-(4)Analysis of specifications and dimensions of 18650 lithium-ion batteries

(4)Analysis of specifications and dimensions of 18650 lithium-ion batteries
author:enerbyte source:本站 click199 Release date: 2023-10-08 08:45:47
abstract:
2、 18650 lithium-ion battery separator performance parameters The factors that affect the performance of the 18650 lithium-ion battery separator include thickness, permeability, wettability, chemical stability, pore size, puncture strength, thermal sealing temperature, and...

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2、 18650 lithium-ion battery separator performance parameters

The factors that affect the performance of the 18650 lithium-ion battery separator include thickness, permeability, wettability, chemical stability, pore size, puncture strength, thermal sealing temperature, and porosity. These factors directly affect the quality of lithium-ion battery products. Let's take a look at the performance parameter requirements of these 18650 lithium-ion battery separators.

① Thickness

Regarding consumable lithium-ion batteries (batteries used in mobile phones, laptops, and digital cameras), a 25 micron separator is gradually becoming the standard. However, due to the increasing use of portable products, thinner diaphragms, such as 20 microns, 18 microns, 16 microns, and even thinner diaphragms, have begun to be widely used.

For power lithium-ion batteries, due to the mechanical requirements of the assembly process, thicker separators are often required. Of course, safety is also very important for large power batteries, and thicker separators often mean better safety. EV/HEV use separators with a thickness of about 40 microns.

② Air permeability

MacMullin number: The ratio between the resistivity of a membrane containing electrolyte and the resistivity of the electrolyte itself. The smaller the value, the better. The value for a consumable 18650 lithium-ion battery is close to 8.

Gurley number: The time it takes for a certain volume of gas to pass through a certain area of diaphragm under certain pressure conditions. The internal resistance of the battery assembled with a diaphragm is directly proportional, that is, the larger the value, the greater the internal resistance.

It is meaningless to simply compare the Gurley numbers of two different diaphragms, as the microstructure of the two diaphragms may be completely different; But the Gurley number of the same type of diaphragm can well reflect the size of internal resistance, because the microstructure of the same type of diaphragm is relatively the same or comparable.

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