Wear-resistant flame-retardant heat-conducting insulating material and preparation method thereof
A technology of thermally conductive insulating materials and raw materials, applied in the field of wear-resistant insulating materials, can solve the problems of poor sealing performance and buffering performance, poor corrosion resistance, poor high heat resistance, affecting the service life of power cables, etc. The effect of stable friction performance and improved risk resistance
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Embodiment 1
[0039] A wear-resistant, flame-retardant and thermally conductive insulating material of this embodiment includes the following raw materials in parts by weight:
[0040] 80 parts of compound rubber, 10 parts of wear-resistant additives, 8 parts of modified reinforcing fibers, 10 parts of flame retardant additives, 3 parts of coupling agents, 7 parts of processing aids, 6 parts of additives, modified nano additives 7 servings.
[0041] The wear-resistant additive in this embodiment is a mixture of calcium carbonate whiskers, barium sulfate whiskers and carbon nanotubes in a weight ratio of 3:2:1, and the calcium carbonate whiskers and barium sulfate whiskers are tetrapod-shaped Whiskers, 20-40 μm in length and 0.05-1 μm in diameter
[0042] The compound rubber in this embodiment is a mixture of high-cis polyisoprene rubber, styrene-butadiene rubber and chlorosulfonated polyethylene rubber in a weight ratio of 3:1:3.
[0043] The preparation method of the modified reinforcing...
Embodiment 2
[0055] A wear-resistant, flame-retardant and thermally conductive insulating material of this embodiment includes the following raw materials in parts by weight:
[0056] 120 parts of compound rubber, 20 parts of wear-resistant additives, 14 parts of modified reinforcing fibers, 14 parts of flame retardant additives, 5 parts of coupling agents, 9 parts of processing aids, 8 parts of additives, modified nano additives 9 servings.
[0057] The wear-resistant additive in this embodiment is a mixture of calcium carbonate whiskers, barium sulfate whiskers and carbon nanotubes in a weight ratio of 3:2:1, and the calcium carbonate whiskers and barium sulfate whiskers are tetrapod-shaped Whiskers, 20-40 μm in length and 0.05-1 μm in diameter
[0058] The compound rubber in this embodiment is a mixture of high-cis polyisoprene rubber, styrene-butadiene rubber and chlorosulfonated polyethylene rubber in a weight ratio of 3:1:3.
[0059] The preparation method of the modified reinforci...
Embodiment 3
[0071] A wear-resistant, flame-retardant and thermally conductive insulating material of this embodiment includes the following raw materials in parts by weight:
[0072] 100 parts of compound rubber, 15 parts of wear-resistant additives, 11 parts of modified reinforcing fibers, 12 parts of flame retardant additives, 4 parts of coupling agents, 8 parts of processing aids, 7 parts of additives, modified nano additives 8 servings.
[0073] The wear-resistant additive in this embodiment is a mixture of calcium carbonate whiskers, barium sulfate whiskers and carbon nanotubes in a weight ratio of 3:2:1, and the calcium carbonate whiskers and barium sulfate whiskers are tetrapod-shaped Whiskers, 20-40 μm in length and 0.05-1 μm in diameter
[0074] The compound rubber in this embodiment is a mixture of high-cis polyisoprene rubber, styrene-butadiene rubber and chlorosulfonated polyethylene rubber in a weight ratio of 3:1:3.
[0075] The preparation method of the modified reinforci...
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