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Shear-banding Induced Indentation Size Effect in Metallic Glasses

机译:剪切带引起的金属玻璃压痕尺寸效应

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Shear-banding is commonly regarded as the "plasticity carrier" of metallic glasses (MGs), which usually causes severe strain localization and catastrophic failure if unhindered. However, through the use of the high-throughput dynamic nanoindentation technique, here we reveal that nano-scale shear-banding in different MGs evolves from a "distributed" fashion to a "localized" mode when the resultant plastic flow extends over a critical length scale. Consequently, a pronounced indentation size effect arises from the distributed shear-banding but vanishes when shear-banding becomes localized. Based on the critical length scales obtained for a variety of MGs, we unveil an intrinsic interplay between elasticity and fragility that governs the nanoscale plasticity transition in MGs. Our current findings provide a quantitative insight into the indentation size effect and transition mechanisms of nano-scale plasticity in MGs.
机译:剪切带通常被视为金属玻璃(MGs)的“可塑性载体”,如果不受阻碍,通常会导致严重的应变局部化和灾难性破坏。但是,通过使用高通量动态纳米压痕技术,我们发现,当合成塑料流超过临界长度时,不同MG中的纳米级剪切带从“分布”方式演变为“局部”方式。规模。因此,明显的压痕尺寸效应由分布的剪切带引起,但是当剪切带局部化时消失。基于从各种MG获得的临界长度尺度,我们揭示了弹性和脆性之间的内在相互作用,它控制着MG的纳米级可塑性转变。我们当前的发现提供了对压痕尺寸效应和MGs纳米级可塑性转变机制的定量见解。

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