In this paper, the effects of the deformation temperature, the deformation reduction and the deformation rate on the microstructural formation, ferritic and martensitic phase transformation, stress–strain behaviors and micro-hardness in low-carbon ferritic stainless steel were investigated. The increase in deformation temperature promotes the formation of the fine equiaxed dynamic strain-induced transformation ferrite and suppresses the martensitic transformation. The higher deformation temperature results in a lower starting temperature for martensitic transformation. The increase in deformation can effectively promote the transformation of DSIT ferrite, and decrease the martensitic transformation rate, which is caused by the work ha...
International audienceThe strain induced martensite transformation in austenitic stainless steels is...
The relationship between mechanisms of plastic deformation and microstructural evolution has been in...
The design of thermomechanical processing schedules to control microstructures requires the knowledg...
The austenite and ferrite microstructure evolution and softening mechanisms have been investigated i...
The microstructural evolutions during compressions at different temperatures and strains were invest...
For low carbon steels, thermomechanical processing in the intercritical (austenite\u2013ferrite) tem...
A low-temperature study of the mechanical behaviour of a metastable semi-austenitic stainless steel ...
A novel approach was used to produce an ultrafine grain structure in low carbon steels with a wide r...
The microstructure evolution and softening processes occurring in 22Cr-19Ni-3Mo austenitic and 21Cr-...
Dynamic strain aging at different temperatures and its effects on the strain hardening behavior, dis...
A series of single compression tests were performed in order to improve the understanding of the inf...
The austenite γ (fcc) matrix of 304 LN stainless steel transforms readily to martensites (hcp) and ...
The impacts of rolling temperature on phase transformations and mechanical properties were investiga...
A C–Mn–V steel was used to study ultrafine ferrite formation (1–3 μm) through d...
The hot deformation behavior of 2101 grade lean duplex stainless steel (DSS, containing similar to 5...
International audienceThe strain induced martensite transformation in austenitic stainless steels is...
The relationship between mechanisms of plastic deformation and microstructural evolution has been in...
The design of thermomechanical processing schedules to control microstructures requires the knowledg...
The austenite and ferrite microstructure evolution and softening mechanisms have been investigated i...
The microstructural evolutions during compressions at different temperatures and strains were invest...
For low carbon steels, thermomechanical processing in the intercritical (austenite\u2013ferrite) tem...
A low-temperature study of the mechanical behaviour of a metastable semi-austenitic stainless steel ...
A novel approach was used to produce an ultrafine grain structure in low carbon steels with a wide r...
The microstructure evolution and softening processes occurring in 22Cr-19Ni-3Mo austenitic and 21Cr-...
Dynamic strain aging at different temperatures and its effects on the strain hardening behavior, dis...
A series of single compression tests were performed in order to improve the understanding of the inf...
The austenite γ (fcc) matrix of 304 LN stainless steel transforms readily to martensites (hcp) and ...
The impacts of rolling temperature on phase transformations and mechanical properties were investiga...
A C–Mn–V steel was used to study ultrafine ferrite formation (1–3 μm) through d...
The hot deformation behavior of 2101 grade lean duplex stainless steel (DSS, containing similar to 5...
International audienceThe strain induced martensite transformation in austenitic stainless steels is...
The relationship between mechanisms of plastic deformation and microstructural evolution has been in...
The design of thermomechanical processing schedules to control microstructures requires the knowledg...