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The effect of filler content on slow polarization behavior in composite of nano-SiO{sub}x or micro-SiO{sub}2 and low-density polyethylene

机译:填料含量对纳米SiO {X×X或微观SiO} 2和低密度聚乙烯复合材料慢偏振行为的影响

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Nano-SiO{sub}x or micro-SiO{sub}2 can be homogeneously dispersed in polyethylene (LDPE) by a method using a double solution mixture. The dispersion status of nano-SiO{sub}x and micro-SiO{sub}2 was investigated with scanning electron microscopy (SEM). Polarization and depolarization current of the composite and pure LDPE was recorded with Keithley 6517 A. In order to know the dielectric loss of the composite, polarization and depolarization current with time was converted to the frequency domain with Fourier Transform Method (FTM). It was found that the depolarization intensity of composite containing nano or micro inorganic filler is lower than that of pure LDPE, and that of composite containing nano filler is lower than that of composite containing micro filler. At a higher temperature (333K), the depolarization loss peak location of the composite containing nano-SiO{sub}x is distinctly higher than that of the composite containing micro-SiO{sub}2. It is pointed out that the different slow polarization behavior has close relation with the physical characteristic of fillers, as well as the content of fillers. Finally, the polarization and depolarization phenomenon were discussed with space charge trapping and detrapping processes in the interfaces between nano-SiO{sub}x or micro-SiO{sub}2 and polyethylene.
机译:通过使用双溶液混合物的方法,可以通过使用双溶液混合物的方法均匀分散在聚乙烯(LDPE)中均匀分散的纳米SiO {亚}×} 2。用扫描电子显微镜(SEM)研究了纳米SiO {Sub} X和Micro-SiO} 2的分散状态。用Keithley 6517 A记录复合材料和纯LDPE的偏振和纯LDPE的偏振电流。为了了解复合材料的介电损耗,随着时间的推移,用傅里叶变换方法(FTM)转换到频域的介电损耗。发现含有纳米或微型无机填料的复合材料的去极化强度低于纯LDPE的去极性强度,并且含有纳米填料的复合材料的含量低于含有微填料的复合材料。在较高温度(333k)中,含有纳米SiO}×X的复合材料的去极化损失峰值明显高于含有微SiO {Sub} 2的复合材料的峰值。结果指出,不同的慢偏振行为与填料的物理特征以及填料的含量具有密切的关系。最后,在纳米-SiO {亚}×X或微SiO {} 2和聚乙烯之间的界面中讨论了偏振和去极化现象。

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