An aging-resistant compensation cable
A compensation cable, anti-aging technology, applied in the direction of insulated cables, communication cables, cables, etc., can solve the problems of not meeting production needs, compensating cable aging, unstable signal transmission, etc., to overcome poor mechanical properties and improve tensile strength , good wear resistance
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Embodiment 1
[0019] figure 1 It is the structural representation of the anti-aging compensation cable of the present invention, refer to figure 1 , an aging-resistant compensation cable proposed by the present invention, comprising a positive conductor 1 and a negative conductor 2 parallel to each other, the outer sides of the positive conductor 1 and the negative conductor 2 are covered with an insulating layer 3 to form a cable core, and the outside of the cable core is Covered with a shielding layer 4, the shielding layer 4 is covered with a sheath 5; wherein, the sheath 5 is prepared from a butadiene rubber composite material, and the raw materials of the butadiene rubber composite material include by weight : 100 parts of butadiene rubber, 50 parts of neoprene rubber, 15 parts of natural rubber, 25 parts of epoxy resin, 1 part of zinc oxide, 3.5 parts of stearic acid, 0.5 parts of sulfur, 2 parts of benzoyl peroxide, curing agent DDM 0.5 parts, 20 parts of organically modified white ...
Embodiment 2
[0022] refer to figure 1 , an aging-resistant compensation cable proposed by the present invention, comprising a positive conductor 1 and a negative conductor 2 parallel to each other, the outer sides of the positive conductor 1 and the negative conductor 2 are covered with an insulating layer 3 to form a cable core, and the outside of the cable core is Covered with a shielding layer 4, the shielding layer 4 is covered with a sheath 5; wherein, the sheath 5 is prepared from a butadiene rubber composite material, and the raw materials of the butadiene rubber composite material include by weight : 100 parts of butadiene rubber, 30 parts of neoprene rubber, 30 parts of natural rubber, 10 parts of epoxy resin, 3 parts of zinc oxide, 2 parts of stearic acid, 1.2 parts of sulfur, 0.5 parts of benzoyl peroxide, curing agent DDM 1.5 parts, 10 parts of organically modified white carbon black, 10 parts of nano-barium sulfate, 3 parts of hollow glass microspheres, 10 parts of organic mon...
Embodiment 3
[0025] refer to figure 1, an aging-resistant compensation cable proposed by the present invention, comprising a positive conductor 1 and a negative conductor 2 parallel to each other, the outer sides of the positive conductor 1 and the negative conductor 2 are covered with an insulating layer 3 to form a cable core, and the outside of the cable core is Covered with a shielding layer 4, the shielding layer 4 is covered with a sheath 5; wherein, the sheath 5 is prepared from a butadiene rubber composite material, and the raw materials of the butadiene rubber composite material include by weight : 100 parts of butadiene rubber, 40 parts of neoprene rubber, 26 parts of natural rubber, 20 parts of epoxy resin, 2.6 parts of zinc oxide, 2.5 parts of stearic acid, 1.1 parts of sulfur, 1 part of benzoyl peroxide, curing agent DDM 1.3 parts, 14 parts of organically modified white carbon black, 6.5 parts of nano-barium sulfate, 5.8 parts of hollow glass microspheres, 8 parts of organic m...
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