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A constitutive model for load-displacement performance of modified cable bolts

机译:改进型电缆螺栓载荷-位移性能的本构模型

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摘要

Cable bolts are extensively used in mining and civil structures as one of the most important support systems for ground control. In order to design an effective support system, understanding the performance of cable bolts under the conditions other than those tested in the laboratory is essential. Thus, this paper outlines the development of a constitutive model that can predict the full load-displacement performance of the modified cable bolts at different confining pressures. The model includes the nonlinear dilation equation and the peak axial load envelope as the governing laws. The governing equations for the failure mechanisms at the cable to grout interface and grout annulus are coupled using advanced partial differential equations. The full load displacement behaviour of modified cable bolts with a smooth transition from initial elastic behaviour to progressive failure is simulated using continuous yielding method. The model is then calibrated against the experimental data reported in the literature. It has been demonstrated that there is a good agreement between the model simulations and the experimental results confirming the suitability of the proposed constitutive model for performance prediction of the modified cable bolts at different confining pressures.
机译:电缆螺栓广泛用于采矿和民用建筑,是地面控制的最重要支撑系统之一。为了设计有效的支撑系统,了解电缆螺栓在实验室未测试的条件下的性能至关重要。因此,本文概述了本构模型的开发,该模型可以预测在不同围压下改进型电缆螺栓的全部载荷-位移性能。该模型包括非线性膨胀方程和峰值轴向载荷包络线作为控制律。使用先进的偏微分方程将电缆到灌浆界面和灌浆环的破坏机理的控制方程耦合起来。使用连续屈服法模拟了从初始弹性行为到渐进破坏的平稳过渡的改进型电缆螺栓的全负荷位移行为。然后针对文献中报道的实验数据对模型进行校准。已经证明,在模型仿真和实验结果之间有很好的一致性,证实了所提出的本构模型在不同围压下对改进的电缆螺栓的性能预测的适用性。

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