Accurate phase fraction analysis is an essential element of the microstructural characterization of alloys and often serves as a basis to quantify effects such as heat treatment or mechanical deformation. Additive manufacturing (AM) of metals, due to the intrinsic nonequilibrium solidification and spatial variability, creates additional challenges for the proper quantification of phase fraction. Such challenges are exacerbated when the alloy itself is prone to deformation-induced phase transformation. Using commonly available in-house X-ray diffraction (XRD) and electron backscatter diffraction (EBSD) and less commonly used synchrotron-based high-energy X-ray diffraction, we characterized nitrogen-atomized 17-4 precipitation-hardening marte...
A comprehensive study was intended to show the microstructural features of additively manufactured (...
The alloy 21-6-9 is a nitrogen-strengthened austenitic stainless steel often used in aerospace appli...
Metal additive manufacturing (AM), also known as 3D printing, is a disruptive manufacturing technolo...
Microstructural evolution during laser-powder bed fusion of 17–4 PH martensitic steel was studied. P...
International audienceThe aim of this work was to compare the microstructures of 17-4PH martensitic ...
Fusion-based additive manufacturing technologies enable the fabrication of geometrically and composi...
Maraging steels are used to produce tools by Additive Manufacturing (AM) methods such as Laser Metal...
Maraging steels are used to produce tools by Additive Manufacturing (AM) methods such as Laser Metal...
A key feature when using martensitic steels is the proportion of retained austenite present in the f...
During laser-based powder bed fusion, the non-equilibrium solidification conditions promote local el...
Acknowledgements: The authors from Nanyang Technological University (NTU) and University of Cambridg...
Maraging 300 is an ultrahigh strength steel with significant alloy addition, resulting in a martensi...
Additive manufacturing (AM) is a promising technique due to the scope of producing complex objects f...
Rapidly solidified microstructures, produced by concentrated heat sources, have gained increasing at...
International audienceWe report that 316L austenitic stainless steel fabricated by direct laser depo...
A comprehensive study was intended to show the microstructural features of additively manufactured (...
The alloy 21-6-9 is a nitrogen-strengthened austenitic stainless steel often used in aerospace appli...
Metal additive manufacturing (AM), also known as 3D printing, is a disruptive manufacturing technolo...
Microstructural evolution during laser-powder bed fusion of 17–4 PH martensitic steel was studied. P...
International audienceThe aim of this work was to compare the microstructures of 17-4PH martensitic ...
Fusion-based additive manufacturing technologies enable the fabrication of geometrically and composi...
Maraging steels are used to produce tools by Additive Manufacturing (AM) methods such as Laser Metal...
Maraging steels are used to produce tools by Additive Manufacturing (AM) methods such as Laser Metal...
A key feature when using martensitic steels is the proportion of retained austenite present in the f...
During laser-based powder bed fusion, the non-equilibrium solidification conditions promote local el...
Acknowledgements: The authors from Nanyang Technological University (NTU) and University of Cambridg...
Maraging 300 is an ultrahigh strength steel with significant alloy addition, resulting in a martensi...
Additive manufacturing (AM) is a promising technique due to the scope of producing complex objects f...
Rapidly solidified microstructures, produced by concentrated heat sources, have gained increasing at...
International audienceWe report that 316L austenitic stainless steel fabricated by direct laser depo...
A comprehensive study was intended to show the microstructural features of additively manufactured (...
The alloy 21-6-9 is a nitrogen-strengthened austenitic stainless steel often used in aerospace appli...
Metal additive manufacturing (AM), also known as 3D printing, is a disruptive manufacturing technolo...