Polyolefin micro-porous film and power-storage device
This polyolefin micro-porous film includes a multilayered structure, wherein the multilayered structure contains a first layer composed of polypropylene resin, a second layer composed of polyethylene resin and provided on the first layer, and a third layer composed of polypropylene resin and provided on the second layer. Furthermore, a thickness of the first layer is thinner than a thickness of the second layer, a thickness of the third layer is thinner than the thickness of the second layer, and in the multilayered structure, a thickness is 16 μm or less, a porosity is 40 to 70%, and a surface opening ratio is 10 to 30%.
1. A polyolefin micro-porous film comprising a multilayered structure, wherein the multilayered structure includes:
a first layer composed of polypropylene resin;
a second layer composed of polyethylene resin and provided on the first layer; and
a third layer composed of polypropylene resin and provided on the second layer,
wherein a thickness of the first layer is thinner than a thickness of the second layer,
wherein a thickness of the third layer is thinner than the thickness of the second layer,
wherein in the multilayered structure, a thickness is 16 μm or less, a porosity is 40 to 70%, and an surface opening ratio is 10 to 30%,
wherein a zero shear viscosity ηPE(Pa·s) of the polyethylene resin at 180° C. satisfies following Expression (I),
η
P
E
≤
η
P
P
+
25
,
000
(
I
)
and
wherein, in the Expression (I), ηPP indicates a zero shear viscosity (Pa·s) of the polypropylene resin at 180° C.
2. The polyolefin micro-porous film according to claim 1 , wherein, a thickness ratio of the first layer thickness to the thickness of the third layer is 1, the ratio of the thickness of the second layer to the thickness of the first and third layer is 2 or more.
3. The polyolefin micro-porous film according to claim 1 , wherein, in a short circuit test in which a voltage is applied to a test plate having a size of 10 cm×100 cm, a withstand voltage per unit area obtained by measuring a voltage in a non-conducting state is 3 kV/m 2 or more.
4. A power-storage device comprising the polyolefin micro porous film according to claim 1 , wherein the polyolefin micro-porous film is provided between electrodes.
5. The polyolefin micro-porous film according to claim 2 , wherein, in a short circuit test in which a voltage is applied to a test plate having a size of 10 cm×100 cm, a withstand voltage per unit area obtained by measuring a voltage in a non-conducting state is 3 kV/m 2 or more.
6. A power-storage device comprising the polyolefin micro-porous film according to claim 2 , provided between electrodes.
7. A power-storage device comprising the polyolefin micro-porous film according to claim 3 , provided between electrodes.