Structure-performance relationship of polypropylene/elastomer/carbon black composites as high voltage cable shielding layer

IF 8.1 2区 材料科学 Q1 ENGINEERING, MANUFACTURING
Xiyu Zhang , Shixun Hu , Shangshi Huang , Yuxiao Zhou , Wenjia Zhang , Changlong Yang , Chi Yao , Xinhua Dong , Qi Zhang , Mingti Wang , Jun Hu , Qi Li , Jinliang He
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Abstract

As polypropylene (PP) is a competitive insulating material for next generation high-voltage cable, the corresponding PP based cable semi-conductive shielding layer material needs to be developed. This paper developed an excellent material prescription and proposed an analytical method of structure-performance relationship for the application and the evaluation of PP-based cable shielding layer. First, PP/POE/CB and PP/SEBS/CB composites with different carbon black (CB) loading were prepared and their electrical and mechanical properties were compared. Through thermal analysis technique, crystalline property and thermal stability of the composites were studied in detail. And the synchrotron radiation X-ray scattering techniques were employed to analyze the distribution of carbon black in the blend semi-quantitatively. The analysis result turns out the enrichment of carbon black in POE phase and its instability at high temperature limits its application under cable operation conditions. In contrast, PP/SEBS/CB30phr is recommended for lower thermal deformation, lower PTC effect and better mechanical parameters.

聚丙烯/弹性体/炭黑复合材料作为高压电缆屏蔽层的结构性能关系
聚丙烯(PP)是下一代高压电缆具有竞争力的绝缘材料,因此需要开发相应的聚丙烯基电缆半导电屏蔽层材料。本文为聚丙烯基电缆屏蔽层的应用和评价开发了一种优良的材料处方,并提出了结构性能关系的分析方法。首先,制备了不同炭黑(CB)含量的 PP/POE/CB 和 PP/SEBS/CB 复合材料,并比较了它们的电气和机械性能。通过热分析技术,详细研究了复合材料的结晶特性和热稳定性。并采用同步辐射 X 射线散射技术对混合材料中炭黑的分布进行了半定量分析。分析结果表明,炭黑在 POE 相中的富集及其在高温下的不稳定性限制了其在电缆运行条件下的应用。相比之下,PP/SEBS/CB30phr 具有更低的热变形、更低的 PTC 效应和更好的机械参数,因此值得推荐使用。
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来源期刊
Composites Part A: Applied Science and Manufacturing
Composites Part A: Applied Science and Manufacturing 工程技术-材料科学:复合
CiteScore
15.20
自引率
5.70%
发文量
492
审稿时长
30 days
期刊介绍: Composites Part A: Applied Science and Manufacturing is a comprehensive journal that publishes original research papers, review articles, case studies, short communications, and letters covering various aspects of composite materials science and technology. This includes fibrous and particulate reinforcements in polymeric, metallic, and ceramic matrices, as well as 'natural' composites like wood and biological materials. The journal addresses topics such as properties, design, and manufacture of reinforcing fibers and particles, novel architectures and concepts, multifunctional composites, advancements in fabrication and processing, manufacturing science, process modeling, experimental mechanics, microstructural characterization, interfaces, prediction and measurement of mechanical, physical, and chemical behavior, and performance in service. Additionally, articles on economic and commercial aspects, design, and case studies are welcomed. All submissions undergo rigorous peer review to ensure they contribute significantly and innovatively, maintaining high standards for content and presentation. The editorial team aims to expedite the review process for prompt publication.
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