AbstractThe weldability of a 9.5 mm thick Mg-Rare earth alloy NZ30K using 15 kW high power CO2 laser was studied. The microstructure and mechanical properties of the typical welded joints had been analyzed and tested. When using the right laser welding parameters, good weld forming can be obtained. The microstructure of the fusion zone is small equiaxed grains. There is no softening zone to be observed according to the micro-hardness distribution across the welded joints. The results show that the thick Mg-Rare earth alloy NZ30K plate can be welded by the high power CO2 laser with good weld quality
AbstractAim of the present work is to investigate mechanical and metallurgical characteristics of co...
A new type of high temperature titanium alloy, BTi-6431S, has recently become the focus of attention...
The welding performance of CO<sub>2</sub> lasers is strongly affected by the clamping ge...
AbstractThe weldability of a 9.5 mm thick Mg-Rare earth alloy NZ30K using 15 kW high power CO2 laser...
Plates of AZ91 cast magnesium alloy with a thickness of 3.5 mm were butt-welded using a laser power ...
In the frame of the circular economy, welding of Ni‐based superalloys has gained increasing importan...
In the frame of the circular economy, welding of Ni-based superalloys has gained increasing importan...
Laser beam welding is currently used in the welding of steels, aluminium alloys, thin sheets, and di...
Laser beam welding experiments have been carried out on 3-mm thick aluminium–magnesium alloy 5083 sp...
AbstractThe study aimed at investigating the microstructure and mechanical properties of Neodymium-D...
Laser welding will be an important welding process for different applications in aerospace , aircra...
Aiming at establishing a reliable welding technique for magnesium alloys, the laser weldability of d...
This study aims at finding the effect of laser welding speed on incoloy 800 HT. This alloy is one of...
AbstractWelding is a joining procedure that offers some benefits over mechanical fasteners such as w...
Deep penetration welding with a high power CO<sub>2</sub> and diode laser may offer an a...
AbstractAim of the present work is to investigate mechanical and metallurgical characteristics of co...
A new type of high temperature titanium alloy, BTi-6431S, has recently become the focus of attention...
The welding performance of CO<sub>2</sub> lasers is strongly affected by the clamping ge...
AbstractThe weldability of a 9.5 mm thick Mg-Rare earth alloy NZ30K using 15 kW high power CO2 laser...
Plates of AZ91 cast magnesium alloy with a thickness of 3.5 mm were butt-welded using a laser power ...
In the frame of the circular economy, welding of Ni‐based superalloys has gained increasing importan...
In the frame of the circular economy, welding of Ni-based superalloys has gained increasing importan...
Laser beam welding is currently used in the welding of steels, aluminium alloys, thin sheets, and di...
Laser beam welding experiments have been carried out on 3-mm thick aluminium–magnesium alloy 5083 sp...
AbstractThe study aimed at investigating the microstructure and mechanical properties of Neodymium-D...
Laser welding will be an important welding process for different applications in aerospace , aircra...
Aiming at establishing a reliable welding technique for magnesium alloys, the laser weldability of d...
This study aims at finding the effect of laser welding speed on incoloy 800 HT. This alloy is one of...
AbstractWelding is a joining procedure that offers some benefits over mechanical fasteners such as w...
Deep penetration welding with a high power CO<sub>2</sub> and diode laser may offer an a...
AbstractAim of the present work is to investigate mechanical and metallurgical characteristics of co...
A new type of high temperature titanium alloy, BTi-6431S, has recently become the focus of attention...
The welding performance of CO<sub>2</sub> lasers is strongly affected by the clamping ge...