氮含量对钒钛微合金钢静态再结晶和析出行为的影响

Baochun Zhao, Tan Zhao, Lei Huang, Junbo Li
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摘要

使用 Gleeble-3800 热机械模拟器对不同含氮量的钒钛微合金钢进行了两次压缩试验,以研究两次压缩之间不同时间间隔内变形奥氏体的软化行为。通过应力偏移法计算了静态再结晶分数,并获得了测试钢材的静态再结晶图。分析了变形温度和间隔时间对软化行为的影响。特别是详细讨论了氮对测试钢材软化行为的影响。结果表明,不同含氮量的钢的软化行为各不相同。就氮含量较低的钢而言,软化分数随时间间隔的增加而单调增加,且较高的温度可促进静态再结晶。然而,随着钒钛微合金钢中氮含量的增加,在 850 ℃ 或 800 ℃ 的温度下,测试钢中可观察到碳化钒钛的沉淀颗粒,从而导致软化曲线上形成高原。钢中氮含量的增加有利于碳化钒钛的析出,从而更强地阻止静态再结晶,并在软化曲线上形成更长的高原。此外,在钢中氮含量达到临界值之前,测试钢中的析出颗粒不会对静态再结晶起到抑制作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of nitrogen content on the static recrystallization and precipitation behaviors of vanadium–titanium microalloyed steels
Double compression tests were performed on vanadium–titanium microalloyed steels with different nitrogen contents by using a Gleeble-3800 thermo-mechanical simulator to study the softening behaviors of the deformed austenite during different time intervals between the two passes. The static recrystallization fractions were calculated by the stress offset method and static recrystallization diagrams for the tested steels were obtained. The effects of deformation temperature and interval time on the softening behaviors were analyzed. Especially, the effect of nitrogen on the softening behaviors of the tested steels is discussed in detail. The results showed that the softening behaviors of the tested steels with various nitrogen contents are different. As far as the steel with low nitrogen content is concerned, the softening fraction increases monotonically with increasing time interval, and higher temperature can promote the static recrystallization. However, with more nitrogen added into vanadium–titanium microalloyed steel, precipitated particles of vanadium titanium carbonitride can be observed in the tested steel at the temperature of 850 °C or 800 °C, which leads to the formation of plateaus on the softening curves. An increase in nitrogen content in the steel is favorable for vanadium titanium carbonitride precipitation, which leads to a stronger prohibition of static recrystallization and a longer plateau on the softening curves. Moreover, the precipitated particles in the tested steel will not play an inhibition role in static recrystallization until the nitrogen content in the steel reaches a critical value.
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