In this research, four different welding arc modes including conventional cold metal transfer (CMT), CMT-Pulse (CMT-P), CMT-Advanced (CMT-ADV), and CMT pulse advanced (CMT-PADV) were used to deposit 2219-Al wire. The effects of different arc modes on porosity, pore size distribution, microstructure evolution, and mechanical properties were thoroughly investigated. The statistical analysis of the porosity and its size distribution indicated that the CMT-PADV process gave the smallest pore area percentage and pore aspect ratio, and had almost no larger pores. The results from optical microscopy, scanning electron microscopy, and fractographic morphology proved that uniform and fine equiaxed grains, evenly distributed Al2Cu second phase partic...
As an important part of the additive manufacturing technology, wire arc additive manufacture (WAAM) ...
This study aims to investigate the weldability of 1050 aluminum alloy (AA1050) and galvanized 1314 s...
Due to its high efficiency, cold metal transfer (CMT) arc additive manufacturing presents considerab...
In this research, four different welding arc modes including conventional cold metal transfer (CMT),...
The effect of arc modes on the microstructure and tensile properties of 5183 aluminium alloy fabrica...
In order to build a better understanding of the relationship between depositing mode and porosity, m...
Wire arc additive manufacturing technology with cold metal transfer and pulse welding (CMT+P) is a p...
Wire and arc additively manufactured aluminum alloys are prone to porosity, leading to poor mechanic...
Lightweight structures fabricated from dissimilar aluminum alloys in aerospace and marine industries...
In order to build a better understanding of the relationship between depositing mode and porosity, m...
Ultra-high strength 7xxx series aluminum alloys are widely used in aerospace applications due to the...
Cold metal transfer (CMT) welding is an attractive welding technology for thin sheet aluminum alloys...
The development of wire arc additive manufacturing (WAAM) provides a new solution for manufacturing ...
Wire+Arc Additive Manufacturing is very suitable for the production of large scale aluminium parts....
Sustainable lightweight vehicle design has becoming a key trend in the future. A new way to join alu...
As an important part of the additive manufacturing technology, wire arc additive manufacture (WAAM) ...
This study aims to investigate the weldability of 1050 aluminum alloy (AA1050) and galvanized 1314 s...
Due to its high efficiency, cold metal transfer (CMT) arc additive manufacturing presents considerab...
In this research, four different welding arc modes including conventional cold metal transfer (CMT),...
The effect of arc modes on the microstructure and tensile properties of 5183 aluminium alloy fabrica...
In order to build a better understanding of the relationship between depositing mode and porosity, m...
Wire arc additive manufacturing technology with cold metal transfer and pulse welding (CMT+P) is a p...
Wire and arc additively manufactured aluminum alloys are prone to porosity, leading to poor mechanic...
Lightweight structures fabricated from dissimilar aluminum alloys in aerospace and marine industries...
In order to build a better understanding of the relationship between depositing mode and porosity, m...
Ultra-high strength 7xxx series aluminum alloys are widely used in aerospace applications due to the...
Cold metal transfer (CMT) welding is an attractive welding technology for thin sheet aluminum alloys...
The development of wire arc additive manufacturing (WAAM) provides a new solution for manufacturing ...
Wire+Arc Additive Manufacturing is very suitable for the production of large scale aluminium parts....
Sustainable lightweight vehicle design has becoming a key trend in the future. A new way to join alu...
As an important part of the additive manufacturing technology, wire arc additive manufacture (WAAM) ...
This study aims to investigate the weldability of 1050 aluminum alloy (AA1050) and galvanized 1314 s...
Due to its high efficiency, cold metal transfer (CMT) arc additive manufacturing presents considerab...