宋斌. 巷道层状围岩各向异性工程力学特性研究[J]. 煤矿安全, 2020, 51(8): 58-62.
    引用本文: 宋斌. 巷道层状围岩各向异性工程力学特性研究[J]. 煤矿安全, 2020, 51(8): 58-62.
    SONG Bin. Study on Engineering Mechanical Properties of Anisotropy of Layered Surrounding Rock of Roadway[J]. Safety in Coal Mines, 2020, 51(8): 58-62.
    Citation: SONG Bin. Study on Engineering Mechanical Properties of Anisotropy of Layered Surrounding Rock of Roadway[J]. Safety in Coal Mines, 2020, 51(8): 58-62.

    巷道层状围岩各向异性工程力学特性研究

    Study on Engineering Mechanical Properties of Anisotropy of Layered Surrounding Rock of Roadway

    • 摘要: 永安煤矿巷道围岩以层状白云质灰岩为主,实践表明围岩岩体不同方向力学参数差异明显,具有典型的各向异性力学特征。采用原位试验对巷道围岩进行力学特性试验是获取各向异性力学参数的有效方法。现场通过夹角α(0°、30°、45°、60°、90°)进行岩体变形试验,成果显示随着夹角α的增加,岩样的抗压强度、变形模量均呈先减小后增加的“U”型变化规律;以不同夹角β(0°、45°、90°)进行原位剪切试验,成果显示不同夹角峰、残余强度差异明显,其中摩擦角衰减程度不同,黏聚力则变化较小。根据试验成果分析,其主要原因为岩体受力过程中节理裂隙受力变形的空间方位以及岩石各向模量的差异。

       

      Abstract: The surrounding rock of coal roadway is mainly bedded dolomitic limestone. The practice shows that the mechanical parameters of surrounding rock vary obviously in different directions, and it has typical anisotropic mechanical properties. It is an effective method to obtain anisotropic mechanical parameters by in-situ test. The in-situ rock mass deformation tests were carried out at different angles(0°, 30°, 45°, 60°, 90°). The results show that the curves obtained at different angles have different deformation laws. With the increase of angle α, the compressive strength and deformation modulus of rock samples decrease first and then increase in a “U” shape, with different angles of β (0°, 45°, 90°). The results of in-situ shear tests show that there are obvious differences in peak angle and residual strength, among which the attenuation degree of friction angle is different, while the cohesion changes slightly. According to the analysis of experimental results, the main reasons are the spatial orientation of joint and fracture deformation and the difference of rock modulus in each direction during the process of rock mass loading. The research results provide the basis for the mining scheme, stability evaluation and protective measures of the roadway.

       

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