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Guided wave propagation in honeycomb sandwich structures using a piezoelectric actuator/sensor system

机译:使用压电致动器/传感器系统在蜂窝夹层结构中进行导波传播

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摘要

Due to the complex nature of such composite structures, an understanding of the guided wave propagation mechanism in honeycomb composite panels with different frequencies inherently imposes many challenges. In this paper, a numerical simulation is first conducted to investigate the wave propagation mechanism in honeycomb sandwich structures using piezoelectric actuators/sensors. In contrast to most of the previous work, elastic wave responses based on the real geometry of the honeycomb core are obtained by using the finite element method (FEM). Based on the simulation, the global guided waves in the composite can be observed when the loading frequency is low and the leaky guided waves in the skin panel are found when the loading frequency is sufficiently high. The applicability of the homogenization technique for a celled core is discussed. The effects of cell geometry on the wave propagation are also demonstrated. Experimental testing is finally conducted to validate the results of numerical simulation and very good agreement is observed. Specifically, some guided wave propagation characteristics such as group velocity dispersion and mode tuning capabilities with the presence of a honeycomb core are discussed.
机译:由于这种复合结构的复杂性,对具有不同频率的蜂窝复合板中的导波传播机理的理解固有地带来了许多挑战。在本文中,首先进行了数值模拟,以研究使用压电致动器/传感器的蜂窝夹层结构中的波传播机理。与大多数以前的工作相反,通过使用有限元方法(FEM)获得基于蜂窝芯实际几何形状的弹性波响应。基于模拟,当加载频率较低时,可以观察到复合材料中的整体导波,而当加载频率足够高时,可以发现蒙皮面板中的泄漏导波。讨论了均质化技术对多孔核的适用性。还演示了单元几何形状对波传播的影响。最后进行实验测试以验证数值模拟的结果,并观察到非常好的一致性。具体来说,讨论了一些导波传播特性,例如在蜂窝状芯存在的情况下的群速度色散和模式调谐能力。

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