Two typical cross-section of welds, including nail shape and near X shape, are obtained in the process of fiber laser welding 2024-T4 Al alloy with filler wire. The correlations of the two weld appearances and other elements (such as microstructure, microhardness, and joint's tensile properties) were analyzed. The results show that the weld with near X shape cross-section during the welding process is more stable than that with nail shape cross-section, and the welding spatter of the former is smaller than that of the latter. The microstructure of the weld zone is columnar grains and equiaxed grains, the columnar grains are formed near the fusion line and growing along the vertical direction of the fusion line, the equiaxed grains are distr...
Butt welds of 1.6 mm thick sheet of the Al-Mg-Si-Cu alloy 6013 were produced using a 3 kW Nd-Yag las...
The overlapping welding was carried out in keyhole mode between austenitic stainless steel 304 l and...
Butt welds of 1.6 mm thick sheet of the alloy 6013-T4 were produced using a Nd-Yag laser and filler ...
The influence of aluminium alloy 4043 filler wire feed rate on the weld quality and mechanical prope...
Defects such as porosity, underfill, and magnesium loss occur during laser welding of 5182 aluminum ...
The results disclosed that both the microstructure and mechanical properties of AA7075-T6 laser weld...
The laser hot-wire welding process was adopted to weld 7075 high-strength aluminum alloy. The influe...
In this study, the effects of Yb: YAG laser welding parameters on the microstructure and mechanical ...
The laser welding of aluminium alloys is an important industrial technology but many challenges rema...
The effect of pulse laser welding parameters and filler metal on microstructure and mechanical prope...
Dissimilar metal welding involves the joining of two or more different pure metals or alloys, usuall...
The dissimilar materials welding was carried out between austenitic stainless steel 304 L (low carbo...
AbstractIn this paper an experimental analysis on laser beam welding process of Ti6Al4V titanium all...
In the present study, laser beam welding was carried out with 6061 Al alloy plate to study the micro...
In this paper a new generation of fiber laser assisted by a MIG source was used to weld AA5754-H111 ...
Butt welds of 1.6 mm thick sheet of the Al-Mg-Si-Cu alloy 6013 were produced using a 3 kW Nd-Yag las...
The overlapping welding was carried out in keyhole mode between austenitic stainless steel 304 l and...
Butt welds of 1.6 mm thick sheet of the alloy 6013-T4 were produced using a Nd-Yag laser and filler ...
The influence of aluminium alloy 4043 filler wire feed rate on the weld quality and mechanical prope...
Defects such as porosity, underfill, and magnesium loss occur during laser welding of 5182 aluminum ...
The results disclosed that both the microstructure and mechanical properties of AA7075-T6 laser weld...
The laser hot-wire welding process was adopted to weld 7075 high-strength aluminum alloy. The influe...
In this study, the effects of Yb: YAG laser welding parameters on the microstructure and mechanical ...
The laser welding of aluminium alloys is an important industrial technology but many challenges rema...
The effect of pulse laser welding parameters and filler metal on microstructure and mechanical prope...
Dissimilar metal welding involves the joining of two or more different pure metals or alloys, usuall...
The dissimilar materials welding was carried out between austenitic stainless steel 304 L (low carbo...
AbstractIn this paper an experimental analysis on laser beam welding process of Ti6Al4V titanium all...
In the present study, laser beam welding was carried out with 6061 Al alloy plate to study the micro...
In this paper a new generation of fiber laser assisted by a MIG source was used to weld AA5754-H111 ...
Butt welds of 1.6 mm thick sheet of the Al-Mg-Si-Cu alloy 6013 were produced using a 3 kW Nd-Yag las...
The overlapping welding was carried out in keyhole mode between austenitic stainless steel 304 l and...
Butt welds of 1.6 mm thick sheet of the alloy 6013-T4 were produced using a Nd-Yag laser and filler ...