Claims
- 1. A rotary holder assembly adapted to carry a cutting die having edges and opposing sides for cutting a pattern from at least one material blank, the holder assembly comprising:a cylindrical die holder adapted to be mounted on a drive shaft for rotating about an axis, the die holder having an outer surface and a plurality of orifices disposed on the outer surface wherein the orifices are in communication with a source of vacuum, at a first time, or air, at a second time, thereby selectively supplying the vacuum or the air to the surface; the die holder having at least one groove for receiving a holding key which cooperate to clamp one of the edges of the cutting die therebetween for securing the cutting die to the holder; and the holding key having an outer surface, a longitudinally directed feed tube, and a plurality of orifices disposed on the key outer surface and communicating with the feed tube for supplying the vacuum or the air to the surface of the key.
- 2. The assembly as set forth in claim 1 wherein at least one of the holding keys is a transport key having means for engaging and retaining the leading edge of the envelope blank adjacent to the outer surface of the key as the die holder rotates.
- 3. The assembly as set forth in claim 1 wherein at least one of the holding keys is a feeder key having means for engaging and retaining the panel cut from the blank adjacent to the outer surface of the key as the die holder rotates.
- 4. The assembly as set forth in claim 1 wherein the holding key has means to engage two adjacent blanks and to retain one of the blanks after the second blank is cut by the cutting die.
- 5. A rotary holder assembly adapted to carry a cutting die for cutting a pattern from a material blank, the assembly comprising:a cylindrical die holder for rotating about an axis, the die holder having an outer surface and a plurality of orifices disposed on the outer surface, the plurality of orifices supplying to the surface vacuum at a first time or air at a second time, the orifices being in radial communication with a corresponding longitudinally directed feed tube; and a valve assembly for controlling the flow of air through each of the feed tubes comprising a valve hole in radial communication with said corresponding feed tube and adapted for receiving a valve member, the valve member being rotatable within the hole between open and closed positions wherein the valve member, having a cam surface that engages with a pin in the valve hole, permits flow through the feed tube in the open position and prevents flow through the feed tube in the closed position.
- 6. The assembly as set forth in claim 5 wherein the valve member has a bore capable of selectively aligning with the feed tube wherein the bore aligns with the feed tube when the valve member is positioned to the open position and wherein the bore does not align with the feed tube when the valve member is positioned to the closed position.
- 7. The assembly of claim 1 wherein the cutting die is at least partly made from a magnetically permeable material and the die holder includes a magnetic member disposed about the outer surface for retaining the cutting die.
- 8. The assembly of claim 6 wherein the cutting die is at least partly made from a magnetically permeable material and the die holder includes a magnetic member disposed about the outer surface for retaining the cutting die.
- 9. A method for retaining and releasing a material blank and a pattern cut from the material blank, the material blank and the pattern being carried by a rotating die holder, the die holder having an outer surface and a plurality of orifice groups disposed in the outer surface, each orifice group being in communication with a feed tube having a transport end and a vacuum end, the method comprising:closing the vacuum end and opening the transport end of each feed tube that corresponds to an orifice group in communication with the pattern; closing the transport end and opening the vacuum end of each feed tube that corresponds to an orifice group in communication with at least a portion of the blank other than the pattern; supplying vacuum to the transport ends of the feed tubes at a first predetermined period of time during the rotation of the die holder; and supplying vacuum to the vacuum ends of the feed tubes at a second predetermined period of time during the rotation of the die holder, wherein the ends of the feed tubes are opened and closed using a plurality of valve assemblies, each valve assembly comprising, in communication with an end of a corresponding one of the feed tubes, a valve member rotatable between an open position and a closed position wherein the valve means permits flow through the end of the corresponding feed tube in the open position and prevents the flow through the end of the corresponding feed tube in the closed position.
