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Martensitic Phase Transformation and Deformation Behavior of Fe–Mn–C–Al Twinning‐Induced Plasticity Steel during High‐Pressure Torsion
16
Citations
28
References
2014
Year
Materials ScienceEngineeringTensile DeformationMechanical PropertiesDeformation BehaviorSevere Plastic DeformationMechanical EngineeringPlasticity SteelHigh‐pressure TorsionHigh Strength Low Alloy SteelMetal FormingPlasticityDeformation ModelingMartensitic Phase TransformationTexture EvolutionMechanics Of MaterialsMicrostructureWork Hardening
The transformation between the face centered cubic austenitic and hexagonal close‐packed martensitic phases during high‐pressure torsion processing was observed in a Fe–Mn–C–Al twinning‐induced plasticity steel. This phase transformation was not found in the same material processed by unidirectional compressive and tensile deformation. Initiated by the high‐pressure loading, the martensite phase initially increased with torsional strain but diminished subsequently. Texture evolution of the austenitic phase was compared with the ideal texture distribution of face‐centered cubic materials after shear deformation.
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