首页> 外文期刊>IEEE Transactions on Dielectrics and Electrical Insulation >Experimental and numerical analysis of cellulosic insulation failures of continuously transposed conductors under short circuits and thermal ageing in power transformers
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Experimental and numerical analysis of cellulosic insulation failures of continuously transposed conductors under short circuits and thermal ageing in power transformers

机译:短路下连续转置导体纤维素绝缘故障的实验性和数值分析及电力变压器热老化

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摘要

The integrity of the cellulosic insulation in power transformers is considered one of the most relevant parameters that affects their performance and reliability. Electric faults, such as short circuits, have thermal and mechanical effects that degrade the paper and can eventually produce the end-of-life of the transformer. The evolution of the properties of the paper insulation of a commercial continuously transposed conductor due to thermal ageing was characterised through the degree of polymerisation and tensile testing. Failure initiation and propagation in the paper was analysed macroscopically and microscopically using scanning electron microscope. A finite element numerical mechanical model of the conductor was implemented to reproduce the experiments and to obtain the load level and strain state that produce failure at each ageing state, aiming at developing a failure model for the insulation. This model may contribute to an improvement in manufacturing processes and management of the electrical system.
机译:电力变压器中纤维素绝缘的完整性被认为是影响其性能和可靠性的最相关的参数之一。电动故障,如短路,具有降低纸张的热和机械效果,最终可以产生变压器的寿命。通过热老化引起的商业连续转置导体的纸质绝缘性的性能的演变的特征在于聚合程度和拉伸试验。使用扫描电子显微镜在宏观和显微镜下分析纸张中的失败启动和传播。实施导体的有限元数值机械模型以再现实验,并获得在每个老化状态下产生失效的负载水平和应变状态,旨在开发绝缘的故障模型。该模型可能有助于改善电气系统的制造过程和管理。

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