Claims
- 1. A fuel cell separator plate comprising:
(a) an active surface; (b) an oppositely facing non-active surface; (c) at least one reactant stream passageway traversing a portion of said non-active surface of said separator plate; and (d) a fluid port fluidly connecting the portion of said passageway on said non-active surface with said active surface of said separator plate, wherein said fluid port comprises walls that are angled more than 0 degrees and less than 90 degrees with respect to the direction of fluid flow in said passageway upstream of said fluid port.
- 2. The separator plate of claim 1 wherein said active surface comprises at least one channel fluidly connected to said fluid port.
- 3. The separator plate of claim 1 wherein said fluid port comprises walls that are angled more than about 20 degrees and less than about 45 degrees with respect to the direction of fluid flow in said passageway upstream of said fluid port.
- 4. The separator plate of claim 1 wherein said fluid port comprises walls that are angled about 20 degrees with respect to the direction of fluid flow in said passageway upstream of said fluid port.
- 5. The separator plate of claim 1 wherein said fluid port comprises walls that are angled about 45 degrees with respect to the direction of fluid flow in said passageway upstream of said fluid port.
- 6. The separator plate of claim 1 wherein said fluid port walls are curved to reduce turbulence within said fluid port.
- 7. The separator plate of claim 6 wherein at least one of said fluid port walls is convex.
- 8. The separator plate of claim 6 wherein said fluid port walls are further curved both in the in-plane and through-plane directions, wherein said plane is the plane of said active surface.
- 9. The separator plate of claim 1 wherein said fluid port is in the shape of an elongated slot and is fluidly connected to a plurality of fluid channels formed in said active surface.
- 10. The separator plate of claim 1 wherein said separator plate is molded and said fluid port is formed by a mold.
- 11. The separator plate of claim 1 wherein said separator plate is embossed and said fluid port is formed by a raised feature on an embossing die.
- 12. The separator plate of claim 1 wherein said portion of said reactant stream passageway that traverses said non-active surface of said separator plate comprises a groove formed in said separator plate.
- 13. The separator plate of claim 1 further comprising coolant passages formed in said non-active surface of said separator plate.
- 14. The separator plate of claim 1 further comprising coolant passages formed in said active surface of said separator plate.
- 15. The separator plate of claim 1, further comprising an internal manifold opening therein, wherein said portion of said reactant stream passageway that traverses said non-active surface of said separator plate is fluidly connected to said manifold opening.
- 16. The separator plate of claim 1, further comprising:
(e) an internal reactant supply manifold opening therein; (f) at least one reactant stream supply passageway fluidly connected to said supply manifold opening and traversing a portion of said non-active surface of said separator plate; (g) a fluid supply port fluidly connecting said supply passageway with said active surface of said separator plate; (h) an internal reactant exhaust manifold opening therein; (i) at least one reactant stream exhaust passageway fluidly connected to said exhaust manifold opening and traversing a portion of said non-active surface of said separator plate; and (j) a fluid exhaust port fluidly connecting said exhaust passageway with said active surface of said separator plate, wherein each of said supply and exhaust ports comprise walls that are angled more than 0 degrees and less than 90 degrees with respect to the direction of fluid flow in the passageway upstream of respective said port.
- 17. A fuel cell separator plate comprising:
(a) an anode plate having an active surface and an oppositely facing non-active surface; (b) a cathode plate having an active surface and an oppositely facing non-active surface adjoining said non-active surface of said anode plate; (c) fuel stream passageways for supplying a fuel stream to said active surface of said anode plate, and oxidant stream passageways for supplying an oxidant stream to said active surface of said cathode plate, wherein at least one of said fuel or oxidant stream passageways traverses a portion of said adjoining non-active surfaces of said anode and cathode plates; and (d) a fluid port fluidly connecting the portion of said at least one passageway traversing a portion of said adjoining non-active surfaces with said active surface of one of said anode and cathode plates, wherein said fluid port comprises walls that are angled more than 0 degrees and less than 90 degrees with respect to the direction of fluid flow in said passageway upstream of said fluid port.
- 18. The separator plate of claim 17 wherein said fluid port comprises walls that are angled more than about 20 degrees and less than about 45 degrees with respect to the direction of fluid flow in said passageway upstream of said fluid port.
- 19. The separator plate of claim 17 wherein said fluid port comprises walls that are angled about 20 degrees with respect to the direction of fluid flow in said passageway upstream of said fluid port.
- 20. The separator plate of claim 17 wherein said fluid port comprises walls that are angled about 45 degrees with respect to the direction of fluid flow in said passageway upstream of said fluid port.
- 21. The separator plate of claim 17 wherein said fluid port walls are curved to reduce turbulence within said fluid port.
