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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Simulation-Based Characterization of Mechanical Parameters and Thickness of Homogeneous Plates Using Guided Waves
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Simulation-Based Characterization of Mechanical Parameters and Thickness of Homogeneous Plates Using Guided Waves

机译:基于导波的基于仿真的均质板力学参数和厚度表征

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摘要

Properties of isotropic plates in terms of material constants and thickness are characterized by making use of dispersion characteristics of propagating Lamb waves. A numerical model is inversely optimized in order to match dispersion curves measured by laser vibrometry. This kind of material characterization has gained interest in recent research. Improvements in accuracy and efficiency of the optimization process are therefore important steps toward an industrial application of this technique to nondestructive testing and online monitoring. For this purpose, the use of a fast converging numerical model based on spectral collocation has been found to be well suited. Furthermore, we improved the signal-to-noise ratio by utilizing long-time broadband excitation signals for multimodal excitation of Lamb waves. The wavenumber spectrum up to 2.5 MHz is acquired by measurements with a laser-scanning vibrometer. In order to exploit the information contained in high-order modes, we present an algorithm to match the measured data to the calculated modes during the optimization process, leading to higher accuracy of the estimated model parameters. The characterization results are verified by comparison to measurements with a conventional ultrasonic method.
机译:各向同性板在材料常数和厚度方面的特性通过利用传播的兰姆波的色散特性来表征。逆向优化数字模型,以匹配通过激光振动法测量的色散曲线。这种材料表征已引起了最近研究的兴趣。因此,优化过程的准确性和效率的提高是将该技术应用于无损检测和在线监控的重要步骤。为此,已经发现使用基于光谱搭配的快速收敛数值模型是非常合适的。此外,我们通过将长时间宽带激励信号用于Lamb波的多峰激励,提高了信噪比。通过使用激光扫描振动计进行测量,可获得高达2.5 MHz的波数频谱。为了利用高阶模式中包含的信息,我们提出了一种算法,可以在优化过程中将测量数据与计算模式进行匹配,从而提高估计模型参数的准确性。通过与常规超声方法的测量结果进行比较,可以验证表征结果。

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