The behavior of multiphase steels assisted by transformation-induced plasticity (TRIP steels) undergoing low cycle, fully-reversed strain-controlled deformations is studied by means of numerical simulations based on micromechanical models. The ferritic phase is simulated using a single-crystal elasto-plasticity model for BCC crystals whereas the austenitic phase, which may transform into martensite, is simulated by a crystallographic phase transformation model coupled to a single-crystal elasto-plasticity model for FCC crystals. The influence of the TRIP mechanism on the overall behavior of the steel is investigated for selected variations of microstructural properties such as phase morphology, local carbon concentration in the austenite an...
TRIP-assisted multiphase steels exhibit enhanced strength and ductility properties. These properties...
TRIP steel contains different phases, ferrite, bainite, austenite and martensite. During deformation...
Micromechanically-based models are used to mimic the martensitic phase transformations in retained a...
The behavior of multiphase steels assisted by transformation-induced plasticity (TRIP steels) underg...
The behavior of multiphase steels assisted by transformation-induced plasticity (TRIP steels) underg...
The behavior of multiphase steels assisted by transformation-induced plasticity (TRIP steels) underg...
The behavior of multiphase steels assisted by transformation-induced plasticity (TRIP steels) underg...
A study was conducted to investigate the mechanical behavior of a discrete aggregate of ferritic and...
A study was conducted to investigate the mechanical behavior of a discrete aggregate of ferritic and...
A study was conducted to investigate the mechanical behavior of a discrete aggregate of ferritic and...
A study was conducted to investigate the mechanical behavior of a discrete aggregate of ferritic and...
A constitutive model for transformation induced plasticity (TRIP)-assisted steels is proposed that c...
The need to develop light-weight and high strength materials for car frames which improve fuel effic...
TRIP-assisted multiphase steels exhibit enhanced strength and ductility properties. These properties...
The microstructure of multiphase steels assisted by transformation-induced plasticity consists of gr...
TRIP-assisted multiphase steels exhibit enhanced strength and ductility properties. These properties...
TRIP steel contains different phases, ferrite, bainite, austenite and martensite. During deformation...
Micromechanically-based models are used to mimic the martensitic phase transformations in retained a...
The behavior of multiphase steels assisted by transformation-induced plasticity (TRIP steels) underg...
The behavior of multiphase steels assisted by transformation-induced plasticity (TRIP steels) underg...
The behavior of multiphase steels assisted by transformation-induced plasticity (TRIP steels) underg...
The behavior of multiphase steels assisted by transformation-induced plasticity (TRIP steels) underg...
A study was conducted to investigate the mechanical behavior of a discrete aggregate of ferritic and...
A study was conducted to investigate the mechanical behavior of a discrete aggregate of ferritic and...
A study was conducted to investigate the mechanical behavior of a discrete aggregate of ferritic and...
A study was conducted to investigate the mechanical behavior of a discrete aggregate of ferritic and...
A constitutive model for transformation induced plasticity (TRIP)-assisted steels is proposed that c...
The need to develop light-weight and high strength materials for car frames which improve fuel effic...
TRIP-assisted multiphase steels exhibit enhanced strength and ductility properties. These properties...
The microstructure of multiphase steels assisted by transformation-induced plasticity consists of gr...
TRIP-assisted multiphase steels exhibit enhanced strength and ductility properties. These properties...
TRIP steel contains different phases, ferrite, bainite, austenite and martensite. During deformation...
Micromechanically-based models are used to mimic the martensitic phase transformations in retained a...