Metastable austenitic stainless steels are materials that can undergo austenite to martensite phase transformation when subjected to deformation and thus they represent a multiphase material with interesting mechanical properties. Different electron microscopy techniques are widely applied for the characterization of their deformation mechanisms at micrometric length scale. In doing so, Scanning Ion Microscopy (SIM) imaging, performed with a Focused Ion Beam (FIB), can be useful to evaluate microstructural features induced by different stress fields and, in certain cases, may substitute the conventional Transmission Electron Microscopy (TEM) technique. In this work, nanoindentation experiments (both monotonic and cyclic) were carried out o...
International audienceIn situ tensile tests have been carried out with an atomic force microscope (A...
The use of high-energy synchrotron x-rays which has enabled three- dimensional structural characteri...
International audienceThe understanding of the mechanical properties at the microstructure scale is ...
Metastable austenitic stainless steels are materials that can undergo austenite to martensite phase ...
Metastable austenitic stainless steels are materials that can undergo austenite to martensite phase ...
The mechanical behavior of a metastable stainless steel is studied by spherical nanoindentation, as ...
Austenitic metastable stainless steels have outstanding mechanical properties. Their mechanical beha...
Advanced techniques were used to study the deformation mechanisms induced by fatigue tests in a meta...
Advanced techniques were used to study the deformation mechanisms induced by fatigue tests in a meta...
Austenitic metastable stainless steels are a materials group distinguished by their excellent mechan...
Austenitic metastable stainless steels have outstanding mechanical properties. Their mechanical beha...
Austenitic metastable stainless steels have outstanding mechanical properties. Their mechanical beha...
The mechanical behaviour of a metastable austenitic stainless steel has been studied by means of nan...
Austenitic metastable stainless steels have outstanding mechanical properties. Their mechanical beha...
Supplementary data for the figures in electron microscopy and atom probe tomography of nanoindentati...
International audienceIn situ tensile tests have been carried out with an atomic force microscope (A...
The use of high-energy synchrotron x-rays which has enabled three- dimensional structural characteri...
International audienceThe understanding of the mechanical properties at the microstructure scale is ...
Metastable austenitic stainless steels are materials that can undergo austenite to martensite phase ...
Metastable austenitic stainless steels are materials that can undergo austenite to martensite phase ...
The mechanical behavior of a metastable stainless steel is studied by spherical nanoindentation, as ...
Austenitic metastable stainless steels have outstanding mechanical properties. Their mechanical beha...
Advanced techniques were used to study the deformation mechanisms induced by fatigue tests in a meta...
Advanced techniques were used to study the deformation mechanisms induced by fatigue tests in a meta...
Austenitic metastable stainless steels are a materials group distinguished by their excellent mechan...
Austenitic metastable stainless steels have outstanding mechanical properties. Their mechanical beha...
Austenitic metastable stainless steels have outstanding mechanical properties. Their mechanical beha...
The mechanical behaviour of a metastable austenitic stainless steel has been studied by means of nan...
Austenitic metastable stainless steels have outstanding mechanical properties. Their mechanical beha...
Supplementary data for the figures in electron microscopy and atom probe tomography of nanoindentati...
International audienceIn situ tensile tests have been carried out with an atomic force microscope (A...
The use of high-energy synchrotron x-rays which has enabled three- dimensional structural characteri...
International audienceThe understanding of the mechanical properties at the microstructure scale is ...