Mechanical Behaviour of the Cellulosic Dielectric Materials of Windings in Power Transformers in Operation

C. Oria, A. Ortiz, I. Fernández, I. Carrascal, D. Ferreño
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引用次数: 1

Abstract

Power transformers are crucial elements in electrical systems, and the end of their useful life is commonly conditioned by the degradation of the cellulosic insulation materials inside them. These materials are subjected to elevated temperatures and mechanical stresses, generated by electrical solicitations which deform the copper conductors and subsequently the paper, and also to the chemical reactions which take place in the dielectric oil in which the paper is impregnated. In order to better understand the behaviour of cellulosic insulation, we have studied the previous bibliography analysing the mechanical behaviour of cellulosic materials. At present, there are no experimental results analysing how the paper responds to the deformation suffered by the copper conductor in a realistic situation. We have developed a simulation model describing the mechanical behaviour of a standardised copper conductor wrapped with four layers of dielectric paper, using ANSYS Workbench Static Structural, which will be compared with experimental results afterwards.
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电力变压器绕组纤维介质材料的力学性能
电力变压器是电力系统中的关键元件,其使用寿命的结束通常取决于其内部纤维素绝缘材料的降解。这些材料受到高温和机械应力的影响,这些应力是由电震动产生的,它使铜导体变形,从而使纸张变形,同时也受到浸渍纸张的介电油中发生的化学反应的影响。为了更好地理解纤维素绝缘的行为,我们研究了以前分析纤维素材料力学行为的参考书目。目前还没有实验结果分析该材料在实际情况下对铜导体变形的响应。我们开发了一个模拟模型,描述了四层介电纸包裹的标准化铜导体的力学行为,使用ANSYS Workbench静态结构,然后将其与实验结果进行比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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