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DEFORMATION BEHAVIOUR OF CLOSED-CELL ALUMINIUM FOAMS IN TENSION

机译:闭孔泡沫铝在拉伸下的变形行为

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摘要

The mechanical behaviour of commercially available ALPORAS aluminium foam with two different densities was studied under tension loading. In addition to the common stress-strain measurements, local deformation, notch-opening displacement and damage evolution were determined. The deformation characteristics deviated from those observed in aluminium foams under compression. No deformation bands or plastic instabilities could be observed in tension, which are very frequent in Compression of metallic foams. Four regimes were evident in the stress-strain curves and deformation maps: the linear elastic regime, the plastic regime with no significant crack initiation and propagation, the regime of formation of a fracture process zone and, finally, the regime of fracture, where a main crack propagates through the specimen and leads to failure. The fracture strain was only a few per cent, with the higher-density foam showing a larger fracture strain, and the plastic Poisson's ratio was about 0.35. The notched specimens showed increasing fracture strengths in terms of the net section stress with increasing notch depth. It is suggested that a change in stress state, caused by a non-vanishing Poisson's ratio, in front of the notch tip creates an increase of the fracture strength similar to the behaviour in ductile bulk metals.
机译:研究了两种不同密度的市售ALPORAS泡沫铝在拉伸载荷下的机械性能。除了常见的应力-应变测量外,还测定了局部变形、缺口开口位移和损伤演变。变形特性与在压缩下泡沫铝中观察到的变形特性不同。在拉伸中无法观察到变形带或塑性不稳定性,这在金属泡沫的压缩中非常常见。在应力-应变曲线和变形图中,有四种状态是显而易见的:线性弹性状态、没有明显裂纹萌生和扩展的塑性状态、断裂过程区的形成状态,以及最后的断裂状态,其中主裂纹在试样中扩展并导致破坏。断裂应变只有百分之几,高密度泡沫显示出较大的断裂应变,塑性泊松比约为0.35。随着缺口深度的增加,缺口试样的断裂强度在净截面应力方面呈上升趋势。有人认为,由非消失泊松比引起的应力状态变化,在缺口尖端前方导致断裂强度增加,类似于延展性块状金属的行为。

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