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首页> 外文期刊>The European physical journal. Applied physics >Modeling of thin structures in eddy current testing with shell elements
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Modeling of thin structures in eddy current testing with shell elements

机译:壳单元在涡流测试中对薄结构建模

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摘要

The modeling and design of eddy currents sensors for non-destructive testing applications, generally, requires numerical methods. Among these methods, the finite element method is one of the most used. Indeed, it presents a great capability to treat a large variety of configurations. However, in the study of eddy current testing problems, the existence of structures that have a geometrical dimension smaller than the others (thin air gaps, coatings...) will lead to difficulties related to the meshing process. The introduction of particular elements such as shell elements allows to simplify the modeling of these problems. In this paper, the shell elements are used in two different 2D axisymmetric formulations, the electric formulation a* and the magnetic formulation t-φ in order to simulate the behaviour of the electromagnetic fields. The results obtained with the two formulations are compared with analytical solutions.
机译:用于无损检测应用的涡流传感器的建模和设计通常需要数值方法。在这些方法中,有限元方法是最常用的方法之一。确实,它具有治疗多种构造的强大能力。然而,在研究涡流测试问题时,存在几何尺寸小于其他几何尺寸(薄的气隙,涂层等)的结构会导致与啮合过程相关的困难。诸如外壳元素之类的特定元素的引入可以简化这些问题的建模。在本文中,壳单元用于两种不同的2D轴对称公式,即电公式a *和磁公式t-φ,以模拟电磁场的行为。将两种配方获得的结果与分析溶液进行比较。

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