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A varistor-polymer composite with nonlinear electrical-thermal switching properties

机译:具有非线性电热转换特性的压敏聚合物复合材料

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摘要

We studied the dependence of the E-J characteristics on the sintering conditions in varistor fillers, the filler content in the polymer matrix and for different polymers and suggest a possible nonlinear electrical-thermal switching mechanism. The nonlinear coefficient and breakdown field of a sample with 100 vol. percent varistor fillers sintered at 950 deg C for 5 h were 12.24 and 135 V/mm, separately. A decrease in the amount of filler content in polymeric matrix or using a fortified polymer improved the electrical properties by increasing the breakdown field to the 263-964 V/mm range and decreasing the leakage current density in the 1.06 X 10~(-5) to 1.13 X 10~(-10) A/cm~2 range. This varistor-polymer composite can exhibit two nonlinearities in electrical conductivity. In the conducting state above the varistor filler breakdown, the polymer matrix reduces the conductivity, if a critical temperature is reached. Thereby the over voltage is limited by the fillers (i.e. varistor effect) and the over current is limited by the polymer matrix (i.e. positive temperature coefficient effect).
机译:我们研究了压敏电阻填料中E-J特性对烧结条件的依赖性,聚合物基体中以及不同聚合物中填料的含量,并提出了可能的非线性电热转换机理。 100伏特样品的非线性系数和击穿场。在950℃下烧结5小时的压敏电阻填充物的百分数分别为12.24和135V / mm。减少聚合物基体中填料含量或使用强化聚合物,可通过将击穿场增大至263-964 V / mm范围并降低1.06 X 10〜(-5)的漏电流密度来改善电性能。至1.13 X 10〜(-10)A / cm〜2的范围。该变阻器-聚合物复合材料可表现出两个电导率非线性。在压敏电阻填料击穿以上的导电状态下,如果达到临界温度,聚合物基体会降低电导率。因此,过电压受到填料的限制(即压敏电阻效应),而过电流受到聚合物基体的限制(即正温度系数效应)。

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