IP Library Granted Patent US 11,621,429
Granted Patent B2
US 11,621,429 · App. 17/026,502 · Granted Apr 4, 2023

Fuel cell component including scale-accommodating flow channels

Inventors: Eric Livaich (South Windsor, CT); Ke Gong (Ellington, CT); Timothy William Patterson (West Hartford, CT); Dante Misseri (Cromwell, CT)
Assignee: HYAXIOM, INC.
H01M8/026H01M8/0265
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Quick Facts
Patent No.
US 11,621,429
App. No.
17/026,502
Granted
Apr 4, 2023
Kind
B2
Abstract

An illustrative example fuel cell component includes a plate with a plurality of flow channels in at least one side of the plate. Each of the flow channels has a length between an inlet and an outlet. Each of the flow channels has a width and a depth, which are transverse to the length. At least some of the flow channels include a portion near the inlet and the width or the depth of the portion is greater than the width or depth along a majority of the length of those flow channels.

Claims (33)

1. A fuel cell component comprising a plate including a plurality of flow channels in at least one side of the plate, each of the flow channels having a length between an inlet and an outlet, each of the flow channels having a width transverse to the length and a depth transverse to the length, wherein at least some of the flow channels include a portion near the inlet the depth of the portion is greater than the depth along a majority of the length of the at least some of the flow channels and the width of the portion is greater than the width along a majority of the length of the at least some of the flow channels.

2. The fuel cell component of claim 1 , wherein the greater width or depth establishes a depository in the portion near the inlet of the at least some of the flow channels and the depository is configured to contain scale resulting from liquid electrolyte evaporation.

3. The fuel cell component of claim 1 , wherein the portion extends along less than one-tenth of the length.

4. The fuel cell component of claim 1 , wherein the at least some of the flow channels include a second portion near the outlet and the width or depth of the second portion is greater than the width or depth along the majority of the length of the at least some of the flow channels.

5. The fuel cell component of claim 4 , wherein all of the flow channels include the portion and the second portion.

6. The fuel cell component of claim 1 , wherein the flow channels have a rectangular cross-section along the majority of the length and the portions have a stepped profile cross-section.

7. The fuel cell component of claim 1 , wherein

the width of each portion varies from a first width near the one side of the plate to a second width near a deepest part of the portion, and

the second width is smaller than the first width.

8. The fuel cell component of claim 7 , wherein the width varies in a stepped manner.

9. The fuel cell component of claim 7 , wherein the flow channels have the first width along the majority of the length.

10. The fuel cell component of claim 1 , wherein

the inlet is at one edge of the plate,

the depth of each portion varies, and

the depth of each portion is greatest adjacent the one edge of the plate.

11. The fuel cell component of claim 10 , wherein

each portion includes a bottom surface,

the depth of the portion is defined between the bottom surface and the one side of the plate,

the bottom surface is furthest from the one side of the plate adjacent the one edge of the plate, and

the bottom surface is at an oblique angle relative to the one side of the plate.

12. The fuel cell component of claim 1 , wherein every flow channel includes one of the portions near the inlet.

13. The fuel cell component of claim 1 , comprising a second portion near the outlet of at least some of the flow channels and wherein the second portion has a width or a depth that is greater than the width or depth along the majority of the length of the at least some of the flow channels.

14. The fuel cell component of claim 1 , wherein the portion has a dimension along the length of the flow channel that is less than 25 mm (1 inch).

15. A fuel cell comprising the fuel cell component of claim 1 .

16. A fuel cell stack assembly comprising a plurality of fuel cells each including the fuel cell component of claim 1 .

17. A power plant comprising a plurality of the fuel cell stack assemblies of claim 16 .

18. A fuel cell component comprising a plate including a plurality of flow channels in at least one side of the plate, each of the flow channels having a length between an inlet and an outlet, each of the flow channels having a width transverse to the length and a depth transverse to the length, wherein at least some of the flow channels include a portion near the inlet,

wherein

the depth of each portion is greater than the depth along the majority of the length of the at least some of the flow channels,

the width of each portion varies from a first width near the one side of the plate to a second width near a deepest part of the portion, and

the second width is smaller than the first width.

19. The fuel cell component of claim 18 , wherein the width varies in a stepped manner.

20. The fuel cell component of claim 18 , wherein the flow channels have the first width along the majority of the length.

Assignments (2)
CHANGE OF NAME Recorded Apr 8, 2022
From: DOOSAN FUEL CELL AMERICA, INC.
To: HYAXIOM, INC.
Reel/Frame 059657/0875 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 21, 2020
From: LIVAICH, ERIC; GONG, KE; PATTERSON, TIMOTHY WILLIAM; MISSERI, DANTE
To: DOOSAN FUEL CELL AMERICA, INC.
Reel/Frame 053828/0041 →
Continuity (1)
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