论文标题
可部署折纸结构的逆设计,该结构近似于一般表面
Inverse design of deployable origami structures that approximate a general surface
论文作者
论文摘要
形状变形可以找到广泛的实用程序,从小型支架和大太阳帆的部署到软机器人技术的驱动和推进。折纸结构提供了一个用于形状的模板,但是设计和折叠结构的规则使整合到广泛而多功能的设计工具中具有挑战性。在这里,我们开发了一个顺序的两阶段优化框架,以通过可部署的折纸结构近似一般表面。优化是在所有可能的刚性折叠四边形网格折纸的空间中进行的。因此,我们框架生产的折纸结构具有理想的工程属性:它们可以在平坦的参考表上轻松制造,通过受控的折叠运动部署到其目标状态,然后在涉及存储和可移植性的应用中,在紧凑的折叠状态下。所证明的可达到的表面包括那些具有较少但多样化的曲率和尖锐脊的前所未有的表面。该框架不仅提供了设计工程和体系结构中各种可部署和可伸缩的表面的工具,而且还提供了优化其他属性和功能的途径。
Shape-morphing finds widespread utility, from the deployment of small stents and large solar sails to actuation and propulsion in soft robotics. Origami structures provide a template for shape-morphing, but rules for designing and folding the structures are challenging to integrate into broad and versatile design tools. Here, we develop a sequential two-stage optimization framework to approximate a general surface by a deployable origami structure. The optimization is performed over the space of all possible rigidly and flat-foldable quadrilateral mesh origami. So, the origami structures produced by our framework come with desirable engineering properties: they can be easily manufactured on a flat reference sheet, deployed to their target state by a controlled folding motion, then to a compact folded state in applications involving storage and portability. The attainable surfaces demonstrated include those with modest but diverse curvatures and unprecedented ones with sharp ridges. The framework provides not only a tool to design various deployable and retractable surfaces in engineering and architecture, but also a route to optimizing other properties and functionality.