The quality and efficiency of laser-aided direct metal deposition largely depends on the powder stream structure below the nozzle. Numerical modeling of the powder concentration distribution is complex due to the complex phenomena involved in the two-phase turbulence flow. In this paper, the gravity-driven powder flow is studied along with powder properties, nozzle geometries, and shielding gas settings. A 3-D numerical model is introduced to quantitatively predict the powder stream concentration variation in order to facilitate coaxial nozzle design optimizations. Effects of outer shielding gas directions, inner/outer shielding gas flow rate, powder passage directions, and opening width on the structure of the powder stream are systematica...
Laser metal deposition (LMD) is a blown powder process used for the additive manufacturing of large ...
Metal additive manufacturing has received much attention in the past few decades, and it offers a va...
For the purpose of improving the productivity of laser metal deposition (LMD), the focus of current ...
Laser aided deposition quality largely depends on the powder stream structure below the nozzle. Mode...
In direct laser deposition process, metal powder is directly fed with carrier gas through the coaxi...
AbstractLaser direct metal deposition has become an established processing technique for the repair ...
Laser aided deposition process offers the ability to make a metal component directly from CAD drawin...
Axial powder stream concentration between the nozzle end and the deposition point is an important p...
International audienceThe Laser Metal Deposition (LMD) process is an additive manufacturing method, ...
The first part of the thesis aims to understand the flow structure of coaxial nozzle used in laser a...
create a melt pool on the substrate. A nozzle is used to carry metal powder within a gas flow until ...
Laser-Based Direct Metal Deposition (LBDMD) is a blown-powder laser deposition process which can pr...
Understanding the interaction phenomena between the powder stream, the laser beam and the substrate ...
Direct laser deposition is a solid freeform fabrication process that is capable of producing fully d...
The Laser Aided Manufacturing Processes (LAMP) developed at the University of Missouri-Rolla is used...
Laser metal deposition (LMD) is a blown powder process used for the additive manufacturing of large ...
Metal additive manufacturing has received much attention in the past few decades, and it offers a va...
For the purpose of improving the productivity of laser metal deposition (LMD), the focus of current ...
Laser aided deposition quality largely depends on the powder stream structure below the nozzle. Mode...
In direct laser deposition process, metal powder is directly fed with carrier gas through the coaxi...
AbstractLaser direct metal deposition has become an established processing technique for the repair ...
Laser aided deposition process offers the ability to make a metal component directly from CAD drawin...
Axial powder stream concentration between the nozzle end and the deposition point is an important p...
International audienceThe Laser Metal Deposition (LMD) process is an additive manufacturing method, ...
The first part of the thesis aims to understand the flow structure of coaxial nozzle used in laser a...
create a melt pool on the substrate. A nozzle is used to carry metal powder within a gas flow until ...
Laser-Based Direct Metal Deposition (LBDMD) is a blown-powder laser deposition process which can pr...
Understanding the interaction phenomena between the powder stream, the laser beam and the substrate ...
Direct laser deposition is a solid freeform fabrication process that is capable of producing fully d...
The Laser Aided Manufacturing Processes (LAMP) developed at the University of Missouri-Rolla is used...
Laser metal deposition (LMD) is a blown powder process used for the additive manufacturing of large ...
Metal additive manufacturing has received much attention in the past few decades, and it offers a va...
For the purpose of improving the productivity of laser metal deposition (LMD), the focus of current ...