- 10. A method for retaining and releasing a material blank and a pattern cut from the material blank, the material blank and the pattern being carried by a rotating die holder, the die holder having an outer surface and a plurality of orifice groups disposed in the outer surface, each orifice group being in communication with a corresponding feed tube having a transport end and a vacuum end, the method comprising the steps of:closing the vacuum end and opening the transport end of each feed tube that corresponds to an orifice group in communication with the pattern; closing the transport end and opening the vacuum end of each feed tube that corresponds to an orifice group in communication with at least a portion of the blank other than the pattern; supplying air to the transport ends of the feed tubes at a first predetermined period of time during the rotation of the die holder; and supplying air to the vacuum ends of the feed tubes at a second predetermined period of time during the rotation of the die holder, wherein the ends of the feed tubes are opened and closed using a plurality of valve assemblies, each valve assembly comprising, in communication with an end of a corresponding one of the feed tubes, a valve member rotatable between an open position and a closed position wherein the valve member permits flow through the end of the corresponding feed tube in the open position and prevents flow through the end of the corresponding feed tube in the closed position.
- 11. A method for retaining and releasing a material blank and a pattern cut from the material blank, the material blank and the pattern being carried by a rotating die holder, the die holder having an outer surface and a plurality of orifice groups disposed in the outer surface, each orifice group being in communication with a corresponding feed tube having a transport end and a vacuum end, the method comprising:closing the vacuum end and opening the transport end of each feed tube that corresponds to an orifice group in communication with the pattern; closing the transport end and opening the vacuum end of each feed tube that corresponds to an orifice group in communication with at least a portion of the blank other than the pattern; supplying vacuum to the transport ends of the feed tubes at a first predetermined period of time during the rotation of the die holder; supplying vacuum to the vacuum ends of the feed tubes at a second predetermined period of time during the rotation of the die holder; supplying air to the transport ends of the feed tubes at a third predetermined period of time during the rotation of the die holder; and supplying air to the vacuum ends of the feed tubes at a fourth predetermined period of time during the rotation of the die holder.
- 12. The method of claim 11 wherein the ends of the feed tubes are opened and closed using a plurality of valve assemblies, each valve assembly comprising, in communication with an end of a corresponding one of the feed tubes, a valve member rotatable between an open position and a closed position wherein the valve member permits flow through the end the corresponding feed tube in the open position and prevents flow through the end of the corresponding feed tube in the closed position.
- 13. A rotary holder assembly adapted to carry a cutting die for cutting a panel from a material blank, the rotary holder assembly comprising:a cylindrical die holder adapted to be mounted on a drive shaft for rotating about an axis, the die holder having an outer surface, a vacuum end and a transport end; a plurality of orifices disposed on the outer surface of the die holder; a plurality of feed tubes extending from the vacuum end of the die holder to the transport end of the die holder, each of the feeds being in communication with one or more of the orifices and having a vacuum end at the vacuum end of the die holder and a transport end at the transport end of the die holder; selecting means for selecting a first group of orifices and a second group of orifices from the plurality of orifices, the selecting means comprising opening and closing means for selectively opening and closing the transport and vacuum ends of the feed tubes, whereby the opening and closing means is used to open the vacuum end and close the transport end of each feed tube of a first set of feed tubes and to close the vacuum end and open the transport end of each feed tube of a second set of feed tubes so that the first group of orifices comprises the orifices in communication with the first set of feed tubes that communicate with the vacuum side and not the transport side of the die holder and the second group of orifices comprises the orifice in communication with the second set of feed tubes that communicate with the transport side and not the vacuum side of the die holder; and vacuum delivery means for delivering means to the orifices in the first group of orifices at a first period of time during the rotation of the die holder and vacuum to the orifices in the second group of orifices at a second period of time during the rotation of the die holder; wherein the opening and closing means comprises a plurality of valve assemblies, each comprising, in communication with a corresponding one of the feed tubes, a valve hole adapted for receiving a valve member, the valve member rotatable within the valve hole between an open position and a closed position wherein the valve member permits flow through the corresponding feed tube in the open position and prevents flow through the corresponding feed tube in the closed position.
