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首页> 外文期刊>Mathematical research letters: MRL >Influence of temperature and electric field strength on the space charge behavior of liquid silicone rubber with carbon black nanofillers
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Influence of temperature and electric field strength on the space charge behavior of liquid silicone rubber with carbon black nanofillers

机译:温度和电场强度对炭黑纳米氧化碳液体橡胶空间充电特性的影响

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In order to explore the space charge behavior of liquid silicone rubber (LSR) the pulsed electroacoustic (PEA) method has been applied. Due to the elastic nature of LSR, the PEA setup was optimized to ensure a constant contact pressure and thus a constant thickness of the LSR samples. For each sample, the temperature of the ground and the high-voltage electrode was permanently measured. The space charge behavior was investigated for neat LSR and for LSR samples with two different amounts of nanoscaled carbon black (CB). The results show in general a formation of homocharges at both electrodes. At 20 degrees C, the negative charge from the cathode moves towards the anode in the case of neat LSR. With increasing amount of CB, the negative charge is trapped near the cathode and the charge migration is suppressed. At higher temperature, an increasing amount of positive homocharges at the anode is observed, which is suppressed for LSR with CB nanofillers. The mean charge density between the electrodes is evaluated during polarization and depolarization measurement. The results show that the mean charge density increases with temperature and electric field strength, which is explained by the Schottky and Poole-Frenkel effect. In addition, it is observed that the mean attenuation rate during the depolarization time increases with increasing amount of CB nanofillers.
机译:为了探索液体硅橡胶(LSR)的空间充电行为(LSR),已施加脉冲电声(PEA)方法。由于LSR的弹性性质,优化了豌豆设置,以确保恒定的接触压力,从而恒定的LSR样品的恒定厚度。对于每个样品,将接地的温度和高压电极永久测量。研究了空间充电行为,用于纯LSR和具有两种不同量的纳米级炭黑(CB)的LSR样品。结果一般来说,在两个电极上形成均匀。在20摄氏度下,在整洁LSR的情况下,阴极的负电荷朝向阳极移动。随着Cb的增加,负电荷被捕获在阴极附近,抑制电荷迁移。在较高温度下,观察到阳极处的阳性均匀均匀的阳性均匀,其用CB纳米填料的LSR抑制。在偏振和去极化测量期间评估电极之间的平均电荷密度。结果表明,平均电荷密度随温度和电场强度的增加,这是由肖特基和普林克尔效应解释的。另外,观察到,在去极化时间期间的平均衰减率随着CB纳米填料的增加而增加。

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