High-strength, multiphase steels consisting of pearlite surrounded by tempered martensite were prepared by pre-quenching and ultrafast tempering heat treatment of high-carbon pearlitic steels (0.81% C). The microstructures were analyzed by scanning electron microscopy, electron backscatter diffraction, and transmission electron microscopy. With an increasing quenching temperature from 120 °C to 190 °C, the quenched martensite variants nucleated via autocatalytic nucleation along the interface. Furthermore, the tempered nodules exhibited a distinct symmetrical structure, and the tempered martensite and pearlitic colonies in the group also showed a symmetrical morphology. In addition, a reasonable model was formulated to explain the...
Embrittlement induced by high-temperature tempering was investigated in two quenched-and-tempered of...
This work investigated the evolution of multiphase microstructure and impact fracture behavior of me...
This research is focused on understanding the role of microstructural variables and processing param...
Abstract In this study, the microstructural features evolved in a high-Si, medium-carbon steel (Fe-...
peer reviewedTwo High Speed Steels (HSS) have been studied both having chemical compositions closed...
The relationship between mechanical properties and microstructural characteristics of pearlite was i...
The effect of ultra-fast heating on the microstructures of steel has been thoroughly studied over th...
The effect that the microstructure exerts on the Transformation-Induced Plasticity (TRIP) phenomenon...
Fine grained advanced steels exhibit favourable mechanical properties for applications requiring hig...
The martensitic transformation in a high carbon steel was studied by a new experimental approach foc...
The initial formation of athermal martensite was proven to accelerate the subsequent bainite formati...
The current work focuses on complex multiphase microstructures gained in CrMo medium carbon steel af...
Advanced Multiphase High Strength Steels are generally obtained by applying isothermal treatments ar...
The current work focuses on complex multiphase microstructures gained in CrMo medium carbon steel af...
This article presents the deformation behavior of high-strength pearlitic steel deformed by triaxial...
Embrittlement induced by high-temperature tempering was investigated in two quenched-and-tempered of...
This work investigated the evolution of multiphase microstructure and impact fracture behavior of me...
This research is focused on understanding the role of microstructural variables and processing param...
Abstract In this study, the microstructural features evolved in a high-Si, medium-carbon steel (Fe-...
peer reviewedTwo High Speed Steels (HSS) have been studied both having chemical compositions closed...
The relationship between mechanical properties and microstructural characteristics of pearlite was i...
The effect of ultra-fast heating on the microstructures of steel has been thoroughly studied over th...
The effect that the microstructure exerts on the Transformation-Induced Plasticity (TRIP) phenomenon...
Fine grained advanced steels exhibit favourable mechanical properties for applications requiring hig...
The martensitic transformation in a high carbon steel was studied by a new experimental approach foc...
The initial formation of athermal martensite was proven to accelerate the subsequent bainite formati...
The current work focuses on complex multiphase microstructures gained in CrMo medium carbon steel af...
Advanced Multiphase High Strength Steels are generally obtained by applying isothermal treatments ar...
The current work focuses on complex multiphase microstructures gained in CrMo medium carbon steel af...
This article presents the deformation behavior of high-strength pearlitic steel deformed by triaxial...
Embrittlement induced by high-temperature tempering was investigated in two quenched-and-tempered of...
This work investigated the evolution of multiphase microstructure and impact fracture behavior of me...
This research is focused on understanding the role of microstructural variables and processing param...