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Numerical simulation of the Lamb wave propagation in honeycomb sandwich panels: A parametric study

机译:兰姆波在蜂窝夹芯板上传播的数值模拟:参数研究

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The paper aims to describe the guided Lamb wave propagation in honeycomb sandwich panels. The application of Lamb waves is a well-known method in modern online structural health monitoring techniques. To analyze the wave propagation in such a complicated geometry with an analytical solution is hardly possible; therefore a dimensional finite element simulation is used. A piezoelectric actuator is used to excite the waves on the sandwich panel surface. The extended model of the honeycomb sandwich panel is consisting of two plate layers and a mid-core layer. In addition, a simplified model is used to reduce the computing costs, where the mid-core of the sandwich panel is replaced by a homogeneous layer. The results from the extended model and the simplified model are in most cases in a good agreement; however the limitations of using the simplified model are discussed. A parametric study is used to show the influence of the geometrical properties of honeycomb plates, the material properties of the skin plates and the loading frequency on the group velocity, the wave length and the energy transmission. Each of these properties provides valuable information to design an efficient health monitoring system. Finally, an experimental test is presented.
机译:本文旨在描述兰姆波在蜂窝夹芯板上的传播。兰姆波的应用是现代在线结构健康监测技术中的一种众所周知的方法。很难用解析方法来分析如此复杂的几何形状中的波传播。因此,使用了三维有限元模拟。压电致动器用于激发夹心板表面上的波。蜂窝夹芯板的扩展模型由两个板层和一个中芯层组成。另外,使用简化模型来降低计算成本,其中夹心板的中芯被均质层代替。在大多数情况下,扩展模型和简化模型的结果吻合良好;但是,讨论了使用简化模型的局限性。使用参数研究来显示蜂窝板的几何特性,蒙皮板的材料特性以及加载频率对群速度,波长和能量传输的影响。这些属性中的每一个都为设计有效的健康监控系统提供了有价值的信息。最后,进行了实验测试。

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