超材料
微尺度化学
辅助
计算机科学
实现(概率)
灵活性(工程)
可制造性设计
材料科学
机械工程
纳米技术
工程类
数学
光电子学
统计
数学教育
复合材料
作者
Chenxi Lu,Meng-Ting Hsieh,Zhifeng Huang,Chi Zhang,Yaojun Lin,Qiang Shen,Chen Fei,Jian Zhang
出处
期刊:Engineering
[Elsevier BV]
日期:2022-10-01
卷期号:17: 44-63
被引量:65
标识
DOI:10.1016/j.eng.2021.12.023
摘要
Mechanical metamaterials can be defined as a class of architected materials that exhibit unprecedented mechanical properties derived from designed artificial architectures rather than their constituent materials. While macroscale and simple layouts can be realized by conventional top-down manufacturing approaches, many of the sophisticated designs at various length scales remain elusive, due to the lack of adequate manufacturing methods. Recent progress in additive manufacturing (AM) has led to the realization of a myriad of novel metamaterial concepts. AM methods capable of fabricating microscale architectures with high resolution, arbitrary complexity, and high feature fidelity have enabled the rapid development of architected metamaterials and drastically reduced the design-computation and experimental-validation cycle. This paper first provides a detailed review of various topologies based on the desired mechanical properties, including stiff, strong, and auxetic (negative Poisson’s ratio) metamaterials, followed by a discussion of the AM technologies capable of fabricating these metamaterials. Finally, we discuss current challenges and recommend future directions for AM and mechanical metamaterials.
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