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首页> 外文期刊>Journal of Materials Science >Fabrication of variable frequency motors using polyester-imide-hybridized resins and hyperbranched polysiloxane coated nano-TiO2
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Fabrication of variable frequency motors using polyester-imide-hybridized resins and hyperbranched polysiloxane coated nano-TiO2

机译:使用聚酯酰亚胺混合树脂和超支化聚硅氧烷涂覆的纳米TiO2制成变频电机

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摘要

The key for fabricating variable frequency motors is to develop high-performance resins that not only have excellent corona resistance and high breakdown strength, but also are suitable for vacuum pressure impregnation (VPI) technique; however, few resins simultaneously possess these features. Herein, a series of unique hybridized resins based on polyester-imide resin (EPEI) and hyperbranched polysiloxane coated nano-TiO2 (HSi-TiO2) were prepared, and their structure, processing characteristics, corona resistance, and high breakdown strength were investigated systematically. Results show that EPEI/HSi-TiO2-hybridized resins have excellent storage stability and are suitable for VPI, completely overcoming the disadvantages of traditional nanofiller-modified resins. In addition, the presence of HSi-TiO2 changes the microstructure of crosslinked network, endowing EPEI/HSi-TiO2-hybridized resins with outstanding corona resistance, high breakdown strength, and remarkably decreased partial discharge. The maximum corona--resistant life is 1586 min, about 57 times that of EPEI resin. As the content of HSi-TiO2 increases, the breakdown strength of the hybridized resin increases, and the maximum value is 28.1 kV/mm, 15.2 % higher than that of EPEI resin. These attractive performance characteristics demonstrate that EPEI/HSi-TiO2-hybridized resins have great potential in fabricating variable frequency motors and high-performance electric equipments. The origin behind these attractive performance characteristics possessed by EPEI/HSi-TiO2-hybridized resins was intensively discussed.
机译:制造变频电动机的关键是开发高性能树脂,该树脂不仅具有出色的耐电晕性和高击穿强度,而且还适用于真空压力浸渍(VPI)技术;但是,很少有树脂同时具有这些特征。本文制备了一系列独特的基于聚酯酰亚胺树脂(EPEI)和超支化聚硅氧烷涂层的纳米TiO2(HSi-TiO2)的杂化树脂,并对其结构,加工特性,耐电晕性和高击穿强度进行了系统研究。结果表明,EPEI / HSi-TiO2-杂化树脂具有出色的储藏稳定性,适用于VPI,完全克服了传统的纳米填料改性树脂的缺点。此外,HSi-TiO2的存在改变了交联网络的微观结构,赋予EPEI / HSi-TiO2-杂化树脂以优异的耐电晕性,高击穿强度,并显着降低了局部放电。最大耐电晕寿命为1586分钟,约为EPEI树脂的57倍。随着HSi-TiO2含量的增加,杂化树脂的击穿强度增加,最大值为28.1kV / mm,比EPEI树脂高15.2%。这些引人注目的性能特征表明,EPEI / HSi-TiO2-杂化树脂在制造变频电动机和高性能电气设备方面具有巨大潜力。对EPEI / HSi-TiO2-杂化树脂所具有的这些有吸引力的性能特征的根源进行了深入的讨论。

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  • 来源
    《Journal of Materials Science》 |2015年第22期|7314-7325|共12页
  • 作者单位

    Jiangsu Key Laboratory of Advanced Functional Polymer Design and Application College of Chemistry Chemical Engineering and Materials Science Soochow University">(1);

    Jiangsu Key Laboratory of Advanced Functional Polymer Design and Application College of Chemistry Chemical Engineering and Materials Science Soochow University">(1);

    Jiangsu Key Laboratory of Advanced Functional Polymer Design and Application College of Chemistry Chemical Engineering and Materials Science Soochow University">(1);

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