Using a spacer to block path of thermally conductive structural adhesive in lithium ion cells

US10601090B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-10601090-B2
Application numberUS-201715581216-A
CountryUS
Kind codeB2
Filing dateApr 28, 2017
Priority dateApr 28, 2017
Publication dateMar 24, 2020
Grant dateMar 24, 2020

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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.

Embodiment include a power source module comprising one or more power cells. Each power cell can comprise a pressure vent on a side of the power cell. The pressure vent can be adapted to relieve an internal pressure of the cell when the internal pressure exceeds a threshold. A cooling plate can be disposed adjacent and substantially parallel to a side of the one or more power cells having the pressure vent. One or more spacers can be disposed between each of the one or more power cells and the cooling plate and substantially surrounding the pressure vent of one of the one or more power cells. A thermally conductive potting material can be disposed between the one or more power cells and the cooling plate. Each spacer prevents the potting material from intruding into an area around the vent of one of the one or more power cells.

First claim

Opening claim text (preview).

What is claimed is: 1. A power source module comprising: one or more power cells, each power cell comprising a pressure vent on a side of the power cell, the pressure vent adapted to relieve an internal pressure of the cell when the internal pressure exceeds a threshold; a cooling plate disposed adjacent and substantially parallel to a side of the one or more power cells having the pressure vent; one or more spacers, each spacer disposed between one of the one or more power cells and the cooling plate and substantially surrounding the pressure vent of one of the one or more power cells; and a thermally conductive potting material disposed between the one or more power cells and the cooling plate, wherein the potting material prevents any of the one or more power cells from directly contacting the cooling plate, provides a thermally conductive layer between the one or more power cells and the cooling plate, and comprises a structural member between and joining the one or more power cells and the cooling plate, and wherein each spacer prevents flow of the liquid potting material into an area around the vent of one of the one or more power cells while the potting material cures. 2. The power source module of claim 1 , wherein each spacer creates an expansion area in the cured potting material between each cell and the cooling plate adjacent to the vent of one of the one or more power cells when the vent operates to relieve the internal pressure of the cell. 3. The power source module of claim 2 , wherein the cooling plate further comprises one or more holes, each of the one or more holes in the cooling plate aligned with one of the spacers and the vent adjacent to the spacer. 4. The power source module of claim 3 , wherein the one or more spacers and the one or more holes in the cooling plate vent pressure from the power cells to outside of the power module when the vent operates to relieve the internal pressure of the cell. 5. The power source module of claim 4 , wherein the one or more spacers comprise a substantially doughnut shaped ring having an open center portion, the open center portion aligned with the vent of the adjacent power cell. 6. The power source module of claim 1 , wherein the liquid potting material is poured onto the cooling plate and around the one or more power cells prior to curing. 7. An electric vehicle, comprising: a power source module providing electrical power to one or more components of the electric vehicle, the power source module comprising: one or more power cells, each power cell comprising a pressure vent on a side of the power cell, the pressure vent adapted to relieve an internal pressure of the cell when the internal pressure exceeds a threshold; a cooling plate disposed adjacent and substantially parallel to a side of the one or more power cells having the pressure vent; one or more spacers, each spacer disposed between one of the one or more power cells and the cooling plate and substantially surrounding the pressure vent of one of the one or more power cells; and a thermally conductive potting material disposed between the one or more power cells and the cooling plate, wherein the potting material prevents any of the one or more power cells from directly contacting the cooling plate, provides a thermally conductive layer between the one or more power cells and the cooling plate, and comprises a structural member between and joining the one or more power cells and the cooling plate, and wherein each spacer prevents flow of the liquid potting material into an area around the vent of one of the one or more power cells while the potting material cures. 8. The vehicle of claim 7 , wherein each spacer creates an expansion area in the cured potting material between each cell and the cooling plate adjacent to the vent of one of the one or more power cells when the vent operates to relieve the internal pressure of the cell. 9. The vehicle of claim 8 , wherein the cooling plate further comprises one or more holes, each of the one or more holes in the cooling plate aligned with one of the spacers and the vent adjacent to the spacer. 10. The vehicle of claim 9 , wherein the one or more spacers and the one or more holes in the cooling plate vent pressure from the power cells to outside of the power module when the vent operates to relieve the internal pressure of the cell. 11. The vehicle of claim 10 , wherein the one or more spacers comprise a substantially doughnut shaped ring having an open center portion, the open center portion aligned with the vent of the adjacent power cell. 12. The vehicle of claim 7 , wherein the liquid potting material is poured onto the cooling plate and around the one or more power cells prior to curing.

Assignees

Inventors

Classifications

  • Fixing or assembling a capacitive element in a housing, e.g. mounting electrodes, current collectors or terminals in containers or encapsulations · CPC title

  • Rods or plates · CPC title

  • by cooling · CPC title

  • Multiple hybrid or EDL capacitors, e.g. arrays or modules (housings, cases, encapsulations or mountings thereof H01G11/78) · CPC title

  • H01M10/653Primary

    characterised by electrically insulating or thermally conductive materials · CPC title

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What does patent US10601090B2 cover?
Embodiment include a power source module comprising one or more power cells. Each power cell can comprise a pressure vent on a side of the power cell. The pressure vent can be adapted to relieve an internal pressure of the cell when the internal pressure exceeds a threshold. A cooling plate can be disposed adjacent and substantially parallel to a side of the one or more power cells having the p…
Who is the assignee on this patent?
Nextev Usa Inc, Nio Usa Inc
What technology area does this patent fall under?
Primary CPC classification H01M10/653. Mapped technology areas include Electricity.
When was this patent published?
Publication date Tue Mar 24 2020 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 12 related publications on this page (citations in our corpus or others sharing the same primary CPC).