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Time-Domain and Frequency-Domain Eddy Current Simulations by the Finite Element Method

机译:时域和频域涡流的有限元模拟

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In this study, the numerical simulations of swept-frequency eddy current (SFEC) and pulsed eddy current (PEC) by means of the finite element method (FEM) are demonstrated. Finite element simulations carried out to analyze the interactions of magnetic fields with two-layer magnetic metal structures (i.e., a bulk metal with coating) are also discussed. The closed-form analytical solutions of swept-frequency eddy current and pulsed eddy current techniques have been successfully applied to the predications of many nondestructive testing (NDT) phenomena. But the analytical solutions are only applicable to simple geometric situations. To predict the EC signals of complicated material structures, numerical methods like boundary element method (BEM) or finite element method are used. The numerical study of single-frequency eddy-current phenomena for NDT purposes has been applied to many practical inspection situations for which analytical solutions are either difficult or impossible to obtain. Since coating inspection and the influence of materials parameters (electrical conductivity, magnetic permeability) are the main concern of NDT applications, we will compare and discuss the numerical prediction results of the frequency-domain swept-frequency eddy current and the time-domain pulsed eddy current by the finite element method.
机译:在这项研究中,通过有限元方法(FEM)对扫频涡流(SFEC)和脉冲涡流(PEC)进行了数值模拟。还讨论了用于分析磁场与两层磁性金属结构(即带有涂层的块状金属)相互作用的有限元模拟。扫频涡流和脉冲涡流技术的闭合形式解析解已成功应用于许多无损检测(NDT)现象的预测。但是分析解决方案仅适用于简单的几何情况。为了预测复杂材料结构的EC信号,使用了边界元法(BEM)或有限元法等数值方法。用于无损检测的单频涡流现象的数值研究已应用于许多实际检查情况,这些情况很难或不可能获得解析解。由于涂层检查和材料参数(电导率,磁导率)的影响是无损检测应用的主要考虑因素,我们将比较并讨论频域扫频涡流和时域脉冲涡流的数值预测结果。电流通过有限元法计算。

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