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Geometry of Transformable Metamaterials Inspired by Modular Origami

机译:由模块化折纸启发的可转型超材料的几何形状

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摘要

Modular origami is a type of origami where multiple pieces of paper are folded into modules, and these modules are then interlocked with each other forming an assembly. Some of them turn out to be capable of large-scale shape transformation, making them ideal to create metamaterials with tuned mechanical properties. In this paper, we carry out a fundamental research on two-dimensional (2D) transformable assemblies inspired by modular origami. Using mathematical tiling and patterns and mechanism analysis, we are able to develop various structures consisting of interconnected quadrilateral modules. Due to the existence of 4R linkages within the assemblies, they become transformable, and can be compactly packaged. Moreover, by the introduction of paired modules, we are able to adjust the expansion ratio of the pattern. Moreover, we also show that transformable patterns with higher mobility exist for other polygonal modules. The design flexibility among these structures makes them ideal to be used for creation of truly programmable metamaterials.
机译:模块化折纸是一种折纸,其中多个纸张被折叠成模块,然后将这些模块彼此互锁,形成组件。其中一些结果是能够进行大规模的形状转换,使其成为具有调谐机械性能的超材料。在本文中,我们对由模块化折纸启发的二维(2D)可转化组件进行了基础研究。使用数学平铺和模式和机制分析,我们能够开发由互连的四边形模块组成的各种结构。由于组件内的4R连接的存在,它们变得可变形,并且可以紧凑地封装。此外,通过引入配对模块,我们能够调整图案的膨胀比。此外,我们还表明,对于其他多边形模块,存在具有更高移动性的可变形图案。这些结构之间的设计灵活性使其成为创建真正可编程的超材料的理想选择。

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