论文标题

基于折纸的Zygote结构启用多能变形的可部署结构

Origami-based Zygote structure enables pluripotent shape-transforming deployable structure

论文作者

Lee, Yu-Ki, Hao, Yue, Xi, Zhonghua, Kim, Woongbae, Park, Youngmin, Cho, Kyu-Jin, Lien, Jyh-Ming, Choi, In-Suk

论文摘要

我们提出了一个多能结构的算法框架,该结构从简单的紧凑结构演变为各种复杂的3D结构,以设计形状可转换,可重构,可部署的结构和机器人。我们的算法方法提出了一种将由统一的构建块组成的紧凑结构转换为大型,所需的3D形状的方法。类似于可以根据编码的信息成长为预编程形状的多能干细胞,我们称之为DNA,被称为合子结构的紧凑型面板可以通过对其连接路径进行编程,可以演变成任意的3D结构。我们的堆叠算法通过将所需结构的体素化表面成反比,从而获得了这一编码序列。应用堆叠算法获得的连接路径,可以将指定的Zygote结构的紧凑型堆叠面板部署到各种大型3-D结构中。我们在概念上通过分别释放商业弹簧铰链和热驱动的形状合金(SMA)铰链来证明我们的多能发展结构。我们还表明,所提出的概念可以在明显较小的工作空间中制造大型结构。

We propose an algorithmic framework of a pluripotent structure evolving from a simple compact structure into diverse complex 3-D structures for designing the shape transformable, reconfigurable, and deployable structures and robots. Our algorithmic approach suggests a way of transforming a compact structure consisting of uniform building blocks into a large, desired 3-D shape. Analogous to the pluripotent stem cells that can grow into a preprogrammed shape according to coded information, which we call DNA, compactly stacked panels named the zygote structure can evolve into arbitrary 3-D structures by programming their connection path. Our stacking algorithm obtains this coded sequence by inversely stacking the voxelized surface of the desired structure into a tree. Applying the connection path obtained by the stacking algorithm, the compactly stacked panels named the zygote structure can be deployed into diverse large 3-D structures. We conceptually demonstrated our pluripotent evolving structure by energy releasing commercial spring hinges and thermally actuated shape memory alloy (SMA) hinges, respectively. We also show that the proposed concept enables the fabrication of large structures in a significantly smaller workspace.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源