Additive manufacturing (AM) is rapidly expanding in many industrial applications because of the versatile possibilities of fast and complex fabrication of added value products. This manufacturing process would significantly reduce manufacturing time and development cost for nuclear components. However, the process leads to materials with complex microstructures, and their structural stability for nuclear application is still uncertain. This study focuses on 316L stainless steel fabricated by selective laser melting (SLM) in the context of nuclear application, and compares with a cold-rolled solution annealed 316L sample. The effect of heat treatment (HT) and hot isostatic pressing (HIP) on the microstructure and mechanical properties is dis...
Selective Laser Melting (SLM) shows a big potential within additive manufacturing of metals. The com...
In this work, we examined the influence of different types of selective laser melting (SLM) devices ...
Additive Manufacturing (AM) recently became an attractive manufacturing process in several industria...
Additive manufacturing (AM) is rapidly expanding in many industrial applications because of the vers...
Despite ongoing optimization, selective laser melting (SLM) technology still cannot guarantee the pr...
Selective Laser Melting (SLM) has been one of the preferred Additive Manufacturing process to fabric...
Dans le domaine de la métallurgie, la fabrication additive (FA) est un procédé de mise en forme des ...
none4noMetal components produced via selective laser melting (SLM) additive manufacturing (AM) can o...
The microstructure homogeneity and variability in mechanical properties of 316L stainless steel comp...
Additive manufacturing (AM) as a manufacturing process has, in recent years, become widely accepted ...
Selective Laser Melting (SLM) shows a big potential within additive manufacturing of metals. The co...
peer reviewedIn this study, samples of stainless steel AISI 316L have been processed by selective la...
International audienceIn the framework of the fabrication of 316L stainless steel (SS) components by...
Additive manufacturing by selective laser melting (SLM) was used to investigate the effect of powder...
Selective Laser Melting (SLM) shows a big potential within additive manufacturing of metals. The com...
In this work, we examined the influence of different types of selective laser melting (SLM) devices ...
Additive Manufacturing (AM) recently became an attractive manufacturing process in several industria...
Additive manufacturing (AM) is rapidly expanding in many industrial applications because of the vers...
Despite ongoing optimization, selective laser melting (SLM) technology still cannot guarantee the pr...
Selective Laser Melting (SLM) has been one of the preferred Additive Manufacturing process to fabric...
Dans le domaine de la métallurgie, la fabrication additive (FA) est un procédé de mise en forme des ...
none4noMetal components produced via selective laser melting (SLM) additive manufacturing (AM) can o...
The microstructure homogeneity and variability in mechanical properties of 316L stainless steel comp...
Additive manufacturing (AM) as a manufacturing process has, in recent years, become widely accepted ...
Selective Laser Melting (SLM) shows a big potential within additive manufacturing of metals. The co...
peer reviewedIn this study, samples of stainless steel AISI 316L have been processed by selective la...
International audienceIn the framework of the fabrication of 316L stainless steel (SS) components by...
Additive manufacturing by selective laser melting (SLM) was used to investigate the effect of powder...
Selective Laser Melting (SLM) shows a big potential within additive manufacturing of metals. The com...
In this work, we examined the influence of different types of selective laser melting (SLM) devices ...
Additive Manufacturing (AM) recently became an attractive manufacturing process in several industria...