超材料
材料科学
隔振
振动
泊松比
变形(气象学)
有限元法
弹簧(装置)
声学
结构工程
复合材料
泊松分布
光电子学
物理
工程类
数学
统计
作者
Kai Liu,Le Han,Wenxia Hu,Longtao Ji,Shengxin Zhu,Zhishuai Wan,Xudong Yang,Yu‐Ling Wei,Zongjie Dai,Zeang Zhao,Zhen Li,Pengfei Wang,Ran Tao
标识
DOI:10.1016/j.matdes.2020.109153
摘要
The unusual properties of mechanical metamaterials are determined by the configuration of artificial periodic structures. However, the mechanical performance of conventional metamaterials is irreversible and cannot perceive and respond to the changes in the environment. In present study, a zero Poisson's ratio metamaterial with intelligent switching mechanical properties and vibration isolation effect is proposed. Based on a 4D printing method of shape memory polymer, this metamaterial is created that can sense temperature changes and switch mechanical properties. The macroscopic deformation and the morphology change of the metamaterial during compression tests are analyzed using experimental and finite element methods. The irregular buckling distortion of the metamaterial is eliminated by cylindrical design, and controllable and adjustable local deformation and stress-strain curve are achieved based on microstructure gradient design. Subsequently, this work focused on the vibration isolation performance of metamaterials, and found fascinating shock absorption performance. Compared with traditional linear spring, this metamaterial spring can effectively reduce the vibration amplitude of certain frequency bands before reaching the resonance peak, which provides a new realization method for low-frequency vibration isolation design.
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