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首页> 外文期刊>Journal of Computational Science and Technology >Anisotropy Behavior of Dislocation Nucleation from a Sharp Corner in Copper
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Anisotropy Behavior of Dislocation Nucleation from a Sharp Corner in Copper

机译:铜尖角位错成核的各向异性行为

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References(25) Cited-By(1) By means of reaction pathway analysis, we have investigated the nucleation of 90° and 30° partial dislocation from a sharp corner in an f.c.c. crystal copper. The anisotropy aspects of dislocation nucleation revealed by the results have shown that the stress-dependent activation energy of 30° partial dislocation is approximately twice over the counterpart of 90° partial dislocation, and that the maximum inelastic displacement for the former is also higher. Moreover, the shape of the saddle-point configuration of 30° partial dislocation is similar to a half-ellipse whereas in the case of 90° partial dislocation it is more like a semi-circle, reflecting the different Peierls barriers influenced by the Burgers vectors. Further study of the surface reconstruction demonstrates that although the nucleation of 30° partial dislocation has been enhanced by surface reduction, it is still more energy-unfavorable than the 90° partial dislocation. These results suggest that the higher Peierls barrier is responsible for the larger activation energy of 30° partial dislocation nucleation.
机译:参考文献(25)被引用的By(1)通过反应途径分析,我们研究了f.c.c.中一个锐角的90°和30°部分位错的形核。水晶铜。结果揭示的位错成核的各向异性方面表明,应力相关的30°部分位错的活化能大约是90°部分位错对应物的两倍,并且前者的最大非弹性位移也更高。此外,30°局部位错的鞍点构型的形状类似于半椭圆形,而在90°局部位错的情况下,它更像一个半圆形,反映了受Burgers向量影响的不同Peierls势垒。表面重建的进一步研究表明,尽管通过表面还原增强了30°部分位错的形核,但它仍然比90°部分位错的能量不利。这些结果表明,较高的Peierls势垒负责30°部分位错成核的较大活化能。

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