Vehicle-body rear structure
US-2024278855-A1 · Aug 22, 2024 · US
US2025192296A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2025192296-A1 |
| Application number | US-202418677421-A |
| Country | US |
| Kind code | A1 |
| Filing date | May 29, 2024 |
| Priority date | Dec 8, 2023 |
| Publication date | Jun 12, 2025 |
| Grant date | — |
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Official abstract text for this publication.
A battery pack assembly includes a support assembly positioned between a first cell stack on an lower tier and a second cell stack on a upper tier. The support assembly is configured to transfer a load from a second divider of the second cell stack to a plurality of first dividers of the first cell stack. The second divider is horizontally offset from the plurality of first dividers.
Opening claim text (preview).
What is claimed is: 1 . A battery pack assembly, comprising: a support assembly positioned between a first cell stack on an lower tier and a second cell stack on a upper tier, the support assembly configured to transfer a load from a second divider of the second cell stack to a plurality of first dividers of the first cell stack, the second divider horizontally offset from the plurality of first dividers. 2 . The battery pack assembly of claim 1 , wherein the support assembly is configured to transfer the load horizontally. 3 . The battery pack assembly of claim 1 , wherein the support assembly comprises a corrugated structure having a plurality of corrugations, the plurality of corrugations having peaks that are each disposed beneath a respective second divider of the second cell stack, the plurality of corrugations having valleys disposed atop a respective first divider within the plurality of first dividers. 4 . The battery pack assembly of claim 1 , further comprising a thermal exchange plate disposed atop the support assembly, the thermal exchange plate sandwiched between the first cell stack and the support assembly. 5 . The battery pack assembly of claim 4 , wherein the thermal exchange plate includes a plurality of coolant channels, wherein the support assembly is secured to the thermal exchange plate at positions between the plurality of coolant channels. 6 . The battery pack assembly of claim 1 , wherein the support assembly extends horizontally past the first cell stack. 7 . The battery pack assembly of claim 1 , wherein the support assembly extends horizontally past the first cell stack on a first side of the first cell stack, and horizontally past the first cell stack on an opposite, second side of the second cell stack. 8 . The battery pack assembly of claim 1 , further comprising an enclosure tray having ribs that at least partially support the support assembly. 9 . The battery pack assembly of claim 1 , further comprising a battery pack enclosure assembly housing the first cell stack and the second cell stack, wherein the support assembly extends in a first direction past the upper tier and the lower tier to a position between an enclosure tray and an enclosure cover of the battery pack enclosure assembly, and in a second direction past the upper tier and the lower tier to another position between the enclosure tray and the enclosure cover. 10 . The battery pack assembly of claim 9 , wherein the support assembly extends in the first direction and the second direction between an enclosure tray of the battery pack enclosure assembly and an enclosure cover of the battery pack enclosure assembly. 11 . The battery pack assembly of claim 1 , further comprising the first cell stack beneath the support assembly and the second cell stack above the support assembly. 12 . A battery pack load management method, comprising: providing a support assembly above at least one first cell stack on a lower tier; supporting at least one second cell stack on an upper tier using a support assembly; and during the supporting, using the support assembly to route a load received from at least one second divider of the at least one second cell stack to at least one first divider of the at least one first cell stack, the at least one second divider and the at least one first divider horizontally offset from each other. 13 . The battery pack load management method of claim 12 , further comprising a thermal exchange device sandwiched between the at least one first cell stack and the at least one second cell stack. 14 . The battery pack load management method of claim 13 , wherein the support assembly is secured to the thermal exchange device at positions between coolant channels of the thermal exchange device. 15 . The battery pack load management method of claim 12 , further comprising routing the load through the support assembly in a horizontal direction. 16 . The battery pack load management method of claim 14 , further comprising supporting at least some of the support assembly with the at least one first cell stack. 17 . The battery pack load management method of claim 16 , further comprising supporting at least some of the support assembly with an enclosure tray at positions that are outboard the at least one first cell stack. 18 . The battery pack load management method of claim 12 , wherein the support assembly is corrugated. 19 . The battery pack load management method of claim 12 , further comprising a cover of the at least one first cell stack, the cover sandwiched between the at least one first cell stack and the support assembly.
from below · CPC title
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Surfaces specially adapted for heat dissipation or radiation, e.g. fins or coatings · CPC title
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