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Studying the performance of fully encapsulated rock bolts with modified structural elements

机译:用改进的结构元素研究全封装岩螺栓的性能

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摘要

Numerical simulation is a useful tool in investigating the loading performance of rock bolts.The cable structural elements(cableSELs)in FLAC3D are commonly adopted to simulate rock bolts to solve geotechnical issues.In this study,the bonding performance of the interface between the rock bolt and the grout material was simulated with a two-stage shearing coupling model.Furthermore,the FISH language was used to incorporate this two-stage shear coupling model into FLAC3D to modify the current cableSELs.Comparison was performed between numerical and experimental results to confirm that the numerical approach can properly simulate the loading performance of rock bolts.Based on the modified cableSELs,the influence of the bolt diameter on the performance of rock bolts and the shear stress propagation along the interface between the bolt and the grout were studied.The simulation results indicated that the load transfer capacity of rock bolts rose with the rock bolt diameter apparently.With the bolt diameter increasing,the performance of the rock bolting system was likely to change from the ductile behaviour to the brittle behaviour.Moreover,after the rock bolt was loaded,the position where the maximum shear stress occurred was variable.Specifically,with the continuous loading,it shifted from the rock bolt loaded end to the other end.
机译:数值模拟是调查摇滚螺栓的装载性能的有用工具。FLAC3D中的电缆结构元件(母电缆)通常采用来模拟岩石螺栓来解决岩土问题。本研究,岩螺栓之间界面的粘接性能并且用两级剪切耦合模型模拟灌浆材料。繁殖,鱼类语言用于将该两级剪切耦合模型纳入FLAC3D以修改当前的Cables.Comparison。在数值和实验结果之间进行比较,以确认数值方法可以正确模拟岩石螺栓的装载性能。基于改进的磁带,研究了螺栓直径对螺栓螺栓性能的影响和螺栓与灌浆之间的界面的剪切应力传播。模拟结果表明,岩螺栓的负荷转移能力显然是岩石螺栓直径。螺栓直径的增加,岩石螺栓系统的性能可能从韧性行为转变为脆性行为。在装载岩石螺栓之后,发生最大剪切应力的位置是可变的。特殊,连续加载,它从装载端的岩石螺栓转移到另一端。

著录项

  • 来源
    《国际煤炭科学技术学报:英文版》 |2021年第001期|P.64-76|共13页
  • 作者单位

    School of Energy and Mining Engineering China University of Mining and Technology(Beijing) Beijing 100083 China;

    School of Energy and Mining Engineering China University of Mining and Technology(Beijing) Beijing 100083 China;

    School of Energy and Mining Engineering China University of Mining and Technology(Beijing) Beijing 100083 ChinaBeijing Key Laboratory for Precise Mining of Intergrown Energy and Resources China University of Mining and Technology(Beijing) Beijing 100083 China;

    School of Energy and Mining Engineering China University of Mining and Technology(Beijing) Beijing 100083 China;

    School of Energy and Mining Engineering China University of Mining and Technology(Beijing) Beijing 100083 China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 chi
  • 中图分类 矿山压力与支护;
  • 关键词

    Fully encapsulated rock bolts; Numerical simulation; Structural elements; Shear coupling model; Interface shear strength;

    机译:全封装的摇滚;数值模拟;结构元素;剪切耦合模型;界面剪切强度;
  • 入库时间 2022-08-19 04:57:58
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