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Microstructural characterization of metal foams: An examination of the applicability of the theoretical models for modeling foams

机译:金属泡沫的微观结构表征:泡沫模型理论模型的适用性检查

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Establishing the geometry of foam cells is useful in developing microstructure-based acoustic and structural models. Since experimental data on the geometry of the foam cells are limited, most modeling efforts use an idealized three-dimensional, space-filling Kelvin tetrakaidecahedron. The validity of this assumption is investigated in the present paper. Several FeCrAlY foams with relative densities varying between 3 and 15% and cells per mm (c.p.mm.) varying between 0.2 and 3.9 c.p.mm. were microstructurally evaluated. The number of edges per face for each foam specimen was counted by approximating the cell faces by regular polygons, where the number of cell faces measured varied between 207 and 745. The present observations revealed that 50-57% of the cell faces were pentagonal while 24-28% were quadrilateral and 15-22% were hexagonal. The present measurements are shown to be in excellent agreement with literature data. It is demonstrated that the Kelvin model, as well as other proposed theoretical models, cannot accurately describe the FeCrAlY foam cell structure. Instead, it is suggested that the ideal foam cell geometry consists of 11 faces with 3 quadrilateral, 6 pentagonal faces and 2 hexagonal faces consistent with the 3-6-2 Matzke cell.
机译:建立泡沫孔的几何形状对于开发基于微结构的声学和结构模型很有用。由于有关泡沫泡孔几何形状的实验数据有限,因此大多数建模工作都使用理想化的三维空间填充开尔文四开十二面体。本文对这一假设的有效性进行了研究。几种FeCrAlY泡沫,其相对密度在3%至15%之间变化,而孔每毫米(c.p.mm.)在0.2至3.9 c.p.mm之间变化。进行了微观结构评估。每个泡沫样品的每个面的边数是通过用规则多边形逼近孔面来计数的,其中测得的孔面数量在207和745之间变化。目前的观察结果表明,有50-57%的孔面为五边形,而四边形为24-28%,六边形为15-22%。显示当前的测量结果与文献数据非常吻合。结果表明,开尔文模型以及其他提出的理论模型无法准确描述FeCrAlY泡沫孔结构。取而代之的是,建议理想的泡沫孔几何形状由与3-6-2 Matzke孔一致的11个面和3个四边形,6个五边形面和2个六边形面组成。

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