IP Library Granted Patent US 11,855,310
Granted Patent B2
US 11,855,310 · App. 16/977,007 · Granted Dec 26, 2023

Flow-field plate

Inventor: Rune Staeck (Gifhorn, DE)
Assignees: Volkswagen AG; Audi AG
H01M8/0258B01D45/08B01D46/0031B01D53/261H01M8/04164H01M8/2483H01M8/04388H01M8/04395
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Quick Facts
Patent No.
US 11,855,310
App. No.
16/977,007
Granted
Dec 26, 2023
Kind
B2
Abstract

A flow-field plate is provided for distributing a reactant to an electrode or a gas diffusion layer of a fuel cell, the flow-field plate having a gas inlet, and having a plurality of channels defining a flow field. A pressure gradient is present between the gas inlet and the flow field given a state of throughflow, which leads to an intake of exhaust gas flowing in the channels in the direction of the gas inlet. Furthermore, there is a water/gas separator which is fluidically connected to the gas inlet for separating liquid water and/or water vapor from a gas which is connected to the flow field in order to supply the gas separated in the water/gas separator to the flow field. A flow cross-section at the gas inlet or at the gas inlet region is smaller than the flow cross-section at or in the region of the water/gas separator.

Claims (13)

1. A flow-field plate for distributing a reactant to an electrode or a gas diffusion layer of a fuel cell, comprising:

a gas inlet;

a plurality of channels defining a flow field, wherein given a state of throughflow a pressure gradient is present between the gas inlet and the flow field which cases an exhaust gas flowing into the channels to be drawn toward the gas inlet; and

a water/gas separator fluidically connected to the gas inlet for removing liquid water and/or water vapor from a gas which is connected to the flow field in order to supply the flow field with the gas removed in the water/gas separator, wherein a flow cross-section at the gas inlet or at a gas inlet region is smaller than the flow cross-section at or in a region of the water/gas separator.

2. The flow-field plate according to claim 1 , wherein the flow cross-section between the gas inlet and the water/gas separator increases continuously.

3. The flow-field plate according to claim 1 , wherein the increasing flow cross-section is formed by a wall running at an angle with respect to an extension direction of the channels.

4. The flow-field plate according to claim 3 , wherein the wall is guided at an angle up to an edge-side channel assigned to the water/gas separator in such a way that the gas separated in the water/gas separator is guided exclusively into the edge-side channel in order to distribute it to the channels of the flow field.

5. The flow-field plate according to claim 3 , wherein a second wall is provided in which the wall and the second wall are arranged facing each other, and a passage is formed between the wall and the second wall.

6. The flow-field plate according to claim 3 , wherein the water/gas separator is assigned an outlet with an actuator for discharging liquid water temporarily stored in the water/gas separator, and a third wall is provided which is arranged between the outlet and the wall in such a way that the gas separated in the water/gas separator is guided to the flow field.

7. The flow-field plate according to claim 1 , wherein the water/gas separator is formed as an impact separator with at least one baffle plate.

8. The flow-field plate according to claim 1 , wherein the water/gas separator is formed as a knitted-fabric separator.

9. The flow-field plate according to claim 1 , wherein the water/gas separator is formed as at least one hydrophilic or hygroscopic bar.

10. The flow-field plate according to claim 1 , wherein an ejector is assigned to the gas inlet, and the ejector takes the form of a nozzle.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 7, 2022
From: VOLKSWAGEN AG
To: AUDI AG
Reel/Frame 059336/0674 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 11, 2021
From: STAECK, RUNE
To: VOLKSWAGEN AG
Reel/Frame 058106/0711 →
Priority Claims (1)
DE 10 2019 206 577.5 · May 8, 2019 · national
Continuity (1)
Related Publication 20220059853A1 · Feb 24, 2022