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Homogenization of hexagonal and re-entrant hexagonal structures and wave propagation of the sandwich plates with symplectic analysis

机译:六边形和凹角六边形结构的均质化和夹层板的波传播辛分析

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摘要

The aim of this work is to provide closed-form expressions of the effective elastic constants of hexagonal and re-entrant hexagonal structures, which contain the variable dimensional parameters, such as the relative density, aspect ratio, length ratio and the cell wall angle. We also numerically investigate the dynamic properties of the sandwich plates with hexagonal cores. By taking into account the bending, axial and shearing deformations of the unit cell walls, the effective elastic constants are derived. In order to analyze the wave propagation of the sandwich plates, the original governing equations are converted into a set of the first-order governing differential equations in the Hamilton system, by introducing the dual variables and with the help of a variational principle. The precise integration method in conjunction with the extended Wittrick-Williams algorithm is utilized to numerically solve these equations to obtain the frequencies of structures. The effects of relative density, length ratio, cell wall angle and material distribution parameter on the dispersion relations of hexagonal and re-entrant hexagonal structures are investigated. It is found that the stiffness plays a more dominant role on the dispersion relations than that of the mass, and the effects of length ratio and material distribution parameter are more prominent than that of the cell wall angle. (C) 2017 Elsevier Ltd. All rights reserved.
机译:这项工作的目的是提供六角形和凹角六边形结构的有效弹性常数的封闭形式的表达式,其中包含可变的尺寸参数,例如相对密度,纵横比,长度比和单元壁角。我们还数值研究了具有六边形芯的夹心板的动力学特性。通过考虑晶胞壁的弯曲,轴向和剪切变形,得出有效的弹性常数。为了分析夹层板的波传播,通过引入对偶变量并借助变分原理,将原始控制方程转换为汉密尔顿系统中的一组一阶控制微分方程。精确的积分方法与扩展的Wittrick-Williams算法结合使用来对这些方程进行数值求解,以获得结构的频率。研究了相对密度,长宽比,孔壁角和材料分布参数对六方和凹角六方结构的色散关系的影响。结果表明,刚度在弥散关系中的作用比质量更重要,长度比和材料分布参数的影响比孔壁角度更显着。 (C)2017 Elsevier Ltd.保留所有权利。

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