Separator plate for an electrochemical system

US2019088956A1 · US · A1

Patent metadata
FieldValue
Publication numberUS-2019088956-A1
Application numberUS-201615760677-A
CountryUS
Kind codeA1
Filing dateSep 16, 2016
Priority dateSep 18, 2015
Publication dateMar 21, 2019
Grant date

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A separator plate for an electrochemical system may have at least one passage opening for forming a media channel for feeding or discharging media. The system may also have at least one bead arrangement arranged around the at least one passage opening, for the purpose of sealing the passage opening. At least one of the flanks of the bead arrangement may have at least one opening for conducting a medium through the bead flank. The system may also have at least one guide channel that is connected, on an exterior of the bead arrangement, to the openings in the bead flank and is fluidically connected to a bead interior via the opening in the bead flank. The guide channel is designed such that a guide channel width, determined parallel to the flat surface plane of the separator plate, increases at least in some sections in the direction of the bead arrangement.

First claim

Opening claim text (preview).

1 - 24 . (canceled) 25 . A separator plate for an electrochemical system, comprising: at least one passage opening for forming a media channel for feeding or discharging media; at least one bead arrangement arranged around the at least one passage opening for the purpose of sealing said passage opening, wherein the bead arrangement has at least one bead flank wherein the at least one bead flank comprises at least one opening for conducting a medium through the bead flank; and at least one guide channel, which is connected, on an exterior of the bead arrangement, to the opening in the bead flank and is fluidically connected to a bead interior of the bead arrangement via the passage opening in the bead flank; wherein the guide channel is designed such that a guide channel width parallel to the flat surface plane of the separator plate increases in the direction of the bead arrangement at least in sections. 26 . The separator plate according to claim 25 , wherein the guide channel is designed such that a height of the guide channel determined perpendicularly to the flat surface plane of the separator plate decreases in the direction of the bead arrangement at least in sections. 27 . The separator plate according to claim 25 , wherein the guide channel is designed such that a cross-sectional area of the guide channel along the middle 25% of the extent of the guide channel, changes by 25%, wherein the guide channel extends from an end of the guide channel facing away from the bead arrangement to the opening in the bead flank. 28 . The separator plate according to claim 25 , wherein the guide channel is designed such that the width of the guide channel increases monotonically along the guide channel, at least over the 60% of the length of the guide channel adjacent to the bead flank, wherein the guide channel extends from an end of the guide channel facing away from the bead arrangement to the opening in the bead flank. 29 . The separator plate according to claim 25 , wherein the guide channel is designed such that the width of the guide channel increases linearly. 30 . The separator plate according to claim 25 , wherein the guide channel is designed such that the height of the guide channel decreases monotonically along the guide channel, wherein the guide channel extends from an end of the guide channel facing away from the bead arrangement to the opening in the bead flank. 31 . The separator plate according to claim 25 , wherein the guide channel is designed such that the width of the guide channel increases at least along the 60% of the length of the guide channel adjacent to the bead flank at least by 10%, wherein the guide channel extends from an end of the guide channel facing away from the bead arrangement to the opening in the bead flank. 32 . The separator plate according to claim 25 , wherein in an uncompressed state of the bead arrangement, the opening in the bead flank reaches, perpendicularly to the flat surface plane of the separator plate, as far as a height that is at most 80%, of the height of the bead arrangement. 33 . The separator plate according to claim 25 , wherein in an uncompressed state of the bead arrangement, the guide channel is designed such that an inlet or outlet of the guide channel, which forms an end of the guide channel facing away from the bead arrangement, reaches, perpendicularly to the flat surface plane of the separator plate, as far as a height that is at most 90%, of the height of the bead arrangement. 34 . The separator plate according to claim 25 , wherein the guide channel has a rectangular, trapezoid, or at least partially rounded cross-section, at least in some sections. 35 . The separator plate according to claim 25 , wherein the guide channel is designed such that a roof of the guide channel has a convex curvature in the direction of the bead arrangement, at least in some sections. 36 . The separator plate according to claim 35 , wherein the opening is arranged in the bead flank, connected by the guide channel on the exterior of the bead arrangement, in the region of an inflection point of the portion of the bead arrangement extending in a wave-like manner. 37 . The separator plate according to claim 25 , wherein the separator plate is formed as a bipolar plate with two individual plates connected to one another, wherein the bead arrangement and the guide channel are formed in at least one of the individual plates. 38 . The separator plate according to claim 37 , wherein the bead arrangement, the guide channel, and the individual plate, in which the bead arrangement and the guide channel are formed, are formed in one piece, wherein the bead arrangement and the guide channel are formed integrally in the individual plate. 39 . The separator plate according to claim 38 , wherein at least one of the flanks of the bead arrangement has multiple openings, which are each connected on the exterior of the bead arrangement by a separate guide channel, which widens in the direction of the bead arrangement at least in some sections, wherein an integrally bonded connection between the individual plates is formed, at least between some of the guide channels arranged directly adjacently to one another. 40 . The separator plate according to claim 39 , wherein the integrally bonded connection is a soldered connection, an adhesively bonded connection, or a welded connection. 41 . The separator plate according to claim 37 , wherein the individual plates are formed from metal, wherein a thickness of the individual plates defined perpendicularly to the flat surface plane of the individual plates is in each case between 50 μm and 150 μm. 42 . The separator plate according to claim 37 , wherein the individual plates enclose a hollow space for the passage of a cooling medium. 43 . The separator plate according to claim 42 , wherein the hollow space for passage of a cooling medium is in fluid communication with the bead interior. 44 . The separator plate according to claim 37 , wherein at least one of the individual plates has a structure on its surface facing away from the other individual plate for guiding reaction medium, wherein the structure for guiding reaction medium is in fluidic communication with the bead interior via at least one inlet or outlet of the guide channel in the form of an opening in the individual plate. 45 . The separator plate according to claim 25 , wherein the opening and the guide channel are arranged on a flank of the bead arrangement facing away from the passage opening of the separator plate and/or on a flank of the bead arrangement facing in the direction of the passage opening of the separator plate. 46 . The separator plate according to claim 25 , wherein the bead arrangement is formed at least in some sections in such a way that the bead flanks each form an angle of less than 70 degrees, with a vertical direction oriented perpendicularly to the flat surface plane of the separator plate, and in that the bead roof has a convex curvature, so that the bead roof has a lower rigidity than the bead flanks. 47 . The separator plate according to claim 25 , wherein a height of the bead arrangement in an uncompressed state is less than 800 μm.

Assignees

Inventors

Classifications

  • Sealing or supporting means around electrodes, matrices or membranes · CPC title

  • H01M8/0254Primary

    corrugated or undulated · CPC title

  • Metals or alloys · CPC title

  • having heating or cooling means, e.g. heaters or coolant flow channels · CPC title

  • characterised by the form (characterised by a channel configuration H01M8/0258) · CPC title

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What does patent US2019088956A1 cover?
A separator plate for an electrochemical system may have at least one passage opening for forming a media channel for feeding or discharging media. The system may also have at least one bead arrangement arranged around the at least one passage opening, for the purpose of sealing the passage opening. At least one of the flanks of the bead arrangement may have at least one opening for conducting …
Who is the assignee on this patent?
Reinz Dichtungs Gmbh
What technology area does this patent fall under?
Primary CPC classification H01M8/0254. Mapped technology areas include Electricity.
When was this patent published?
Publication date Thu Mar 21 2019 00:00:00 GMT+0000 (Coordinated Universal Time) (A1). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).