热膨胀
材料科学
微电子
超材料
负热膨胀
航空航天
热的
航程(航空)
纳米技术
工程物理
光电子学
复合材料
航空航天工程
热力学
物理
工程类
作者
Elisa Boatti,Nikolaos Vasios,Katia Bertoldi
标识
DOI:10.1002/adma.201700360
摘要
Materials with engineered thermal expansion, capable of achieving targeted area/volume changes in response to variations in temperature, are important for a number of aerospace, optical, energy, and microelectronic applications. While most of the proposed structures with engineered coefficient of thermal expansion consist of bi-material 2D or 3D lattices, here it is shown that origami metamaterials also provide a platform for the design of systems with a wide range of thermal expansion coefficients. Experiments and simulations are combined to demonstrate that by tuning the geometrical parameters of the origami structure and the arrangement of plates and creases, an extremely broad range of thermal expansion coefficients can be obtained. Differently from all previously reported systems, the proposed structure is tunable in situ and nonporous.
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