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Experimental and theoretical investigation on mechanisms performance of the rock-coal-bolt(RCB)composite system

机译:岩锚复合系统机理性能的实验和理论研究

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摘要

For coal mines,rock,coal,and rock bolt are the critical constituent materials for surrounding rock in the underground engineering.The stability of the“rock-coal-bolt”(RCB)composite system is affected by the structure and fracture of the coal-rock mass.More rock bolts installed on the rock,more complex condition of the engineering stress environment will be(tensile-shear composite stress is principal).In this paper,experimental analysis and theoretical verification were performed on the RCB composite system with different angles.The results revealed that the failure of the rock-coal(RC)composite specimen was caused by tensile and shear cracks.After anchoring,the reinforcement body formed inside the composite system limits the area where the crack could occur in the specimen.Specifically,shearing damage occurred only around the bolt,and the stress-strain curve presented a better post-peak mechanical property.The mechanical mechanism of the bolt under the combined action of tension and shear stress was analyzed.Additionally,a rock-coal-bolt tensile-shear mechanical(RCBTSM)model was established.The relationship(similar to the exponential function)between the bolt tensile-shear stress and the angle was obtained.Moreover,the influences of the dilatancy angle and bolt diameter of the RCB composite system were also considered and analyzed.Most of the bolts are subjected to the tensile-shearing action in the post-peak stage.The implications of these results for engineering practice indicated that the bolts of the RCB composite system should be prevented from entering the limit shearing state early.
机译:对于煤矿来说,岩石,煤炭和锚杆是地下工程中围岩的关键组成材料。“岩煤螺栓”(RCB)复合系统的稳定性受煤的结构和断裂影响-岩石质量。将在岩石上安装更多的锚杆,将是更复杂的工程应力环境条件(以拉剪复合应力为主要条件)。本文对不同RCB组合体系进行了实验分析和理论验证结果表明,岩石-煤(RC)复合材料试件的破坏是由拉伸和剪切裂纹引起的。锚固后,复合系统内部形成的增强体限制了试件中可能发生裂纹的区域。 ,剪切损伤只发生在螺栓周围,应力-应变曲线呈现出更好的峰后力学性能。此外,建立了岩煤螺栓拉伸剪切力学(RCBTSM)模型,得到了螺栓拉伸剪切应力与夹角的关系(类似于指数函数)。还对RCB复合系统的扩径角和螺栓直径进行了分析和分析。大多数螺栓在峰后阶段经历了拉伸剪切作用。这些结果对工程实践的影响表明:应防止RCB复合系统过早进入极限剪切状态。

著录项

  • 来源
    《矿业科学技术学报:英文版》 |2020年第006期|P.759-768|共10页
  • 作者单位

    School of Mechanics and Civil Engineering China University of Mining and Technology-Beijing Beijing 100083 ChinaState Key Laboratory of Coal Resources and Safe Mining China University of Mining and Technology-Beijing Beijing 100083 China;

    School of Resource&Environment and Safety Engineering Hunan University of Science and Technology Xiangtan 411201 China;

    School of Mechanics and Civil Engineering China University of Mining and Technology-Beijing Beijing 100083 ChinaState Key Laboratory of Coal Resources and Safe Mining China University of Mining and Technology-Beijing Beijing 100083 China;

    School of Resources and Safety Engineering Central South University Changsha 410083 China;

  • 收录信息 中国科学引文数据库(CSCD);
  • 原文格式 PDF
  • 正文语种 chi
  • 中图分类 工程材料学;
  • 关键词

    Thin coal seam; Coal and rock roadway; Bolt; Tension-shear failure; “Rock-coal-bolt”composite system;

    机译:薄煤层;煤岩巷道;锚杆;拉剪破坏;“岩煤锚杆”复合体系;
  • 入库时间 2022-08-19 04:44:55
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