SEPARATOR, SECONDARY BATTERY, BATTERY MODULE, BATTERY PACK AND ELECTRICAL APPARATUS
The present application provides a separator, a secondary battery, a battery module, a battery pack and an electrical apparatus. The separator may sequentially include a first region, a main region and a second region in a first direction. At least one surface of the first region and/or at least one surface of the second region may be provided with a fluorescent coating. The fluorescent coating may be used to identify whether the separator is folded or not.
1 . A separator, comprising sequentially a first region, a main region and a second region in a first direction, wherein at least one surface of the first region and/or at least one surface of the second region is provided with a fluorescent coating, and the fluorescent coating identifies whether the separator is folded or not.
2 . The separator according to claim 1 , wherein in the first direction, a width w 1 of the first region is within a range from 0.5 mm to 15 mm, and a width w 2 of the second region is within a range from 0.5 mm to 15 mm.
3 . The separator according to claim 1 , wherein the fluorescent coating comprises a fluorescent material, the fluorescent material comprising at least one of fluorescent metal oxides, fluorescent sulfides or fluorescent lanthanide chelates.
4 . The separator according to claim 3 , wherein the fluorescent coating further comprises a binder, the binder comprising at least one of polyvinylidene fluoride, polyvinyl alcohol or polyacrylonitrile.
5 . The separator according to claim 4 , wherein the fluorescent coating further comprises acrylic resin, and based on the total mass of the fluorescent coating, the fluorescent material has a percentage mass content of 40% to 80%, the binder has a percentage mass content of 1% to 10%, and the acrylic resin has a percentage mass content of 10% to 50%.
6 . The separator according to claim 1 , wherein an inorganic coating is disposed between the fluorescent coating and the first region, and/or an inorganic coating is disposed between the fluorescent coating and the second region.
7 . The separator according to claim 6 , wherein the inorganic coating comprises inorganic particles, the inorganic particles comprising at least one of aluminum oxide or boehmite.
8 . A method for identifying a folded separator, applied to the separator of claim 1 , the method comprising:
monitoring, by a color sensor, whether a fluorescent region of the separator has a fluorescent color in the process of the separator moving in a second direction; and
determining that the separator is folded when the color sensor monitors the absence of the fluorescent color in the fluorescent region.
9 . An electrode assembly, comprising a positive electrode plate, a negative electrode plate, and the separator of claim 1 .
10 . The electrode assembly according to claim 9 , wherein in the first direction, the width w 1 of the first region is not less than a first width W 3 , and the first width W 3 is a distance between an upper edge of the negative electrode plate and an upper edge of the positive electrode plate.
11 . The electrode assembly according to claim 9 , wherein in the first direction, the width w 2 of the second region is not less than a second width W 4 , and the second width W 4 is a distance between a lower edge of the negative electrode plate and a lower edge of the positive electrode plate.
12 . A secondary battery, comprising the electrode assembly of claim 11 .
13 . A battery module, comprising the secondary battery of claim 12 .
14 . A battery pack, comprising the battery module of claim 13 .
15 . An electrical apparatus, comprising the battery pack of claim 14 .