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Lamb wave propagation in composite laminates using a higher-order plate theory

机译:使用高阶平板理论的复合材料层中的兰姆波传播

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A new consistent higher-order plate theory is developed for composites with the aim of accurately and efficiently modeling multiple higher-order Lamb waves over a higher frequency range. The dispersion relations based on this theory that can be analytically determined comprise five symmetric and six anti-symmetric wave modes. Computational procedures for phase and group velocities are discussed. Meanwhile, characteristic wave curves including velocity, slowness, and wave curves are introduced to investigate the dispersive and anisotropic behavior of Lamb wave propagation in composites. From numerical results of Lamb waves in both lamina and symmetric laminate, it shows that the higher-order plate theory not only gives good agreement with three-dimensional (3-D) elasticity theory over a wide high frequency range, but also provides a more robust method than 3-D elasticity theory. This study demonstrates a feasibility of using the proposed theory for realizing near real-time Structural Health Monitoring for composites at a higher frequency range.
机译:针对复合材料开发了一种新的一致的高阶板理论,其目的是在更高的频率范围内准确,高效地对多个高阶兰姆波建模。可以通过分析确定的基于该理论的色散关系包括五个对称波模式和六个反对称波模式。讨论了相速度和群速度的计算程序。同时,引入了包括速度,慢度和波动曲线在内的特征波动曲线,以研究Lamb波在复合材料中传播的色散和各向异性行为。从层板和对称层板中的兰姆波的数值结果可以看出,高阶板理论不仅在宽的高频范围内与三维(3-D)弹性理论具有良好的一致性,而且还提供了更多比3D弹性理论更健壮的方法。这项研究证明了使用所提出的理论对更高频率范围的复合材料实现近实时结构健康监测的可行性。

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