This application is a U.S. National stage application of PCT international application No. PCT/JP2018/032521 filed on Sep. 3, 2018, which claims the benefit of foreign priority of Japanese patent application No. 2017-204864 filed on Oct. 24, 2017, the contents of all of which are incorporated herein by reference.
The present invention relates to a battery cell used for an electric vehicle or the like, and a battery pack including the battery cell.
Recently, the number of electric vehicles and hybrid vehicles that employ electric motors as main drive sources and auxiliary drive sources for travel has increased. Secondary batteries used for these vehicles are required to support a large current. Therefore, a battery pack produced by combining plural battery cells is used. In order to insulate the battery cells from each other, each battery cell is covered with an insulative sheet, and is fixed in a casing. In order to support the increase in power, measures against heat are demanded.
As a prior art document information related to the invention of this application, Japanese Patent Laid-Open Publication No. 2003-346754 is known, for example.
A battery cell includes an exterior can, an electrode body accommodated in the exterior can, a heat insulator disposed on at least a part of the outer surface of the side wall of the exterior can, and an insulative film covering the heat insulator and an entire of the outer surface of the side wall of the exterior can.
Non-woven fabric 14a of heat insulator 14 may be made of another fiber, such as organic fiber, glass fiber, ceramic fiber, oxidized fiber, or carbon fiber. Alternatively, the non-woven fabric may be made of, e.g. a mixture of a thermoplastic resin fiber and one of these fibers. This provides heat insulator 14 with a high heat resistance and a high flame retardance.
While heat insulator 14 is disposed on part 11s1 of outer surface 11s of side wall 11a of exterior can 11, the entire of outer surface 11s of exterior can 11 and heat insulator 14 are covered with insulative film 15. Insulative film 15 is preferably made of a heat shrinkable material having a bag shape. Exterior can 11 including heat insulator 14 is put into the heat shrinkable material, and then exterior can 11 is heated and shrunk. Thereby, the entire of outer surface 11s of side wall 11a of exterior can 11 and heat insulator 14 are covered with insulative film 15, and heat insulator 14 is fixed. Exterior can 11 is put into the heat shrinkable material. Before exterior can 11 is put into the heat shrinkable material, heat insulator 14 is adhered onto part 11s1 of outer surface 11s of exterior can 11. When heat insulator 14 is previously adhered onto part 11s1 of outer surface 11s of exterior can 11, however, heat insulator 14 may be pressed on exterior can 11 by shrinking the heat shrinkable material. Therefore, heat insulator 14 may be adhered onto part 11s1 of outer surface 11s of exterior can 11 with a strength corresponding to a temporary fixation.
A method of manufacturing heat insulator 14 will be described. Non-woven fabric 14a is immersed in a sol that has been produced by, e.g. adding hydrochloric acid to a sodium silicate aqueous solution, thereby causing spaces 14s in non-woven fabric 14a to be impregnated with the sol. This sol is gelated, hydrophobized, and dried so as to cause silica xerogel 14b to fill spaces 14s in non-woven fabric 14a to produce heat insulator 14. The silica xerogel is disposed also on surfaces of heat insulator 14, and hardly allows an adhesive or the like from to be disposed on the surfaces. The entire of heat insulator 14 can be covered with a protective film, and an adhesive can be disposed on the protective film and can be adhered onto exterior can 11. However, this configuration provides heat insulator 14 with a large thickness, or requires a high cost for installation of the protective film.
Battery cell 13 has an insulation property by thus covering the entire periphery of exterior can 11 with insulative film 15. Furthermore, heat insulator 14 is disposed inside insulative film 15, so that, even when the other battery cell is adjacent to one battery cell, heat is hardly transferred to the other battery cell.
In the above conventional battery pack, when one battery cell causes a thermal runaway, the battery cell can adversely affect also an adjacent battery cell. Therefore, thermal insulation is required between the battery cells. For this thermal insulation, a spacer is disposed between the battery cells. In order to prevent one battery cell from affecting the adjacent battery cell, the interval between the battery cells is increased, accordingly increases the size of the entire battery pack.
In battery pack 31 according to the embodiment, even when one battery cell 13 among plural battery cells 13 causes a thermal runaway, the one battery cell is prevented from adversely affecting adjacent battery cell 13. Furthermore, heat insulator 14 is provided in each battery cell 13, so that battery pack 31 may be manufactured easily and have a small size.
| Number | Date | Country | Kind |
|---|---|---|---|
| JP2017-204864 | Oct 2017 | JP | national |
| Filing Document | Filing Date | Country | Kind |
|---|---|---|---|
| PCT/JP2018/032521 | 9/3/2018 | WO | 00 |
| Publishing Document | Publishing Date | Country | Kind |
|---|---|---|---|
| WO2019/082509 | 5/2/2019 | WO | A |
| Number | Name | Date | Kind |
|---|---|---|---|
| 20120164504 | Takashina | Jun 2012 | A1 |
| 20170197378 | Abe et al. | Jul 2017 | A1 |
| 20190006642 | Sakaguchi | Jan 2019 | A1 |
| 20190190098 | Abe | Jun 2019 | A1 |
| 20200058912 | Kuramitsu et al. | Feb 2020 | A1 |
| Number | Date | Country |
|---|---|---|
| 106660317 | May 2017 | CN |
| 109643778 | Apr 2019 | CN |
| 2003-346754 | Dec 2003 | JP |
| 2015-60759 | Mar 2015 | JP |
| 2015-060759 | Mar 2015 | JP |
| WO2016092839 | Jun 2016 | WO |
| 2016199563 | Dec 2016 | WO |
| 2017159527 | Sep 2017 | WO |
| WO2017159527 | Sep 2017 | WO |
| 2018061894 | Apr 2018 | WO |
| WO2018110055 | Jun 2018 | WO |
| Entry |
|---|
| International Search Report of PCT application No. PCT/JP2018/032521 dated Dec. 4, 2018. |
| English Translation of Chinese Office Action dated Jan. 26, 2022 for the related Chinese Patent Application No. 201880055148.1. |
| Number | Date | Country | |
|---|---|---|---|
| 20200161600 A1 | May 2020 | US |