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Analysis of performance of in-situ carbon steel bar reinforced Al-alloy foams

机译:原位碳钢增强铝合金泡沫性能分析

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This paper presents results of an experimental study on the processing and mechanical characterisation of plain and in-situ carbon-steel bar reinforced cylindrical Al-alloy foams. The reinforcement is incorporated into the foam-structure during the foaming-process which is based on the powder metallurgy method. Some key technical issues concerning the manufacturing procedure are discussed. A technical solution to design moulds to prepare high-quality foam parts with longer lengths is proposed. This has been achieved by constructing moulds with varied mould-wall thickness. Such an approach enabled to control the foaming-process and subsequent the foam-filling in different regions of the mould cavity. A series of plain and in-situ reinforced foams with two different lengths (150 and 200 mm) and the same diameter (25 mm) were fabricated. Uniaxial compressive and three-point bending behaviour was studied, exploring their deformation and failure mechanisms. The results demonstrate that the carbon-steel bar increases the compressive behaviour of the foams but does not significantly influence their bending behaviour in terms of peak load. Under bending loads, the stress-strain curves are shifted along the strain axis in comparison to the plain foams. The deformation and failure mode of both specimens under compressive and bending loads is similar. The results indicate the potential of reinforced materials. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文介绍了对普通和原位碳钢棒增强圆柱形铝合金泡沫的加工和力学性能进行实验研究的结果。在基于粉末冶金方法的发泡过程中,将增强材料掺入泡沫结构中。讨论了有关制造过程的一些关键技术问题。提出了一种设计模具的技术方案,以制备更长的高质量泡沫部件。这是通过构造具有不同模具壁厚的模具来实现的。这种方法能够控制发泡过程以及随后在模腔的不同区域中的泡沫填充。制作了一系列的平原和现场增强泡沫,具有两种不同的长度(150和200毫米)和相同的直径(25毫米)。研究了单轴压缩和三点弯曲行为,探讨了它们的变形和破坏机理。结果表明,碳钢棒增加了泡沫的压缩行为,但在峰值载荷方面并未显着影响其弯曲行为。与普通泡沫相比,在弯曲载荷下,应力-应变曲线沿应变轴移动。两种试样在压缩和弯曲载荷下的变形和破坏模式相似。结果表明增强材料的潜力。 (C)2016 Elsevier Ltd.保留所有权利。

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