Influence of high-frequency pulse on droplet transfer process and weld formation in double-wire median pulsed GMAW of aluminum alloy

Author:

Wu Kaiyuan1ORCID,Lin Jing1,Yang Haoran1,Wang Yifei1,Hong Xiaobin1

Affiliation:

1. South China University of Technology

Abstract

Abstract

A double-wire median pulsed gas metal arc welding (GMAW) with a high-frequency pulse waveform was developed to study the influence of a high-frequency pulse on the droplet transfer process and weld formation in aluminum (Al) alloy. The droplet transfer process was recorded using a high-speed photography system. At the same time, the influence of a high-frequency pulse at peak stage was investigated. The experimental results demonstrated that stable droplet transfer and continuous welds are obtained by incorporating high-frequency pulses. The high-frequency pulses increase electromagnetic force and facilitate premature detachment of droplets. Especially, at a high frequency of 20 kHz, one drop per pulse (ODPP) droplet transfer mode is achieved, which is the ideal mode. In addition, high-frequency pulses increase axial arc pressure, strengthen convergent flow, and reduce the effect of divergent flow, resulting in increased weld penetration while decreasing weld width and porosity.

Publisher

Springer Science and Business Media LLC

Reference34 articles.

1. Twin-wire GMAW: process characteristics and applications;Michie K;Weld J,1999

2. Influence of GMAW-P current waveforms on heat input and weld bead shape;Joseph A;Sci Technol Weld Join,2005

3. Tandem MIG welding of aluminium alloys;Matsumoto T;Weld Int,2005

4. Metal transfer instability in gas metal arc welding;Simpson SW;Sci Technol Weld Join,2009

5. Arc characteristics and behaviour of metal transfer in pulsed current GMA welding of stainless steel;Ghosh PK;J Mater Process Technol,2009

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