Claims
- 1. A sheet of material formed for bending along a bend line comprising:
a sheet of material having a plurality of slits formed therethrough, the slits being configured and positioned relative to a desired bend line to produce bending of the sheet of material along the bend line and to produce edge-to-face engagement of the material on opposite sides of the slits along substantially the full length of the slits.
- 2. The sheet of material as defined in claim 1 wherein,
the sheet of material is provided by an elastically and plastically deformable sheet of one of a metal and a plastic material.
- 3. The sheet of material as defined in claim 1 wherein,
the sheet of material is formed with at least two elongated slits positioned proximate the bend line and longitudinally relatively displaced along the bend line, each slit having a slit end portion diverging away from the bend line with a pair of adjacent slit end portions on opposite sides of the bend line defining a bending strap extending obliquely across the bend line.
- 4. The sheet of material as defined in claim 3 wherein,
the slits are positioned equidistant and on opposite sides of the bend line, and the slits extend substantially parallel to the bend line.
- 5. The sheet of material as defined in claim 4 wherein,
the slit end portions are arcuate and curve away from the bend line.
- 6. The sheet of material as defined in claim 1 wherein,
the slits are provided by a plurality of arcuate slits alternatively positioned on opposite sides of and longitudinally shifted along the bend line, the arcuate slits being convex in a direction facing the bend line and defining bending straps extending obliquely across the bend line.
- 7. The sheet material as defined in claim 6 wherein,
the arcuate slits are formed as circular segments.
- 8. The sheet of material as defined in claim 1 wherein,
the slits include a plurality of longitudinally adjacent pairs of elongated slits on alternating sides of the end line, the slits having central portions substantially parallel to the bend line and at a substantially equal transverse distance from the bend line.
- 9. The sheet of material as defined in claim 8 wherein,
the slit end portions are arcuate and curve from the central portions of the slits in a direction away from the bend line.
- 10. The sheet of material as defined in claim 1 wherein,
kerf width of the slits is sufficiently small so as to ensure interengagement of the sheet of material on opposite sides of the slits during bending.
- 11. The sheet of material as defined in claim 3 wherein,
the slits are positioned in longitudinally overlapping relation to orient the bending strap to extend at an oblique angle to the bend line.
- 12. The sheet of material as defined in claim 11 wherein,
the sheet of material is formed with a plurality of pairs of longitudinally overlapping slits positioned laterally equidistant from the bend line to define obliquely oriented bending straps between adjacent slit end portions, the bending straps extending across the bend line.
- 13. The sheet of material as defined in claim 12 wherein,
alternative slits are on alternative sides of the bend line and alternating bending straps are oblique to the bend line in oppositely inclined directions.
- 14. The sheet of material as defined in claim 1 wherein,
the slits are configured to cause an edge of the sheet of material along one side of the slits to engage and slide along a face of the sheet of material along the other side of the slits during bending.
- 15. The sheet of material as defined in claim 3 wherein,
the slits include stress reducing structures at the ends of the slit end portions.
- 16. The sheet of material as defined in claim 1 wherein,
the plurality of slits includes a plurality of slits along and proximate the bend line configured to define at least one bending web between adjacent slit end portions, at least one slit being comprised of a first pair of longitudinally extending slit segments positioned proximate to and on opposite sides of and substantially parallel to the bend line, the longitudinally extending slit segments further having a pair of longitudinally proximate ends connected by a transversely extending slit segment.
- 17. The sheet of material as defined in claim 16 wherein,
there are a pluration of longitudinally spaced apart slits each formed as defined in claim 16 to define bending straps extending substantially perpendicularly across the bend line.
- 18. The sheet of material as defined in claim 1 wherein,
the sheet of material is secured in a coiled condition.
- 19. The sheet of material as defined in claim 3 wherein,
the ratio of the jog distance between slits on opposite sides of the bend line and the material thickness is less than about 1.0.
- 20. The sheet of material as defined in claim 3 wherein, the bending strap width is between about 0.5 to about 4.0 times the material thickness.
- 21. The sheet of material as defined in claim 20 wherein,
the bending strap width is between about 0.7 to about 2.5 times the material thickness.
- 22. A sheet of material formed for precision bending along a bend line comprising:
a plastically and elastically deformable solid sheet of material having a plurality of elongated closed-ended slits therein positioned in end-to-end relation along and proximate to opposite sides of the bend line, the slits being formed with a kerf width less than a thickness dimension of the sheet of material; and each slit having slit end portions diverging away from the bend line, with pairs of longitudinally adjacent end portions defining oblique bending straps extending across the bend lines.
