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Microstructure and mechanical properties of ALPORAS closed-cell aluminium foam

机译:ALPORAS闭孔泡沫铝的显微组织和力学性能

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In recent years, closed-cell foam has drawn increasing attention in applications ranging from energy absorption devices to serving as the core material of light-weight structures. Although closed-cell foams are critical in many applications, the microstructural characteristics and mechanical properties of these foams are not fully understood. In this paper, we performed a comprehensive study on the commercially available ALPORAS closed-cell aluminium foam by means of experiment. First, inspection of the foam microstructure was systematically performed. Based on this inspection, the geometric features of the foam were characterised. Crushing experiments were subsequently conducted on specimens under various conditions to examine the effect of each of the testing parameters such as the specimen size and geometry as well as the loading direction, on the mechanical response of closed-cell foam. We found that the cells were irregular polyhedra with approximately 14 faces and that each face had approximately 5 sides. The cell wall was thinnest in the middle section, became increasingly thicker towards the edges, and eventually formed circular fillets as it intersected with neighbouring walls. The foam was geometrically and mechanically anisotropic. The factors that most influenced the mechanical properties were the loading direction and relative density. In this paper, we also compare the experimental results on the foam mechanical properties with existing equations from the literature. (C) 2015 Elsevier Inc. All rights reserved.
机译:近年来,闭孔泡沫在从能量吸收装置到用作轻型结构的芯材的应用中引起越来越多的关注。尽管闭孔泡沫在许多应用中至关重要,但这些泡沫的微观结构特征和机械性能尚不完全清楚。在本文中,我们通过实验对市售的ALPORAS闭孔泡沫铝进行了全面的研究。首先,系统地检查泡沫的微观结构。基于该检查,表征了泡沫的几何特征。随后在各种条件下对样本进行压碎实验,以检查每个测试参数(例如样本大小和几何形状以及加载方向)对闭孔泡沫塑料力学响应的影响。我们发现细胞是不规则的多面体,大约有14个面,每个面都有约5个面。孔壁在中间部分最薄,向边缘逐渐变厚,并在与相邻壁相交时最终形成圆形圆角。泡沫在几何和机械上是各向异性的。影响机械性能的最大因素是加载方向和相对密度。在本文中,我们还将泡沫力学性能的实验结果与文献中现有的方程进行比较。 (C)2015 Elsevier Inc.保留所有权利。

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