Environmentally friendly and high flame-retardant polyvinyl chloride insulating material for high-frequency communication cables and preparation method thereof
A communication cable, polyvinyl chloride technology, applied in the direction of organic insulators, plastic/resin/wax insulators, etc., can solve the problems of high dielectric constant, signal distortion, inability to use long-distance high-frequency communication cables, etc., to achieve low dielectric Effects of constant, low corrosion, good volume resistivity
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Embodiment 1
[0038] (1) Weigh as described in Table 1, where:
[0039] The plasticizer is dioctyl phthalate, the auxiliary plasticizer is dioctyl sebacate, and the polymer modifier is 10 parts of ethylene-n-butyl acrylate-carbonyl copolymer and 5 parts of ethylene-vinyl acetate- Carbonyl copolymer, the antioxidant is 0.15 parts of 4,4'-thiobis(6-tert-butyl-m-cresol) and 0.05 parts of tetrakis[β-(3.5-di-tert-butyl-4-hydroxyphenyl ) propionic acid] pentaerythritol ester, the inorganic flame retardant is 12 parts of aluminum hydroxide and 3 parts of magnesium hydroxide, and the inorganic filler is selected from 5 parts of clay and 5 parts of hydrotalcite.
[0040] (2) Mix the above plasticizer and polyvinyl chloride resin QS1000F in a kneader at room temperature for 5 minutes at a speed of 300r / min, then add ethylene-octene copolymer, polymer modifier, ethylene-vinyl acetate copolymer The mixture of compound and linear low density polyethylene, antioxidant and co-plasticizer were mixed in a ...
Embodiment 2
[0043] Weigh as described in Table 1, wherein:
[0044] The plasticizer is 7 parts of dioctyl phthalate and 3 parts of diisodecyl phthalate, the auxiliary plasticizer is trioctyl trimellitate, and the polymer modifier is 20 parts of ethylene-vinyl acetate -Carbonyl copolymer and 10 parts of ethylene-n-butyl acrylate-glycidyl ester copolymer are used together, and the antioxidant is tetrakis[β-(3.5-di-tert-butyl-4-hydroxyphenyl)propionate]pentaerythritol ester, inorganic The flame retardant is aluminum hydroxide, and the inorganic filler is 2 parts of clay.
[0045] Using the same preparation method as in Example 1, polyvinyl chloride insulating material was obtained by kneading and twin-screw melt mixing.
Embodiment 3
[0047] Weigh as described in Table 1, wherein:
[0048] The plasticizer is 10 parts of dioctyl phthalate and 5 parts of diisononyl phthalate, the auxiliary plasticizer is dioctyl sebacate, and the polymer modifier is 8 parts of ethylene-acrylic acid n-butyl Ester-carbonyl copolymer and 12 parts of ethylene-n-butyl acrylate-glycidyl ester copolymer are used together, and the antioxidant is 0.3 part of tris[2.4-di-tert-butylphenyl] phosphite and 0.2 part of thiodipropionic acid Dilauryl ester, 5 parts of magnesium hydroxide as the inorganic flame retardant, 12 parts of clay and 8 parts of hydrotalcite as the inorganic filler.
[0049] Using the same preparation method as in Example 1, polyvinyl chloride insulating material was obtained by kneading and twin-screw melt mixing.
[0050] The following table 2 is the performance test situation of the polyvinyl chloride insulating material of Examples 1-3.
[0051] Table 2 Performance comparison of PVC insulating materials
[0052]...
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