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首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Effects of stress state and fine fraction on stress transmission in internally unstable granular mixtures investigated via discrete element method
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Effects of stress state and fine fraction on stress transmission in internally unstable granular mixtures investigated via discrete element method

机译:应力状态和细分分数对通过离散元件研究的核心不稳定粒状混合物中应力传递的影响

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摘要

Low effective stress in the fine fraction of internally unstable materials is the key mechanism leading to the internal instability. In the present study, the effects of stress state and fine fraction on the stress transmission in gap-graded internally unstable granular mixtures are investigated at microscale by discrete element method. It is found that the fine fraction plays a more dominant role than the stress state of soil in the stress transmission. The sensitive range of fine fraction with respect to number of contact (25-35%) is relatively lower than that of contact force (30-40%). The influence of stress state is only significant within a specific range of fine fraction, and the contributions of isotropic pressure and stress ratio to stress state influence are different. The internally unstable materials with an interactive-overfilled load-bearing fabric could switch to internally stable by increasing the isotropic pressure. The influence of stress ratio is associated with the magnitude of isotropic pressure. (C) 2020 Elsevier B.V. All rights reserved.
机译:在内部不稳定材料的精细分数中低有效应力是导致内部不稳定性的关键机制。在本研究中,通过离尺寸通过分立元件法在微观尺寸下研究了应力状态和细部分对间隙梯度内部不稳定粒状混合物中的应力传递的影响。发现细部分比应力传播中土壤的应力状态发挥更大的作用。相对于接触数(25-35%)的细级分的敏感范围比接触力(30-40%)相对低。应力状态的影响仅在特定的细部分范围内显着,并且各向同性压力和应力比与应力状态影响的贡献不同。通过增加各向同性压力,具有交互式承载织物的内部不稳定材料可以通过增加各向同性的压力来切换到内部稳定。应力比的影响与各向同性压力的大小相关。 (c)2020 Elsevier B.V.保留所有权利。

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