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Analysis and Optimization Design of Rectangular Coil as Uniform Current Source

机译:矩形线圈作为均匀电流源的分析与优化设计

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摘要

The axis of the rectangular coil is parallel to the surface of the conductor under test, and a uniform eddy current field can be generated on the surface of the conductor. This structure is widely used in eddy current testing. In this paper, a finite element simulation model of a uniform eddy current rectangular coil was built using finite element method (FEM) to obtain the sensitivity of a uniform eddy current rectangular coil with different heights, lengths, widths, and thicknesses. The relationship between the geometric dimensions and sensitivity was obtained by function fitting. Through simulation analysis, it was found that increasing coil height and length can increase coil sensitivity. Keeping the coil turns per unit area constant, increasing the thickness of the coil increases the coil's sensitivity. Increasing the width of the coil, the sensitivity of the sensor increases first and then decreases, so there is a maximum range. The methods and conclusions presented in this paper provide a reference for the optimal design of uniform eddy current rectangular coils.
机译:矩形线圈的轴线平行于被测导体的表面,并且可以在导体的表面上产生均匀的涡流场。该结构广泛用于涡流测试。在本文中,使用有限元方法(FEM)建立了均匀涡流矩形线圈的有限元模拟模型,以获得具有不同高度,长度,宽度和厚度的均匀涡流矩形线圈的灵敏度。几何尺寸与灵敏度之间的关系是通过功能配件获得的。通过仿真分析,发现线圈高度和长度增加可以提高线圈灵敏度。保持线圈每个单元面积恒定,增加线圈的厚度会增加线圈的灵敏度。增加线圈的宽度,传感器的灵敏度首先增加,然后减小,因此存在最大范围。本文提出的方法和结论为均匀涡流矩形线圈的最佳设计提供了参考。

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