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基于三轴应变计和矢量传感器的变压器铁芯磁特性和磁致伸缩特性测量。

Measurement of Magnetic and Magnetostrictive Characteristics of Transformer Core Based on Triaxial Strain Gauge and - Vector Sensor.

机构信息

School of Electrical Engineering, Shenyang University of Technology, Shenyang 110870, China.

Shenyang Railway Prospecting Design Institute Co., Ltd., Building Electrification Institute, Shenyang 110000, China.

出版信息

Sensors (Basel). 2023 Jun 26;23(13):5926. doi: 10.3390/s23135926.

Abstract

As is well known, the magnetostrictive phenomenon of electrical steel sheet is the main source of electricity in equipment such as transformers. The magnetostrictive characteristic of the actual transformer core is more complicated than that of single-sheet steel. The magnetostriction phenomenon of the transformer core cannot be fully understood by studying only a single piece of electrical steel, so it is necessary to study the local magnetic characteristics of the transformer directly. In this paper, two-limb, one-phase transformer core with a multi-step-lap construction was assembled, a laminated magnetostrictive testing system based on triaxial strain gauges was built, and the local magnetic characteristics were studied using a self-developed - vector sensor. The magnetostrictive and magnetic properties in different local regions were measured and analyzed under several magnetization patterns, and the influence of DC bias on the magnetostrictive property of the corner, yoke, and limb of the core was investigated. The influence of the position of the clamp on the magnetostriction of the transformer core was also studied. The magnetostrictive strain of the single sheet and laminated core was compared and discussed. The results showed that the strain caused by the interaction between laminations in this area can be effectively reduced when clamping in the middle of the yoke.

摘要

众所周知,电工钢片的磁致伸缩现象是变压器等设备中电能的主要来源。实际变压器铁心的磁致伸缩特性比单片钢复杂得多,仅通过研究单片电工钢片不能充分了解变压器铁心的磁致伸缩现象,因此有必要直接研究变压器的局部磁特性。本文组装了具有多阶梯叠片结构的双肢单相变压器铁心,建立了基于三轴应变计的叠片磁致伸缩测试系统,利用自行研制的-矢量传感器研究了局部磁特性。在几种磁化模式下测量和分析了不同局部区域的磁致伸缩和磁性能,并研究了直流偏置对铁心角部、轭部和翼部磁致伸缩性能的影响。还研究了夹件位置对变压器铁心磁致伸缩的影响。比较和讨论了单片和叠片铁心的磁致伸缩应变。结果表明,在轭铁中部夹紧时,可以有效降低该区域层间相互作用引起的应变。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0951/10346938/c832f0f9a0da/sensors-23-05926-g001.jpg

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