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近β钛合金中两相组织不协调变形行为的晶体塑性有限元研究
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西北工业大学

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National fund of the State Key Laboratory of Advanced Technologies for Comprehensive Utilization of Platinum Metals (No. SKL-SPM-201212) and the “111” Project (No. B08040)


Crystal plasticity finite element study of incompatible deformation behavior in two phase microstructure in near β titanium a
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Northwestern Polytechnical University

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    摘要:

    本文基于晶体塑性模型,研究了近β钛合金中(α β) 两相组织的不协调变形行为。首先,双晶体模型的计算结果表明(α β) 两相组织中的塑性变形是不协调的,而且α相的变形行为与晶体取向和加载方向密切相关。另外,通过耦合三维Voronoi几何模型,探讨了近β钛合金中球状初生α相对宏观力学响应的影响。利用该CPFE-VT数值模型,研究发现α相与β相的不协调变形导致了合金强度随α相体积分数的增加而成线性降低。此外,β基体中α相的分布对合金应力-应变响应也有较大的影响。本文针对具有两相组织的近β钛合金建立的晶体塑性有限元模型为钛合金组织控制技术的发展以及性能预测提供了重要的技术途径。

    Abstract:

    The incompatibility of plastic deformation in a near β titanium alloy with (α β) two phases microstructure was analyzed based on the crystal plasticity finite element (CPFE) model. The bicrystal simulation results show that the plastic deformation in the microstructure with (α β) two phases is incompatible, wherein the deformation behavior of α phase is significantly affected by the crystal orientation and loading direction. In addition, by coupling with three-dimensional (3D) Voronoi tessellation (VT) geometric model, the effect of globular primary α phase in the β matrix on the macroscopic mechanical response was discussed. Based on the CPFE-VT model, it is found that the incompatibility of plastic deformation between the α and β phases results in a linear reduction of the macroscopic strength with the proportional increasing of volume fraction of α phase which has a lower critical resolved shear stress. Furthermore, the distribution of primary α phase also has a significant effect on the stress-strain response. The proposed model for near β titanium alloy with dual phase microstructure yields important information for the microstructure controlling and the performance prediction.

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唐斌.近β钛合金中两相组织不协调变形行为的晶体塑性有限元研究[J].稀有金属材料与工程,2016,45(7):1647~1653.[Tang Bin. Crystal plasticity finite element study of incompatible deformation behavior in two phase microstructure in near β titanium a[J]. Rare Metal Materials and Engineering,2016,45(7):1647~1653.]
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  • 收稿日期:2014-07-28
  • 最后修改日期:2014-09-03
  • 录用日期:2014-11-21
  • 在线发布日期: 2016-10-09
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