Tao Ye, Lee Yi-Chin, Liu Haolin, Zhang Xiaoxiao, Cui Jianxun, Mondoa Catherine, Babaei Mahnoush, Santillan Jasio, Wang Guanyun, Luo Danli, Liu Di, Yang Humphrey, Do Youngwook, Sun Lingyun, Wang Wen, Zhang Teng, Yao Lining
Human-Computer Interaction Institute, Carnegie Mellon University, Pittsburgh, PA, USA.
School of Artistic Design and Creation, Zhejiang University City College, Hangzhou, China.
Sci Adv. 2021 May 5;7(19). doi: 10.1126/sciadv.abf4098. Print 2021 May.
Morphing structures are often engineered with stresses introduced into a flat sheet by leveraging structural anisotropy or compositional heterogeneity. Here, we identify a simple and universal diffusion-based mechanism to enable a transient morphing effect in structures with parametric surface grooves, which can be realized with a single material and fabricated using low-cost manufacturing methods (e.g., stamping, molding, and casting). We demonstrate from quantitative experiments and multiphysics simulations that parametric surface grooving can induce temporary asynchronous swelling or deswelling and can transform flat objects into designed, three-dimensional shapes. By tuning the grooving pattern, we can achieve both zero (e.g., helices) and nonzero (e.g., saddles) Gaussian curvature geometries. This mechanism allows us to demonstrate approaches that could improve the efficiency of certain food manufacturing processes and facilitate the sustainable packaging of food, for instance, by creating morphing pasta that can be flat-packed to reduce the air space in the packaging.
变形结构通常是通过利用结构各向异性或成分不均匀性在平板中引入应力来设计的。在此,我们发现了一种基于扩散的简单通用机制,可在具有参数化表面凹槽的结构中实现瞬态变形效果,这可以用单一材料实现,并采用低成本制造方法(如冲压、模塑和铸造)制造。我们通过定量实验和多物理场模拟证明,参数化表面开槽可诱导临时异步膨胀或收缩,并可将扁平物体转变为设计好的三维形状。通过调整开槽图案,我们可以实现零高斯曲率几何形状(如螺旋线)和非零高斯曲率几何形状(如鞍形)。这种机制使我们能够展示一些方法,例如通过制造可扁平包装以减少包装内空气空间的变形意大利面,来提高某些食品制造过程的效率并促进食品的可持续包装。