- 23. The sheet of material as defined in claim 22 wherein,
the slits are positioned on alternating sides of the bend line and the slit end portions are arcuate and curve away from the bend line to define obliquely oriented straps skewed in alternating directions to the bend line.
- 24. The sheet of material as defined in claim 22 wherein,
the slits are each circular segments with convex sides closest to the bend line.
- 25. A method of slitting a sheet of material for bending along a bend line comprising the step of:
forming a plurality of slits through the sheet of material which are configured and positioned relative to the bend line to produce bending along the bend line and to produce edge-to-face engagement of the material on opposite sides of the slits.
- 26. A method of slitting a sheet of material for bending as defined in claim 25 wherein,
during the forming step each slit is formed with slit end portions diverging away from the bend line, with a pair of adjacent slit end portions on opposite sides of the bend line defining a bending strap extending across the bend line, and during the forming step, forming the slits with a kerf width dimensioned producing interengagement of the sheet of material on opposite sides of the slits during bending.
- 27. The method of slitting a sheet of material for bending as defined in claim 26 wherein,
the forming step is accomplished by forming each of the slits with slit end portions at oblique angles to the bend line to define an obliquely extending bending strap.
- 28. The method of slitting a sheet of material for bending as defined in claim 26 wherein,
the forming step is accomplished by forming each slit as a circular segment.
- 29. The method of slitting a sheet of material for bending as defined in claim 26, and the step of:
prior to the forming step, selecting a solid sheet of elastically and plastically deformable material for slitting.
- 30. The method of slitting a sheet of material for bending as defined in claim 26 wherein,
the forming step is accomplished by forming each of the slits in a position to longitudinally overlap along the bend line.
- 31. The method of slitting a sheet of material for bending as defined in claim 29 wherein,
the forming step is accomplished by forming each slit with an arcuate end portion at each end of the slit to define an obliquely extending bending strap between the end portions of longitudinally adjacent slits.
- 32. The method of slitting a sheet of material for bending as defined in claim 31 wherein,
the forming step is accomplished by forming the slits to be laterally offset on opposite sides of the bend line with central slit portions substantially parallel to the bend line.
- 33. The method of slitting a sheet of material for bending as defined in claim 32,
the forming step is accomplished by forming the slits with a kerf producing sliding of edges on one side of the slit on faces on the other side of the slit during bending to position the edges in supporting relation to a face of the sheet of material on opposite sides of the slits.
- 34. The method of slitting a sheet of material for bending as defined in claim 32, wherein
the forming step is accomplished by forming a plurality of slits as defined in claim 25 on opposite sides of the bend line along substantially the full length of the bend line.
- 35. The method of slitting a sheet of material for bending as defined in claim 26, and the step of:
after the forming step, bending the sheet of material about the bend line.
- 36. The method of slitting a sheet of material for bending as defined in claim 32, and the step of:
after the forming step, bending the sheet of material about a virtual fulcrum aligned with the bend line to produce plastic and elastic deformation of the bending strap.
- 37. The method of slitting a sheet of material for bending as defined in claim 25 wherein,
the forming step is accomplished at a first location, and the steps of:
after the forming step, transporting the sheet of material from the first location to a second location remote of the first location; and after the transporting step, bending the sheet of material along the bend line at the second location.
- 38. The method of slitting a sheet of material for bending as defined in claim 37 wherein,
the transporting step is accomplished by transporting the sheet of material in one of:
(a) a flat condition; (b) a coiled condition; and (c) a partially formed condition.
- 39. The method of slitting a sheet of material for bending as defined in claim 37 wherein, after the forming step and
prior to the transporting step, rolling the sheet of material into a coil, performing the transporting step while the sheet of material is coiled, and the step of: uncoiling the sheet of material at another location prior to performing the bending step.
- 40. The method of slitting a sheet of material for bending as defined in claim 39, and the step of:
during the uncoiling step performing the bending step.
- 41. The method as defined in claim 40 wherein,
the transportation step is accomplished by transporting the coiled sheet of material from a first location on the surface of the surface of the earth to a second location in outer space.
- 42. The method as defined in claim 41 wherein,
the bending step is accomplished by bending the sheet of material along a plurality of bend lines to produce a structure having three mutually intersecting planes; and the step of securing the structure against unbending.
