Fluid vessel assembly with welded connection
A fluid vessel assembly is provided with a first vessel body with a first mating surface with a first plurality of generally planar nonparallel regions. The first vessel body forms a first portion of a fluid cavity. A second vessel body is provided with a second mating surface with a second plurality of generally planar nonparallel regions sized to engage the first mating surface. The second vessel body forms a second portion of the fluid cavity. The first mating surface and the second mating surface are friction stir welded together.
1. A fluid vessel assembly, comprising:
a first vessel body comprises a first sidewall and a first mating surface, the first vessel body forming a first portion of a fluid cavity with a fluid inlet and a fluid outlet, wherein the first mating surface extends perpendicular to the first sidewall; and
a second vessel body comprises a second sidewall and a second mating surface sized to engage the first mating surface, the second vessel body forming a second portion of the fluid cavity, wherein the second mating surface extends perpendicular to the second sidewall;
wherein the first mating surface is provided with a first plurality of planar nonparallel regions,
wherein the second mating surface is provided with a second plurality of nonparallel planar regions, and
wherein the first mating surface and the second mating surface are welded together to bond the first vessel body and the second vessel body together such that the first plurality of planar nonparallel regions is welded to the second plurality of planar nonparallel regions.
2. The fluid vessel assembly of claim 1 , wherein each of the first plurality of planar nonparallel regions is oriented at an angle that is less than sixty-five degrees relative to each sequential region.
3. The fluid vessel assembly of claim 2 , wherein each of the first plurality of planar nonparallel regions is oriented at an angle that is less than fifteen degrees relative to each sequential region.
4. The fluid vessel assembly of claim 1 , wherein the first plurality of planar nonparallel regions of the first mating surface overlaps the second plurality of planar nonparallel regions of the second mating surface.
5. The fluid vessel assembly of claim 1 , wherein the first plurality of planar nonparallel regions of the first mating surface abuts the second plurality of planar nonparallel regions of the second mating surface.
6. The fluid vessel assembly of claim 1 , wherein the first plurality of planar nonparallel regions of the first mating surface overlaps and abuts the second plurality of planar nonparallel regions of the second mating surface.
7. The fluid vessel assembly of claim 1 , wherein the first mating surface and the second mating surface are welded together by friction stir welding.
8. The fluid vessel assembly of claim 7 , wherein the friction stir welding is executed between the sidewall of the first vessel body and the sidewall of the second vessel body.
9. The fluid vessel assembly of claim 1 ,
wherein the sidewall of the first vessel body is spaced apart from the sidewall of the second vessel body by a distance that is at least one millimeter longer than a width of a weld along the first vessel body and the second vessel body.
10. An assembly to cool a vehicle on-board battery charger, the assembly comprising the fluid vessel assembly of claim 1 , wherein the first vessel body defines a cooling cavity body, and the second vessel body defines a cover plate.
11. The fluid vessel assembly of claim 1 , wherein the fluid vessel assembly does not comprise any threaded fasteners attaching the first vessel body to the second vessel body.
12. The fluid vessel assembly of claim 1 , wherein the fluid vessel assembly does not comprise a gasket associated with the first mating surface or associated with the second mating surface between the first vessel body and the second vessel body.
13. The fluid vessel assembly of claim 1 , wherein the fluid vessel assembly withstands an internal pressure of at least six atmospheric bars.
14. The fluid vessel assembly of claim 1 , wherein the first plurality of planar nonparallel regions is provided along a perimeter of the welded first mating surface.
15. The fluid vessel assembly of claim 1 , wherein a radius is provided at each intersection of the first plurality of planar nonparallel regions.
16. The fluid vessel assembly of claim 1 , wherein the first vessel body comprises a mounting pattern on the sidewall of the first vessel body to fasten the first vessel body to a vehicle.
17. The fluid vessel assembly of claim 1 , wherein the first mating surface and the second mating surface are not coplanar.
18. A fluid vessel assembly, comprising:
a first vessel body comprises a first sidewall and a first mating surface with a first plurality of generally planar nonparallel regions, the first vessel body forming a first portion of a fluid cavity with a fluid inlet and a fluid outlet, wherein the first mating surface extends perpendicular to the first sidewall; and
a second vessel body comprises a second sidewall and a second mating surface with a second plurality of generally planar nonparallel regions sized to engage the first mating surface, the second vessel body forming a second portion of the fluid cavity, wherein the second mating surface extends perpendicular to the second sidewall
wherein the first mating surface and the second mating surface are friction stir welded together to bond the first vessel body and the second vessel body together such that the first plurality of planar nonparallel regions is welded to the second plurality of planar nonparallel regions,
wherein the fluid vessel assembly does not comprise any threaded fasteners attaching the first vessel body to the second vessel body, and
wherein the fluid vessel assembly does not comprise a gasket associated with the first mating surface or associated with the second mating surface between the first vessel body and the second vessel body.