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Discrete element modelling of cyclic loading of crushable aggreates

机译:碎石料循环荷载的离散元建模

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This paper examines the discrete element modelling of cyclic loading of an aggregate of crushable sand grains. Each grain of sand is modelled as an agglomerate of balls bonded together. The aggregate is subjected to compaction followed by isotropic normal (plastic) compression, and then unloaded to half the maximum applied stress. The aggregate is then subjected to cyclic loading to a maximum stress ratio of 0.8. The aim of the paper is to examine the reduction of the rate of axial strain with number of cycles, and to determine the relative influences of volumetric strain and shear strain rates on the axial strain rate. In particular, the paper aims to show whether particle breakage is mainly related to the accumulation of volumetric strain. This is found to be the case, which is consistent with proposals by other authors that plastic hardening under monotonic loading is due to particle fracture.
机译:本文研究了可破碎沙粒集合体的循环载荷的离散元模型。每个沙粒都建模为粘结在一起的球团。对骨料进行压实,然后进行各向同性的法向(塑性)压缩,然后卸载至最大施加应力的一半。然后,将骨料承受周期性载荷,使其最大应力比为0.8。本文的目的是研究轴向应变率随循环次数的减少,并确定体积应变和剪切应变率对轴向应变率的相对影响。特别是,本文旨在显示颗粒破裂是否主要与体积应变的累积有关。发现情况确实如此,这与其他作者的建议一致,即单调加载下的塑料硬化是由于颗粒破裂。

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