超材料
掩蔽
变换光学
分裂环谐振器
计算机科学
超材料隐身
超材料天线
制作
材料科学
工程物理
超材料吸收剂
物理
光电子学
可调谐超材料
电信
天线(收音机)
缝隙天线
医学
病理
定向天线
替代医学
作者
Junxiang Fan,Lei Zhang,Shuaishuai Wei,Zhi Zhang,Seung-Kyum Choi,Bo Song,Yusheng Shi
标识
DOI:10.1016/j.mattod.2021.04.019
摘要
The concept of metamaterials originates from the proposal of left-hand materials with negative refractive index, followed by which, varieties of metamaterials with kinds of fantastic properties that cannot be found in natural materials, such as zero/negative Poisson's ratio, electromagnetic/acoustic/thermal cloaking effect, etc., were come up with. According to their application fields, the metamaterials are roughly classified into four categories, electromagnetic metamaterials, acoustic metamaterials, thermal metamaterials, and mechanical metamaterials. By designing structures and arranging the distribution of materials with different physical parameters, the function of metamaterials can be realized in theory. Additive manufacturing (AM) technology provides a more direct and efficient way to achieve a sample of metamaterial and experiment verification due to the great advantages in fabricating complex structures. In this review, we introduce the typical metamaterials in different application situations and their design methods. In particular, we are focused on the fabrication of metamaterials and the application status of AM technology in them. Furthermore, we discuss the limits of present metamaterials in the aspect of design method and the disadvantages of existing AM technology, as well as the development tendency of metamaterials.
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