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纳米结构SiO/PP复合材料的空间电荷特性及击穿性能

Space Charge Characteristics and Breakdown Properties of Nanostructured SiO/PP Composites.

作者信息

Zhang Guang-Wei, Gao Jun-Guo, Wang Ran, Lee Ting-Tai, Schachtely Uwe, Kobayashi Hitoshi, Wang Wei-Wang

机构信息

Key Laboratory of Engineering Dielectrics and Its Application, Ministry of Education, School of Electrical and Electronic Engineering, Harbin University of Science and Technology, Harbin 150080, China.

Evonik Specialty Chemicals Co., Ltd., Shanghai 201108, China.

出版信息

Polymers (Basel). 2023 Jun 26;15(13):2826. doi: 10.3390/polym15132826.

Abstract

Polypropylene (PP) has gained attention in the industry as an environmentally friendly material. However, its electrical properties are compromised due to space charge accumulation during operation, limiting its application in high-voltage DC cable insulation. This study investigates the effect and mechanism of SiO with a DDS surface hydrophobic treatment on space charge suppression and the electrical properties of PP composites. The PP matrix was doped with SiO nanostructures, both with a DDS surface hydrophobic treatment and untreated as a control group. The functional group structure and dispersion of nanostructured SiO in the matrix were characterized. The findings reveal that the incorporation of SiO nanostructures effectively mitigates charge accumulation in PP composites. However, a high concentration of unsurfaced nanostructures tends to agglomerate, resulting in inadequate space charge suppression and a diminished DC breakdown field strength. Nonetheless, surface treatment improves the dispersion of SiO within the matrix. Notably, the composite containing 1.0 wt% of surface hydrophobic SiO exhibits the least space charge accumulation. Compared to the base material PP, the average charge density is reduced by 83.9% after the 1800 s short-circuit discharges. Moreover, its DC breakdown field strength reaches 3.45 × 10 V/m, surpassing pure PP by 19.4% and untreated SiO/PP composites of the same proportion by 24.0%.

摘要

聚丙烯(PP)作为一种环保材料已在行业中受到关注。然而,由于运行过程中的空间电荷积累,其电气性能受到损害,限制了其在高压直流电缆绝缘中的应用。本研究考察了经DDS表面疏水处理的SiO对PP复合材料空间电荷抑制及电气性能的影响和作用机理。PP基体中掺杂了SiO纳米结构,一组进行了DDS表面疏水处理,另一组未处理作为对照组。对纳米结构SiO在基体中的官能团结构和分散情况进行了表征。研究结果表明,SiO纳米结构的引入有效地减轻了PP复合材料中的电荷积累。然而,高浓度未进行表面处理的纳米结构容易团聚,导致空间电荷抑制不足,直流击穿场强降低。尽管如此,表面处理改善了SiO在基体中的分散性。值得注意的是,含有1.0 wt%表面疏水SiO的复合材料空间电荷积累最少。与基础材料PP相比,在1800 s短路放电后,平均电荷密度降低了83.9%。此外,其直流击穿场强达到3.45×10 V/m,比纯PP高出19.4%,比相同比例的未处理SiO/PP复合材料高出24.0%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c0df/10346549/b5a10be0ce8c/polymers-15-02826-g001.jpg

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