Anti-aging nano modified masterbatch carrier for controlling radiation 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 good thixotropy
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Embodiment 1
[0018] An aging-resistant nano-modified color masterbatch carrier for preventing and controlling radiation, which comprises raw materials: 15 parts by weight of butylene phthalate, 10 parts by weight of tetrafluoroethylene-hexafluoropropylene copolymer, acrylonitrile- 10 parts by weight of styrene-acrylate copolymer, 60 parts by weight of polycarbonate, 10 parts by weight of nano barium carbonate, 20 parts by weight of aramid short fiber, 2 parts by weight of silicon carbide lamella, 6 parts of pitch-based carbon fiber powder, non-halogenated 5 parts of organic phosphinates, 8 parts of hexamethylenetetramine, 2 parts of trimethylpentyltriethoxysilane, 0.3 parts by weight of conductive mica powder, 0.2 parts by weight of nanometer conductive graphite powder, trimerization of polyisocyanate 0.8 parts by weight of body, 1 part by weight of polytetrafluoroethylene fiber, 65 parts by weight of toner pigment, 12 parts by weight of montmorillonite, 5 parts by weight of nano-titanium d...
Embodiment 2
[0029] An aging-resistant nano-modified color masterbatch carrier for preventing and controlling radiation and its preparation method
[0030]An aging-resistant nano-modified color masterbatch carrier for preventing and controlling radiation, which comprises raw materials: 25 parts by weight of butylene phthalate, 15 parts by weight of tetrafluoroethylene-hexafluoropropylene copolymer, acrylonitrile- 20 parts by weight of styrene-acrylate copolymer, 80 parts by weight of polycarbonate, 15 parts by weight of nano barium carbonate, 25 parts by weight of aramid short fiber, 10 parts by weight of silicon carbide lamellae, 8 parts by weight of pitch-based carbon fiber powder, non-halogenated 7 parts of organic phosphinate, 10 parts of hexamethylenetetramine, 4 parts of trimethylpentyltriethoxysilane, 0.5 parts by weight of conductive mica powder, 0.4 parts by weight of nanometer conductive graphite powder, trimerization of polyisocyanate Body 1 weight part, polytetrafluoroethylene ...
Embodiment 3
[0041] An aging-resistant nano-modified color masterbatch carrier for preventing and controlling radiation and its preparation method
[0042] An aging-resistant nano-modified color masterbatch carrier for preventing and controlling radiation, which comprises raw materials: 23 parts by weight of butylene phthalate, 12 parts by weight of tetrafluoroethylene-hexafluoropropylene copolymer, acrylonitrile- 18 parts by weight of styrene-acrylate copolymer, 78 parts by weight of polycarbonate, 13 parts by weight of nano barium carbonate, 23 parts by weight of aramid short fiber, 8 parts by weight of silicon carbide lamellae, 7 parts by weight of pitch-based carbon fiber powder, non-halogenated 6 parts of organic phosphinates, 9 parts of hexamethylenetetramine, 3 parts of trimethylpentyltriethoxysilane, 0.4 parts by weight of conductive mica powder, 0.3 parts by weight of nanometer conductive graphite powder, trimerization of polyisocyanate 0.8 parts by weight of body, 1.5 parts by we...
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