IP Library Granted Patent US 8,703,351
Granted Patent B2
US 8,703,351 · App. 13/053,621 · Granted Apr 22, 2014

Plated photopolymer based fuel cell

Inventors: Jeffrey A. Rock (Fairport, NY); Steven G. Goebel (Victor, NY); Gerald W. Fly (Geneseo, NY); Alan J. Jacobsen (Woodland Hills, CA); Joanna A. Kolodziejska (Glendale, CA); Hung D. Nguyen (Los Angeles, CA)
Assignee: GM Global Technology Operations LLC
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Quick Facts
Patent No.
US 8,703,351
App. No.
13/053,621
Filed
Mar 22, 2011
Granted
Apr 22, 2014
Kind
B2
Art Unit
1751
USPC
429/465
Abstract

A fuel cell component includes a first fluid distribution layer, a second fluid distribution layer, a cap layer, a third fluid distribution layer, and a pair of fluid diffusion medium layers. The individual layers are polymeric, mechanically integrated, and formed from a radiation-sensitive material. The first fluid distribution layer, the second fluid distribution layer, the cap layer, the third fluid distribution layer, and the pair of fluid diffusion medium layers are coated with an electrically conductive material. A pair of the fuel cell components may be arranged in a stack with a membrane electrode assembly therebetween to form a fuel cell.

Claims (26)

1. A fuel cell component, comprising:

an electrically conductive substrate having a first surface and a second surface, the first surface and the second surface disposed on opposite sides of the electrically conductive substrate;

a first fluid distribution layer disposed on the first surface of the electrically conductive substrate, the first fluid distribution layer having a plurality of first channels and a plurality of second channels;

a second fluid distribution layer disposed on the second surface of the electrically conductive substrate;

a cap layer disposed on at least a portion of the first fluid distribution layer, the first channels of the first fluid distribution layer covered by the cap layer and the second channels of the first fluid distribution layer not covered by the cap layer;

a third fluid distribution layer disposed on the cap layer, the cap layer separating the first channels of the first fluid distribution layer from the third fluid distribution layer, the second channels of the first fluid distribution layer in fluid communication with the third fluid distribution layer; and

a first diffusion medium layer disposed on the third fluid distribution layer and a second diffusion medium layer disposed on the second fluid distribution layer.

2. The fuel cell component of claim 1 , wherein the first fluid distribution layer includes a plurality of first polymeric ribs extending outwardly from the first surface of the electrically conductive substrate, the first channels of the first fluid distribution layer defined by first spans between the first polymeric ribs, and the second channels of the first fluid distribution layer defined by second spans between the first polymeric ribs.

3. The fuel cell component of claim 2 , wherein the cap layer includes a plurality of polymeric cap segments, the cap segments bridging the first spans between the first polymeric ribs.

4. The fuel cell component of claim 3 , wherein the third fluid distribution layer has a plurality of first channels and a plurality of second channels disposed on the cap layer, the cap layer separating the first channels of the first fluid distribution layer from the first channels of the third fluid distribution layer, the second channels of the first fluid distribution layer in fluid communication with the second channels of the third fluid distribution layer, and wherein the third fluid distribution layer includes a plurality of third polymeric ribs extending outwardly from the polymeric cap segments, the third polymeric ribs forming the first channels and the second channels of the third fluid distribution layer.

5. The fuel cell component of claim 1 , wherein the second fluid distribution layer includes a plurality of second polymeric ribs extending outwardly from the second surface of the electrically conductive substrate, the second polymeric ribs forming the channels of the second fluid distribution layer.

6. The fuel cell component of claim 1 , wherein the second fluid distribution layer is formed from a polymeric micro-truss network.

7. The fuel cell component of claim 1 , wherein the second fluid distribution layer includes a plurality of channels.

8. The fuel cell component of claim 1 , wherein each of the first diffusion medium layer and the second diffusion medium layer is formed from a polymeric grid having a plurality of first walls and a plurality of second walls that intersect the first walls.

