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Effect of deformation temperature on niobium clustering, precipitation and austenite recrystallisation in a Nb-Ti microalloyed steel

机译:变形温度对Nb-Ti微合金钢中铌聚集,析出和奥氏体再结晶的影响

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摘要

The effect of deformation temperature on Nb solute clustering, precipitation and the kinetics of austenite recrystallisation were studied in a steel containing 0.081C–0.021Ti–0.064 Nb (wt%). Thermo-mechanical processing was carried out using a Gleeble 3500 simulator. The austenite microstructure was studied using a combination of optical microscopy, transmission electron microscopy, and atom probe microscopy, enabling a careful characterisation of grain size, as well as Nb-rich clustering and precipitation processes. A correlation between the austenite recrystallisation kinetics and the chemistry, size and number density of Nb-rich solute atom clusters, and NbTi(C,N) precipitates was established via the austenite deformation temperature. Specifically, we have determined thresholds for the onset of recrystallisation: for deformation levels above 75% and temperatures above 825 °C, Nb atom clusters recrystallisation
机译:在含0.081C–0.021Ti–0.064 Nb(wt%)的钢中研究了变形温度对Nb溶质团聚,析出和奥氏体再结晶动力学的影响。使用Gleeble 3500仿真器进行热机械加工。使用光学显微镜,透射电子显微镜和原子探针显微镜的组合研究了奥氏体的微观结构,从而能够仔细表征晶粒尺寸以及富Nb的团簇和沉淀过程。通过奥氏体变形温度,建立了奥氏体再结晶动力学与富Nb溶质原子团簇的化学性质,尺寸和数量密度之间的相关性,并且建立了NbTi(C,N)析出物。具体来说,我们已经确定了重结晶开始的阈值:对于变形水平高于75%和温度高于825°C的情况,Nb原子簇重新结晶

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