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Influence of Stelmor cooling procedure on eutectoid transformation of segregation in 82B wires

机译:碑叶冷却过程对82B电线偏析析析变化的影响

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The character of microstructure in the segregation of 82B wire with two different stelmor control cooling procedures and kinetics of eutectoid transformation of segregation through thermal simulation in the range of 400-600°C were researched. The longitudinal section segregation microstructure and composition were analyzed by OM, SEM, WDS. The thermal simulation results show that the length of martensite segregation bands is decreased as holding time increases above a certain temperature, and martensite band in the core of wire where the content of Mn and Cr elements is higher than matrix because of segregation. Furthermore, Stelmor control cooling experiments in the high speed wire mill confirms that there is a critical temperature to 82B wire above which the eutectoid transformation in the segregation is possible, and enough time above the critical temperature in the Stelmor control cooling lids is the key to optimizing procedure.
机译:研究了82B线的微观结构的特性,具有两种不同的Stelmor控制冷却方法和通过热模拟在400-600℃的热模拟中的偏析转化的动力学。通过OM,SEM,WDS分析纵向剖面微观结构和组合物。热模拟结果表明,由于保持时间增加,马氏体分离带的长度随着循环的核心的核心,而Mn和Cr元素含量高于矩阵的核心,而马氏体隔离带的长度降低。此外,高速线材中的Stelmor控制冷却实验证实,在上面存在临界温度至82b线,其偏析中的共霉异化变换是可能的,并且足够高于Stelmor控制冷却盖的临界温度的时间是关键优化程序。

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