论文标题

添加性制造的混合动力五角星超材料

Additively manufactured hybrid anisotropic pentamode metamaterials

论文作者

Mohammadi, Kaivan, Movahhedy, Mohammad R., Shishkovsky, Igor, Hedayati, Reza

论文摘要

五角形超材料是一种极端设计师的超材料,能够在一个方向上表现出很高的刚性,并且在其他方​​向上表现出极高的依从性。因此,可以将五角形视为具有任何任意选择的热力学弹性张量的外来材料的构件。然后,可以设想将五角形晶格组合成构建中间极端材料,例如四轴,三座和bimodes。在这项研究中,我们构建了几种主要类型的各向异性五角星晶格(中点定位为10%,15%,20%,20%,25%,30%,35%,35%和42%的主要单位细胞对角线),然后将它们相互结合以探索hybrid Pentamodes对这些构建的个人构建的弹性的依赖性。使用Multijet添加剂制造技术生产了几种各向异性个体和混合五角体晶格结构,然后在压缩下进行了机械测试。还使用COMSOL多物理软件包创建了有限元模型。构建和分析了由具有广泛不同(大小为2阶)的单个晶格组成的两个组件混合五角形晶格。证明可以在弹性张量中设计和构建具有任意特征值的复合中间极端材料。得出的结论是,杂交结构的弹性E,剪切G和块状模量是单个晶格结构的相应模量的叠加。混合五角体结构的泊松比等于泊松比较高的个体结构。混合五角体晶格结构的屈服应力取决于构建晶格结构的弹性模量以及较弱的晶格结构的屈服应力。

Pentamode metamaterials are a type of extremal designer metamaterials which are able to demonstrate high rigidity in one direction and extremely high compliance in other directions. Pentamodes can, therefore, be considered as building blocks of exotic materials with any arbitrarily selected thermodynamically admissible elasticity tensor. The pentamode lattices can then be envisioned to be combined to construct intermediate extremal materials such as quadramodes, trimodes, and bimodes. In this study, we constructed several primary types of anisotropic pentamode lattices (with midpoint positioning of 10%, 15%, 20%, 25%, 30%, 35%, and 42% of the main unit cell diagonal) and then combined them mutually to explore the dependence of elastic properties of hybrid pentamodes on those of individual constructing lattices. Several anisotropic individual and hybrid pentamode lattice structures were produced using MultiJet Additive Manufacturing technique and then mechanically tested under compression. Finite element models were also created using COMSOL Multiphysics package. Two-component hybrid pentamode lattices composed of individual lattices with extensively different (as large as of 2 order of magnitudes) FOM ratios were constructed and analysed. It was demonstrated that it is possible to design and construct composite intermediate extremal materials with arbitrary eigen values in the elastic tensor. It is concluded that the elastic E, shear G, and bulk moduli B of the hybrid structure are the superpositions of the corresponding moduli of the individual lattice structures. The Poisson's ratio of the hybrid pentamode structure equals that of individual structure with higher Poisson's ratio. The yield stress of the hybrid pentamode lattice structure depends on the elastic moduli of the constructing lattice structures as well as yield stress of the weaker lattice structure.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源