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Few of the potentially useful intermetallics can be extensively deformed at room temperature, and there is most interest in hot deformation and either static or dynamic recrystallization.
Therefore, hot deformation at higher temperatures would obtain better workability.
Study on the hot deformation behavior of modified CNS-II F/M steel is of great importance for processing parameter planning and microstructure controlling during hot deformation.
For prediction of hot deformation flow curves two methods of modeling were applied.
Ductile fracture is a key factor to the workability of metallic materials undergoing hot deformation.
The inhomogeneous hot deformation (IHD) experiments of SA508-3 steel were designed and carried out.
However, concurrent hot deformation and slow cooling can promote the precipitation of secondary alpha phase.
Hot deformation processing was designed to study the effects of niobium (Nb) on DIFT.
However, it is always a difficult problem on a hot deformation field.
One concerns the modelling of metal processing hot deformation down to sub-micron dislocation levels.
Hot deformation accelerates acicular ferrite transformation and refines the steel's matrix.
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