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1)  crystallographic finite element
晶体滑移有限元
1.
The rate-dependent crystallographic finite element program was implemented for the analysis of the elastic-plastic stress fields near grain boundary(GB) in anisotropic bicrystals and tricrystals,taking the different crystallographic orientations,geometry GB and physical GB into consideration.
采用率相关的晶体滑移有限元程序对具有不同晶体取向的双晶体晶界附近及三晶体三晶粒交汇处的弹塑性应力场进行了计算,考虑了几何晶界和物理晶界的影响。
2)  anisotropic crystallographic program
各向异性晶体滑移有限元程序
3)  crystallographic finite element method
晶体有限元分析
4)  crystal plasticity finite element method
晶体塑性有限元
1.
The distributions of the stress, strain and stored energy in hot deformed austenite were simulated by crystal plasticity finite element method (CPFEM) to evaluate quantitatively the deformation behavior on a mesoscale.
为了定量描述热变形奥氏体在介观尺度上微观变形的非均匀性,采用晶体塑性有限元方法(crystal plasticity finite element method,CPFEM)模拟了C-Mn钢在不同变形条件下的变形行为,得到了在介观尺度上奥氏体的微观应力应变和变形储存能分布。
5)  crystal slip
晶体滑移
1.
Under the framework of crystal slip theory,a θ model that can describe the anisotropic creep of Ni-base single crystal(SC) alloy was built by the θ mapping method to the crystal directional problem of Ni-base single crystal turbine bladecreep.
针对镍基单晶涡轮叶片蠕变的晶体方向性问题,运用θ映射法,在晶体滑移理论框架下,建立了能够描述镍基单晶合金各向异性蠕变的θ模型。
6)  finite crystals
有限晶体
补充资料:晶体中的元激发(见固体中的元激发)


晶体中的元激发(见固体中的元激发)
elementary excitation in crystal

  晶体中的元激发eleme讯ary excitation Incrvstal见固体中的元激发。
  
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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