Non-aqueous electrolyte battery
A non-aqueous electrolyte and battery technology, applied in the direction of non-aqueous electrolyte batteries, secondary batteries, battery electrodes, etc., can solve the problem of not being able to fully exert its effect
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[0092] [preliminary experiment]
[0093] For the electron beam crosslinkable separator (used in batteries A1, A4, B1, C1, and D1 of the present invention and comparative batteries U1, V1, W1, and X1 described later), the heat-resistant laminated separator (described later), The battery A2, A5, D2 of the present invention described above and the comparative battery U2, X2), the usual separator (in the battery A3, A6, B2, C2, D3, D4, E, F of the present invention described later and the comparative battery The shutdown (hereinafter, sometimes abbreviated as SD) temperature and membrane rupture (hereinafter, sometimes abbreviated as MD) temperature used in U3, V2, W2, X3, Y, and Z) were studied, and the results are shown in Table 1. In addition, the production method of the evaluation battery cell, the evaluation device, and the measurement method of the SD temperature and the MD temperature are as follows.
[0094] [Evaluation of the production method of the battery cell]
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Embodiment 1
[0109] As Example 1, the battery shown in the best mode for carrying out the invention was used.
[0110] The battery produced in this way is hereinafter referred to as battery A1 of the present invention.
Embodiment 2
[0112] A battery was fabricated in the same manner as in Example 1, except that a heat-resistant laminated separator was used as the separator instead of the electron beam crosslinkable separator.
[0113] The battery produced in this way is hereinafter referred to as battery A2 of the present invention.
[0114] Here, the heat-resistant laminated separator was produced as follows.
[0115] First, polyamide (PA), which is a water-insoluble heat-resistant material, is dissolved in a solution of N-methyl-2-pyrrolidone (NMP) as a water-soluble solvent, and polycondensation is carried out at a low temperature in the solution to produce a polyamide doped Miscellaneous fluid. Then, after coating this doping solution on one side of a polyethylene (PE) microporous membrane as a base material to a predetermined thickness, it is immersed in water to remove the water-soluble NMP solvent, and Precipitation / coagulation of water-insoluble polyamides. Thus, on one side of the polyethylene...
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