首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers. Part L, Journal of Materials: Design and Application >Friction stir welding of aluminium alloys: An overview of experimental findings - Process, variables, development and applications
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Friction stir welding of aluminium alloys: An overview of experimental findings - Process, variables, development and applications

机译:铝合金摩擦搅拌焊:实验结果概述-工艺,变量,开发和应用

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摘要

The never ending appetite of the mankind to produce more and more competitive products results in continuous development of newer and newer manufacturing processes. One of such a kind, a solid state welding process highly appreciated for joining of a variety of aluminium and copper alloys, is friction stir welding. The process is also an accomplished method for joining dissimilar materials efficiently. The process finds its major application for joining hard-to-weld metals, especially the precipitation hardenable aluminium alloys and is widely adopted by industries for the welding of such aluminium alloys. However, the process has still not found an economical way for welding of steels and hence found limited applications in industries for welding steels. This paper aims at providing a comprehensive review of the work undertaken in the field of friction stir welding and provides an insight into the friction stir welding of aluminium alloys. The article pays critical attention and analytical evaluation of classification of aluminium alloys, friction stir welding process parameters, the mechanical testing and properties of the friction stir welding joints, macrostructure and microstructure evolution during friction stir welding, friction stir welding defects and industrial applications of the process. The friction stir welding process variants are discussed as well. Special accentuation has been given to (i) effect of friction stir welding parameters on the microstructure evolved and thus the ultimate mechanical properties (viz. tensile strength, hardness, fatigue strength, fracture toughness and residual stresses), (ii) the texture formation, microstructure refinement and the role of intermetallics. However, studies related to welding of dissimilar aluminium alloys, temperature, and heat transfer modeling and material flow are out of the scope of this paper. Finally, the directions of future research are examined.
机译:人类对生产越来越有竞争力的产品的永无止境的需求导致了越来越新的制造工艺的不断发展。这种搅拌焊接是一种非常受人们欢迎的用于焊接各种铝和铜合金的固态焊接工艺。该方法还是一种有效连接异种材料的完善方法。该工艺发现其主要用途是用于连接难以焊接的金属,尤其是可沉淀硬化的铝合金,并已被工业广泛用于此类铝合金的焊接。然而,该方法仍未找到用于钢焊接的经济方法,因此在焊接钢的工业中发现了有限的应用。本文旨在对摩擦搅拌焊接领域中的工作进行全面回顾,并深入了解铝合金的摩擦搅拌焊接。本文对铝合金的分类,搅拌摩擦焊接工艺参数,搅拌摩擦焊接头的力学性能和性能,搅拌摩擦焊接过程中的宏观和微观组织演变,搅拌摩擦焊接缺陷及工业应用等进行了重点研究和分析评价。处理。还讨论了搅拌摩擦焊工艺的各种变化。特别强调(i)摩擦搅拌焊接参数对所形成的显微​​组织的影响,从而影响最终的机械性能(即拉伸强度,硬度,疲劳强度,断裂韧性和残余应力),(ii)织构的形成,显微组织的细化和金属间化合物的作用。但是,与异种铝合金的焊接,温度,传热模型和材料流动有关的研究不在本文的讨论范围之内。最后,研究了未来的研究方向。

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