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Microstructure and mechanical properties of similar and dissimilar joints of aluminium alloy and pure copper by friction stir welding

机译:搅拌摩擦焊接铝合金与纯铜相似与不同接头的组织与力学性能。

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Summary In the present study, the microstructure and mechanical properties of similar and dissimilar friction stir welded joints of aluminium alloy (AlA) and pure copper (Cu) were evaluated at variable tool rotational speeds from 150 to 900 rpm in steps of 150 rpm at 60 mm/min travel speed and constant tilt angle 2°. The interfacial microstructures of the joints were characterised by optical and scanning electron microscopy. The Al 4 Cu 9 , AlCu, Al 2 Cu and Al 2 Cu 3 intermetallic compounds have been observed at the interface and stir zone region of dissimilar Al/Cu FSWed joints. Variation in the grain size was observed in the stir zone depending upon the heat input value. Axial force, traverse force and torque value were analysed with variation in tool rotational speed. Residual stresses were measured at the stir zone by X-ray diffraction technique. Maximum ultimate tensile strength of ~75% of AlA strength for AlA–AlA joints has been obtained at 750 rpm and for Cu–Cu joint tensile strength of ~100% of tensile strength of Cu was obtained at 300 rpm. However, for Cu–AlA joint when processed at 600 rpm tool rotational speed achieved maximum ultimate tensile strength of ~77% of AlA.
机译:总结在本研究中,以150 rpm至900 rpm的可变工具转速,以60 rpm的150 rpm的速度,对铝合金(AlA)和纯铜(Cu)的相似和不相似的摩擦搅拌焊接接头的组织和力学性能进行了评估。毫米/分钟的行进速度和2°的恒定倾斜角。通过光学和扫描电子显微镜对接头的界面微观结构进行了表征。在异种Al / Cu FSWed接头的界面和搅拌区观察到Al 4 Cu 9,AlCu,Al 2 Cu和Al 2 Cu 3金属间化合物。根据热输入值,在搅拌区观察到晶粒尺寸的变化。根据工具转速的变化分析轴向力,横向力和扭矩值。通过X射线衍射技术在搅拌区测量残余应力。对于AlA–AlA接头,在750 rpm时获得的最大极限抗拉强度约为AlA强度的〜75%;对于Cu–Cu接头,在300 rpm时可获得的抗拉强度约为Cu的〜100%。但是,对于Cu-AlA接头,当以600 rpm的速度进行加工时,工具的转速达到了最大极限拉伸强度,约为AlA的77%。

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