Method for manufacturing electricity storage device
US-2024429582-A1 · Dec 26, 2024 · US
US9876252B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9876252-B2 |
| Application number | US-201615055456-A |
| Country | US |
| Kind code | B2 |
| Filing date | Feb 26, 2016 |
| Priority date | Mar 2, 2015 |
| Publication date | Jan 23, 2018 |
| Grant date | Jan 23, 2018 |
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Disclosed is a pin-type rechargeable battery having a micro diameter for increasing an energy density at a preset volume. The rechargeable battery includes: an electrode assembly formed by winding a second electrode around an external circumference of a first electrode disposed at a center thereof by interposing a separator; a case to receive the electrode assembly and an electrolyte solution therein and electrically connected to the second electrode; a terminal electrically connected to the first electrode and drawn outside of the case; and a gasket disposed between the terminal and an opening of the case to close the opening of the case.
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What is claimed is: 1. A rechargeable battery comprising: an electrode assembly formed by winding a second electrode around an external circumference of a first electrode disposed at a center thereof by interposing a separator; a case to receive the electrode assembly and an electrolyte solution therein and electrically connected to the second electrode; a terminal electrically and directly physically connected to the first electrode inside of the case and drawn outside of the case so as to be exposed outside of the case; and a gasket disposed between the terminal and an opening of the case to close the opening of the case. 2. The rechargeable battery of claim 1 , wherein the second electrode is wound at two turns or less around the external circumference of the first electrode. 3. The rechargeable battery of claim 1 , wherein the first electrode is formed by coating a box or a pole made of a mesh member with an active material. 4. The rechargeable battery of claim 3 , wherein the first electrode comprises: a coated region corresponding to the second electrode such that the coated region of the first electrode is covered by the second electrode; and an uncoated region formed of the mesh member corresponding to the gasket and connected to the terminal. 5. The rechargeable battery of claim 1 , wherein the first electrode is formed by coating a conductive member having porosity and conductivity with an active material. 6. The rechargeable battery of claim 1 , wherein the second electrode comprises: a coated region including a region where a current collector formed of a metal thin plate is coated with an active material; and an uncoated region including a region that is not coated with the active material such that a current collector is exposed, wherein the uncoated region makes surface contact with an inner surface of the case to be electrically connected to the case. 7. The rechargeable battery of claim 6 , wherein a diameter of the first electrode is greater than a thickness of the second electrode. 8. The rechargeable battery of claim 1 , wherein the first electrode comprises a three-dimensional member formed by a current collector and an active material. 9. The rechargeable battery of claim 8 , wherein the first electrode is formed of a porous pole. 10. The rechargeable battery of claim 9 , wherein the current collector is formed of a metal fiber, and the first electrode is formed by mixing the current collector with a particulate active material and compressing the mixture. 11. A rechargeable battery comprising: a first electrode formed into a hollow cylinder having a first and a second end and an outer circumference; a separator that extends about the outer circumference of the first electrode; a second electrode that extends around the separator and the outer circumference of the first electrode so that the separator is interposed between the first and second electrode; a case that receives the first and second electrode and the separator the case having a first having an opening and a second end; a terminal electrically and directly physically connected to the first electrode inside of the case and drawn outside of the case via the first end of the case so as to be exposed outside of the case; and a gasket disposed between the terminal and the opening in the first end of the case. 12. The rechargeable battery of claim 11 , wherein the second electrode is wound at two turns or less around the external circumference of the first electrode. 13. The rechargeable battery of claim 11 , wherein the first electrode is formed by coating a box or a pole made of a mesh member with an active material. 14. The rechargeable battery of claim 13 , wherein the first electrode comprises: a coated region corresponding to the second electrode such that the coated region of the first electrode is covered by the second electrode; and an uncoated region formed of the mesh member corresponding to the gasket and connected to the terminal. 15. The rechargeable battery of claim 11 , wherein the first electrode is formed by coating a conductive member having porosity and conductivity with an active material. 16. The rechargeable battery of claim 11 , wherein the second electrode comprises: a coated region including a region where a current collector formed of a metal thin plate is coated with an active material; and an uncoated region including a region that is not coated with the active material such that a current collector is exposed, wherein the uncoated region makes surface contact with an inner surface of the case to be electrically connected to the case. 17. The rechargeable battery of claim 11 , wherein a diameter of the first electrode is greater than a thickness of the second electrode. 18. The rechargeable battery of claim 16 , wherein the first electrode comprises a three-dimensional member formed by a current collector and an active material. 19. The rechargeable battery of claim 17 , wherein the first electrode is formed of a porous pole. 20. The rechargeable battery of claim 18 , wherein the current collector is formed of a metal fiber, and the first electrode is formed by mixing the current collector with a particulate active material and compressing the mixture.
Terminals adapted for cells having curved cross-section, e.g. round, elliptic or button cells (H01M50/553 takes precedence) · CPC title
for cells having curved cross-section, e.g. round or elliptic (H01M50/176, H01M50/181 take precedence) · CPC title
characterised by the material · CPC title
Electricity · mapped topic
Electricity · mapped topic
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