Liquid Electrolyte Composition, and Electrochemical Cell Comprising Said Electrolyte Composition
US-2024347772-A1 · Oct 17, 2024 · US
US9634301B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9634301-B2 |
| Application number | US-201514634635-A |
| Country | US |
| Kind code | B2 |
| Filing date | Feb 27, 2015 |
| Priority date | Jan 5, 2015 |
| Publication date | Apr 25, 2017 |
| Grant date | Apr 25, 2017 |
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Official abstract text for this publication.
A lithium ion battery cell includes a prismatic casing enclosing active components of the lithium ion battery cell. The lithium ion battery cell also includes a terminal having a terminal post extending through an opening in the casing and electrically connected to the active components; a primary sealing component configured to seal a first portion of the terminal post against the casing; and a secondary seal disposed around a second portion of the terminal post and against the primary sealing component. The secondary seal is formed from a curable adhesive resin and is configured to resist egress of the electrolyte out of the lithium ion battery cell and is configured to resist ingress of moisture into the lithium ion battery cell.
Opening claim text (preview).
The invention claimed is: 1. A battery module, comprising: a lithium ion battery cell disposed within a housing of the battery module, the lithium ion battery cell comprising: a casing enclosing active components of the lithium ion battery cell, the active components comprising an electrolyte and an electrode assembly in contact with the electrolyte, wherein the casing comprises a protrusion disposed at a top of the casing and the protrusion defines an opening in the casing; a terminal electrically connected to the electrode assembly, wherein the terminal comprises an electrical contact extending through the opening in the casing, and wherein the protrusion of the casing comprises a cylindrical extension defining an annular region that is substantially co-axial with the electrical contact; a primary sealing component disposed against the electrical contact to seal the electrical contact against the casing; a secondary seal disposed around the electrical contact and against the primary sealing component, wherein the secondary seal is formed from a curable adhesive resin and is configured to resist egress of the electrolyte out of the lithium ion battery cell; and a compressive seal disposed around the cylindrical extension and a first portion of the electrical contact, and wherein the secondary seal is disposed against the primary sealing component and around a second portion of the electrical contact, the second portion being further away from the active components of the lithium ion battery cell than the first portion. 2. The battery module of claim 1 , wherein the compressive seal provides a compressive force such that the cylindrical extension is urged inwardly toward the electrical contact. 3. The battery module of claim 1 , wherein the secondary seal is disposed against the compressive seal such that the compressive seal is positioned between the secondary seal and a top of the lithium ion battery cell. 4. The battery module of claim 1 , wherein the primary sealing component comprises a polymeric primary seal disposed within the opening and between the protrusion and the electrical contact, and the casing and the protrusion are metal. 5. The battery module of claim 1 , wherein the casing is polymeric and the primary sealing component comprises the protrusion, and the protrusion is in direct contact with the electrical contact. 6. The battery module of claim 1 , wherein the secondary seal is formed from a secondary sealant comprising a UV curable epoxy resin or a UV curable acrylated urethane resin. 7. The battery module of claim 1 , wherein the secondary seal has a dielectric withstand voltage sufficient to cause the secondary seal to act as a dielectric material at operating voltages of the battery module. 8. The battery module of claim 7 , wherein the dielectric withstand voltage of the secondary seal is between 1000 Volts (V) and 4000V. 9. The battery module of claim 1 , wherein the secondary seal comprises a pigment configured to optically contrast the secondary seal against other components of the lithium ion battery cell. 10. The battery module of claim 1 , wherein the secondary seal has a hardness on the Shore D scale of between 40 and 80. 11. The battery module of claim 1 , wherein the secondary seal is configured to resist ingress of moisture into the lithium ion battery cell. 12. A lithium ion battery cell, comprising: a prismatic casing enclosing active components of the lithium ion battery cell, the active components comprising an electrolyte and an electrode assembly in contact with the electrolyte; a terminal comprising a terminal post extending through an opening in the casing, wherein the terminal post is electrically connected to the electrode assembly; a primary sealing component configured to seal a first portion of the terminal post against the casing; and a secondary seal disposed around a second portion of the terminal post and the primary sealing component, wherein the first portion of the terminal post is closer to the active components than the second portion, and the secondary seal is formed from a curable adhesive resin and is configured to resist egress of the electrolyte out of the lithium ion battery cell and is configured to resist ingress of moisture into the lithium ion battery cell, and wherein the secondary seal comprises a pigment configured to optically contrast the secondary seal against other components of the lithium ion battery cell. 13. The lithium ion battery cell of claim 12 , wherein the prismatic casing is metallic, the prismatic casing comprises a cylindrical extension that is substantially parallel with the terminal post, the cylindrical extension defines an annular region corresponding to the opening, and the primary sealing component comprises insulating polymeric primary seal disposed between the first portion of the terminal post and the cylindrical extension, the insulating seal being configured to electrically insulate the cylindrical extension from the terminal post. 14. The lithium ion battery cell of claim 12 , wherein the prismatic casing is polymeric, the prismatic casing comprises a cylindrical extension that is substantially parallel with the terminal post, the cylindrical extension defines an annular region corresponding to the opening, and the primary sealing component comprises the cylindrical extension. 15. The lithium ion battery cell of claim 12 , wherein the primary sealing component comprises: a primary seal disposed within the opening and between the casing and the terminal post to electrically insulate the terminal post from the casing; and a compressive seal disposed around the primary seal and the first portion of the terminal post, wherein the compressive seal is configured to compress the primary seal around the terminal post; and wherein the secondary seal extends radially away from the second portion of the terminal post and to the compressive seal such that the compressive seal and the secondary seal are in an overlapping relationship in a longitudinal direction of the lithium ion battery cell. 16. The lithium ion battery cell of claim 12 , wherein the secondary seal has a dielectric withstand voltage of between 1000 Volts (V) and 5000 V, and the secondary seal has a hardness on the Shore D scale of between 40 and 80. 17. The lithium ion battery cell of claim 12 , wherein the secondary seal is formed from a UV-curable adhesive resin. 18. The lithium ion battery cell of claim 17 , wherein the UV-curable adhesive resin comprises a UV-curable epoxy resin. 19. The lithium ion battery cell of claim 17 , wherein the UV-curable adhesive resin comprises a UV-curable acrylated urethane resin. 20. A double-sealed lithium ion battery cell, wherein the double-sealed lithium ion battery cell is produced by a process comprising: disposing a secondary sealant comprising a curable adhesive resin on a sealed terminal region of a prismatic lithium ion battery cell such that the secondary sealant covers a first portion of an electrical contact of the terminal region and a primary sealing component is disposed against a second portion of the electrical contact, wherein the second portion is further away from active components of the double-sealed lithium ion battery cell than the first portion; and curing the curable adhesive resin to form a secondary seal that covers the first portion of the electrical contact and the primary sealing component. 21. The double-sealed lithium ion battery cell of claim 20 , wherein curing the cura
Rocking-chair batteries, i.e. batteries with lithium insertion or intercalation in both electrodes; Lithium-ion batteries · CPC title
Batteries in motive systems, e.g. vehicle, ship, plane · CPC title
adapted for the shape of the cells · CPC title
characterised by the disposition of the sealing members · CPC title
prismatic or rectangular (H01M50/109, H01M50/11 take precedence) · CPC title
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