Cold-resistant and high-temperature resistant cable material and preparation method thereof
A technology of high temperature resistance and cables, which is applied in the field of wires and cables, can solve problems such as easy breakage, and achieve the effect of better cold resistance and high temperature resistance, wide application areas, and suitable for large-scale industrial production
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Embodiment 1
[0026] A cold-resistant and high-temperature resistant cable material, which is prepared from the following raw materials in parts by weight:
[0027] 20 parts of dicyclopentadiene (DCPD) phenol epoxy resin, 15 parts of polypropylene resin, 6 parts of γ-aminopropyltriethoxysilane, 5 parts of phthalic anhydride, 5 parts of α-methacrylic acid, modified 3 parts of natural kaolin, 3 parts of modified diatomite, 2 parts of dimethylaminoethoxyethanol, 2 parts of glass fiber, 1 part of polyethylene glycol, 1 part of polyglycolic acid, triallyl isocyanurate 1 part, 1 part aluminum hydroxide, 1 part antimony trioxide, 1 part titanium carbide.
[0028] Among them, the preparation method of the modified kaolin is: soak the kaolin with 10% (V / V) hydrochloric acid for 15 minutes, subject to the fact that the kaolin has not passed through, centrifuge at 200 rpm for 3 minutes, collect the precipitate, dry it, and grind it into a particle size of 500 The target powder is ready to be obtained...
Embodiment 2
[0036] A cold-resistant and high-temperature resistant cable material, which is prepared from the following raw materials in parts by weight:
[0037] 22 parts of dicyclopentadiene phenol epoxy resin, 16 parts of polypropylene resin, 8 parts of γ-aminopropyltriethoxysilane, 6 parts of phthalic anhydride, 6 parts of α-methacrylic acid, 4 parts of modified kaolin Parts, 4 parts of modified diatomite, 3 parts of dimethylaminoethoxyethanol, 3 parts of glass fiber, 2 parts of polyethylene glycol, 2 parts of polyglycolic acid, 2 parts of triallyl isocyanurate, Aluminum hydroxide 2 parts, antimony trioxide 2 parts, titanium carbide 2 parts.
[0038] Among them, the preparation method of the modified kaolin is: soak the kaolin with 10% (V / V) hydrochloric acid for 15 minutes, subject to the fact that the kaolin has not passed through, centrifuge at 200 rpm for 3 minutes, collect the precipitate, dry it, and grind it into a particle size of 500 The target powder is ready to be obtained...
Embodiment 3
[0046] The performance parameter determination of the cable material prepared by the embodiment of the present invention 1 and 2:
[0047] Select a temperature of minus 50°C, and place the cable material at this temperature for 30 days and 100 days for measurement. Among them, the test results of 30 days are shown in Table 1, and the test results of 100 days are shown in Table 2:
[0048] group Volume resistivity retention (%) Tensile Strength Retention Rate (%) Elongation retention at break (%) Hardness retention (%) Example 1 98.3 97.9 95.6 96.1 Example 2 99.2 97.1 94.7 96.5
[0049] group Volume resistivity retention (%) Tensile Strength Retention Rate (%) Elongation retention at break (%) Hardness retention (%) Example 1 96.7 95.1 89.8 95.6 Example 2 97.4 96.3 88.2 94.7
[0050] Conclusion: The performance of the cable material prepared by the present invention is better in all aspects, and the p...
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