IP Library › Granted Patent US 11,171,382
Granted Patent B2
US 11,171,382 · App. 16/589,056 · Granted Nov 9, 2021

Electricity storage cell and manufacturing method of electricity storage cell

Inventor: Atsushi Sakurai (Saitama, JP)
Assignee: Honda Motor Co., Ltd.
H01M50/24H01M50/183H01M50/20
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 11,171,382
App. No.
16/589,056
Granted
Nov 9, 2021
Kind
B2
Abstract

The electricity storage cell is an electricity storage cell in which battery elements are accommodated inside a cell can and an opening portion on the top of the cell can is sealed by an opening sealing body; inside the cell can, there is an expansion force absorber which is capable of absorbing expansion force of the battery elements by receiving expansion of the battery elements and compressing; the battery elements are disposed between the expansion force absorber and an inner wall surface of the cell can; and the expansion force absorber has a height corresponding to the height of the battery elements, and has a lower rigidity on the opening sealing body side than in a central portion of the height direction of the cell can, or has a smaller thickness on the opening sealing body side than in the central portion of the height direction of the cell can.

Claims (15)

1. An electricity storage cell, in which a battery element is accommodated inside a cell can and an upper opening portion of the cell can is sealed by an opening sealing body, wherein inside the cell can, there is an expansion force absorber which is sheet-like and capable of absorbing expansion force of the battery element by receiving expansion of the battery element and compressing; the battery element is disposed between the expansion force absorber and an inner wall surface of the cell can; and the expansion force absorber has a height corresponding to the height of the battery element, and has a lower rigidity on the opening sealing body side than in a central portion of the height direction of the cell can, or has a smaller thickness on the opening sealing body side than in the central portion of the height direction of the cell can, and wherein the expansion force absorber itself has different rigidity on two sides, or the expansion force absorber itself has different thickness on two sides.

2. The electricity storage cell according to claim 1 , wherein the expansion force absorber comprises an elastic body or a structure having swellability.

3. The electricity storage cell according to claim 2 , wherein the elastic body is a foam body, and

the structure having swellability is a swellable resin or a resin fiber aggregate.

4. An electricity storage cell, in which a battery element and an electrolytic solution are accommodated inside a cell can and an upper opening portion of the cell can is sealed by an opening sealing body, wherein inside the cell can, there is an expansion force absorber which is sheet-like and capable of absorbing expansion force of the battery element by receiving expansion of the battery element and compressing; the battery element is disposed between the expansion force absorber and an inner wall surface of the cell can; and the expansion force absorber is sealed into an impermeable film, and wherein the expansion force absorber itself has different rigidity on two sides, or the expansion force absorber itself has different thickness on two sides.

5. The electricity storage cell according to claim 4 , wherein the expansion force absorber comprises an elastic body or a structure having swellability.

6. The electricity storage cell according to claim 5 , wherein the elastic body is a foam body, and

the structure having swellability is a swellable resin or a resin fiber aggregate.

7. The electricity storage cell according to claim 5 , wherein the structure having swellability is sealed along with a liquid into the impermeable film.

8. The electricity storage cell according to claim 7 , wherein the liquid is a liquid which is formed by removing additives from the electrolytic solution or another liquid different from the electrolytic solution.

9. The electricity storage cell according to claim 4 , wherein the expansion force absorber presses the battery element to the inner wall surface of the cell can to hold the battery element by expanding in a thickness direction inside the cell can.

10. The electricity storage cell according to claim 4 , wherein the battery element is configured to have two battery elements accommodated inside the cell can; and

the expansion force absorber is sandwiched between the two battery elements.

11. The electricity storage cell according to claim 10 , wherein the two battery elements are connected in series inside the cell can.

12. A manufacturing method of an electricity storage cell, which manufactures an electricity storage cell in which a battery element is accommodated inside a cell can and an upper opening portion of the cell can is sealed by an opening sealing body, wherein an expansion force absorber which is sheet-like and capable of absorbing expansion force of the battery element by receiving expansion of the battery element and compressing is laminated with the battery element; the expansion force absorber has a height corresponding to the height of the battery element, and has a lower rigidity on the opening sealing body side than in a central portion of the height direction of the cell can, or has a smaller thickness on the opening sealing body side than in the central portion of the height direction of the cell can; the expansion force absorber is inserted along with the battery element into the cell can in a state of being crushed in the thickness direction; and after that, the battery element is pressed to an inner wall surface of the cell can and held by the expansion of the expansion force absorber, and wherein the expansion force absorber itself has different rigidity on two sides, or the expansion force absorber itself has different thickness on two sides.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 5, 2019
From: SAKURAI, ATSUSHI
To: HONDA MOTOR CO.,LTD.
Reel/Frame 050633/0406 →
Priority Claims (1)
JP JP2018-196887 · Oct 18, 2018 · national
Continuity (1)
Related Publication 20200127260A1 · Apr 23, 2020