Claims
- 1. A method of hydroforming an angled tubular part, comprising:
- disposing an angled metal tubular blank within a generally correspondingly angled die cavity, said tubular blank having an exterior surface, wherein at an angled portion of said tubular blank, said exterior surface has a concave surface portion and a convex surface portion on generally opposite sides of said tubular blank;
- sealing opposite ends of the tubular blank;
- providing high pressure fluid to an interior of said tubular blank;
- expanding said blank into conformity with surfaces defining said die cavity as a result of said providing;
- applying force to at least one end of the tubular blank so as to create longitudinal flow of metal material within said tubular blank to maintain a wall thickness of said blank within a predetermined range wherein a greater amount of force is applied to a portion of the tubular blank which is longitudinally aligned with said convex surface portion of the tubular blank in comparison with the amount of force applied for a portion of the tubular blank which is longitudinally aligned with said concave surface portion of the tubular blank so as to create a greater amount of flow of metal material toward portions of the tubular blank adjacent said convex surface portion in comparison with portions of the tubular blank adjacent said concave surface portion, so as to inhibit wrinkle formation at the portions of the tubular blank adjacent said concave surface portion.
- 2. The method of claim 1, wherein said forcing is accomplished by applying force to both ends of the tubular blank.
- 3. The method of claim 2, wherein said greater amount of force applied to the portion of the tubular blank which is longitudinally aligned with the convex surface portion of the tubular blank is applied to arcuate edges of said both ends of the tubular blank.
- 4. The method of claim 1, wherein said forcing is accomplished by applying force to only one end of the tubular blank.
- 5. The method of claim 4, wherein said greater amount of force applied to the portion of the tubular which is longitudinally aligned with the convex surface portion of the tubular blank is applied to an arcuate edge of said one end of the tubular blank.
- 6. A method according to claim 1, wherein prior to said inserting, said method comprises bending a generally straight tube blank so as to provide said tubular blank with its angled configuration.
- 7. A method according to claim 6, wherein prior to said bending, said method comprises roll forming sheet metal into said generally straight tube blank.
- 8. A method according to claim 1, further comprising forming an indentation in an end portion of said tubular blank at a location thereof which is longitudinally aligned with said concave surface portion so as to inhibit flow of metal material towards said portions of said tubular blank adjacent said concave surface portion.
- 9. A method according to claim 8 including the step of cutting off the end portion of the tubular blank containing said indentation after removal of the formed blank from the die cavity.
- 10. A method according to claim 9 wherein an indentation is formed in both end portions at the aforesaid location and both end portions containing such indentations are cut off as aforesaid.
- 11. A hydroforming die assembly for forming an angled tubular part comprising:
- a die structure having die parts, which include die surfaces cooperable to define an angled die cavity into which a bent tubular metal blank is to be placed, said bent tubular metal blank having an exterior surface which includes a concave surface portion and a convex surface portion on opposite sides thereof;
- first and second ram assemblies having respective first and second associated tube-end engaging structures disposed at opposite ends of said die cavity; said tube-end engaging structures being constructed and arranged to be inserted into said opposite ends of said die cavity;
- said tube-end engaging structures having tube-end engaging surfaces for engaging opposite ends of the tubular metal blank placed in the die cavity;
- said tube-end engaging structures further comprising ports constructed and arranged to provide hydroforming fluid to an interior of the tubular metal blank;
- said ram assemblies further comprising a fluid pressurizing system constructed and arranged to increase pressure of said hydroforming fluid provided to the interior of the tubular metal blank sufficient to expand the tubular metal blank into conformity with the die surfaces defining said die cavity;
- at least one of said tube-end engaging structures being movable by the associated ram assembly into forced engagement with one end of said opposite ends of the tubular metal blank so as to longitudinally compress the tubular metal blank between said tube-end engaging structures and thereby create longitudinal flow of metal material during expansion of the tubular metal blank in order to maintain a wall thickness of the tubular metal blank within a desired range;
- said at least one movable tube-end engaging structure having said tube-end engaging surface thereof constructed and arranged to apply a greater amount of force to a portion of said one end of the tubular metal blank which is longitudinally aligned with the convex surface portion of the tubular metal blank in comparison with an amount of force applied to a portion of said one end of the tubular metal blank which is longitudinally aligned with the convex surface portion of the blank so as to create a greater amount of longitudinal flow of metal towards the convex surface portion of the tubular metal blank in comparison with the amount of longitudinal flow of metal towards the concave surface portion of the tubular metal blank.
