焊接
材料科学
电阻焊
激光束焊接
电弧焊
气体保护金属极电弧焊
热影响区
冶金
电气焊
焊条电弧焊
钨极气体保护焊
惰性气体
机械工程
填充金属
焊接电源
复合材料
工程类
作者
Tao Xu,Yonghua Shi,Yanxin Cui,Zhuoyong Liang
标识
DOI:10.1002/adem.202200682
摘要
The application of magnetic field in welding process has been proved to be effective in improving the mechanical properties of welded joints and is regarded as a practicable auxiliary welding method. Although the theoretical research on magnetic field‐assisted welding is quite abundant, there is still a long way to go before a stable industrial application is achieved. Therefore, to clarify magnetic field and compare its roles in various welding techniques, this work carefully examines the use of magnetic field in recent welding techniques such as laser welding, laser‐melt inert gas hybrid welding, gas metal arc welding, tungsten inert gas welding, and resistance spot welding. Based on previous experiments and simulation research results, the effects of the Lorentz force on the arc, molten pool, and dendrite solidification during welding as well as the microstructure and mechanical properties of welded joints are discussed. The purpose of this work is to give a superficial introduction to the magnetic field‐assisted welding method in recent years, hoping to improve the welding practitioners’ understanding of the magnetic‐assisted welding method and provide a reference for researchers who use different welding methods.
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