Claims
- 1. A master processing apparatus for use with a pair of removable feed rolls, the removable feed rolls carrying a supply of stock material to be unwound, at least one of the stock materials having a layer of adhesive provided thereon, said apparatus comprising:
a frame constructed and arranged to removably mount the feed rolls; a master processing assembly; said frame being constructed and arranged such that, when the feed rolls are removably mounted thereto, a master can be inserted into said master processing assembly together with the stock materials unwound from their respective feed rolls and disposed on opposing sides of the master; said master processing assembly being constructed and arranged to perform a master processing operation wherein said processing assembly causes adhesive bonding between the master and the stock materials being fed into the feed side thereof and subsequently discharges the processed master and stock materials outwardly from a discharge side thereof; said frame providing a substrate supporting surface positioned on the discharge side of said processing assembly, said substrate processing surface being configured to receive and support at least a portion of the processed master and stock materials being discharged from the processing assembly in a substantially flat relation; a cutting assembly disposed on the discharge side of said master processing assembly, said cutting assembly comprising a guide member extending transversely with respect to said frame and a blade mounted on said guide member for guided transverse cutting movement therealong; said guide member being movably mounted to said frame for selective manual movement between (a) an inoperative position wherein said blade is positioned in spaced relation above said substrate supporting surface to prevent said blade from cutting through the processed master and stock materials and (b) an operative position wherein said blade is positioned such that a portion thereof extends downwardly below said substrate supporting surface so that the downward extent of said blade portion enables said blade to cut through an entire thickness of the processed master and stock materials during said transverse cutting movement.
- 2. A master processing apparatus according to claim 1, further comprising an actuator operatively connected to said master processing assembly to affect operation of said master processing assembly.
- 3. A master processing apparatus according to claim 1, further comprising biasing structure biasing said guide member to said inoperative position thereof.
- 4. A master processing apparatus according to claim 1, wherein the movable mounting of said guide member is such that said blade travels along a generally arcuate path between said inoperative and operative positions.
- 5. A master processing apparatus according to claim 3, wherein said blade is positioned immediately adjacent the discharge side of said master processing assembly when in said operative position thereof and wherein said guide member is movably mounted to said frame such that said blade moves both toward the master processing assembly and downwardly as said guide member is moved from said inoperative position to said operative position.
- 6. A master processing apparatus according to claim 4, wherein said blade travels along an arcuate path between said operative and said inoperative position.
- 7. A master processing apparatus according to claim 3, wherein said guide member has a pair of mounting arms extending from opposing ends thereof, said mounting arms being pivotally connected to said frame to movably mount said guide member.
- 8. A master processing apparatus for use with a pair of removable feed rolls, the removable feed rolls each carrying a supply of stock material to be unwound, at least one of the stock materials having a layer of adhesive provided thereon, said apparatus comprising:
a frame constructed and arranged to removably mount the feed rolls, said frame having an opening at a feed side thereof; a master processing assembly; said frame being constructed and arranged such that, when the feed rolls are removably mounted thereto, a master can be inserted through the opening of the feed side of said frame and into said master processing assembly together with the stock materials unwound from their respective feed rolls and disposed on opposing sides of the master; said master processing assembly being constructed and arranged to perform a master processing operation wherein said processing assembly causes adhesive bonding between the master and stock materials being fed in a feed side thereof and subsequently discharges the processed master and stock materials outwardly from a discharge side thereof; and a feed tray having a substrate supporting surface, said feed tray being movably mounted to said frame on the feed side of said master processing assembly for selective movement between (a) an operative position wherein said tray extends outwardly away from said master processing assembly with said substrate supporting surface thereof positioned to support the master in substantially flat relation during feeding of the master into said master processing assembly and (b) and inoperative position wherein said tray is positioned in covering relation to the opening of said frame to inhibit ingress of undesired objects into said master processing assembly via said opening.
- 9. A master processing apparatus according to claim 8, further comprising an actuator constructed and arranged to affect operation of said master processing assembly.
- 10. A master processing apparatus according to claim 8, wherein said frame has a pair of sidewalls with guide tracks provided on interior surfaces thereof and wherein said feed tray has a pair of pins extending from opposite sides thereof, said pins being slidably received in said guide tracks to movably mount said feed tray to said frame such that (a) said tray is moved from said inoperative position thereof to said operative position thereof by moving said tray generally upwardly from said inoperative position until said pins are proximate upper ends of said tracks and then pivoting said tray about said pins downwardly away from said frame to said operative position and (b) to said tray is moved from said operative position thereof to said inoperative position thereof by pivoting said tray upwardly from said operative position about said pins and then moving said tray downwardly to said inoperative position wherein said pins are proximate lower ends of said tracks.
