Claims
- 1. A presser assembly for supporting blanking scrap during a blanking operation, the presser assembly comprising:a support rail; a presser rail connected to the support rail, the presser rail comprising an elongated member having two side walls and a bottom wall together defining a trough; and a connecting rail connecting the presser rail to the support rail and being adapted to pivot with respect to at least one of the support rail and the presser rail through a predetermined pivot angle range for changing a distance between the support rail and the presser rail thereby selectively effecting a folding and an unfolding of the presser assembly during the blanking operation; wherein the connecting rail comprises a presser end and a support end and is pivotally connected to the presser rail such that the presser end thereof is disposed in the trough.
- 2. The presser assembly according to claim 1, wherein:the presser rail is connected to the support rail respectively at a first end and at a second end thereof; the connecting rail comprises a first connecting rail and a second connecting rail connecting the presser rail to the support rail respectively at the first end and at the second end thereof, the first connecting rail and the second connecting rail each being adapted to independently pivot with respect to at least one of the support rail and the presser rail for changing a distance between the support rail and the presser rail to thereby enable folding of the presser assembly during the blanking operation.
- 3. The presser assembly according to claim 2, further comprising a biasing mechanism for biasing the presser rail away from the support rail, wherein:each of the first connecting rail and the second connecting rail has a presser end and a support end; and the biasing mechanism comprises a torsion spring disposed at, at least one of the presser end and the support end of at least one of the first connecting rail and the second connecting rail.
- 4. The presser assembly according to claim 3, wherein the torsion spring includes a first torsion spring and a second torsion spring disposed at the presser end of the first connecting rail and at the presser end of the second connecting rail, respectively.
- 5. The presser assembly according to claim 3, further including a first pin and a second pin respectively extending through the presser ends of the first connecting rail and the second connecting rail for pivotally securing the first connecting rail and the second connecting rail to the presser rail.
- 6. The presser assembly according to claim 2, wherein the first connecting rail and the second connecting rail extend, in a default mode thereof, at an angle of about 45 degrees between the support rail and the presser rail.
- 7. The presser assembly according to claim 1, wherein the two side walls are parallel.
- 8. The presser assembly according to claim 2, wherein the presser rail further includes two pairs of recesses therein, each pair of the two pairs including a first recess in one sidewall of the presser rail and a second slot in another, facing sidewall of the presser rail, the recesses of each pair of recesses being in registration with one another in a direction transverse to a longitudinal direction of the presser rail, the two pairs of recesses further being disposed at a central region of the presser rail and being spaced from one another.
- 9. The presser assembly according to claim 8, wherein the two pairs of recesses are spaced from one another such that a distance c between centers thereof is about 1.5 inches.
- 10. The presser assembly according to claim 8, wherein a ratio of a distance between centers of the two pairs of recesses and a length of the presser rail is about 0.2:1.
- 11. The presser assembly according to claim 8, wherein each of the recesses of the two pairs of recesses is semicircular.
- 12. The presser assembly according to claim 2, wherein:each of the first connecting rail and the second connecting rail includes a support end and a presser end; the presser rail defines a first hole at a first end thereof and a second hole at a second end thereof and the presser assembly further comprises: a first pin and extending through the first hole of the presser rail and through the presser end of the first connecting rail for pivotally securing the first connecting rail to the presser rail; and a second pin and extending through the second hole of the presser rail and through the presser end of the second connecting rail for pivotally securing the second connecting rail to the presser rail.
- 13. The presser assembly according to claim 12, wherein a ratio of a distance between centers between the first hole and of the second hole and a length of the presser rail is about 0.8 or greater.
- 14. The presser assembly according to claim 2, wherein the support rail is an elongated member defining a trough therein, the first connecting rail and the second connecting rail each having a presser end and a support end and further being slidably guidable within the trough at support ends thereof.
- 15. The presser assembly according to claim 14, wherein:the support rail defines two pairs of guide slots therein, each pair of the two pairs including a first slot in one sidewall of the support rail and a second slot in another, facing sidewall of the support rail, said slots of each pair of slots being in registration with one another in a direction transverse to a longitudinal direction of the support rail; the presser assembly further comprises a sliding mechanism for effecting a sliding of the support ends of the first connecting rail and the second connecting rail within the trough, the sliding mechanism including a first guide pin and a second guide pin extending through the support ends of the first connecting rail and the second connecting rail respectively and further being slidably guided within the two pairs of guide slots.
- 16. The presser assembly according to claim 15, wherein the sliding mechanism further includes a first glide support and a second glide support connected to the support ends of the first connecting rail and the second connecting rail, respectively, each glide support being configured to be guided within the trough for slidably guiding the support ends in the trough.
- 17. The presser assembly according to claim 16, further comprising a lubricant disposed in the trough for lubricating a sliding motion of each glide support within the trough.
- 18. The presser assembly according to claim 15, wherein the two pairs of guide slots are spaced from one another such that, in a fully folded state of the presser assembly, the support rail, the connecting rail and the presser rail are substantially parallel to one another, and the first guide pin and the second guide pin each are received in a respective one of the two pairs of guide slots.
- 19. The presser assembly according to claim 1, further comprising a biasing mechanism for biasing the presser rail away from the support rail.
- 20. The presser assembly according to claim 19, wherein the biasing mechanism is coupled to at least one of two ends of the connecting rail.
- 21. The presser assembly according to claim 20, wherein the biasing mechanism comprises a torsion spring.
- 22. The presser assembly according to claim 1, wherein the two sides are slanted with respect to the top surface and to the bottom surface.
- 23. The presser assembly according to claim 22, wherein the two sides are slanted with respect to the top surface and to the bottom surface by angle γ equal to about 45 degrees.
