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Numerical simulation and experiment for inspection of corner-shaped components using ultrasonic phased array

机译:超声相控阵检查角形零件的数值模拟与实验

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摘要

This paper proposes an effective method for corner-shaped components inspection using ultrasonic phased array. We first improved the finite-difference time domain (FDTD) method by way of averaging properly the different ultrasonic parameters of media on the both sides of interface to simulate ultrasonic wave propagation in dual-layered media. Then, an inspection method for corner-shaped structures using ultrasonic phased array and an iterative calculation approach of delay time based on Snell's law for complicated geometries were put forward and described in detail. Experiments on an aluminum alloy 2014 sample were conducted to validate the modeling results and the inspection method. Finally, practical application was carried out to image and size the defect in carbon fiber reinforced plastic (CFRP) corner-shaped specimen, yielding experiment results that are in good quantitative agreement with the true values.
机译:本文提出了一种有效的超声相控阵角形零件检测方法。我们首先通过适当地平均界面两侧的介质的不同超声参数,以模拟超声波在双层介质中的传播,改进了时差有限域(FDTD)方法。然后,提出并详细介绍了利用超声相控阵对角形结构进行检测的方法以及基于斯涅尔定律的延迟时间迭代计算方法。对铝合金2014样品进行了实验,以验证建模结果和检验方法。最后,通过实际应用对碳纤维增强塑料(CFRP)角形试样中的缺陷进行成像和尺寸确定,得出的实验结果与真实值定量吻合良好。

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