- 11. A master processing system comprising:
a frame; a removable cartridge removably mounted to said frame, said removable cartridge comprising (a) a cartridge body structure including at least a pair of sidewalls and (b) first and second feed rolls carrying respective supplies of first and second stock material, said feed rolls being mounted to said cartridge body structure to enable the stock materials to be unwound from their respective feed rolls, at least one of said stock materials having a layer of adhesive disposed thereon; said frame being constructed and arranged such that a master can be inserted into said master processing assembly together with the stock materials unwound from their respective feed rolls and disposed on opposing sides of the master; said master processing assembly being constructed and arranged to perform a master processing operation wherein said processing assembly causes adhesive bonding between the master and stock materials being fed in a feed side thereof and subsequently discharges the processed master and stock materials outwardly from a discharge side thereof; said cartridge having a substrate supporting member extending between said sidewalls thereof and providing a substrate supporting surface on the feed side of said master processing assembly, said substrate supporting surface being configured to support the master during feeding of the master into said master processing assembly; said cartridge having a master engaging structure extending generally transversely across said substrate supporting surface, said master substrate engaging structure having a master engaging surface that engages the master while supported on said substrate support surface so as to apply a frictional resistance to advancement of the master in said feeding direction to thereby tension the master.
- 12. A master processing system according to claim 11, wherein said substrate supporting surface is planar and is constructed and arranged to support the master in a substantially flat relation during feeding of the master into said master processing assembly.
- 13. A master processing system according to claim 12, wherein said master engaging structure is constructed of a molded plastic material.
- 14. A master processing system according to claim 13, wherein said master engaging structure is pivotally connected to said cartridge body structure.
- 15. A removable cartridge to be used in conjunction with a master processing apparatus for processing a master, the apparatus comprising a frame and a master processing assembly constructed and arranged to perform a master processing operation wherein said master processing assembly causes adhesive bonding between substrates fed therein, said removable cartridge comprising:
a cartridge body structure constructed and arranged to be removably mounted to the apparatus frame; a first and a second feed roll, each carrying a supply of a stock material and being mounted to said cartridge body structure to enable said stock materials to be unwound from their respective feed rolls, at least one of said stock materials having a layer of adhesive disposed thereon; said cartridge body structure and said first and second feed rolls being constructed and arranged such that, when said cartridge body structure is removably mounted to the apparatus frame, the master can be inserted into the master processing assembly of the apparatus with said first and second stock materials being unwound from their respective feed rolls and disposed on opposing sides of the master, thereby enabling the processing assembly to perform the aforesaid master processing operation wherein said processing assembly causes adhesive bonding between said first and second stock materials and the master being fed therein and then subsequently discharges the processed master and stock materials; said cartridge having a substrate supporting member extending between said sidewalls thereof and providing a substrate supporting surface, said substrate supporting member being positioned with respect to said cartridge body structure such that, when said cartridge body structure is removably mounted to said apparatus frame, said substrate supporting surface thereof is positioned on the feed side of said master processing assembly, said substrate supporting surface being configured to support the master during feeding of the master into said master processing assembly; said cartridge having a master engaging structure extending generally transversely across said substrate supporting surface, said master substrate engaging structure having a master engaging surface that engages the master while supported on said substrate supporting surface so as to apply frictional resistance to advancement of the master in a feeding direction to thereby tension the master.
- 16. A master processing system according to claim 15, wherein said substrate supporting surface is planar and is constructed and arranged to support the master in a substantially flat relation during feeding of the master into said master processing assembly.
- 17. A master processing system according to claim 15, wherein said master engaging structure is constructed of a molded plastic material.
- 18. A master processing system according to claim 15, wherein said master engaging structure is pivotally connected to said cartridge body structure.
- 19. A method of attaching a pair of end caps to a core of a feed roll for mounting to the frame of a master processing apparatus in which a master processing operation is performed, said method comprising:
providing a tubular core with a supply of stock material wound about said core; providing a pair of end caps each having a tubular core securing portion and a mounting portion connected to said core securing portion, said core securing portions normally being in a relaxed, unexpanded condition to enable insertion of said securing portions into opposing ends of said core, said mounting portions being configured to enable said feed rolls to be mounted on said frame in an operative position; providing a pair of expansion members each being constructed and arranged to be inserted into the core securing portion of a respective end cap; inserting the core securing portions into the opposing ends of said core; inserting an expansion member into each said core securing portion, each said expansion member being configured such that said expansion member radially expands said core securing portion upon insertion therein into a force fit relation with the interior surface of said core, thereby securing each said end cap to said core.