- 24. The presser assembly according to claim 22, wherein each of the sides has a first rounded edge and a second rounded edge.
- 25. The presser assembly according to claim 24, wherein the first rounded edge defines a radius of curvature of about 0.125 inch, and the second rounded edge defines a radius of curvature of about 0.188 inch.
- 26. The presser assembly according to claim 1, wherein the connecting rail has a presser end and a support end.
- 27. The presser assembly according to claim 26, wherein the support end of the connecting rail includes a rounded portion and an angled portion adjoining the rounded portion.
- 28. The presser assembly according to claim 26, further comprising a support pin, wherein the support end of the connecting rail defines a hole for receiving the support pin therein, the support pin thereby being adapted to pivotally secure the connecting rail to the support rail.
- 29. The presser assembly according to claim 28, wherein the hole for receiving the support pin is generally circular and further has a straight region.
- 30. The presser assembly according to claim 26, wherein the connecting rail is an elongated member defining an outer surface and an inner surface.
- 31. The presser assembly according to claim 30, wherein said side has a truncated corner adjoining the outer surface of the connecting rail.
- 32. The presser assembly according to claim 31, wherein the truncated corner has a height of about 0.06 inch.
- 33. The presser assembly according to claim 30, wherein the presser end of the connecting rail has a side slanted with respect to the outer surface and the inner surface of the connecting rail.
- 34. The presser assembly according to claim 33, wherein said side has a rounded edge adjoining the inner surface of the connecting rail.
- 35. The presser assembly according to claim 34, wherein the rounded edge defines a radius of about 0.2 inch.
- 36. The presser assembly according to claim 33, wherein the side is slanted with respect to the outer surface and the inner surface of the connecting rail by an angle μ of from about 40 to about 45 degrees.
- 37. The presser assembly according to claim 33, further comprising a biasing mechanism for biasing the presser rail away from the support rail, wherein the outer surface of the connecting rail defines an opening therein for accommodating at least a portion of the biasing mechanism therein in a fully folded state of the presser assembly.
- 38. The presser assembly according to claim 1, further comprising a pad fixed to a lower surface of the presser rail for frictionally engaging a scrap thereunder during a blanking operation.
- 39. The presser assembly according to claim 1, wherein the connecting rail is configured for effecting a folding of the presser assembly such that, in a fully folded state of the presser assembly, the support rail, the connecting rail and the presser rail are substantially parallel to one another.
- 40. A blanking press comprising a press and the presser assembly of claim 1.
- 41. A method comprising:providing the presser assembly of claim 1; pivoting the connecting rail with respect to at least one of the support rail and the presser rail for reducing an angle defined therebetween thereby folding the presser assembly for reducing a distance between the presser rail and the support rail; and pivoting the connecting rail with respect to at least one of the support rail and the presser rail for increasing an angle defined therebetween thereby unfolding the presser assembly for increasing a distance between the presser rail and the support rail.
- 42. The method according to claim 41, wherein the step of pivoting the connecting rail with respect to the presser rail for reducing includes the step of pivoting the connecting rail for achieving a fully folded state of the presser assembly wherein the support rail, the connecting rail and the presser rail are substantially parallel with respect to one another.
- 43. A kit for forming a presser assembly for supporting blanking scrap during a blanking operation, the kit comprising:a support rail; a presser rail adapted to be connected to the support rail, the presser rail comprising an elongated member having two side walls and a bottom wall together defining a trough; and a connecting rail adapted to connect the presser rail to the support rail and adapted to pivot with respect to at least one of the support rail and the presser rail in an assembled state of the presser assembly through a predetermined pivot angle range for changing a distance between the support rail and the presser rail thereby selectively effecting a folding and an unfolding of the presser assembly during the blanking operation; wherein the first connecting rail comprises a presser end and a support end and is pivotally connected to the presser rail such that the presser end thereof is disposed in the trough.
- 44. The kit according to claim 43, wherein:the presser rail is adapted to be connected to the support rail respectively at a first end and at a second end thereof; the connecting rail comprises a first connecting rail and a second connecting rail adapted to connect the presser rail to the support rail respectively at a first end and at a second end of the connecting rail, the first connecting rail and the second connecting rail each being adapted to independently pivot with respect to at least one of the support rail and the presser rail in an assembled state of the presser assembly for changing a distance between the support rail and the presser rail thereby folding the presser assembly during the blanking operation.
- 45. The kit according to claim 43, further comprising a biasing mechanism for biasing the presser rail away from the support rail, the biasing mechanism being adapted to be coupled to at least one of the two ends of the connecting rail.
- 46. The kit according to claim 45, wherein the biasing mechanism comprises a torsion spring.
- 47. A presser assembly for supporting blanking scrap during a blanking operation, the presser assembly comprising:a support means; a presser means connected to the support means and supported thereby, the presser means comprising an elongated member having two side walls and a bottom wail together defining a trough; and a connecting means for connecting the presser means to the support means and being adapted to pivot with respect to the presser means through a predetermined pivot angle range for changing a distance between the presser means and the support means thereby selectively effecting a folding and an unfolding of the presser assembly during a blanking operation; wherein the first connecting means comprises a presser end and a support end and is pivotally connected to the presser means such that the presser end thereof is disposed in the trough.
CROSS REFERENCE TO RELATED APPLICATION
This application is a continuation-in-part of U.S. patent application Ser. No. 09/845,677 filed on Apr. 30, 2001, which is incorporated herein in its entirety by reference.
US Referenced Citations (27)
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
09/845677 |
Apr 2001 |
US |
Child |
10/054127 |
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US |