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Influence of Thermal Aging on Space Charge Accumulation and Dissipation of Cross-Linked Polyethylene With Different Cross-Linking Agent Contents

机译:热老化对不同交联剂含量的蓄电池蓄能积聚及交联聚乙烯的耗散

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摘要

This article presents the influence of thermal aging on space charge accumulation and dissipation of cross-linked polyethylene (XLPE) with different cross-linking agent contents. In this article, dicumyl peroxide (DCP) and low-density polyethylene (LDPE) respectively are used as cross-linking agent and basic experimental material. Additionally, an improved PEA method is used to measure space charge densities during voltage application and removal when thermal aging time respectively is 0, 5, 15, 30 and 80 days due to higher accuracy. And experimental results indicate thermal aging can introduce negative charge traps into pure LDPE and make space charges easier to inject and accumulate in pure LDPE and XLPE, but space charge densities in XLPE increase more rapidly as thermal aging time increases, moreover, thermal aging can simultaneously increase densities of deep and shallow charge traps in pure LDPE and XLPE, etc. And we have also explained the change of space charge accumulation and dissipation of pure LDPE and XLPE after thermal aging from the perspective of micro-structure change of pure LDPE and XLPE through the quantitative analysis of average charge densities. Besides, theoretical model of the average charge decay has also been summed up, and this model can perfectly reflect the dissipation of space charges in pure LDPE and XLPE of different thermal aging time.
机译:本文介绍了热老化对具有不同交联剂含量的交联聚乙烯(XLPE)的空间电荷积累和耗散的影响。在该制品中,分别用作交联剂和基本实验材料的二磺酰基(DCP)和低密度聚乙烯(LDPE)。另外,改进的豌豆方法用于测量电压施加期间的空间电荷密度,并且当热老化时间分别为0,5,15,30和80天,由于更高的精度。实验结果表明,热老化可以将负电荷陷阱引入纯LDPE中,使空间电荷更容易注射和积聚在纯LDPE和XLP中,但随着热老化时间增加,XLPE中的空间电荷密度会增加更快,而是可以同时增加热老化从纯LDPE和XLPE的微结构变化的角度解释了在热老化的视角下,增加了纯LDPE和XLPE等深层和XLPE等密度。我们还解释了热老化后纯LDPE和XLP的变化通过平均电荷密度的定量分析。此外,还总结了平均电荷衰减的理论模型,该模型可以完全反映不同热老化时间的纯LDPE和XLP中空间电荷的耗散。

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