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Production of Al-Cu-Fe metallic foams without foaming agents or space holders

机译:生产不含发泡剂或空间保持器的Al-Cu-Fe金属泡沫

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摘要

This investigation presents a study on the intrinsic formation of Al_(68)Cu_2oFe_(12) alloy foams, i.e. without the need of foaming agents or space holders. This alloy was slowly solidified in the furnace crucible, producing a multiphase microstructure, mainly composed by the λ-Al_(13)Fe_4 I-icosahedral, θ-Al_2Cu and ω-Al_7Cu_2Fe phases. Several heat treatments were carried out to a number of as-cast alloy samples in order to produce foams with porosities above 60%. The microstructure, thermal properties, pore morphology and porosity were characterized by means of SEM, DTA, Image analyzer and Archimedes principle, respectively. The highest amount of macro porosity of up to 65% and a density of 1.5 g/cm~3 in the treated sample were found at 900 ℃ for 360 min. At this temperature, a highly porous structure formed mainly by the λ-Al_(13)Fe_4, I-icosahedral and ω-Al_7Cu_2Fe phase was obtained. The proposed mech anism for the intrinsic porosity formation is based on the high amount of liquid phase generated by the melting of the Cu-rich phases and the peritectic reaction. The reaction between the λ-Al_(13)Fe_4 and the liquid phases formed the highly dense ω-Al_7Cu_2Fe and I-icosahedral phases. Thus, the space that is left behind caused the highly porous structure in this material.
机译:这项研究提出了关于Al_(68)Cu_2oFe_(12)合金泡沫固有形成的研究,即不需要发泡剂或空间保持器。该合金在炉坩埚中缓慢凝固,产生多相组织,主要由λ-Al_(13)Fe_4 I-二十面体,θ-Al_2Cu和ω-Al_7Cu_2Fe相组成。对许多铸态合金样品进行了几次热处理,以生产孔隙率超过60%的泡沫。分别用SEM,DTA,图像分析仪和阿基米德原理表征了材料的微观结构,热性能,孔隙形貌和孔隙率。在900℃下处理360 min,样品的宏观孔隙率最高可达65%,密度为1.5 g / cm〜3。在该温度下,获得了主要由λ-Al_(13)Fe_4,I-二十面体和ω-Al_7Cu_2Fe相形成的高度多孔的结构。所提出的用于固有孔隙形成的机理是基于由富铜相的熔化和包晶反应产生的大量液相。 λ-Al_(13)Fe_4与液相之间的反应形成了高密度的ω-Al_7Cu_2Fe和I-二十面体相。因此,留下的空间在该材料中引起高度多孔的结构。

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