A mechanically robust and facile shape morphing using tensile-induced buckling

Author:

An Siqi12ORCID,Cao Yajun12ORCID,Jiang Hanqing123ORCID

Affiliation:

1. School of Engineering, Westlake University, Hangzhou, Zhejiang 310030, China.

2. Westlake Institute for Advanced Study, Hangzhou, Zhejiang 310024, China.

3. Research Center for Industries of the Future, Westlake University, Hangzhou, Zhejiang 310030, China.

Abstract

Inspired by the adaptive mechanisms observed in biological organisms, shape-morphing soft structures have emerged as promising platforms for many applications. In this study, we present a shape-morphing strategy to overcome existing limitations of the intricate fabrication process and the lack of mechanical robustness against mechanical perturbations. Our method uses tensile-induced buckling, achieved by attaching restraining strips to a stretchable substrate. When the substrate is stretched, the stiffness mismatch between the restraining strips and the substrate, and the Poisson’s effect on the substrate cause the restraining strips to buckle, thereby transforming initially flat shapes into intricate three-dimensional (3D) configurations. Guided by an inverse design method, we demonstrate the capability to achieve complicated and diverse 3D shapes. Leveraging shape morphing, we further develop soft grippers exhibiting outstanding universality, high grasping efficiencies, and exceptional durability. Our proposed shape-morphing strategy is scalable and material-independent, holding notable potential for applications in soft robotics, haptics, and biomedical devices.

Publisher

American Association for the Advancement of Science (AAAS)

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