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具有异常和可重新编程的吸湿性变形模式的湿度敏感机械超材料。

Moisture-sensitive mechanical metamaterials with unusual and re-programmable hygroscopic deformation modes.

机构信息

Beijing Advanced Innovation Center for Materials Genome Engineering, Institute for Advanced Materials and Technology, University of Science and Technology Beijing, Beijing 100083, China.

School of Materials Science and Engineering, University of Science and Technology Beijing, Beijing 100083, China.

出版信息

Mater Horiz. 2022 Oct 31;9(11):2835-2845. doi: 10.1039/d2mh00670g.

Abstract

Mechanical metamaterials are of great interest due to their counterintuitive deformation under various physical fields. However, the research on metamaterials responding to moisture is still rare and controllable hygroscopic deformation is vital for sensoring, actuating, and stress elimination in a moisture environment. Inspired by the hygroscopic deformation of pinecones, this work studies 2D moisture-sensitive mechanical metamaterials exploiting bi-material curved strips as building blocks by simulations and experiments, which especially demonstrates repeatable programming ability to realize customized unusual hygroscopic deformations. Depending on the structural design of geometrical parameters and material configurations, the metamaterials exhibit a tunable coefficient of hygroscopic expansion from negative to positive, and unusual hygroscopic deformation modes including anisotropic, shearing, gradient, bending, and 3D deformation of 2D structures. Programmable metamaterials of arbitrary hygroscopic deformation are achieved by pixelated design and coding the building blocks. More importantly, the hygroscopic deformation is re-programmable by adopting erasable moisture-proof coatings on specific areas of metamaterials, , it can continuously provide different customized deformation modes in a sample.

摘要

机械超材料由于在各种物理场下的反直觉变形而受到广泛关注。然而,目前关于对湿度响应的超材料的研究还很少,而对湿度可控的伸缩变形对于在潮湿环境中的传感、致动和应力消除至关重要。受松果的吸湿性变形的启发,本工作通过模拟和实验研究了利用双材料弯曲条作为构建块的二维湿度敏感机械超材料,特别展示了可重复编程的能力,以实现定制的非寻常吸湿性变形。根据结构设计的几何参数和材料配置,超材料表现出从负到正可调的吸湿膨胀系数,以及包括各向异性、剪切、梯度、弯曲和二维结构的三维变形在内的非寻常吸湿变形模式。通过像素化设计和对构建块进行编码,可以实现任意吸湿变形的可编程超材料。更重要的是,通过在超材料的特定区域采用可擦除防潮涂层,可以重新编程吸湿性变形,从而在样品中持续提供不同的定制变形模式。

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