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An experimental study on the interface polarization of double-layered composite structure containing nonlinear dielectrics

机译:非线性电介质双层复合结构界面极化的实验研究

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This study deals with the polarization and depolarization currents of linear/nonlinear double-layered composites, and sets out to explore interface polarization and depolarization characteristics. The linear layer is pure low density polyethylene (LDPE) matrix. The nonlinear barrier layer is prepared by adding nanofillers (ZnO and SiC) to LDPE with different concentrations. Experimental results show that the species and amount of the nanofillers (ZnO and SiC) in nonlinear dielectrics and experimental temperature have a great influence on the polarization and depolarization of the double-layered composite structure containing nonlinear dielectrics. With the increasing of the concentration of nanofillers (ZnO) in nonlinear layer, polarization and depolarization currents all are increasing, and the relaxation times of polarization and depolarization are correspondingly prolonged. When nonlinear layer with concentration of ZnO are 9.09wt% and 16.67wt%, the polarization and depolarization currents are less than that of the same concentration of SiC. Under same experimental condition, the polarization and depolarization currents also increase with the amplitude of excitation voltage, and the relaxation time of polarization is much longer than the relaxation time of depolarization. The transient current at the moment of excitation voltage inversion is much larger than the polarization current.
机译:该研究涉及线性/非线性双层复合材料的偏振和去极化电流,并开始探索界面极化和去极化特性。线性层是纯的低密度聚乙烯(LDPE)基质。通过用不同浓度向LDPE添加纳米填料(ZnO和SiC)来制备非线性阻挡层。实验结果表明,非线性电介质和实验温度中纳米填充物(ZnO和SiC)的种类和量对含有非线性电介质的双层复合结构的偏振和去极化产生了很大的影响。随着非线性层中纳米填料(ZnO)浓度的增加,偏振和去极化电流都增加,偏振和去极化的弛豫时间相应地延长。当具有浓度ZnO的非线性层为9.09wt %和16.67wt %时,偏振和去极电流小于相同浓度的SiC。在相同的实验条件下,偏振和去极化电流也随着激励电压的幅度而增加,并且偏振的弛豫时间远比去极化的松弛时间。激励电压反转时刻的瞬态电流远大于偏振电流。

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