U16 grade high-efficiency filter material has large air permeability
The development of the times requires the promotion of new technologies. U16-level high-efficiency filter materials have become one of the current methods of sterilization and dust removal due to their large air permeability, low resistance, good filtration efficiency, large dust holding capacity, and high dust glass rate. High quality filter material.
The ultra-high-efficiency filter without partitions is mainly used at the end of the clean room or in local purification equipment for 0.1um particles to control particles larger than 0.1um in the clean room.
Its grade is U15-U17, mainly used in ISO5 and above environments.
All UHP filters are scanned for leaks and integrity tested.
The U16 high-efficiency filter material is a microporous film produced by using polytetrafluoroethylene dispersion resin through special processes such as premixing, extrusion, calendering, and biaxial stretching.
The surface morphology of the microporous film is a spider web-like microporous structure.
Pores are formed between the microfibers, and the arrangement direction of the microfibers is basically parallel to the stretching direction; the junction of the fiber bundles is the node, which is formed by the entanglement of many microfibers.
The pore size range is 0.1um-0.5um. The high-efficiency filter paper has high and low temperature resistance (-200℃-260℃). It will not age, split, discolor, and has strong weather resistance after long-term use.
The U16 high-efficiency filter material produced has strong hydrophobicity, chemical resistance, waterproofness and low wind resistance, and can achieve high dust removal efficiency, for some extremely fine particles with a diameter of 0.1um-0.3um , the filtration level can reach H13-U16.
In addition, biaxially oriented film can undoubtedly achieve ultra-low emissions in intercepting various types of dust generated during the production process of the company, and it fully complies with current environmental protection standards.
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