The ability to monitor and control the depth of a laser weld in real-time is critical in many laser welding applications. Consequently, the authors have investigated the use of an optical method to sense weld depth. Welds were generated on kovar samples, using a pulsed Nd:YAG laser. The sensing method uses digital high-speed photography to measure the velocity of the plume of vaporized metal atoms ejected from the metal surface. An energy balance equation is then used to relate the plume velocity to the size of the weld. Numerical solution of the energy balance equation yielded values for weld depth that were within 8% of the actual measured values
AbstractThe in-process monitoring and real-time control of the penetration depth during laser weldin...
Penetration depth is an important factor critical to the quality of a laser weld. This paper examine...
High-power CO$\sb2$ laser welding has been widely used in the industry because of its high productiv...
For the industrial application of laser welding it is important to apply the highest possible weldin...
A method for on-line monitoring of the joint penetration depth is reported, based on the spectroscop...
The key quality factor for reliable deep penetration laser welding processes is a correct penetratio...
Laser processing has became a valuable alternative to classical techniques in a large variety of tec...
For economical reasons it is desirable to apply the highest possible speed during laser welding. Inc...
Laser welding is a promising joining process for copper interconnections. A key criterion of quality...
In-process monitoring and feedback control are fundamental actions for stable and good quality laser...
AbstractWe describe a sensor principle permitting the fast online measurement of the position of the...
Recent developments in laser joining show the applicability of spectral analysis of the plasma plume...
Recent developments in laser joining show the applicability of spectral analysis of the plasma plume...
The in-process monitoring and real-time control of the penetration depth during laser welding is eva...
For economical reasons it is desirable to apply the highest possible speed during laser welding. Inc...
AbstractThe in-process monitoring and real-time control of the penetration depth during laser weldin...
Penetration depth is an important factor critical to the quality of a laser weld. This paper examine...
High-power CO$\sb2$ laser welding has been widely used in the industry because of its high productiv...
For the industrial application of laser welding it is important to apply the highest possible weldin...
A method for on-line monitoring of the joint penetration depth is reported, based on the spectroscop...
The key quality factor for reliable deep penetration laser welding processes is a correct penetratio...
Laser processing has became a valuable alternative to classical techniques in a large variety of tec...
For economical reasons it is desirable to apply the highest possible speed during laser welding. Inc...
Laser welding is a promising joining process for copper interconnections. A key criterion of quality...
In-process monitoring and feedback control are fundamental actions for stable and good quality laser...
AbstractWe describe a sensor principle permitting the fast online measurement of the position of the...
Recent developments in laser joining show the applicability of spectral analysis of the plasma plume...
Recent developments in laser joining show the applicability of spectral analysis of the plasma plume...
The in-process monitoring and real-time control of the penetration depth during laser welding is eva...
For economical reasons it is desirable to apply the highest possible speed during laser welding. Inc...
AbstractThe in-process monitoring and real-time control of the penetration depth during laser weldin...
Penetration depth is an important factor critical to the quality of a laser weld. This paper examine...
High-power CO$\sb2$ laser welding has been widely used in the industry because of its high productiv...