High-temperature-resisting ABS (Acrylonitrile Butadiene Styrene) resin modified cable material and preparation method thereof
A technology of ABS resin and high temperature resistance, which is applied in the field of high temperature resistant ABS resin modified cable materials and its preparation, can solve the problems of increasing the high temperature resistance performance of cables, insufficient high temperature resistance, etc. The effect of capacitive and simple preparation method
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Embodiment 1
[0025] (1) Treat 8 parts of mica powder with a particle size of 0.1μm and 4 parts of barite powder with a particle size of 0.1μm with 0.5 parts of isobutyltriethoxysilane coupling agent;
[0026] (2) Combine the coupled mica powder and barite powder with 0.4 parts of calcium stearate, 0.2 parts of isooctyl dimercaptoacetate di-n-octyl tin, 20 parts of polyvinyl fluoride with a degree of polymerization of 230, 45 parts The ABS resin with a degree of polymerization of 1000 and 0.2 parts of dicumyl peroxide are mixed uniformly and then extruded with an extruder to obtain a high temperature resistant ABS resin modified cable material.
Embodiment 2
[0028] (1) Treat 6 parts of mica powder with a particle size of 0.5μm and 6 parts of barite powder with a particle size of 0.01μm with 0.3 parts of isobutyltriethoxysilane coupling agent;
[0029] (2) Combine the coupled mica powder and barite powder with 0.2 parts of calcium stearate, 0.1 parts of isooctyl dimercaptoacetate di-n-octyl tin, 15 parts of polyvinyl fluoride with a degree of polymerization of 180, 55 parts ABS resin with a degree of polymerization of 1200 and 0.1 part of dicumyl peroxide are mixed uniformly and then extruded with an extruder to obtain a high temperature resistant ABS resin modified cable material.
Embodiment 3
[0031] (1) Treat 10 parts of mica powder with a particle size of 0.01 μm and 5 parts of barite powder with a particle size of 0.2 μm with 0.8 parts of isobutyltriethoxysilane coupling agent;
[0032] (2) Combine the coupled filler with 0.6 parts of calcium stearate and 0.2 parts of isooctyl dithioglycolate di-n-octyl tin, 25 parts of polyvinyl fluoride with a degree of polymerization of 280, and 35 parts of polyvinyl fluoride with a degree of polymerization of 800 ABS resin and 0.3 parts of dicumyl peroxide are mixed uniformly and then extruded with an extruder to obtain a high temperature resistant ABS resin modified cable material.
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Abstract
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