IP Library Granted Patent US 7,972,740
Granted Patent B2
US 7,972,740 · App. 11/638,731 · Granted Jul 5, 2011

Fuel cell coolant bubble control

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Quick Facts
Patent No.
US 7,972,740
App. No.
11/638,731
Granted
Jul 5, 2011
Kind
B2
Abstract

To mitigate bubble blockage in water passageways ( 78, 85 ), in or near reactant gas flow field plates ( 74, 81 ) of fuel cells ( 38 ), passageways are configured with (a) cross sections having intersecting polygons or other shapes, obtuse angles including triangles and trapezoids, or (b) hydrophobic surfaces ( 111 ), or (c) differing adjacent channels ( 127, 128 ), or (d) water permeable layers ( 93, 115, 116, 119 ) adjacent to water channels or hydrophobic/hydrophilic layers ( 114, 120 ), or (e) diverging channels ( 152 ).

Claims (6)

1. A fuel cell stack comprising:

a plurality of fuel cells having cell assemblies including an electrolyte having an anode and a cathode disposed on respective anode and cathode sides thereof, a fuel reactant gas flow field plate having fuel reactant gas flow channels extending from a first surface thereof adjacent said anode side, and an oxidant reactant gas flow field plate having oxidant reactant gas flow channels extending from a first surface thereof adjacent said cathode side, at least one of said flow field plates being porous and hydrophilic; and

a coolant flow path configured to allow liquid coolant flow, including at least one coolant passageway disposed in or near a second surface of at least one of said flow field plates of each fuel cell, said coolant passageways each having an inlet end and an outlet end, each of said passageways formed by a channel which diverges from said inlet end to said outlet end.

2. A fuel cell stack comprising:

a plurality of fuel cells having cell assemblies including an electrolyte having an anode and a cathode disposed on respective anode and cathode sides thereof, a fuel reactant gas flow field plate having-fuel reactant gas flow channels extending from a first surface thereof adjacent said anode side, and an oxidant reactant gas flow field plate having oxidant reactant gas flow channels extending from a first surface thereof adjacent said cathode side, at least one of said flow field plates being porous and hydrophilic; and

a coolant flow path configured to allow liquid coolant flow, including at least one coolant passageway disposed in or near a second surface of at least one of said flow field plates of each fuel cell, said coolant passageways each having an inlet end and an outlet end, said coolant passageways diverge from said inlet ends to said outlet ends along substantially the entire lengths of said coolant passageways.

Assignments (3)
CORRECTION OF ASSIGNEE ADDRESS PREVIOUSLY RECORDED AT REEL 035772, FRAME 0192. Recorded Jul 2, 2015
From: BALLARD POWER SYSTEMS INC.
To: AUDI AG
Reel/Frame 036407/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 26, 2015
From: BALLARD POWER SYSTEMS INC.
To: AUDI AG
Reel/Frame 035772/0192 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 19, 2013
From: UTC POWER CORPORATION
To: UNITED TECHNOLOGIES CORPORATION
Reel/Frame 031033/0325 →