Claims
- 1. A cut-off mechanism for severing elongate stock, comprising:
a first jaw having a laterally inclined first cutting surface extending between a single sharpened leading edge and a trailing edge; a second jaw having a laterally inclined second cutting surface extending between a single sharpened leading edge and a trailing edge; said first and second jaws pivotally interconnected in a side-by-side relationship at a location spaced apart from said first and second cutting surfaces, said leading edges of said first and second cutting surfaces positioned in close planar alignment to shear cut elongate stock positioned therebetween; a powered actuator operably connected with at least one of said first and second jaws and mutually rotating the same; and wherein:
said single leading edge of said first cutting surface has a hook-shaped side elevational configuration extending arcuately between an outer tip portion thereof and an inner base portion thereof, whereby when said first and second jaws are pivotally converged by said powered actuator, elongate stock positioned between said first and second cutting surfaces adjacent the outer tip portion of said leading edge of said first cutting surface, is incrementally shear cut through its entire thickness to cleanly sever the same to length with minimal jolt.
- 2. A cut-off mechanism as set forth in claim 1, wherein:
said second jaw is rotationally fixed; said first jaw defines first and second ends and an intermediate section therebetween; said single hook-shaped leading edge of said first cutting surface disposed adjacent said first end; and said powered actuator is connected to said first jaw adjacent said second end and rotating said first jaw about said intermediate section.
- 3. A cut-off mechanism as set forth in claim 2, wherein:
said cut-off mechanism includes a connector pivotally interconnecting said first and second jaws; and said first jaw rotates with respect to said second jaw about said connector.
- 4. A cut-off mechanism as set forth in claim 3, wherein:
said actuator comprises a hydraulic cylinder.
- 5. A cut-off mechanism for severing elongate stock, comprising:
a first jaw having a laterally inclined first cutting surface extending between a single sharpened leading edge and a trailing edge; a second jaw having a laterally inclined second cutting surface extending between a single sharpened leading edge and a trailing edge; a connector assembly pivotally interconnecting said first and second jaws in a side-by-side relationship at a location spaced apart from said first and second cutting surfaces, and positioning said leading edges of said first and second cutting surfaces to shear cut elongate stock positioned therebetween; a hydraulic cylinder operably connected with at least one of said first and second jaws and mutually rotating the same; said single leading edge of said first cutting surface having a hook-shaped side elevational configuration extending arcuately between an outer tip portion thereof and an inner base portion thereof, whereby when said first and second jaws are pivotally converged by said powered actuator, elongate stock positioned between said first and second cutting surfaces adjacent the outer tip portion of said leading edge of said first cutting surface, is incrementally shear cut through its entire thickness to cleanly sever the same to length with minimal jolt; wherein:
said second jaw is rotationally fixed; said first jaw defines first and second ends and an intermediate section therebetween; said single hook-shaped leading edge of said first cutting surface disposed adjacent said first end; said hydraulic cylinder connected to said first jaw adjacent said second end and rotating said first jaw about said intermediate section; said first jaw rotates with respect to said second jaw about said connector assembly; said connector assembly includes a guide block and a U-shaped block translationally received therein, with a pin extending laterally through said U-shaped block and pivotally connecting said first jaw thereto, such that said first jaw is translationally guided within said guide block by said U-shaped block.
- 6. A cut-off mechanism as set forth in claim 5, wherein:
said connector defining a pivot axis; and said leading edge of said first cutting surface has an angle in the range of 0 to 45 degrees relative to said pivot axis.
- 7. A cut-off mechanism as set forth in claim 6, wherein:
said leading edge of said second cutting surface has an angle in the range of 0 to 45 degrees relative to said pivot axis.
- 8. A cut-off mechanism as set forth in claim 7, wherein:
said outer tip portion and said inner base portion of said first cutting edge form a mutually included angle in the range of 90 to 160 degrees.
- 9. A cut-off mechanism as set forth in claim 8, wherein:
said leading edge of said first cutting surface has an arcuate portion disposed between said outer tip portion and said inner portion with a radius in the range of 0.125 to 0.375 inches.
- 10. A cut-off mechanism as set forth in claim 9, wherein:
said U-shaped block is slidably disposed in said guide block; and including:
a powered actuator that shifts said first jaw relative to said second jaw between an extended cutting position and a retracted storage position.
- 11. A cut-off mechanism as set forth in claim 9, wherein:
said inner portion of said leading edge of said first cutting surface is angled such that said leading edges of said first and second cutting surfaces form an angle in the range of 15 to 30 degrees when said leading edges of said first and second cutting surfaces initially contact the elongate stock to urge the stock into said arcuate portion.
- 12. A cut-off mechanism as set forth in claim 11, wherein:
said first and second cutting surfaces are formed by a hardened steel insert.
