Microstructural changes in the cell walls of a closed-cell aluminium foam during creep

P. Zhang, M. Haag, Oliver Kraft, Alexander Wanner, Eduard Arzt, Eduard Arzt
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引用次数: 18

Abstract

Abstract The microstructure of an Alporas® foam was examined both before and after creep deformation. It was found that the initial microstructure of the foam consists of subgrains which are several micrometres in size. Because of the complicated distribution of the applied stress in a foam, the corresponding microstructure development is rather inhomogeneous during creep. The microstructure may change drastically by choosing different investigated areas in the same deformed foam. In most areas, no evident changes in microstructure can be seen in comparison with the initial microstructure; however, in strongly deformed areas, subgrains with a much smaller average size are found, and the shape of these subgrains is equiaxed. The stress estimated from the subgrain size reveals that locally very high stresses must have existed during creep deformation, which may reach the power-law breakdown regime. This is a reasonable explanation of the high stress exponent obtained for Alporas® foams.
闭孔泡沫铝在蠕变过程中细胞壁的微观结构变化
摘要:研究了Alporas®泡沫材料蠕变前后的微观结构。结果表明,泡沫的初始微观结构由几微米大小的亚颗粒组成。由于外加应力在泡沫体中的复杂分布,导致泡沫体在蠕变过程中微观结构的发展相当不均匀。在相同变形的泡沫中选择不同的研究区域,其微观结构会发生巨大的变化。在大多数区域,与初始组织相比,没有明显的组织变化;然而,在强变形区域,亚晶粒的平均尺寸要小得多,并且这些亚晶粒的形状是等轴的。根据亚晶粒尺寸估算的应力表明,蠕变过程中局部存在非常高的应力,可能达到幂律破坏状态。这是Alporas®泡沫获得高应力指数的合理解释。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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