Transmission electron microscopy and in situ synchrotron high-energy X-ray diffraction were used to investigate the martensitic transformation and lattice strains under uniaxial tensile loading of Fe-Mn-Si-C-Nb-Mo-Al Transformation Induced Plasticity (TRIP) steel subjected to different thermo-mechanical processing schedules. In contrast with most of the diffraction analysis of TRIP steels reported previously, the diffraction peaks from the martensite phase were separated from the peaks of the ferrite-bainite α-matrix. The volume fraction of retained γ-austenite, as well as the lattice strain, were determined from the diffraction patterns recorded during tensile deformation. Although significant austenite to martensite transformation starts ...
High strength and ductility of the transformation-induced plasticity (TRIP) steels are attributed to...
High strength and ductility of the transformation-induced plasticity (TRIP) steels are attributed to...
X-ray diffraction analysis, magnetic force microscopy, and the saturation magnetization method have ...
Transmission electron microscopy and in situ synchrotron high-energy X-ray diffraction were used to ...
In this work we compare and contrast the stability of retained austenite during tensile testing of N...
The stability of the retained austenite has been studied in situ in low-alloyed transformation-induc...
The stability of the retained austenite has been studied in situ in low-alloyed transformation-induc...
The stability of the retained austenite has been studied in situ in low-alloyed transformation-induc...
The stability of the retained austenite has been studied in situ in low-alloyed transformation-induc...
The martensitic transformation behaviour of the metastable austenite phase in low-alloyed transforma...
The martensitic transformation behaviour of the metastable austenite phase in low-alloyed transforma...
The martensitic transformation behaviour of the metastable austenite phase in low-alloyed transforma...
The martensitic transformation behaviour of the metastable austenite phase in low-alloyed transforma...
The martensitic transformation behaviour of the metastable austenite phase in low-alloyed transforma...
High strength and ductility of the transformation-induced plasticity (TRIP) steels are attributed to...
High strength and ductility of the transformation-induced plasticity (TRIP) steels are attributed to...
High strength and ductility of the transformation-induced plasticity (TRIP) steels are attributed to...
X-ray diffraction analysis, magnetic force microscopy, and the saturation magnetization method have ...
Transmission electron microscopy and in situ synchrotron high-energy X-ray diffraction were used to ...
In this work we compare and contrast the stability of retained austenite during tensile testing of N...
The stability of the retained austenite has been studied in situ in low-alloyed transformation-induc...
The stability of the retained austenite has been studied in situ in low-alloyed transformation-induc...
The stability of the retained austenite has been studied in situ in low-alloyed transformation-induc...
The stability of the retained austenite has been studied in situ in low-alloyed transformation-induc...
The martensitic transformation behaviour of the metastable austenite phase in low-alloyed transforma...
The martensitic transformation behaviour of the metastable austenite phase in low-alloyed transforma...
The martensitic transformation behaviour of the metastable austenite phase in low-alloyed transforma...
The martensitic transformation behaviour of the metastable austenite phase in low-alloyed transforma...
The martensitic transformation behaviour of the metastable austenite phase in low-alloyed transforma...
High strength and ductility of the transformation-induced plasticity (TRIP) steels are attributed to...
High strength and ductility of the transformation-induced plasticity (TRIP) steels are attributed to...
High strength and ductility of the transformation-induced plasticity (TRIP) steels are attributed to...
X-ray diffraction analysis, magnetic force microscopy, and the saturation magnetization method have ...