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Vibration characteristics of simply supported pyramidal lattice sandwich plates on elastic foundation: Theory and experiments

机译:弹性地基简单支持金字塔晶格三明治板的振动特性:理论与实验

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In this paper, an effective theoretical method is developed and experimentally validated for investigating the vibration behaviors of the simply supported sandwich plates with a pyramidal truss core on elastic foundation. An adjustable sliding support frame that can adapt to variations in the plate length and width is designed to realize the simply supported boundary conditions. The kinematic relations of the sandwich plates are derived, and the constitutive or stress-strain relationships for the face sheets and pyramidal truss core are established. The governing equations of motion are derived by Hamilton's principle, and the structural vibration characteristics are conveniently analyzed. The structural natural frequencies calculated from the present theoretical method are compared with the experimental and FEM simulation results, which validates the correctness and accuracy of the present theoretical model. The effects of the geometric parameters, material properties and combinations as well as elastic foundation on the vibration behaviors are analyzed in details. The key contributions of this paper are the establishment of the dynamic model, the design of the adjustable sliding support frame simulating the simply supported boundary conditions and the systematic parametrical analysis of the structural vibration behaviors by the theoretical and experimental methods.
机译:在本文中,开发了一种有效的理论方法,并实验验证,用于调查简单地支持的夹心板的振动行为,在弹性基础上用金字塔型桁架核心。可调节的滑动支撑框架,其可以适应板长度和宽度的变化以实现简单地支持的边界条件。推导夹层板的运动关系,建立了面板和金字塔桁架芯的组成型或应力 - 应变关系。汉密尔顿原则的管理方程源于汉密尔顿原理,方便地分析了结构振动特性。将根据本理论方法计算的结构自然频率与实验和有限元模拟结果进行比较,这验证了本理论模型的正确性和准确性。细节分析了几何参数,材料特性和组合以及振动行为上的弹性基础的影响。本文的主要贡献是建立动态模型,设计可调滑动支撑框架模拟简单支持的边界条件和结构振动行为的系统参数分析,理论和实验方法。

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