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A ZERO-STIFFNESS ELASTIC SHELL STRUCTURE

机译:零刚度弹性壳结构

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摘要

A remarkable shell structure is described that, due to a particular combination of geometry and initial stress, has zero stiffness for any finite deformation along a twisting path; the shell is in a neutrally stable state of equilibrium. Initially the shell is straight in a longitudinal direction, but has a constant, nonzero curvature in the transverse direction. If residual stresses are induced in the shell by, for example, plastic deformation, to leave a particular resultant bending moment, then an analytical inextensional model of the shell shows it to have no change in energy along a path of twisted configurations. Real shells become closer to the inextensional idealization as their thickness is decreased; experimental thin-shell models have confirmed the neutrally stable configurations predicted by the inextensional theory. A simple model is described that shows that the resultant bending moment that leads to zero stiffness gives the shell a hidden symmetry, which explains this remarkable property.
机译:描述了一种非凡的壳体结构,由于几何形状和初始应力的特定组合,对于沿扭曲路径的任何有限变形,其刚度为零;外壳处于平衡的中性稳定状态。最初,壳体在纵向上是笔直的,但在横向上具有恒定的非零曲率。如果通过例如塑性变形在壳体中引起残余应力以留下特定的合成弯矩,则壳体的分析性未拉伸模型表明其沿扭曲构型的路径没有能量变化。实际壳随着厚度的减小而变得更接近于理想化。实验性薄壳模型已经证实了由扩展理论预测的中性稳定构型。描述了一个简单的模型,该模型表明导致零刚度的合成弯矩使壳体具有隐藏的对称性,这说明了这一非凡的特性。

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