Mass optimized self-actuated panels for several truss core topologies

B. D. Jager
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Abstract

Sandwich panels with truss cores offer possibilities for self-actuation. They are analyzed, with emphasis on mass optimal design for failure and stiffness. It is shown that introducing additional freedom in selecting the topology of tetrahedral or pyramidal cores, by 1) making the core units, or even all core members, disjoint, so varying the distance between core units becomes possible, 2) using multiple layers, brings significant advantages. For some conditions, the performance of the modified panel becomes better by a factor of two, causing actuated truss core panels to perform at least as well as, or even better than, panels with, e.g., honeycomb cores, that do not easily allow core actuation. A special case of the analysis is the mass optimal design of panels with 3D-Kagome truss units, which can be regarded as a special geometry for a tensegrity prism.
质量优化自驱动面板的几种桁架核心拓扑
夹层板桁架芯提供了自驱动的可能性。对它们进行了分析,重点是失效和刚度的质量优化设计。结果表明,在四面体或锥体核的拓扑选择中引入额外的自由度,1)使核单元,甚至所有核单元不相交,从而改变核单元之间的距离成为可能,2)采用多层结构,带来了显著的优势。在某些情况下,改进后的面板的性能提高了两倍,使得驱动桁架核心面板的性能至少与蜂窝核心面板一样好,甚至优于不容易允许核心驱动的面板。该分析的一个特例是具有3D-Kagome桁架单元的面板的质量优化设计,这可以看作是张拉整体棱镜的特殊几何形状。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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