Power cable for ethylene propylene rubber insulating ship
A technology of ethylene-propylene rubber insulation and power cables, which is applied in the direction of power cables, insulated cables, rubber insulators, etc., can solve the problems of fueling fire, loss, and suffocation of people, and achieve good flame retardancy, long service life, and excellent flame retardancy The effect of performance and insulation properties
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Embodiment 1
[0013] An ethylene-propylene rubber insulated marine power cable, comprising a conductor, an insulating layer, an insulating shielding layer, a tape layer, an armoring layer, and a sheath layer. An insulating layer is arranged outside the conductor to form an insulated core. The insulated wire The core is provided with a tape layer, an armor layer and a sheath layer in sequence. The insulating layer is prepared from the following parts by weight of raw materials: The preparation method of the insulating layer material is as follows: 111 parts of ethylene propylene rubber, dibutyl dithioamino 6 parts of zinc formate, 20 parts of polybutadiene, 22 parts of vinyl chloride-vinyl acetate copolymer, 6 parts of butyl chloroformate, 0.8 parts of benzothiophene-2-boric acid, 6 parts of dimethylaminoethyl acrylate, ethyl 10 parts of ferric diaminetetraacetate, 4 parts of nano zirconium dioxide, 3 parts of calcium stearate, 8 parts of carbon black, 10 parts of dimethyl octadecyl chlorosila...
Embodiment 2
[0017] An ethylene-propylene rubber insulated marine power cable, comprising a conductor, an insulating layer, an insulating shielding layer, a tape layer, an armoring layer, and a sheath layer. An insulating layer is arranged outside the conductor to form an insulated core. The insulated wire A banding layer, an armoring layer and a sheathing layer are sequentially arranged outside the core. The insulating layer is prepared from the following parts by weight of raw materials: 118 parts by weight of ethylene propylene rubber, 9 parts by zinc dibutyl dithiocarbamate, and polybutylene 22 parts of diene, 28 parts of vinyl chloride-vinyl acetate copolymer, 7 parts of butyl chloroformate, 0.4 parts of benzothiophene-2-boronic acid, 6 parts of dimethylaminoethyl acrylate, 5 parts of iron ethylenediaminetetraacetate , 4 parts of nano zirconium dioxide, 3 parts of calcium stearate, 8 parts of carbon black, 7 parts of dimethyl octadecyl chlorosilane, 10 parts of boron trioxide, 4 parts o...
Embodiment 3
[0021] An ethylene-propylene rubber insulated marine power cable, comprising a conductor, an insulating layer, an insulating shielding layer, a tape layer, an armoring layer, and a sheath layer. An insulating layer is arranged outside the conductor to form an insulated core. The insulated wire A banding layer, an armoring layer and a sheathing layer are sequentially arranged outside the core. The insulating layer is prepared from the following parts by weight of raw materials: 114 parts by weight of ethylene propylene rubber, 5 parts of zinc dibutyl dithiocarbamate, and polybutylene 20 parts of diene, 26 parts of vinyl chloride-vinyl acetate copolymer, 6 parts of butyl chloroformate, 0.7 parts of benzothiophene-2-boronic acid, 6 parts of dimethylaminoethyl acrylate, 11 parts of iron ethylenediaminetetraacetate , 3 parts of nano zirconium dioxide, 4 parts of calcium stearate, 6 parts of carbon black, 10 parts of dimethyl octadecyl chlorosilane, 8 parts of boron trioxide, 4 parts ...
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