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A Study on the Deformation Dehaviours of Al-1.4Fe-0.2Mn Alloy Sheets

机译:Al-1.4Fe-0.2mn合金板的变形Dehaviours的研究

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The deformation behaviours and microstructure transformations during the cold rolling process of Al-1.4Fe-0.2Mn alloy sheets prepared from 99.7% pure aluminium were investigated by means of hardness-testing, transmission electron microscopy (TEM) and energy dispersive spectrometer (EDS). The phenomena of work hardening and work softening were observed. The hardness of Al-1.4Fe-0.2Mn alloy sheets increased with the increasing of cold rolling reduction firstly, and reached to a peak at 80% cold rolling reduction, meaning work hardening. However, with further increasing of cold rolling reduction, the hardness decreased, which indicates work softening. During the initial deformation stage, the dislocation density and the number of sub-grain structures increased gradually, and many dislocations formed tangles, resulting in work hardening. When the cold rolling reduction exceeded 80%, the dislocation density decreased and sub-grain structures polygonized, leading to work softening. The forming of Mn, Fe and Si bearing compounds is an important reason for the work softening due to lowering solid solution content.
机译:通过硬度测试,透射电子显微镜(TEM)和能量分散光谱仪(EDS)研究了从99.7%纯铝制备的Al-1.4Fe-0.2Mn合金板的冷轧过程中的变形行为和微观结构变换。观察到工作硬化和工作软化的现象。 Al-1.4Fe-0.2Mn合金板的硬度随着冷轧减小的增加而增加,并且达到80%冷轧减少的峰值,意味着硬化。然而,随着冷轧减少的进一步增加,硬度降低,这表明了软化。在初始变形阶段期间,位错密度和亚粒结构的数量逐渐增加,并且许多位错形成缠结,导致工作硬化。当冷轧减小超过80%时,位错密度下降,亚粒结构多边形,导致工作软化。形成Mn,Fe和Si轴承化合物是由于降低固溶体含量而软化的重要原因。

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