Wy. Jang et al., MICROSCOPIC OBSERVATION OF GAMMA-PHASE AND EPSILON-MARTENSITE AND ALPHA'-MARTENSITE IN FE-MN-SI-BASED SHAPE-MEMORY ALLOYS, Materials characterization, 34(2), 1995, pp. 67-72
The martensitic transformation occurring in Fe-Mn-Si-based shape memor
y alloy has been studied by microstructural characterization and by a
color etching method developed to reveal the martensite structure. Wit
h this technique, gamma-, epsilon-martensite and alpha'-martensite can
be easily distinguished and quantified. Two types of transformations,
gamma --> epsilon and gamma --> epsilon --> alpha', occur in the stud
ied alloys. The gamma --> epsilon transformation is observed in the sp
ecimen after annealing at high temperatures followed by air cooling to
room temperature. Increasing annealing temperature enhanced the gamma
--> epsilon transformation during cooling. Both gamma --> epsilon and
gamma --> epsilon --> alpha' transformations are found after applying
a certain amount of deformation strain. Increasing the amount of appl
ied strain induced the gamma --> epsilon --> alpha' transformation mor
e abundantly. The growth and intersection of alpha'-martensite is enha
nced when the applied strain is large, During reverse heating, alpha'-
martensite directly transformed back to gamma without reverting throug
h epsilon-martensite.