- 20. A method according to claim 19, wherein said providing a pair of end caps and said providing a pair of expansion members includes providing said end caps and said expansion members such that each end cap and each expansion member is constructed of a molded plastic material and each expansion member is integrally connected to a respective end cap by an frangible connection so that each end cap and the associated expansion member is provided as a single molded plastic component, said method further comprising breaking said frangible connection between each said expansion member and said associated end cap to separate each said expansion member from the associated end cap prior to said inserting an expansion member into each said core securing portion.
- 21. A method according to claim 20, wherein each expansion member is connected by said frangible connection to a respective end cap in axial alignment with the tubular core securing portion such that said breaking said frangible connection and said inserting an expansion member are accomplished simultaneously by applying an axially directed force to said expansion member.
- 22. A method according to claim 21, wherein said tubular core is constructed of a paper or a cardboard material and wherein each tubular core securing portion is generally in the form of a cylindrical tube having a split free end, said split free end of each said core securing portion defining a plurality of tabs, each tab including gripping structure on the exterior thereof, said inserting an expansion member into each said core securing portion further comprising radially expanding said core securing portion such that said tabs flex outwardly and said gripping structures grip said paper or cardboard material.
- 23. A feed roll configured to be mounted to a frame of a master processing apparatus in which a master processing operation is performed, said feed roll comprising:
a tubular core carrying a supply of a stock material wound thereon; a pair of end caps each having a tubular core securing portion and a mounting portion connected to the core securing portion, the mounting portion of each end cap being constructed and arranged to allow the core and stock material to be rotatably mounted to the apparatus frame in an operative position to enable the stock material to be unwound for the master processing operation, said core securing portions being inserted in opposing ends of said core; and a pair of expansion members, each expansion member being disposed in said core securing portion of a respective end cap to radially expand the core securing portions of the end caps into a force fit relation with the interior surface of the core to secure the end caps to the core.
- 24. A feed roll according to claim 23, wherein each said end cap is constructed of a molded plastic material.
- 25. A feed roll according to claim 24, wherein said tubular core is constructed of a paper or a cardboard material and wherein each tubular core securing portion is generally in the form of a cylindrical tube having a split free end, said split free end of each said core securing portion defining a plurality of tabs, each tab including gripping structure on the exterior thereof, each said expansion member being disposed in each said core securing portion to radially expand said tabs such that said gripping structures grip said paper or cardboard material.
- 26. A feed roll assembly to be used in conjunction with an apparatus for performing a master processing operation, the apparatus comprising a frame and a master processing assembly constructed and arranged to perform a master processing operation wherein said processing assembly causes adhesive bonding between adhesive carrying substrates fed therein, said feed roll assembly comprising:
a feed roll having a core about which a supply of stock material is wound and a generally radially extending annular flange fixedly mounted at an opposing end of said core; and feed roll mounting structure constructed and arranged to removably mount said feed roll to the frame of said apparatus, said feed roll mounting structure providing a pre-tension brake providing a pair of brake surfaces defining a flange receiving space and frictionally engaging opposing sides of said flange such that, when said feed roll mounting structure is removably mounted on the apparatus frame and said stock material is being unwound from said core, said core with said flange fixed thereon rotates relative to said feed roll mounting structure so that braking friction is created between said flange and the braking surfaces of said pre-tensioning brake.
- 27. A feed roll assembly according to claim 26, wherein said feed roll mounting structure is a cartridge body structure, said feed roll assembly further comprising:
another feed roll having a core about which a supply of stock material is wound and a generally radially extending annular flange fixedly mounted at one end of the opposing ends of said core; said cartridge body structure providing another pre-tension brake providing a pair of braking surfaces constructed and arranged to frictionally engage opposing sides of said flange of said another feed roll such that, when said cartridge body structure is removably mounted on the apparatus frame and said stock material is being unwound from the core of said another feed roll, said core of said another feed roll with said flange fixed thereon rotates relative to said cartridge body so that braking friction is created between the flange of said another feed roll and the braking surfaces of said another pre-tensioning brake.
- 28. A feed roll assembly according to claim 27, wherein the braking friction applied by each pre-tension brake progressively decreases as stock material is unwound from each core.
- 29. A feed roll assembly according to claim 28, wherein the braking friction applied by each pre-tension brake progressively decreases as the stock material is unwound such that the amount of force required to unwind stock material from each core remains essentially constant as the supply of stock material on each core is depleted
- 30. A feed roll assembly according to claim 29, wherein said core is of generally tubular construction and wherein each radially extending annular flange is provided by an end cap mounted at a respective end of the core, each end cap and said cartridge body structure each being constructed of a respective molded plastic material.
