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First-principles study on the mechanical properties of interstitial solid solution Aluminum-Boron alloy

机译:第一原理研究水溶液铝 - 硼合金的力学性能

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摘要

The sputtering Al-B alloy film exhibits a unique growth structure and a high strengthening efficiency. In this study, the first-principles method was used to investigate the effect of addition B element on the mechanical properties of Al-B alloys, including the elastic properties, anisotropy, ideal shear strength, generalized stacking fault energy (GSFE), and dislocation core. Results indicate that the solid solution of B slightly decreases the elastic modulus of the alloy and decreases the ideal shear strength. Thus, the anisotropic tendency weakens, GSFE substantially increases, and the Peierls stress and Peierls barrier energy substantially increase. Therefore, the introduce of B has little effect on the intrinsic properties of the alloy, but the interstitial solid solution of B greatly increases the dislocation initiation energy, which limits the initiation and movement of dislocation, and has an important contribution to the strengthening effect.
机译:溅射Al-B合金膜具有独特的生长结构和高强化效率。 在本研究中,使用第一原理方法来研究添加B元素对Al-B合金的机械性能的影响,包括弹性性质,各向异性,理想的剪切强度,广义堆叠故障能量(GSFE)和错位 核。 结果表明,B的固溶体稍微降低合金的弹性模量,降低了理想的剪切强度。 因此,各向异性趋势削弱,GSFE基本上增加,PEIERLS应力和PEIERLS阻挡能量显着增加。 因此,B的引入对合金的内在性质影响不大,但B的间质固溶溶液大大增加了位错发起能量,这限制了错位的启动和运动,对增强效果具有重要贡献。

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