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Creep Stress Failure in High Voltage Transformer Interwinding Insulation

机译:高压变压器绕组绝缘中的蠕变应力失效

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摘要

Three phase transformers have an insulation system which is a complex three dimensional structure of paper and pressboard surrounding the conductors immersed in a large volume of mineral oil. In core form transformers, a key insulation area is the region between adjacent phases which is often reinforced with vertical pressboard barriers. At the higher voltages, these pressboard barriers provide a crucial element in the insulation structure between the phases. The barriers are subjected to large electrical and thermal stresses. The pressboard barriers sit in the time varying electric field pattern generated from the transformer winding coils which are operating with 120° phase difference. The electric field can be resolved along the surfaces of the pressboard and this is termed creep stress or tangential stress. This electric stress can lead to surface tracking along the oil-pressboard boundary layer. A large scale test facility has been developed to investigate the effects of creep stress with the goal of understanding the onset of surface tracking on the pressboard. This paper details the main features of the test platform and control equipment. Finally, the paper includes some initial results of experiments conducted to detect partial discharge under two temperature conditions.
机译:三相变压器具有绝缘系统,该绝缘系统是纸和压纸板的复杂三维结构,围绕着浸没在大量矿物油中的导体。在铁芯形式的变压器中,关键的绝缘区域是相邻相之间的区域,通常通过垂直压板隔板来加强。在较高的电压下,这些纸板隔板在相之间的绝缘结构中提供了至关重要的元素。阻挡层承受很大的电应力和热应力。压板隔板位于由以120°相位差运行的变压器绕组线圈产生的时变电场模式中。电场可以沿着压板的表面分解,这被称为蠕变应力或切向应力。这种电应力会导致沿着机油压制边界层的表面跟踪。已经开发了大规模的测试设备来研究蠕变应力的影响,目的是了解压板上表面跟踪的开始。本文详细介绍了测试平台和控制设备的主要功能。最后,本文包括一些初步的实验结果,这些实验是在两个温度条件下检测局部放电的。

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