- 12. A hydroforming die assembly according to claim 11, wherein prior to movement of the associated tube-end engaging structure to create said longitudinal flow of metal material, said tube-end engaging surface contacts the portion of said one end of the tubular metal blank which is longitudinally aligned with the convex surface portion of the tubular metal blank, and said tube-end engaging surface is spaced from the portion of said one end of the tubular metal blank which is longitudinally aligned with the concave surface portion of the tubular metal blank.
- 13. A hydroforming die assembly according to claim 12, wherein said tube-end engaging surface is an annular surface, and wherein 22%-44% of the tube-end engaging surface is disposed in said contact.
- 14. A hydroforming die assembly according to claim 12, wherein a portion of said tube-end engaging surface which contacts the portion of the tubular metal blank which is longitudinally aligned with the convex surface portion of the tubular metal blank comprises a generally arcuate surface portion that lies in a plane, and wherein a portion of said tube-end engaging surface which is spaced from the portion of said one end of the tubular metal blank which is longitudinally aligned with the concave surface portion of the tubular metal blank comprises a generally arcuate surface portion that lies outside of said plane.
- 15. A hydroforming die assembly according to claim 11, wherein one end of said longitudinal die cavity defines a first longitudinal axis, and wherein an opposite end of said longitudinal die cavity defines a second longitudinal axis which is angled at least 30( with respect to the first longitudinal axis, and wherein said tubular metal blank is angled at least 30( relative to a straight tubular metal blank.
- 16. A hydroforming die assembly according to claim 11, wherein both said tube-end engaging structures are movable into forced engagement with respective opposite ends of the tubular metal blank so as to longitudinally compress the tubular metal blank therebetween.
- 17. A hydroforming die assembly according to claim 11, wherein both said tube-end engaging structures are constructed and arranged to apply a greater amount of force to the portion of said one end of the tubular metal blank which is longitudinally aligned with the convex surface portion in comparison with the amount of force applied to the portion of the tubular metal blank which is longitudinally aligned with the concave surface portion.
- 18. A hydroforming die assembly for forming an angled part comprising:
- a die structure defining an angled die cavity;
- ram assemblies disposed at opposite ends of said die cavity and having tube end engaging structures constructed and arranged to engage opposite ends of a tubular metal blank to be hydroformed, said tube-end engaging structures providing a port through which pressurized fluid can be provided to an interior of the tubular metal blank to be hydroformed;
- at least one of said tube-end engaging structures being movable relative to the other of said tube end engaging structures and into forced engagement with one end of the tubular metal blank;
- said at least one of said tube-end engaging structures having a tube-end engaging surface, portions of said tube-end engaging surface lying in a common plane and generally aligned with portions of said die cavity which form a convex surface portion of the tubular metal blank, said portions of said tube-end engaging structure constructed and arranged to contact end portions of the tubular metal blank that are longitudinally aligned with said convex surface portion of the tubular metal blank;
- other portions of said tube-end engaging surface lying outside of said common plane and aligned with portions of said die cavity which form a concave surface portions of the tubular metal blank.
Parent Case Info
This application claims the benefit of 60/061238 filed Oct. 7, 1997.
US Referenced Citations (24)
Foreign Referenced Citations (3)
Number |
Date |
Country |
0 610 783 A1 |
Aug 1994 |
EPX |
2 535 987 |
Nov 1982 |
FRX |
4322711A1 |
Jan 1995 |
DEX |