In this study, pulse-width modulation of laser power was identified as a feasible means for varying the chemical gradient in copper–nickel-graded materials. Graded material deposits of 70 wt. %. copper-30 wt. %. nickel on 100 wt. %. nickel and vice versa were deposited and characterized. The 70/30 copper–nickel weight ratio in the feedstock powder was achieved through blending elemental copper and 96 wt. %. Ni–Delero-22 alloy. At the dissimilar material interface over the course of four layers, the duty cycle of power was ramped down from a high value to optimized deposition conditions. This change was theorized to influence the remelting and deposition height, and by extension, vary the chemistry gradient. X-ray Energy Dispersive Spectrosc...
International audienceLaser metal deposition (LMD) is an alternative method to other cladding techni...
Copper–chrome–niobium alloys exhibit excellent thermal and electrical properties combined with high ...
Abstract—Adopting laser cladding technology, 3 kinds of alloy powder (Ni, Fe, Co) is successfully cl...
In this study, pulse‐width modulation of laser power was identified as a feasible means for varying ...
This work deals with the planning and fabrication of a functionally gradient copper-nickel compositi...
“The aim of this research was to investigate the feasibility of fabricating custom designed, graded ...
In the current study, the feasibility of fabricating copper—nickel alloys by using laser metal depos...
Additive Manufacturing (AM), often known as 3D printing, is a technique for creating three-dimension...
Laser metal deposition is an emerging technology for producing fully dense metallic parts. This pro...
The laser metal deposition approach implements a unique opportunity for controlling the fabrication ...
The Laser Aided Manufacturing Processes (LAMP) developed at the University of Missouri--Rolla is use...
The feasibility of fabricating a single component with a copper and stainless steel multi-material s...
Selective Laser Melting (SLM) is an Additive Manufacturing (AM) technology capable of producing full...
Laser deposition of metal layers has been recognized, in recent years, as a one-step process to fabr...
Laser deposition of metal layers has been recognized, in recent years, as a one-step process to fabr...
International audienceLaser metal deposition (LMD) is an alternative method to other cladding techni...
Copper–chrome–niobium alloys exhibit excellent thermal and electrical properties combined with high ...
Abstract—Adopting laser cladding technology, 3 kinds of alloy powder (Ni, Fe, Co) is successfully cl...
In this study, pulse‐width modulation of laser power was identified as a feasible means for varying ...
This work deals with the planning and fabrication of a functionally gradient copper-nickel compositi...
“The aim of this research was to investigate the feasibility of fabricating custom designed, graded ...
In the current study, the feasibility of fabricating copper—nickel alloys by using laser metal depos...
Additive Manufacturing (AM), often known as 3D printing, is a technique for creating three-dimension...
Laser metal deposition is an emerging technology for producing fully dense metallic parts. This pro...
The laser metal deposition approach implements a unique opportunity for controlling the fabrication ...
The Laser Aided Manufacturing Processes (LAMP) developed at the University of Missouri--Rolla is use...
The feasibility of fabricating a single component with a copper and stainless steel multi-material s...
Selective Laser Melting (SLM) is an Additive Manufacturing (AM) technology capable of producing full...
Laser deposition of metal layers has been recognized, in recent years, as a one-step process to fabr...
Laser deposition of metal layers has been recognized, in recent years, as a one-step process to fabr...
International audienceLaser metal deposition (LMD) is an alternative method to other cladding techni...
Copper–chrome–niobium alloys exhibit excellent thermal and electrical properties combined with high ...
Abstract—Adopting laser cladding technology, 3 kinds of alloy powder (Ni, Fe, Co) is successfully cl...