会议论文详细信息
7th National Conference on Processing and Characterization of Materials
Parametric Investigation on Microstructure and Mechanical Properties of Ultrasonic spot welded Aluminium to Copper sheets
Satpathy, Mantra Prasad^1 ; Das Mohapatra, Kasinath^2 ; Sahoo, Ananda Kumar^2 ; Sahoo, Susanta Kumar^2
School of Mechanical Engineering, KIIT University, Odisha Bhubaneswar
751024, India^1
Department of Mechanical Engineering, National Institute of Technology Rourkela, Rourkela
769008, India^2
关键词: Advanced alloys;    Failure behaviors;    Intermetallic layer;    ITS applications;    Microstructure and mechanical properties;    Parametric investigations;    Solid-state welding;    Welding process;   
Others  :  https://iopscience.iop.org/article/10.1088/1757-899X/338/1/012024/pdf
DOI  :  10.1088/1757-899X/338/1/012024
来源: IOP
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【 摘 要 】
Ultrasonic welding is one of the promising solid state welding methods which have been widely used to join highly conductive materials like aluminum and copper. Despite these applications in the automotive field, other industries also have a strong interest to adopt this process for joining of various advanced alloys. In some of its applications, poor weld strength and sticking of the workpiece to the tool are issues. Thus, an attempt has been taken in the present study to overcome these issues by performing experiments with a suitable range of weld parameters. The major objectives of this study are to obtain a good joint strength with a reduced sticking phenomenon and microstructure of Al-Cu weld coupons. The results uncovered the mechanical strength of the joint increased up to 0.34 sec of weld time and afterward, it gradually decreased. Meantime, the plastic deformation in the weld zone enhanced the formation of an intermetallic layer of 1.5 μm thick, and it is composed of mainly Al2Cu compound. The temperature evolved during the welding process is also measured by thermocouples to show its relationship with the plastic deformation. The present work exemplifies a finer understanding of the failure behavior of joints and provides an insight of ultrasonic welding towards the improvement in the quality of weld.
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