Integrated vehicle structure and power-plant exhaust
View Patent ↗A frame is disclosed for a vehicle having a vehicle body, a vehicle suspension, and a power-plant configured to generate torque and an exhaust gas stream. The frame includes a tubular frame rail in fluid communication with the power-plant, wherein the rail is defined by a fully-closed cross-section that provides a fluid passage. The frame rail is configured to support the vehicle body and the vehicle suspension. The fluid passage is configured to channel the exhaust gas stream through the frame rail and away from the vehicle body. A vehicle employing such a frame is also disclosed.
1. A frame for a vehicle having a vehicle body, a vehicle suspension, and a power-plant configured to generate torque and an exhaust gas stream, the frame comprising:
a tubular frame rail in fluid communication with the power-plant, wherein the frame rail is defined by a fully-closed cross-section that provides a fluid passage;
wherein:
the frame rail is configured to support the vehicle body and the vehicle suspension; and
the fluid passage is configured to channel the exhaust gas through the frame rail and away from the vehicle body.
2. The frame of claim 1 , wherein the frame rail includes two substantially parallel rails spaced apart by a distance.
3. The frame of claim 1 , wherein the fluid passage includes an inside surface in direct contact with the exhaust gas stream and the inside surface includes a coating applied thereto and configured to minimize corrosion of the frame rail.
4. The frame of claim 3 , wherein the coating is generated via a galvanization process.
5. The frame of claim 3 , wherein the coating is generated via a process of galvannealing.
6. The frame of claim 1 , wherein the frame rail is formed from an aluminized stainless steel.
7. The frame of claim 1 , wherein the frame rail cross-section forms a substantially parallelogram “boxed” shape.
8. The frame of claim 1 , wherein the frame rail cross-section forms a substantially round shape.
9. The frame of claim 1 , wherein the frame rail is formed by a process of extrusion.
10. The frame of claim 1 , wherein the vehicle power-plant is a hydrogen fuel-cell in fluid communication with a hydrogen fuel tank, and wherein the frame is additionally configured to support the hydrogen fuel tank.
11. A vehicle comprising:
a vehicle body;
a vehicle suspension;
a power-plant configured to generate torque and an exhaust gas stream; and
a frame configured to support the body and the suspension, the frame having a tubular frame rail in fluid communication with the power-plant, wherein the frame rail is defined by a fully-closed cross-section that provides a fluid passage;
the fluid passage is configured to channel the exhaust gas through the frame rail and away from the vehicle body.
12. The vehicle of claim 11 , wherein the frame rail includes two substantially parallel rails spaced apart by a distance.
13. The vehicle of claim 11 , wherein the fluid passage includes an inside surface in direct contact with the exhaust gas stream and the inside surface includes a coating applied thereto and configured to minimize corrosion of the frame rail.
14. The vehicle of claim 13 , wherein the coating is generated via a galvanization process.
15. The vehicle of claim 13 , wherein the coating is generated via a process of galvannealing.
16. The vehicle of claim 11 , wherein the frame rail is formed from an aluminized stainless steel.
17. The vehicle of claim 11 , wherein the frame rail cross-section forms a substantially parallelogram “boxed” shape.
18. The vehicle of claim 11 , wherein the frame rail cross-section forms a substantially round shape.
19. The vehicle of claim 11 , wherein the frame rail is formed by a process of extrusion.
20. The vehicle of claim 11 , wherein the power-plant is a hydrogen fuel-cell, the vehicle further comprises a hydrogen fuel tank in fluid communication with the fuel-cell, and the frame is additionally configured to support the hydrogen fuel tank.