In direct laser deposition process, metal powder is directly fed with carrier gas through the coaxial nozzle into the melt pool created by the laser to form the solid parts. Many operational parameters of the process depend on the characteristic of the powder stream structure below the exit of the coaxial nozzle. In this paper, a computational approach is developed for the simulation of the gas-particle flow in the coaxial nozzle. By taking into account the nozzle geometry and operating parameters, such as width and inclination angle of powder passage and carrier gas velocity, the developed computational code allows the simulation, optimization and control of the delivery of the metal powders.Mechanical Engineerin
International audienceThe Laser Metal Deposition (LMD) process is an additive manufacturing method, ...
Laser aided deposition quality largely depends on the powder stream structure below the nozzle. Mode...
Coaxial powder feeding technology in the field of metal additive manufacturing is booming. In this p...
In direct laser deposition process, metal powder is directly fed with carrier gas through the coaxi...
Laser aided deposition process offers the ability to make a metal component directly from CAD drawin...
AbstractLaser direct metal deposition has become an established processing technique for the repair ...
The quality and efficiency of laser-aided direct metal deposition largely depends on the powder stre...
Axial powder stream concentration between the nozzle end and the deposition point is an important p...
The first part of the thesis aims to understand the flow structure of coaxial nozzle used in laser a...
Laser-Based Direct Metal Deposition (LBDMD) is a blown-powder laser deposition process which can pr...
AbstractA numerical model describing the diphasic jet of gas/powder issued from a coaxial nozzle use...
Understanding the interaction phenomena between the powder stream, the laser beam and the substrate ...
create a melt pool on the substrate. A nozzle is used to carry metal powder within a gas flow until ...
The coaxial laser cladding process is the heart of direct metal deposition (DMD). Rapid materials pr...
As one of the most popular additive manufacturing (AM) technologies in the aerospace industry, laser...
International audienceThe Laser Metal Deposition (LMD) process is an additive manufacturing method, ...
Laser aided deposition quality largely depends on the powder stream structure below the nozzle. Mode...
Coaxial powder feeding technology in the field of metal additive manufacturing is booming. In this p...
In direct laser deposition process, metal powder is directly fed with carrier gas through the coaxi...
Laser aided deposition process offers the ability to make a metal component directly from CAD drawin...
AbstractLaser direct metal deposition has become an established processing technique for the repair ...
The quality and efficiency of laser-aided direct metal deposition largely depends on the powder stre...
Axial powder stream concentration between the nozzle end and the deposition point is an important p...
The first part of the thesis aims to understand the flow structure of coaxial nozzle used in laser a...
Laser-Based Direct Metal Deposition (LBDMD) is a blown-powder laser deposition process which can pr...
AbstractA numerical model describing the diphasic jet of gas/powder issued from a coaxial nozzle use...
Understanding the interaction phenomena between the powder stream, the laser beam and the substrate ...
create a melt pool on the substrate. A nozzle is used to carry metal powder within a gas flow until ...
The coaxial laser cladding process is the heart of direct metal deposition (DMD). Rapid materials pr...
As one of the most popular additive manufacturing (AM) technologies in the aerospace industry, laser...
International audienceThe Laser Metal Deposition (LMD) process is an additive manufacturing method, ...
Laser aided deposition quality largely depends on the powder stream structure below the nozzle. Mode...
Coaxial powder feeding technology in the field of metal additive manufacturing is booming. In this p...