- 13. In a metal forming machine of the type fabricating elongate stock, the improvement of a cut-off mechanism therefor, comprising:
a first jaw having a laterally inclined first cutting surface extending between a sharpened leading edge and a trailing edge, said first jaw defining a first end; a first single cutting edge having a hook-shaped side elevational configuration extending arcuately between an outer tip portion and an inner base portion thereof, said single first cutting edge disposed adjacent said first end of said first jaw; a second jaw having a laterally inclined second cutting surface disposed adjacent a first end of said second jaw and extending between a single sharpened leading edge and a trailing edge; said second jaw being pivotally connected with said first jaw in a side-by-side relationship at a location spaced apart from said first end, and having said leading edges of said first and second cutting surfaces in close planar alignment to shear cut stock positioned therebetween; a motor operably connected with at least one of said first and second jaws at a far side of said pivotal connection from said first ends, and mutually rotating the same such that when said first and second jaws are converged, stock positioned between said first and second cutting surfaces adjacent the outer tip portion of said first cutting edge is incrementally shear cut through its entire thickness to cleanly sever the same to length with minimal jolt.
- 14. A cut-off mechanism as set forth in claim 13, wherein:
said second jaw is rotationally fixed.
- 15. A cut-off mechanism as set forth in claim 14, wherein:
said first jaw rotates with respect to said second jaw about said pivotal connection.
- 16. A cut-off mechanism for elongate stock, comprising:
a first jaw having a laterally inclined first cutting surface extending between a sharpened leading edge and a trailing edge; a second jaw having a laterally inclined second cutting surface extending between a sharpened leading edge and a trailing edge; a powered actuator; a connector translationally and pivotally interconnecting said first and second jaws in a side-by-side relationship at a location spaced apart from said first and second cutting surfaces, said powered actuator connected to said first jaw and translating said first jaw relative to said second jaw between retracted and extended positions, said first jaw pivoting relative to said second jaw between a closed position and an open position providing sufficient clearance between said first and second jaws to permit translation of said first jaw to said extended position when stock is positioned proximate said second jaw, said connector providing translation of said first jaw when in said open position, said connector positioning said leading edges of said first and second cutting surfaces when said first jaw is in said extended position to shear cut stock positioned therebetween; and wherein said leading edge of said first cutting surface has a hook-shaped side elevational configuration extending arcuately between an outer tip portion thereof and an inner base portion thereof, whereby when said first and second jaws are converged, stock positioned between said first and second cutting surfaces adjacent the outer tip portion of said cutting edge of said first cutting surface is incrementally shear cut through its entire thickness to cleanly sever the same to length with minimal jolt.
- 17. A cut-off mechanism as set forth in claim 16, wherein:
said connector includes a guide block; and said first jaw translates linearly with respect to said second jaw along said guide block.
- 18. A cut-off mechanism as set forth in claim 18, including:
a motor operably connected with said first jaw and rotating the same to a fully converged position with respect to said second jaw.
- 19. A cut-off mechanism as set forth in claim 18, wherein:
said cutting edge of said first cutting surface has an arcuate portion disposed between said outer tip portion and said inner base portion with a radius in the range of 0.100 to 0.375 inches.
- 20. A cut-off mechanism as set forth in claim 19, wherein:
said first and second jaws each include an elongate body portion and first and second inserts forming said first and second cutting surfaces, said inserts having a keyed connection to said elongate body portions.
- 21. A cut-off mechanism for elongate stock, comprising:
a first jaw having a sharpened leading edge; a second jaw having a sharpened leading edge; a connector assembly interconnecting said first and second jaws, said connector assembly including a pivot that permits rotation of said first jaw relative to said second jaw, and a guide that provides controlled translation of said first jaw relative to said second jaw along said guide between an extended cutting position, and retracted position that provides clearance during forming operations; a first powered actuator connected to a selected one of said first and second jaws and providing powered rotation of said first jaw relative to said second jaw about said pivot; and a second powered actuator connected to a selected one of said first and second jaws and shifting said selected jaw between said extended and retracted positions along said guide.
- 22. A wire forming machine, comprising:
a base; at least two feed rollers rotatably mounted to said base for powered feeding of elongated stock to a forming mechanism; first and second jaws positioned adjacent a forming mechanism, each jaw having a sharpened leading edge; a connector assembly movably interconnecting said first and second jaws, said connector assembly including a pivot that permits rotation of said first jaw relative to said second jaw, and a guide that provides controlled translation of said first jaw relative to said second jaw along said guide between an extended cutting position, and retracted position that provides clearance during forming operations; a first powered actuator connected to a selected one of said first and second jaws and providing powered rotation of said first jaw relative to said second jaw about said pivot; and a second powered actuator connected to selected one of said first and second jaws and shifting said selected jaw between said extended and retracted positions along said guide.
