Exact(5)
Two material models are used to demonstrate a variety of transformation behaviours and some common features.
The differences between the two steels are believed to be due to their transformation behaviours on cooling where precipitation of vanadium nitride in austenite accelerates ferrite formation and raises the temperature of the phase transformation in V N steels.
These complex transformation behaviours are attributed to long-range heterogeneity of precipitation structure between grain boundaries and grain interior, and short-range heterogeneity caused by partial dissolution of coherent precipitates and formation of incoherent precipitates.
The γ→α phase transformation behaviours of Fe-Co and Fe-Mn alloys were systematically investigated by dilatometry and Differential Thermal Analysis (DTA).
This study investigated the metallurgical origin of the effects of Fe substitution for Mn on the martensitic and the magnetic transformation behaviours of Ni50Mn40-xSn10Fex (x = 0, 3, 4, 5, 6) alloys.
Similar(55)
The analysis includes both isothermal and non-isothermal transformation behaviour.
The hardening, tempering and transformation behaviour of CNS- I steel was investigated.
The obtained transformation behaviour does not exhibit a linear tendency down to liquid helium temperature.
The chemical composition, morphology, structure and phase transformation behaviour were studied.
The martensitic transformation behaviour of these films depends critically on the microstructure and dimensional constraint.
The effect of loading axis to grain boundary on the martensitic transformation behaviour was also investigated.
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