Claims
- 1. A shell press for making shells for beverage cans and the like, comprising:
- a slide assembly including a blanking and forming die station and a curling die station, both of said die stations being operated by said slide assembly, and a pair of reciprocative slide members,
- a pair of first tooling members being mounted in said blanking and forming die station for blanking and forming a shell, one of said first tooling members being operably connected to a first slide member in said slide assembly,
- first means for reciprocating said first slide member,
- a pair of second tooling members being mounted in said curling die station for curling a blanked and formed shell, one of said second tooling members being operably connected to a second slide member in said slide assembly,
- second means for reciprocating said second slide member,
- means for ejecting a blanked and formed shell from said blanking and forming die station, and
- fluid conveyor means extending between said die stations for conveying an ejected shell from said blanking and forming die station to said curling die station, said fluid conveyor means including a pair of opposed side walls defining a track and a hollow tube member, said tube member connected to a source of air located remotely from said track, said tube located in a bottom portion of said track contiguous with and extending substantially the distance between said die stations, said hollow tube member having a diameter much less than the transverse distance between said opposed side walls and further having a plurality of openings therein, said openings being shaped to provide air flow velocity components directed both upwardly and toward said curling die station when a flow of air is supplied therethrough.
- 2. The shell press of claim 1 wherein said fluid conveyor means further comprises:
- an upwardly facing surface, and wherein said pair of opposed side walls extend substantially the length of said upwardly facing surface, and a downwardly facing surface disposed above said upwardly facing surface and extending substantially the length thereof, said facing surfaces and side walls generally defining therebetween an elongated space extending between said die stations,
- said hollow tube member being contiguous with and extending the length of said elongated space, said openings in said hollow tube member providing fluid communication between said hollow tube member and said elongated space, and
- means for supplying a flow of air through said hollow tube member for fluidly conveying shells through said elongated space to said curling die station by the flow of air passing through said shaped openings.
- 3. The shell press of claim 2 wherein said openings are stamped from respective portions of said hollow tube member, said stamped portions having respective end parts remaining integral to said hollow tube member and respective opposite end parts disposed in the interior space of said hollow tube member and toward a flow of air supplied therethrough to scoop some of the flow of air through respective said openings.
- 4. The shell press of claim 3 wherein said stamped portions are generally arcuately shaped having their respective convexly-shaped surfaces generally inwardly facing into the interior space of said hollow tube member and their respective concavely-shaped surfaces generally outwardly facing therefrom and in the direction of said elongated space.
- 5. The shell press of claim 4 wherein said openings in said hollow tube member are axailly in line and circularly shaped.
- 6. The shell press of claim 2 wherein said opposed side walls are upstanding from said upwardly facing surface, the transverse distance between said side walls being greater than the diameter of a shell to be conveyed.
- 7. The shell press of claim 6 wherein said downwardly facing surface is disposed from one of said side walls and has a remote end above said upwardly facing surface, and further including:
- a second downwardly facing surface being disposed from the other of said side walls and having a remote end above said upwardly facing surface,
- said remote ends being spaced apart a transverse distance less than the diameter of a shell to be conveyed.
- 8. The shell press of claim 7 wherein said hollow tube member is disposed in said upwardly facing surface.
- 9. The shell press of claim 1 wherein said ejecting means is positively driven and synchronized with said slide assembly.
- 10. In a press installation including at least two die stations, an air transfer apparatus for moving parts from a first one of said die stations to the second one of said die stations, comprising:
- track means extending between said die stations for guiding parts from said first die station to said second die station, said track means comprising an upwardly facing surface, opposed side walls extending substantially the length of said upwardly facing surface, and a pair of downwardly facing surfaces extending inwardly from said opposing side walls and disposed above said upwardly facing surface and extending substantially the length thereof, said downwardly facing surfaces having a combined width less than the width of said upwardly facing surface, said facing surfaces and side walls generally defining therebetween an elongated space extending between said die stations,
- a hollow conduit being disposed in said track means below said downwardly facing surfaces, said conduit connected to a source of air located remotely from said track means, said conduit having a diameter much smaller than the transverse distance between said opposed side walls of said track means, said hollow conduit having a plurality of openings to provide fluid communication between said conduit and said elongated space, said openings being shaped to provide air flow velocity components in said elongated space directed both upwardly and towards said second die station when a flow of air is supplied through said conduit, and
- means for supplying a flow of air through said conduit, whereby a part to be ejected from said first die station onto said upwardly facing surface of said track means will be fluidly conveyed through said elongated space to said second die station by the flow of air being emitted through said shaped openings of said conduit.
- 11. The installation of claim 10 wherein said conduit is a tube member and said openings are stamped from respective portions of said tube member, said stamped portions having respective end parts remaining integral to said tube member and respective opposite remote end parts disposed in the interior space of said tube member and toward a flow of air supplied therethrough to direct a portion of the air flow through respective said openings.
- 12. The installation of claim 11 wherein said stamped portions are generally arcuately-shaped having their respective convexly-shaped surfaces generally inwardly facing into the interior space of said tube member and their respective concavely-shaped surfaces generally outwardly facing therefrom and in the direction of said elongated space.
- 13. The installation of claim 12 wherein said openings in said tube member are axially aligned and circularly-shaped.
- 14. The installation of claim 13 further including a plurality of track means for guiding a plurality of parts from said first die station to said second die station.
- 15. The installation of claim 10 wherein said opposed side walls are upstanding from said upwardly facing surface.
