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首页> 外文期刊>Bulletin of the American Physical Society >APS -Annual Meeting of the APS Four Corners Section- Event - Pulsed Electro-Acoustic Measurements of Charging and Relaxation in Low Density Polyethylene
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APS -Annual Meeting of the APS Four Corners Section- Event - Pulsed Electro-Acoustic Measurements of Charging and Relaxation in Low Density Polyethylene

机译:APS-APS四角部分年度会议-事件-低密度聚乙烯中充电和弛豫的脉冲电声测量

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A Pulsed Electro-Acoustic (PEA) system was developed and used to study electron charge injection, transport, and relaxation in Low Density Polyethylene (LDPE). Measurements of the time evolution of the charge profiles using the BEI/USU PEA system are compared to predicted models and to previous studies; these are used to verify that the new system is working as expected and to characterize the system's resolution and capabilities. The measurements were made by placing 125 $mu $m thick LDPE between two electrodes in a parallel plate configuration. Charge was injected via electrode charging for extasciitilde 30 min with a extasciitilde 40 MV/m applied field and then allowed to discharge with no applied field for extasciitilde 30 min. The distribution of charge in the dielectric was measured with PEA by applying a extasciitilde 100 MHz extasciitilde 850 V electric pulse to displace the embedded charge, causing an acoustic pulse monitored via time-of-flight with a thin piezoelectric sensor allowing observation of charge accumulation and dissipation. Higher spatial resolution nondestructive PEA measurements of embedded charge in dielectrics offer important information for applications such as spacecraft charging, plasma deposition, accelerator physics, high voltage devices and transmission lines, supercapacitors, microelectronics, and nanodielectric materials.
机译:开发了脉冲电声(PEA)系统,用于研究低密度聚乙烯(LDPE)中的电子电荷注入,传输和弛豫。使用BEI / USU PEA系统对电荷分布图的时间演化的测量结果与预测模型和以前的研究进行了比较;这些用于验证新系统是否按预期运行,并表征系统的分辨率和功能。通过在平行板配置中的两个电极之间放置125μm厚的LDPE进行测量。经由电极充电将电荷注入具有40 MV / m的外加电场30分钟,然后在无外加电场的情况下放电30分钟。电介质中电荷的分布是通过PEA测量的,方法是施加100 MHz的激磁850 V电脉冲以置换嵌入的电荷,从而通过飞行时间使用薄的压电传感器监控声脉冲,从而观察电荷的积累和变化。耗散。电介质中嵌入电荷的更高空间分辨率无损PEA测量为航天器充电,等离子体沉积,加速器物理,高压设备和传输线,超级电容器,微电子和纳米介电材料等应用提供了重要信息。

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