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Modelling the Load-Displacement Behavior of Fully Grouted Cable Bolts under Constant Normal Stiffness

机译:恒定正常刚度下完全灌浆电缆螺栓的负载 - 位移行为

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Cable bolts are extensively used as the most reliable support systems in underground and surface structures leading to some investigations on the characterization of the performance of the cable bolts under different conditions including field and laboratory environments. This paper aims to develop an analytical model for prediction of the full load-displacement performance of the Sumo cable bolt under constant normal stiffness which due to its unique design it has been classified as the modified cable bolt. The model includes nonlinear dilation and incremental shear load equations inspired by rock joint discipline. The nonlinear shear displacement between the cable bolt and the grout is captured through a loop of incremental raise in the axial load for a given unit displacement. The model is then calibrated against the experimental data obtained from Sumo cable bolt. A good agreement was found between the model simulations and the experimental results confirming the applicability of the proposed constitutive model for the performance prediction of the Sumo cable bolts tested under constant normal stiffness.
机译:电缆螺栓广泛用作地下和表面结构中最可靠的支持系统,导致一些关于在包括现场和实验室环境的不同条件下表征电缆螺栓性能的研究。本文旨在开发一个分析模型,用于预测恒定正常刚度下的Sumo电缆螺栓的全负荷 - 位移性能,这是由于其独特的设计,它已被分类为改进的电缆螺栓。该模型包括由摇滚联合学科启发的非线性扩张和增量剪切载荷方程。通过用于给定单元位移的轴向载荷的轴向载荷的增量升高,捕获电缆螺栓和灌浆之间的非线性剪切位移。然后根据从Sumo电缆螺栓获得的实验数据校准该模型。在模型模拟和实验结果之间发现了一个良好的一致性,确认所提出的本构模型适用于在恒定正常刚度下测试的SUMO电缆螺栓的性能预测的应用。

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