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Effect of imperfections on the yielding of two- dimensional foams

机译:缺陷对二维泡沫屈服的影响

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摘要

The influence of each of the six different types of morphological imperfection- u waviness, non-uniform cell wall thickness, cell-size variations, fractured cell wa1ls, cell-wall misalignments, and missing cells on the yielding of 2D cellular solids has been studied systematically for biaxial loading. Emphasis is placed on quantifying the knock-down effect of these defects on the hydrostatic yield strength and upon understanding the associated deformation mechanisms. The simulations in the present study indicate that the high hydrostatic strength, characteristic of ideal honeycombs, is reduced to a level comparable with the deviatoric strength by several types of defect. The common source of this large knock-down is a switch in deformation mode from cell wall stretching to cell wall bending under hydrostatic loading. Fractured cell edges produce the largest knock-down effect on the yield strength of 2D foams, followed in order by missing cells, wavy cell edges, cell edge misalignments, r Voronoi cells, δ Voronoi cells, and non-uniform wall thickness. A simple elliptical yield function with two adjustable material parameters successfully fits the numerically predicted yield surfaces for the imperfect 2D foams, and shows potential as a phenomenological constitutive law to guide the design of structural components made from metallic foams.
机译:研究了六种不同类型的形态缺陷中的每一种-波纹度,不均匀的细胞壁厚度,细胞大小变化,破裂的细胞壁,细胞壁错位和缺失细胞对2D细胞固体产量的影响系统地进行双轴加载。重点放在量化这些缺陷对静水屈服强度的击倒效应以及理解相关的变形机理上。本研究中的模拟表明,几种类型的缺陷将高静水强度(理想蜂窝的特征)降低到了与偏斜强度相当的水平。这种大的击倒的常见原因是在静水载荷下,变形模式从胞壁拉伸转变为胞壁弯曲。破裂的孔边缘对2D泡沫的屈服强度产生最大的敲低效应,其次是缺少孔,波浪状孔边缘,孔边缘错位,r Voronoi孔,δVoronoi孔和壁厚不均匀。具有两个可调材料参数的简单椭圆屈服函数成功地拟合了不完美2D泡沫的数值预测屈服面,并显示出潜在的现象本构定律,可指导由金属泡沫制成的结构部件的设计。

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