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Conductive switching behavior of epoxy resin/micron-aluminum particles composites

机译:环氧树脂/微米颗粒复合材料的导电切换行为

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摘要

Epoxy resin (ER)/micron-aluminum particles (MP) composites with different filling concentration of spherical particles were fabricated. The nonlinear conductive behavior of ER/MP composites under increasing applied voltage using the improved V-I method was investigated. Under sufficient high intensity applied constant voltage, the obvious conductive switching behavior of samples with volume fraction 12.7%, 16.9% and 18.9% was found. The conductivity of ER/MP composites increase up to 3–4 orders of magnitude when the conductor-insulator transition occurs. The switching threshold voltage decreases with the increase of volume fraction of MP in the composites. The results show that the ER/MP composites with conductive switching properties are of great potential application in electromagnetic protection of electron devices and systems.
机译:制造具有不同填充球形颗粒的环氧树脂(ER)/微米铝颗粒(MP)复合材料。 研究了使用改进的V-1方法增加施加电压的ER / MP复合材料的非线性导电性能。 在足够的高强度施加恒定电压下,发现具有体积分数12.7%,16.9%和18.9%的样品的明显导电性切换行为。 当发生导体绝缘体转换时,ER / MP复合材料的电导率增加高达3-4个级。 随着复合材料中MP的体积分数的增加,切换阈值电压降低。 结果表明,具有导电切换性能的ER / MP复合材料在电子器件和系统的电磁保护中具有很大的潜在应用。

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  • 来源
    《e-Polymers》 |2018年第1期|共5页
  • 作者单位

    Institute of Electrostatic and Electromagnetic Protection Army Engineering University Shijiazhuang 050003 China;

    Institute of Electrostatic and Electromagnetic Protection Army Engineering University Shijiazhuang 050003 China Tel.: +86 18932913927;

    Institute of Electrostatic and Electromagnetic Protection Army Engineering University Shijiazhuang 050003 China;

    Institute of Electrostatic and Electromagnetic Protection Army Engineering University Shijiazhuang 050003 China;

    Institute of Electrostatic and Electromagnetic Protection Army Engineering University Shijiazhuang 050003 China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 高分子化合物工业(高聚物工业);
  • 关键词

    conductive paths; conductive switching behavior; conductor-insulator transition; tunnel effect;

    机译:导电路径;导电切换行为;导体绝缘体转换;隧道效应;

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