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Dispersion strengthening in vanadium microalloyed steels processed by simulated thin slab casting and direct charging: Part I - Processing parameters, mechanical properties and microstructure

机译:通过模拟薄板坯铸造和直接装料处理的钒微合金钢中的弥散强化:第一部分-加工参数,力学性能和显微组织

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摘要

A study simulating thin slab continuous casting followed by direct charging into an equalisation furnace has been undertaken based on six low carbon (0.06wt-%) vanadium microalloyed steels. Mechanical and impact test data showed properties were similar or better than those obtained from similar microalloyed conventional thick cast as rolled slabs. The dispersion plus dislocation strengthening was estimated to be in the range 80-250MPa.A detailed TEM/EELS analysis of the dispersion sized sub-15nm particles showed that in all the steels, they were essentially nitrides with little crystalline carbon detected. In the Steels V-Nb, V-Ti and V-Nb-Ti, mixed transition metal nitrides were present. Modelling of equilibrium precipitates in these steels, based on a modified version of ChemSage, predicted that only vanadium rich nitrides would precipitate in austenite but that the C/N ratio would increase through the two phase field and in ferrite. The experimental analytical data clearly points to the thin slab direct charging process, which has substantially higher cooling rates than conventional casting, nucleating non-equilibrium particles in ferrite which are close to stoichiometric nitrides. These did not coarsen during the final stages of processing, but retained their highly stable average size of ~7nm resulting in substantial dispersion strengthening. The results are considered in conjunction with pertinent published literature.
机译:基于六种低碳(0.06wt%)钒微合金钢,进行了模拟薄板坯连铸然后直接装填到均化炉中的研究。机械和冲击试验数据表明,其性能与从类似的微合金化常规厚铸轧制板坯获得的性能相似或更好。分散体和位错强化估计在80-250MPa范围内。对分散体尺寸在15nm以下的颗粒进行的TEM / EELS详细分析表明,在所有钢中,它们基本上都是氮化物,几乎没有发现结晶碳。在V-Nb,V-Ti和V-Nb-Ti钢中,存在混合的过渡金属氮化物。根据ChemSage的修改版本,对这些钢中的平衡析出物进行建模,可以预测只有富钒的氮化物会在奥氏体中析出,但C / N比会在两相场和铁素体中增加。实验分析数据清楚地指出了薄板坯直接装料工艺,该工艺具有比常规铸件更高的冷却速率,使铁素体中的非平衡颗粒成核,接近于化学计量的氮化物。这些在加工的最后阶段没有粗化,但保留了〜7nm的高度稳定的平均尺寸,从而使分散性得到了增强。结合相关已发表的文献来考虑结果。

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