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Experimental study of Lamb wave propagation in composite laminates

机译:复合层压板羊毛波传播的实验研究

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This paper focuses on the existence of higher-order Lamb wave modes that can be observed from piezoelectric sensors by the excitation of ultrasonic frequencies from piezoelectric actuators. Using three-dimensional (3-D) elasticity theory, the exact dispersion relations governed by transcendental equations are numerically solved for an infinite number of possible wave modes. For symmetric laminates, a robust method by imposing boundary conditions on mid-plane and top surface is developed to separate wave modes. Then both phase and group velocity dispersions of Lamb waves in composites are obtained. Meanwhile three characteristic wave curves including velocity, slowness, and wave curves are introduced to analyze the angular dependency of Lamb wave propagation at a given frequency. In the experiments, two surface-mounted piezoelectric actuators are operated corporately to excite either symmetric or anti-symmetric wave modes with narrow banded excitation signals, and a Gabor wavelet transform is used to extract group velocities from arrival times of Lamb wave received by a piezoelectric sensor. In comparison with the results from the theory and experiment, it is confirmed that the higher-order Lamb waves can be excited from piezoelectric actuators and the measured group velocities agree well with those from 3-D elasticity theory.
机译:本文侧重于通过从压电致动器的超声波频率的激发来从压电​​传感器观察到高阶羔羊波模式的存在。使用三维(3-D)弹性理论,通过超越方程治理的确切色散关​​系对于无限数量的可能波动模式,数值求解。对于对称层压板,通过对中平面和顶表面施加边界条件来开发鲁棒方法以分离波动模式。然后获得复合材料中的λ和群速度分散体的两相和群速度分散。同时引入了三种特征波曲线,包括速度,缓慢和波形曲线,以分析给定频率的羔羊波传播的角度依赖性。在实验中,两个表面上安装的压电致动器在家用的压电致动器中运行,以激发具有窄带激励信号的对称或抗对称波模式,并且Gabor小波变换用于从压电接收的羊波的到达时间提取群速度。传感器。与来自理论和实验的结果相比,确认可以从压电致动器激发高阶羊光波,并且测量的群速度与来自3-D弹性理论的速度很好。

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