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A coupled phase field/diffusion model for upper and lower bainitic transformation

机译:上下贝氏变换的耦合相场/扩散模型

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Bainite is a steel microstructure consisting of three phases, bainitic ferrite, austenite and carbides. It forms in two different morphologies, upper and lower bainite, where different diffusion mechanisms are dominant. The aim of this work is to simulate both transformations within a unified model. To this end, we extend an own previously published model for lower bainite with diffusion across the phase interface. As a central idea we introduce weighted Helmholtz energy functions and a weighted mobility tensor, respectively. The individual Helmholtz energy functions and mobility terms are related to the different diffusion mechanisms which are responsible for the formation of both morphologies. Two representative examples illustrate the capability of the coupled phase field/diffusion model and show the expected behaviour. (C) 2017 Elsevier Ltd. All rights reserved.
机译:Bainite是由三个阶段,贝氏体铁氧体,奥氏体和碳化物组成的钢微观结构。 它在两种不同的形态形成,上层和下贝氏体,其中不同的扩散机制是显性的。 这项工作的目的是在统一模型中模拟两个转换。 为此,我们向下贝氏体具有以前发布的模型,具有相位接口的扩散。 作为一个核心思想,我们分别引入加权Helmholtz能量功能和加权移动张量。 单独的Helmholtz能量功能和移动性术语与不同的扩散机制有关,其负责形成形态的形成。 两个代表性示例说明了耦合相位场/扩散模型的能力,并显示了预期的行为。 (c)2017 Elsevier Ltd.保留所有权利。

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