AbstractThe γ′ strengthening phase in an advanced nickel-based superalloy, ATI 718Plus, was characterized using a blind source separation applied to a four dimensional X-ray microanalysis dataset obtained by scanning transmission electron microscopy. Selected patterns in the X-ray spectra identified by independent component analysis were found to be spatially and chemically representative of the matrix (γ) and precipitate phases (γ′) present in the superalloy, enabling their size, shape and distribution to be determined. The three dimensional chemical reconstruction of the microstructure may provide insight into the role of the various alloying elements in the evolution of the microstructure at the nano-scale
International audienceNanostructural features of nickel-based superalloys as revealed by Field-Ion M...
International audienceThe nanometer-scale (nano-scale) microstructural evolution in an additively ma...
International audienceAn original method to characterize the γ'-phase tertiary precipitates in a Ni-...
The γ’ strengthening phase in an advanced nickel-based superalloy, ATI 718Plus, was characterized us...
Allvac 718Plus (718Plus) is a high strength, corrosion resistant nickel- based superalloy used for a...
The knowledge of the chemical composition at the atomic level of alloys is essential to understand t...
Abstract- The combined techniques of atom probe field-ion microscopy and transmission electron micro...
The purpose of this project was to characterize the microstructural and microchemical effects of a p...
Phase separation of g0 precipitates determines the microstructure and mechanical properties of nick...
Superalloys are metallic alloys with specific microstructures and atoms in solid solution allowing g...
Tailoring the properties of intermetallic alloys and phases, which resemble the foundation of a vast...
The micrograph shows the three distinct phases of γ' present in polycrystalline superalloys. These a...
ATI 718Plus® is a nickel-based superalloy developed to replace Inconel 718 in aero engines for stati...
Abstract. Atom-probe field-ion microscopy (APFIM) is used to study partitioning of the alloying elem...
In the present study, the partition of chemical elements between γ and γ′ phases in CMSX-4 was inves...
International audienceNanostructural features of nickel-based superalloys as revealed by Field-Ion M...
International audienceThe nanometer-scale (nano-scale) microstructural evolution in an additively ma...
International audienceAn original method to characterize the γ'-phase tertiary precipitates in a Ni-...
The γ’ strengthening phase in an advanced nickel-based superalloy, ATI 718Plus, was characterized us...
Allvac 718Plus (718Plus) is a high strength, corrosion resistant nickel- based superalloy used for a...
The knowledge of the chemical composition at the atomic level of alloys is essential to understand t...
Abstract- The combined techniques of atom probe field-ion microscopy and transmission electron micro...
The purpose of this project was to characterize the microstructural and microchemical effects of a p...
Phase separation of g0 precipitates determines the microstructure and mechanical properties of nick...
Superalloys are metallic alloys with specific microstructures and atoms in solid solution allowing g...
Tailoring the properties of intermetallic alloys and phases, which resemble the foundation of a vast...
The micrograph shows the three distinct phases of γ' present in polycrystalline superalloys. These a...
ATI 718Plus® is a nickel-based superalloy developed to replace Inconel 718 in aero engines for stati...
Abstract. Atom-probe field-ion microscopy (APFIM) is used to study partitioning of the alloying elem...
In the present study, the partition of chemical elements between γ and γ′ phases in CMSX-4 was inves...
International audienceNanostructural features of nickel-based superalloys as revealed by Field-Ion M...
International audienceThe nanometer-scale (nano-scale) microstructural evolution in an additively ma...
International audienceAn original method to characterize the γ'-phase tertiary precipitates in a Ni-...