The present work deals with the high temperature deformation behavior of Fe-11.15Mn-5.6Al-0.07C (wt.%) triplex ferrite-based lightweight steel in the temperature range of 800–1100 °C under the strain rate of 0.001 to 0.1s−1. The compressive high temperature flow curves under the various thermomechanical conditions were accompanied by a considerable fractional softening. According to the detailed microstructural analysis, the observed flow softening was discussed relying on the occurrence of dynamic strain induced transformation and dynamic recrystallization. In this respect, a sine hyperbolic Arrhenius-type constitutive model was developed considering the three dimensional variation of the materials’ constant with strain, strain rate and te...
The present study dealt with the hot compression deformation behavior of Fe−18.5Mn–7Cr−0.6C and Fe−1...
International audienceDuring forging and machining manufacturing processes, the material is subject ...
In the present work, the room temperature work hardening behavior and substructure evolution of Fe–1...
The thermal processing parameters is very important to the hot rolling and forging process for produ...
The design of thermomechanical processing schedules to control microstructures requires the knowledg...
The deformation behavior of lightweight Fe-35Mn-10Al-1C steel with an elevated concentration of Mn w...
The dynamic strain-induced transformation (DSIT) of austenite to ferrite was investigated under diff...
The high-temperature deformation behaviors of low and medium carbon steels with respectively 0.06 an...
The hot deformation behavior of a newly designed Fe–5Mn–3Al–0.1C (wt.%) medium manganese steel was i...
A series of single compression tests were performed in order to improve the understanding of the inf...
The evolution of dynamic ferrite softening in a plain-carbon steel was investigated by torsion tests...
This work extends the application of the well-established Estrin and Mecking (EM) work-hardening mod...
This paper focuses on the microstructure and deformation properties of structural steel at elevated ...
Ferrite grain/subgrain structures evolution during the extended dynamic softening of a plain low car...
This paper focuses on the microstructure and deformation properties of structural steel at elevated ...
The present study dealt with the hot compression deformation behavior of Fe−18.5Mn–7Cr−0.6C and Fe−1...
International audienceDuring forging and machining manufacturing processes, the material is subject ...
In the present work, the room temperature work hardening behavior and substructure evolution of Fe–1...
The thermal processing parameters is very important to the hot rolling and forging process for produ...
The design of thermomechanical processing schedules to control microstructures requires the knowledg...
The deformation behavior of lightweight Fe-35Mn-10Al-1C steel with an elevated concentration of Mn w...
The dynamic strain-induced transformation (DSIT) of austenite to ferrite was investigated under diff...
The high-temperature deformation behaviors of low and medium carbon steels with respectively 0.06 an...
The hot deformation behavior of a newly designed Fe–5Mn–3Al–0.1C (wt.%) medium manganese steel was i...
A series of single compression tests were performed in order to improve the understanding of the inf...
The evolution of dynamic ferrite softening in a plain-carbon steel was investigated by torsion tests...
This work extends the application of the well-established Estrin and Mecking (EM) work-hardening mod...
This paper focuses on the microstructure and deformation properties of structural steel at elevated ...
Ferrite grain/subgrain structures evolution during the extended dynamic softening of a plain low car...
This paper focuses on the microstructure and deformation properties of structural steel at elevated ...
The present study dealt with the hot compression deformation behavior of Fe−18.5Mn–7Cr−0.6C and Fe−1...
International audienceDuring forging and machining manufacturing processes, the material is subject ...
In the present work, the room temperature work hardening behavior and substructure evolution of Fe–1...