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Nanodielectrics for use in HVDC power systems and their structure-property relationships using Chemometric methods

机译:用于高压直流输电系统的纳米电介质及其化学计量学方法的结构性质关系

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This paper deals with the development of new thermoset based nanocomposite electrical insulation materials for HVDC power transmission applications. A wide range of insulation properties were determined and some are discussed. With sufficient understanding of these properties, their trade-offs and process requirements, it is possible to obtain balanced materials for specific use in improved HVAC or HVDC components. It has been demonstrated that the application of multivariate statistical analysis (MVSA) methods can establish relationships between key properties and molecular information obtained spectroscopically. It was found that the electrical properties of a material are heavily dependent on the chemistry of the materials system and its degree of curing with particular factors responsible for the greatest improvement in electrical properties, such as electrical breakdown strength.
机译:本文涉及用于HVDC输电应用的新型基于热固性的纳米复合电绝缘材料的开发。确定了广泛的绝缘性能,并对其中一些进行了讨论。在充分了解这些特性,它们的折衷和工艺要求之后,就有可能获得平衡的材料,以用于改进的HVAC或HVDC组件中。已经证明,多元统计分析(MVSA)方法的应用可以建立关键特性与光谱学获得的分子信息之间的关系。已经发现,材料的电性能在很大程度上取决于材料系统的化学性质及其固化程度,并且具有导致电性能例如电击穿强度的最大改善的特定因素。

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