International audienceDiffraction methods for lattice strain measurement provide useful information concerning the nature of grains behaviour during elastoplastic deformation. The main advantage of the diffraction methods is the possibility of studying mechanical properties of polycrystalline materials separately in each phase and in groups of grains with a specific orientation. In this work we present application of the neutron and X-ray diffraction to study “in situ” deformation of two phase stainless steels during tensile loading. The experimental results are compared with self-consistent model
The mechanical behaviour of a duplex stainless steel is investigated through mesoscopic measurements...
Time of flight neutron diffraction is a highly versatile and truly non-destructive technique that ca...
International audienceThe mechanical behaviour of a duplex stainless steel is investigated through m...
International audienceDiffraction methods for lattice strain measurement provide useful information ...
International audienceDiffraction methods for lattice strain measurement provide useful information ...
International audienceDiffraction methods for lattice strain measurement provide useful information ...
International audienceAs a selective and non-destructive method, the diffraction method applied for ...
International audienceOwing to its selectivity, diffraction is a powerful tool for analysing the mec...
Owing to its selectivity, diffraction is a powerful tool for analysing the mechanical behaviour of p...
The time-of-flight neutron diffraction technique and the elastoplastic self-consistent model were us...
International audienceThe time-of-flight neutron diffraction technique and the elastoplastic self-co...
Diffraction methods are commonly used for the determination of the elastic lattice deformation and d...
Duplex stainless steels, consisting of approximately equal amounts of austenite and ferrite, are typ...
Individual anisotropic grains within a polycrystalline material exhibit different micro-mechanical r...
Individual anisotropic grains within a polycrystalline material exhibit different micro-mechanical r...
The mechanical behaviour of a duplex stainless steel is investigated through mesoscopic measurements...
Time of flight neutron diffraction is a highly versatile and truly non-destructive technique that ca...
International audienceThe mechanical behaviour of a duplex stainless steel is investigated through m...
International audienceDiffraction methods for lattice strain measurement provide useful information ...
International audienceDiffraction methods for lattice strain measurement provide useful information ...
International audienceDiffraction methods for lattice strain measurement provide useful information ...
International audienceAs a selective and non-destructive method, the diffraction method applied for ...
International audienceOwing to its selectivity, diffraction is a powerful tool for analysing the mec...
Owing to its selectivity, diffraction is a powerful tool for analysing the mechanical behaviour of p...
The time-of-flight neutron diffraction technique and the elastoplastic self-consistent model were us...
International audienceThe time-of-flight neutron diffraction technique and the elastoplastic self-co...
Diffraction methods are commonly used for the determination of the elastic lattice deformation and d...
Duplex stainless steels, consisting of approximately equal amounts of austenite and ferrite, are typ...
Individual anisotropic grains within a polycrystalline material exhibit different micro-mechanical r...
Individual anisotropic grains within a polycrystalline material exhibit different micro-mechanical r...
The mechanical behaviour of a duplex stainless steel is investigated through mesoscopic measurements...
Time of flight neutron diffraction is a highly versatile and truly non-destructive technique that ca...
International audienceThe mechanical behaviour of a duplex stainless steel is investigated through m...