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首页> 外文期刊>Acta Mechanica >Effects of statistics of cell's size and shape irregularity on mechanical properties of 2D and 3D Voronoi foams
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Effects of statistics of cell's size and shape irregularity on mechanical properties of 2D and 3D Voronoi foams

机译:孔的大小和形状不规则统计对2D和3D Voronoi泡沫力学性能的影响

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In the study of the mechanical properties of metallic foam, the relative density (or porosity) and the average size of cells are two key parameters of the meso-geometry, but it is also well known experimentally that the two parameters alone are not enough since the mechanical properties of metallic foams are different even with the same initial relative density and average cell size. In this paper, we have classified the irregularity of cells into two types to describe polygonal and polyhedral cells in 2D and 3D metallic foams, which are called size irregularity and shape irregularity, respectively. The former reflects the deviation of the size of a cell from the average cell size in the foam and the latter reflects the deviation of the shape of a cell from a circle with the same area (2D) or a globe with the same volume (3D).With the two kinds of definitions, effects of the irregularity of cells in aluminum foam on mechanical properties are investigated using the Voronoi tessellation technique and the finite element method. The well- designed 2D and 3D Voronoi models are constructed, of which the statistic distributions of size and shape irregularity are presented. The compression simulations of Voronoi-based models indicate that the yield stress of metallic foam is seldom affected by the size irregularity, but significantly affected by the shape irregularity. The more regular the foams, the higher will be their yield plateau at constant overall relative density and average cell size.
机译:在研究金属泡沫的机械性能时,相对密度(或孔隙率)和气泡的平均尺寸是介观几何学的两个关键参数,但从实验上也众所周知,仅这两个参数是不够的,因为即使相同的初始相对密度和平均泡孔尺寸,金属泡沫的机械性能也不同。在本文中,我们将孔的不规则性分为两种类型,以描述2D和3D金属泡沫中的多边形和多面体孔,分别称为尺寸不规则性和形状不规则性。前者反映泡孔大小与泡沫中平均泡孔大小的偏差,而后者反映泡孔形状与具有相同面积(2D)的圆形或具有相同体积的球体(3D)的偏差通过这两种定义,使用Voronoi镶嵌技术和有限元方法研究了泡沫铝中气泡的不规则性对力学性能的影响。构建了精心设计的2D和3D Voronoi模型,其中给出了尺寸和形状不规则性的统计分布。基于Voronoi的模型的压缩模拟表明,金属泡沫的屈服应力很少受尺寸不规则的影响,而受形状不规则的影响很大。泡沫越规则,在恒定的总相对密度和平均泡孔尺寸下,它们的产量平稳性就越高。

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