IP Library Granted Patent US 7,718,300
Granted Patent B2
US 7,718,300 · App. 10/538,601 · Granted May 18, 2010

Frame elements for monopolar fuel cell stacks

Assignee: SFC Smart Fuel Cell AG
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Quick Facts
Patent No.
US 7,718,300
App. No.
10/538,601
Granted
May 18, 2010
Kind
B2
Abstract

The present invention relates to frame elements for monopolar fuel cell stacks, permitting a simplified electrical wiring and/or a simplified and improved assembly of monopolar fuel cell stacks. They permit a significant miniaturization of monopolar arrangements.

Claims (38)

1. A frame element for a monopolar stack, comprising:

a plurality of perforations for passing therethrough ribs of plate elements which are arranged to form a stack,

wherein the frame element is provided at one side with a structure that is electrically conductive in portions, wherein the structure includes conductor sections, each said conductor section extending between at least two perforations such that individual ones of the conductor sections have no contact with any other said conductor section, to provide a monopolar wiring of the ribs of the plate elements received by the perforations.

2. A frame element according to claim 1 , comprising perforations for passing therethrough ribs of the plate elements arranged to form a stack, wherein the frame element is provided at one side with a structure which is electrically conductive in portions and which supports a monopolar wiring of the plate elements arranged to form the stack.

3. A frame element according to claim 2 , wherein the structure which is electrically conductive in portions comprises a regular pattern.

4. A frame element according to claim 2 , comprising:

a printed circuit board on which the structure is formed that is electrically conductive in portions.

5. A frame element according to claim 1 , comprising:

mounting means for two end plates which complete the stack of plate elements at both sides.

6. A frame element according to claim 1 , comprising at least one channel for fluid conduction along a stack axis of the monopolar stack.

7. A method for producing a fuel cell stack, comprising the steps of:

arranging plate elements in a stack arrangement;

pre-tensioning the plate elements;

laterally attaching frame elements on the stack so that the perforations of the frame elements receive ribs of the plate elements; and

offsetting the pretension;

wherein each said frame element comprises a plurality of perforations for passing therethrough ribs of the plate elements which are arranged to form the stack; and

wherein each said frame element is provided at one side with a structure that is electrically conductive in portions, wherein the structure includes conductor sections, each said conductor section extending between at least two perforations such that individual ones of the conductor sections have no contact with any other said conductor section, to provide a monopolar wiring of the ribs of the plate elements received by the perforations.

8. A method according to claim 7 , wherein prior to the offsetting of the pretension the ribs of the plate elements are soldered with the frame elements.

9. A frame element according to claim 3 , comprising:

a printed circuit board on which the structure is formed that is electrically conductive in portions.

10. A frame element according to claim 2 , comprising:

mounting means for two end plates which complete the stack of plate elements at both sides.

11. A frame element according to claim 3 , comprising:

mounting means for two end plates which complete the stack of plate elements at both sides.

12. A frame element according to claim 4 , comprising:

mounting means for two end plates which complete the stack of plate elements at both sides.

13. A frame element according to claim 2 , comprising at least one channel for fluid conduction along a stack axis of the monopolar stack.

14. A frame element according to claim 3 , comprising at least one channel for fluid conduction along a stack axis of the monopolar stack.

15. A frame element according to claim 4 , comprising at least one channel for fluid conduction along a stack axis of the monopolar stack.

16. A frame element according to claim 5 , comprising at least one channel for fluid conduction along a stack axis of the monopolar stack.

17. A method according to claim 7

wherein each said frame element further comprises perforations for passing therethrough ribs of the plate elements arranged to form the stack, wherein each said frame element is provided at one side with a structure that is electrically conductive in portions and which supports a monopolar wiring of the plate elements arranged to form the stack.

18. A method accord inn to claim 7 wherein the structure that is electrically conductive in portions comprises a regular pattern.

19. A method according to claim 7

wherein each said frame element further comprises a printed circuit board on which the structure is formed that is electrically conductive in portions.

20. A method according to claim 7

wherein each said frame element further comprises mounting means for two end plates that complete the stack of plate elements at both sides.

21. A frame element according to claim 1 , further comprising a plurality of recesses for receiving ribs of plate elements arranged to form a stack.

Assignments (2)
CHANGE OF NAME Recorded Nov 2, 2010
From: SFC SMART FUEL CELL AG
To: SFC ENERGY AG
Reel/Frame 025227/0560 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 28, 2006
From: MULLER, JENS; HUBER, MARKUS; RUF, CHRISTIAN
To: AFC SMART FUEL CELL AG
Reel/Frame 017558/0385 →
Priority Claims (1)
EP 02027645 · Dec 11, 2002 · regional
Continuity (1)
Related Publication 20060127741A1 · Jun 15, 2006