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Theoretical study and simulation analysis on re-entrant square cellular material’s mechanical properties:

机译:凹形方孔材料力学性能的理论研究与仿真分析:

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With the development of three-dimensional printing technologies, so-called “designer materials” including re-entrant, chiral, and rotating rigid structures have attracted much attention due to unusual properties. However, most studies ignore theoretical analysis and pay much attention to numerical simulation. In this article, a novel re-entrant cellular material is proposed and taken as an example to introduce the methods of theoretical study on relations between mechanical properties and geometric parameters of this “designer material.” This work starts from developing theoretical models of relative density using two-dimensional unit cell in terms of three geometric parameters: edge length, re-entrant distance, and cellular thickness. Then, linear-elastic mechanical properties including elastic modulus and shear modulus, and nonlinear mechanical properties are explored. Based on theoretical models, predominant compression failure mode of this material is plastic collapse. Finite element method is adopted...
机译:随着三维打印技术的发展,包括凹折,手性和旋转刚性结构在内的所谓“设计材料”由于其不寻常的性能而备受关注。但是,大多数研究都忽略了理论分析,而非常重视数值模拟。在本文中,提出了一种新型的可折返蜂窝材料,并以其为例,介绍了有关这种“设计材料”的力学性能与几何参数之间关系的理论研究方法。这项工作从使用二维晶胞根据三个几何参数:边长,凹角距离和晶胞厚度开发相对密度的理论模型开始。然后,探讨了包括弹性模量和剪切模量在内的线性弹性力学性能以及非线性力学性能。根据理论模型,这种材料的主要压缩破坏模式是塑性塌陷。采用有限元法...

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