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Click chemistry-type crosslinking of a low-conductivity polyethylene copolymer ternary blend for power cable insulation

机译:点击电力电缆绝缘的低电导率聚乙烯共聚物三元混合物的化学式交联

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摘要

High-voltage direct-current power cables are vital for the efficient transport of electricity derived from renewable sources of energy. The most widely used material for high-voltage power cable insulation - low-density polyethylene (LDPE) - is usually crosslinked with peroxides, a process that releases unwanted by-products. Hence, by-product-free crosslinking concepts that mitigate the associated increase in electrical conductivity are in high demand. Click chemistry-type crosslinking of polyethylene copolymer mixtures that contain glycidyl methacrylate and acrylic acid co-monomers is a promising alternative, provided that the curing reaction can be controlled. Here, we demonstrate that the rate of the curing reaction can be adjusted by tuning the number of epoxy and carboxyl groups. Both dilution of copolymer mixtures with neat LDPE and the selection of copolymers with a lower co-monomer content have an equivalent effect on the curing speed. Ternary blends that contain 50 wt% of neat LDPE feature an extended extrusion window of up to 170 degrees C. Instead, at 200 degrees C rapid curing is possible, leading to thermosets with a low direct-current electrical conductivity of about 10(-16) S cm(-1) at an electric field of 20 kV mm(-1) and 70 degrees C. The conductivity of the blends explored here is comparable to or even lower than values measured for both ultraclean LDPE and a peroxide-cured commercial crosslinked polyethylene grade. Hence, click chemistry curing represents a promising alternative to radical crosslinking with peroxides. (c) 2019 Society of Chemical Industry
机译:高压直流电源电缆对于从可再生能源源的有效电力运输至关重要。最广泛使用的高压电力电缆绝缘材料 - 低密度聚乙烯(LDPE) - 通常用过氧化物交联,这是一种释放不需要的副产物的方法。因此,无产品的交联概念,其减轻了导电性的相关增加的增加。点击含有甲基丙烯酸缩水甘油酯和丙烯酸共聚单体的聚乙烯共聚物混合物的化学式交联是一个有前途的替代方案,只要可以控制固化反应。这里,我们证明可以通过调节环氧树脂和羧基的数量来调节固化反应的速率。稀释与整齐的LDPE共聚物混合物和具有较低共聚物含量的共聚物的选择对固化速度具有等同的效果。含有50wt%的整齐LDPE的三元共混物具有高达170℃的扩展挤出窗口,而是可以在200摄氏度下进行快速固化,从而导致低电流导电率为约10的热固性(-16 )在20kVmm(-1)和70℃的电场的Scm(-​​1)。此处探索的共混物的导电性与超薄LDPE和过氧化物固化的商业的值相当或甚至低于测量的值交联聚乙烯等级。因此,点击化学固化代表了具有过氧化物的激进交联的有希望的替代品。 (c)2019年化学工业协会

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