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Mechanical metamaterials with 3D compliant porous structures

机译:具有3D兼容多孔结构的机械超材料

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摘要

We propose compliant cellular material (CCM), a mechanical metamaterial, with compliant porous structure (CPS) generated from a modified hexagonal topology. The objective of this study is to explore the synthesis of three-dimensional (3D) CCMs with CPSes and to understand the mechanical behaviors of CCMs. An orthotropic constitutive model of CCMs is constructed using the strain energy method, which uses the deformation of hinges around holes and rotation of links. Nonlinear behavior of a finite element (FE) based simulation is conducted to validate the analytical model. The moduli and yield strains of the 3D CCMs with an aluminum alloy are about 1.2 GPa and 0.4% in the longitudinal direction and about 0.08 MPa and 30% in the lateral direction. The CCMs have extremely high positive and negative Poisson's ratios (v(xy)* similar to +/- 30) due to the large rotation of the link member in the transverse direction caused by an input displacement in the longitudinal direction. This paper demonstrates that compliant mesostructures can be used for next generation's mechanical metamaterials design in tailoring mechanical properties such as modulus, strength, yield strain, and Poisson's ratios. (C) 2015 Elsevier Ltd. All rights reserved.
机译:我们提出顺应性多孔材料(CCM),一种机械超材料,具有从修饰的六边形拓扑生成的顺应性多孔结构(CPS)。这项研究的目的是探索带有CPS的三维(3D)CCM的合成,并了解CCM的力学行为。利用应变能方法构造了CCM的正交各向异性本构模型,该方法利用孔周围铰链的变形和链节的旋转来实现。进行了基于有限元(FE)的仿真的非线性行为,以验证分析模型。具有铝合金的3D CCM的模量和屈服应变在纵向上约为1.2 GPa和0.4%,在横向上约为0.08 MPa和30%。由于连接构件在纵向方向上的输入位移引起的横向方向上的大旋转,因此CCM具有极高的正泊松比和负泊松比(v(xy)*类似于+/- 30)。本文证明,顺应性介观结构可用于下一代机械超材料的设计,以调整机械性能,例如模量,强度,屈服应变和泊松比。 (C)2015 Elsevier Ltd.保留所有权利。

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