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Dislocation energy and calculation from Peierls stress: a rigorous the lattice theory 被引量:5

Dislocation energy and calculation from Peierls stress: a rigorous the lattice theory
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摘要 In the classical Peierls-Nabarro (P-N) theory of dislocation, there is a long-standing contradiction that the stable configuration of dislocation has maximum energy rather than minimum energy. In this paper, the dislocation energy is calculated rigorously in the context of the full lattice theory. It is found that besides the misfit energy considered in the classical P-N theory, there is an extra elastic strain energy that is also associated with the discreteness of lattice. The contradiction can be automatically removed provided that the elastic strain energy associated with the discreteness is taken into account. This elastic strain energy is very important because its magnitude is larger than the misfit energy, its sign is opposite to the misfit energy. Since the elastic strain energy and misfit energy associated with discreteness cancel each other, and the width of dislocation becomes wide in the lattice theory, the Peierls energy, which measures the height of the effective potential barrier, becomes much smaller than that given in the classical P-N theory. The results calculated here agree with experimental data. Furthermore, based on the results obtained, a useful formula of the Peierls stress is proposed to fully include the discreteness effects. In the classical Peierls-Nabarro (P-N) theory of dislocation, there is a long-standing contradiction that the stable configuration of dislocation has maximum energy rather than minimum energy. In this paper, the dislocation energy is calculated rigorously in the context of the full lattice theory. It is found that besides the misfit energy considered in the classical P-N theory, there is an extra elastic strain energy that is also associated with the discreteness of lattice. The contradiction can be automatically removed provided that the elastic strain energy associated with the discreteness is taken into account. This elastic strain energy is very important because its magnitude is larger than the misfit energy, its sign is opposite to the misfit energy. Since the elastic strain energy and misfit energy associated with discreteness cancel each other, and the width of dislocation becomes wide in the lattice theory, the Peierls energy, which measures the height of the effective potential barrier, becomes much smaller than that given in the classical P-N theory. The results calculated here agree with experimental data. Furthermore, based on the results obtained, a useful formula of the Peierls stress is proposed to fully include the discreteness effects.
作者 王少峰
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2006年第6期1301-1309,共9页 中国物理B(英文版)
基金 Project supported by the National Natural Science Foundation of China (Grant No 10274057).
关键词 dislocation energy Peierls stress lattice theory dislocation energy, Peierls stress, lattice theory
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参考文献15

  • 1Peierls R E 1940 Proc. Phys. Soc. 52 23
  • 2Nabarro F R N 1947 Proc. Phys. Soc. 59 256
  • 3Nabarro F R N 1997 Mater. Sci. Engin. A 234-236 67
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  • 5Huntington H B 1955 Proc. Phys. Soc. B 68 1043
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  • 10Christian J W and Vitek V 1970 Rep. Prog. Phys. 33 307

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