Ultrahigh strength steel 56NiCrMoV7 was austempered at 270 °C for different durations in order to investigate the microstructure evolution, carbon partitioning behaviour and hardness property. Detailed microstructure has been characterised using optical microscopy and field emission gun scanning electron microscopy. A newly developed X-ray diffraction method has been employed to dissolve the bainitic/martensitic ferrite phase as two sub-phases of different tetragonal ratios, which provides quantitative analyses of the carbon partitioning between the resultant ferrites and the retained austenite. The results show that, a short-term austempering treatment was in the incubation period of the bainite transformation, which resulted in maximum ha...
The quenching and partitioning (Q&P) treatment of steel aims to produce a higher fraction of retaine...
In the present work, Quenching and Partitioning (Q&P) heat treatments were carried out in a quench d...
Ferrium® M54® is a computationally designed ultra-high strength (UHS) steel with the potential for a...
Ultrahigh strength steel 56NiCrMoV7 was austempered at 270 °C for different durations in order to in...
The microstructural evolution of and simultaneous dimensional changes in high-carbon SAE 52100 beari...
The multi-step isothermal austempering heat treatment to achieve an ultra-fine bainitic microstructu...
This study aims to produce a cost-effective and low-density, high-strength nanostructured bainitic s...
Fine grained advanced steels exhibit favourable mechanical properties for applications requiring hig...
DoctorPhase transformation behavior and mechanical properties of bainitic microstructure are importa...
The present study reveals the microstructural evolution and corresponding mechanisms occurring durin...
The mechanical behavior of different microstructural constituents in SAE 52100 bearing steel has bee...
A low-alloy medium-carbon bainitic steel was isothermally tempered at 300 degrees C for up to 24 hou...
To improve the weld zone properties of Advanced High Strength Steel (AHSS), quenching and partitioni...
The need to reduce the fuel consumption of vehicles while increasing safety led the automotive indus...
Quenching and Partitioning (Q&P) processed steel is a promising candidate for the third-generation a...
The quenching and partitioning (Q&P) treatment of steel aims to produce a higher fraction of retaine...
In the present work, Quenching and Partitioning (Q&P) heat treatments were carried out in a quench d...
Ferrium® M54® is a computationally designed ultra-high strength (UHS) steel with the potential for a...
Ultrahigh strength steel 56NiCrMoV7 was austempered at 270 °C for different durations in order to in...
The microstructural evolution of and simultaneous dimensional changes in high-carbon SAE 52100 beari...
The multi-step isothermal austempering heat treatment to achieve an ultra-fine bainitic microstructu...
This study aims to produce a cost-effective and low-density, high-strength nanostructured bainitic s...
Fine grained advanced steels exhibit favourable mechanical properties for applications requiring hig...
DoctorPhase transformation behavior and mechanical properties of bainitic microstructure are importa...
The present study reveals the microstructural evolution and corresponding mechanisms occurring durin...
The mechanical behavior of different microstructural constituents in SAE 52100 bearing steel has bee...
A low-alloy medium-carbon bainitic steel was isothermally tempered at 300 degrees C for up to 24 hou...
To improve the weld zone properties of Advanced High Strength Steel (AHSS), quenching and partitioni...
The need to reduce the fuel consumption of vehicles while increasing safety led the automotive indus...
Quenching and Partitioning (Q&P) processed steel is a promising candidate for the third-generation a...
The quenching and partitioning (Q&P) treatment of steel aims to produce a higher fraction of retaine...
In the present work, Quenching and Partitioning (Q&P) heat treatments were carried out in a quench d...
Ferrium® M54® is a computationally designed ultra-high strength (UHS) steel with the potential for a...