jun 2000 |
JP |
|
Parent Case Info
[0001] The entire disclosure of Japanese Patent Application No. 2000-197726 filed on Jun. 30, 2000, including specification, claims, drawings, and summary is incorporated herein by reference in its entirety.