首页> 外文期刊>Modern Physics Letters, B. Condensed Matter Physics, Statistical Physics, Applied Physics >Effects of boron on the mechanical properties of the TiAl-Ti3Al alloy: A first-principles investigation
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Effects of boron on the mechanical properties of the TiAl-Ti3Al alloy: A first-principles investigation

机译:硼对TiAl-Ti3al合金机械性能的影响:一种初原原则调查

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Employing a first-principles method in combination with the empirical criterions, we have investigated the site preference of boron (B) and its effect on the mechanical properties of the binary-phase TiAl-Ti3Al alloy. It is found that B energetically prefers to occupy the Ti-rich octahedral interstitial site, because B is more favorable to bond with Ti in comparison with Al. The occupancy tendency of B in the TiAl-Ti3Al alloy is the TiAl/Ti3Al interface > Ti3Al > TiAl, thus B tends to segregate into the binary-phase interface in the TiAl-Ti3Al alloy. The charge density difference shows that B at the TiAl-Ti3Al interface will form strong B Ti bonds and weak B Al bonds, leading to the significant increasing of the cleavage energy (gamma(cl)) and the unstable stacking fault energy (gamma(us)). This indicates that the presence of B will strengthen the TiAl/Ti3Al interface, but block its mobility. Further, the ratio of gamma(cl)/gamma(us) of the B-doped system is 4.63%, 8.19% lower than that of the clean system. Based on the empirical criterions, B will have a negative effect on the ductility of the TiAl-Ti3Al alloy.
机译:采用第一原理方法与经验标准组合,我们研究了硼(B)的位点偏好及其对二进制相Tial-Ti3Al合金的机械性能的影响。结果发现,B活泼更喜欢占据Ti富含八面体间质性的位点,因为与AL相比,B更有利地与TI键合。在TiAl-Ti3Al合金中B的占用趋势是TiAl / Ti3Al界面> Ti3Al> Tial,因此B倾向于分离在TiAl-Ti3al合金中的二进制相界面中。电荷密度差异表明,TiAl-Ti 3Al界面处的B将形成强的B Ti键和弱B Al键,导致切割能量(γ(CL))和不稳定的堆叠故障能量(γ(美国)的显着增加)))。这表明B的存在将加强TiAl / Ti3al界面,但阻止其移动性。此外,B掺杂系统的γ(CL)/γ(US)的比例为4.63%,低于清洁系统的比例为4.63%,8.19%。基于经验标准,B将对TiAl-Ti3al合金的延展性产生负面影响。

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