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Correlative analysis of interaction between recrystallization and precipitation during sub-critical annealing of cold-rolled low-carbon V and Ti-V bearing microalloyed steels

机译:冷轧低碳型和Ti-V轴承微合金钢亚临界退火期间重结晶和沉淀相互作用的相关性分析

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摘要

In this paper a new insight into fundamentals of static recrystallization, precipitation and their interaction during sub-critical annealing of three cold-rolled low-carbon microalloyed steel grades is presented. The grades under investigation are a base grade containing V as a microalloying element, a Ti + grade containing Ti as micro-alloying element added into the base grade, and a Ti + Mn + grade containing additional Mn added into the Ti + grade. The cold-rolled steels are sub-critically annealed inside a muffle furnace to simulate industrial continuous annealing parameters in order to investigate the interaction between recrystallization and precipitation across transient stages of the annealing process as a function of temperature and time. The Zener pinning of precipitates and solute drag force of Mn on the recrystallization process are calculated and compared with measured values obtained from experimental studies on the recrystallization kinetics. Results suggest that the recrystallization kinetics is fastest in the base grade. For the Ti + grade, fine (<15 nm) (Ti,V)(C/N) particles retard the recrystallization kinetics. For the Ti+ and Ti + Mn + grades, solute drag effect of Mn solute atoms for dwell time longer than 2 min at annealing temperature of 800 °C is negligible.
机译:本文介绍了新的静态重结晶基础知识的新洞察,施用三种冷轧低碳微合金钢等级的亚临临时退火期间的静态再结晶,沉淀及其相互作用。正在研究的等级是含有V作为微合金元素的基础级,作为添加到基础等级中的微合金元素的Ti +级别,含有另外的Mn的Ti + Mn +等级加入到Ti +等级中。冷轧钢在Muffle炉内部划分,以模拟工业连续退火参数,以研究退火过程的瞬态阶段的再结晶和沉淀之间的相互作用,作为温度和时间的函数。计算沉淀物的齐纳固定和Mn在重结晶过程中的溶质阻力,并与从重结晶动力学的实验研究中获得的测量值进行比较。结果表明,重结晶动力学在基础等级中最快。对于Ti +等级,细(<15nm)(Ti,V)(C / N)颗粒延迟重结晶动力学。对于Ti +和Ti + Mn +等级,Mn溶质原子的溶质阻力效应在800℃的退火温度下长于2分钟的停留时间可忽略不计。

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