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Analytical solutions for sandwich plates considering permeation effect by 3-D elasticity theory

机译:三维板考虑3-D弹性理论的夹持效果的分析解决方案

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In this paper, an exact analytical solution for simply supported sandwich plate which considers the permeation effect of adhesives is presented. The permeation layer is described as functionally graded material (FGM), the elastic modulus of which is assumed to be graded along the thickness following the exponential law. Based on the exact three-dimensional (3-D) elasticity theory, the solution of stresses and displacements for each layer is derived. By means of the recursive matrix method, the solution can be efficiently obtained for plates with many layers. The present solution obtained can be used as a benchmark to access other simplified solutions. The comparison study indicates that the finite element (FE) solution is close to the present one when the FGM layer in the FE model is divided into a series of homogeneous layers. However, the present method is more efficient than the FE method, with which the mesh division and computation are time-consuming. Moreover, the solution based on Kirchhoff-Love plate theory is greatly different from the present solution for thick plates. The influence of the thickness of the permeation layer on the stress and displacement fields of the sandwich plate is discussed in detail. It is indicated that the permeation layer can effectively relieve the discontinuity stress at the interface.
机译:本文介绍了考虑粘合剂渗透效果的简单支撑夹层板的精确分析溶液。渗透层被描述为功能梯度材料(FGM),其弹性模量被假定在指数律之后沿着厚度进行分级。基于精确的三维(3-D)弹性理论,推导出每层的应力和位移溶液。借助于递归矩阵方法,可以为具有多层的板有效地获得溶液。获得的本解决方案可以用作访问其他简化解决方案的基准。比较研究表明,当Fe模型中的FGM层被分成一系列均匀层时,有限元(Fe)溶液接近本发明的溶液。然而,本方法比FE方法更有效,其中网格划分和计算是耗时的。此外,基于Kirchhoff-Love板理论的解决方案与厚板的本溶液大大不同。详细讨论了渗透层厚度对夹层板的应力和位移场的影响。表示渗透层可以有效地减轻界面处的不连续性应力。

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