Chirality effects in panto-cylindrical structures

Maximilian Stilz, Jonas Breuling, Simon Eugster, Marek Pawlikowski, Roman Grygoruk
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Abstract

In this paper, we apply a numerical integration strategy recently developed for determining the deformation shapes of structures constituted by Cosserat rods, to predict the behavior of panto-cylinders. Panto-cylinders have, as microstructure, a set of two families of helicoidal beams interconnected by perfect or elastic joints. The pivot’s free rotation axis is, in the reference configuration, orthogonal to the cylindrical surfaces spanned by the beams. We perform a series of numerical simulations looking for the mechanical parameters which exalt the chirality effects in the structure. For the performed compression, extensions, shear, and torsion tests, we find chiral deformation patterns with a dependence on the type of joint and its length.
泛圆柱结构中的手性效应
在本文中,我们将最近开发的用于确定由 Cosserat 杆件构成的结构的变形形状的数值积分策略用于预测泛圆柱的行为。泛圆柱的微观结构是由两组螺旋梁组成的,两组螺旋梁通过完美或弹性连接相互连接。在参考构型中,枢轴的自由旋转轴与横梁所跨的圆柱面正交。我们进行了一系列数值模拟,以寻找能在结构上突出手性效应的机械参数。在所进行的压缩、拉伸、剪切和扭转试验中,我们发现手性变形模式与接头类型及其长度有关。
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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