Universal bellhousing, system and method therefore
A universal bellhousing which may be adapted to a variety of automotive engine and transmission combinations and method of making the same is disclosed. The bellhousing is made by spin forming a sheet of material and welding a transmission plate onto the cone. The cone and transmission plate are indexed to mount to a specified engine-transmission combination.
1. A device for connecting an engine to a transmission, each having a mounting surface, the device comprising:
a structure having an axis, a first end, and a second end, said first and second ends each having an opening and a wall extending between said first and second ends wherein the openings are coaxial, the structure formed by deforming a spinning sheet of metal into a mold using an internal spin forming process which asserts a force to the spinning sheet of material, such force applied along an inner surface of the sheet of material as it is formed;
said structure having an outer surface that is free of strengthening ribs in an axial direction of the structure;
a spun formed flange formed from the spinning sheet and formed integrally with the structure, extending from the first end normal to the axis;
a transmission plate of a plurality of interchangeable transmission plates, affixed onto the second end of the structure; and,
a pattern of holes machined into each of the flange and the transmission plate, the pattern of holes being indexed to an engine and transmission, respectively and the pattern of holes of the transmission plate being disposed outwardly of the second end of the structure.
2. The device of claim 1 , wherein the structure also comprises at least one opening formed along the wall of the structure between the first and second end.
3. The device of claim 1 , wherein the material is steel.
4. The device of claim 1 , wherein the material is a high strength alloy.
5. The device of claim 1 , wherein the transmission plate is affixed by welding to the second end of the structure such that a first surface of the plate is essentially parallel to a surface of the flange formed at the first end of the structure.
6. The device of claim 1 , wherein the tubular shape is a cone shape where the first end is wider in diameter than the second end.
7. A device for connecting an engine to a transmission, each having a mounting surface, the device comprising:
a structure having an axis, a first end, and a second end, said structure further comprising an opening at each of said first and second ends wherein the openings are coaxial, and a wall extending between said first and second ends, the structure formed by deforming a spinning sheet of metal into a mold using an internal spin forming process which asserts a force to the spinning sheet of material, such force applied along an outer surface of the sheet of material as it is formed, said outer surface being free of strengthening ribs extending in an axial direction of the structure;
a spun formed flange formed from the spinning sheet and formed integrally with the shape, extending from the first end of the shape normal to the axis;
a transmission plate of a plurality of interchangeable transmission plates, affixed onto the second end of the structure; and
a pattern of holes machined into each of the flange and transmission plate, the pattern of holes of the transmission plate being outward of the wall at the second end of the structure, the pattern of holes being indexed to an engine and transmission.
8. The device of claim 7 , wherein the structure also comprises at least one opening formed along the wall of the structure between the first and second end.
9. The device of claim 7 , wherein the material is steel.
10. The device of claim 7 , wherein the material is a high strength alloy.
11. The device of claim 7 , wherein the transmission plate is affixed by welding to the second end of structure such that a first surface of the plate is essentially parallel to a surface of the flange formed at the first end of the structure.
12. The device of claim 7 , wherein the tubular shape is a cone shape where the first end is wider in diameter than the second end.