9. The fuel cell component of claim 1 , further comprising an electrically conductive coating deposited on each of the electrically conductive substrate, the first fluid distribution layer, the second fluid distribution layer, the third fluid distribution layer, the cap layer, and the first diffusion medium layer and the second diffusion medium layer.

10. The fuel cell component of claim 9 , wherein the electrically conductive coating is not formed on an inner surface of each of the first channels of the first fluid distribution layer, an inner surface of the cap layer covering each the first channels of the first fluid distribution layer, and a surface of the electrically conductive substrate opposite the inner surface of the cap layer.

11. The fuel cell component of claim 1 , wherein the electrically conductive substrate is a stainless steel foil.

12. The fuel cell component of claim 1 , wherein the first fluid distribution layer, the second fluid distribution layer, the third fluid distribution layer, the cap layer, and the pair of diffusion medium layers are formed by photopolymerization.

13. The fuel cell component of claim 1 , wherein the electrically conductive substrate includes a pair of headers with reactant inlets and outlets and coolant inlets and outlets, the first fluid distribution layer, the second fluid distribution layer, the third fluid distribution layer, the cap layer, the first diffusion medium layer and the second diffusion medium layer disposed between the headers.

14. The fuel cell component of claim 13 , wherein the first fluid distribution layer is configured to distribute a coolant in the first channels of the first fluid distribution layer and a cathode reactant in the second channels of the first fluid distribution layer, the second fluid distribution layer is configured to distribute an anode reactant, and the third distribution layer is configured to distribute the cathode reactant.

15. The fuel cell component of claim 14 , further comprising a membrane electrode assembly disposed adjacent at least one of the first diffusion medium layer and the second diffusion medium layer.

16. The fuel cell component of claim 15 , wherein a microporous layer is disposed between the membrane electrode assembly and the at least one of the first diffusion medium layer and the second diffusion medium layer.

17. The fuel cell component of claim 15 , wherein the electrically conductive substrate includes a pair of headers, the first fluid distribution layer, the second fluid distribution layer, the third fluid distribution layer, the cap layer, first the diffusion medium layer and the second diffusion medium layer disposed between the headers.

18. A fuel cell, comprising:

a pair of fuel cell components arranged in a stack, each of the fuel cell components including an electrically conductive substrate having a first surface and a second surface, the first surface and the second surface disposed on opposite sides of the electrically conductive substrate, a first fluid distribution layer disposed on the first surface of the electrically conductive substrate, the first fluid distribution layer having a plurality of first channels and a plurality of second channels, a second fluid distribution layer disposed on the second surface of the electrically conductive substrate, a cap layer disposed on at least a portion of the first fluid distribution layer, the first channels of the first fluid distribution layer covered by the cap layer and the second channels of the first fluid distribution layer not covered by the cap layer, a third fluid distribution layer disposed on the cap layer, the cap layer separating the first channels of the first fluid distribution layer from the third fluid distribution layer, the second channels of the first fluid distribution layer in fluid communication with the third fluid distribution layer, and a first diffusion medium layer disposed on the third fluid distribution layer, and a second diffusion medium layer disposed on the second fluid distribution layer; and

a membrane electrode assembly disposed between the pair of fuel cell components.

Assignments (3)
RELEASE OF SECURITY INTEREST Recorded Nov 7, 2014
From: WILMINGTON TRUST COMPANY
To: GM GLOBAL TECHNOLOGY OPERATIONS LLC
Reel/Frame 034287/0159 →
SECURITY AGREEMENT Recorded Jun 28, 2012
From: GM GLOBAL TECHNOLOGY OPERATIONS LLC
To: WILMINGTON TRUST COMPANY
Reel/Frame 028466/0870 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 7, 2011
From: ROCK, JEFFREY A.; GOEBEL, STEVEN G.; FLY, GERALD W.; JACOBSEN, ALAN J.; KOLODZIEJSKA, JOANNA A.; NGUYEN, HUNG D.
To: GM GLOBAL TECHNOLOGY OPERATIONS LLC
Reel/Frame 026091/0482 →
Continuity (1)
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