In situ measured growth rates of bainite plates in an Fe-C-Mn-Si superbainitic steel

来源 :International Journal of Minerals Metallurgy and Materials | 被引量 : 0次 | 上传用户:gao1980623
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The growth rates of bainite plates in an Fe-C-Mn-Si superbainitic steel were investigated by in situ observation. The lengthening rates of ferrite bainite during both cooling and isothermal holding processes were observed and the growth rates of bainite plates nucleating at grain boundaries, within grains and on preformed bainite were measured. It is indicated that the lengthening rates of bainite plates during the cooling and isothermal processes were different, and that the growth rates of bainite plates nucleating at different types of sites also demonstrated diversity. The bainite plates initiating at grain boundaries during cooling grew the fastest, while the plates nucleating on preformed bainite did the slowest. However, the growth rate of the bainite plates nucleating at grain boundaries during isothermal transformation decreased the most, whereas the bainite plates initiating within grains grew the fastest. In addition, the growth rate of ferrite bainite in the study supported the diffusion transformation mechanism of bainite from the viewpoint of growth rate. The growth rates of bainite plates in an Fe-C-Mn-Si superbainitic steel were investigated by in situ observation. The lengthening rates of ferrite bainite during both cooling and isothermal holding processes were observed and the growth rates of bainite plates nucleating at grain boundaries that is that lengthening rates of bainite plates during the cooling and isothermal processes were different, and the the growth rates of bainite plates nucleating at different types of sites also demonstrated diversity. initiating at grain boundaries during cooling grew the fastest, while the plates nucleating on grain boundaries during cooling transformations the most, while the bainite plates initiating within grains grew the In addition, the growth rate of ferrite bainite in the study supported the diffusion transformation mechanism of bainite from the viewpoint of growth rate.
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