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Localized crystallization in shear bands of a metallic glass

机译:金属玻璃剪切带中的局部结晶

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摘要

Stress-induced viscous flow is the characteristic of atomic movements during plastic deformation of metallic glasses in the absence of substantial temperature increase, which suggests that stress state plays an important role in mechanically induced crystallization in a metallic glass. However, it is poorly understood. Here, we report on the stress-induced localized crystallization in individual shear bands of Zr60Al15Ni25 metallic glass subjected to cold rolling. We find that crystallization in individual shear bands preferentially occurs in the regions neighboring the amorphous matrix, where the materials are subjected to compressive stresses demonstrated by our finite element simulations. Our results provide direct evidence that the mechanically induced crystallization kinetics is closely related with the stress state. The crystallization kinetics under compressive and tensile stresses are interpreted within the frameworks of potential energy landscape and classical nucleation theory, which reduces the role of stress state in mechanically induced crystallization in a metallic glass.
机译:应力诱导的粘滞流动是在没有大幅提高温度的情况下金属玻璃塑性变形过程中原子运动的特征,这表明应力状态在金属玻璃的机械诱导结晶中起着重要作用。但是,对此知之甚少。在这里,我们报道了Zr60Al15Ni25金属玻璃在冷轧过程中各个剪切带中的应力诱导局部结晶。我们发现,单个剪切带中的结晶优先发生在非晶基体附近的区域,在该区域中材料受到压缩应力,这由我们的有限元模拟证明。我们的结果提供了直接的证据,表明机械诱导的结晶动力学与应力状态密切相关。在势能场和经典成核理论的框架内解释了压缩应力和拉伸应力下的结晶动力学,这降低了应力状态在金属玻璃中机械诱导的结晶中的作用。

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