- 14. The assembly of claim 13 further comprising:a transport end plate mounted to the transport end of the die holder; and a vacuum end plate mounted to the vacuum end of the die holder and having a peripheral face, wherein the valve holes of valve assemblies for closing the transport ends of the feed tubes are located within the transport end plate and the valve holes of valve assemblies for closing the vacuum ends of the feed tubes are located within the vacuum end plate.
- 15. The assembly of claim 14 wherein:the transport end plate has a peripheral face defining a plurality of orifices and each of the valve holes within the transport end plate communicates with a corresponding one of the plurality of the transport end plate orifices; and the vacuum end plate has a peripheral face defining a plurality of orifices and each of the valve holes within the vacuum end plate communicates with a corresponding one of the plurality of the vacuum end plate orifices, whereby the valve members within the valve holes are accessible via their corresponding end plate orifices.
- 16. A rotary holder assembly adapted to carry a cutting die for cutting a panel from a material blank, the rotary holder assembly comprising:a cylindrical die holder adapted to be mounted on a drive shaft for rotating about an axis, the die holder having an outer surface; a plurality of orifices disposed on the outer surface of the die holder; selecting means for selecting a first group of orifices and a second group of orifices from the plurality of orifices; vacuum delivery means for delivering vacuum to the first group of orifices at a first period of time during the rotation of the die holder and vacuum to the second group of orifices at a second period of time during the rotation of the die holder; and air delivery means for delivering air to the first group of orifices at a third period of time during the rotation of the die holder and air to the second group of orifices at a fourth period of time during the rotation of the die holder.
- 17. The assembly of claim 10 wherein:the die holder has a vacuum end and a transport end; the first group of orifices is in communication with a first set of one or more feed tubes extending from the vacuum end of the die holder to the transport end of the die holder; the second group of orifices is in communication with a second set of one or more feed tubes extending from the vacuum end of the die holder to the transport end of the die holder; each feed tube is in communication with one or more orifices in the plurality of orifices and has a vacuum opening on the vacuum end of the die holder and a transport opening on the transport end of the die holder; and the selecting means includes opening and closing means for selectively opening and closing the transport and vacuum ends of the feed tubes, whereby the opening and closing means can be used to open the vacuum end and close the transport end of each feed tube of the first set of feed tubes and to close the vacuum end and open the transport end of each feed tube of the second set of feed tubes so that the first group of orifices comprises the orifices in communication with the first set of feed tubes that communicate with the vacuum side and not the transport side of the die holder and the second group of orifices comprises the orifices in communication with the second set of feed tubes that communicate with the transport side and not the vacuum side of the die holder.
- 18. The assembly of claim 17 wherein the opening and closing means comprises a plurality of valve assemblies, each valve assembly comprising, in communication with an end of a corresponding one of the feed tubes, a valve member rotatably between an open position and a closed position wherein the valve member permits flow through the end the corresponding feed tube in the open position and prevents flow through the end of the corresponding feed tube in the closed position.
- 19. The assembly of claim 17 wherein the vacuum delivery means comprises:a first stationary plate disposed at the vacuum end of the die holder and defining a first vacuum groove sized and located for supplying vacuum at the first period of time, so that when rotation of the die holder aligns the vacuum end of a feed tube in the first set of feed tubes with the first vacuum groove, vacuum is supplied to the one or more orifices in communication with the feed tube aligned with the first vacuum groove; and a second stationary plate disposed at the transport end of the die holder and defining a second vacuum groove sized and located for supplying vacuum at the second period of time, so that when rotation of the die holder aligns the transport end of a feed tube in the second set of feed tubes with the second vacuum groove, vacuum is supplied to the one or more orifices in communication with the feed tube aligned with the second vacuum groove.
