Ultraviolet crosslinked expansion type flame-retardant polyolefin cable insulation sheath material and preparation thereof
A cable insulation and expansion technology, applied in the direction of insulated conductors, insulated cables, organic insulators, etc., can solve the problems of destroying the structure of materials, reducing the flame retardancy and electrical properties of materials, and difficult to cross-link thick cables.
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Embodiment 1
[0026] Weigh 100 parts of HDPE by weight, 30 parts of APP, 10 parts of PER, 2 parts of 4-chlorobenzophenone, 1.5 parts of TAIC, 0.3 part of antioxidant 300, 2 parts of zinc borate, 1 part of ammonium heptamolybdate 1 part, 1 part of hydroxy silicone oil; after the raw material components are mixed evenly, they are extruded and granulated at 200 ° C to form a light-crosslinked flame-retardant cable material; Or the sheath layer, and then use ultraviolet light with a wavelength of 200-400nm and a light intensity of 400-2000mW / cm in the ultraviolet light irradiation crosslinking equipment 2 Under the ultraviolet light source, the insulating layer or sheath layer is cross-linked by ultraviolet light irradiation.
[0027] The test results show that the tensile strength of the ultraviolet light crosslinked expansion type phosphorus nitrogen flame retardant polyolefin cable material prepared in this example is 20.6MPa, the elongation at break is 580%, the oxygen index is 33%, and the...
Embodiment 2
[0029] Weigh 100 parts of LLDPE, 25 parts of MPP, 10 parts of PER, 1.5 parts of 4,4'dichlorobenzophenone, 3 parts of TMPTA, 0.2 part of antioxidant 168, 0.1 part of DLTP, phosphite 5 parts, 1 part of molybdenum trioxide and 2 parts of magnesium stearate. All raw material components were mixed uniformly and then extruded and granulated at 170° C., and other operations were the same as in Example 1.
[0030] The test results show that the tensile strength of the ultraviolet light crosslinked expansion type phosphorus nitrogen flame retardant polyolefin cable material prepared in this example is 18.6MPa, the elongation at break is 680%, the oxygen index is 32%, and the vertical burning test passes the UL- 94 V-0 level, volume resistivity 8.2×10 14 Ω.cm, passed the thermal aging test at 158℃×168h.
Embodiment 3
[0032] Weigh 100 parts by weight of LDPE, 20 parts of APP, 10 parts of PER, 10 parts of melamine, 2 parts of 4-chlorobenzophenone, 5 parts of TAIC, 0.3 part of antioxidant 1010, 0.7 part of DTDTP, 1 part of zeolite 5 parts, 5 parts of ammonium octamolybdate, 1.5 parts of zinc stearate. All raw material components were mixed uniformly and then extruded and granulated at 158° C., and other operations were the same as in Example 1.
[0033] The test results show that the tensile strength of the ultraviolet light crosslinked expansion type phosphorus nitrogen flame retardant polyolefin cable material prepared in this example is 17.8MPa, the elongation at break is 570%, the oxygen index is 31%, and the vertical combustion test passes the UL- 94V-0 level, volume resistivity 8.5×10 14 Ω.cm, passed the thermal aging test at 145℃×168h.
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