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Softening-induced plastic flow instability and indentation size effect in metallic glass

机译:金属玻璃中软化引起的塑性流动不稳定性和压痕尺寸效应

摘要

Despite the absence of microstructural features, metallic glasses (MGs) could display size-dependent hardness at the submicron scale. While most early studies attributed this size effect to Weibull statistics, here we propose a mechanism related to shear softening induced flow instability that can give rise to a deterministic indentation size effect in MGs. In line with this mechanism, an explicit relation is derived linking the size dependency of hardness to a critical length scale that governs the transition from a stable to unstable plastic flow in MGs. Through a series of carefully designed spherical indentation tests, this mechanism is experimentally justified, from which we are able to extract the critical transition length for a Zr-based MG at different indentation strain rates. On the basis of the combined theoretical/experimental efforts, our current work provides a quantitative insight into the indentation size effect in MGs.
机译:尽管没有微观结构特征,金属玻璃(MGs)仍可以显示亚微米级的尺寸依赖性硬度。尽管大多数早期研究将这种尺寸效应归因于威布尔统计,但在此我们提出了一种与剪切软化引起的流动不稳定性有关的机制,该机制可能导致MG中确定性的压痕尺寸效应。按照这种机制,可以得出明确的关系,将硬度的尺寸依赖性与临界长度尺度相关联,该尺度决定了MG中从稳定的塑性流动到不稳定的塑性流动的过渡。通过一系列精心设计的球形压痕测试,该机理在实验上是合理的,从中我们可以提取出基于Zr的MG在不同压痕应变速率下的临界转变长度。在理论/实验相结合的基础上,我们目前的工作对MG的压痕尺寸效应提供了定量的见解。

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