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Study of Transformer Core Vibration and Noise Generation Mechanism Induced by Magnetostriction of Grain-Oriented Silicon Steel Sheet

机译:晶体硅钢板磁致伸缩磁轴变压器芯振动发电机理研究

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The problem of vibration and noise in the iron core of power transformers remains quite topical. Insofar as the state-of-the-art iron core and binding production adopt the lamination method and weft-free adhesive tape, respectively, the transformer core vibration is mainly attributed to the silicon steel sheet (SSS) magnetostriction. In this paper, based on the magnetostriction of grain-oriented SSS, an in-depth analysis of the vibration generation mechanism in the transformer core was performed. The SSS microstructure was observed, its magnetostrictive properties at different magnetic flux densities were tested, and a core-simulating four-corner iron core model was constructed to analyze the vibration characteristics. Modal, vibration, and noise tests were performed on an actual 110?kV transformer core under no-load conditions. The results show that the core vibration is related to SSS’s deformation mechanism. The vibration magnitude in different core parts varies due to the magnetostriction anisotropy. The vibration in vertical to the core plane is the largest, and its magnitude in the core center is lower than those at the seams in the same plane. The core vibration and noise exhibit a significant correlation, while modal characteristics strongly influence the core vibration and noise intensity.
机译:电力变压器铁芯中振动和噪声的问题仍然非常局部。分别为最先进的铁芯和绑定生产分别采用层压方法和无纬胶带,变压器芯振动主要归因于硅钢板(SSS)磁致伸缩。本文基于面向谷物SSS的磁致伸缩,进行了变压器芯中的振动产生机构的深入分析。观察到SSS微观结构,测试了不同磁通密度的磁致伸缩性能,并且构造了芯模拟的四角铁芯模型以分析振动特性。在无负载条件下,在实际110 kV变压器芯上进行模态,振动和噪声测试。结果表明,核心振动与SSS的变形机制有关。不同芯部件中的振动幅度因磁致伸缩各向异性而变化。垂直于芯平面的振动是最大的,并且其在芯中心中的幅度低于同一平面中的接缝处的振动。核心振动和噪声表现出显着的相关性,而模态特性强烈影响核心振动和噪声强度。

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