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Influence of electric charge on numerical simulation of eddy current testing signals due to a conductive crack when using multi-media element

机译:电荷对使用多媒体元件时导电裂纹引起的涡流测试信号数值模拟的影响

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The multi-media finite element (MME) treating the discontinuity of the conductivity within the element was proposed by authors for fast simulation of the eddy current testing (ECT) signals of a conductive crack such as a stress corrosion crack. However, in the cases when eddy current consists of a large component perpendicular to the crack surface, the simulation accuracy is sometimes not very good because of the appearance of electric charge on the crack surface. In this paper, the influences of the surface electric charge on the implementation of the numerical method and on the simulation of the ECT signals were analyzed theoretically. A series of numerical analyses were designed to investigate the scope of feasibility of the MME. The simulation accuracy of the MME for different probe orientations and crack shapes was discussed based on the analysis of the distribution of the surface charge.
机译:作者提出了一种处理元件内电导率不连续性的多媒体有限元(MME),用于快速模拟导电裂纹的涡流测试(ECT)信号,例如应力腐蚀裂纹。然而,在涡流由垂直于裂缝表面的大型部件组成的情况下,模拟精度有时是由于裂缝表面上的电荷的外观而不是很好。本文在理论上分析了对数值方法的实现对数值方法和模拟的影响。设计了一系列数值分析,旨在研究MME的可行性范围。基于对表面电荷分布的分析,讨论了用于不同探针方向和裂纹形状的MME的模拟精度。

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