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ABNORMAL GRAIN GROWTH OF AUSTENITE IN A V-NB MICROALLOYED STEEL

机译:V-NB微合金钢中奥氏体的异常晶粒长大

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摘要

An investigation was made of the grain-growth kinetics of the V-Nb microalloyed steel austenite phase at temperatures in the range 1173-1373 K, relevant for the understanding of the steel thermomechanical processing. The fine precipitation of vanadium-and niobium-rich particles plays an important role in helping the alloy to maintain a fine grain structure, which was characterized using optical microscopy, scanning electron microscopy and transmission electron microscopy. It was found that at temperatures where the fine precipitate particles are stable, the grain-growth process is slow and the mode of grain growth is normal. At higher temperatures where the precipitates are prone to dissolve, the abnormal grain-growth mode dominates. All the observations were comprised in a time-temperature map of the grain-growth modes. The map was built up by employing extensive line-intercept measurements of grain sizes at different temperatures and annealing times, followed by numerical calculations yielding curves of grain-growth rate as a function of grain size at different time intervals. The present experimental observations were found consistent with the results of calculations and predictions of the earlier theoretical work. [References: 25]
机译:研究了V-Nb微合金钢奥氏体相在1173-1373 K范围内的温度下的晶粒长大动力学,这与理解钢的热机械加工有关。富钒和富铌颗粒的细小沉淀在帮助合金保持精细的晶粒结构方面起着重要作用,这通过光学显微镜,扫描电子显微镜和透射电子显微镜进行了表征。发现在细的沉淀颗粒稳定的温度下,晶粒生长过程缓慢并且晶粒生长的模式是正常的。在较高的温度下,沉淀易于溶解,异常的晶粒生长模式占主导。所有观察结果都包含在晶粒长大模式的时间-温度图中。该图是通过在不同温度和退火时间下对晶粒尺寸进行广泛的线截距测量而建立的,然后进行数值计算得出晶粒生长速率随晶粒在不同时间间隔的变化曲线。发现本实验观察结果与早期理论工作的计算结果和预测结果一致。 [参考:25]

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