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首页> 外文期刊>Journal of Nondestructive Evaluation >Integral Equation Method for Evaluation of Eddy-Current Impedance of a Rectangular, Near Surface Crack Inside a Cylindrical Hole
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Integral Equation Method for Evaluation of Eddy-Current Impedance of a Rectangular, Near Surface Crack Inside a Cylindrical Hole

机译:用于评估矩形靠近表面裂纹矩形射频阻抗的积分方程方法

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摘要

An integral equation method for solving the eddy-current nondestructive evaluation problem of a flat, rectangular, near surface crack inside of a cylindrical hole in a conducting material is presented. The method involves expanding the Green's tensor, the incoming field, and the jump in electric potential over the crack in suitable basis functions. Here, plane waves, cylindrical waves, and basis functions related to the Chebyshev polynomials, are used. The way of discretization in this method leads to a formulation where the scattering is defined by a scattering matrix, independent of the incoming field. This presents an advantage, when conducting numerical simulations, since the scattering matrix does not have to be recalculated for every probe position. The numerical calculations are straightforward to perform and model predictions are compared with finite element results.
机译:呈现了一种整体方程方法,用于求解平坦,矩形,靠近导电材料中圆柱孔内的靠近表面裂纹的涡流非破坏性评价问题。 该方法涉及在合适的基函数中扩展绿色的张量,进入的领域和电势的跳跃。 这里,使用与Chebyshev多项式有关的平面波,圆柱形波和基函数。 该方法中的离散化方式导致配方,其中散射由散射矩阵定义,与进入的字段无关。 当进行数值模拟时,这提出了优点,因为对于每个探针位置不必重新计算散射矩阵。 数值计算是直接的,以执行,并且将模型预测与有限元结果进行比较。

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