Claims
- 1. A joint structure comprising:
a first component comprising a lineal member having a pair of ends; at least one second component having a surface and a boss extending from said surface and terminating in a boss face, said second component defining an opening extending through said boss, wherein said opening receives one end of said lineal member such that said boss face and said end of said lineal member are coterminous; and a cap member adapted to be mounted onto said coterminous ends of said lineal member and boss face.
- 2. The joint structure according to claim 1, wherein said boss has an inside diameter which progressively changes from a first diameter proximate said boss face, to a second diameter distal therefrom.
- 3. The joint structure according to claim 2, wherein said joint defines a gap in said opening between said boss and said lineal member and further comprises a sleeve adapted to be received in said gap.
- 4. The joint structure according to claim 3, wherein said sleeve is discontinuous such that a diameter of said sleeve is variable.
- 5. The joint structure according to claim 3, wherein said sleeve has a first face and a second face such that when positioned in said gap, said second face is proximate said cap member.
- 6. The joint structure according to claim 5, wherein said sleeve second face defines a discontinuous surface.
- 7. The joint structure according to claim 6, wherein said sleeve second face comprises a plurality of teeth adapted to contact said cap member.
- 8. The joint structure according to claim 4, wherein said cap member has an inner face and an outer face and wherein said sleeve second face includes means for removably engaging said sleeve with said cap member inner face.
- 9. The joint structure according to claim 3, wherein said sleeve comprises a material selected from the group consisting of aluminum, steel, and plastic.
- 10. The joint structure according to claim 2, wherein said first diameter is larger than said second diameter.
- 11. The joint structure according to claim 2, wherein said first diameter is smaller than said second diameter.
- 12. The joint structure according to claim 11, wherein said sleeve has said outside surface which tapers in a direction opposite from the direction of taper of said boss inside diameter.
- 13. The joint structure according to claim 12, wherein said sleeve outside surface comprises a plurality of raised members adapted to engage said boss.
- 14. The joint structure according to claim 1, further comprising another said second component adapted to receive the other end of said lineal member.
- 15. The joint structure according to claim 14, wherein said first component and said second components comprise a vehicle subassembly.
- 16. The joint structure according to claim 1, wherein said first component is an aluminum product form selected from the group consisting of a sheet product, an extruded product, and a cast product.
- 17. The joint structure according to claim 1, wherein said second component is an aluminum product selected from the group consisting of a sheet, an extruded product, and a cast product.
- 18. The joint structure according to claim 1, wherein said cap member is friction welded to said end of said first component and said boss face.
- 19. The joint structure according to claim 1, wherein at least one end of said lineal member has a circular cross-section and a mid-portion between said ends has a different cross-sectional configuration than said at least one end having a circular cross-section.
- 20. The joint structure according to claim 19, wherein said first component is a sheet product.
- 21. The joint structure according to claim 20, wherein said first component includes reinforcing means proximate at least one end.
- 22. The joint structure according to claim 21, wherein said reinforcing means comprises a bead formed into said first component.
- 23. The joint structure according to claim 19, wherein said first component lineal member is an extruded product.
- 24. The joint structure according to claim 19, wherein said first component lineal member is a cast product.
- 25. The joint structure according to claim 19, wherein said second component is a sheet product.
- 26. The joint structure according to claim 19, wherein said second component is a cast product.
- 27. The joint structure according to claim 19, wherein said first component and said second components comprise a vehicle body-in-white subassembly.
- 28. The joint structure according to claim 19, wherein said first component is formed from a sheet product and wherein said end having a circular cross-section includes an overlap portion in said circular cross-section.
- 29. A method of forming a joint for a vehicle body-in-white comprising the steps of:
inserting a first component comprising a lineal member having a pair of ends into an opening in a second component having a surface and boss extending from the surface, the opening extending through the boss, such that an end of the boss and the one end of the lineal member are coterminous; and attaching a cap member onto the coterminous one end of the lineal member and the boss end.
- 30. The method of forming a joint according to claim 29, wherein said step of attaching the cap member is accomplished by friction welding.
- 31. The method of forming a joint according to claim 29, wherein a gap is defined between the second component boss and the lineal member, and said method further comprises the step of inserting a sleeve into the gap.
- 32. The method of forming a joint according to claim 31, wherein the sleeve comprises a non-continuous ring such that a diameter of the sleeve is variable between a maximum and minimum limit.
- 33. The method of forming a joint according to claim 31, wherein the sleeve has a first face and a second face such that when positioned between the second component boss and the first component lineal member, the second face is proximate said cap member.
- 34. The method of forming a joint according to claim 33, wherein the sleeve second face defines a discontinuous surface.
- 35. The method of forming a joint according to claim 34, wherein the sleeve discontinuous second face facilitates a break in the continuity of an interface between the sleeve second face and the cap member during the step of friction welding the joint.
- 36. An assembly comprising:
a first component comprising a lineal member having a pair of ends, at least one of said ends having a circular cross-sectional configuration; a cap member having a body portion, a first face, and a second face, said cap member being attached to said circular cross-section end of said lineal member; a structural member having a body portion defining an opening, said first component being received in said opening such that said cap member is fixed to an inner surface of said structural member body portion; and means for retaining said circular cross-section end of said lineal member within said structural member.
- 37. The joint structure according to claim 36, wherein said cap member body portion defines a bore extending through said body portion and said structural member body portion defines a bore and wherein said retaining means comprises a bolt extending through said bores in said cap member and said structural member.
- 38. The joint structure according to claim 37, further comprising a nut threaded onto said bolt against an outer surface of said structural member body portion.
- 39. The joint structure according to claim 36, wherein said retaining means comprises a stud extending from said cap member and through a bore in said structural member body portion and a nut threaded onto said stud against an outer surface of said structural member body portion.
- 40. The joint structure according to claim 36, wherein said retaining means comprises a joint between said cap member and said structural component body portion, said joint being selected from the group consisting of a friction stir weld, a laser weld, and a mechanical fastener.
- 41. The joint structure according to claim 36, wherein said cap member is friction welded to said lineal member.
- 42. The joint structure according to claim 41, wherein said cap member further comprises an annular rim extending from said second face, said lineal member being friction welded to said second face within said annular rim such that said rim extends along an exterior of said lineal member.
- 43. The joint structure according to claim 41, wherein said cap member further comprises an annular rim extending from said second face, said annular rim being friction welded to said lineal member.
- 44. The joint structure according to claim 43, further comprising an annular welding surface extending from said cap member second face at a location spaced apart from said rim, said lineal member being friction welded to said annular welding surface.
- 45. An energy absorbing member for a vehicle comprising:
an elongated crash box having at least one end with a circular cross-section; and a bracket friction welded to said circular cross-sectional end.
- 46. The energy absorbing member of claim 45, wherein said bracket includes a raised portion defining a chamber, said circular cross-sectional end being received in said chamber and friction welded to said bracket within said chamber.
- 47. The energy absorbing member of claim 45, wherein said crash box has a circular cross-sectional configuration at each end and further comprising a bracket friction welded to each said crash box end.
- 48. The energy absorbing member of claim 47, wherein one said bracket is configured to be attached to a vehicle and the other said bracket is configured to be attached to a bumper.
RELATED APPLICATION
[0001] This application claims the benefit of U.S. Provisional Patent Application Ser. No. 60/252,712 filed Nov. 22, 2000 entitled “A Joint Structure and Method for Making a Joint Structure”.
Provisional Applications (1)
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Number |
Date |
Country |
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60252712 |
Nov 2000 |
US |