IP Library Granted Patent US 8,679,692
Granted Patent B2
US 8,679,692 · App. 12/593,527 · Granted Mar 25, 2014

Fuel cell having enhanced heat dissipation

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Quick Facts
Patent No.
US 8,679,692
App. No.
12/593,527
Granted
Mar 25, 2014
Kind
B2
Abstract

A fuel cell is provided that prevents destabilization of power generation due to heat generated in an electrochemical device portion. In a fuel cell having a membrane-electrode assembly which performs power generation by chemical reaction, a membrane-electrode assembly is disposed with a space from another membrane-electrode assembly or two membrane-electrode assemblies are provided adjacent to each other so that the pair is disposed with a space from another membrane-electrode assembly or another pair, and one of the main surfaces of a membrane-electrode assembly is in contact with outside air. Conductive plates are disposed in contact with the membrane-electrode assembly in order to exchange a current generated in the membrane-electrode assembly with the outside, and radiation fins are provided on the conductive plate on the main surface side in contact with outside air so that the conductive plate serves as a radiation member.

Claims (23)

1. A fuel cell comprising:

an electrochemical device portion in which power generation is performed by a chemical reaction;

a radiation member disposed at a position in contact with outside air and provided with radiation fins for radiating heat generated in the electrochemical device portion, at least one of the radiation fins having a curved thinning profile in a direction away from the electrochemical device portion; and

a conductive member for exchanging a current generated in the electrochemical device portion with the outside, wherein

the electrochemical device portion is disposed with a space from another electrochemical device portion or forms a pair of two electrochemical device portions provided adjacent to each other so that the pair is disposed with a space from another electrochemical device portion or another pair,

the conductive member includes a first surface disposed in contact with the electrochemical device portion and a second surface opposite the first surface and in contact with outside air,

at least one inlet hole is provided in the conductive member in order to pass air to the electrochemical device portion, and

the radiation member is provided in contact with the second surface of the conductive member, or part or the whole of the radiation fins are formed on at least a portion of the second surface of the conductive member.

2. The fuel cell according to claim 1 , wherein the electrochemical device portion has a plate-like shape, and the conductive member is disposed in contact with each of two main surfaces of the electrochemical device portion.

3. The fuel cell according to claim 1 , wherein the radiation fins are formed by processing a surface of the radiation member.

4. The fuel cell according to claim 3 , wherein the radiation fins have a pitch of 3 mm or less, a thickness of 1 mm or less, and a height of 3 mm or less.

5. The fuel cell according to claim 3 , wherein the radiation fins are formed by cutting and raising or digging a surface of the radiation member.

6. The fuel cell according to claim 3 , wherein the radiation fins are formed by a groove forming method of forming a plurality of lines of grooves.

7. The fuel cell according to claim 1 , wherein the radiation member includes a metal plate or a surface-treated metal plate.

8. The fuel cell according to claim 7 , wherein the metal plate is composed of aluminum or copper.

9. The fuel cell according to claim 1 , wherein air is supplied to the electrochemical device portion by natural diffusion and/or natural convection.

10. The fuel cell according to claim 1 , wherein a fuel stored in a liquid state is supplied in an evaporated state to the electrochemical device portion.

11. The fuel cell according to claim 10 , wherein the liquid fuel is methanol or an aqueous methanol solution.

12. The fuel cell according to claim 1 , wherein part or the whole of the radiation fins are formed on at least a portion of the second surface of the conductive member, and the portion of the second surface on which the radiation fins are formed is opposite a portion of the first surface in contact with the electrochemical device portion.

13. The fuel cell according to claim 1 , wherein the radiation fins extend from the radiation member in a direction perpendicular to the second surface of the conductive member.

14. The fuel cell according to claim 1 , wherein the electrochemical device portion is a membrane electrode assembly including an anode, a cathode and an electrolyte membrane.

15. The fuel cell according to claim 1 , wherein the conductive member comprises a metallic plate.

16. The fuel cell according to claim 1 , wherein the radiation fins extend in a direction substantially perpendicular to the first surface of the conductive member.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 22, 2018
From: TOHOKU MURATA MANUFACTURING CO., LTD
To: MURATA MANUFACTURING CO., LTD.
Reel/Frame 045103/0835 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 22, 2018
From: SONY CORPORATION
To: TOHOKU MURATA MANUFACTURING CO.,LTD
Reel/Frame 045104/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 28, 2009
From: GOTO, SHUJI; FUKUSHIMA, KAZUAKI; NANJO, SAYAKA; KUSAMOTO, TETSURO
To: SONY CORPORATION
Reel/Frame 023437/0405 →