Storage element
A technology for storage elements and power generation elements, applied in electrical components, battery pack components, circuits, etc., can solve problems such as deterioration and recovery, and achieve the effect of reducing and suppressing transient deterioration.
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Embodiment approach 1
[0036] refer to Figure 1 to Figure 6 , the non-aqueous electrolyte secondary battery 1 which is an example of the energy storage device according to the embodiment of the present invention will be described. The non-aqueous electrolyte secondary battery 1 is preferably for vehicles, more preferably for hybrid vehicles.
[0037] Such as Figure 1 ~ Figure 3 As shown, the non-aqueous electrolyte secondary battery 1 of the present embodiment includes: a container 2; an electrolytic solution 3 accommodated in the container 2; an external gasket 5 mounted on the container 2; and a power generating element 10 accommodated in the container 2. ; and the external terminal 21 electrically connected to the power generating element 10 .
[0038] Such as figure 1 As shown, the container 2 has: a main body (casing) 2a for accommodating the power generating element 10; and a lid 2b for covering the main body 2a. The main body part 2a and the cover part 2b are formed of a stainless steel...
Embodiment approach 2
[0107] Such as Figure 7 As shown, the vehicle-mounted storage battery system 100 in this embodiment includes: the non-aqueous electrolyte secondary battery 1 as the energy storage element of the first embodiment; Section 102. Specifically, the vehicle-mounted battery system 100 includes: a battery module 101 having a plurality of nonaqueous electrolyte secondary batteries 1; control unit 102 .
[0108] When this vehicle-mounted battery system 100 is mounted on a vehicle 110, as Figure 7 As shown, the control unit 102 and the vehicle control device 111 that controls the engine, motor, drive system, electrical system, etc. are connected through an on-vehicle communication network 112 such as an on-vehicle LAN or CAN. The control unit 102 communicates with the vehicle control device 111 , and can control the battery system 100 based on information obtained through the communication. Accordingly, a vehicle including the battery system 100 can be realized.
[0109] As descri...
Embodiment
[0111] In the present example, the effect of the stress of the separator at a compression depth of 5% of the thickness of the negative electrode mixture layer within a predetermined range was studied.
[0112] First, the measurement methods of various values in the examples of the present invention and the comparative examples are described below.
[0113] (thickness of negative electrode mixture layer)
[0114] The thickness of the negative electrode 13 and the thickness after the negative electrode mixture layer 13B is peeled off from the negative electrode 13 are measured, and the difference is divided by 2 to obtain the thickness Ln of the negative electrode mixture layer 13B (one-sided mixture layer thickness). The thickness was measured using a micrometer (manufactured by MITSUTOYO).
[0115] (5% compressive stress)
[0116] The diaphragm is subjected to a load unloading test using a load unloading test device (manufactured by Shimazu Seisakusho, model: MCT-211) usi...
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Abstract
Description
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