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A highly-compressible, torsion-contraction coupling and self-transforming cylindrical bi-material metastructure

机译:一种高可压缩,扭转收缩耦合和自变压圆柱形双层型材结构

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摘要

Metamaterials are special artificially-designed structures with extraordinary physical properties. Among them, origami-inspired metamaterials have shown considerable potential in the application of intelligent materials. In this paper, the torsional creases of the Kresling-pattern were embedded into the internal structure of the sheet to construct the origami mechanical metamaterial, in order to induce the super compressibility and torsion-contraction coupling effect (TCE). Shape memory polymer was used to perform the crease, so that the origami metamaterial has the mechanical bistable state of folding and deployment, as well as self-transformation characteristics of thermal-response. The subunit (single-level) origami metamaterial can be extended to multi-level structures, which can be promising novel prototypes of mechanical masts or actuators. The TCE of origami metamaterials can be adjusted by changing the crease and the number or pattern of the levels. The folding-deployment performance and TCE of the origami metamaterial were simulated using the finite element method. Furthermore, the effects of structure parameters and temperature on folding and deployment were also discussed. The results offer a great guidance for the design and application of smart materials and structures.
机译:超材料是特殊的人工设计的结构,具有特殊的物理性质。其中,Origami启发的超材料在智能材料的应用中表现出相当大的潜力。在本文中,将克雷斯曲面图案的扭转折痕嵌入片材的内部结构中以构建折纸机械超材料,以诱导超级压缩性和扭转收缩偶联效果(TCE)。形状记忆聚合物用于执行折痕,使得折纸超材料具有折叠和展开的机械双稳态状态,以及热响应的自变换特性。亚基(单级)折纸超材料可以扩展到多级结构,这可能是机械桅杆或执行器的新型原型。可以通过改变折痕和数量或模式来调整折纸超材料的TCE。使用有限元法模拟折纸内金属材料的折叠部署性能和TCE。此外,还讨论了结构参数和温度对折叠和部署的影响。结果为智能材料和结构的设计和应用提供了极大的指导。

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