ObjectiveThis research examines 17-4 PH stainless steel powders produced by atomization in either argon or nitrogen atmospheres (producing martensitic (α-Fe) or mostly austenitic (γ-Fe) phase powders, respectively) and correspondingly fabricated by selective laser melting (SLM) in either a nitrogen or argon atmosphere.MethodsPre-alloyed 17-4 stainless steel powders prepared by atomization in either argon or nitrogen atmospheres were fabricated by SLM. The initial powder microstructures and phase structures were examined by light (optical) microscopy (OM), scanning electron microscopy (SEM), and X-ray diffraction (XRD). Prototypes fabricated by SLM were similarly characterized, and in addition transmission electron microscopy (TEM) character...
The microstructure homogeneity and variability in mechanical properties of 316L stainless steel comp...
The purpose of this study has been to investigate if 316L powder for Selective Laser Melting (SLM) c...
International audienceIn this study, the microstructure and hydrogen embrittlement of 17–4 PH stainl...
ObjectiveThis research examines 17-4 PH stainless steel powders produced by atomization in either ar...
Chemical composition and atomizing gas of powders may affect properties of 17-4 PH fabricated via s...
The mechanical behavior and the microstructural evolution of 17-4 precipitation hardenable (PH) stai...
Additive Manufacturing (AM), known as 3-D printing, is a modernize technology enables computer aided...
17–4 PH (precipitation hardening) stainless steel is commonly used for the fabrication of complicate...
The determination of microstructural details for powder materials is vital for facilitating their se...
Laser powder bed fusion (L-PBF), also commonly referred to selective laser melting, has been attract...
Additive manufacturing (AM) is a promising technique due to the scope of producing complex objects f...
Additive manufacturing by selective laser melting (SLM) was used to investigate the effect of powder...
Additive manufacturing is revolutionizing the way of production and use of materials. The clear tend...
Metal additive manufacturing (AM) has been evolving in response to industrial and social challenges....
International audienceThe aim of this work was to compare the microstructures of 17-4PH martensitic ...
The microstructure homogeneity and variability in mechanical properties of 316L stainless steel comp...
The purpose of this study has been to investigate if 316L powder for Selective Laser Melting (SLM) c...
International audienceIn this study, the microstructure and hydrogen embrittlement of 17–4 PH stainl...
ObjectiveThis research examines 17-4 PH stainless steel powders produced by atomization in either ar...
Chemical composition and atomizing gas of powders may affect properties of 17-4 PH fabricated via s...
The mechanical behavior and the microstructural evolution of 17-4 precipitation hardenable (PH) stai...
Additive Manufacturing (AM), known as 3-D printing, is a modernize technology enables computer aided...
17–4 PH (precipitation hardening) stainless steel is commonly used for the fabrication of complicate...
The determination of microstructural details for powder materials is vital for facilitating their se...
Laser powder bed fusion (L-PBF), also commonly referred to selective laser melting, has been attract...
Additive manufacturing (AM) is a promising technique due to the scope of producing complex objects f...
Additive manufacturing by selective laser melting (SLM) was used to investigate the effect of powder...
Additive manufacturing is revolutionizing the way of production and use of materials. The clear tend...
Metal additive manufacturing (AM) has been evolving in response to industrial and social challenges....
International audienceThe aim of this work was to compare the microstructures of 17-4PH martensitic ...
The microstructure homogeneity and variability in mechanical properties of 316L stainless steel comp...
The purpose of this study has been to investigate if 316L powder for Selective Laser Melting (SLM) c...
International audienceIn this study, the microstructure and hydrogen embrittlement of 17–4 PH stainl...