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Application of the ultrasonic characterization methods for highly attenuating plastic materials

机译:超声表征方法在高衰减塑料材料中的应用

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摘要

In this paper, prediction of the back surface reflection, which is based on attenuation and phase velocity dispersion estimation method, in highly attenuating plastic (polyvinylidene fluoride—PVDF) has been described. Estimation of the attenuation law is based on the inverse transfer function of the object approximation in the frequency domain. The oscillating character of the inverse transfer function of the highly attenuating plastic material gives rise to an ill-posed problem for approximation. It has been solved in two ways: application of the Tikhonov regularization process and iterative adjustment of the approximation parameters. The estimated attenuation coefficient α_0 and power n have been used for calculation of phase velocity dispersion using the Kramers-Kronig relations and having attenuation coefficient measured at single-frequency value. The reconstructed waveforms of the ultrasonic back surface reflections using the estimated attenuation and phase velocity dispersion curves have been presented and compared with the experimental one.
机译:在本文中,已经描述了基于衰减和相速度色散估计方法的高衰减塑料(聚偏二氟乙烯-PVDF)中的背面反射的预测。衰减定律的估计基于频域中对象近似的逆传递函数。高衰减塑料材料的逆传递函数的振荡特性引起不适定的近似问题。它已通过两种方式解决:Tikhonov正则化过程的应用以及对逼近参数的迭代调整。估计的衰减系数α_0和功率n已经用于利用Kramers-Kronig关系来计算相速度色散,并且具有在单频值处测量的衰减系数。提出了使用估计的衰减和相速度色散曲线重建的超声背面反射波形,并将其与实验结果进行了比较。

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