- 20. The assembly of claim 19 wherein the air delivery means comprises:a first air groove defined by the first stationary plate and sized and located for supplying air at the third period of time, so that when rotation of the die holder aligns the vacuum end of a feed tube in the first set of feed tubes with the first air groove, air is supplied to the one or more orifices in communication with the feed tube aligned with the first air groove; and a second air groove defined by the second stationary plate and sized and located for supplying air at the fourth period of time, so that when rotation of the die holder aligns the transport end of a feed tube in the second set of feed tubes with the second air groove, air is supplied to the one or more orifices in communication with the feed tube aligned with the second air groove.
- 21. A rotary holder assembly adapted to carry a cutting die for cutting a panel from a material blank, the rotary holder assembly comprising:a cylindrical die holder adapted to be mounted on a drive shaft for rotating about an axis, the die holder having an outer surface, a vacuum end and a transport end; a plurality of orifices disposed on the outer surface of the die holder a plurality of feed tubes extending from the vacuum end of the die holder to the transport end of the die holder, each of the feed tubes being in communication with one or more of the orifices and having a vacuum end at the vacuum end of the die holder and a transport end at the transport end of the die holder; selecting means for selecting a first group of orifices and a second group of orifices from the plurality of orifices, the selecting means comprising opening and closing means for selectively opening and closing the transport and vacuum ends of the feed tubes, whereby the opening and closing means is used to open the vacuum end and close the transport end of each feed tube of a first set of feed tubes and to close the vacuum end and open the transport end of each feed tube of a second set of feed tubes so that the first group of orifices comprises the orifices in communication with the first set of feed tubes that communication with the vacuum side and not the transport side of the die holder and the second group of orifices comprises the orifices in communication with the second set of feed tubes that communicate with the transport side and not the vacuum side of the die holder; and air delivery means for delivery air to the orifices in the first group of orifices at a first period of time during the rotation of the die holder and air to the orifices in the second group of orifices at a second period of time during the rotation of the die holder.
- 22. The assembly of claim 21 wherein the first period of time and the second period of time overlap.
- 23. The assembly of claim 21 wherein the cutting die is at least partly made from a magnetically permeable material and the die holder includes a magnetic member disposed about the outer surface for retaining the cutting die.
- 24. The assembly of claim 21 wherein the air delivery means comprises:a first stationary plate disposed at the vacuum end of the die holder and defining a first air groove sized and located for supplying air at the first period of time, so that when rotation of the die holder aligns the vacuum end of a feed tube in the first set of feed tubes with the first air groove, air is supplied to the one or more orifices in communication with the feed tube aligned with the first air groove; and a second stationary plate disposed at the transport end of the die holder and defining a second air groove sized and located for supplying air at the second period of time, so that when rotation of the die holder aligns the transport end of a feed tube in the second set of feed tubes with the second air groove, air is supplied to the one or more orifices in communication with the feed tube aligned with the second air groove.
- 25. The assembly of claim 21 wherein the opening and closing means comprises a plurality of valve assemblies, each valve assembly comprising, in communication with an end of a corresponding one of the feed tubes, a valve member rotatable between an open position and a closed position wherein the valve member permits flow through the end of the corresponding feed tube in the open position and prevents flow through the end of the corresponding feed tube in the closed position.
- 26. The assembly of claim 25 wherein the valve member has a bore that aligns with the corresponding feed tube when the valve member is in the open position and does not align with the corresponding feed tube when the valve member is in the closed position.
