Comparative Numerical Analysis of Keyhole Shape and Penetration Depth in Laser Spot Welding of Aluminum with Power Wave Modulation

被引:3
作者
Saediardahaei, Saeid [1 ]
Pham, Xuan-Tan [1 ]
机构
[1] Ecole Technol Super, Dept Mech Engn, 1100 Notre Dame Ouest St, Montreal, PQ H3C 1K3, Canada
来源
THERMO | 2024年 / 4卷 / 02期
基金
加拿大自然科学与工程研究理事会;
关键词
keyhole; instability; recoil pressure; vapor/liquid interface; solid/liquid interface; keyhole penetration depth; MOLTEN POOL; INDUCED POROSITY; DYNAMICS; SIMULATION; BEHAVIOR; MORPHOLOGY; MODEL;
D O I
10.3390/thermo4020013
中图分类号
O414.1 [热力学];
学科分类号
摘要
Keyhole mode laser welding is a valuable technique for welding thick materials in industrial applications. However, its susceptibility to fluctuations and instabilities poses challenges, leading to defects that compromise weld quality. Observing the keyhole during laser welding is challenging due to bright process radiation, and existing observation methods are complex and expensive. This paper alternatively presents a novel numerical modeling approach for laser spot welding of aluminum through a modified mixture theory, a modified level-set (LS) method, and a thermal enthalpy porosity technique. The effects of laser parameters on keyhole penetration depth are investigated, with a focus on laser power, spot radius, frequency, and pulse wave modulation in pulsed wave (PW) versus continuous wave (CW) laser welding. PW laser welding involves the careful modulation of power waves, specifically adjusting the pulse width, pulse number, and pulse shapes. Results indicate a greater than 80 percent increase in the keyhole penetration depth with higher laser power, pulse width, and pulse number, as well as decreased spot radius. Keyhole instabilities are also more pronounced with higher pulse width/numbers and frequencies. Notably, the rectangular pulse shape demonstrates substantially deeper penetration compared to CW welding and other pulse shapes. This study enhances understanding of weld pool dynamics and provides insights into optimizing laser welding parameters to mitigate defects and improve weld quality.
引用
收藏
页码:222 / 251
页数:30
相关论文
共 50 条
[31]   Relationship of laser absorption to keyhole behavior in high power fiber laser welding of stainless steel and aluminum alloy [J].
Kawahito, Yousuke ;
Matsumoto, Naoyuki ;
Abe, Youhei ;
Katayama, Seiji .
JOURNAL OF MATERIALS PROCESSING TECHNOLOGY, 2011, 211 (10) :1563-1568
[32]   Prediction of weld shape for fiber laser keyhole welding based on finite element analysis [J].
Xia, Peiyun ;
Yan, Fei ;
Kong, Fanrong ;
Wang, Chunming ;
Liu, Jianhua ;
Hu, Xiyuan ;
Pang, Shengyong .
INTERNATIONAL JOURNAL OF ADVANCED MANUFACTURING TECHNOLOGY, 2014, 75 (1-4) :363-372
[33]   Influence of Arc Power on Keyhole-Induced Porosity in Laser plus GMAW Hybrid Welding of Aluminum Alloy: Numerical and Experimental Studies [J].
Xu, Guoxiang ;
Li, Pengfei ;
Li, Lin ;
Hu, Qingxian ;
Zhu, Jie ;
Gu, Xiaoyan ;
Du, Baoshuai .
MATERIALS, 2019, 12 (08)
[34]   A three-dimensional numerical simulation model for weld characteristics analysis in fiber laser keyhole welding [J].
Ai, Yuewei ;
Jiang, Ping ;
Shao, Xinyu ;
Li, Peigen ;
Wang, Chunming .
INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 2017, 108 :614-626
[35]   Numerical simulation of full penetration laser welding of thick steel plate with high power high brightness laser [J].
Zhang, L. J. ;
Zhang, J. X. ;
Gumenyuk, A. ;
Rethmeier, M. ;
Na, S. J. .
JOURNAL OF MATERIALS PROCESSING TECHNOLOGY, 2014, 214 (08) :1710-1720
[36]   Numerical analysis of the effect of an oscillating metal vapor plume on the keyhole and molten pool behavior during deep penetration laser beam welding [J].
Yang, Fan ;
Meng, Xiangmeng ;
Putra, Stephen Nugraha ;
Artinov, Antoni ;
Bachmann, Marcel ;
Rethmeier, Michael .
JOURNAL OF LASER APPLICATIONS, 2023, 35 (04)
[37]   Effects of laser power modulation on keyhole behavior and energy absorptivity for laser welding of magnesium alloy AZ31 [J].
Jiang, Peizuo ;
Dong, Hao ;
Cai, Yan ;
Gao, Mingyue .
INTERNATIONAL JOURNAL OF ADVANCED MANUFACTURING TECHNOLOGY, 2023, 125 (1-2) :563-576
[38]   Effects of laser power modulation on keyhole behavior and energy absorptivity for laser welding of magnesium alloy AZ31 [J].
Peizuo Jiang ;
Hao Dong ;
Yan Cai ;
Mingyue Gao .
The International Journal of Advanced Manufacturing Technology, 2023, 125 :563-576
[39]   Effects of welding parameters on weld pool characteristics and shape in hybrid laser-TIG welding of AA6082 aluminum alloy: numerical and experimental studies [J].
Faraji, Amir Hossein ;
Goodarzi, Massoud ;
Seyedein, Seyed Hossein ;
Maletta, Carmine .
WELDING IN THE WORLD, 2016, 60 (01) :137-151
[40]   Modeling and numerical study of keyhole-induced porosity formation in laser beam oscillating welding of 5A06 aluminum alloy [J].
Ke, Wenchao ;
Bu, Xianzheng ;
Oliveira, J. P. ;
Xu, WeiGang ;
Wang, Zhimin ;
Zeng, Zhi .
OPTICS AND LASER TECHNOLOGY, 2021, 133