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首页> 外文期刊>International journal of non-linear mechanics >Non-linear dynamic behaviour of multi-folding microstructure systems based on origami skill
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Non-linear dynamic behaviour of multi-folding microstructure systems based on origami skill

机译:基于折纸技术的多折叠微结构系统的非线性动力学行为

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This paper presents the theoretical basis for both static and dynamic numerical approaches to the elastic stability and elasto-plastic stability of a folding multi-layered truss. Both analyses are based on bifurcation theory and include geometrical non-linearity. The dynamic analysis includes an allowance for contact between nodes. Comparisons are made between elastic behaviour and elasto-plastic behaviour obtained from both numerical dynamic methods in which bifurcations are demonstrated as a theoretically elastic analysis. Our analysis reveals that several folding behaviours in the pantographic truss are identified during the elastic and elasto-plastic instabilities, where the folding behaviour of the truss is shown to be a function of the initial geometry and velocity of the dynamic loading. The authors suggest that understanding this behaviour will be very useful for developing light-weight structures subject to dynamic loading based on static bifurcation analysis and dynamic analysis.
机译:本文为折叠多层桁架的弹性稳定性和弹塑性稳定性提供了静态和动态数值方法的理论基础。两种分析均基于分叉理论,并包括几何非线性。动态分析包括节点之间接触的余量。比较从两种数值动力学方法获得的弹性行为和弹塑性行为,其中分叉被证明为理论上的弹性分析。我们的分析表明,在弹性和弹塑性不稳定性过程中,可以识别出全景桁架中的几种折叠行为,其中,桁架的折叠行为显示为初始几何形状和动态载荷速度的函数。作者建议,基于静态分叉分析和动态分析,了解这种行为对于开发承受动态载荷的轻型结构非常有用。

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