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Effect of Nb on Recrystallization After Hot Deformation in Austenitic Fe-Ni-C

机译:Nb对奥氏体Fe-Ni-C热变形后再结晶的影响

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摘要

In high-strength low-alloy steels, the deformation, restoration and precipitation effects which occur during finish rolling in the austenitic condition are difficult to study because of the transformation of austenite to ferrite and/or martensite on cooling. To overcome this difficulty a series of austenitic Fe-Ni-C alloy were prepared with and without niobium to allow a more detailed study of the phenomena occurring during finish roiling. The effect of niobium on the static recrystallization of austenite after single-pass hot compression has been studied for a strain range of 0.25-0.9 at temperatures in the range of 850-1000 deg C. The results obtained by optical microscopy and transmission electron microscopy indicated that the retardation of static recrystallization was caused by either niobium in solution and/or strain-induced precipitates. Static recrystallization in the niobium steel was retarded when niobium was in solution by several times compared with the niobium-free steel. However, much stronger retardation in the niobium steel was observed when strain-induced precipitates were formed. It was observed that the dislocations, subgrain boundaries, and grain boundaries are preferential sites for strain-induced NbC precipitation. Small precipitates (< 3 nm) were responsible for the retardation of recrystallization by the pinning of subgrain boundaries and grain boundaries.
机译:在高强度低合金钢中,由于奥氏体在冷却时会转变为铁素体和/或马氏体,因此难以研究在奥氏体条件下进行精轧时产生的变形,恢复和析出效果。为了克服这一困难,制备了一系列含或不含铌的奥氏体Fe-Ni-C合金,以便更详细地研究精轧过程中出现的现象。在850-1000摄氏度的温度范围内,研究了铌对单次热压缩后奥氏体静态再结晶的影响,应变范围为0.25-0.9。通过光学显微镜和透射电子显微镜获得的结果表明静态再结晶的延迟是由溶液中的铌和/或应变诱导的沉淀引起的。与不含铌的钢相比,当铌在溶液中时,铌钢中的静态再结晶被延迟了几倍。但是,当形成应变诱发的析出物时,观察到铌钢中的强得多的延迟。据观察,位错,亚晶界和晶界是应变诱导的NbC沉淀的优先位。小的析出物(<3 nm)是由于亚晶界和晶界钉扎而导致的再结晶延迟。

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