- 31. A feed roll assembly according to claim 30, wherein each pre-tension brake includes a flexible molded plastic braking structure providing one of said braking surfaces thereon, each pre-tension brake being constructed and arranged such that when said opposite sides of said flange are frictionally engaging said pair of braking surfaces, the braking structure is in a relatively highly flexed condition so that the pair of braking surfaces provide a relatively high degree of braking friction to said core, the molded plastic of the braking structure wearing down as the stock material is unwound from the associated core thereby progressively lessening the degree of flexure of said braking structure such that the amount of braking friction applied by said braking surfaces to said core progressively decreases so that the amount of force required to unwind stock material decreases as the stock materials are depleted as aforesaid.
- 32. A master processing apparatus for use with a pair of removable feed rolls, each carrying a supply of stock material to be unwound, at least one of the stock materials having a layer of adhesive provided thereon, said apparatus comprising:
a frame including a first frame portion and a second frame portion movably connected for movement relative to one another between open and closed positions; a pair of cooperating pressure applying structures mounted within said frame, said cooperating structures being constructed and arranged to be positioned adjacent one another in a cooperating pressure applying relationship wherein, when the master with the first and second stock materials on opposing sides thereof and with the adhesive contacting the master is positioned between said cooperating structures, said cooperating structures apply pressure to said master and stock materials as they pass therebetween so as to affect adhesive bonding between said master and said stock materials; one of said pair of cooperating pressure applying structures being mounted on the first frame portion and the other of said pair of cooperating pressure applying structures being mounted on the second frame portion such that (a) movement of the frame portions into their open positions moves the pressure applying structures apart from one another into an open access position to facilitate positioning of the stock materials therebetween and (b) movement of the frame portions into their closed positions moves the pressure applying structures into engagement with one another and into pressure applying engagement with the portion of the stock materials positioned therebetween; and guiding structure providing a guiding surface constructed and arranged to guide the movement of the pressure applying structures into the engaged position thereof.
- 33. A master processing apparatus according to claim 32, further comprising a locking mechanism mounted between the first and second frame portions and movable between (a) a locking position in which said locking structure holds the first and second frame portions in their closed positions with respect to one another and thereby holds the pressure applying structures in engagement with one another and with the portion of the stock materials therebetween as aforesaid and (b) an unlocked position in which the first and second frame portions are released from locked engagement with one another to allow said first and second frame portions to be moved into their open positions with respect to one another to move the pressure applying structures apart as aforesaid.
- 34. A master processing apparatus according to claim 33, wherein said pair of pressure applying structures comprises a first nip roller mounted to said first frame portion and a second nip roller mounted to said second frame portion.
- 35. A master processing apparatus according to claim 34, wherein said first and second frame portions are pivotally connected for movement between said open and closed positions.
- 36. A master processing apparatus according to claim 35, wherein said guiding structure includes a pair of guide tracks on one of said frame portions and a pair of guide projections on the other of said frame portions, each projection being movably received within a respective guide track.
- 37. A master processing apparatus according to claim 36, wherein said first frame portion includes a pair of opposing walls, each said guide track being formed in a respective one of said opposing walls, and wherein each projection is formed on said second frame portion.
- 38. A master processing apparatus according to claim 37, wherein each guide track is arcuate.
- 39. A master processing apparatus according to claim 38, wherein each said guide projection is coaxial with the axis of rotation of said second nip roller, said guide tracks and said guide projections cooperating such that as the frame portions are moved toward and into their closed position, the guide tracks guide the guide projections to thereby guide the nip rollers toward and into parallel uniform pressure applying engagement with one another and with the stock material.
- 40. A master processing apparatus according to claim 39, wherein each said guide projection is biased into engagement with wall surfaces of the associated guide track when the first and second frame portions are in their closed positions to maintain the first and second nip rollers in uniform pressure applying engagement with one another and with stock material as aforesaid.
- 41. A master processing apparatus for use with a pair of removable feed rolls, the removable feed rolls each carrying a supply of stock material to be unwound, at least one of the stock materials having a layer of adhesive provided thereon, said apparatus comprising:
a frame having an opening at a feed side thereof; a pair of feed roll mounting structures constructed and arranged to removably rotatably mount the pair of feed rolls in said frame for unwinding rotational movement of the feed rolls with respect to said frame; a master processing assembly; said frame being constructed and arranged such that, when the feed rolls are removably mounted thereto, a master can be inserted through the opening in the feed side of said frame and into said master processing assembly together with the stock materials unwound from their respective feed rolls and disposed on opposing sides of the master; said master processing assembly being constructed and arranged to perform a master processing operation wherein said processing assembly causes adhesive bonding between the master and stock materials being fed in a feed side thereof and subsequently discharges the processed master and stock materials outwardly from a discharge side thereof; and each said feed roll mounting structure being constructed and arranged to apply braking tension to the associated feed roll, the braking tension progressively decreasing as the stock material carried on the associated feed roll is unwound.
