中国物理B ›› 2005, Vol. 14 ›› Issue (9): 1862-1865.doi: 10.1088/1009-1963/14/9/031

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Dependence of stresses on grain orientations in BCC polycrystalline films on substrates

张建民1, 张研1, 徐可为2   

  1. (1)College of Physics and Information Technology, Shaanxi Normal University, Xian 710062, China; (2)State Key Laboratory for Mechanical Behavior of Materials,Xian Jiaotong University,Xian 710049,China
  • 收稿日期:2004-12-03 修回日期:2005-05-25 出版日期:2005-09-20 发布日期:2005-09-20
  • 基金资助:
    Project supported by the State Key Development Programme for Basic Research of China (Grant No 2004CB619302), and the National Natural Science Foundation of China (Grant No 50271038).

Dependence of stresses on grain orientations in BCC polycrystalline films on substrates

Zhang Jian-Min (张建民)a, Zhang Yan (张研)a, Xu Ke-Wei (徐可为)b   

  1. a College of Physics and Information Technology, Shaanxi Normal University, Xian 710062, China; b State Key Laboratory for Mechanical Behavior of Materials,Xian Jiaotong University, Xian 710049, China
  • Received:2004-12-03 Revised:2005-05-25 Online:2005-09-20 Published:2005-09-20
  • Supported by:
    Project supported by the State Key Development Programme for Basic Research of China (Grant No 2004CB619302), and the National Natural Science Foundation of China (Grant No 50271038).

摘要: Most thin films have different thermal expansion coefficients from their substrates, thus thermal stresses will be introduced into the films when the temperature is changed during annealing and service. Calculations of these stresses for grains in various crystallographic orientations have been made for seven BCC transition metals Cr, Fe, Mo, Nb, Ta, V and W. Neglecting W, which is isotropic and the stresses are equiaxial and without grain orientation (hkl) dependence, the BCC metals may be grouped into two classes. In the first class (Cr, Mo, Nb and V), the (100)-oriented grains have the largest stresses, while the stresses \sigma _1 and \sigma _2 in other (hkl)-oriented grains decrease linearly with the increase of the angle between (hkl) and (100), and with \sigma _1 < \sigma _2 except in (100)- and (111)-oriented grains. In the second class (Fe and Ta), on the contrary, the (100)-oriented grains have the lowest stresses, and the stresses \sigma _1 and \sigma _2 in other (hkl)-oriented grains increase linearly with the increase of the angle between (hkl) and (100), and with \sigma _1 > \sigma _2 except in (100)- and (111)-oriented grains.

关键词: BCC metals, stresses, grain orientations, calculation

Abstract: Most thin films have different thermal expansion coefficients from their substrates, thus thermal stresses will be introduced into the films when the temperature is changed during annealing and service. Calculations of these stresses for grains in various crystallographic orientations have been made for seven BCC transition metals Cr, Fe, Mo, Nb, Ta, V and W. Neglecting W, which is isotropic and the stresses are equiaxial and without grain orientation (hkl) dependence, the BCC metals may be grouped into two classes. In the first class (Cr, Mo, Nb and V), the (100)-oriented grains have the largest stresses, while the stresses $\sigma _1$  and $\sigma _2$  in other (hkl)-oriented grains decrease linearly with the increase of the angle between (hkl) and (100), and with $\sigma _1 < \sigma _2$  except in (100)- and (111)-oriented grains. In the second class (Fe and Ta), on the contrary, the (100)-oriented grains have the lowest stresses, and the stresses $\sigma _1$  and $\sigma _2$  in other (hkl)-oriented grains increase linearly with the increase of the angle between (hkl) and (100), and with $\sigma _1 > \sigma _2$  except in (100)- and (111)-oriented grains.

Key words: BCC metals, stresses, grain orientations, calculation

中图分类号:  (Mechanical and acoustical properties)

  • 68.60.Bs
62.20.D- (Elasticity) 81.40.Jj (Elasticity and anelasticity, stress-strain relations) 68.55.-a (Thin film structure and morphology)