- 16. The installation of claim 15 wherein said tube member is disposed in said upwardly facing surface.
- 17. The installation of claim 16 further including a plurality of track means for guiding a plurality of parts from said first die station to said second die station.
- 18. In a press including a reciprocating slide member and a die station having a pair of cooperating tool elements therein, one of said tool elements being connected to said reciprocating slide member for reciprocative movement relative to the other of said tool elements for performing a shaping operation on a part, a pneumatic transfer system comprising:
- fluid conveyor means leading to said die station for conveying a part to be shaped to said die station,
- track means leading from said die station for guiding a shaped part away from said die station,
- a first wall member being disposed between said fluid conveyor means and said die station and connected to said reciprocating slide member to reciprocate therewith, said first wall member having an opening therein,
- a second wall member being disposed between said track means and said die station and connected to said reciprocating slide member to reciprocate therewith, said second wall member having an opening therein,
- air pulse means for directing a pulsed flow of air into said die station against a shaped part located in said die station, and
- means for reciprocating said slide member downwardly from an uppermost position to an intermediate position wherein said first wall member opening is aligned with said fluid conveyor means and said second wall member opening is out of alignment with said track means to permit a part to be shaped to be fluidly conveyed into said die station, then moving said slide member to a lowermost position wherein the part to be shaped is held in place between said tool elements, and then moving said slide member upwardly from said lowermost position to a predetermined position wherein said second wall member opening is aligned with said track means, said air pulse means directing a pulsed flow of air against the shaped part to eject it through said second wall member opening to said track means.
- 19. The press of claim 18 wherein said fluid conveyor means comprises an upwardly facing surface, opposed side walls extending substantially the length of said upwardly facing surface, and a downwardly facing surface disposed above said upwardly facing surface and extending substantially the length thereof, said downwardly facing surface having a width less than the transverse distance between said side walls, said facing surfaces and side walls generally defining therebetween an elongated space leading to said die station,
- a hollow tube member being contiguous with and extending the length of said elongated space, said hollow tube member having a diameter much less than said transverse distance between said opposed side walls and further having a plurality of openings to provide fluid communication between said hollow tube member and said elongated space, said openings being shaped to provide air flow velocity components in said elongate space directed both upwardly and towards said die station when a flow of air is supplied through said hollow tube member, and
- means for supplying a flow of air through said hollow tube member, whereby a part to be shaped is fluidly conveyed through said elongated space to said die station by the flow of air emitting through said shaped openings.
- 20. The press of claim 19 wherein said openings of said hollow tube member are formed from respective portions of said hollow tube member, each of said portions having an end part remaining integral with said hollow tube member and an opposite end part disposed within the interior space of said hollow tube member to direct a flow of air through its respective opening.
- 21. The press of claim 20 wherein said portions of said hollow tube member are generally arcuately-shaped having their respective convexly-shaped surfaces generally inwardly facing into the interior space of said hollow tube member and their respective concavely-shaped surfaces generally outwardly facing in the direction of said elongated space.
- 22. The press of claim 21 wherein said openings in said hollow tube member are axially in line and circularly shaped.
- 23. The press of claim 22 wherein said guiding track means fluidly conveys a shaped part away from said die station.
- 24. The press of claim 18 wherein said slide member is reciprocated by said reciprocating means from said upper most position to said lower most position and back to said upper most position in a continuous motion.
- 25. The press of claim 18 further including a sleeve member being disposed about said one tool element and connected to said reciprocating slide member to reciprocate therewith, and wherein said first and second wall members are integral to said sleeve member.
- 26. The press of claim 18 wherein said first wall member has a second opening therein, and wherein said providing means includes a conduit leading to said first wall member to deliver a flow of air thereto, said conduit and said second opening in said first wall member being aligned with a part to be shaped in said die station when said slide member is at said predetermined position, whereby a pulsed flow of air is delivered through said second opening for ejecting a shaped part through said second wall member opening to said track means.
- 27. The press of claim 26 wherein said providing means includes a controllable source of air flow connected to said conduit, and control means operatively connected to said controllable source for sensing when said slide member is at said predetermined position to cause said controllable source to deliver a pulsed flow of air through said conduit.
- 28. A method for fluidly conveying a part through a die station in a press for performing a shaping operation on the part, said press including a reciprocating slide member and a pair of cooperating tool elements in said die station, one of said tool elements being connected to said reciprocating slide member for reciprocative movement relative to the other of said tool elements for performing said shaping operation, a fluid conveyor leading to said die station, a first wall member disposed between said fluid conveyor and said die station and connected to said reciprocating slide member to reciprocate therewith, said first wall member having an opening therein, a second wall member disposed between a track and said die station and connected to said reciprocating slide member to reciprocate therewith, said second wall member having an opening therein, a source of pulsed air for directing a pulsed flow of air into said die station against a part located in said die station, and the track leading from said die station for conveying a shaped part away from said die station, said method comprising:
- aligning said opening in said first wall member with said fluid conveyor means;
- fluidly conveying a part to be shaped through said aligned opening in said first wall member into said die station;
- shaping said part with said tool elements in said die station;
- aligning said opening in said second wall member with said track;
- directing a pulsed flow of air against said shaped part in said die station; and
- ejecting said part with said pulsed flow of air from said die station onto said track.
Parent Case Info
This is a continuation of application Ser. No. 434,046, filed Oct. 13, 1982, now abandoned.
US Referenced Citations (11)
Continuations (1)
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Number |
Date |
Country |
Parent |
434046 |
Oct 1982 |
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