- 23. A cut-off mechanism for severing elongate stock, comprising:
a first jaw having a first surface extending between a sharpened leading first cutting edge and a trailing edge, said first jaw defining first and second ends and an intermediate section therebetween; a rotationally fixed second jaw having a second surface extending between a sharpened leading second cutting edge and a trailing edge; a connector assembly pivotally interconnecting said first and second jaws in a side-by-side relationship at a location spaced apart from said first and second cutting edges, and positioning said leading cutting edges to shear cut elongate stock positioned therebetween, wherein said first jaw rotates with respect to said second jaw about said connector assembly, and said connector assembly includes a guide block and a U-shaped block translationally received therein, with a pin extending laterally through said U-shaped block and pivotally connecting said first jaw thereto, such that said first jaw is translationally guided within said guide block by said U-shaped block; a hydraulic cylinder operably connected with at least one of said first and second jaws and mutually rotating the same, said hydraulic cylinder connected to said first jaw adjacent said second end and rotating said first jaw about said intermediate section; said sharpened leading first cutting edge having a hook-shaped side elevational configuration extending arcuately between an outer tip portion thereof and an inner base portion thereof, said hook-shaped leading first cutting edge disposed adjacent said first end whereby when said first and second jaws are pivotally converged by said powered actuator, elongate stock positioned between said first and second cutting edges adjacent the outer tip portion of said first cutting edge is incrementally shear cut through its entire thickness to cleanly sever the same to length with minimal jolt.
- 24. The cut-off mechanism set forth in claim 23, wherein:
said first and second surfaces are laterally inclined.
- 25. A cut-off mechanism for elongate stock, comprising:
a first jaw having a first surface extending between a sharpened leading first cutting edge and a trailing edge; a second jaw having a second surface extending between a sharpened leading second cutting edge and a trailing edge; a powered actuator; a connector translationally and pivotally interconnecting said first and second jaws in a side-by-side relationship at a location spaced apart from said first and second cutting surfaces, said powered actuator operably connected to said first jaw and translating said first jaw relative to said second jaw between retracted and extended positions, said first jaw pivoting relative to said second jaw between a closed position and an open position providing sufficient clearance between said first and second jaws to permit translation of said first jaw to said extended position when stock is positioned proximate said second jaw, said connector providing translation of said first jaw when in said open position, said connector positioning said first and second cutting edges when said first jaw is in said extended position to shear cut stock positioned therebetween; and wherein said leading first cutting edge has a hook-shaped side elevational configuration extending arcuately between an outer tip portion thereof and an inner base portion thereof, whereby when said first and second jaws are converged, stock positioned between said first and second cutting edges adjacent the outer tip portion of said first cutting edge is incrementally shear cut through its entire thickness to cleanly sever the same to length with minimal jolt.
- 26. The cut-off mechanism set forth in claim 25, wherein:
said first and second surfaces are laterally inclined.
- 27. A cut-off mechanism for elongate stock, comprising:
a first jaw having a sharpened leading edge; a second jaw having a sharpened leading edge; at least one of said sharpened leading edges having a curved side elevational configuration; a connector assembly interconnecting said first and second jaws, said connector assembly including a pivot that permits rotation of said first jaw relative to said second jaw, and a guide that provides controlled translation of said first jaw relative to said second jaw along said guide between an extended cutting position, and retracted position that provides clearance during forming operations; a first powered actuator connected to a selected one of said first and second jaws and providing powered rotation of said first jaw relative to said second jaw about said pivot; and a second powered actuator connected to a selected one of said first and second jaws and shifting said selected jaw between said extended and retracted positions along said guide.
- 28. A wire forming machine, comprising:
a base; at least two feed rollers rotatably mounted to said base for powered feeding of elongated stock to a forming mechanism; first and second jaws positioned adjacent a forming mechanism, each jaw having a sharpened leading edge, at least one of said sharpened leading edges having a curved side elevational configuration; a connector assembly movably interconnecting said first and second jaws, said connector assembly including a pivot that permits rotation of said first jaw relative to said second jaw, and a guide that provides controlled translation of said first jaw relative to said second jaw along said guide between an extended cutting position, and retracted position that provides clearance during forming operations; a first powered actuator connected to a selected one of said first and second jaws and providing powered rotation of said first jaw relative to said second jaw about said pivot; and a second powered actuator connected to selected one of said first and second jaws and shifting said selected jaw between said extended and retracted positions along said guide.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] The present application is a continuation of U.S. patent application Ser. No. 08/831,507, filed on Mar. 31, 1997, entitled CUT-OFF MECHANISM FOR ELONGATE STOCK, the entire contents of which are hereby incorporated by reference.
Continuations (1)
|
Number |
Date |
Country |
Parent |
08831507 |
Mar 1997 |
US |
Child |
09802210 |
Mar 2001 |
US |