电晕放电下热塑性弹性体纳米复合材料的降解及对疏水性的影响

W. S. W. Ibrahim, Masmaria Abdul Majid, S. Mohamad
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引用次数: 0

摘要

室外绝缘子的设计、开发和施工都是基于防止全湿区的要求。然而,在高压技术中使用的绝缘材料如聚合物通常暴露在电晕放电中。长期电晕放电降低绝缘子的疏水性,导致绝缘子劣化。它可能会增加绝缘子上的泄漏电流,从而导致日益严重的电弧活动并导致闪络。热塑性弹性体(TPE),一种类似橡胶的材料,被认为是超越其他材料,如硅橡胶(SIR)和乙丙烯(EP),由于其优异的疏水性特性,占广泛的绝缘应用。本文介绍了电晕老化对不同类型TPE纳米复合材料疏水性能的影响。采用蒙脱土(MMT)、二氧化硅(SiD)和氧化铝(AO)三种纳米填料研究了其效果。点平面电极几何结构用于在样品上产生电晕。通过接触角测量技术测定了这些材料的疏水性变化。研究结果证实,纳米填料的存在对TPE纳米复合材料电晕放电前后绝缘子的疏水特性有不同程度的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Degradation of thermoplastic elastomeric nanocomposite materials exposed to corona discharge and impact on hydrophobic properties
The design development and construction of outdoor insulator are based on the requirement to prevent completely-wetted zones. However, insulating materials such as polymer that used in high voltage technology usually exposed to corona discharge. Long term of corona discharge reduce the hydrophobicity and cause the degradation of the insulators. It may increase the leakage current over insulators which may lead to increasingly severe arcing activity and proceed to flashover. Thermoplastic Elastomer (TPE), a type of rubber-like material is believed to surpass other materials like Silicon Rubber (SIR) and Ethylene Propylene (EP) due to its excellent hydrophobicity characteristic which account for a wide range of insulation applications. This paper presents the experimental results of corona aging studies on hydrophobic properties for different type of TPE nanocomposites. Three nanofillers, i.e. Montmorillonites (MMT), Silicon Dioxide (SiD), and Aluminum Oxide (AO) were used to study the effects. Pointed-plane electrode geometry has been used to create the corona on the samples. The changes of hydrophobic properties of these materials were determined by the contact angle measurement technique. Results attained confirm that the existence of nanofillers in TPE nanocomposite materials affect the hydrophobic characteristic of these insulators before and after the corona discharge exposure in different prospective.
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