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Feasibility analysis of hexaphenoxy cyclotriphosphazene flame retardant for inhibiting electrical tree growth of epoxy resin

机译:六氧基环氧三磷腈阻燃剂抑制环氧树脂电气树生长的可行性分析

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Epoxy resin (EP) with excellent electrical and mechanical properties was widely employed as the insulation structure in high-voltage (HV) power equipment. Due to its ultra-high electric field, the inevitable electrical tree aging phenomenon often occurs in the insulation materials, which seriously threatens the safe operation of power equipment. A flame retardant such as hexaphenoxy cyclotriphosphazene (HPCTP) can reduce the intensity of heat release during the thermal decomposition of epoxy groups and consume free radicals generated by the reaction of epoxy molecular chains with oxygen, which provides a potential possibility to inhibit the tree growth in the insulation materials. In this work, the electrical treeing characteristics of the HPCTP/EP composites under high electric field was studied. It's confirmed that the tree growth of HPCTP/EP composites was significantly inhibited by HPCTP. The tree initiation voltage and voltage life of the HPCTP/EP composites are both higher than those of the pure EP. The carbonization in the tree channel was effectively inhibited by HPCTP, which weakened the electric field at the tip of the tree channel, thereby prolonging the voltage life of the HPCTP/EP composites.
机译:具有优异的电气和机械性能的环氧树脂(EP)被广泛用于高压(HV)电力设备中的绝缘结构。由于其超高电场,不可避免的电气树老化现象通常发生在绝缘材料中,这严重威胁到电力设备的安全操作。诸如己类氧基环磷酰胺(HPCTP)的阻燃剂可以降低环氧基的热分解期间的热释放强度,并消耗通过环氧分子链与氧气反应产生的自由基,这提供了抑制树生长的潜在可能性绝缘材料。在这项工作中,研究了高电场下的HPCTP / EP复合材料的电曲线特性。它证实,HPCTP的HPCTP / EP复合材料的树生长受到显着抑制。 HPCTP / EP复合材料的树起始电压和电压寿命均高于纯EP的电压。通过HPCTP有效地抑制了树通道中的碳化,其削弱了树通道的尖端处的电场,从而延长了HPCTP / EP复合材料的电压寿命。

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