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Dynamic and Static Recrystallization Behavior of Low Carbon High Niobium Microalloyed Steel |
LAN Liang��yun, QIU Chun��lin, ZHAO De��wen, GAO Xiu��hua, DU Lin��xiu |
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Abstract The recrystallization behavior of a low carbon high Nb microalloyed steel was investigated using Continuous and interrupted hot compression tests. The results showed that the onset of dynamic recrystallization (DRX) could be detected from inflection in the plot of the strain hardening rate �� against stress �� regardless of whether the stress peak appears or not. According to Zener-Hollomon parameter the activity energy of DRX (Qdef) was obtained, and a new modified expression calculating Qdef was proposed in consideration of the chemical composition of experimental steel. Applying the 2% offset method the static softening fraction was determined. The graphic representation of the softening fraction vs. interrupt time gave the information of the non-static recrystallization temperature (about 1000��)and the relationship of precipitation-time-temperature. Static recrystallization kinetics follow Avrami��s law in high deformation temperature, and different values of the exponent n were given to illustrate the different effects of Nb element on static recrystallization at different deformation temperature.
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Received: 29 December 2009
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