Retained austenite in nanostructured bainite is able to undergo mechanically induced martensitic transformation. However, the link between transformation and deformation mechanisms involved makes difficult the understanding of the process. In this work, a model has been developed to assess the effect of the external stress itself on the martensite phase transformation. In addition, after a detailed initial microstructural characterization, the martensite fraction evolution during tensile deformation has been obtained by means of X-ray diffraction analyses after interrupted tensile tests in several nanostructured bainitic steels. Experimental results have been compared to the outputs of the model, as a reference. They suggests that stress pa...
The deformation behaviour of two nanostructured bainitic steels designed specically to ensure the th...
Several materials exhibit a transformation from austenite to martensite during a thermomechanical l...
The tensile properties of a nanostructured carbide-free bainitic steel formed at 200–250 °C are comp...
© 2015, The Minerals, Metals & Materials Society. The present work is concerned with the study of th...
The deformation mechanisms operating in nanostructured bainite, leading to its excellent combination...
In order to assess the dynamic tensile behavior of a newly developed three-step low-temperature-tran...
Tesis doctoral presentada en Enero de 2016 en la Universidad Carlos III de MadridNanostructured bain...
The deformation mechanisms operating in nanostructured bainite, leading to its excellent combination...
Results of dynamic tensile testing of three-step low-temperature-transformed nanostructured bainitic...
Changes in the microstructure of nanostructured bainitic steel induced by quasi-static and dynamic d...
High silicon (>1.5%) steels with different compositions were isothermally transformed to bainite at ...
Abstract: Bainite, like martensite, forms by a displacive mechanism of transformation. Based on micr...
The so-called ausforming treatment consists in plastically deforming a fully austenitized steel belo...
The in-situ neutron diffraction studies revealed that carbon partitioning occurs subsequent to the b...
Several materials exhibit a transformation from austenite to martensite during a thermomechanical l...
The deformation behaviour of two nanostructured bainitic steels designed specically to ensure the th...
Several materials exhibit a transformation from austenite to martensite during a thermomechanical l...
The tensile properties of a nanostructured carbide-free bainitic steel formed at 200–250 °C are comp...
© 2015, The Minerals, Metals & Materials Society. The present work is concerned with the study of th...
The deformation mechanisms operating in nanostructured bainite, leading to its excellent combination...
In order to assess the dynamic tensile behavior of a newly developed three-step low-temperature-tran...
Tesis doctoral presentada en Enero de 2016 en la Universidad Carlos III de MadridNanostructured bain...
The deformation mechanisms operating in nanostructured bainite, leading to its excellent combination...
Results of dynamic tensile testing of three-step low-temperature-transformed nanostructured bainitic...
Changes in the microstructure of nanostructured bainitic steel induced by quasi-static and dynamic d...
High silicon (>1.5%) steels with different compositions were isothermally transformed to bainite at ...
Abstract: Bainite, like martensite, forms by a displacive mechanism of transformation. Based on micr...
The so-called ausforming treatment consists in plastically deforming a fully austenitized steel belo...
The in-situ neutron diffraction studies revealed that carbon partitioning occurs subsequent to the b...
Several materials exhibit a transformation from austenite to martensite during a thermomechanical l...
The deformation behaviour of two nanostructured bainitic steels designed specically to ensure the th...
Several materials exhibit a transformation from austenite to martensite during a thermomechanical l...
The tensile properties of a nanostructured carbide-free bainitic steel formed at 200–250 °C are comp...