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新型三维手性超材料的变形机制

Deformation mechanism of innovative 3D chiral metamaterials.

作者信息

Wu Wenwang, Qi Dexing, Liao Haitao, Qian Guian, Geng Luchao, Niu Yinghao, Liang Jun

机构信息

Institute of Advanced Structure Technology, Beijing Institute of Technology, Beijing, 100081, China.

Beijing Key Laboratory of Lightweight Multi-functional Composite Materials and Structures, Beijing, 100081, China.

出版信息

Sci Rep. 2018 Aug 22;8(1):12575. doi: 10.1038/s41598-018-30737-7.

Abstract

Rational design of artificial microstructured metamaterials with advanced mechanical and physical properties that are not accessible in nature materials is very important. Making use of node rotation and ligament bending deformation features of chiral materials, two types of innovative 3D chiral metamaterials are proposed, namely chiral- chiral- antichiral and chiral- antichiral- antichiral metamaterials. In-situ compression and uniaxial tensile tests are performed for studying the mechanical properties and deformation mechanisms of these two types of 3D chiral metamaterials. Novel deformation mechanisms along different directions are explored and analyzed, such as: uniform spatial rotation deformation, tensile-shearing directed (compression-shearing directed), tensile-expansion directed (compression-shrinkage directed) deformation mechanisms of 3D chiral metamaterials, and competitions between different types of deformation mechanisms are discussed. The proposed 3D chiral metamaterials represents a series of metamaterials with robust microstructures design feasibilities.

摘要

合理设计具有自然界材料所不具备的先进机械和物理性能的人工微结构超材料非常重要。利用手性材料的节点旋转和韧带弯曲变形特征,提出了两种创新的三维手性超材料,即手性-手性-反手性和手性-反手性-反手性超材料。进行了原位压缩和单轴拉伸试验,以研究这两种三维手性超材料的力学性能和变形机制。探索并分析了沿不同方向的新型变形机制,例如:三维手性超材料的均匀空间旋转变形、拉伸-剪切定向(压缩-剪切定向)、拉伸-膨胀定向(压缩-收缩定向)变形机制,并讨论了不同类型变形机制之间的竞争。所提出的三维手性超材料代表了一系列具有强大微结构设计可行性的超材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/efe0/6105625/b6a635e8fc00/41598_2018_30737_Fig1_HTML.jpg

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