IP Library › Granted Patent US 10,381,660
Granted Patent B2
US 10,381,660 · App. 14/621,870 · Granted Aug 13, 2019

Separator for fuel cell

Inventor: Kazuyuki Hirata (Toyota, JP)
Assignee: TOYOTA BOSHOKU KABUSHIKI KAISHA
H01M8/0263H01M8/0258H01M8/0267
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Quick Facts
Patent No.
US 10,381,660
App. No.
14/621,870
Granted
Aug 13, 2019
Kind
B2
Abstract

A separator for a fuel cell includes a thin metal plate, a protrusion formed on the thin metal plate, a gas passage formed by the protrusion, and a trap that is formed by forming a recess in a wall portion of the protrusion such that the trap is provided in the gas passage to correspond to the recess.

Claims (58)

1. A separator for a fuel cell, comprising:

a thin metal plate having a first surface and a second surface that is opposite to the first surface;

a protrusion formed on a second surface side of the thin metal plate and defining a groove that opens in a first surface side of the thin metal plate;

a gas passage formed by the groove on the first surface side;

a plurality of recesses formed at spaced intervals on the second surface of the thin metal plate such that each recess of the plurality of recesses defines a coolant passage that extends in a direction that traverses the gas passage; and

a plurality of traps that are formed by the plurality of recesses and project into the gas passage from the first surface such that the plurality of traps are provided in the gas passage in a gas flow direction.

2. The separator for a fuel cell according to claim 1 , wherein the second surfaces defines a top wall of the protrusion.

3. The separator for a fuel cell according to claim 1 , wherein

the protrusion is one of a plurality of meandering protrusions, and

the plurality of recesses are formed in parallel sections of the plurality of meandering protrusions.

4. The separator for a fuel cell according to claim 1 , wherein

the protrusion has a first opening and a second opening at opposite ends, and

the plurality of recesses are located in a section of the protrusion that includes the first opening.

5. The separator for a fuel cell according to claim 4 , wherein

the first opening corresponds to an outlet of the gas passage,

the second opening corresponds to an inlet of the gas passage,

the section that includes the first opening is a first section of the protrusion,

the protrusion includes a second section that is located on an upstream side of the first section in the gas passage,

the second section also has a plurality of recesses, and

a depth of each of the plurality of recesses formed in the first section is greater than a depth of each of the plurality of recesses formed in the second section.

6. A fuel cell comprising:

a first separator including:

a first thin metal plate;

a first protrusion formed on the first thin metal plate;

a first gas passage formed by the first protrusion; and

a first trap that is formed by forming a first separator recess in a first wall portion of the first protrusion such that the first trap is provided in the first gas passage to correspond to the first separator recess;

a second separator including:

a second thin metal plate;

a second protrusion formed on the second thin metal plate;

a second gas passage formed by the second protrusion; and

a second trap that is formed by forming a second separator recess in a second wall portion of the second protrusion such that the second trap is provided in the second gas passage to correspond to the second separator recess; and

a plate-like electrode member, wherein

the first separator is laminated on the electrode member such that a first surface of the first separator on which the gas passage is formed is adjacent to the electrode member,

the second separator is brought into contact with a second surface of the first separator that is opposite to the first surface such that a space is formed between the first and second separator recesses, and

the space forms a coolant passage.

7. The fuel cell according to claim 6 , wherein

the first and second separator recesses each have first and second recesses, wherein a depth of the first recess is greater than a depth of the second recess,

the first recess of the first separator is arranged at a position that faces a part of a top wall of the second separator where the first recess is absent, and

the second recess of the first separator is arranged at a position that faces the second recess of the second separator.

8. A separator for a fuel cell, comprising:

a thin metal plate;

a protrusion formed on the thin metal plate;

a gas passage formed by the protrusion; and

a trap that is formed by forming a recess in a wall portion of the protrusion such that the trap is provided in the gas passage to correspond to the recess, wherein

the protrusion has a first opening and a second opening at opposite ends,

the recess is located in a first section of the protrusion that includes the first opening,

the first opening corresponds to an outlet of the gas passage,

the second opening corresponds to an inlet of the gas passage,

the protrusion includes a second section located on an upstream side of the first section in the gas passage,

the second section also has a recess, and

a depth of the recess formed in the first section is greater than a depth of the recess formed in the second section.

9. The separator for the fuel cell according to claim 1 , wherein

the protrusion has a first opening and a second opening at opposite ends,

the first opening corresponds to an outlet of the gas passage,

the second opening corresponds to an inlet of the gas passage,

the thin metal plate has a rectangular shape,

the first opening and the second opening each open in a direction along long sides of the rectangular shape, and

the direction that traverses the gas passage is a direction along short sides of the rectangular shape.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 13, 2015
From: HIRATA, KAZUYUKI
To: TOYOTA BOSHOKU KABUSHIKI KAISHA
Reel/Frame 034961/0613 →
Priority Claims (1)
JP 2014-029752 · Feb 19, 2014 · national
Continuity (1)
Related Publication 20150236358A1 · Aug 20, 2015