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首页> 外文期刊>International journal of geomechanics >DEM Study on Particle Shape Evolution during Crushing of Granular Materials
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DEM Study on Particle Shape Evolution during Crushing of Granular Materials

机译:粒状粉碎过程中粒子形状演化研究

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Discrete element method (DEM) is widely used to simulate particle crushing, and the simulation results are further utilized for devising constitutive models for soils and rocks. However, particle shape evolution during the process of crushing is often neglected for brevity. In this study, one-dimensional (1D) compression on crushable granular materials is simulated using two-dimensional (2D) DEM to identify the specific role of evolving fragment shape during particle crushing on the macroscopic response. Two different particle crushing approaches are adopted here. In the first approach, grain crushing is mimicked by substituting parent particles with smaller particles once a breakage criterion is attained. In the second approach, a bonded agglomerate consisting of smaller particles is used instead of an intact particle, which breaks once the bond strength exceeds. The simulation results show that despite an equal amount of particle crushing at any given strain level, the axial stress-strain responses are different in the two approaches. On the other hand, the evolution of contact fabric anisotropy reduces, which increases the lateral stress. Further, the effect of particle shape on the limit compression response is also studied. The study finally proposes an exponential relationship between particle breakage and particle shape indicator during the comminution process.
机译:离散元素法(DEM)广泛用于模拟粒子破碎,并且仿真结果进一步用于设计土壤和岩石的本构模型。然而,在破碎过程中的颗粒形状演变通常被忽略了简洁。在该研究中,使用二维(2D)DEM模拟抗铠粒状材料上的一维(1D)压缩,以识别在宏观反应上的颗粒压碎过程中演化片段形状的具体作用。这里采用了两种不同的粒子破碎方法。在第一种方法中,一旦达到破损标准,通过将父母颗粒用较小的颗粒代替具有较小颗粒的颗粒来模仿晶粒碎。在第二种方法中,使用由较小的颗粒组成的键合的附聚物代替完整的颗粒,这是一旦粘合强度超过颗粒。仿真结果表明,尽管在任何给定的应变水平处存在相同的颗粒压碎,但在两种方法中轴向应力 - 应变响应是不同的。另一方面,接触面织物的进化是减少的,这增加了横向应力。此外,还研究了颗粒形状对极限压缩响应的影响。该研究最终提出了粉碎过程中颗粒破损和颗粒形状指示器之间的指数关系。

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