首页> 外文期刊>International journal of multiscale computational engineering >MODELING OF TWO-PHASE GRAIN STRUCTURE IN THE TITANIUM ALLOY TI-6AL-4V USING CELLULAR AUTOMATA
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MODELING OF TWO-PHASE GRAIN STRUCTURE IN THE TITANIUM ALLOY TI-6AL-4V USING CELLULAR AUTOMATA

机译:利用细胞自动机模拟钛合金TI-6AL-4V中的两相晶格结构

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The static coarsening behavior of the alpha-beta titanium alloy Ti-6AI-4V during heat treatments is modeled using a probabilistic cellular automata model (CA). For this purpose the kinetics of grain growth is described via transformation probabilities which are determined by diffusion mechanisms at grain and phase boundaries. For temperature changes an algorithm is implemented which adjusts the fraction of alpha and beta phase to reach equilibrium phase values. Hence, the CA is capable of calculating grain coarsening as well as grain dissolution in the two-phase area during heating and isothermal treatments at forging temperature. For these calculations, an initial microstructure is used as input and it can be imported from either virtual created microstructures, real micrographs, or electron backscatter diffraction (EBSD) maps. The model output includes mean diameter, grain size distribution, and virtually simulated microstructures which can be easily compared with experimental micrographs. Examples showing a good correlation between the predicted microstructures and experimental results, as well as data from literature, are presented in this work. The successful implementation of this model will lead to predictions of behavior in other dual-phase alloys.
机译:使用概率细胞自动机模型(CA)对α-β钛合金Ti-6AI-4V在热处理过程中的静态粗化行为进行建模。为此目的,通过转变概率描述晶粒生长的动力学,该转变概率由晶粒和相界处的扩散机制确定。对于温度变化,实现了一种算法,该算法可调整α和β相的比例以达到平衡相值。因此,CA能够计算出锻造温度下的加热和等温处理过程中两相区的晶粒粗化和晶粒溶解。对于这些计算,将原始的微观结构用作输入,并且可以从虚拟创建的微观结构,真实的显微照片或电子背散射衍射(EBSD)图中导入。模型输出包括平均直径,晶粒尺寸分布和虚拟模拟的微观结构,可以轻松地与实验显微照片进行比较。实例显示了预测的微观结构与实验结果以及文献数据之间的良好相关性。该模型的成功实施将导致对其他双相合金行为的预测。

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