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首页> 外文期刊>NDT & E international >Using AC field measurement data at an arbitrary liftoff distance to size long surface-breaking cracks in ferrous metals
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Using AC field measurement data at an arbitrary liftoff distance to size long surface-breaking cracks in ferrous metals

机译:在任意提升距离处使用交流场测量数据来确定黑色金属中的长表面裂纹

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摘要

We propose a model-based inversion method to size long surface-breaking cracks in ferrous metals using alternative current field measurement (ACFM) data at an arbitrary liftoff distance. This method employs conjugate gradients optimization to invert measured surface ACFM signal to crack depth. To alleviate the adverse effect of sensor liftoff uncertainty on crack sizing, we propose a blind de-convolution algorithm for reconstructing respective surface ACFM crack signal. In this algorithm, the partially known filter function associated with the sensor liftoff is estimated from which the surface crack signal can be restored. The validity of the proposed inversion method is demonstrated by comparing the actual and predicted depths of several simulated and machine-made long cracks in mild steel test blocks.
机译:我们提出了一种基于模型的反演方法,可以使用任意距离下的交变电流场测量(ACFM)数据对黑色金属中的长表面裂纹进行定尺寸。该方法采用共轭梯度优化,将测得的表面ACFM信号反转为裂纹深度。为了减轻传感器提离不确定性对裂纹尺寸的不利影响,我们提出了一种盲反卷积算法,用于重建相应的表面ACFM裂纹信号。在该算法中,估计了与传感器剥离相关的部分已知的滤波函数,从中可以恢复表面裂纹信号。通过比较低碳钢试块中多个模拟和机器制造的长裂纹的实际深度和预测深度,证明了所提出的反演方法的有效性。

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