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Model for texture evolution in cold rolling of 2.4 wt.- Si non-oriented electrical steel

机译:纹理演化模型为2.4重量升至2.4重量级非导向电钢

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Iron loss and limited magnetic flux density are constraints for NGO electrical steel used in highly efficient electrical machinery cores. The most important factors that affect these properties are the final microstructure and the texture of the NGO steel. Reviewing the whole process chain, cold rolling plays an important role because the recrystallization and grain growth during the final heat treatment can be strongly affected by the stored energy and microstructure of cold rolling, and some texture characteristics can be inherited as well. Therefore, texture evolution during cold rolling of NGO steel is worth a detailed investigation. In this paper, texture evolution in cold rolling of non-oriented (NGO) electrical steel is simulated with a crystal plasticity finite element method (CPFEM) model. In previous work, a CPFEM model has been implemented for simulating the texture evolution with periodic boundary conditions and a phenomenological constitutive law. In a first step the microstructure in the core of the workpiece was investigated and mapped to a representative volume element to predict the texture evolution. In this work an improved version of the CPFEM model is described that better reflects the texture evolution in cold rolling of NGO electrical steel containing 2.4 wt.-% Si. This is achieved by applying the deformation gradient and calibrating the flow curve within the CPFEM model. Moreover, the evolution of dislocation density is calculated and visualized in this model. An in depth comparison of the numerical and experimental results reveals, that the improved CPFEM model is able to represent the important characteristics of texture evolution in the core of the workpiece during cold rolling with high precision.
机译:铁损和有限的磁通密度是高效电机芯中使用的非政府组织电气钢的限制。影响这些性质的最重要因素是NGO钢的最终微观结构和质地。回顾整个过程链,冷轧起到重要作用,因为最终热处理期间的重结晶和谷物生长可以受到冷轧的储存和微观结构的强烈影响,并且也可以遗传一些纹理特征。因此,非政府组织钢冷轧过程中的纹理演化值得详细调查。本文采用晶体塑性有限元法(CPFEM)模型模拟​​了非定向(非政府组织)电钢冷轧中的纹理演化。在以前的工作中,已经实施了CPFEM模型,用于模拟周期性边界条件和现象学中的纹理演变。在第一步中,研究了工件的核心中的微观结构,并映射到代表性的体积元件以预测纹理演化。在这项工作中,描述了CPFEM模型的改进版本,更好地反映了含有2.4重量%的NGO电钢冷轧中的纹理演变。这是通过应用变形梯度并校准CPFEM模型内的流量曲线来实现的。此外,在该模型中计算并可视化位错密度的演变。关于数值和实验结果的深度比较揭示,即改进的CPFEM模型能够在高精度冷轧过程中代表工件芯中纹理演化的重要特征。

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