【2h】

Nucleation of shear bands in amorphous alloys

机译:非晶态合金中剪切带的形核

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摘要

The initiation and propagation of shear bands is an important mode of localized inhomogeneous deformation that occurs in a wide range of materials. In metallic glasses, shear band development is considered to center on a structural heterogeneity, a shear transformation zone that evolves into a rapidly propagating shear band under a shear stress above a threshold. Deformation by shear bands is a nucleation-controlled process, but the initiation process is unclear. Here we use nanoindentation to probe shear band nucleation during loading by measuring the first pop-in event in the load–depth curve which is demonstrated to be associated with shear band formation. We analyze a large number of independent measurements on four different bulk metallic glasses (BMGs) alloys and reveal the operation of a bimodal distribution of the first pop-in loads that are associated with different shear band nucleation sites that operate at different stress levels below the glass transition temperature, Tg. The nucleation kinetics, the nucleation barriers, and the density for each site type have been determined. The discovery of multiple shear band nucleation sites challenges the current view of nucleation at a single type of site and offers opportunities for controlling the ductility of BMG alloys.
机译:剪切带的产生和传播是在多种材料中发生的局部不均匀变形的重要模式。在金属玻璃中,剪切带的发展被认为以结构的异质性为中心,在高于阈值的剪切应力作用下,剪切转变区演变为快速传播的剪切带。剪切带引起的形变是成核控制的过程,但起爆过程尚不清楚。在这里,我们使用纳米压痕通过测量载荷-深度曲线中的第一个弹入事件来探测加载过程中的剪切带形核,该事件被证明与剪切带的形成有关。我们分析了四种不同的块状金属玻璃(BMG)合金的大量独立测量结果,并揭示了与不同剪切带成核点相关联的第一弹入载荷的双峰分布的操作,这些剪切带成核点在低于此的不同应力水平下运行。玻璃化转变温度,Tg。已经确定了每种位点类型的成核动力学,成核屏障和密度。多个剪切带成核位点的发现挑战了当前单一类型位点成核的观点,并为控制BMG合金的延展性提供了机会。

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