Experiments were carried out with TIG welding-brazing of AZ31B magnesium alloy to PRO500 steel using TIG arc as heat source. The interfacial reaction characteristics and mechanical properties of the welding-brazing bonding were investigated. The results show that an effective bonding is achieved between AZ31B magnesium alloy and PRO500 steel by using TIG welding-brazing method. Some spontaneous oxidation reactions result in the formation of a transition zone containing AlFe3 phase with rich oxide. The micro-hardness value of the interfacial transition zone is between that of the AZ31B and the PRO500. Temper softening zone appears due to the welding thermal cycle nearby the bonding position in the interface. A higher heat input makes an incr...
AbstractIt is essential to understand the weld interface characteristics and mechanical properties o...
Abstract—The joining of magnesium alloy AZ31B and mild steel Q235 is realized by the addition of a N...
Ti and solution treated Mg alloys such as AZ31B (ST), AZ61 (ST), AZ80 (ST) and AZ91 (ST) were succes...
The challenge of joining immiscible Mg/Steel dissimilar metals lies in the absence of an Fe-Mg inter...
The joining of aluminium alloys to steels has been extensively studied, especially in the automotive...
The effects of laser welding parameters on the interface microstructure of AZ31B magnesium alloy and...
The effects of welding current and welding speed on the forming, microstructure and mechanical prope...
The application of magnesium (Mg) inevitably involves dissimilar welding with steel. A novel solid s...
This paper presents the study on interface bonding characteristic of AA7075 and AA6061 aluminum allo...
Hybrid structures built using Mg/steel are expected to have an increasing impact on the future devel...
We tried to join steel to Al-Mg alloy using a resistance spot welding method. The effect of Mg in Al...
A fiber laser welding-brazing procedure has been developed for joining AZ31B magnesium alloy to Cu-N...
Multi-material design is gaining prominence as an efficient strategy to reduce the weight of vehicle...
Commercial pure aluminum and galvanized carbon steel were lap-welded using the weld-brazing (WB) tec...
Abstract. The experimental investigation of diffusion bonding of magnesium alloy (AZ31B) to Cu in va...
AbstractIt is essential to understand the weld interface characteristics and mechanical properties o...
Abstract—The joining of magnesium alloy AZ31B and mild steel Q235 is realized by the addition of a N...
Ti and solution treated Mg alloys such as AZ31B (ST), AZ61 (ST), AZ80 (ST) and AZ91 (ST) were succes...
The challenge of joining immiscible Mg/Steel dissimilar metals lies in the absence of an Fe-Mg inter...
The joining of aluminium alloys to steels has been extensively studied, especially in the automotive...
The effects of laser welding parameters on the interface microstructure of AZ31B magnesium alloy and...
The effects of welding current and welding speed on the forming, microstructure and mechanical prope...
The application of magnesium (Mg) inevitably involves dissimilar welding with steel. A novel solid s...
This paper presents the study on interface bonding characteristic of AA7075 and AA6061 aluminum allo...
Hybrid structures built using Mg/steel are expected to have an increasing impact on the future devel...
We tried to join steel to Al-Mg alloy using a resistance spot welding method. The effect of Mg in Al...
A fiber laser welding-brazing procedure has been developed for joining AZ31B magnesium alloy to Cu-N...
Multi-material design is gaining prominence as an efficient strategy to reduce the weight of vehicle...
Commercial pure aluminum and galvanized carbon steel were lap-welded using the weld-brazing (WB) tec...
Abstract. The experimental investigation of diffusion bonding of magnesium alloy (AZ31B) to Cu in va...
AbstractIt is essential to understand the weld interface characteristics and mechanical properties o...
Abstract—The joining of magnesium alloy AZ31B and mild steel Q235 is realized by the addition of a N...
Ti and solution treated Mg alloys such as AZ31B (ST), AZ61 (ST), AZ80 (ST) and AZ91 (ST) were succes...