Nanostructure evolution during low temperature aging of three binary Fe-Cr alloys has been investigated by atom probe tomography. A new method based on radial distribution function (RDF) analysis to quantify the composition wavelength and amplitude of spinodal decomposition is proposed. Wavelengths estimated from RDF have a power-law type evolution and are in reasonable agreement with wavelengths estimated using other more conventional methods. The main advantages of the proposed method are the following: (1) Selecting a box size to generate the frequency diagram, which is known to generate bias in the evaluation of amplitude, is avoided. (2) The determination of amplitude is systematic and utilizes the wavelength evaluated first to subsequ...
The Electron Energy Loss Fine Structure (EELFS) method allows to obtain the information on surface l...
The Fe–Cr alloy system is the basis of ferritic steels, which are important structural materials for...
Electron diffraction patterns from thin films of electroless nickel and copper, electroplated copper...
Nanostructure evolution during low temperature aging of three binary Fe-Cr alloys has been investiga...
Reasonable evaluation of composition amplitude in spinodal decomposition is a challenge to microanal...
The atom probe was used to study the microstructure of samples of Fe-Cr (32 at %) aged for different...
Stainless steels are very important engineering materials in a variety of applications such as in th...
Les cinétiques de décomposition dues à la présence d'une lacune de miscibilité dans le système Fe-Cr...
International audienceThe present study aims at characterizing the amplitude of chromium concentrati...
Spinodal decomposition is a key phase transition in advanced materials and a significant effort is p...
International audienceThe fine microstructure obtained by unmixing of a solid solution either by cla...
In-situ, time-resolved small-angle neutron scattering (SANS) investigations of the early stages of t...
The measurement of compositions in the atom probe has been studied by considering the phase decompos...
International audienceThe a–a9 spinodal decomposition is known to occurr in iron–chromium-based mode...
In-situ, time-resolved small-angle neutron scattering (SANS) investigations of the early stages of t...
The Electron Energy Loss Fine Structure (EELFS) method allows to obtain the information on surface l...
The Fe–Cr alloy system is the basis of ferritic steels, which are important structural materials for...
Electron diffraction patterns from thin films of electroless nickel and copper, electroplated copper...
Nanostructure evolution during low temperature aging of three binary Fe-Cr alloys has been investiga...
Reasonable evaluation of composition amplitude in spinodal decomposition is a challenge to microanal...
The atom probe was used to study the microstructure of samples of Fe-Cr (32 at %) aged for different...
Stainless steels are very important engineering materials in a variety of applications such as in th...
Les cinétiques de décomposition dues à la présence d'une lacune de miscibilité dans le système Fe-Cr...
International audienceThe present study aims at characterizing the amplitude of chromium concentrati...
Spinodal decomposition is a key phase transition in advanced materials and a significant effort is p...
International audienceThe fine microstructure obtained by unmixing of a solid solution either by cla...
In-situ, time-resolved small-angle neutron scattering (SANS) investigations of the early stages of t...
The measurement of compositions in the atom probe has been studied by considering the phase decompos...
International audienceThe a–a9 spinodal decomposition is known to occurr in iron–chromium-based mode...
In-situ, time-resolved small-angle neutron scattering (SANS) investigations of the early stages of t...
The Electron Energy Loss Fine Structure (EELFS) method allows to obtain the information on surface l...
The Fe–Cr alloy system is the basis of ferritic steels, which are important structural materials for...
Electron diffraction patterns from thin films of electroless nickel and copper, electroplated copper...