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Optimal design of sandwich plates with honeycomb core

机译:蜂窝芯夹芯板的优化设计

摘要

This work deals with the problem of the optimum design of a sandwich structure composed of two laminated skins and a honeycomb core. The goal is to propose a numerical optimisation procedure that does not make any simplifying hypothesis in order to obtain a true global optimal solution for the considered problem. In order to face the design of the sandwich structure at both meso and macro scales, we use a two-level optimisation strategy. At the first level, we determine the optimum geometry of the unit cell together with the material and geometric parameters of the laminated skins, while at the second level we determine the optimal skins lay-up giving the geometrical and material parameters issued from the first level. We will illustrate the application of our strategy to the least-weight design of a sandwich plate submitted to several constraints: on the first buckling load, on the positive-definiteness of the stiffness tensor of the core, on the ratio between skins and core thickness and on the admissible moduli for the laminated skins.
机译:这项工作解决了由两个层压表皮和一个蜂窝状芯组成的三明治结构的最佳设计问题。目的是提出一种不做任何简化假设的数值优化程序,以便为所考虑的问题获得真正的全局最优解。为了在中尺度和宏观尺度上都面对三明治结构的设计,我们使用了两级优化策略。在第一层,我们确定最佳晶胞的几何形状以及层压蒙皮的材料和几何参数,而在第二层,我们确定最佳蒙皮的叠层,给出从第一层发出的几何和材料参数。我们将说明我们的策略在受到以下限制的夹心板的最小重量设计中的应用:在第一个屈曲载荷下,在芯刚度张量的正定性上,在蒙皮与芯厚之间的比率上以及叠层蒙皮的允许模量。

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  • 年度 2014
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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