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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Acoustic impact localization in plates: properties and stability to temperature variation
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Acoustic impact localization in plates: properties and stability to temperature variation

机译:板中的声冲击定位:温度变化的特性和稳定性

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摘要

Localizing an impact generated by a simple finger knock on plate-shaped solid objects is made possible in an acoustic time reversal experiment. It is shown that the technique works with a single accelerometer. To better understand the phenomenon and to know exactly the nature of the created waves, a two-dimensional (2-D) elastic simulation is used, showing that in a very good approximation the A0 Lamb mode is the only propagating one. However, it is shown that, within one wavelength distance from the edges, evanescent waves must be taken into account. As a first consequence, the ability to distinguish two neighboring impacts improves when the plate thickness decreases and the frequency increases. As a second consequence, it is expected theoretically that temperature variations lead to a stretching or a contraction of acoustic signatures. The experimental demonstration used a heterodyne interferometer to measure the impulse responses created by a knock on a plate during the cooling. A simple algorithm is shown to perfectly compensate for temperature impacts, which demonstrates the feasibility of the technique for outdoor time reversal interactive experiments
机译:在声学时间倒转实验中,可以使由简单的手指敲击产生的冲击定位在板状固体物体上就可以了。结果表明,该技术适用于单个加速度计。为了更好地理解该现象并确切地了解所产生的波浪的性质,使用了二维(2-D)弹性模拟,该模拟表明,以非常好的近似值,A0 Lamb模式是唯一传播的模式。然而,表明在距边缘一个波长距离内,必须考虑must逝波。作为第一结果,当板厚度减小并且频率增加时,区分两个相邻冲击的能力提高。第二个结果是,理论上预计温度变化会导致声学特征的拉伸或收缩。实验演示使用外差式干涉仪来测量冷却过程中因平板撞击而产生的脉冲响应。展示了一种简单的算法来完美补偿温度影响,从而证明了该技术在户外时间倒转互动实验中的可行性

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