Spatter formation is a major issue in deep penetration welding with solid-state lasers at high welding speeds above 8 m/min. In order to limit spatter formation, the use of local gas flows represents a technically feasible solution. By using the gas flow, the pressure balance inside the keyhole, and therefore the keyhole stability, is affected. Existing investigations demonstrate a reduction in spatter and pore formation for partial penetration welding up to a welding speed of 5 m/min. However, the effect of the gas flow is not yet clarified for full penetration welding at welding speeds above 8 m/min. By using a precisely adjustable shielding gas supply, the effect of a local gas flow of argon was characterized by welding stainless steel A...
This thesis is a collection of experimental and theoretical analyses of the behaviour of inert gases...
AbstractUsing two high speed cameras, we analyzed the 3D vapor plume fluctuations during laser weldi...
Laser welding is a unique way of joining materials with less thermal distortion and minimum metallur...
Spatter formation is a major issue in deep penetration welding with solid-state lasers at high weldi...
AbstractThe mechanisms leading to process pores in deep penetration laser beam welding are discussed...
One usually defines the main characteristic of the welding performances of a given laser system by i...
AbstractThe investigation presented in this paper aims on a quantitative analysis of spatter formati...
Abstract. In the present study, the vorticity of melt motion in the keyhole and weld pool has been e...
The numerical simulations of high power laser keyhole welding at different welding positions are per...
AbstractThe keyhole is the crucial factor for an appropriate weld seam in laser metal welding. The s...
The use of shielding gases in laser beam welding is of particular interest for materials interacting...
AbstractFor this paper the influence of the shielding gas itself as well as the feeding method on au...
AbstractHybrid laser arc welding creates a long weld pool tail. By high speed imaging the melt veloc...
This article presents unsteady simulations of laser welding based on a rapid solidification/melting ...
Pores are often observed in deep welds by pulsed laser welding process. This article develops a math...
This thesis is a collection of experimental and theoretical analyses of the behaviour of inert gases...
AbstractUsing two high speed cameras, we analyzed the 3D vapor plume fluctuations during laser weldi...
Laser welding is a unique way of joining materials with less thermal distortion and minimum metallur...
Spatter formation is a major issue in deep penetration welding with solid-state lasers at high weldi...
AbstractThe mechanisms leading to process pores in deep penetration laser beam welding are discussed...
One usually defines the main characteristic of the welding performances of a given laser system by i...
AbstractThe investigation presented in this paper aims on a quantitative analysis of spatter formati...
Abstract. In the present study, the vorticity of melt motion in the keyhole and weld pool has been e...
The numerical simulations of high power laser keyhole welding at different welding positions are per...
AbstractThe keyhole is the crucial factor for an appropriate weld seam in laser metal welding. The s...
The use of shielding gases in laser beam welding is of particular interest for materials interacting...
AbstractFor this paper the influence of the shielding gas itself as well as the feeding method on au...
AbstractHybrid laser arc welding creates a long weld pool tail. By high speed imaging the melt veloc...
This article presents unsteady simulations of laser welding based on a rapid solidification/melting ...
Pores are often observed in deep welds by pulsed laser welding process. This article develops a math...
This thesis is a collection of experimental and theoretical analyses of the behaviour of inert gases...
AbstractUsing two high speed cameras, we analyzed the 3D vapor plume fluctuations during laser weldi...
Laser welding is a unique way of joining materials with less thermal distortion and minimum metallur...