A thermomechanical processing (TMP) structure map is proposed that plots the critical strains required for dynamic recrystallization along with the grain sizes that result. These maps are useful in identifying the limits to grain refinement and designing hot working processes. They are readily constructed for well studied alloys such as plain carbon steel. In light of the recent interest in the hot working of magnesium, initial steps are taken here to construct a TMP structure map for the most common wrought magnesium alloy, AZ31. The completion of dynamic recrystallization is estimated using a geometrical approach and a twinning region is identified
AbstractDue to their hexagonal crystal structure, magnesium alloys have relatively low workability a...
In this study, the effect of strontium addition on hot deformation of AZ61 alloy was investigated by...
Time-resolved, two-dimensional synchrotron high-energy X-ray diffraction has been utilized for the i...
Processing maps on rolled AZ31 magnesium plate have been developed in the range 300-550°C and 0.0003...
The constitutive flow behaviour in hot working of as cast magnesium has been studied with the help o...
The microstructures of magnesium AZ31 are examined following hot compression testing and annealing. ...
The hot working behaviour of magnesium AZ (e. g. AZ31; Al: 3%, Zn: 1%) alloys and their associated c...
The deformation behaviour of magnesium alloy AZ31 was examined. The work found that dynamic recrysta...
he microstructural evolution is examined during the hot compression of magnesium alloy AZ31 for both...
The data is the result of hot deformation tests conducted on magnesium alloy AZ31. It includes stres...
Kinetics of the dynamic, as well as postdynamic recrystallization of the wrought magnesium alloy AZ3...
Due to their hexagonal crystal structure, magnesium alloys have relatively low workability at room t...
The use of wrought magnesium alloys is highly desirable for a wide range of applications where low c...
The microstructural evolution during compression (at 350°C and a strain rate of 0.01s-1) was exa...
The changes in the hot working behavior of as-cast AZ31 magnesium alloy occurring due to homogenizat...
AbstractDue to their hexagonal crystal structure, magnesium alloys have relatively low workability a...
In this study, the effect of strontium addition on hot deformation of AZ61 alloy was investigated by...
Time-resolved, two-dimensional synchrotron high-energy X-ray diffraction has been utilized for the i...
Processing maps on rolled AZ31 magnesium plate have been developed in the range 300-550°C and 0.0003...
The constitutive flow behaviour in hot working of as cast magnesium has been studied with the help o...
The microstructures of magnesium AZ31 are examined following hot compression testing and annealing. ...
The hot working behaviour of magnesium AZ (e. g. AZ31; Al: 3%, Zn: 1%) alloys and their associated c...
The deformation behaviour of magnesium alloy AZ31 was examined. The work found that dynamic recrysta...
he microstructural evolution is examined during the hot compression of magnesium alloy AZ31 for both...
The data is the result of hot deformation tests conducted on magnesium alloy AZ31. It includes stres...
Kinetics of the dynamic, as well as postdynamic recrystallization of the wrought magnesium alloy AZ3...
Due to their hexagonal crystal structure, magnesium alloys have relatively low workability at room t...
The use of wrought magnesium alloys is highly desirable for a wide range of applications where low c...
The microstructural evolution during compression (at 350°C and a strain rate of 0.01s-1) was exa...
The changes in the hot working behavior of as-cast AZ31 magnesium alloy occurring due to homogenizat...
AbstractDue to their hexagonal crystal structure, magnesium alloys have relatively low workability a...
In this study, the effect of strontium addition on hot deformation of AZ61 alloy was investigated by...
Time-resolved, two-dimensional synchrotron high-energy X-ray diffraction has been utilized for the i...