Recent progress in the design and fabrication of multifunctional structures based on metamaterials

材料科学 制作 超材料 纳米技术 工程物理 系统工程 光电子学 工程类 医学 病理 替代医学
作者
Xujin Yuan,Mingji Chen,Yin Yao,Xiaogang Guo,Yixing Huang,Zhilong Peng,Xiaochao Jin,Ran Tao,Shenyu Duan,Hua Liao,Kai Yao,Ying Li,Hongshuai Lei,Chen Xu,Guangfu Hong,Daining Fang
出处
期刊:Current Opinion in Solid State & Materials Science [Elsevier]
卷期号:25 (1): 100883-100883 被引量:52
标识
DOI:10.1016/j.cossms.2020.100883
摘要

• Metamaterials became hotspot in electromagnetics, acoustics, and mechanics fields. • Since the integration of mechanical features and specific functions is still a challenge, the application of metamaterials has so far been limited. • Researches emerge in incorporating multifunctional design into a single structure. • Advances in design of multifunctional structures based on metamaterials are reviewed. Metamaterials, with unconventional properties realized through various ingenious designs of micro-architectures, have become a recent research hotspot in the fields of electromagnetics, acoustics, mechanics, and physics. Since the integration of mechanical features and specific functions is still a challenge, the application of metamaterials has so far been limited. The research in relevant areas has shown a clear trend of incorporating the multifunctional design into a single integrated structure. Here, we review the latest advances in the design and fabrication of multifunctional structures based on metamaterials, covering three main aspects, i.e., the direct design of mechanical metamaterials and their multifunctional structures, the intelligent multifunctional structures with shape-shifting capabilities, the metamaterials-based design to achieve both the load bearing capability and other specific functions. We emphasize the important roles that the mechanics-driven designs play, as well as the mechanisms and other key aspects behind the multifunctional structures. The structure-level innovations could not only improve multifunctional features, but also pave the way to function fusion structures that allow the incorporation of ‘conflicting’ functions into a single structure.
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