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Effect of Cell Characteristics on the Compressive Deformation Behavior of a Closed-Cell Aluminium

机译:细胞特征对闭孔铝的压缩变形行为的影响

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In this study, the mechanical properties of a closed-cell aluminium foam have been investigated by compressive tests. The deformation behaviors of the aluminium foams were studied using X-ray microtomography (XMT). Aluminium foam samples with various cell size distributions and cell morphologies were intentionally selected to investigate the effect of the cell characteristics on the deformation behaviors. Results indicated that the deformation of the aluminium foams under compressive loading was localized in narrow continuous deformation bands having widths of order of a cell diameter. The cells in the deformation bands collapsed by a mixed deformation mechanism, which includes mainly bending, and also minor buckling and yielding as well. Different fractions of the three deformation modes led to variations in the peak stress and energy absorption for different foam samples with the same density. It was also found that the cell morphology affected the deformation mechanism significantly, whilst the cell size showed little influence. Those cells with defects such as corrugations, curvatures and non-uniformities in the wall thickness were the initiators of the deformation bands of the aluminium foam.
机译:在该研究中,通过压缩试验研究了闭孔铝泡沫的机械性能。使用X射线显微镜(XMT)研究了铝泡沫的变形行为。有意选择具有各种细胞尺寸分布和细胞形态的铝泡沫样品,以研究细胞特性对变形行为的影响。结果表明,在压缩负载下铝泡沫的变形是局部化的,其具有细胞直径的宽度的窄连续变形带。通过混合变形机构折叠的变形带中的细胞,其主要包括弯曲,并且也是轻微的屈曲和屈服。三种变形模式的不同部分导致具有相同密度的不同泡沫样品的峰值应力和能量吸收的变化。还发现细胞形态显着影响了变形机制,而细胞大小表现出很小的影响。具有诸如波纹,曲率,壁厚中的不均匀性的缺陷的细胞是铝泡沫的变形带的引发剂。

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