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Influence of nano boron nitride (BN) on electric corrosion of fluororesin based super hydrophobic coatings for insulators

机译:纳米氮化硼(BN)对氟树脂基绝缘体用超疏水涂层的电腐蚀的影响

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摘要

Ice accumulation on transmission lines, caused by freezing rain, wet snow or frost, is one of major problems influencing safety of electric power system. Super hydrophobic coating on insulators is a kind of efficient way to solve the problem. Many kinds of super hydrophobic coatings are widely used in power system, especially fluororesin based coating which is cheap and has good outdoor weathering capabilities. However, after arc burning, fluororesin based super-hydrophobic coating would be destroyed due to partial temperature rising. Addition of high thermal conductive nanoparticles can increase thermal conductivity of coating and improve its arc resistant ability compared with undoped coating. In this paper, heat conductivity behaviors of super hydrophobic with BN particles is studied. The charge polarity, charging time and charging voltage also play an important role on arc electric erosion behaviors. Samples were prepared by dispersing BN nanoparticle into coating. DC arc test was performed using inclined plane test method.
机译:由冻雨,湿雪或霜冻引起的输电线路上的积冰是影响电力系统安全的主要问题之一。绝缘子上的超疏水涂层是解决该问题的一种有效方法。许多超疏水涂料广泛用于电力系统,尤其是氟树脂基涂料,这种涂料便宜且具有良好的户外耐候性。然而,在电弧燃烧之后,由于局部温度升高,将破坏基于氟树脂的超疏水涂层。与未掺杂的涂层相比,添加高导热性的纳米颗粒可以提高涂层的导热率并提高其耐电弧能力。本文研究了具有BN颗粒的超疏水性的​​热导行为。充电极性,充电时间和充电电压对电弧电腐蚀行为也起着重要作用。通过将BN纳米颗粒分散到涂层中来制备样品。使用倾斜平面测试方法进行直流电弧测试。

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