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Modeling of the Kinetics of Carbonitride Precipitation Process in High-Strength Low-Alloy Steels Using Cellular Automata Method

机译:采用蜂窝自动机方法建模高强度低合金钢中碳氮化沉淀工艺的动力学

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摘要

Proposition of a cellular automata (CA) model of carbonitride precipitation to simulate image of microstructure in HSLA steels and to predict the mechanical properties is presented in the paper. CA model proved to be very efficient in modeling various phenomena in material science. Numerical modeling played an important role in development of new processing technologies taking advantage of precipitation. By modeling, we mean a mathematical description of the relation between the main process variables and the resulting material properties, based on sound physical principles. In microalloyed steels, the microalloying elements Ti, Nb and V are added in order to control their microstructure and mechanical properties. High chemical affinity of these elements for interstitials (C, N) results in precipitation of binary compound, nitrides and carbides and products of their mutual solubility-carbonitrides. The model accounts for an increase in dislocation density due to plastic deformation and predicts kinetics of precipitation as well as shape of precipitates.
机译:碳氮化物沉淀的细胞自动机(CA)模型模拟​​HSLA钢中微观结构图像的模型及预测纸张中的机械性能。 CA模型被证明是在材料科学中的各种现象建模中非常有效。数值模型在利用降水利用的新加工技术开发中发挥着重要作用。通过建模,我们的意思是基于声音物理原理的主要过程变量与所得材料特性之间的关系的数学描述。在微合金钢中,添加微合金元素Ti,Nb和V以控制其微观结构和机械性能。这些元素对间质(C,N)的高化学亲和力导致二元化合物,氮化物和碳化物的沉淀和其相互溶解性 - 碳氮化物的产物。由于塑性变形,模型占脱位密度的增加,并预测降水的动力学以及沉淀物的形状。

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