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A multi-scale approach for the optimum design of sandwich plates with honeycomb core. Part I: homogenisation of core properties

机译:采用多尺度方法优化蜂窝芯夹心板的设计。第一部分:核心属性的均质化

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摘要

This work deals with the problem of the optimum design of a sandwich panel. The design process is based on a general two-level optimisation strategy involving different scales: the meso-scale for both the unit cell of the core and the constitutive layer of the laminated skins and the macro-scale for the whole panel. Concerning the meso-scale of the honeycomb core, an appropriate model of the unit cell able to properly provide its effective elastic properties (to be used at the macro-scale) must be conceived. To this purpose, in this first paper, we present the numerical homogenisation technique as well as the related finite element model of the unit cell which makes use of solid elements instead of the usual shell ones. A numerical study to determine the effective properties of the honeycomb along with a comparison with existing models and a sensitive analysis in terms of the geometric parameters of the unit cell have been conducted. Numerical results show that shell-based models are no longer adapted to evaluate the core properties, mostly in the context of an optimisation procedure where the parameters of the unit cell can get values that go beyond the limits imposed by a 2D model.
机译:这项工作解决了夹心板的最佳设计问题。设计过程基于涉及不同比例的通用两级优化策略:核心的单元单元和层压蒙皮的本构层的介观尺度,以及整个面板的宏观尺度。关于蜂窝芯的细观尺度,必须构想出能够适当地提供其有效弹性特性(在宏观尺度上使用)的晶胞的适当模型。为此,在第一篇论文中,我们介绍了数值均化技术以及单位单元的相关有限元模型,该模型利用了实体元素而不是通常的壳单元。进行了确定蜂窝的有效特性的数值研究,并与现有模型进行了比较,并对单位晶格的几何参数进行了敏感分析。数值结果表明,基于壳的模型不再适用于评估核心属性,这主要是在优化过程的情况下进行的,在该过程中,晶胞的参数可以获得的值超出了2D模型所施加的限制。

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