An inductive sensor developed by Philips ATC has been used to study in-situ the austenite (γ) to martensite (α′) phase transformation kinetics during tensile testing in an AISI 301 austenitic stainless steel. A correlation between the sensor output signal and the volume fraction of α′-martensite has been found by comparing the results to the ex-situ characterization by magnetization measurements, light optical microscopy, and X-ray diffraction. The sensor has allowed for the observation of the stepwise transformation behavior, a not-well-understood phenomena that takes place in large regions of the bulk material and that so far had only been observed by synchrotron X-ray diffraction.(OLD) MSE-
The use of high-energy synchrotron x-rays which has enabled three- dimensional structural characteri...
International audienceThe influence of strain rate on the stress-strain behaviour of an AISI 304 aus...
The strain-induced martensitic transformation in a metastable austenitic stainless steel is investig...
An inductive sensor developed by Philips ATC has been used to study in-situ the austenite (γ) to mar...
An inductive sensor developed by Philips ATC has been used to study in-situ the austenite (γ) to mar...
Measurements of transformation behaviour are very important to get a good knowledge of the material ...
International audienceThis work aims at studying the control of medium manganese austenitic stainles...
The phase transformation due to mechanical loading in cold-rolled stainless steel 301LN sheets is in...
This article presents measurements to describe the constitutive behaviour of a semi-austenitic preci...
International audienceA fast and accurate in situ magnetic method has been developed. This technique...
The mechanically induced transformation behavior of 12Crsingle bond9Nisingle bond 4Mo (ASTM A 564) a...
Two grades of unstable austenitic stainless steels, AISI 301LN and 201 were tested under uniaxial te...
International audienceThe strain induced martensite transformation in austenitic stainless steels is...
The strain induced martensite transformation in austenitic stainless steels is of considerable inter...
The microstructure design and the development of predictive approaches exploiting the transformation...
The use of high-energy synchrotron x-rays which has enabled three- dimensional structural characteri...
International audienceThe influence of strain rate on the stress-strain behaviour of an AISI 304 aus...
The strain-induced martensitic transformation in a metastable austenitic stainless steel is investig...
An inductive sensor developed by Philips ATC has been used to study in-situ the austenite (γ) to mar...
An inductive sensor developed by Philips ATC has been used to study in-situ the austenite (γ) to mar...
Measurements of transformation behaviour are very important to get a good knowledge of the material ...
International audienceThis work aims at studying the control of medium manganese austenitic stainles...
The phase transformation due to mechanical loading in cold-rolled stainless steel 301LN sheets is in...
This article presents measurements to describe the constitutive behaviour of a semi-austenitic preci...
International audienceA fast and accurate in situ magnetic method has been developed. This technique...
The mechanically induced transformation behavior of 12Crsingle bond9Nisingle bond 4Mo (ASTM A 564) a...
Two grades of unstable austenitic stainless steels, AISI 301LN and 201 were tested under uniaxial te...
International audienceThe strain induced martensite transformation in austenitic stainless steels is...
The strain induced martensite transformation in austenitic stainless steels is of considerable inter...
The microstructure design and the development of predictive approaches exploiting the transformation...
The use of high-energy synchrotron x-rays which has enabled three- dimensional structural characteri...
International audienceThe influence of strain rate on the stress-strain behaviour of an AISI 304 aus...
The strain-induced martensitic transformation in a metastable austenitic stainless steel is investig...