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Dynamic mechanical properties and mesostructure evolution of granular materials subjected to cyclic loading

机译:循环加载颗粒材料的动态力学性能和培养基

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摘要

In this study, a series of biaxial undrained tests of granular materials subjected to cyclic loading were conducted using the discrete element method to investigate the mesostructure evolution from the perspective of a complex network. The mesoscopic parameters, including the average degree, clustering coefficient, and average shortest path length, were used to illustrate the mesostructure evolution of assemblies upon cyclic loading. The results showed that the macroproperties of granular materials have a close relationship with the mesostructure evolution. The amplitude of the axial strain and the pore-water pressure gradually increased with an increase in the number of cycles, whereas the average degree and clustering coefficient decreased. In addition, the amplitude of the average shortest path length varied more drastically. The mesomechanism for the process could be described as follows. In the sample, as the number of contacts and ability to transmit contact force both decreased, the contact network of the assembly became looser and the strength decreased. A larger amplitude for the axial stress led to quicker changes in the pore-water pressure, strain, and mesoscopic parameters. When the value of the normal contact force was regarded as a weight, it was found that the weighted average degree had an approximately linear positive correlation with the mean effective stress. The evolution of the deformation and pore-water pressure could be explored from the mesoscopic viewpoint using the mean weighted ratio of connected triads.
机译:在该研究中,使用离散元件方法进行一系列经过循环载荷的粒状材料的双轴不适用于进行循环载荷的粒状材料,以从复合网络的角度调查Mesostucture演化。使用平均度,聚类系数和平均最短路径长度的介观参数用于说明在循环载荷时组件的腹部结构演变。结果表明,颗粒材料的宏相催化与腹部结构的进化密切相关。随着循环次数的增加,轴向应变和孔隙水压力的幅度逐渐增加,而平均程度和聚类系数减小。另外,平均最短路径长度的幅度更大地变化。该过程的Mesom机制可以描述如下。在样品中,随着触点的数量和传递接触力的能力均减小,组件的接触网络变得松动,强度降低。轴向应力的较大幅度导致孔隙水压力,应变和介观参数的变化更快。当正常接触力的值被视为重量时,发现加权平均度与平均有效应力有大致线性的正相关。使用连接三合会的平均加权比,可以从介术视点探索变形和孔隙水压力的演变。

著录项

  • 来源
    《Granular matter》 |2020年第3期|70.1-70.20|共20页
  • 作者单位

    Sichuan Univ Coll Water Resources & Hydropower State Key Lab Hydraul & Mt River Engn Chengdu 610065 Peoples R China;

    Sichuan Univ Coll Water Resources & Hydropower State Key Lab Hydraul & Mt River Engn Chengdu 610065 Peoples R China|Chinese Acad Sci Northwest Inst Ecoenvironm & Resources State Key Lab Frozen Soil Engn Lanzhou 730000 Peoples R China;

    Sichuan Univ Coll Water Resources & Hydropower State Key Lab Hydraul & Mt River Engn Chengdu 610065 Peoples R China;

    Sichuan Univ Coll Water Resources & Hydropower State Key Lab Hydraul & Mt River Engn Chengdu 610065 Peoples R China;

    Sichuan Univ Coll Water Resources & Hydropower State Key Lab Hydraul & Mt River Engn Chengdu 610065 Peoples R China;

    Sichuan Univ Coll Water Resources & Hydropower State Key Lab Hydraul & Mt River Engn Chengdu 610065 Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Cyclic loading; Complex network; Granular materials; Mesostructure; Dynamic strength;

    机译:循环加载;复杂网络;颗粒状物质;腹部结构;动态强度;
  • 入库时间 2022-08-18 21:11:17

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