Crosslinkable Inorganic Nano-LDPE/Siox Polymer Composite
A composite material and inorganic nano technology, applied in the field of inorganic nano LDPE/SiOx polymer composite materials, can solve the problems of complex preparation, inability to prepare nanocomposites, and difficulty in industrialization, etc., to improve electrical properties and elongation at break , The effect of improving the elastic modulus
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Embodiment 1
[0017] Take by weighing 192gLDPE, 10g solid content 20% organosilicon sol (actual solid SiO x Accounting for the mass percentage of the whole composite material 1.0%), 0.6g main antioxidant, 1.4g auxiliary antioxidant are mixed uniformly in the mixer; After single-screw exhaust, cooling, and granulation into nanocomposite particles; mix the composite with 4g of crosslinking agent in a mixer at 80°C for 30min to make crosslinkable SiO x / LDPE nano cable material is sample 1.
[0018] to add 50nm SiO 2 Inorganic nano-SiOx / LDPE and LDPE were used to prepare cross-linkable cable materials as a control. Weigh 192g LDPE, 2g 50nm SiO2 inorganic nano-SiOx / LDPE, 0.6g primary antioxidant, 1.4g auxiliary antioxidant and mix them uniformly in the mixer; Afterwards, single-screw exhaust, cooling, and granulation into nanocomposite particles; the composite material is mixed with 4g of crosslinking agent in a mixer at 80°C for 30min to make crosslinkable SiO 2 / LDPE nano cabl...
Embodiment 2
[0031] Take by weighing 191gLDPE, 15g solid content 20% organosilicon sol (actual solid SiO x Accounting for 1.5% of the mass percentage of the whole composite material), 0.6g main antioxidant and 1.4g auxiliary antioxidant are mixed uniformly in the mixer; After single-screw exhaust, cooling, and granulation into nanocomposite particles; mix the composite with 4g of crosslinking agent in a mixer at 80°C for 30min to make crosslinkable SiO x / LDPE nano cable material is sample 4.
[0032] to add 50nm SiO 2 Inorganic nano-SiOx / LDPE and LDPE were used to prepare cross-linkable cable materials as a control. Weigh 192g LDPE, 3g 50nm SiO2 inorganic nano-SiOx / LDPE, 0.6g primary antioxidant, 1.4g auxiliary antioxidant and mix them uniformly in the mixer; Afterwards, single-screw exhaust, cooling, and granulation into nanocomposite particles; the composite material is mixed with 4g of crosslinking agent in a mixer at 80°C for 30min to make crosslinkable SiO 2 / LDPE nan...
Embodiment 3
[0045] Take by weighing 190gLDPE, 20g solid content 20% organosilicon sol (actual solid SiO x Accounting for 1.5% of the mass percentage of the whole composite material), 0.6g main antioxidant and 1.4g auxiliary antioxidant are mixed uniformly in the mixer; After single-screw exhaust, cooling, and granulation into nanocomposite particles; mix the composite with 4g of crosslinking agent in a mixer at 80°C for 30min to make crosslinkable SiO x / LDPE nano cable material is sample 6.
[0046] to add 50nm SiO 2 Inorganic nano-SiOx / LDPE and LDPE were used to prepare cross-linkable cable materials as a control. Weigh 190g LDPE, 4g 50nm SiO2 inorganic nano-SiOx / LDPE, 0.6g primary antioxidant, 1.4g auxiliary antioxidant and mix them uniformly in the mixer; Afterwards, single-screw exhaust, cooling, and granulation into nanocomposite particles; the composite material is mixed with 4g of crosslinking agent in a mixer at 80°C for 30min to make crosslinkable SiO 2 / LDPE nan...
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