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Effects of high thermal conductivity on temperature rise of epoxy cast winding for power transformer

机译:高导热系数对电力变压器环氧浇铸绕组温升的影响

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摘要

Epoxy resin is widely used for insulation in cast dry-type transformers, in spite of its weak ability of thermal conduction. One approach to obtain a higher thermal conductivity is to introduce inorganic fillers with high thermal conductivity. The purpose of this paper is to study the effect of high thermal conductivity on temperature rise of epoxy cast windings. In this paper, micro and nano boron nitride (BN) particles were mixed into epoxy with idfferent mass fraction. Then the composite was cast into mold to make different transformer windings. Thermal distribution was calculated and simulated by finite element analysis. An then experiments were carried out to verify the simulation results and investigate the effects of the improved thermal conductivity on temperature rise. Obtained results showed that the thermal conductivity had a significant effect on temperature rise. With increasing the thermal conductivity, the maximum temperature decreased obviously. The maximum temperature difference and time to reach thermal equilibrium state were decreased. It is concluded that the ability of thermal conduction of the transformer can be improved by using the epoxy with high thermal conductivity. Dielectric breakdown strength (BD strength) of different windings were also investigated and it was found that pure epoxy resin had the highest BD strength, while the composites filled with BN particles were all lower than neat epoxy.
机译:尽管环氧树脂的导热能力较弱,但仍广泛用于铸造干式变压器的绝缘。获得较高热导率的一种方法是引入具有高热导率的无机填料。本文的目的是研究高导热率对环氧浇铸绕组温升的影响。本文将不同质量分数的微米和纳米氮化硼(BN)颗粒混合到环氧树脂中。然后将复合材料浇铸到模具中,制成不同的变压器绕组。通过有限元分析计算并模拟了热分布。然后进行了实验,以验证模拟结果并研究改善的导热率对温度升高的影响。所得结果表明,热导率对温升有显着影响。随着导热系数的增加,最高温度明显降低。最大温差和达到热平衡状态的时间减少了。结论是,通过使用具有高导热率的环氧树脂,可以提高变压器的导热能力。还研究了不同绕组的介电击穿强度(BD强度),发现纯环氧树脂具有最高的BD强度,而填充BN颗粒的复合材料均低于纯环氧树脂。

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