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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Strain sensitivity model for guided waves in plates using the time-reversal technique
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Strain sensitivity model for guided waves in plates using the time-reversal technique

机译:时间逆向技术的平板导波应变敏感性模型

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摘要

The use of the time-reversal technique to detect variations in the external applied traction in a strip of aluminum plate is presented. Experiments have been performed in transmission-reception mode, using two fixed ultrasonic transducers near the ends of the plate. Two different parameters of the time-reversed signal are used for monitoring the strain state, the peak amplitude and the focusing time. The inverse filter technique was used in the transmitted signal to equalize the amplitude spectrum, enhancing the sensitivity in the focus amplitude by 5 times. The external traction sensitivity was experimentally verified by using an aluminum plate (800 ?? 100 ?? 3 mm) and two 5-MHz ultrasonic transducers spaced 700 mm apart. At the maximum strain state (180 ;C;strain), the peak value was reduced by about 10% in the conventional process and by 50% using the inverse filter. To evaluate the effects of the strain in the time-reversal signal, a theoretical model was constructed. This model is successful in predicting the changes in the group delay and, consequently, the focusing time using a linear equation. This relationship can also be used to determine the strain level quantitatively. The experimental results show that the time-reversal signal technique can be used in practical monitoring of changes at the strain level in mechanical structures.
机译:提出了使用时间反转技术来检测铝板带中外部施加的牵引力的变化。实验是在发射接收模式下进行的,在板端附近使用两个固定的超声换能器。时间反转信号的两个不同参数用于监视应变状态,峰值幅度和聚焦时间。反向滤波器技术用于发射信号中,以均衡幅度频谱,从而将聚焦幅度的灵敏度提高了5倍。使用铝板(800 ?? 100 ?? 3毫米)和两个相距700毫米的5 MHz超声换能器通过实验验证了外部牵引力灵敏度。在最大应变状态(180℃;应变)下,传统方法中的峰值降低了约10%,而使用逆滤波器降低了50%。为了评估应变对时间反转信号的影响,构建了理论模型。该模型成功地使用线性方程式预测了群延迟以及因此的聚焦时间的变化。这种关系也可以用来定量确定应变水平。实验结果表明,时间倒转信号技术可用于实际监测机械结构应变水平的变化。

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