场老化复合绝缘子的疏水传递机理评价

N. Mavrikakis, K. Siderakis, D. Kourasani, M. Pechynaki, E. Koudoumas
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引用次数: 4

摘要

表面疏水性是硅橡胶复合绝缘子的一项重要性能。它是与陶瓷相比的主要优势,因此是现场老化绝缘子检测时首先要研究的。最初通过静态接触角测量来评估疏水性。然而,现场和实验室研究表明,在室外高压绝缘的情况下,动态性能是至关重要的,特别是疏水恢复能力,由于低分子量分子的迁移机制。这种机制效率不仅与材料配方有关,还与经验使用条件和绝缘子的老化程度有关。因此,现场老化绝缘子的实验室评估对研究人员和公用事业公司都是非常有益的。在此方向上,本文研究了两种不同基材聚合物的三种场老化绝缘子的疏水性恢复效率。根据CIGRE指南,进行静态和动态测量。结果验证了硅橡胶聚合物的优越性,并表明恢复时间超过10小时。在这种情况下,由于老化,没有观察到相当大的差异。为了能够将这种行为与绝缘体效率联系起来,需要进一步的研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hydrophobicity transfer mechanism evaluation of field aged composite insulators
Surface hydrophobicity is a critical property of silicone rubber composite insulators. It is the primary advantage in comparison to ceramic and therefore is the first to be investigated when field aged insulators are examined. Initially hydrophobicity was evaluated by static contact angle measurements. However field and laboratory investigations have revealed that in the case of outdoor high voltage insulation, it is the dynamic performance that is critical and especially the capability of hydrophobicity recovery, available due to a low molecular weight molecules migration mechanism. This mechanism efficiency is related to the material formulation but also to the experienced service conditions and the ageing degree of the insulator. Therefore laboratory evaluation of field aged insulators can be considerably beneficial for both researchers and utilities. In this direction the hydrophobicity recovery efficiency of three field aged insulators, with two different base polymers is investigated in this paper. Both static and dynamic measurements are performed, according to the CIGRE guidelines. The results verify the superiority of silicone rubber polymer and reveal a recovery time exceeding 10 hours. Not considerable differences have been observed due to aging in this case. Further investigation is required, in order to be able to correlate this behavior to the insulator efficiency.
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