Claims
- 1. Apparatus for forming metallic can ends in a press, said apparatus comprising:
- a) an upper die assembly and a lower die assembly, each of said upper and lower die assemblies having relatively vertically reciprocal die components;
- b) a cutting edge with which one of said upper and lower die assemblies cooperates to cut blanks from a sheet of metal stock;
- c) means for moving selected ones of said die components such that the die compounds coat with each other to form said ends from said blanks; and
- d) a vacuum creating arrangement for creating a vacuum against the underside of the formed end to positively seat said formed end on the lower die component as predetermined ones of the upper die components begin to separate from the end, further comprising means for providing communication between the upper side of the formed end with ambient air pressure during release of said vacuum applied to the underside of the formed end, and a vacuum venting arrangement operatively connected for enabling communication between the underside of the formed end with ambient air pressure to release vacuum.
- 2. Apparatus of claim 1, wherein said vacuum creating arrangement includes means for applying a vacuum through at least one of the lower die components to said underside of the formed end, and wherein said vacuum applying means includes cam operated vacuum valve means responsive to movement of the upper die assembly to precisely control the shut-off of vacuum as the upper die assembly reaches a predetermined location.
- 3. Apparatus of claim 2, wherein said vacuum valve means includes means for establishing ambient pressure to the end underside when the vacuum is shut off.
- 4. Apparatus of claim 1, further comprising main air supply valving means movable from a first position wherein pressurized air is supplied to resiliently bias the upper and lower die components and a second position communicating with atmosphere for depressurizing the resiliently biased components.
- 5. Apparatus of claim 1, further comprising means for locating the upper forming surfaces of the lower die components coelevational with each other to define the bottom of an exit slot between the upper and lower dies which bottom is coelevational with the bottom surface of an entrance end of an ejection slot formed immediately adjacent the exit slot, and means for directing pressurized fluid against a side of the formed end which is opposite the ejection slot to rapidly eject the formed end from between the upper and lower die assemblies.
- 6. Apparatus of claim 5, wherein said lower die assembly includes a bottom die core engageable with the underside of the blank for forming the center portion of said formed end, and means for lifting the bottom die core at a predetermined time during the forming process so that its upper forming surface is coelevational with the other upper forming surfaces.
- 7. Apparatus of claim 6, wherein said lower die assembly further includes a lift ring located radially outwardly adjacent the bottom die core for engaging the bottommost portion of the formed end so that it is coelevational with the ejection slot.
- 8. Apparatus of claim 7, wherein said lower die assembly further comprises a die center ring mounted radially outwardly adjacent the lift ring to form an outer peripheral bent lip in the formed end.
- 9. Apparatus of claim 8, wherein said lower die assembly further comprises a lower draw ring mounted radially outwardly adjacent the die center ring, and said upper die assembly includes a punch shell cooperating with the cut edge to cut the blank from the stock, the bottom surface of the punch shell cooperating with the top surface of the lower draw ring to clamp the peripheral edge of the blank therebetween and thereby enable the peripheral bent lip of the formed end to be formed around the die center.
- 10. Apparatus of claim 9, wherein said upper die assembly further comprises an upper draw ring located radially inwardly adjacent the punch shell to coact with the upper forming surface of the die center to form said bent lip.
- 11. Apparatus of claim 10, wherein said upper die assembly further comprises a punch core having a bottom forming surface cooperating with the upper forming surface of the die core to form the center panel of the formed end.
- 12. Apparatus of claim 11, wherein said bottom forming surface of the punch core includes a downwardly projecting ridge or nose circumscribing the remainder of the bottom forming surface of the punch core for forming a countersink portion in the formed end between the center panel and the lip.
- 13. Apparatus of claim 12, further comprising re-form piston means for resiliently biasing the die core during the downward forming stroke of the upper die assembly and for relatively raising the die core during the upward stroke of the upper die assembly to re-form the center panel of the formed end into a desired shape.
- 14. Apparatus for forming metallic can ends in a press, said apparatus comprising:
- a) an upper die assembly and a lower die assembly, each of said upper and lower die assemblies having relatively vertically reciprocal die components;
- b) a cutting edge with which one of said upper and lower die assemblies cooperates to cut blanks from a sheet of metal stock;
- c) means for moving selected ones of said die components such that the die compounds coat with each other to form said ends from said blanks; and
- d) means for applying a vacuum through at least one of the lower die components to the underside of the formed end to positively seat said formed end on the lower die component as predetermined ones of the upper die components begin to separate from the end, wherein said vacuum applying means includes cam operated vacuum valve means responsive to movement of the upper die assembly to precisely control the shut-off of vacuum as the upper die assembly reaches a predetermined location, wherein said cam operated means includes a rotary valve mounted to a vacuum manifold having first passageway means connected to a vacuum source and second passageway means communicating with ambient air pressure; means having a cam slot movable in response to movement of the upper die and a cam follower engaging the slot and operable to rotate the rotary valve to selectively establish and positively control communication between said end underside with the first and second passageways.
- 15. Apparatus of claim 14, wherein said press includes a crank for reciprocating the upper die into and out of contact with the lower die during the forming cycle, said cam slot means mounted to move synchronously with the upper die in reciprocating strokes.
- 16. Apparatus of claim 15, wherein said upper die is mounted to a crank driven punch shoe, said cam slot means including a punch bar connected to project from the punch shoe towards the vacuum valve means to receive the cam follower in the cam slot means.
- 17. Apparatus for forming metallic can ends in a press, said apparatus comprising:
- a) an upper die assembly and a lower die assembly, each of said upper and lower die assemblies having relatively vertically reciprocal die components;
- b) a cutting edge with which one of said upper and lower die assemblies cooperates to cut blanks from a sheet of metal stock;
- c) means for moving selected ones of said die components such that the die compounds coat with each other under resilient bias means to form said ends from said blanks; and
- d) means for locating the upper forming surfaces of all of said lower die components coelevational with each other, after forming, and in elevational alignment with an end ejection slot.
- 18. Apparatus for forming metallic can ends in a press utilizing upper and lower die assemblies, comprising the steps of:
- a) feeding metallic stock across a die forming axis with the upper die assembly located above the stock in coaxial alignment with the lower die assembly;
- b) cutting the stock into a circular blank by moving the upper die assembly in its downstroke into contact with the stock and in cooperation with a cutting edge disposed below the stock;
- c) forming the stock by directing it downward into contact with the lower die assembly so that die components of the upper and lower doe assemblies coact with each other to form the stock into a predetermined shape
- d) applying a vacuum through one of the lower die components to the underside of the formed end to positively seat said formed end on the lower die components during the upstroke of the upper die assembly;
- e) releasing the vacuum applied to said formed end underside as selected ones of the upper die components begin to separate from the formed end by providing ambient air pressure to the underside of the formed end to replace the released vacuum, and wherein ambient air pressure is also provided to the top side of the formed end during said release of vacuum applied to the formed end underside; and
- f) ejecting the formed end from between the upper and lower die assemblies.
RELATED APPLICATIONS
This application is a division of application Ser. No. 07/716,715 filed Jun. 17, 1991 now U.S. Pat. No. 5,209,098 which is a continuation-in-part of application Ser. No. 530,506, filed May 31, 1990, now abandoned which is a continuation of application Ser. No. 104,745, filed Oct. 5, 1987, now abandoned.
US Referenced Citations (40)
Divisions (1)
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Date |
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716715 |
Jun 1991 |
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Continuations (1)
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104745 |
Oct 1987 |
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Continuation in Parts (1)
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530506 |
May 1990 |
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