A porous elastic material made of silicone rubber (polysiloxane) as the substrate and high-temperature vulcanization foaming with foaming agent, divided into three categories: closed cell, semi open cell, and open cell; Combining the advantages of temperature resistance, insulation, and flame retardancy of silicone with the lightweight, cushioning, and sealing properties of foam, it is a core auxiliary material for new energy storage and power batteries.
Core physical performance (industrial general parameters)
Temperature resistance range: conventional -60 ℃~200 ℃, long-term stable; The high-temperature resistant version can reach 250 ℃, and the ceramicized version can withstand 500 ℃ for a short time+
Sealed and Waterproof: The closed cell structure can achieve IP67/IPX7 dust and waterproof, and is specifically designed for sealing cabinet door frames
Weather resistance: UV, ozone, and moisture resistance, outdoor energy storage cabinets will not harden or crack after 10 years of aging
Environmental Protection: VOC free, RoHS/ELV compliant, odorless, suitable for use in vehicles and medical equipment
Core applications in the energy storage/new energy industry (your energy storage cabinet auxiliary material scenario)
Sealing of energy storage cabinet body: The cabinet door frame is backed with adhesive silicone foam, which is dustproof, waterproof, shock-absorbing, and noise reducing
Battery module filling: cushioning and insulation between battery cells, absorbing charging and discharging expansion stress, and blocking thermal conduction
High voltage component insulation lining: BMS, combiner box insulation buffer, anti short circuit
Fireproof and thermal insulation isolation: Ceramic silicon foam, flame retardant barrier for battery cell thermal runaway
Heat dissipation gap filling: Thermal conductive silicon foam filling device gaps to assist in heat dissipation