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Grain growth in thin films with a fibre texture studied by phase-field simulations and mean field modelling

机译:通过相场模拟和均值场模型研究了具有纤维质地的薄膜中的晶粒生长

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摘要

The evolution of fibre textured structures is simulated in two dimensions using a generalised phase field model assuming two forms for the misorientation dependence of the grain boundary energy. In each case, a steady-state regime is reached after a finite amount of grain growth, where the number and length weighted misorientation distribution functions (MDF) are constant in time, and the mean grain area A as a function of time t follows a power growth law A − A 0 = kt n with n close to 1 and A 0 the initial mean grain area. The final shape of the MDF and value of the prefactor k in the power growth law clearly correlate with the misorientation dependence of the grain boundary energy. Furthermore, a mean field approach is worked out to predict the growth exponent for systems with non-uniform grain boundary energy. The conclusions from the mean field approach are consistent with the simulation results. In previous studies on grain growth in anisotropic fibre textured systems, this steady-state regime was often not reached, which resulted in wrong conclusions on the growth exponent n and evolution of the MDF.
机译:使用广义相场模型在二维上模拟了纤维织构结构的演变,该模型假定晶界能的取向失调有两种形式。在每种情况下,在一定数量的晶粒长大后都达到稳态状态,其中数量和长度加权的取向错误分布函数(MDF)在时间上是恒定的,并且平均晶粒面积A作为时间t的函数遵循a功率增长定律A A A 0 = kt n ,其中n接近1,A 0 初始平均晶粒面积。 MDF的最终形状和功率增长定律中的前置因子k的值显然与晶界能的取向失调相关。此外,研究了一种均值场方法来预测具有不均匀晶界能的系统的增长指数。平均场方法的结论与仿真结果一致。在以前关于各向异性纤维织构系统中晶粒长大的研究中,通常没有达到这种稳态状态,这导致了关于中密度纤维板生长指数n和演化的错误结论。

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