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首页> 外文期刊>International Journal of Plasticity >Collective evolution dynamics of multiple shear bands in bulk metallic glasses
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Collective evolution dynamics of multiple shear bands in bulk metallic glasses

机译:大块金属玻璃中多个剪切带的集体演化动力学

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摘要

The collective behavior of multiple shear bands was investigated under in situ four-point bending tests of a Zr-based bulk metallic glass (BMG) over a wide range of sample scales. The self-organization of shear band pattern, characterized by shear band spacing and shear offset, is observed with the variation of sample size and bend curvature, which presents significant size effect and tension-compression asymmetry. To unveil these fundamental behaviors, an analytical model for the evolution dynamics of multiple shear banding is developed for BMGs. In this model, both micro-structural evolution and pressure sensitivity are taken into account by introducing a new law for the stress softening of BMGs within the framework of continuum mechanics; the collective evolution of shear bands is regarded as the coupling result of the structural softening, the momentum diffusion, and the energy conservation. Applying the proposed theoretical model to the bending deformation of BMGs, the analytical solutions of shear band spacing, shear offset and failure strain are obtained. The fundamental behaviors of multiple shear bands are uncovered, in line with the experimental observations: notable scaling laws are found in the evolution of shear band spacing and shear offset, and the inhomogeneous size effect of plasticity is revealed by a transition from weak to strong size-dependence of failure strain with decreasing sample thickness. To be further, a competing map of shear band nucleation and propagation is established based on energy dissipation. The underlying mechanism of these size dependent behaviors of multiple shear bands in BMGs is found to be ascribed to the energy dissipation competition between the nucleation and propagation of shear bands.
机译:在基于Zr的块状金属玻璃(BMG)的原位四点弯曲测试下,在多个样本范围内研究了多个剪切带的集体行为。随着样品尺寸和弯曲曲率的变化,观察到剪切带模式的自组织,其具有剪切带间距和剪切偏移,这表现出显着的尺寸效应和拉伸-压缩不对称性。为了揭示这些基本行为,针对BMG开发了用于多剪切带的演化动力学的分析模型。在该模型中,通过引入连续力学力学框架内BMG应力软化的新规律,同时考虑了微结构的演化和压力敏感性。剪切带的集体演化被认为是结构软化,动量扩散和能量守恒的耦合结果。将所提出的理论模型应用于BMG的弯曲变形,得到了剪切带间距,剪切偏移和破坏应变的解析解。揭示了多个剪切带的基本行为,与实验观察结果一致:在剪切带间距和剪切偏移的演变过程中发现了显着的比例定律,并且从弱尺寸到强尺寸的转变揭示了塑性的不均匀尺寸效应。 -破坏应变与样品厚度减小的关系。进一步地,基于能量耗散建立了剪切带成核和传播的竞争图。发现BMG中多个剪切带的这些尺寸相关行为的潜在机理归因于剪切带成核与传播之间的能量消耗竞争。

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