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Analysis of Deformation Characteristics of Fully Grouted Rock Bolts Under Pull-and-Shear Loading

机译:拉伸剪切载荷下全灌浆岩螺栓变形特性分析

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摘要

A new analytical approach able to predict the mechanical behavior of fully grouted rock bolts subjected to pull-and-shear load is been proposed. The elastic theory of a semi-infinite length beam and approximate differential equation of the deflection curve (elastic and elastoplastic) are employed to analyze the lateral behavior of a bolt under surrounding rock pressures. Bolt axial behavior is based on a realistic tri-linear bond-slip model with residual bond strength at the grout-bolt interface. According to the Tresca yield criterion, important failure parameters such as shear displacement, tangent direction, tensile displacement, and tensile force can be determined via the analytical approach while the shear force and other basic parameters are provided. Results of the proposed analytical approach for 0 degrees, 20 degrees, 40 degrees, 60 degrees, and 90 degrees displacing angles correlate well with experimental test results. Parametric analysis of both the rock and bolt mechanical behavior are also carried out using this new analytical approach.
机译:已经提出了一种能够预测经受拉伸和剪切载荷的完全灌浆岩螺栓的机械行为的新的分析方法。采用半无限长度梁和近似差分方程的弹性理论(弹性和弹塑性塑料)来分析周围岩石压力下螺栓的横向行为。螺栓轴向行为基于真实的三线性粘合模型,采用灌浆螺栓界面处具有残余粘合强度。根据TRESCA屈服标准,可以通过分析方法确定剪切位移,切换方向,拉伸位移和拉伸力等重要的失效参数,同时提供剪切力和其他基本参数。所提出的0度,20度,40度,60度和90度的分析方法的结果与实验测试结果很好地相关。还使用这种新的分析方法进行了岩石和螺栓力学行为的参数分析。

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