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首页> 外文期刊>Journal of Materials Science >Surrogate models of the influence of the microstructure on the mechanical properties of closed- and open-cell foams
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Surrogate models of the influence of the microstructure on the mechanical properties of closed- and open-cell foams

机译:替代模型的微观结构对封闭和开放式泡沫力学性能的影响

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The mechanical behavior of closed- and open-cell foams was analyzed using a computational homogenization strategy based on the finite element simulation of a representative volume element of the foam microstructure. The representation of the foam took into account the main microstructural features, namely density, fraction of solid material in cell walls and struts, cell anisotropy, cell size and distribution and strut shape. A parametric study was carried out to ascertain the influence of these parameters on the elastic modulus and the plateau stress under compression. It was found that these properties mainly depended on the density, fraction of solid material in cell walls and struts and cell anisotropy. Building upon the results of the parametric study, surrogate models were developed to relate the influence of the microstructure on the mechanical properties of the foams. It is believed that these models can be used for the design of foams with optimized properties for particular applications.
机译:利用基于泡沫微结构的代表性体积元件的有限元模拟,使用计算均化策略分析闭合和开孔泡沫的力学行为。泡沫的表示考虑了主要的微观结构特征,即密度,细胞壁中的固体材料的级分,细胞各向异性,细胞尺寸和分布和支柱形状。进行参数研究以确定这些参数对弹性模量和压缩下的平台应力的影响。发现这些性质主要依赖于细胞壁和支柱中固体材料的密度,固体材料的一部分和细胞各向异性。建立参数研究结果,开发了代理模型,以涉及微观结构对泡沫机械性能的影响。据信,这些模型可用于设计具有特定应用的优化性能的泡沫。

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