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Analysis of aluminium nitride precipitation proceeding concurrently with recrystallization in low-carbon steel

机译:低碳钢中氮化铝沉淀与重结晶同时进行的分析

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Aluminium nitride precipitation proceeding concurrently with the recrystallization process in a low-carbon Al-killed steel is modelled. The model calibration and the analysis of the interaction between the precipitation and recrystallization were carried out on the basis of experimental data of Meyzaud and Pamiere. Once model parameters have been determined using the data on precipitation in the purely deformed and purely recrystallized state, the model can be used to predict the AlN fraction precipitated under the condition of overlapping recrystallization. It turns out that recrystallization alters the kinetics of AlN precipitation. The precipitation rate is reduced significantly at an early stage of recrystallization and then increases at the stage of the recrystallization interruption. The analysis shows that the overall slowing down of the precipitation is due to its slowing down within the unrecrystallized regions. This effect is assumed to be associated with the redistribution of nitrogen atoms from the unrecrystallized regions to the recrystallizing interface. [References: 14]
机译:模拟了低碳铝镇静钢中与重结晶过程同时进行的氮化铝沉淀过程。在Meyzaud和Pamiere的实验数据的基础上,进行了模型校准和沉淀与再结晶之间相互作用的分析。一旦使用关于纯变形和纯再结晶状态下的析出数据确定了模型参数,该模型就可以用于预测在重叠重结晶条件下析出的AlN分数。事实证明,重结晶会改变AlN沉淀的动力学。在重结晶的早期,沉淀速率显着降低,然后在重结晶中断的阶段,沉淀速率增加。分析表明,降水的总体减缓是由于其在未结晶区域内的减缓。假定该效果与氮原子从未重结晶区域到重结晶界面的重新分布有关。 [参考:14]

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