Over the years, the ptfe high-temperature filtration membrane produced has not forgotten its original intention, adhering to a sincere heart, and has devoted itself to both the technical level and the production level.
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PTFE high-temperature filter membrane is made of suspended polytetrafluoroethylene resin by molding, sintering, cooling into a blank, and then turning and rolling.
It can ensure complete interception of impurities such as bacteria and has a large flux.
The material is resistant to high temperatures, strong acids and alkali, and has wide chemical applicability. When used for gas filtration, it can achieve 100% retention of various phages, bacteria and particles above 0.02um.
PTFE microporous membrane has high filtration efficiency and can meet the filtration efficiency level requirements of sub-high efficiency, high efficiency and ultra high efficiency air filters.
The polytetrafluoroethylene microporous membrane is coated on various fabrics and substrates using a special process and can become a new type of filter material.
Conventional filter materials carry dust that is easily adhered to, and the dust is not easy to fall off during cleaning, resulting in low dust cleaning efficiency and short-term dust emission.
Because the diameter of micropores is tens of thousands of times that of water molecules, it is hundreds of times smaller than water droplets.
The ptfe high-temperature filter membrane has high porosity and low filtration resistance, which will not cause too much filtration resistance to the composite filter material.
PTFE membrane has small pore size, uniform distribution and large porosity. While maintaining air circulation, it can filter all dust particles including bacteria to achieve the purpose of purification and ventilation.
And it has excellent high temperature resistance, oxidation resistance, alkali resistance, hydrophobicity and non-adhesive properties.
It is widely used in air purification, industrial dust removal, pharmaceutical fields, electronic appliances, clothing fields, etc.