Filipov Evgueni T, Tachi Tomohiro, Paulino Glaucio H
Department of Civil and Environmental Engineering, University of Illinois at Urbana-Champaign, Urbana, IL 61801;
Graduate School of Arts and Sciences, University of Tokyo, Tokyo 153-8902, Japan;
Proc Natl Acad Sci U S A. 2015 Oct 6;112(40):12321-6. doi: 10.1073/pnas.1509465112. Epub 2015 Sep 8.
Thin sheets have long been known to experience an increase in stiffness when they are bent, buckled, or assembled into smaller interlocking structures. We introduce a unique orientation for coupling rigidly foldable origami tubes in a "zipper" fashion that substantially increases the system stiffness and permits only one flexible deformation mode through which the structure can deploy. The flexible deployment of the tubular structures is permitted by localized bending of the origami along prescribed fold lines. All other deformation modes, such as global bending and twisting of the structural system, are substantially stiffer because the tubular assemblages are overconstrained and the thin sheets become engaged in tension and compression. The zipper-coupled tubes yield an unusually large eigenvalue bandgap that represents the unique difference in stiffness between deformation modes. Furthermore, we couple compatible origami tubes into a variety of cellular assemblages that can enhance mechanical characteristics and geometric versatility, leading to a potential design paradigm for structures and metamaterials that can be deployed, stiffened, and tuned. The enhanced mechanical properties, versatility, and adaptivity of these thin sheet systems can provide practical solutions of varying geometric scales in science and engineering.
长期以来,人们一直知道薄片在弯曲、屈曲或组装成较小的互锁结构时,其刚度会增加。我们引入了一种独特的取向,以“拉链”方式刚性连接可折叠的折纸管,这大大增加了系统的刚度,并仅允许一种柔性变形模式,结构可通过该模式展开。折纸沿规定的折线进行局部弯曲,从而实现管状结构的柔性展开。所有其他变形模式,如结构系统的整体弯曲和扭转,刚度都要大得多,因为管状组件受到过度约束,薄片会承受拉伸和压缩。拉链连接的管子产生了异常大的特征值带隙,这代表了变形模式之间刚度的独特差异。此外,我们将兼容的折纸管连接成各种蜂窝状组件,这些组件可以增强机械特性和几何通用性,从而为可展开、变硬和调谐的结构和超材料带来一种潜在设计范例。这些薄片系统增强的机械性能、通用性和适应性,可以为科学和工程中不同几何尺度的实际问题提供解决方案。