Environmentally friendly carbon fiber modified acrylonitrile-ethylene-styrene cable with high strength and high flame retardancy
A high flame-retardant, high-strength technology, applied in the direction of insulated cables, cable/conductor manufacturing, cables, etc., can solve problems such as unsatisfactory
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example 1
[0040] High-strength, highly flame-retardant and environmentally friendly carbon fiber modified acrylonitrile-ethylene-styrene cables, including cores, insulation layers, inner sheaths and sheath tubes from the inside to the outside, and the raw materials for the sheath tube include:
[0041] Acrylonitrile / ethylene / styrene copolymer 70kg
[0042] Tannery sludge 5kg
[0043] Bentonite 2 kg
[0044] Carbon fiber 1.2 kg
[0045] Octyltriethoxysilane 0.8 kg
[0046] Stearic acid 3 kg
[0048] Sodium alginate 0.2 kg;
[0049] Bisphenol fluorene 1 kg
[0050] Hexaphenoxytriphosphazene 2.2 kg
[0051] N,N-Methylenebisacrylamide 0.6 kg
[0052] N-methylolacrylamide 0.1 kg
[0053] Barium molybdate 0.2 kg
[0054] Preparation method: including the following steps:
[0055] (1) Melt blending: Mix the above ingredients according to the proportion, stir at a speed of 600r / min for 10min, and then melt blend at 180°C for 40min to obtain the rubber compoun...
example 2
[0061] High-strength, highly flame-retardant carbon fiber modified acrylonitrile-ethylene-styrene cables, including core, insulation layer, inner sheath and sheath tube from the inside to the outside, and the raw materials of the sheath tube include:
[0062] Acrylonitrile / ethylene / styrene copolymer 80kg
[0063] Tannery sludge 9 kg
[0064] Bentonite 3kg
[0065] Carbon fiber 1.6kg
[0066] Octyltriethoxysilane 1.2 kg
[0067] Stearic acid 3 kg
[0069] Sodium alginate 0.8kg
[0070] Bisphenol fluorene 3.2kg
[0071] Hexaphenoxytriphosphazene 3.6kg
[0072] N,N-Methylenebisacrylamide 2.2kg
[0073] N-methylolacrylamide 0.5kg
[0075] Preparation method: including the following steps:
[0076] (1) Melt blending: Mix the above ingredients according to the proportion, stir at a speed of 600r / min for 10min, and then melt blend at 190°C for 10min to obtain a rubber compound;
[0077] (2) Cross-linking: After cross...
example 3
[0082] High-strength, highly flame-retardant and environmentally friendly carbon fiber modified acrylonitrile-ethylene-styrene cables, including cores, insulation layers, inner sheaths and sheath tubes from the inside to the outside, and the raw materials for the sheath tube include:
[0083] Acrylonitrile / ethylene / styrene copolymer 75 kg
[0084] Tannery sludge 7 kg
[0085] Bentonite 2.5 kg
[0086] Carbon fiber 1.4 kg
[0087] Octyltriethoxysilane 1 kg
[0088] Stearic acid 3 kg
[0089] Zinc oxide 3.5 kg
[0090] Sodium alginate 0.5 kg
[0091] Bisphenol fluorene 2.3 kg
[0092] Hexaphenoxytriphosphazene 2.9 kg
[0093] N,N-Methylenebisacrylamide 1.4 kg
[0094] N-methylolacrylamide 0.3 kg
[0095] Barium molybdate 0.35 kg
[0096] Preparation method: including the following steps:
[0097] (1) Melt blending: Mix the above ingredients according to the proportion, stir at a speed of 600r / min for 10min, and then melt blend at 190°C for 10min to obtain a rubber com...
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Abstract
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