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Modeling grain fragmentation and deformation textures for titanium using a combined approach of the viscoplastic self-consistent model and a shear fluctuation model

机译:使用粘胶自洽模型和剪切波动模型的组合方法对钛碎片和变形纹理进行造型颗粒碎片和变形纹理

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摘要

A new grain fragmentation model is proposed for the formation of grain substructures in polycrystalline materials during plastic deformation. Micro-shear bands and twins are assumed to originate from grain boundaries due to the local stress concentrations caused by the interaction of grain boundaries and slip bands. These stress concentrations will impose shear fluctuations on the neighboring grains, which can be relaxed by the formation of corresponding substructures, i.e., micro-shear bands and twins, in these neighboring grains. Texture simulations for cold rolling and equal channel angular pressing (ECAP) of commercially pure titanium are performed using a combined approach of the viscoplastic self-consistent (VPSC) model and the shear fluctuation model. The texture update scheme in the combined approach is presented. Experimental textures at different thickness reductions of cold rolling at room temperature (300 K) and after the first pass of ECAP at 473 K are measured and compared with simulated textures obtained by the standard VPSC approach and the combined approach. In comparison with the standard VPSC approach, the combined approach gives better texture predictions for the two cases: The missing components at low to intermediate rolling reductions in the standard VPSC approach are reproduced; at high rolling reductions and after ECAP, the dominating fibers are also essentially smoothened in the combined approach, in better agreements with the experimental textures.
机译:提出了一种新的颗粒碎片模型,用于在塑性变形期间形成多晶材料中的晶粒结构。假设微剪切带和双胞胎由于由晶界和滑动带的相互作用引起的局部应力浓度而源自晶界。这些应力浓度将施加在邻近颗粒上的剪切波动,这可以通过在这些相邻颗粒中形成相应的子结构,即微剪切带和双胞胎的形成来放松。使用粘塑性自洽(VPSC)模型的组合的方法和剪切波动模型进行模拟纹理对于商用纯钛的冷轧和等径角挤压(ECAP)。提出了组合方法中的纹理更新方案。测量室温(300k)的冷轧中的不同厚度减少的实验纹理,并测量了通过标准VPSC方法获得的模拟纹理和组合方法的模拟纹理。与标准VPSC方法相比,组合方法为这两种情况提供了更好的纹理预测:再现了标准VPSC方法中缺失的组件,以低至中间轧制减少的方法;在高轧制减少和ECAP之后,主导纤维也以良好的方法在与实验纹理的更好协议中基本上平滑。

著录项

  • 来源
    《Journal of Materials Science》 |2017年第13期|共17页
  • 作者

    Guo Xiaodong; Seefeldt Marc;

  • 作者单位

    Katholieke Univ Leuven Dept Mat Engn Kasteelpk Arenberg 44 B-3001 Heverlee Belgium;

    Katholieke Univ Leuven Dept Mat Engn Kasteelpk Arenberg 44 B-3001 Heverlee Belgium;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;
  • 关键词

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