Ultrafine grained structure formed dynamically through a severe warm deformation in the temperature range from 773K to 923K has been investigated in a 0.16%C-0.4%Si-1.4%Mn steel. The effects of the deformation conditions such as deformation temperature and strain rate on microstructural evolution were examined using a single-pass compression technique with a pair of anvils. A large plastic strain up to 4 was imposed on the specimen interior at a strain rate of 1 or 0.01 s1. Ultrafine ferrite grains surrounded by high angle boundaries, whose nominal grain size ranged from 0.26 to 1.1mm, evolved when the equivalent plastic strain exceeded the critical value about 0.5 to 1, and increased with an increase in strain without any large-scale migra...
The refinement of ferrite grain size is the most generally accepted approach to simultaneously impro...
The formation of ultrafine ferrite by strain induced transformation is assessed using rolling and ho...
yesThe dynamic processes of ultrafine grain evolution in an S304H austenitic stainless were studied ...
In this study, medium-carbon steel was subjected to warm deformation experiments on a Gleeble 3500 t...
AbstractThe evolution of microstructure and texture of a 0.2%C–Mn steel during large strain warm def...
The influence of deformation temperature and strain rate on the mechanisms of elongated fine grain (...
For low carbon steels, thermomechanical processing in the intercritical (austenite\u2013ferrite) tem...
There is now considerable interest in the development of ultrafine grained steels with an average gr...
A C–Mn–V steel was used to study ultrafine ferrite formation (1–3 μm) through d...
The microstructural evolutions during compressions at different temperatures and strains were invest...
In the present study, the effect of nominal equivalent strain (between 0 and 1.2), deformation tempe...
The present work deals with grain refinement of medium carbon steel, having different initial micros...
The microstructure evolution and mechanical behavior during large strain of a 0.16%C-Mn steel has be...
In the present investigation, hot deformation by uniaxial compression of a microalloyed steel has be...
The formation of ultrafine grained steels is an area of intense research around the World. There are...
The refinement of ferrite grain size is the most generally accepted approach to simultaneously impro...
The formation of ultrafine ferrite by strain induced transformation is assessed using rolling and ho...
yesThe dynamic processes of ultrafine grain evolution in an S304H austenitic stainless were studied ...
In this study, medium-carbon steel was subjected to warm deformation experiments on a Gleeble 3500 t...
AbstractThe evolution of microstructure and texture of a 0.2%C–Mn steel during large strain warm def...
The influence of deformation temperature and strain rate on the mechanisms of elongated fine grain (...
For low carbon steels, thermomechanical processing in the intercritical (austenite\u2013ferrite) tem...
There is now considerable interest in the development of ultrafine grained steels with an average gr...
A C–Mn–V steel was used to study ultrafine ferrite formation (1–3 μm) through d...
The microstructural evolutions during compressions at different temperatures and strains were invest...
In the present study, the effect of nominal equivalent strain (between 0 and 1.2), deformation tempe...
The present work deals with grain refinement of medium carbon steel, having different initial micros...
The microstructure evolution and mechanical behavior during large strain of a 0.16%C-Mn steel has be...
In the present investigation, hot deformation by uniaxial compression of a microalloyed steel has be...
The formation of ultrafine grained steels is an area of intense research around the World. There are...
The refinement of ferrite grain size is the most generally accepted approach to simultaneously impro...
The formation of ultrafine ferrite by strain induced transformation is assessed using rolling and ho...
yesThe dynamic processes of ultrafine grain evolution in an S304H austenitic stainless were studied ...