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首页> 外文期刊>Engineering Fracture Mechanics >Nondestructive sizing of a 3D surface crack generated in a railway component using closely coupled probes for direct-current potential drop technique
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Nondestructive sizing of a 3D surface crack generated in a railway component using closely coupled probes for direct-current potential drop technique

机译:使用紧密耦合的直流电势下降探针在铁路组件中生成3D表面裂纹的无损尺寸

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摘要

The direct-current potential drop technique was applied to the quantitative estimation of the size and shape of the crack generated in railway components. First, calibration equations that relate the potential drop to the crack depth and crack length along with its location were derived where the boundary element method was used for the electric potential problem. The crack depth, crack length and its location were then determined by analyzing an inverse problem by using the quasi-Newton method which compared the potential drop obtained by the calibration equations with measurements using a carbon steel specimen containing a crack. Although the values of depths were slightly scattered because depth estimations were sensitive to the crack location and changed with even a minimal change in distance between the crack and probes, the estimations of lengths and locations were adequate.
机译:直流电势下降技术用于定量估计铁路部件中产生的裂纹的大小和形状。首先,导出了将电位降与裂纹深度和裂纹长度及其位置相关联的校准方程式,其中使用边界元法解决了电势问题。然后,通过使用准牛顿法分析反问题来确定裂纹深度,裂纹长度及其位置,该方法将校准方程式获得的电势降与使用包含裂纹的碳钢试样的测量值进行了比较。尽管深度值略有分散,因为深度估计值对裂纹位置敏感,并且即使裂纹和探针之间的距离变化很小,其深度也会变化,但是长度和位置的估计值是足够的。

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