International audienceUltra-fast tempering cycles, combining a rapid heating rate (R H = 300 °C/s) from room temperature to a peak temperature within the range 400-700 °C and subsequent rapid cooling, were performed on a Fe-Mn-C martensitic steel. The influence of the peak temperature reached during the cycle was determined on both the tensile properties of the steel and on its microstructure. The mechanisms controlling the microstructural evolution occurring during rapid tempering were studied by combining both TEM observations and 3D reconstructions by FIB/SEM. A theoretical analysis coupled with the acquired experimental data was then proposed to explain the evolution of mechanical properties. The results obtained support the assumption ...
The current work focuses on complex multiphase microstructures gained in CrMo medium carbon steel af...
In this study, quenching and tempering were employed to achieve the optimal match of strength and to...
Effects of tempering temperature on microstructure and tensile properties of Fe-12% Mn steel have be...
International audienceUltra-fast tempering cycles, combining a rapid heating rate (R H = 300 °C/s) f...
Tempering of martensite under simultaneous compressive stress has been studied within thetemperature...
The martensite structure is the most important microstructure in tool steel due to its high hardness...
The effect of ultra-fast heating on the microstructures of steel has been thoroughly studied over th...
The influence of carbon distribution and carbide precipitation on the mechanical properties of the a...
The major goal of this work was to study the effect of rapid heating and fast cooling on the transfo...
The process of tempering a martensitic medium carbon steel was investigated with the aim to study re...
In this study, UltraFast Heat Treatment (UFHT) was applied to a soft annealed medium carbon chromium...
The effect of the addition of 0.042 wt.% of titanium on the relation between the evolution of the mi...
In this study, UltraFast Heat Treatment (UFHT) was applied to a soft annealed medium carbon chromium...
The current work focuses on complex multiphase microstructures gained in CrMo medium carbon steel af...
The current work focuses on complex multiphase microstructures gained in CrMo medium carbon steel af...
The current work focuses on complex multiphase microstructures gained in CrMo medium carbon steel af...
In this study, quenching and tempering were employed to achieve the optimal match of strength and to...
Effects of tempering temperature on microstructure and tensile properties of Fe-12% Mn steel have be...
International audienceUltra-fast tempering cycles, combining a rapid heating rate (R H = 300 °C/s) f...
Tempering of martensite under simultaneous compressive stress has been studied within thetemperature...
The martensite structure is the most important microstructure in tool steel due to its high hardness...
The effect of ultra-fast heating on the microstructures of steel has been thoroughly studied over th...
The influence of carbon distribution and carbide precipitation on the mechanical properties of the a...
The major goal of this work was to study the effect of rapid heating and fast cooling on the transfo...
The process of tempering a martensitic medium carbon steel was investigated with the aim to study re...
In this study, UltraFast Heat Treatment (UFHT) was applied to a soft annealed medium carbon chromium...
The effect of the addition of 0.042 wt.% of titanium on the relation between the evolution of the mi...
In this study, UltraFast Heat Treatment (UFHT) was applied to a soft annealed medium carbon chromium...
The current work focuses on complex multiphase microstructures gained in CrMo medium carbon steel af...
The current work focuses on complex multiphase microstructures gained in CrMo medium carbon steel af...
The current work focuses on complex multiphase microstructures gained in CrMo medium carbon steel af...
In this study, quenching and tempering were employed to achieve the optimal match of strength and to...
Effects of tempering temperature on microstructure and tensile properties of Fe-12% Mn steel have be...