Abstract Analytical model for the load transmission law of rock bolt subjected to open and sliding joint displacements
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Analytical model for the load transmission law of rock bolt subjected to open and sliding joint displacements

机译:开放式滑动接线位移的岩石锚杆载荷传输定律的分析模型

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AbstractThe present study focuses on the load transmission law along the rock bolt and the efficacy for different anchored conditions. Shear displacement along the joint face is considered on the basis of traditional rock bolt stress calculation method with regard to joint open displacement. Combining the elastic foundation beam model and the rock bolt pull-out model, an analytical solution for the stress distribution along the rock bolt through a single joint face is derived. The performance of the proposed analytical solution is compared with an experimental result and a previous study. In addition, joint displacement, joint location, and dip angle of the joint face are set as variables to further explore the corresponding anchored effect. The results indicate that larger joint displacement along the joint face tend to cause a distinct increase of the shear and compressive stress along the rock bolt. When the joint face moves inward, the interaction force between the rock bolt and the surrounding rock mass decreases, suggesting that the strength of the rock bolt is not taken full use. Moreover, for a certain joint displacement and joint location, larger anchored angle between the rock bolt and the joint face contributes to better reinforcement effect.Highlights?The stress distribution of the rock bolt in jointed rock mass is derived.?Effects of joints on the stress distribution along the rock bolt are obtained.?The present model shows good agreement with experimental results.]]>
机译:<![cdata [ 抽象 本研究专注于沿岩螺栓的负载传输法以及不同锚定条件的功效。基于接合开放位移的传统岩石螺栓应力计算方法,考虑沿着关节面的剪切位移。弹性基础梁模型和岩石螺栓拉出模型组合,推导了沿着岩石螺栓通过单个关节面的应力分布的分析解决方案。将所提出的分析解决方案的性能与实验结果和先前的研究进行比较。另外,关节面的关节位移,关节位置和倾角被设定为变量,以进一步探索相应的锚定效果。结果表明,沿着关节面的较大的关节位移倾向于导致沿岩石螺栓的剪切和压缩应力的不同增加。当关节面向内移动时,岩石螺栓和周围岩石质量之间的相互作用力降低,表明岩石螺栓的强​​度不会充分利用。此外,对于某个联合位移和接合位置,岩石螺栓和关节面之间的较大锚固角度有助于更好的增强效果。 突出显示 标签> 推导出关节岩体中岩石螺栓的应力分布。 接头对岩石螺栓的应力分布的影响。 现在的模型显示了良好的与实验结果进行血液。 ]]>

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