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Effect of Carbon Content on Bainite Transformation Start Temperature in Low Carbon Fe–9Ni–C Alloys

机译:碳含量对低碳Fe-9Ni-C合金中贝氏体转变开始温度的影响

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Bainite in steel is an industrially useful structure. However, the controlling factor of its transformation start point is not known clearly. In this study, to clarify the effect of carbon content on the bainite transformation start temperature (B_(s)), we evaluated the dilatation curve and the microstructure in low carbon Fe–9Ni alloys. As a result, B_(s) decreased with increasing of carbon content. Furthermore, the driving force of partitionless transformation from fcc to bcc at B_(s), which was calculated considering nickel segregation, was approximately constant at 400 J/mol in all alloys. This value is consistent with the driving force required for partitionless growth of ferrite, as reported in a previous study. This consistency suggests that B_(s) depends on the martensitic growth behavior of lath-shaped ferrite, which is determined by the supercooling starting from the T_(0) line.
机译:钢中的贝氏体是一种工业上有用的结构。但是,尚不清楚其转变起点的控制因素。在这项研究中,为弄清碳含量对贝氏体转变开始温度(B_(s))的影响,我们评估了低碳Fe-9Ni合金的膨胀曲线和显微组织。结果,B_(s)随着碳含量的增加而降低。此外,考虑到镍的偏析计算出的B_(s)处从fcc到bcc的无分隔转变的驱动力在所有合金中大致恒定在400 J / mol。如先前的研究报道,该值与铁素体无分区生长所需的驱动力一致。这种一致性表明B_(s)取决于板条状铁素体的马氏体生长行为,这是由从T_(0)线开始的过冷确定的。

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