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LINEAR AND NONLINEAR NUMERICAL INVESTIGATIONS OF REGULAR OPEN CELL STRUCTURES

机译:常规开放式电池结构的线性和非线性数值研究

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Linear and nonlinear Finite Element simulations of various regular three-dimensional cellular solids (lattice structures) with relative densities ranging from 10% to 20% are presented. The structures consist of polymeric struts with circular cross sections. Two different Finite Element modeling techniques are employed. Beam element based models and continuum element based models are utilized and their applicability is assessed. Beam element based models compromise about the numerical model size and the detail resolution of the problem. Continuum element based models are used for highly detailed unit cell analyses. For simulations of the overall behavior the structures are treated as infinite media by a periodic microfield approach. The entire overall elasticity tensors are computed for the constitutive characterization of the effective mechanical behavior of the micro-structures. Overall stress-strain curves are predicted for uniaxial compressive loading, taking into account finite strains and elasto-plastic strut material. The predicted properties are evaluated with respect to direction dependence and density dependence. Finite samples of specimens are modeled for comparison to experimentally obtained results.
机译:提出了具有10%至20%的相对密度的各种规则三维细胞固体(晶格结构)的线性和非线性有限元模拟。该结构由具有圆形横截面的聚合物支柱组成。采用两种不同的有限元建模技术。基于光束元素的模型和基于连续元素的模型,并评估其适用性。基于光束元素的模型涉及数值模型大小和问题的细节解析。基于Continuum Element的模型用于高度详细的单元细胞分析。对于对整体行为的模拟,通过定期微焊接方法将结构被视为无限介质。整个弹性张量被计算用于微结构的有效机械行为的本构体表征。考虑有限菌株和弹性塑料支柱材料,预计将预测整体应力 - 应变曲线。关于方向依赖性和密度依赖性评估预测的属性。有限的样品样品被建模以与实验获得的结果进行比较。

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