Wrought Aluminum Alloy: Reinforcement, Alloy Addition, and Deformation Effects on Mechanical Responses

S. Adeosun, E. Akpan, S. A. Balogun
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Abstract

This article discusses the effects of various modifications on the properties of aluminum alloys for structural applications. The effect of reinforcing particles on the mechanical properties of wrought 6063 aluminum alloy arising from our previous works is extensively discussed to identify the most promising reinforcing particles. It also discusses the improvement in mechanical properties of 1200 aluminum alloy using silicon carbide particulates. The effect of micro-alloy additions on the mechanical properties is also outlined in this article based on the results from our previous experimental works. Effect of combining heat treatment and deformation on the mechanical properties of wrought aluminum alloys is also presented. Results presented show that particle reinforcement, deformation, and microelemental additions to aluminum alloy result in significant improvement in mechanical properties of the alloys considered. Addition of reinforcing particles of barite, silicon carbide, iron fillings, and electric arc furnace dust are found to impart improved tensile strength to aluminum alloy. The most outstanding finding is that synergy between particle addition, deformation, and heat treatment has a good prospect in the production of improved aluminum alloy materials for automotive applications.
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变形铝合金:强化、合金添加和变形对机械反应的影响
本文讨论了各种改性对结构用铝合金性能的影响。本文广泛讨论了增强颗粒对变形6063铝合金力学性能的影响,以确定最有前途的增强颗粒。讨论了碳化硅颗粒对1200铝合金力学性能的改善作用。本文还在前人实验成果的基础上概述了微量合金添加量对合金力学性能的影响。研究了热处理与变形相结合对变形铝合金力学性能的影响。结果表明,在铝合金中加入颗粒增强、变形和微量元素可以显著改善合金的力学性能。研究发现,添加重晶石、碳化硅、铁填料和电弧炉粉尘等增强颗粒可以提高铝合金的抗拉强度。最突出的发现是,颗粒添加、变形和热处理之间的协同作用在汽车用改进铝合金材料的生产中具有良好的前景。
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