- 27. A rotary holder assembly adapted to carry a cutting die for cutting a panel from a material blank, the rotary holder assembly comprising:a cylindrical die holder adapted to be mounted on a drive shaft for rotating about an axis, the die holder having an outer surface, a vacuum end and a transport end; a plurality of orifices disposed on the outer surface of the die holder; a plurality of feed tubes extending from the vacuum end of the die holder to the transport end of the die holder, each of the feed tubes being in communication with one or more of the orifices and having a vacuum end at the vacuum end of the die holder and a transport end at the transport end of the die holder; selecting means for selecting a first group of orifices and a second group of orifices from the plurality of orifices, the selecting means comprising opening and closing means for selectively opening and closing the transport and vacuum ends of the feed tubes, whereby the opening and closing means is used to open the vacuum end and close the transport end of each feed tube of a first set of feed tubes and to close the vacuum end and open the transport end of each feed tube of a second set of feed tubes so that the first group of orifices comprises the orifices in communication with the first set of feed tubes that communicate with the vacuum side and not the transport side of the die holder and the second group of orifices comprises the orifices in communication with the second set of feed tubes that communicate with the transport side and not the vacuum side of the die holder; and vacuum delivery means for delivering vacuum to the orifices in the first group of orifices at a first period of time during the rotation of the die holder and vacuum to the orifices in the second group of orifices at a second period of time during the rotation of the die holder, wherein the opening and closing means comprises a plurality of valve assemblies, each valve assembly comprising, in communication with an end of a corresponding one of the feed tubes, a valve member rotatable between an open position and a closed position wherein the valve member permits flow through the end of the corresponding feed tube in the open position and prevents flow through the end of the corresponding feed tube in the closed position.
- 28. The assembly of claim 27 wherein the valve member has a bore that aligns with the corresponding feed tube when the valve member is in the open position and does not align with the corresponding feed tube when the valve member is in the closed position.
- 29. The assembly of claim 27 wherein the vacuum delivery means comprises:a first stationary plate disposed at the vacuum end of the die holder and defining a first vacuum groove sized and located for supplying vacuum at the first period of time, so that when rotation of the die holder aligns the vacuum end of a feed tube in the first set of feed tubes with the first vacuum groove, vacuum is supplied to the one or more orifices in communication with the feed tube aligned with the first vacuum groove; and a second stationary plate disposed at the transport end of the die holder and defining a second vacuum groove sized and located for supplying vacuum at the second period of time, so that when rotation of the die holder aligns the transport end of a feed tube in the second set of feed tubes with the second vacuum groove, vacuum is supplied to the one or more orifices in communication with the feed tube aligned with the second vacuum groove.
- 30. The assembly of claim 29 further comprising air delivery means for delivering air to the first group of orifices at a third period of time during the rotation of the die holder and air to the second group of orifices at a fourth period of time during the rotation of the die holder.
- 31. The assembly of claim 30 wherein the air delivery means comprises:a first air groove defined by the first stationary plate and sized and located for supplying air at the third period of time, so that when rotation of the die holder aligns the vacuum end of a feed tube in the first set of feed tubes with the first air groove, air is supplied to the one or more orifices in communication with the feed tube aligned with the first air groove; and a second air groove defined by the second stationary plate and sized and located for supplying air at the fourth period of time, so that when rotation of the die holder aligns the transport end of a feed tube in the second set of feed tube with the second air groove, air is supplied to the one or more orifices in communication with the feed tube aligned with the second air groove.
- 32. A rotary holder assembly adapted to carry a cutting die for cutting a panel from a material blank, the rotary holder assembly comprising:a cylindrical die holder adapted to be mounted on a drive shaft for rotating about an axis, the die holder having an outer surface, a vacuum end and a transport end; a plurality of orifices disposed on the outer surface of the die holder a plurality of feed tubes extending from the vacuum end of the die holder to the transport end of the die holder, each of the feed tubes being in communication with one or more of the orifices and having a vacuum end at the vacuum end of the die holder and a transport end at the transport end of the die holder; selecting means for selecting a first group of orifices and a second group of orifices from the plurality of orifices, the selecting means comprising opening and closing means for selectively opening and closing the transport and vacuum ends of the feed tubes, whereby the opening and closing means is used to open the vacuum end and close the transport end of each feed tube of a first set of feed tubes and to close the vacuum end and open the transport end of each feed tube of a second set of feed tubes so that the first group of orifices comprises the orifices in communication with the first set of feed tubes that communicate with the vacuum side and not the transport side of the die holder and the second group of orifices comprises the orifices in communication with the second set of feed tubes that communicate with the transport side and not the vacuum side of the die holder; and vacuum delivery means for delivering vacuum to the orifices in the first group of orifices at a first period of time during the rotation of the die holder and vacuum to the orifices in the second group of orifices at a second period of time during the rotation of the die holder.
