论文标题
双边界对身体中心钨纳米线的强度的影响
Effect of twin boundaries on the strength of body-centered cubic tungsten nanowires
论文作者
论文摘要
假定双边界(TBS)是脱位运动并增加金属强度的障碍。在这里,我们报告了异常现象,即TBS降低了以身体为中心(BCC)钨(W)的强度。 [1-11]通过化学蒸气沉积制造了带有(121)双平面和无位错的面向的W纳米线。在单晶和双纳米线上进行了透射电子显微镜内的原位拉伸测试。双纳米线的断裂强度为13.7 GPA,比单晶W纳米线(16.3 GPA)低16%。 TB的弱机制通过原子分辨率特征和原子模拟的结合揭示了。 Twinned W纳米线因在结核与表面的交点处的裂缝的早期成核而失败。在W中,通过错位/TB相互作用通过脱位/TB相互作用的标准加强机制在W中无法使用,因为高PEIERLS屏障和Winder脱位成核和GLIDE中的堆叠断层能量。这些发现为TBS对BCC金属机械性能的影响提供了新的见解。
Twin boundaries (TBs) are assumed to be obstacles to dislocation motion and increase the strength of metals. Here, we report the abnormal phenomenon that TBs reduce the strength of body-centered cubic (BCC) tungsten (W). [1-11]-oriented W nanowires with (121) twin planes and free of dislocations were fabricated by chemical vapor deposition. In situ tensile tests within the transmission electron microscope were performed on single-crystal and twinned W nanowires. The fracture strength of the twinned W nanowire was 13.7 GPa, 16% lower than that of the single-crystal W nanowire (16.3 GPa). The weakening mechanism of the TB was revealed by a combination of atomic-resolution characterizations and atomistic simulations. Twinned W nanowires failed by the early nucleation of a crack at the intersection of the TB with the surface. The standard strengthening mechanism by dislocation/TB interaction was not operative in W because the high Peierls barrier and stacking fault energy in W hinder dislocation nucleation and glide. These findings provide a new insight into the influence of TBs on the mechanical properties of BCC metals.