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金属矿山 ›› 2026, Vol. 55 ›› Issue (4): 81-92.

• 采矿工程 • 上一篇    下一篇

平行裂隙复合岩石的力学特性及损伤破坏规律

丁王继1 折海成1,2 折海东3 刘思其1,4   

  1. 1. 长江大学城市建设学院,湖北 荆州 434023;2. 水利部水库大坝安全重点实验室,江苏 南京 210024;3. 普能控股煤业集团
    宏泰矿山工程建设大同有限公司,山西 大同 037003;4. 中铁七局集团第三工程有限公司,陕西 西安 710032
  • 出版日期:2026-04-15 发布日期:2026-05-08
  • 通讯作者: 折海成(1986—),男,副教授,博士。
  • 作者简介:丁王继(2001—),男,硕士研究生。
  • 基金资助:
    国家自然科学基金项目(编号:51974255);湖北省自然科学基金项目(编号:2024AFB878);水利部水库大坝安全重点实验室开放基金
    项目(编号:YK323003)。

Mechanical Properties and Damage Failure Law of Parallel Fracture Composite Rock

DING Wangji1 SHE Haicheng1,2 SHE Haidong3 LIU Siqi1,4   

  1. 1. School of Urban Construction,Yangtze University,Jingzhou 434023,China;2. Key Laboratory of Reservoir and Dam Safety Ministry
    of Water Resources,Nanjing 210024,China;3. Hongtai Mine Engineering Construction Datong Co. ,Ltd. ,Jinneng Holding Coal
    Industry Group,Datong 037003,China;4. The Third Engineering Co. ,Ltd. of China Railway Seventh Group,Xi′an 710032,China
  • Online:2026-04-15 Published:2026-05-08

摘要: 为探究裂隙复合岩体力学特性及破坏机制,通过室内力学试验与声发射、数字图像技术相结合方法,系
统研究不同裂隙构型下复合岩样的力学响应、裂纹扩展与损伤演化规律。结果表明:复合岩样的力学性质受砂岩主
导,但其峰值应力与弹性模量对裂隙的响应受控于局部岩性及裂隙空间构型。裂隙位置控制裂纹扩展路径:砂岩裂
隙诱发单翼蝶形破坏,中部裂隙诱发“Y”形破坏,灰岩裂隙诱发蝶形贯通破坏;裂隙倾角控制岩桥贯通模式,可分为3
种典型类型。声发射振铃计数特征受裂隙位置与倾角的共同影响,其首次峰值时间随倾角增大呈先降后升趋势,且
不同裂隙位置下的主导损伤阶段存在明显差异;张拉裂纹占比随倾角增大呈先减后增的变化规律。基于声发射能量
特征建立的损伤本构模型有效揭示岩样单轴受压下的损伤演化规律:初始压密阶段损伤发展缓慢,弹性变形阶段损
伤水平渐增,峰前破坏阶段损伤量剧增,峰后阶段损伤变量趋于稳定。研究成果揭示裂隙几何参数对复合岩体力学
行为与破坏模式的控制机制,为裂隙岩体工程稳定性评估提供理论依据。

关键词: 复合岩石 , 平行裂隙 , 力学特性 , 裂纹扩展 , 破坏模式 , 损伤演化

Abstract: In order to explore the mechanical properties and failure mechanism of fractured composite rock mass,the mechanical
response,crack propagation and damage evolution of composite rock samples under different fracture configurations
were systematically studied by combining indoor mechanical test with acoustic emission and digital image technology. The results
show that the mechanical properties of composite rock samples are dominated by sandstone,but the response of peak stress
and elastic modulus to fractures is controlled by local lithology and fracture spatial configuration. The crack position controls the
crack propagation path:sandstone cracks induce single-wing butterfly failure,central cracks induce ′Y′-shaped failure,and
limestone cracks induce butterfly penetration failure ;the mode of rock bridge penetration controlled by fissure dip angle can be
divided into three typical types. The acoustic emission ringing count characteristics are affected by the fracture position and dip
angle. The first peak time decreases first and then increases with the increase of dip angle,and there are obvious differences in
the dominant damage stage under different fracture positions. The proportion of tensile cracks decreases first and then increases
with the increase of inclination angle. The damage constitutive model based on acoustic emission energy characteristics effectively
reveals the damage evolution law of rock samples under uniaxial compression:the damage develops slowly in the initial
compaction stage,the damage level increases gradually in the elastic deformation stage,the damage amount increases sharply in
the pre-peak failure stage,and the damage variable tends to be stable in the post-peak stage. The research results reveal the
control mechanism of fracture geometric parameters on the mechanical behavior and failure mode of composite rock mass,and
provide a theoretical basis for the stability evaluation of fractured rock mass engineering.

Key words: composite rock,parallel fractures,mechanical properties,crack propagation,failure mode,damage evolution

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