Additive manufacturing (AM) as a manufacturing process has, in recent years, become widely accepted as capable of manufacturing parts that will be used in end products. In this thesis, stainless steel grade 316L parts are manufactured using two different powder bed fusion techniques, selective laser melting (SLM) and electron beam melting (EBM). It is recognized that parts made using these processes will have unique microstructures and mechanical properties that have not been seen in bulk parts produced with other methods. The driving force behind the formation of these structures is the fast cooling speed that induces segregation of elements, forming an inhomogeneous microstructure. How these structures react to thermal treatment is less w...
The novel hybrid manufacturing process incorporating additive manufacturing (AM) with a subsequent h...
Selective Laser Melting (SLM) shows a big potential within additive manufacturing of metals. The com...
316L stainless steel alloy is well known for its corrosion resistance and combination of strength a...
Additive manufacturing (AM) as a manufacturing process has, in recent years, become widely accepted ...
The thesis focuses on exploring the sub-grain structure in stainless steel 316L prepared by additive...
Additive manufacturing (AM) is rapidly expanding in many industrial applications because of the vers...
Additive manufacturing has the potential to reinvent the manufacturing industry by reducing energy u...
Dans le domaine de la métallurgie, la fabrication additive (FA) est un procédé de mise en forme des ...
Selective Laser Melting (SLM) shows a big potential within additive manufacturing of metals. The co...
Additive manufacturing (AM) is a technology that inverts the procedure of traditional machining. Ins...
International audienceAdditive manufacturing technologies are characterized by complex process inter...
Additive manufacturing by selective laser melting (SLM) was used to investigate the effect of powder...
This thesis work was done to get a fundamental knowledge of the mechanical and microstructural prope...
In additive manufacturing (AM), the technology and processing parameters are key elements that deter...
The novel hybrid manufacturing process incorporating additive manufacturing (AM) with a subsequent h...
Selective Laser Melting (SLM) shows a big potential within additive manufacturing of metals. The com...
316L stainless steel alloy is well known for its corrosion resistance and combination of strength a...
Additive manufacturing (AM) as a manufacturing process has, in recent years, become widely accepted ...
The thesis focuses on exploring the sub-grain structure in stainless steel 316L prepared by additive...
Additive manufacturing (AM) is rapidly expanding in many industrial applications because of the vers...
Additive manufacturing has the potential to reinvent the manufacturing industry by reducing energy u...
Dans le domaine de la métallurgie, la fabrication additive (FA) est un procédé de mise en forme des ...
Selective Laser Melting (SLM) shows a big potential within additive manufacturing of metals. The co...
Additive manufacturing (AM) is a technology that inverts the procedure of traditional machining. Ins...
International audienceAdditive manufacturing technologies are characterized by complex process inter...
Additive manufacturing by selective laser melting (SLM) was used to investigate the effect of powder...
This thesis work was done to get a fundamental knowledge of the mechanical and microstructural prope...
In additive manufacturing (AM), the technology and processing parameters are key elements that deter...
The novel hybrid manufacturing process incorporating additive manufacturing (AM) with a subsequent h...
Selective Laser Melting (SLM) shows a big potential within additive manufacturing of metals. The com...
316L stainless steel alloy is well known for its corrosion resistance and combination of strength a...