Double arc interference and dynamic behavior characteristics of double wire double-pulsed GMAW

被引:1
作者
Kaiyuan Wu
Jiajia Wang
Tong Yin
Zuwei He
Zhuoyong Liang
机构
[1] South China University of Technology,School of Mechanical and Automotive Engineering
[2] South China University of Technology,Engineering Research Center for Special Welding Technology and Equipment of Guangdong Province
来源
The International Journal of Advanced Manufacturing Technology | 2018年 / 95卷
关键词
Double arc interference; Double wire double-pulsed GMAW; Arc profile; Weld bead formation;
D O I
暂无
中图分类号
学科分类号
摘要
The double wire gas metal arc welding (GMAW) technology combined with double pulse low-frequency modulation offers the benefits of the higher efficiency of double wire GMAW combined with superior weld joint quality offered by double pulse low-frequency modulation. However, the potential for severe double arc interference of double wire double-pulsed GMAW affects the stability of the welding process and has thus far limited its widespread use. In this study, high-speed photography was used to record the arc profiles and arc interference of double wire double-pulsed GMAW in the synchronous and alternant phases, while the voltage and current waveforms were simultaneously recorded. Experimental results demonstrated that the double arc deflection of the strong pulse was more severe than that of the weak pulse due to the high current associated with a strong pulse. It was also discovered that the trailing arc stiffness was lower than the leading arc stiffness. Moreover, the deflection of trailing arc was greater under the influence of the leading arc’s electromagnetic attraction. Whereas, the arc deflection of the pulse stage in the alternant phase was small, less than that of the pulse stage in the synchronous phase, the arc deflection of the background stage was much greater. Furthermore, the arc deflections of the pulse and background stages in the synchronous phase were smaller than the arc deflection of the background stage in the alternant phase. Finally, the leading and in the synchronous phase maintained their stiffness and demonstrated weaker magnetic arc blow, fewer spatters, a more refined fish-scale appearance, and weld beads with better uniformity.
引用
收藏
页码:991 / 1002
页数:11
相关论文
共 104 条
[1]  
Häßler M(2016)The influence of arc interactions and a central filler wire on shielding gas flow in tandem GMAW Weld World 60 713-718
[2]  
Rose S(2013)Numerical simulation of metal transfer process in tandem GMAW Int J Adv Manuf Technol 69 107-112
[3]  
Füssel U(1999)Twin-wire GMAW: process characteristics and applications Weld J 78 31-34
[4]  
Ding XP(2009)Tandem wire process improves ship panel production Weld J 88 42-45
[5]  
Li H(2014)Double-electrode arc welding process: principle, variants, control and developments J Manuf Process 16 93-108
[6]  
Yang LJ(2007)Double-electrode GMAW process and control Weld J 86 231-237
[7]  
Gao Y(2015)Double-electrode process speeds GTAW Weld J 94 64-67
[8]  
Michie K(1998)Double-sided arc welding increases weld joint penetration Weld J 77 57-62
[9]  
Blackman S(2000)Improved microstructure and properties of 6061 aluminum alloy weldments using a double-sided arc welding process Metall Mater Trans A 31 2537-2543
[10]  
Ogunbiyi TEB(2012)Gas tungsten arc welding using an arcing wire Weld J 91 261-269