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Computer simulation of carbonitride precipitation during deformation in Nb-Ti microalloyed steels

机译:Nb-Ti微合金钢变形过程中碳氮化物析出的计算机模拟

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摘要

A thermo/kinetics computer model has been developed to predict the precipitation behavior of complex precipitates in Nb-Ti bearing steels under hot deformation condition. The equilibrium concentration of substitutional elements in austenite and the driving force for precipitation are calculated by the thermodynamic model. The time dependence of volume fraction and mean radius of precipitates is predicted by the kinetics model on the basis of classical nucleation and growth theory. In the kinetics model, the effect of hot deformation on precipitation is taken into account in terms of increase in nucleation sites and the enhanced diffusivity of substitutional solutes along dislocation, the decrease of solute concentration in austenite, and the driving force for precipitation are determined by a mean field approximation method. More importantly, the present model treats nucleation and growth as a concomitant process by using the finite differential method, which is different from the traditional one that treats nucleation and growth as a sequential stage. The model has been further validated by the experimental data in the literature.
机译:已经建立了热/动力学计算机模型来预测Nb-Ti轴承钢在热变形条件下的复杂析出物的析出行为。利用热力学模型计算出奥氏体中置换元素的平衡浓度和析出的驱动力。在经典成核和生长理论的基础上,通过动力学模型预测了体积分数和沉淀物平均半径的时间依赖性。在动力学模型中,考虑到热形变对析出的影响,考虑了成核位点的增加和置换溶质沿位错的扩散性提高,奥氏体中溶质浓度的降低以及析出的驱动力,平均场近似方法。更重要的是,本模型通过使用有限差分方法将成核和生长作为伴随过程进行处理,这与将成核和生长作为顺序阶段的传统方法不同。该模型已通过文献中的实验数据进一步验证。

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