基于高频柱面超声导波的螺栓轴向应力测量
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TH73

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国家自然科学基金(62071123)项目资助


Bolt axial stress measurement based on high-frequency cylindrical ultrasonic guided wave
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    摘要:

    基于金属杆件中高频超声导波的传播特性,提出使用柱面导波高阶不同模态群速度比值的单探头螺栓轴向应力测量方 法。 使用数值方法求解考虑晶粒散射衰减的 Pochhammer-Chree 方程,得到了导波群速度 & 衰减系数频散曲线,并分析了其在 高频区的传播规律。 结合非线性声学以及弹性力学理论,推出基于群速度比值的螺栓轴向应力测量方法。 搭建超声应力测量 平台,讨论了脉冲超声激励下的实测导波信号特点并提出使用经验小波算法对信号进行模态分解,有效获取了信号中特定模态 的群速度。 使用该方法以及传统的纵横波声时比法进行了螺栓轴向应力对比标定和测量实验,结果表明前者平均测量误差约 为 4% ,其精度明显高于传统方法(平均测量误差 6% )且具有更简便的测量流程。

    Abstract:

    A novel single probe bolt axial stress measurement method is put forward using the group speed ratio of different high order modes of cylindrical guided wave based on the propagation characteristics of high-frequency ultrasonic guided wave in metal rod parts. The Pochhammer-Chree equation considering the grain scattering attenuation is solved with numerical method. Then, the dispersion curves of group velocity and attenuation coefficient for guided wave are obtained, and the propagation laws of the guided wave in highfrequency region are analyzed. Next, the bolt axial stress measurement method based on the group speed ratio is derived based on the nonlinear acoustics and elastic mechanics theory. The ultrasonic stress measurement platform was built. The characteristics of the ultrasonic pulse-echo guided wave signals are discussed, the empirical wavelet transform algorithm is proposed to conduct mode decomposition of the signals and acquire the group velocity of a specific mode in the signal. A bolt axial stress calibration / measurement comparison experiment was carried out using the proposed method and the traditional method with the transit time ratio of the longitudinal wave and transverse wave. The results indicate that the average measurement error of the proposed method is only about 4% , which is significantly better than that of the traditional method ( average measurement error 6% ), and the proposed method has a more concise measurement process.

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何星亮,陈 平.基于高频柱面超声导波的螺栓轴向应力测量[J].仪器仪表学报,2021,(4):179-186

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  • 在线发布日期: 2023-06-28
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