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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Experimental verification of a finite element model used in a magnetic flux leakage inverse problem
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Experimental verification of a finite element model used in a magnetic flux leakage inverse problem

机译:漏磁反问题中有限元模型的实验验证

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摘要

A nonlinear three-dimensional finite element model was developed in order to determine the length, width and depth of several surface-breaking flaws on steel plates using magnetic flux leakage signals. The flaw geometries were reconstructed using the model as part of an inverse problem procedure put together with a commercially available finite element tool and a standard optimization algorithm. A total of 128 experimental signals were used to validate the finite element model. Our results show good agreement between the actual and reconstructed geometries, demonstrating the model strength over variations in flaw length, width, depth and different levels of the excitation field.
机译:建立了非线性三维有限元模型,以利用磁通量泄漏信号确定钢板上多个表面破裂缺陷的长度,宽度和深度。使用该模型作为逆问题过程的一部分,使用商业有限元工具和标准优化算法将缺陷的几何形状重建。总共使用128个实验信号来验证有限元模型。我们的结果表明,实际几何形状与重构几何形状之间具有良好的一致性,证明了模型在缺陷长度,宽度,深度和激发场的不同水平上的变化所产生的强度。

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