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不同粒径ZnO/LDPE复合材料的电导率和介电性能研究

The Research of Conductivity and Dielectric Properties of ZnO/LDPE Composites with Different Particles Size.

作者信息

Cheng Yujia, Yu Guang, Yu Boyang, Zhang Xiaohong

机构信息

Mechanical and Electrical Engineering Institute, University of Electronic Science and Technology of China, Zhongshan Institute, Zhongshan 528400, China.

Mechanical and Electrical Engineering Institute, Zhongshan Polytechnic, Zhongshan 528400, China.

出版信息

Materials (Basel). 2020 Sep 17;13(18):4136. doi: 10.3390/ma13184136.

Abstract

Nanocomposites exhibit a high dielectric strength, whereas microcomposites exhibit a high thermal conductivity. In this study, good insulating materials were developed on the basis of the synergetic effect of micro- and nanoparticles, which were used as inorganic fillers. With a double-melting blend, nano-ZnO/low density polyethylene (LDPE), micro-ZnO/LDPE, and micro-nano-ZnO/LDPE composites were prepared, according to the scanning electron microscope test, polarization microscope test, conductivity test, breakdown test, and dielectric spectrum test, the dielectric property of micro-nano-ZnO/LDPE was explored. The SEM test results showed that by adding a suitable proportion of ZnO particles, the inorganic particles could disperse uniformly without reuniting. The PLM test results showed that the micro- and nano-ZnO particles adding decreased the crystal size. The arrangement was regular and tight. The macroscopic results showed that the mass fraction of nanoparticles and microparticles were 3% and 2%, the samples conductivity was the lowest. The breakdown field strength of the nanocomposites increased. The breakdown field strength of nanocomposites with 1%, 3%, and 5% nanoparticle contents were 5%, 15%, and 10% higher than that of pure LDPE. The addition of inorganic particles resulted in new polarization modes: Ionic displacement polarization and interfacial polarization. The ZnO/LDPE composites exhibited a higher dielectric constant and dielectric loss factor than pure LDPE. However, with the increasing frequency, it took considerable time to attain interfacial polarization in the nanocomposite and micro-nanocomposite, thus decreasing the dielectric constant.

摘要

纳米复合材料具有高介电强度,而微复合材料具有高导热性。在本研究中,基于用作无机填料的微米和纳米粒子的协同效应,开发出了良好的绝缘材料。通过双熔融共混法制备了纳米氧化锌/低密度聚乙烯(LDPE)、微米氧化锌/LDPE和微米-纳米氧化锌/LDPE复合材料,依据扫描电子显微镜测试、偏光显微镜测试、电导率测试、击穿测试和介电谱测试,对微米-纳米氧化锌/LDPE的介电性能进行了探究。扫描电子显微镜测试结果表明,通过添加合适比例的氧化锌颗粒,无机颗粒能够均匀分散而不团聚。偏光显微镜测试结果表明,添加微米和纳米氧化锌颗粒减小了晶体尺寸。排列规则且紧密。宏观结果表明,当纳米颗粒和微米颗粒的质量分数分别为3%和2%时,样品的电导率最低。纳米复合材料的击穿场强增加。纳米颗粒含量为1%、3%和5%的纳米复合材料的击穿场强比纯LDPE分别高5%、15%和10%。无机颗粒的添加导致了新的极化模式:离子位移极化和界面极化。氧化锌/LDPE复合材料比纯LDPE表现出更高的介电常数和介电损耗因子。然而,随着频率的增加,纳米复合材料和微米-纳米复合材料中达到界面极化需要相当长的时间,从而降低了介电常数。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a495/7560400/f51973f02aca/materials-13-04136-g001.jpg

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