IP Library Granted Patent US 12671098
Granted Patent B2
US 12671098 · App. 17/751,244 · Granted Jun 30, 2026

Separator for fuel cell

Inventors: Haruyuki Aono (Aichi-ken, JP); Satoshi Kawabe (Ichinomiya, JP)
Assignee: TOYOTA BOSHOKU KABUSHIKI KAISHA
H01M8/026H01M8/0263H01M8/0267
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Quick Facts
Patent No.
US 12671098
App. No.
17/751,244
Granted
Jun 30, 2026
Kind
B2
Abstract

A separator for a fuel cell includes a contact surface configured to contact a power generating unit of the fuel cell. Groove passages are arranged side by side in the contact surface. Reactant gas flows through the groove passages. At least one of the groove passages includes a wavy section that extends in a wavy shape in planar directions of the contact surface. An upstream portion and a downstream portion in a flow direction of the reactant gas in each groove passage are defined as an upstream portion and a downstream portion, respectively. A wavelength of the wavy section is smaller in the downstream portion than in the upstream portion.

Claims (67)

1 . A separator for a fuel cell, comprising:

a contact surface configured to contact a power generating unit of the fuel cell; and

groove passages arranged side by side in the contact surface, reactant gas flowing through the groove passages, wherein

a direction in which the groove passages are arranged side by side is defined as an arrangement direction, wherein

the grooves passages extend such that entireties of the groove passages are oriented obliquely with respect to the arrangement direction,

wherein

the groove passages include an outer side groove passage that is located at an outermost position in, and

the outer side groove passage includes a section that is located at a same position as or on an outer side of an outermost edge of the contact surface in the arrangement direction; and

the groove passages include a first groove passage and a second groove passage that extend in wavy shapes in planar directions of the contact surface and are adjacent to each other in the arrangement direction,

at least one of the first groove passage and the second groove passage includes branched passages that are arranged side by side in the arrangement direction,

a number of passages arranged side by side in the arrangement direction in the first groove passage is defined as a first passage count,

a number of passages arranged side by side in the arrangement direction in the second groove passage is defined as a second passage count, and

the first passage count of a predetermined section in the first groove passage is different from the second passage count of a section in the second groove passage that is adjacent to the predetermined section.

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

the first groove passage and the second groove passage both include the branched passages, which are arranged side by side in the arrangement direction,

the first groove passage includes a first part and a second part of which the first passage count is less than the first passage count of the first part,

in the second groove passage, the second passage count of a section adjacent to the first part is less than the first passage count of the first part, and

in the second groove passage, the second passage count of a section adjacent to the second part is more than the first passage count of the second part.

3 . The separator for the fuel cell according to claim 1 , wherein an interval between the branched passages in the arrangement direction is smaller than an interval between the first groove passage and the second groove passage.

4 . The separator for the fuel cell according to claim 1 , wherein the first groove passage and the second groove passage are independent from each other.

5 . The separator for the fuel cell according to claim 1 , wherein the first groove passage and the second groove passage are arranged alternately in the arrangement direction.

6 . A separator for a fuel cell, comprising:

a contact surface configured to contact a power generating unit of the fuel cell; and

groove passages arranged side by side in the contact surface, reactant gas flowing through the groove passages, wherein

an upstream portion and a downstream portion in a flow direction of the reactant gas in each groove passage are defined as an upstream portion and a downstream portion, respectively,

the groove passages each includes a wavy section that extends in a wavy shape in planar directions of the contact surface,

and

the wavy section includes tributary passages and a merging portion at which the tributary passages merge from an upstream side toward a downstream side,

wherein the merging portion of each wavy section includes multiple merging portions, and

wherein spacing between amplitudes in respective wavy sections of adjacent groove passages continuously increase from an upstream side to the downstream side.

7 . The separator for the fuel cell according to claim 6 , wherein an amplitude of the wavy section is larger in the downstream portion than in the upstream portion.

8 . The separator for the fuel cell according to claim 6 , wherein, in the wavy section, the tributary passages, which merge at the merging portion, are independent from each other at positions other than the merging portion.

9 . The separator for the fuel cell according to claim 6 , wherein

the groove passages include an outer side groove passage that is located at an outermost position in an arrangement direction in which the groove passages are arranged side by side, and

the outer side groove passage includes a section that is located at a same position as or on an outer side of an outer edge of the contact surface in the arrangement direction.

10 . A separator for a fuel cell, comprising:

a contact surface configured to contact a power generating unit of the fuel cell; and

groove passages arranged adjacently in the contact surface, reactant gas flowing through the groove passages, wherein

a direction in which the groove passages are arranged side by side is defined as an arrangement direction,

the groove passages include a first groove passage and a second groove passage that extend in wavy shapes in planar directions of the contact surface and are adjacent to each other in the arrangement direction, and

a wavelength of a predetermined section in the first groove passage is different from a wavelength of a section in the second groove passage that is adjacent to the predetermined section, and

wherein spacing between adjacent groove passages continuously changes from an upstream most side of the wavy section to a downstream most side of the wavy section.

11 . The separator for the fuel cell according to claim 10 , wherein

the first groove passage includes a first part and a second part of which the wavelength is smaller than the wavelength of the first part,

the wavelength of a part of the second groove passage that is adjacent to the first part is smaller than the wavelength of the first part, and

the wavelength of a part of the second groove passage that is adjacent to the second part is larger than the wavelength of the second part.

12 . The separator for the fuel cell according to claim 10 , wherein the first groove passage and the second groove passage are independent from each other.

13 . The separator for the fuel cell according to claim 10 , wherein the first groove passage and the second groove passage are arranged alternately in the arrangement direction.

14 . The separator for the fuel cell according to claim 10 , wherein

the groove passages include an outer side groove passage that is located at an outermost position in the arrangement direction, and

the outer side groove passage includes a section that is located at a same position as or on an outer side of an outer edge of the contact surface in the arrangement direction.

15 . A separator for a fuel cell, comprising:

a contact surface configured to contact a power generating unit of the fuel cell; and

groove passages arranged side by side in the contact surface, reactant gas flowing through the groove passages, wherein

a direction in which the groove passages are arranged side by side is defined as an arrangement direction,

the groove passages include a first groove passage and a second groove passage that extend in wavy shapes in planar directions of the contact surface and are adjacent to each other in the arrangement direction,

an amplitude of a predetermined section in the first groove passage is different from an amplitude of a section in the second groove passage that is adjacent to the predetermined section,

wherein

the first groove passage includes a first part and a second part of which the amplitude is smaller than the amplitude of the first part,

the amplitude of a part of the second groove passage that is adjacent to the first part is smaller than the amplitude of the first part, and

the amplitude of a part of the second groove passage that is adjacent to the second part is larger than the amplitude of the second part, and

wherein a wavelength of the wavy shapes in a same one of the groove passages is the same.

16 . The separator for the fuel cell according to claim 15 , wherein the first groove passage and the second groove passage are independent from each other.

17 . The separator for the fuel cell according to claim 15 , wherein the first groove passage and the second groove passage are arranged alternately in the arrangement direction.

18 . The separator for the fuel cell according to claim 15 , wherein

the groove passages include an outer side groove passage that is located at an outermost position in the arrangement direction, and

the outer side groove passage includes a section that is located at a same position as or on an outer side of an outer edge of the contact surface in the arrangement direction.