- 33. The assembly of claim 32 wherein the first period of time and the second period of time overlap.
- 34. The assembly of claim 32 wherein, when the material blank is adjacent the outer surface of the die holder, the first group of orifices communicates with at least a portion of the panel and the second group of orifices communicates with at least a portion of the material blank other than the panel.
- 35. The assembly of claim 32 wherein the cutting die is at least partly made from a magnetically permeable material and the die holder includes a magnetic member disposed about the outer surface for retaining the cutting die.
- 36. The assembly of claim 32 wherein the vacuum delivery means comprises:a first stationary plate disposed at the vacuum end of the die holder and defining a first vacuum groove sized and located for supplying vacuum at the first period of time, so that when rotation of the die holder aligns the vacuum end of a feed tube in the first set of feed tubes with the first vacuum groove, vacuum is supplied to the one or more orifices in communication with the feed tube aligned with the first vacuum groove; and a second stationary plate disposed at the transport end of the die holder and defining a second vacuum groove sized and located for supplying vacuum at the second period of time, so that when rotation of the die holder aligns the transport end of a feed tube in the second set of feed tubes with the second vacuum groove, vacuum is supplied to the one or more orifices in communication with the feed tube aligned with the second vacuum groove.
- 37. The assembly of claim 36 further comprising an interface seal disposed between the die holder and the first and second stationary plates for minimizing abrasion and friction therebetween.
- 38. The assembly of claim 36 further comprising air delivery means for delivering air to the first group of orifices at a third period of time during the rotation of the die holder and air to the second group of orifices at a fourth period of time during the rotation of the die holder.
- 39. The assembly of claim 38 wherein the air delivery means comprises:a first air groove defined by the first stationary plate and sized and located for supplying air at the third period of time, so that when rotation of the die holder aligns the vacuum end of a feed tube in the first set of feed tubes with the first air groove, air is supplied to the one or more orifices in communication with the feed tube aligned with the first air groove; and a second air groove defined by the second stationary plate and sized and located for supplying air at the fourth period of time, so that when rotation of the die holder aligns the transport end of a feed tube in the second set of feed tubes with the second air groove, air is supplied to the one or more orifices in communication with the feed tube aligned with the second air groove.
- 40. The assembly of claim 37 further comprising a plurality of magnets disposed about the outer surface of the die holder.
- 41. The assembly of claim 40 further comprising an insert and a groove within the surface of the die holder for receiving the insert, the insert having a recess for receiving one or more of the magnets.
- 42. The assembly of claim 40 wherein the cutting die has a leading edge and the assembly further comprises a slot within the surface of the cutting die for detachably receiving the leading edge of the cutting die.
- 43. The assembly of claim 40 in which the magnets are disposed in a plurality of columns circumventing the outer surface of the die holder.
- 44. The assembly of claim 43 in which the magnets in each column are aligned with the magnets in the adjacent columns.
- 45. The assembly of claim 43 in which the magnets in each column are offset from the magnets in the adjacent columns.
RELATED APPLICATIONS
This is a continuation-in-part of application Ser. No. 08/172,033, filed Dec. 22, 1993, now abandoned.
US Referenced Citations (59)
Foreign Referenced Citations (3)
Number |
Date |
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0312422 |
Apr 1992 |
EP |
0519661 |
Dec 1992 |
EP |
2133734 |
Aug 1984 |
GB |
Divisions (1)
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08/186439 |
Jan 1994 |
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09/161121 |
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Continuation in Parts (1)
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08/172033 |
Dec 1993 |
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08/186439 |
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Reissues (1)
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08/186439 |
Jan 1994 |
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09/161121 |
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