Radiation crosslinked polyester elastomer heat shrinkable material
A polyester elastomer, radiation cross-linking technology, applied in plastic/resin/wax insulators, organic insulators, etc., can solve the problems of heat-shrinkable materials that cannot withstand high temperatures, poor oil and chemical resistance, and low toughness, and achieve flex resistance Good bending performance, good oil resistance and chemical solvent resistance, high strength
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[0026] The preparation method of the radiation crosslinked polyester elastomer heat shrinkable material of the present invention comprises the following steps:
[0027] Step 1: According to the relative weight ratio, 0-50 parts of halogen-containing flame retardant, 0-20 parts of flame retardant synergist, 0-3 parts of multifunctional acrylate reaction monomer, 0.5-6 parts of antioxidant, light 0-3 parts of stabilizer and 0-5 parts of color masterbatch are fully mixed at room temperature;
[0028] Step 2: Extrude the uniformly mixed substance in step 1 and the polyester elastomer with a relative weight ratio of 100 parts using a twin-screw at a temperature range of 150°C to 250°C, water-cool, air-dry, and pelletize;
[0029] Step 3: extruding the above-mentioned pellets into a tube at a temperature of 150°C-250°C;
[0030] Step 4: irradiate the above-mentioned pipes with gamma rays or electron accelerators, and the radiation dose is 80-250KGY;
[0031] Step 5: Then expand an...
Embodiment 1
[0036] Polyester elastomer substrate (melt index MI=5, melting temperature 170°C) 8Kg and antioxidant 2,2,4-trimethyl-1,2 dihydroquinoline polymer (antioxidant RD) 100g
[0037] {After conversion, 100 parts of polyester elastomer substrate, 1.25 parts of antioxidant}
[0038] Mix evenly in a high-speed mixer at a speed of 60-120rpm, extrude into a pipe at a temperature of 180°C, and water-cool to shape. The screw is then irradiated by an electron beam at a dose of 80KGY, and then expanded twice to become a heat-shrinkable tube.
[0039] Its shrinkage performance is shown in the following table: (shrink in a glycerin pool at 166°C for 3 minutes)
[0040] inner diameter (mm)
Embodiment 2
[0042] Polyester elastomer substrate (melt index MI=5.5, melting temperature 180°C) 8Kg, decabromodiphenylethane 1.6Kg, antimony trioxide 0.64Kg, 2,4,6-tri(2',4' -Dihydroxyphenyl)-1,3,5-triazine 40g, 4,4'-bis(α,α-dimethylbenzyl)diphenylamine (KY-405) 40g, trimethylolpropane triacrylic acid 80g ester, 400g masterbatch,
[0043] {After conversion, the ratio is as follows
[0044] Polyester elastomer substrate 100 parts,
[0045] Antioxidant (4,4'-bis(α,α-dimethylbenzyl)diphenylamine (KY-405)) 0.5 parts,
[0046] 20 parts of halogen-containing flame retardant (decabromodiphenylethane),
[0047] Flame retardant synergist (antimony trioxide) 8 parts,
[0048] Multifunctional acrylate reactive monomer (trimethylolpropane triacrylate) 1 part
[0049] Light stabilizer (2,4,6-tris(2,,4,-dihydroxyphenyl)-1,3,5-triazine) 0.5 part,
[0050] Color masterbatch 5 parts}
[0051] Mix well at a speed of 60-120rpm in a high-speed mixer. Then the strands are extruded through twin-screws at...
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