Methods of making sulfide-impregnated solid-state battery
US-2021036373-A1 · Feb 4, 2021 · US
US12494502B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-12494502-B2 |
| Application number | US-202217886579-A |
| Country | US |
| Kind code | B2 |
| Filing date | Aug 12, 2022 |
| Priority date | Feb 16, 2022 |
| Publication date | Dec 9, 2025 |
| Grant date | Dec 9, 2025 |
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A battery system comprises N folded bipolar batteries folded in an “S”-shaped configuration. First and second folded portions of each of the N folded bipolar batteries are arranged on opposite ends of the “S”-shaped configuration. First side portions and second side portions of each of the N folded bipolar batteries are arranged between the first and second folded portions. One or more of the first folded portions on a first one of the N folded bipolar batteries are in direct electrical contact with one or more of the second folded portions on a second one of the N folded bipolar batteries. One or more of the first side portions on a third one of the N folded bipolar batteries are in direct electrical contact with one or more of the second side portions on a fourth one of the N folded bipolar batteries.
Opening claim text (preview).
What is claimed is: 1 . A battery system comprising: N folded bipolar batteries, where N is an integer greater than one, wherein each of the N folded bipolar batteries includes a positive current collector, a negative current collector, and a plurality of anodes, cathodes and current collectors arranged between the positive current collector and the negative current collector, wherein each of the N folded bipolar batteries are folded in an “S”-shaped configuration, wherein a plurality of first folded portions of each of the N folded bipolar batteries are arranged on one end of the “S”-shaped configuration, wherein a plurality of second folded portions of each of the N folded bipolar batteries are arranged on an opposite end of the “S”-shaped configuration, wherein first side portions and second side portions of each of the N folded bipolar batteries are arranged between the plurality of first folded portions and the plurality of second folded portions, wherein at least one of: one or more of the plurality of first folded portions on a first one of the N folded bipolar batteries are in direct electrical contact with one or more of the plurality of second folded portions on a second one of the N folded bipolar batteries; and one or more of the first side portions on a third one of the N folded bipolar batteries are in direct electrical contact with one or more of the second side portions on a fourth one of the N folded bipolar batteries, wherein the N folded bipolar batteries include M groups each including N/M of the N folded bipolar batteries, where M is an integer greater than zero, wherein the M groups are connected in series, the M groups are arranged side by side, and electrical orientations of adjacent ones of the M groups alternate, and wherein the adjacent ones of the M groups are connected together using one or more busbars. 2 . The battery system of claim 1 , wherein the plurality of first folded portions on first alternating ones of the N folded bipolar batteries are in direct electrical contact with the plurality of second folded portions on second alternating ones of the N folded bipolar batteries. 3 . The battery system of claim 1 , wherein the first side portions on first alternating ones of the N folded bipolar batteries are in direct electrical contact with the second side portions on second alternating ones of the N folded bipolar batteries. 4 . The battery system of claim 1 , further comprising: thermal gel on facing surfaces of the at least two of the M groups; and a coolant manifold including cooling channels and arranged between the at least two of the M groups and in contact with thermal gel on the facing surfaces of at least two of the M groups. 5 . The battery system of claim 1 , wherein: the plurality of first folded portions on at least one of the N folded bipolar batteries are in direct electrical contact with the plurality of second folded portions on a second one of the N folded bipolar batteries; and the first side portion on a third one of the N folded bipolar batteries is in direct electrical contact with the second side portion on a fourth one of the N folded bipolar batteries. 6 . A battery system comprising: N folded bipolar batteries, where N is an integer greater than one, wherein: each of the N folded bipolar batteries are folded in an “S”-shaped configuration, a plurality of first folded portions of each of the N folded bipolar batteries are arranged on one end of the “S”-shaped configuration, a plurality of second folded portions of each of the N folded bipolar batteries are arranged on an opposite end of the “S”-shaped configuration, first side portions and second side portions of each of the N folded bipolar batteries are arranged between the plurality of first folded portions and the plurality of second folded portions, at least two of the plurality of first folded portions of a first one of the N folded bipolar batteries are in direct electrical contact with at least two of the plurality of second folded portions of a second one of the N folded bipolar batteries, wherein the N folded bipolar batteries include M groups each including N/M of the N folded bipolar batteries, where M is an integer greater than zero, and adjacent pairs of the M groups are connected together using one or more busbars. 7 . The battery system of claim 6 , wherein the plurality of first folded portions on first alternating ones of the N folded bipolar batteries are in direct electrical contact with the plurality of second folded portions on second alternating ones of the N folded bipolar batteries. 8 . The battery system of claim 6 , wherein at least one of the first side portions on a third one of the N folded bipolar batteries is in direct electrical contact with at least one of the second side portions a fourth one of the N folded bipolar batteries. 9 . A battery system comprising: N folded bipolar batteries, where N is an integer greater than one, wherein: a plurality of first folded portions of each of the N folded bipolar batteries are arranged on one end of an “S”-shaped configuration, a plurality of second folded portions of each of the N folded bipolar batteries are arranged on an opposite end of the “S”-shaped configuration, and first and second side portions are arranged between the plurality of first folded portions and the plurality of second folded portions, the plurality of first folded portions of a first one of the N folded bipolar batteries are in direct electrical contact with the plurality of second folded portions of a second one of the N folded bipolar batteries, the first side portion on a third one of the N folded bipolar batteries is in direct electrical contact with the second side portion on a fourth one of the N folded bipolar batteries, the N folded bipolar batteries include M groups each including N/M of the N folded bipolar batteries, where M is an integer greater than zero, and the battery system further includes thermal gel on facing surfaces of the at least two of the M groups, and a coolant manifold including cooling channels and arranged between the at least two of the M groups and in contact with thermal gel on the facing surfaces of at least two of the M groups. 10 . The battery system of claim 9 , wherein: first ones of the M groups are connected in series; and second ones of the M groups are connected in parallel.
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arranged between the cells · CPC title
with bipolar electrodes · CPC title
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specially adapted for aircraft or vehicles, e.g. cars or trains (constructional details of batteries specially adapted for electric vehicles B60L50/64) · CPC title
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