Sh. Baik et al., TRANSFORMATION BEHAVIOR AND DAMPING CAPACITY IN FE-17-PERCENT-MN-X-PERCENT-C-Y-PERCENT-TI ALLOY, ISIJ international, 37(5), 1997, pp. 519-522
Effect of carbon and Ti on gamma <-> epsilon martensitic transformatio
n behavior and damping capacity is investigated in an Fe-17Mn alloy. T
he suppressive force of carbon against gamma <-> epsilon transformatio
n increase linearly with an increase in its content, lowering Ms tempe
rature and volume fraction of epsilon martensite. Carbon deteriorates
damping capacity by reducing the area of gamma/epsilon boundaries and
mobility of the boundaries contributing to anelastic deformation. The
reduction in the mobility of the boundaries is accelerated when carbon
containing alloy is aged at higher temperatures than room temperature
. The effect of Ti on damping capacity is found to be beneficial in ca
rbon-containing alloy, which is attributed to the depletion of carbon
solute due to the formation of TiC.