Claims
- 1. A clamping mechanism for securing a cutting die board to a rotary support cylinder, comprising a double-acting pressure cylinder having a piston rod coupled to a clamping bolt which cooperates with a keyhole-shaped slot formed through the cutting die board, and an arrangement for supplying high pressure air to a retraction chamber associated with one side of the pressure cylinder piston and for supplying low pressure air to an extension chamber defined on the opposite side of the pressure cylinder piston.
- 2. A mechanism according to claim 1, wherein the arrangement includes a control so that the pressure of the high pressure air is several times greater than the pressure of the low pressure air.
- 3. A mechanism according to claim 1, wherein the piston comprises a flexible diaphragm.
- 4. A process for rapidly attaching a cutting die board to a rotary support cylinder, comprising providing a double-acting pressure cylinder coupled to and effecting movement of a clamping bolt, supplying high pressure air to one side of the cylinder piston for retracting the bolt to effect movement of the bolt into a retracted storage or clamping position, and supplying low pressure air to the other side of the cylinder piston to effect outward extension of the bolt when mounting the board is required.
- 5. A process according to claim 4, wherein the pressure of the high pressure air is several times greater than the pressure of the low pressure air.
- 6. A clamping mechanism mountable on a rotary support cylinder for securing a cutting die board to the periphery of the cylinder, said mechanism comprising:
an elongate clamping bolt supported for movement in the longitudinal direction thereof, the bolt having an enlarged head at one end thereof adapted to project through a clearance opening formed in the cutting die board; a two-way activating device connected to the clamping bolt for effecting longitudinal movement thereof in an extending direction toward an extended position and in a retracting direction toward a retracted position; said activating device including first and second biasing arrangements cooperating with a longitudinally movable activating member for urging the clamping bolt toward the extended and retracted positions respectively; a control for selectively activating at least one of said biasing arrangements only when movement of said clamping bolt toward the respective position is desired; and a low-force releasable slip coupling connected between said clamping bolt and said activating member and permitting relative longitudinal movement therebetween when the longitudinal force applied to the slip coupling in at least the extending direction exceeds a defined force of small magnitude.
- 7. A clamping mechanism according to claim 6, wherein the force applied to the activating member by said first biasing arrangement during the extending movement can be greater than said defined force so that the slip coupling allows the clamping bolt to longitudinally slip relative to the activating member if the clamping bolt encounters an opposed resistance which exceeds said defined force.
- 8. A clamping mechanism according to claim 7, wherein said first biasing arrangement comprises a pressure fluid chamber defined on one side by a moving piston which is coupled to said activating member to effect movement thereof in the extending direction upon pressurization of said pressure fluid chamber.
- 9. A clamping mechanism according to claim 8, wherein said second biasing arrangement comprises a second pressure fluid chamber defined on the opposite side of said moving piston to effect movement of said activating member in the retracting direction upon pressurization of said second chamber.
- 10. A clamping mechanism according to claim 7, wherein said slip coupling includes a coupling member having a surface of engagement with one of said activating member and said clamping bolt, said surface of engagement defining a frictional contact which creates said defined force in the longitudinal direction, said coupling member also having a surface for reactive engagement with the other of the activating member and clamping bolt, whereby the clamping bolt and activating member are coupled together and move as a unit so long as the longitudinal force reacting therebetween does not exceed said defined force.
- 11. A clamping mechanism according to claim 10, wherein said coupling member comprises a friction member of a partially deformable material having a peripheral surface disposed in slidable frictional contact with the activating member.
- 12. A clamping mechanism according to claim 10, wherein the coupling member comprises a spring disposed in surrounding relationship to a stem of the clamping bolt and having a frictional contact engagement with an exterior peripheral surface of the stem.
- 13. A clamping mechanism according to claim 12, wherein said spring is a compression-type coil spring.
CROSS REFERENCE TO RELATED APPLICATION
[0001] This is a continuation-in-part of copending provisional application Serial No. 60/327 503 filed Oct. 5, 2001.
Provisional Applications (1)
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Number |
Date |
Country |
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60327503 |
Oct 2001 |
US |