International audienceOver the past two decades, laser beam melting has emerged as the leading metal additive manufacturing process to produce small and medium-sized structures. Due to the complex physical phenomena involved in the lasermaterial interaction, instabilities in the melt pool morphology affect the final quality of the structure and remain difficult to predict by simulation. Several monitoring approaches, based on the radiation of the melt process or on a secondary illumination source, have been developed to measure its length, width and height. Nevertheless, the final morphology of the part is influenced by the volumetric forces as well as by the capillary forces applied to the melt. Thus, the shape of the melt surface is of pr...
Molten pool geometry, whose surface parameters may be extrapolated through direct process observatio...
Abstract Laser powder additive manufacturing (PBF-LB) is an additive manufacturing method capable of...
Various in-situ monitoring techniques have been developed for the detection of process drifts in the...
Ce manuscrit décrit le développement d’un système pour mesurer la forme 3D du bain de fusion du proc...
Melt pool monitoring in selective laser melting (SLM) is a key challenge to enhance the understandin...
The accurate control of process parameters is particularly important for the growth of high quality ...
Laser powder bed fusion (LPBF) attracts the attention of high-end manufacturing sectors for its capa...
Coaxial monitoring in selective laser melting (SLM) can be applied using different configurations in...
Conduction laser welding involves initiating a melt pool by exposure to high power laser induced lig...
In situ monitoring of the melt pools in laser powder bed fusion (LPBF) has enabled the elucidation o...
Coaxial imaging of melt pool dynamics provides several advantages over other monitoring methods in s...
Process observation in 3D printing of metals currently is one of the central challenges. Many compan...
Molten pool geometry, whose surface parameters may be extrapolated through direct process observatio...
Abstract Laser powder additive manufacturing (PBF-LB) is an additive manufacturing method capable of...
Various in-situ monitoring techniques have been developed for the detection of process drifts in the...
Ce manuscrit décrit le développement d’un système pour mesurer la forme 3D du bain de fusion du proc...
Melt pool monitoring in selective laser melting (SLM) is a key challenge to enhance the understandin...
The accurate control of process parameters is particularly important for the growth of high quality ...
Laser powder bed fusion (LPBF) attracts the attention of high-end manufacturing sectors for its capa...
Coaxial monitoring in selective laser melting (SLM) can be applied using different configurations in...
Conduction laser welding involves initiating a melt pool by exposure to high power laser induced lig...
In situ monitoring of the melt pools in laser powder bed fusion (LPBF) has enabled the elucidation o...
Coaxial imaging of melt pool dynamics provides several advantages over other monitoring methods in s...
Process observation in 3D printing of metals currently is one of the central challenges. Many compan...
Molten pool geometry, whose surface parameters may be extrapolated through direct process observatio...
Abstract Laser powder additive manufacturing (PBF-LB) is an additive manufacturing method capable of...
Various in-situ monitoring techniques have been developed for the detection of process drifts in the...