基于同步压缩变换的临界折射纵波波速精确测量
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TB553

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国家自然科学基金(51777052)、河北省自然科学基金(E2017202055)、天津市自然科学基金 (16JCYBJC19000)、河北省高校科研重点项目(ZD2018214)资助


Accurate measurement of critical refracting longitudinal wave velocity based on wavelet synchrosqueezed transform
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    摘要:

    基于声弹性效应,采用临界折射纵波检测金属材料的残余应力有较为广泛的应用前景。然而临界折射纵波速对应力的声弹性效应较弱,这很大程度上影响了材料应力检测的分辨率。为了提高临界折射纵波波速检测精度,提出一种非线性分解技术(同步压缩变换)对临界折射纵波进行波形变换与重构,精确计算超声到达时刻。以1 060铝板为研究对象,基于有限元仿真软件分析了铝板中临界折射纵波的波形特性,以此为依据调节实验中的超声波信号从而提高实验中临界折射纵波的波形准确性。实验精确测量临界折射纵波在1 060铝板中的传播时间,并计算了铝板中的波速,误差不超过005%。实验结果验证了提出的临界折射纵波波速精确计算方法的有效性。

    Abstract:

    Based on the acoustic elastic effect, the utilization of critical refracting longitudinal waves to detect the residual stress of metal materials has a wide application prospect. However, the critical refracting longitudinal wave velocity has a weak acoustic elastic effect on stress, which greatly affects the resolution of material stress detection. To improve the detection accuracy of the critical refracting longitudinal wave velocity, a nonlinear decomposition technique (wavelet synchrosqueezed transform) is proposed to transform and reconstruct the critical refracting longitudinal wave. In this way, the ultrasonic arrival time can be calculated accurately. Taking the 1 060 aluminum plate as the research object, the waveform features of critical refracting longitudinal wave are analyzed based on the finite element simulation software. Based on these features, the ultrasonic signals in the experiment are adjusted to improve the waveform accuracy of the critical refracting longitudinal wave. Experimental results show that the propagation time of the critically refracted longitudinal wave in the 1 060 aluminum plate can be accurately measured, and the wave velocity is calculated with an error of no more than 005%. The validity of the accurate calculation method of critical refracting longitudinal wave velocity is verified.

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张闯,王标,刘素贞,杨庆新.基于同步压缩变换的临界折射纵波波速精确测量[J].仪器仪表学报,2019,40(7):97-105

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  • 在线发布日期: 2022-02-17
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