Compared with traditional copper foil, PET substrate has good safety performance, light weight, and good ductility, which can help improve the energy density of batteries.
product description: This battery coating machine is dedicated to the continuous coating process of cathode and anode electrode of lithium ion batteries, suitable for small-scale experiments in colleges and enterprises. It can also be used for ceramic films, crystal films, special nano films, etc. The body is made of stainless steel, which is beaut1
Product Benefits: Zero TD shrinkage reduces internal shorting Uniform pore structure with high chemical & thermal stability High porosity for excellent high-rate performance PP outer layer provides high temperature melt integrity, oxidation resistance PE inner layer provides high-speed shutdown features Offers exceptional safety and longevity f1
Product Benefits: Zero TD shrinkage reduces internal shorting Uniform pore structure with high chemical & thermal stability High porosity for excellent high-rate performance PP outer layer provides high temperature melt integrity, oxidation resistance PE inner layer provides high-speed shutdown features Offers exceptional safety and longevity f1
Product Benefits: Zero TD shrinkage reduces internal shorting Uniform pore structure with high chemical & thermal stability High porosity for excellent high-rate performance PP outer layer provides high temperature melt integrity, oxidation resistance PE inner layer provides high-speed shutdown features Offers exceptional safety and longevity f1
Product Benefits: Zero TD shrinkage reduces internal shorting Uniform pore structure with high chemical & thermal stability High porosity for excellent high-rate performance PP outer layer provides high temperature melt integrity, oxidation resistance PE inner layer provides high-speed shutdown features Offers exceptional safety and longevity f1
The coating forms a dense barrier through high-temperature sintering, enabling the separator to withstand temperatures above 1800℃. This effectively blocks heat conduction during thermal runaway.