Ageing-resistant nano modified environmental-friendly master batch plastic and preparation method thereof
A nano-modification and anti-aging technology, which is applied in the field of air purification, can solve the problems of environmental pollution, pollutants are not easy to spread, etc., and achieve the effects of reducing casting costs, improving thermal aging cracking performance, and strong adsorption capacity
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[0018] Example 1
[0019] An aging-resistant nano-modified environmentally-friendly color master plastic, which includes raw materials: 15 parts by weight of butylene phthalate, 10 parts by weight of tetrafluoroethylene-hexafluoropropylene copolymer, and acrylonitrile-styrene-acrylic acid 10 parts by weight of ester copolymer, 60 parts by weight of polycarbonate, 10 parts by weight of nano barium carbonate, 20 parts by weight of aramid short fibers, 2 parts by weight of silicon carbide wafers, 15 parts by weight of polylactic acid chitosan, and 10 parts by weight of nanographene Parts by weight, 6 parts of pitch-based carbon fiber powder, 5 parts of non-halogenated organic phosphinate, 8 parts of hexamethylenetetramine, 2 parts of trimethylpentyltriethoxysilane, 0.3 parts of conductive mica powder, nano Conductive graphite powder 0.2 weight part, polyisocyanate trimer 0.8 weight part, polytetrafluoroethylene fiber 1 weight part, toner pigment 65 weight part, montmorillonite 12 we...
Example Embodiment
[0031] Embodiment 2 A kind of anti-aging nano-modified environment-friendly color master plastic and its preparation method
[0032] An aging-resistant nano-modified environmentally friendly color master plastic, which comprises raw materials: 25 parts by weight of butylene phthalate, 15 parts by weight of tetrafluoroethylene-hexafluoropropylene copolymer, and acrylonitrile-styrene-acrylic acid 20 parts by weight of ester copolymer, 80 parts by weight of polycarbonate, 15 parts by weight of nano barium carbonate, 25 parts by weight of aramid short fibers, 10 parts by weight of silicon carbide wafers, 20 parts by weight of polylactic acid chitosan, 15 parts by weight of nanographene Parts by weight, 8 parts of pitch-based carbon fiber powder, 7 parts of non-halogenated organic phosphinate, 10 parts of hexamethylenetetramine, 4 parts of trimethylpentyltriethoxysilane, 0.5 parts by weight of conductive mica powder, nano 0.4 parts by weight of conductive graphite powder, 1 part by we...
Example Embodiment
[0044] Example 3.
[0045] An aging-resistant nano-modified environmentally-friendly masterbatch plastic, which includes raw materials: 20 parts by weight of butylene phthalate, 12 parts by weight of tetrafluoroethylene-hexafluoropropylene copolymer, and acrylonitrile-styrene-acrylic acid 16 parts by weight of ester copolymer, 70 parts by weight of polycarbonate, 12 parts by weight of nano barium carbonate, 22 parts by weight of aramid short fiber, 6 parts by weight of silicon carbide wafer, 17 parts by weight of polylactic acid chitosan, 12 parts by weight of nanographene Parts by weight, 32 parts of pitch-based carbon fiber powder, 6 parts of non-halogenated organic phosphinate, 9 parts of hexamethylenetetramine, 3 parts of trimethylpentyltriethoxysilane, 0.4 parts by weight of conductive mica powder, nano 0.3 parts by weight of conductive graphite powder, 0.9 parts by weight of polyisocyanate trimer, 1.5 parts by weight of polytetrafluoroethylene fiber, 70 parts by weight of t...
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