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Shear bands in dense metallic granular materials

机译:致密金属颗粒材料中的剪切带

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In this paper, the phenomenon of strain localization, i.e., shear banding, in densely distributed metallic assemblies has been studied. A discrete element methodology for analyzing metallic granular materials has been put forward. In this numerical model, elastoplastic contact, as well as friction, rolling resistance and cohesion between spheres, are explicitly taken into account. The calculations reveal that the shear banding mechanism in dense assemblies can be thought as an instability triggered by initial imperfections. Within a band, the motion, deformation and rearrangement of spheres soften the resistance of the aggregate, as these mechanisms create additional geometric imperfections. Additionally, the simulations showed that the shear-band width does not change conclusively with the friction, rolling resistance and plasticity parameters. However, cohesive strength, even in small amounts, drastically increased the shear-band width. Finally, the shear-band thickness and inclination angles are strongly dependent on the degree of initial imperfection. Whereas for a perfect assembly the shear band inclinations were consistently around 60°, more heterogeneous assemblies lead to shear band angles closer to the continuum mechanics solution, which is 45°. This was found to be in agreement with recent experimental observations.
机译:在本文中,已经研究了在密集分布的金属组件中的应变局部化现象,即剪切带。提出了一种用于分析金属颗粒材料的离散元方法。在此数值模型中,明确考虑了弹塑性接触以及球之间的摩擦,滚动阻力和内聚力。计算结果表明,致密组件中的剪切带机制可以认为是由初始缺陷引起的不稳定性。在一个带内,球体的运动,变形和重排会软化聚集体的阻力,因为这些机制会产生其他几何缺陷。此外,模拟结果表明,剪切带宽度不会随摩擦,滚动阻力和塑性参数的变化而最终改变。然而,即使少量,内聚强度也极大地增加了剪切带的宽度。最后,剪切带的厚度和倾斜角度很大程度上取决于初始缺陷的程度。对于完美的组装,剪切带的倾斜度始终保持在60°左右,而更多种的非均质组件会导致剪切带的角度更接近连续力学解,即45°。发现这与最近的实验观察一致。

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