- 22. The separator plate of claim 21 wherein at least one of said fluid port walls is convex.
- 23. The separator plate of claim 21 wherein said fluid port walls are further curved both in the in-plane and through-plane directions, wherein said plane is the plane of said active surface.
- 24. The separator plate of claim 17 wherein said fluid port is fluidly connected to at least one fluid channel formed in said active surface.
- 25. The separator plate of claim 17 wherein said fluid port is in the shape of an elongated slot and is fluidly connected to a plurality of fluid channels formed in said active surface.
- 26. The separator plate of claim 17 wherein said portion of said passageway that traverses a portion of said adjoining non-active surfaces of said anode and cathode plates comprises a groove formed in at least one of said anode and cathode plates.
- 27. The separator plate of claim 17 further comprising coolant passages formed between cooperating non-active surfaces of said anode and cathode plates.
- 28. The separator plate of claim 17 wherein:
at least one of said fuel stream passageways traverses a portion of said adjoining non-active surfaces of at least one of said anode and cathode plates, and comprises a fuel fluid port fluidly connecting said fuel stream passageway with said active surface of said anode plate; at least one of said oxidant stream passageways traverses a portion of said adjoining non-active surfaces of at least one of said anode and cathode plates, and comprises an oxidant fluid port fluidly connecting said oxidant stream passageway with said active surface of said cathode plate; and said fuel fluid port and said oxidant fluid port each comprise walls that are angled more than 0 degrees and less than 90 degrees with respect to the direction of fluid flow in the passageway upstream of respective said fluid port.
- 29. The separator plate of claim 17, further comprising:
(e) aligned fuel supply manifold openings in said anode and cathode plates, respectively, fluidly connected to said fuel stream passageways, wherein at least one of said fuel stream passageways comprises a fuel supply passageway that traverses a portion of the adjoining non-active surface of at least one of said anode and cathode plates; (f) a fuel fluid supply port fluidly connecting said fuel supply passageway with said active surface of said anode plate; (g) aligned fuel exhaust manifold openings in said anode and cathode plates, respectively, fluidly connected to said fuel stream passageways, wherein at least one of said fuel stream passageways comprises a fuel exhaust passageway that traverses a portion of the adjoining non-active surface of at least one of said anode and cathode plates; and (h) a fuel fluid exhaust port fluidly connecting said active surface of said anode plate with said fuel exhaust passageway, wherein each of said supply and exhaust ports comprise walls that are angled more than 0 degrees and less than 90 degrees with respect to the direction of fluid flow in the passageway upstream of respective said port.
- 30. The separator plate of claim 17, further comprising:
(e) aligned oxidant supply manifold openings in said anode and cathode plates fluidly connected to said oxidant stream passageways, wherein at least one of said oxidant stream passageways comprises an oxidant supply passageway that traverses a portion of the adjoining non-active surfaces of at least one of said anode and cathode plates; (f) an oxidant fluid supply port fluidly connecting said oxidant supply passageway with said active surface of said cathode plate; (g) aligned oxidant exhaust manifold openings in said anode and cathode plates fluidly connected to said oxidant stream passageways, wherein at least one of said oxidant stream passageways comprises an oxidant exhaust passageway that traverses a portion of the adjoining non-active surface of at least one of said anode and cathode plates; and (h) an oxidant fluid exhaust port fluidly connecting said active surface of said cathode plate with said oxidant exhaust passageway, wherein each of said supply and exhaust ports comprise walls that are angled more than 0 degrees and less than 90 degrees with respect to the direction of fluid flow in the passageway upstream of respective said port.
- 31. The separator plate of claim 17 wherein said adjoining non-active surfaces of said anode plate and said cathode plate are bonded together.
- 32. The separator plate of claim 31 wherein said adjoining non-active surfaces are bonded together using an electrically conductive adhesive.
CROSS-REFERENCE TO RELATED APPLICATION(S)
[0001] This application is a continuation of U.S. patent application Ser. No. 09/471,564 filed Dec. 23, 1999, which is a continuation-in-part of U.S. patent application Ser. No. 09/116,270 filed Jul. 16, 1998. The '270 application in turn relates to and claims priority benefits from U.S. Provisional Patent Application Ser. No. 60/052,713 filed Jul. 16, 1997. The '564 and '270 applications, and the '713 provisional application, are incorporated herein by reference in their entireties.
Provisional Applications (1)
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Number |
Date |
Country |
|
60052713 |
Jul 1997 |
US |
Continuations (1)
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Number |
Date |
Country |
Parent |
09471564 |
Dec 1999 |
US |
Child |
09822596 |
Mar 2001 |
US |
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
09116270 |
Jul 1998 |
US |
Child |
09471564 |
Dec 1999 |
US |