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The Research of Crystalline Morphology and Breakdown Characteristics of Polymer/Micro-Nano-Composites

机译:聚合物/微纳米复合材料的结晶形态和击穿特性的研究

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摘要

In this article, low-density polyethylene (LDPE) was used as a matrix polymer, the Micro-ZnO and Nano-ZnO particles were used as the inorganic filler. With the melt blending method, the Nano-ZnO/LDPE(Nano-ZnO particles doping into LDPE), Micro-ZnO/LDPE(Micro-ZnO particles doping into LDPE) and Micro-Nano-ZnO/LDPE (Nano-ZnO and Micro-ZnO particles doping into LDPE in the same time) composites were prepared. Then, the inorganic filler and the composites were dealt with structural characterizations and analysis by Fourier transform infrared (FTIR), Polarization microscope (PLM), and Differential scanning calorimeter (DSC). Besides, these samples were dealt with (alternating current) AC breakdown performance test. The micro-experimental results showed that the Micro-ZnO and Nano-ZnO particles doping reduced the crystal size and increased the crystallization rate. With the change of cell structure, the crystallinity of composites increased. The crystallinity order of different samples was as follows: LDPE < Micro-ZnO/LDPE < Nano-ZnO/LDPE < Micro-Nano-ZnO/LDPE. From the breakdown of the experimental result, with the same mass fraction of the different inorganic doping of particles, the breakdown strength of these composites was different. The Nano-ZnO particle doping could improve the breakdown strength of composites effectively. Among them, the breakdown strength of Nano-ZnO/LDPE and Micro-Nano-ZnO/LDPE were 11% higher and 1.3% lower than that of pure LDPE, respectively. Meanwhile, the breakdown strength of Micro-composite was the lowest but its Weibull shape coefficient was the highest. Therefore, the Micro-ZnO doping was helpful for the Nano-ZnO dispersing in the matrix, which produced the Micro-Nano-synergy effects better.
机译:本文将低密度聚乙烯(LDPE)用作基质聚合物,将Micro-ZnO和Nano-ZnO颗粒用作无机填料。通过熔融共混法,可将纳米ZnO / LDPE(掺杂到LDPE中的纳米ZnO颗粒),微ZnO / LDPE(掺杂在LDPE中的Micro-ZnO颗粒)和微纳米-ZnO / LDPE(Nano-ZnO和Micro制备了同时掺杂LDPE的-ZnO颗粒)复合材料。然后,通过傅立叶变换红外(FTIR),偏振显微镜(PLM)和差示扫描量热仪(DSC)对无机填料和复合材料进行结构表征和分析。此外,这些样品还经过(交流)交流击穿性能测试。微观实验结果表明,掺杂的微ZnO和纳米ZnO颗粒减小了晶体尺寸并提高了结晶速率。随着孔结构的变化,复合材料的结晶度增加。不同样品的结晶度顺序如下:LDPE <微ZnO / LDPE <纳米ZnO / LDPE <微纳米ZnO / LDPE。从实验结果的分解来看,在相同质量分数的不同无机掺杂颗粒的情况下,这些复合材料的分解强度是不同的。纳米ZnO颗粒的掺杂可以有效提高复合材料的击穿强度。其中,纳米ZnO / LDPE和微纳米ZnO / LDPE的击穿强度分别比纯LDPE高11%和1.3%。同时,微复合材料的击穿强度最低,但其威布尔形状系数最高。因此,微ZnO的掺杂有助于纳米ZnO在基体中的分散,从而更好地产生了微纳米协同效应。

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