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A numerical model for multiple phase transformations in steels during thermal processes

机译:热过程中钢中多相变换的数值模型

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It is now well known that phase changes in steels can be reasonably well modelled by kinetics derived from the concept of extended volume. This has led to a large number of models based on the Koistinen-Marburger equation for martensitic type transformations, and on Johnson-Mehl-Avrami-Kolmogorov type equations for transformations involving diffusion. These models are generally based on either isothermal tranformation (IT) diagrams or on continuous cooling transformation (CCT) diagrams. Their efficiency is oftne linked to their ability to represent both CCT and IT diagrams of a given material. Afterl describing classical models used to simulate phase changes in steels along isothermal as well as non-isothermal paths, this paper focuses on (i) the numerical implementation of these models, and (ii) their generalisation to the case where more than two phases are involved. We first show that, in the case of only one possible reaction between two phases, most of the kinetic models can be kincorporated into a unique differential formulation. This formulation holds for both martensitic and diffusional transformations. For the case where several reactions between two or more phases can take place, an approach assuming that these reactions occur independently is porposed. This approach is illustrated on (i) calculations of CCT diagrams from data obtained on IT diagrams, and (ii) prediction of IT diagrams from parameters fitte on CCT diagrams.
机译:现在众所周知,钢中的相变可以通过来自扩展卷的概念的动力学来合理地建模。这导致了大量的基础上,Koistinen-马伯格方程为马氏体型转变模型,并在约翰逊Mehl的-的Avrami - 柯尔莫哥洛夫型方程涉及扩散变换。这些模型通常基于等温静态(IT)图或连续冷却变换(CCT)图。它们的效率是与其代表CCT和IT图的能力相关联的效率。用于在沿等温以及非等温路径钢模拟相位变化Afterl描述经典模型,本文的重点(i)所述数值实现这些模型,及(ii)其推广到两个以上的相位的情况下涉及。首先表明,在两个阶段之间只有一个可能的反应的情况下,大多数动力学模型可以是kincoplated成独特的差异制剂。该配方适用于马氏体和扩散转化。对于可以进行两相之间的几个或更多个相之间的几个反应的情况,假设这些反应独立发生的方法是振动的。在(i)从IT图所获得的数据的CCT图的计算上示出了这种方法,以及来自CCT图上的参数FETT的IT图的预测。

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