Remote laser-welding systems are being used more frequently because of their larger working areas, shorter downtimes and ability to weld different seam types with high accuracy at greater speeds in comparison to conventional welding. Therefore, precise process-monitoring methods are needed in order to achieve weld traceability and good process and quality control to accompany different welding situations. This paper proposes the use of optical triangulation feedback on a remote laser-welding system that makes it possible to monitor a larger working area. This configuration means we can monitor the interaction zone itself, analyze the 3D position of the laser beam and key process estimators as a result of laser welding. AISI steel plates wer...
Laser materials processing is widely used in industry today. The quality of the produced parts is vi...
Remote Laser Welding (RLW) combines the positive features of tactile laser welding with additional b...
The ability to monitor and control the depth of a laser weld in real-time is critical in many laser ...
This paper deals with a method to control the penetration depth in overlap laser welding, using feed...
For economical reasons it is desirable to apply the highest possible speed during laser welding. Inc...
The key quality factor for reliable deep penetration laser welding processes is a correct penetratio...
In laser beam welding the penetration depth is one of the most important quality aspects. Many indus...
For economical reasons it is desirable to apply the highest possible speed during laser welding. Inc...
In-process monitoring and feedback control are fundamental actions for stable and good quality laser...
High-power CO$\sb2$ laser welding has been widely used in the industry because of its high productiv...
The increase in complex workpieces with changing geometries demands advanced control algorithms in o...
Remote laser welding systems can usually focus a laser beam to diameters of 0.1 mm. Therefore, high ...
The objective of this work is the design of a feedback control system for the laser welding process,...
It will be shown that there is a correlation between the quality of the weld seam and the degree of ...
Laser welding is a promising joining process for copper interconnections. A key criterion of quality...
Laser materials processing is widely used in industry today. The quality of the produced parts is vi...
Remote Laser Welding (RLW) combines the positive features of tactile laser welding with additional b...
The ability to monitor and control the depth of a laser weld in real-time is critical in many laser ...
This paper deals with a method to control the penetration depth in overlap laser welding, using feed...
For economical reasons it is desirable to apply the highest possible speed during laser welding. Inc...
The key quality factor for reliable deep penetration laser welding processes is a correct penetratio...
In laser beam welding the penetration depth is one of the most important quality aspects. Many indus...
For economical reasons it is desirable to apply the highest possible speed during laser welding. Inc...
In-process monitoring and feedback control are fundamental actions for stable and good quality laser...
High-power CO$\sb2$ laser welding has been widely used in the industry because of its high productiv...
The increase in complex workpieces with changing geometries demands advanced control algorithms in o...
Remote laser welding systems can usually focus a laser beam to diameters of 0.1 mm. Therefore, high ...
The objective of this work is the design of a feedback control system for the laser welding process,...
It will be shown that there is a correlation between the quality of the weld seam and the degree of ...
Laser welding is a promising joining process for copper interconnections. A key criterion of quality...
Laser materials processing is widely used in industry today. The quality of the produced parts is vi...
Remote Laser Welding (RLW) combines the positive features of tactile laser welding with additional b...
The ability to monitor and control the depth of a laser weld in real-time is critical in many laser ...