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ANALYSIS OF CRUSHING OF GRANULAR MATERIAL UNDER ISOTROPIC AND BIAXIAL STRESS CONDITIONS

机译:各向同性和双轴应力条件下颗粒材料的破碎分析

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摘要

Granular materials forming part of natural slopes, embankments, subgrades of foundations and pavement structures are subjected to both static and dynamic loads during their engineering lives. As a result of these loads, particle crushing occurs. The present study focuses on the evolution of crushing in a simulated granular material subjected to different combinations of biaxial stresses. It was found that the Discrete Element Method (DEM) can be used to visualize and understand the evolution of crushing experienced by a granular material under these conditions. Even though DEM does not normally consider particle breakage, it is possible to simulate crushing by replacing one particle that has failed in tension with a combination of many particles of different sizes. The results from the developed simulations indicated that the samples tended to achieve a fractal distribution of particle sizes, although at the end of the simulations these distributions were still being dominated by the size of the original particles. Changes in other properties of the simulated granular material such as the void ratio and the shear strength were also recorded and analyzed. It was found that the internal friction angle decreased as a result of particle crushing.
机译:构成自然边坡,路堤,地基和人行道结构的路基的一部分的颗粒材料在其工程寿命期间会承受静态和动态载荷。这些载荷的结果是发生了颗粒破碎。本研究的重点是承受双轴应力不同组合的模拟颗粒材料中压碎的演变。已经发现,离散元素方法(DEM)可用于可视化和理解在这些条件下颗粒材料经历的破碎过程。即使DEM通常不考虑颗粒破裂,也可以通过将许多拉伸失败的颗粒替换为许多不同大小的颗粒来模拟破碎。发达模拟的结果表明,样品趋向于实现颗粒尺寸的分形分布,尽管在模拟结束时,这些分布仍受原始颗粒尺寸的支配。还记录并分析了模拟颗粒材料的其他性能的变化,例如空隙率和剪切强度。发现由于颗粒破碎,内摩擦角减小。

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