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UNM Customized ePTFE Clothing Membrane, Unique New Material (CAT#: STEM-GMAE-4154-LGZ)

Highlights

The porosity can reach 80%~90%, the porosity is high, the microporous structure is stable, and it has a microporous structure with interlaced fibers. Through biaxial stretching process and high temperature heat setting treatment, the microporous structure is stable and effectively intercepts dust particles.

The resistance value is low, and the filtration efficiency can reach 99.999995%. It has high filtration efficiency and can meet the filtration efficiency grade requirements of sub-high efficiency, high efficiency, and ultra-high efficiency air filters. Compared with other filter materials, PTFE material has better filtration performance

Cat Number: STEM-GMAE-4154-LGZ

Application: Widely used in mountaineering clothing, fire clothing, protective clothing, outdoor tents and other fields.

Model: Customized

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Description

Clothing Membrane is produced for customization, we will customize and produce clothing film for you according to your needs.

Features

The porosity can reach 80%~90%, the porosity is high, the microporous structure is stable, and it has a microporous structure with interlaced fibers. Through biaxial stretching process and high temperature heat setting treatment, the microporous structure is stable and effectively intercepts dust particles.

The resistance value is low, and the filtration efficiency can reach 99.999995%. It has high filtration efficiency and can meet the filtration efficiency grade requirements of sub-high efficiency, high efficiency, and ultra-high efficiency air filters. Compared with other filter materials, PTFE material has better filtration performance

Surface filtration mechanism, easy dust removal. The membrane has small pore size, small and uniform pore size, strong hydrophobicity, low surface energy, good non-adhesion ability, effectively removes the dust accumulated on the surface, and the performance can be restored by washing with water or blowing back, greatly extending the service life.

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