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Packet-like Space Charge Dynamics in Polyethylene with Various Crystallinity

机译:各种结晶度的聚乙烯中的包状空间电荷动力学

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摘要

Packet-like space charge behavior in polyethylene was firstly indentified in the early 1990’s. Much effort has been done to clarify it in physical essence. The space charge density and migrating velocity of space charge packet are of the two main parameters to characterize this phenomenon. The micro-structure could significantly influence charge trap density and trap level, which therefore influence the space charge migration. In this study, linear low density polyethylene (LLDPE) samples with various crystalline rate and gradient crystalline were prepared by hot pressing process with controlling cooling rate. The evolution of space charge packet in the LLDPE samples sandwiched by semiconducting electrodes under DC 40MV/m stress at 40°C was monitored by pressure wave propagation (PWP) method. The influence of crystallinity and micro-morphology on charge injecting rate, mobility and decaying procedure in LLDPE are discussed. The results show that the heating process history could significantly influence the dynamics of packet-like space charge.
机译:最早在1990年代初期就发现了聚乙烯中类似小包的空间电荷行为。已经做了很多努力来从物理本质上阐明它。空间电荷密度和空间电荷包迁移速度是表征该现象的两个主要参数。微观结构可能会显着影响电荷陷阱密度和陷阱能级,从而影响空间电荷迁移。在这项研究中,通过控制冷却速率的热压工艺制备了具有不同结晶速率和梯度结晶的线性低密度聚乙烯(LLDPE)样品。通过压力波传播(PWP)法监测了在40℃的DC 40MV / m应力下被半导体电极夹在中间的LLDPE样品中空间电荷包的演变。讨论了结晶度和微观形态对LLDPE中电荷注入速率,迁移率和衰减过程的影响。结果表明,加热过程的历史可以显着影响包状空间电荷的动力学。

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