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On the origin of shear banding instability in metallic glasses

机译:金属玻璃中剪切带不稳定性的起源

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To uncover the physical origin of shear-banding instability in metallic glass (MG), a theoretical description of thermo-mechanical deformation of MG undergoing one-dimensional simple shearing is presented. The coupled thermo-mechanical model takes into account the momentum balance, the energy balance and the dynamics of free volume. The interplay between free-volume production and temperature increase being two potential causes for shear-banding instability is examined on the basis of the homogeneous solution. It is found that the free-volume production facilitates the sudden increase in the temperature before instability and vice versa. A rigorous linear perturbation analysis is used to examine the inhomogeneous deformation, during which the onset criteria and the internal length and time scales for three types of instabilities, namely free-volume softening, thermal softening and coupling softening, are clearly revealed. The shear-banding instability originating from sole free-volume softening takes place easier and faster than that due to sole thermal softening, and dominates in the coupling softening. Furthermore, the coupled thermo-mechanical shear-band analysis does show that an initial slight distribution of local free volume can incur significant strain localization, producing a shear band. During such a localization process, the local free-volume creation occurs indeed prior to the increase in local temperature, indicating that the former is the cause of shear localization, whereas the latter is its consequence. Finally, extension of the above model to include the shear-induced dilatation shows that such dilatation facilitates the shear instability in metallic glasses.
机译:为了揭示金属玻璃(MG)中剪切带不稳定性的物理原因,提出了对MG进行一维简单剪切的热机械变形的理论描述。热力学耦合模型考虑了动量平衡,能量平衡和自由体积的动力学。在均匀溶液的基础上,研究了自由体积生产和温度升高之间的相互作用,这是剪切带不稳定性的两个潜在原因。已经发现,大量生产有利于温度在不稳定之前突然升高,反之亦然。进行了严格的线性摄动分析,以检查不均匀变形,在此过程中,清晰显示了自由体积软化,热软化和耦合软化这三种类型的不稳定性的起始标准以及内部长度和时间尺度。与单独的热软化相比,源自单独的自由体积软化的剪切带不稳定性发生得更容易和更快,并且在耦合软化中占主导地位。此外,耦合的热机械剪切带分析的确表明,局部自由体积的初始轻微分布会引起明显的应变局部化,从而产生剪切带。在这样的局部化过程中,局部自由体积的产生确实在局部温度升高之前发生,这表明前者是剪切局部化的原因,而后者是剪切局部化的结果。最后,上述模型的扩展包括剪切引起的扩张表明,这种扩张有利于金属玻璃的剪切不稳定性。

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