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Effect of Particles Size on Dielectric Properties of Nano-ZnO/LDPE Composites

机译:粒子尺寸对纳米/ LDPE复合材料介电性能的影响

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摘要

The melt blending was used to prepare 3 wt% ZnO/low density polyethylene (ZnO/LDPE) nanocomposites in this article. The effect of different inorganic ZnO particles doping on the dielectrical property and crystal habit of LDPE matrix was explored. The nanoparticles size was 9 nm, 30 nm, 100 nm, and 200 nm respectively. Scanning electron microscope (SEM) was used to characterize ZnO nanoparticles whereas differential scanning calorimetry (DSC) was used to make thermal characterization of the samples. Besides, the AC (alternating current), DC (direct current breakdown characteristics and electrical conductivity of the nanocomposites was studied in this article. The experimental results showed that nano-ZnO/LDPE composites had the advantages such as small crystal size, high crystallization rate and crystallinity owing to nano-ZnO particles doping, when doping nano-ZnO particles size was 30 nm, the ZnO/LDPE nanocomposite crystallinity crest value 39.77% appeared. At the mean time, the DC and AC breakdown field strength values of composites were 138.0 kV/mm and 340.4 kV/mm respectively. They were the maximal values which improved 8.24% and 13.85% than LDPE. The AC breakdown field strength of samples decreased with specimen thickness increase. The DC breakdown field strength of LDPE and ZnO/LDPE composites were greater than AC breakdown field strength. From the conductivity experimental result it could be seen that when the experimental temperature and electric field intensity rose, the current density and conductivity of ZnO/LDPE composites increased with the enlargement of ZnO particles size. But the values were less than which of LDPE.
机译:熔融共混来制备3重量%的ZnO /低密度聚乙烯(氧化锌/ LDPE)本文中的纳米复合材料。不同的无机粒子的ZnO掺杂对LDPE基质的介电性质和晶体习性的影响进行了探讨。纳米颗粒大小分别为9nm,30nm时,100纳米和200纳米。扫描电子显微镜(SEM)被用来表征ZnO纳米颗粒,而差示扫描量热法(DSC)被用于使样品的热特性。此外,AC(交流电),DC(直流击穿特性和纳米复合材料的导电性进行了研究本文中,实验结果表明,纳米氧化锌/ LDPE复合材料具有的优点,如小的晶体尺寸,高结晶速率和结晶度由于纳米氧化锌颗粒掺杂,掺杂纳米氧化锌颗粒时大小为30nm,在ZnO / LDPE纳米复合材料的结晶度峰值39.77%出现了。在同时,复合材料的直流和交流击穿场强值分别为138.0千伏/毫米和340.4千伏/分别毫米。他们属于提高8.24%,比LDPE 13.85%的最大的值。样品的AC击穿场强与试样的厚度增加而降低。LDPE和ZnO的直流击穿场强/ LDPE复合材料比AC击穿电场强度大,从导电性的实验结果可以看出,当实验温度和电场强度上升,则电流密度和ZnO的电导率/ LDPE复合材料的ZnO颗粒尺寸的放大增加。但值均小于其LDPE的。

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