Flame-retardant heat shrinkable sleeve
A heat-shrinkable sleeve and modification technology, applied in the direction of insulators, connection insulation, cable joints, etc., can solve problems such as burning accidents, poor insulation, personal and property losses, etc., to prevent corrosion and thermal oxygen aging , the effect of preventing copper corrosion
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Embodiment 1
[0020] Take 100 kg of polyethylene, 30 kg of magnesium hydroxide, 40 kg of decabromodiphenylethane, 10 kg of antimony trioxide, 2 kg of pentaerythritol ester, 3 kg of PE wax, 3 kg of black masterbatch, and triallyl isocyanide 3 kg of urate esters were compounded and granulated to obtain crystalline modified polyolefin pellets, and then the above pellets were melt-extruded through special equipment and expanded and shaped after being irradiated with high-energy gamma rays to obtain a polyolefin pellet of the present invention. Flame retardant heat shrinkable sleeve.
Embodiment 2
[0022] First, take 100 kg of polyvinyl acetate, 20 kg of magnesium hydroxide, 30 kg of decabromodiphenylethane, 15 kg of antimony trioxide, 3 kg of dilauryl thiodipropionate, 4 kg of silicone resin, and 4 kg of black masterbatch kg and 2 kg of trimethylolpropane triacrylate were compounded and granulated to obtain crystalline modified polyolefin pellets. Then, the above-mentioned pellets are melt-extruded through special equipment and expanded and shaped after being irradiated with high-energy gamma rays, so as to obtain a flame-retardant heat-shrinkable sleeve of the present invention.
Embodiment 3
[0024] First take 100 kg of ethylene, 15 kg of magnesium hydroxide, 20 kg of decabromodiphenylethane, 20 kg of antimony trioxide, 4 kg of octadecyl thiodipropionate, 5 kg of PE wax, 2 kg of black masterbatch, 4 kg of trimethylolpropane trimethacrylate was compounded and granulated to obtain crystalline modified polyolefin pellets. Then, the above-mentioned pellets are melt-extruded through special equipment and expanded and shaped after being irradiated with high-energy gamma rays, so as to obtain a flame-retardant heat-shrinkable sleeve of the present invention.
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