首页> 外文期刊>Modelling and simulation in materials science and engineering >Influence of anisotropic grain boundary properties on the evolution of grain boundary character distribution during grain growth-a 2D level set study
【24h】

Influence of anisotropic grain boundary properties on the evolution of grain boundary character distribution during grain growth-a 2D level set study

机译:各向异性晶界特性对晶粒长大过程中晶界特征分布演变的影响-二维水平集研究

获取原文
获取原文并翻译 | 示例
       

摘要

The present study elaborates on a 2D level set model of polycrystal microstructures that was recently established by adding the influence of anisotropic grain boundary energy and mobility on microstructure evolution. The new model is used to trace the evolution of grain boundary character distribution during grain growth. The employed level set formulation conveniently allows the grain boundary characteristics to be quantified in terms of coincidence site lattice (CSL) type per unit of grain boundary length, providing a measure of the distribution of such boundaries. In the model, both the mobility and energy of the grain boundaries are allowed to vary with misorientation. In addition, the influence of initial polycrystal texture is studied by comparing results obtained from a polycrystal with random initial texture against results from a polycrystal that initially has a cube texture. It is shown that the proposed level set formulation can readily incorporate anisotropic grain boundary properties and the simulation results further show that anisotropic grain boundary properties only have a minor influence on the evolution of CSL boundary distribution during grain growth. As anisotropic boundary properties are considered, the most prominent changes in the CSL distributions are an increase of general low-angle Sigma 1 boundaries as well as a more stable presence of Sigma 3 boundaries. The observations also hold for the case of an initially cube-textured polycrystal. The presence of this kind of texture has little influence over the evolution of the CSL distribution. Taking into consideration the anisotropy of grain boundary properties, grain growth alone does not seem to be sufficient to promote any significantly increased overall presence of CSL boundaries.
机译:本研究阐述了多晶微结构的二维水平集模型,该模型是最近通过添加各向异性晶界能和迁移率对微结构演化的影响而建立的。该新模型用于追踪晶粒生长过程中晶界特征分布的演变。所采用的水平集公式方便地允许以每单位晶界长度的重合位点晶格(CSL)类型来量化晶界特征,从而提供了这种边界的分布的度量。在该模型中,允许晶界的迁移率和能量随取向错误而变化。另外,通过将具有随机初始纹理的多晶的结果与最初具有立方体纹理的多晶的结果进行比较,研究了初始多晶纹理的影响。结果表明,所提出的水平集公式可以容易地融合各向异性晶粒边界特性,并且模拟结果进一步表明,各向异性晶粒边界特性仅对晶粒长大过程中CSL边界分布的演变影响较小。考虑到各向异性边界属性后,CSL分布中最显着的变化是常规低角度Sigma 1边界的增加以及Sigma 3边界的更稳定存在。对于最初为立方纹理的多晶的情况,这些观察也成立。这种纹理的存在对CSL分布的演变几乎没有影响。考虑到晶界特性的各向异性,仅晶粒长大似乎不足以促进CSL边界整体存在的任何显着增加。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号