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首页> 外文期刊>International journal of geomechanics >Micromechanical Particle Interactions in Railway Ballast through DEM Simulations of Direct Shear Tests
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Micromechanical Particle Interactions in Railway Ballast through DEM Simulations of Direct Shear Tests

机译:通过直接剪切试验的DEM模拟在铁路道ast中的微机械颗粒相互作用

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Particle shape properties can significantly affect the load response behavior and field performance of the uniformly graded ballast layer in railway track structures. Particle contact and the related micromechanical behavior of the unbound aggregate ballast layer assembly influenced by the particle shape properties have not yet been thoroughly investigated. In this study, an aggregate imaging and particle shapeanalysis approach based on computer vision technology was introduced to calculate aggregate morphological indices and construct polyhedral discrete elements with shapes close to realistic ballast aggregate particles. A model of direct shear test on railway ballast based on the discreteelement method (DEM) was developed using generated nonbreakable discrete elements as individual ballast particles and validated by closely matching the predicted shear stress-strain behavior with laboratory test results. The DEM model simulation predictions were then used to investigate the relations between microscale interactions of individual ballast particles, particle size effects in relation to shear box test equipment dimensions, and macroscale behavior trends of the aggregate assemblies. Stronger particle interactions and higher coordination numbers were observed as the imaging-based angularity index (AI) and flat and elongated (F& E) ratio increased. Furthermore, limiting individual particle movement was shown to increase strength and provide greater resistance to failure and deformation. (c) 2019 American Society of Civil Engineers.
机译:颗粒形状特性会显着影响铁路轨道结构中均等梯度压载层的荷载响应行为和现场性能。尚未完全研究受颗粒形状特性影响的未结合骨料镇流器层组件的颗粒接触和相关的微机械行为。在这项研究中,引入了基于计算机视觉技术的聚集体成像和颗粒形状分析方法,以计算聚集体形态指标并构造形状接近于现实压载聚集体颗粒的多面体离散元素。以离散元法(DEM)为基础,建立了基于离散元法(DEM)的铁路道ast直接剪切试验模型,并通过将预测的剪切应力-应变行为与实验室测试结果紧密匹配进行了验证。然后使用DEM模型模拟预测来研究单个压载颗粒的微观相互作用,与剪切箱测试设备尺寸有关的粒径影响以及集料组件的宏观行为趋势之间的关系。随着基于成像的角度指数(AI)以及平坦和拉长(F&E)比的增加,观察到更强的粒子相互作用和更高的配位数。此外,限制单个粒子的移动已显示出可以增加强度并提供更大的抗破坏和变形能力。 (c)2019美国土木工程师学会。

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