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Eddy Current Defect Detection of Side Transverse Crack in Railhead by Integrating Experiment with Simulation

机译:通过将实验与模拟集成实验涡流缺陷检测探头侧横向裂纹

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This study investigated the use of an eddy current technique for detecting side transverse cracks in a railhead. Quantitative analysis of defect signals in a railhead with side transverse cracks was realized through actual defect detection and finite-element simulation. In eddy current testing of the railhead, first, the general pattern of variation in the detected signals was obtained for different sizes of cracks via actual defect detection of rail samples. Then, finite-element simulation was used to verify the accuracy of the experimental results and to test the relationships between the detected signals and the size and depth of the cracks. The simulation results show that an extremely linear relation between crack depth and output signals in quantitative length of crack cases. In the results, simulation results can be applied to the analysis of the actual detected data. The eddy-current-defect detection method that combined experiment with simulation was very effective and can be applied in future research.
机译:本研究研究了使用涡流技术来检测轨道中的侧横裂缝。通过实际缺陷检测和有限元模拟实现了具有侧横向裂纹的轨道中缺陷信号的定量分析。在涡轮头的涡流测试中,首先,通过轨道样本的实际缺陷检测,获得不同尺寸的裂缝的检测信号中的一般变化模式。然后,使用有限元模拟来验证实验结果的准确性,并测试检测到的信号与裂缝的尺寸和深度之间的关系。仿真结果表明,裂纹裂缝定量长度裂纹深度和输出信号之间的极其线性关系。在结果中,仿真结果可以应用于实际检测数据的分析。涡流 - 缺陷检测方法与仿真组合的实验非常有效,可应用于未来的研究。

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