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Effects of the interface roughness in metal-adhesive-metal structure on the propagation of shear horizontal waves

机译:金属粘合金属结构界面粗糙度对剪切水平波传播的影响

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The influence of the interface roughness in a three-layer metal-adhesive-metal structure on the propagation of shear horizontal waves and more particularly on the transmission coefficient versus the frequency is studied in the particular case of a periodic grating of triangular grooves. For given phonon frequencies, the interaction of an incident shear horizontal mode with the periodical grating gives rise to a retro-converted mode. A numerical finite element simulation permits us to predict the existence of the phonon mode in the three-layer structure and to obtain the evolution of the transmission coefficient around the phonon frequency. An experimental study, based on a generation of waves by a piezocomposite contact transducer and a reception by a laser vibrometer, then confirms these predictions. Finally, a parametric numerical study is performed: the influence of the depth of the roughness and of the number of spatial periods of the grooves on the transmission coefficient is studied. (C) 2017 Acoustical Society of America.
机译:在三角形槽的周期光栅的特定情况下,研究了三层金属 - 粘合金属结构对三层金属粘合金属结构的影响,更具体地对透射系数与频率相比。对于给定的声子频率,入射剪切水平模式与周期光栅的相互作用产生了一种复古转换模式。数值有限元模拟允许我们预测三层结构中声子模式的存在,并获得围绕声子频率的传输系数的演变。基于通过压电复合材料接触换能器产生的波的实验研究和激光振动计的接收,然后确认这些预测。最后,研究了参数数值研究:研究了粗糙度深度和凹槽的空间周期数对透射系数的影响。 (c)2017年声学社会。

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