Mousanezhad Davood, Kamrava Soroush, Vaziri Ashkan
Department of Mechanical and Industrial Engineering, Northeastern University, Boston, MA, 02115, USA.
Sci Rep. 2017 Nov 1;7(1):14792. doi: 10.1038/s41598-017-13654-z.
Origami, widely known as the ancient Japanese art of paper folding, has recently inspired a new paradigm of design for mechanical metamaterials and deployable structural systems. However, lack of rationalized design guidelines and scalable manufacturing methods has hindered their applications. To address this limitation, we present analytical methods for designing origami-based closed-loop units with inherent foldability, and for predicting their folding response (e.g., folding force, bistability, and area and volume change by folding). These units can be employed as building blocks for application-driven design and modular construction of foldable structures with desired performance and manufacturing scalability.
折纸,作为广为人知的日本古老的纸张折叠艺术,最近激发了机械超材料和可展开结构系统设计的新范式。然而,缺乏合理的设计指南和可扩展的制造方法阻碍了它们的应用。为了解决这一限制,我们提出了用于设计具有固有可折叠性的基于折纸的闭环单元的分析方法,以及用于预测其折叠响应(例如,折叠力、双稳态以及折叠引起的面积和体积变化)的分析方法。这些单元可作为构建模块,用于具有所需性能和制造可扩展性的可折叠结构的应用驱动设计和模块化构建。