Hu Xinyu, Tan Ting, Wang Benlong, Yan Zhimiao
State Key Laboratory of Ocean Engineering, Department of Mechanics, School of Naval Architecture, Ocean & Civil Engineering, Shanghai Jiao Tong University, 200240, Shanghai, China.
State Key Laboratory of Mechanical System and Vibration, School of Mechanical Engineering, Shanghai Jiao Tong University, 200240, Shanghai, China.
Nat Commun. 2023 Oct 23;14(1):6709. doi: 10.1038/s41467-023-42323-1.
Recent advancements in reprogrammable metamaterials have enabled the development of intelligent matters with variable special properties in situ. These metamaterials employ intra-element physical reconfiguration and inter-element structural transformation. However, existing mono-characteristic homo-element mechanical metamaterials have limited reprogramming functions. Here, we introduce a reprogrammable mechanical metamaterial composed of origami elements with heterogeneous mechanical properties, which achieves various mechanical behavior patterns by functional group transformations and ring reconfigurations. Through the anisotropic assembly of two heterogeneous elements into a functional group, we enable mechanical behavior switching between positive and negative stiffness. The resulting polygonal ring exhibits rotational deformation, zero Poisson's ratio stretching/compression deformation, and negative Poisson's ratio auxetic deformation. Arranging these rings periodically yields homogeneous metamaterials. The reconfiguration of quadrilateral rings allows for continuous fine-tunability of the mechanical response and negative Poisson's ratio. This mechanical metamaterial could provide a versatile material platform for reprogrammable mechanical computing, multi-purpose robots, transformable vehicles and architectures at different scales.
可重新编程超材料的最新进展使得能够原位开发具有可变特殊性质的智能物质。这些超材料采用元素内物理重构和元素间结构转变。然而,现有的单特性同元素机械超材料的重新编程功能有限。在此,我们介绍一种由具有异质机械性能的折纸元素组成的可重新编程机械超材料,它通过官能团转变和环重构实现各种机械行为模式。通过将两个异质元素各向异性组装成一个官能团,我们实现了正负刚度之间的机械行为切换。由此产生的多边形环呈现出旋转变形、零泊松比拉伸/压缩变形以及负泊松比拉胀变形。将这些环周期性排列可得到均匀的超材料。四边形环的重构允许对机械响应和负泊松比进行连续微调。这种机械超材料可为不同尺度的可重新编程机械计算、多功能机器人、可变形车辆和建筑提供一个通用的材料平台。