- 43. The method as defined in claim 35 wherein,
during the forming step, forming a plurality of slits on each of a plurality of intersecting bend lines; during the bending step, bending the sheet of material along at least two bend lines to produce a structure having three mutually intersecting and abutting planar sheet panels; and the step of: securing the three mutually intersecting panels in abutting relation for mutual support.
- 44. The method as defined in claim 32, and the step of:
after the bending step, filling the bent sheet of material at the slits by one of a welding, brazing, soldering and adhesive filling step.
- 45. The method as defined in claim 24, and the step of varying the cross sectional area of the bending strap by changing at least one of the jog distance between slits and the position of the slits along the bend line.
- 46. A method of slitting a sheet of material for bending along a bend line comprising the steps of:
selecting a solid elastically deformable sheet of material for slitting; and forming a plurality of slits along a desired bend line with alternate slits along the bend line being positioned on alternating sides of the bend line and during the forming step, forming each slit with a central portion substantially parallel to and offset laterally from the bend line and with arcuate slit end portions on each end of the slit curving away from the bend line so that adjacent pairs of arcuate slits define bending straps extending obliquely across the bend line.
- 47. The method as defined in claim 46 wherein,
the forming step is accomplished using a laser cutting apparatus to cut slits having a kerf width dimensioned to produce interengagement of the sheet on opposite sides of the slits during bending.
- 48. The method as defined in claim 46 wherein,
the forming step is accomplished using a water jet cutting apparatus to cut slits having a kerf width dimensioned to produce interengagement of the sheet on opposite sides of the slits during bending.
- 49. The method as defined in claim 46, and the step of:
after the forming step, bending the sheet of material along the bend line.
- 50. The method as defined in claim 49 wherein,
the forming step is accomplished by forming the slits with a kerf width dimension producing sliding interengagement of an edge of the sheet of material on one side of the slit with a face of the sheet of material on the other side of the sheet of material; and the bending step is accomplished by bending the sheet of material about a virtual fulcrum substantially aligned with the bend line so that sliding interengagement of edges and faces of the sheet of material produces plastic and elastic deformation of the bending straps.
- 51. The method as defined in claim 50 wherein,
the forming step is accomplished by forming the slits along a plurality of intersecting bend lines; and the bending step is accomplished by bending the sheet of material into a three-dimensional structure having three intersecting planar areas extending into abutting relation; and the step of securing the three intersecting planar areas are secured together.
- 52. The method as defined in claim 50 wherein,
the bending step includes bending the sheet of material into a three-dimensional structure having three planar areas; and the step of securing the three planar areas in abutting relation to rigidify the structure.
- 53. The method as defined in claim 49, and the step of:
after the bending step, filling the slits with a material producing a sealed joint at the bend line.
- 54. The method of claim 53 wherein,
the filling step is accomplished by one of:
(a) welding; (b) brazing; (c) soldering; and (d) adhesive filling.
- 55. The method of claim 46 wherein,
the forming step is accomplished to provide slits defining bending straps oriented relative to the bend line in oppositely extending oblique angles.
- 56. The method of claim 55 wherein,
the forming step is accomplished to provide bending straps oriented relative to the bend line at angles of about 45° and about 135° at opposite ends of a slit.
- 57. The method of claim 49, and the step of:
after the bending step, unbending the sheet of material.
- 58. A method of forming a three dimensional structure comprising the steps of:
forming bend-facilitating structures in a sheet of material formed and positioned to produce bending of the sheet of metal precisely along a first bend line; bending the sheet of metal precisely along the first bend line; bending the sheet of metal along at least one additional bend line until two portions of the sheet of metal are abutting; and coupling together two abutting portions of the sheet of metal to produce a rigid load bearing three-dimensional metal structure capable of supporting three-dimensional loading.
- 59. The method as defined in claim 58 wherein,
the forming step is accomplished by forming a plurality of slits through the sheet of material configured and positioned relative to the bend lines to produce bending of the sheet of material along the bend lines and produce edge-to-face support of the material on opposite sides of the slits along the level lines.
RELATED APPLICATION
[0001] This application is a Continuation-in-Part Application based upon a copending parent application, Ser. No. 09/640,267, filed Aug. 17, 2000, and entitled METHOD FOR PRECISION BENDING OF A SHEET OF MATERIAL AND SLIT SHEET THEREFOR.
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
09640267 |
Aug 2000 |
US |
Child |
10256870 |
Sep 2002 |
US |