Claims
- 1. A wire feeding and electrical contact applicator mechanism, comprising:
- a barrier provided with a wire receiving opening of sufficiently small dimensions to prevent insertion of a human operator's finger therethrough,
- a friction drive,
- a pair of jaws of an applicator mounted in tandem alignment with said friction drive,
- said jaws being normally spaced apart and closeable together for cold forging an electrical contact to an electrical wire transported between said jaws by said friction drive,
- said friction drive including a cylindrical feed roller and a motor for driving said feed roller and an idler roller cooperating with said feed roller to frictionally grip there between an electrical wire supplied by an operator through said electrical wire receiving opening,
- means on the cylindrical periphery of said feed roller for transporting a wire transversely of its length from said wire receiving opening toward said jaws and for transporting a wire longitudinally into position between said jaws, and
- means mounted in tandem alignment with said jaws for sensing an electrical wire in position between said jaws and for closing said jaws together to cold forge an electrical contact to the electrical wire in position between said jaws.
- 2. The structure of claim 1, and further including:
- an escapement station,
- said feed roller being provided with a helical groove frictionally engageable on an electrical wire for transport of the wire longitudinally into position between said jaws and for transport of the wire transversely of its length to said escapement station.
- 3. The structure of claim 2, wherein, said barrier opening comprises a funnel for serially feeding a plurality of electrical wires to said feed roller, and said helical groove is of a depth and width to frictionally engage a single one of said wires.
- 4. Apparatus for conveying wires serially laterally of their axes for a predetermined distance and then feeding each wire axially, said apparatus comprising:
- a wire conveying and feeding roller having a cylindrical surface, drive motor means for rotating said roller,
- a wire-receiving groove in said cylindrical surface, said groove extending circumferentially around said roller and towards one end of said roller,
- confining means extending adjacent to said surface and towards said one end of said roller for confining said wires in said groove, and
- pressure roller means adjacent to said one end of said roller for applying pressure to a wire disposed in said groove which is adjacent to said one end whereby, upon placing a wire in said groove and upon rotation of said roller, said wire will be conveyed laterally of its axis and towards said one end, and after lateral conveyance, said wire will be fed axially by said roller in cooperation with said pressure roller.
- 5. Apparatus as set forth in claim 4, said apparatus having loading means for loading said wires into said groove.
- 6. Apparatus as set forth in claim 4, said groove having an end which is located intermediate the ends of said roller, said groove extending from said end towards said one end of said roller.
- 7. Apparatus as set forth in claim 6, said groove extending to, and intersecting, said one end of said roller.
- 8. Apparatus for feeding individual wires to an operating zone, presenting one end of each wire to said zone, and performing an operation, such as crimping a terminal, on each wire in said zone, said apparatus comprising:
- a wire conveying and feeding roller having a cylindrical surface,
- drive motor means for rotating said roller,
- a wire loading station and a wire axial feeding station, said stations being spaced apart in the direction of the axis of said roller and being proximate to said cylindrical surface,
- a wire-receiving groove in said cylindrical surface, said groove extending circumferentially around said roller from said loading station to said axial feeding station,
- wire loading means at said loading station for loading individual wires in said groove with the axes of said wires extending generally tangentially with respect to said cylindrical surface,
- wire stop means proximate to said cylindrical surface for engaging one end of each wire which is loaded in said groove to prevent axial movement of each wire, said wire stop means extending from a location adjacent to said loading station towards said feeding station whereby, rotation of said roller conveys each wire loaded into said groove laterally of its axis toward said axial feeding station,
- wire feeding means at said axial feeding station for feeding each wire axially, said wire feeding means comprising portions of said groove,
- said operating zone being proximate to said roller at said wire feeding station and spaced from said roller in the direction of axial feeding of each wire, said operating zone having operating means therein for performing said operation on each wire, whereby, during continuous operation of said apparatus, wires placed in said groove at said loading station, are moved laterally of their axes to said wire feeding station, are fed axially into said operating zone, and an operation is performed on an end of each of said wires in said operating zone.
- 9. Apparatus as set forth in claim 8, wherein, said axial feeding means comprises pressure applying means proximate to said feeding station for pressing a wire against said portions of said groove, whereby, during rotation of said roller said portions of said groove apply an axial force to said wire to feed said wire axially towards said operating zone.
- 10. Apparatus as set forth in claim 9, said pressure applying means comprising a pressure roller.
- 11. Apparatus as set forth in claim 8, said loading station comprising guide slot means extending radially towards said roller and transversely of the axis of said roller, said guide slot means having opposed surfaces which are spaced apart by a distance which is sufficient to receive one of said wires whereby said wires can be stacked in said guide slot means and the lowermost wire of the stack will enter said groove during each rotation of said roller.
- 12. Apparatus as set forth in claim 8, said apparatus having sensing means proximate to said operatng zone for sensing the presence of a laterally conveyed and axially fed wire is said operating zone.
- 13. Apparatus as set forth in claim 12, said operating means comprising crimping means in said operating zone for crimping terminals onto wires which have been fed into said operating zone, and actuating means for actuating said crimping means, said actuating means being responsive to said sensing means and being effective to actuate said crimping means upon arrival of a wire in said operating zone.
- 14. Apparatus as set forth in claim 8, said apparatus having ejector means in said operating zone proximate to said operating means for ejecting said wires from said apparatus after performance of said operation on each wire.
- 15. Apparatus as set forth in claim 13, said ejector means comprising an ejector turret disposed between said roller and said operating means, said ejector turret mounted for rotation on an axis which extends towards said operating means, wire receiving recesses extending through said turret parallel to the axis thereof whereby a wire which is fed axially towards said operating means is disposed in one of said recesses, and means for indexing said ejector turret in a direction to move a wire in one of said recesses laterally away from said roller and said operating means.
- 16. An electrical lead feeding mechanism, comprising:
- a roller having a cylindrical periphery provided with a helical groove,
- first means adjacent a first portion of said roller for feeding a plurality of electrical leads individually into engagement with said groove of said roller,
- second means for rotating said roller to transport said leads along said roller and to transport said leads simultaneously lengthwise and transversely of their lengths while engaged with said groove from said first portion of said roller to a second portion thereof,
- third means adjacent said second portion of said roller for sensing individual ones of said leads transported from said first portion of said roller to said second portion of said roller,
- an applicator adjacent said third means and being actuated by said third means for connecting electrical contacts to corresponding individual ones of said leads sensed by said third means, and
- an escapement station,
- said roller terminating at said escapement station whereby each of said leads is permitted to escape from said roller after connection thereto of an electrical contact.
- 17. The structure as recited in claim 16, and further including:
- an idler roller mounted rotatably over said cylindrical roller and pressing said leads into engagement with said groove.
- 18. The structure as recited in claim 16, and further including:
- a gate adjacent said third means,
- said roller upon rotation thereof transporting individual ones of said leads transversely into engagement with said gate,
- said roller upon rotation thereof transporting individual ones of said leads lengthwise while engaged on said gate toward said third means,
- said third means sensing individual ones of said leads transported lengthwise while engaged on said gate, and
- fourth means selectively disengaging said gate from individual ones of said leads sensed by said third means and connected with an electrical contact.
- 19. The structure as recited in claim 18, wherein, said fourth means pivots said gate to sweep individual ones of said leads connected with an electrical contact toward said escapement station.
Parent Case Info
This is a division of application Ser. No. 628,028, filed Nov. 3, 1975, now abandoned.
US Referenced Citations (5)
Divisions (1)
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Number |
Date |
Country |
Parent |
628028 |
Nov 1975 |
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