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金属矿山 ›› 2020, Vol. 49 ›› Issue (06): 142-149.

• 采矿工程 • 上一篇    下一篇

裂纹几何配置对裂隙砂岩力学特性及破坏模式的影响

田茂祥 1 雷瑞德 2 张 亮 3 陈小平 1 王 丰 1   

  1. 1. 重庆市市政设计研究院,重庆 400020;2. 重庆大学资源与安全学院,重庆 400044; 3. 重庆大学土木工程学院,重庆 400045
  • 出版日期:2020-06-15 发布日期:2020-06-23
  • 基金资助:

    重庆市研究生科研创新项目(编号:CYB19015)

Effect of Flaw Geometric Configurations on Mechanical Properties and Failure Modes of Cracked Sandstone

Tian Maoxiang1 Lei Ruide2 Zhang Liang3 Chen Xiaoping1 Wang Feng1   

  1. 1. Chongqing Municipal Research Institute of Design,Chongqing 400020,China;2. School of Resources and Safety Engineering,Chongqing University,Chongqing 400044,China;3. School of Civil Engineering,Chongqing University, Chongqing 400045,China
  • Online:2020-06-15 Published:2020-06-23

摘要: 天然岩体常常包含不连续体,比如孔隙、裂隙、断裂以及其他缺陷等,这些缺陷的存在将导致岩体力学强度产生较大的劣化作用。为了研究不同裂纹几何配置对裂隙砂岩力学特性、裂纹扩展演化及断裂机制的影响,基于室内砂岩力学参数测试结果,借助颗粒流平行黏结模型对预制裂隙试样进行一系列的模拟研究。结果表明:当裂隙倾角恒定时,随着岩桥角度的增加,砂岩峰值应力与峰值应变呈现出先降低后增加的趋势;当岩桥角度恒定时,峰值应力与峰值应变随着裂隙倾角的增加而增加。初始裂纹从预制裂隙尖端萌生,起裂应力水平为 0.68σ c;累积微裂纹数呈指数函数形式增加;试样破坏形式主要有拉伸破坏、剪切破坏及拉剪混合破坏;岩桥贯通模式主要有间接贯通和直接贯通两类。

关键词: 预制裂隙, 裂纹扩展, PFC2D , 平行黏结模型 , 应变能

Abstract: Natural rock masses often contain discontinuities,such as pores,fissures,fractures and other defects. The existence of these defects can greatly degrade the mechanical strength of rock. In order to study the effects of different crack geometries on the mechanical properties,crack propagation and fracture evolution mechanisms of fractured sandstone,based on the test results of mechanical parameters of sandstone in laboratory,a series of simulation studies on the fissured samples were carried out by means of the particle flow parallel bonding model firstly. The results show that when the flaw inclination angle is constant,the peak stress and peak strain of sandstone decrease first and then increase with the increase of ligament angle. When the ligament angle is constant,the peak stress and peak strain increase with the increase of flaw inclination angle. The initial crack originates from the pre-existing crack tip and the cracking stress level is 0.68σc. The cumulative microcracks of sandstone increase exponentially with the increase of axial strain. The failure mode of the specimen mainly includes tensile failure,shear failure and tensile-shear mixture failure. The coalescence mode of the ligament mainly includes direct coalescence and indirect coalescence.

Key words: Pre-existing flaw, Crack propagation, PFC2D, Parallel bonded model, Strain energy