IP Library Granted Patent US 10,468,695
Granted Patent B2
US 10,468,695 · App. 15/483,755 · Granted Nov 5, 2019

Gas distribution element for a fuel cell

Inventor: Zacharie Wuillemin (Epesses, CH)
Assignee: SOLIDpower SA
H01M8/04201C25B15/08H01M8/0247H01M8/0254H01M8/0258H01M8/04014H01M8/04089H01M8/04276H01M8/1231H01M8/1246H01M8/2425H01M8/2483C25B1/08C25B9/203H01M2008/1293H01M2300/0077Y02E60/366
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Quick Facts
Patent No.
US 10,468,695
App. No.
15/483,755
Granted
Nov 5, 2019
Kind
B2
Abstract

The gas distribution element for a fuel cell or an electrolyzing device including a first layer and a second layer, the first and second layers are disposed with a gas distribution structure forming a pattern for a fluid flow of a first reactant fluid. The second layer is a homogenizing element, which has first apertures, wherein at least some of the first apertures have a length and a width, with the length being greater than the width and the length extending in a transverse direction to the main direction of fluid flow.

Claims (4)

1. A method for homogenizing a combustible gas in a gas distribution element of a fuel cell, the gas distribution element comprising in sequence a base layer, a first layer and a second layer, the first layer comprising a gas distribution structure comprising channels and the second layer comprising first apertures, wherein the combustible gas flowing through the respective channels enters the first apertures so that the combustible gas of the respective channels is homogenized within the first apertures, and wherein the first apertures are contacting a cathode-anode-electrolyte unit at a contacting surface and wherein the first apertures are arranged within the contacting surface, so that the combustible gas from within the first apertures is provided to the cathode-anode-electrolyte unit, wherein the gas distribution structure consisting of a plurality of linear extending channels arranged one beside the other and connecting a fuel inlet with a fuel outlet, so that the fuel is flowing in a direction of flow within the channels in linear direction, that the first apertures extending in transverse direction with respect to the direction of flow and fluidly connecting at least two channels arranged one beside the other, that at least some of the combustible gas homogenized within the first apertures flows back into the respective channels of the first layer or is exchanged between the respective channels of the first layer, and that the total surface of all first apertures through which the combustible gas is provided to the cathode-anode-electrolyte unit is at least 20% of the contacting surface.

2. The method of claim 1 , wherein at least some the first apertures extend perpendicular to the direction of flow so that the pressure of the combustible gas in the respective first aperture is equalized, so that the pressure of the combustible gas in the underlying respective channels is equalized locally.

3. The method of claim 1 , wherein the total surface of all first apertures through which the combustible gas is provided to the cathode-anode-electrolyte unit is at least 30%.

4. The method of claim 1 , wherein the total surface of all first apertures through which the combustible gas is provided to the cathode-anode-electrolyte unit is between 40% to 50% of the contacting surface.

Assignments (2)
CHANGE OF NAME Recorded Sep 24, 2019
From: HTCERAMIX S.A.
To: SOLIDPOWER SA
Reel/Frame 050471/0394 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 10, 2017
From: WUILLEMIN, ZACHARIE
To: HTCERAMIX S.A.
Reel/Frame 041949/0029 →
Priority Claims (1)
EP 12171563 · Jun 11, 2012 · regional
Continuity (2)
Continuation 14407358
Related Publication 20170229722A1 · Aug 10, 2017