Structure and DC Breakdown Properties of Polypropylene/Elastomer Blends

S. Kamarudin, K. Y. Lau, N. A. Ahmad, N. Azrin, C. W. Tan, K. Y. Ching
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Abstract

Thermoplastic materials, such as polypropylene (PP), are highly favored for usage as high voltage cable insulation systems due to their high melting temperature and flexible mechanical and electrical characteristics. In this regard, PP has the capability to replace standard crosslinked polyethylene (XLPE) as a future high voltage insulating material. Recently, the addition of elastomers into PP is being extensively investigated. This paper reports the effect of using different types of elastomers, at 10 wt%, on the structure and DC breakdown properties of PP blends. Fourier transformed infrared spectroscopy (FTIR) was performed to analyze the chemical structures and DC breakdown testing was carried out to evaluate the DC breakdown characteristics of the PP blends. From the breakdown results, PP blended with different types of elastomers had different values of DC breakdown strength, even though the amount of elastomers was kept the same at 10 wt%.
聚丙烯/弹性体共混物的结构和直流击穿性能
热塑性材料,如聚丙烯(PP),由于其高熔融温度和灵活的机械和电气特性,非常适合用作高压电缆绝缘系统。在这方面,PP有能力取代标准交联聚乙烯(XLPE)作为未来的高压绝缘材料。近年来,在PP中添加弹性体的研究越来越广泛。本文报道了使用不同类型的弹性体对PP共混物的结构和直流击穿性能的影响。利用傅里叶红外光谱(FTIR)分析了共混物的化学结构,并进行了直流击穿测试,评价了共混物的直流击穿特性。从击穿结果来看,即使弹性体的加入量为10%,掺入不同类型弹性体的PP的直流击穿强度值也不同。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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