首页> 外文会议>2015 IEEE 11th International Conference on the Properties and applications of Dielectric Materials >Study on the dielectric properties of the epoxy resin toughened with different molecular weight HTBN
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Study on the dielectric properties of the epoxy resin toughened with different molecular weight HTBN

机译:不同分子量HTBN增韧环氧树脂的介电性能研究

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摘要

Epoxy resin (EP) is one of the most popular insulation materials used in the electrical equipment. Adding different liquid rubbers into EP is the common way to increase the toughness, but the dielectric properties of the EP change while the toughness increasing. In this paper, the hydroxyl-terminated liquid nitrile rubbers (HTBN) with different molecular weight were used as fillers to toughen the EP. Through comparing and analyzing the changes of the glass transition temperature and the permittivity of the EP specimens with different kinds and same concentration of HTBNs, the influence of the HTBN's molecular weight to the properties was gained. The glass transition temperatures of the two kinds of specimens are very close to each other, so the glass transition temperature is mainly affected by the adding amount of HTBN. Addition of HTBN brings a new polarization into the composite. This polarization makes a mutation step in the real part and a relaxation peak in the imaginary part of permittivity curve. For the relaxation time of the new polarization, the composite with bigger molecular weight of HTBN is less than another HTBN. For the intensity of the new polarization, the composite with bigger molecular weight of HTBN is greater than another HTBN. The research result shows that the molecular weight of the filler is an important factor to the dielectric properties of the EP toughed with HTBN.
机译:环氧树脂(EP)是电气设备中使用最广泛的绝缘材料之一。在EP中添加不同的液态橡胶是增加韧性的常用方法,但是EP的介电性能会随着韧性的增加而改变。在本文中,使用具有不同分子量的羟基封端的液态丁腈橡胶(HTBN)作为填料来增强EP。通过比较和分析不同种类和相同浓度的HTBNs的EP样品的玻璃化转变温度和介电常数的变化,得到了HTBN分子量对性能的影响。两种样品的玻璃化转变温度非常接近,因此玻璃化转变温度主要受HTBN添加量的影响。 HTBN的加入为复合材料带来了新的分化。这种极化使介电常数曲线的实部发生突变,虚部出现弛豫峰。对于新极化的弛豫时间,HTBN分子量较大的复合材料比另一种HTBN少。对于新的极化强度,HTBN分子量较大的复合材料大于另一种HTBN。研究结果表明,填料的分子量是影响HTBN增韧EP介电性能的重要因素。

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