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Finite element modeling concepts and linear analyses of 3D regular open cell structures

机译:3D规则开孔结构的有限元建模概念和线性分析

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摘要

Various Finite Element modeling concepts and linear analyses of 3D regular cellular solids (lattice structures) with relative densities ranging from 10% to 20% are presented. Continuum element based models and beam element based models are employed, the latter with and without an adaptation of stiffness in the vicinity of the vertices. Space filling unit cell models are used for a constitutive characterization of four different structures in terms of density and directional dependence of their Young's moduli. Finite structure models of different size are simulated for investigating the influence of free surfaces and being compared to results of uniaxial compression tests of samples fabricated by two different Rapid Prototyping techniques.
机译:提出了各种有限元建模概念以及相对密度为10%至20%的3D规则单元格固体(晶格结构)的线性分析。使用基于连续体单元的模型和基于梁单元的模型,后者在顶点附近具有和不具有刚度的自适应。在其杨氏模量的密度和方向相关性方面,空间填充晶胞模型用于四种不同结构的本构表征。模拟了不同尺寸的有限结构模型,以研究自由表面的影响,并将其与通过两种不同的快速原型技术制造的样品的单轴压缩测试结果进行比较。

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