AbstractLaser cladding has become an established technology for parts repair and surface modification for cost-intensive components. Due to ongoing improvements of laser sources, process technology and strategy, the range of applications for laser deposition processes is continuously increasing. Critical issues as well as performance and economic efficiency problems have been solved in recent years. Consequently big advances have been done in laser cladding, from micro to macro, from low- to high power as well as in hybrid processes
The growing significance of laser technology in industrial manufacturing is also observed in case of...
Laser-Metal-Deposition (LMD) and Plasma-Transferred-Arc (PTA) are well known technologies which can ...
Directed energy deposition (DED) processes frequently rely on metallic powder and wire feedstock mat...
Laser cladding has become an established technology for parts repair and surface modification for co...
AbstractLaser cladding has become an established technology for parts repair and surface modificatio...
Surface coating, repair, and rapid design changes of high-value components and tools are demanding c...
The present paper reviews recent progress in productivity, precision and quality of laser-based clad...
1. Introduction / 2. Fundamentals of laser cladding and direct laser metal deposition / 3. High prec...
During the last decades Direct Laser Cladding has become an established technique in many industrial...
Laser beam build-up welding gains increasing importance for the production of high-performance coati...
Plasma-Transferred-Arc (PTA) welding is a process that enables high deposition rates, but also cause...
Laser welding is a high-energy process used in a wide range of advanced materials to obtain micro- t...
AbstractAn innovative laser cladding technology based on laser scanning is presented. The variable s...
Laser cladding technology is widely used in industry to precisely apply tailored surface coatings, a...
AbstractConventionally manufactured tools are often completely constructed of a high-alloyed, expens...
The growing significance of laser technology in industrial manufacturing is also observed in case of...
Laser-Metal-Deposition (LMD) and Plasma-Transferred-Arc (PTA) are well known technologies which can ...
Directed energy deposition (DED) processes frequently rely on metallic powder and wire feedstock mat...
Laser cladding has become an established technology for parts repair and surface modification for co...
AbstractLaser cladding has become an established technology for parts repair and surface modificatio...
Surface coating, repair, and rapid design changes of high-value components and tools are demanding c...
The present paper reviews recent progress in productivity, precision and quality of laser-based clad...
1. Introduction / 2. Fundamentals of laser cladding and direct laser metal deposition / 3. High prec...
During the last decades Direct Laser Cladding has become an established technique in many industrial...
Laser beam build-up welding gains increasing importance for the production of high-performance coati...
Plasma-Transferred-Arc (PTA) welding is a process that enables high deposition rates, but also cause...
Laser welding is a high-energy process used in a wide range of advanced materials to obtain micro- t...
AbstractAn innovative laser cladding technology based on laser scanning is presented. The variable s...
Laser cladding technology is widely used in industry to precisely apply tailored surface coatings, a...
AbstractConventionally manufactured tools are often completely constructed of a high-alloyed, expens...
The growing significance of laser technology in industrial manufacturing is also observed in case of...
Laser-Metal-Deposition (LMD) and Plasma-Transferred-Arc (PTA) are well known technologies which can ...
Directed energy deposition (DED) processes frequently rely on metallic powder and wire feedstock mat...