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首页> 外文期刊>AIP Advances >Thermally stimulated depolarization currents and dielectric properties of Mg0.95Ca0.05TiO3 filled HDPE composites
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Thermally stimulated depolarization currents and dielectric properties of Mg0.95Ca0.05TiO3 filled HDPE composites

机译:热刺激的去极化电流和Mg0.95ca0.05tio3填充HDPE复合材料的介电性能

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摘要

Mgsub0.95/subCasub0.05/subTiOsub3/sub (MCT) filled high density polyethylene (HDPE) composites were prepared by twin-screw extrusion followed by hot pressing technique. The thermally stimulated depolarization current (TSDC) measurement was performed to analyze the contribution of charge distribution and interfacial characteristics to the dielectric loss. TSDC spectra under different polarization conditions show that the introduction of ceramic fillers engenders shallow traps in the vicinity of ceramic-polymer interface, which hinders the injection of space charge from the electrode into the polymer matrix. In the composite materials applied to an external field, charges tend to be captured by these traps. The temperature dependence of relative permittivity and dielectric loss of the composites was measured, and a strong reliance of dielectric loss on temperature was observed. In the heating process, the release of charges accumulating at interfacial region is considered to contribute to the rise in dielectric loss with the increase of temperature.
机译:Mg 0.95 Ca 0.05 TiO 3 (MCT)填充的高密度聚乙烯(HDPE)复合材料由双螺杆挤出制备,然后进行热压技术。进行热刺激的去极化电流(TSDC)测量以分析电荷分布和界面特征对介电损耗的贡献。在不同偏振条件下的TSDC光谱表明,陶瓷填料的引入提出陶瓷聚合物界面附近的浅陷阱,其阻碍了将空间电荷从电极注入聚合物基质中。在应用于外部场的复合材料中,这些陷阱倾向于捕获电荷。测量了复合材料相对介电常数和介电损耗的温度依赖性,并且观察到介电损耗对温度的强烈依赖。在加热过程中,认为在界面区域处累积的电荷的释放被认为是有助于随着温度的增加而导致介电损耗的上升。

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