- 42. A master processing apparatus according to claim 41, wherein each feed roll has a core about which a supply of stock material is wound and a generally radially extending annular flange fixedly mounted at an opposing end of said core, the feed roll mounting structure associated therewith providing brake surfaces frictionally engage opposing sides of each said flange such that when said stock material is being unwound from said core, said core with each said flange fixed thereon rotates relative to said feed roll mounting structure so that progressively decreasing braking friction is created between each said flange and the braking surfaces associated therewith.
- 43. A master processing apparatus according to claim 42, wherein each said feed roll mounting structure is removably mounted on the apparatus frame.
- 44. A master processing apparatus according to claim 43, wherein each said feed roll mounting structure is carried on a cartridge body structure removably mounted on the apparatus frame.
- 45. A master processing apparatus according to claim 44, wherein the braking friction applied by each said feed roll mounting structure progressively decreases as the stock material is unwound such that the amount of force required to unwind stock material from each core remains essentially constant as the supply of stock material on each core is depleted.
- 46. A master processing apparatus according to claim 45, wherein each said core is of generally tubular construction and wherein each radially extending annular flange is provided by an end cap mounted at a respective end of each said core, each end cap and said cartridge body structure each being constructed of a respective molded plastic material.
- 47. A master processing apparatus according to claim 46, wherein each said feed roll mounting structure on said cartridge body structure includes a flexible molded plastic braking structure providing one of said braking surfaces thereon, said cartridge body structure being constructed and arranged such that when said opposite sides of a flange are frictionally engaging an associated pair of said braking surfaces, the respective braking structure is in a relatively highly flexed condition so that the pair of braking surfaces associated therewith provide a relatively high degree of braking friction to the associated core, the molded plastic of each said braking structure wearing down as the stock material is unwound from the associated core thereby progressively lessening the degree of flexure of each said braking structure such that the amount of braking friction applied by said braking surface thereof to said associated core progressively decreases so that the amount of force required to unwind stock material decreases as the stock materials are depleted as aforesaid.
- 48. A master processing apparatus according to claim 47, wherein the braking friction applied by each said feed roll mounting structure progressively decreases as the stock material is unwound such that the amount of force required to unwind stock material from each core remains essentially constant as the supply of stock material on each core is depleted as aforesaid.
- 49. A method for attaching a pair of feed rolls to feed roll mounting structure, the feed roll mounting structure enabling the feed rolls to be mounted to a master processing apparatus and having a pair of pre-tensioning brakes each providing a pair of braking surfaces on opposing sides of a flange receiving space; each of said feed rolls having a core about which a supply of stock material is wound and a generally radially extending annular flange fixed at an opposing end of said core, said method comprising:
rotatably mounting said feed rolls to said feed roll mounting structure with the flange of each feed roll received in a respective one of said flange receiving spaces, thus enabling said braking surfaces to frictionally engage the opposing side of said flange to create braking friction during unwinding of said stock material; and securing said feed rolls to feed roll mounting structure.
- 50. A method according to claim 49, wherein said feed roll mounting structure is a cartridge body structure.
- 51. A method according to claim 49, wherein said feed roll mounting structure is integrated into said apparatus.
- 52. A feed roll to be used in conjunction with an master processing apparatus for performing a master processing operation and feed roll mounting structure enabling the feed roll to be mounted to a frame of the master processing apparatus, the feed roll mounting structure providing pre-tension brake providing a pair of brake surfaces defining a flange receiving space, said feed roll comprising:
a core; a supply of stock material wound about said core; a flange extending radially from an opposing end of said care, said flange being configured to be received in said flange receiving space when said feed roll is mounted to said feed roll mounting structure such that said pair of braking surface frictionally engage opposing sides of said flange to create braking friction during unwinding of said stock material.
Parent Case Info
[0001] This application claims priority to provisional patent application No. 60/248,217 filed Nov. 15, 2000, which application is hereby incorporated by reference in its entirety into the present application for all material disclosed therein.
Provisional Applications (1)
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Number |
Date |
Country |
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60248217 |
Nov 2000 |
US |