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Manganese partitioning in low carbon manganese steel during annealing

机译:低碳锰钢中退火过程中的锰分配

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摘要

For 6Mnl6 steel experimental soft annealing at 625 deg C for periods from 1 h to 60 h and modeling with Thermo-Calc were performed to estimate the partitioning of alloying elements, in particular Mn, between ferrite, cementite and austenite. Using transmission electron microscopy and X-ray analysis it was established that the increase of Mn concentration in carbides to a level 7 percent-11.2 percent caused a local decrease of the Ac_1 temperature and led to the presence of austenite around the carbides. Thus, after cooling, small bainite-martensite or bainite-martensite-retained austenite (BM-A) islands were observed. A dispersion of carbides and a coarsening process were observed. The measured amount of Mn in the carbides was in good agreement with theoretical predictions.
机译:对于6Mn16钢,在625摄氏度下进行了1h至60h的实验软退火,并使用Thermo-Calc进行建模,以估计合金元素,特别是Mn在铁素体,渗碳体和奥氏体之间的分配。使用透射电子显微镜和X射线分析确定,碳化物中Mn浓度增加到7%-11.2%会引起Ac_1温度的局部降低,并导致碳化物周围存在奥氏体。因此,冷却后,观察到小的贝氏体-马氏体或贝氏体-马氏体保留的奥氏体(BM-A)岛。观察到碳化物的分散和粗化过程。碳化物中的Mn含量与理论预测吻合良好。

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