超材料
可控性
智能材料
计算机科学
机械工程
纳米技术
材料科学
工程物理
工程类
应用数学
数学
光电子学
作者
Qi Jixiang,Zihao Chen,Peng Jiang,Wenxia Hu,Yonghuan Wang,Zeang Zhao,Xiaofei Cao,Shushan Zhang,Ran Tao,Ying Li,Daining Fang
标识
DOI:10.1002/advs.202102662
摘要
Abstract Active mechanical metamaterials (AMMs) (or smart mechanical metamaterials) that combine the configurations of mechanical metamaterials and the active control of stimuli‐responsive materials have been widely investigated in recent decades. The elaborate artificial microstructures of mechanical metamaterials and the stimulus response characteristics of smart materials both contribute to AMMs, making them achieve excellent properties beyond the conventional metamaterials. The micro and macro structures of the AMMs are designed based on structural construction principles such as, phase transition, strain mismatch, and mechanical instability. Considering the controllability and efficiency of the stimuli‐responsive materials, physical fields such as, the temperature, chemicals, light, electric current, magnetic field, and pressure have been adopted as the external stimuli in practice. In this paper, the frontier works and the latest progress in AMMs from the aspects of the mechanics and materials are reviewed. The functions and engineering applications of the AMMs are also discussed. Finally, existing issues and future perspectives in this field are briefly described. This review is expected to provide the basis and inspiration for the follow‐up research on AMMs.
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