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Bond-slip modeling of a CMC rockbolt element using 2D-DDA method

机译:使用2D-DDA方法对CMC锚杆元件进行粘结滑移建模

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The bonding condition at the rock and rockbolt interface is one of the most important factors to determine the load transfer mechanism of a CMC rockbolt element. The two-dimensional Discontinuous Deformation Analysis (2D-DDA) method is used in this paper to investigate the pullout performance of the CMC rockbolt element which is modeled as three components, i.e. the rock, the rockbolt and the mortar. The material properties used in the numerical models are calibrated against the experiments results. The simulated results show that a bond stress versus slip displacement curve of the CMC rockbolt element is exhibiting three stages which could be represented by a trilinear bond-slip model. Parametric studies have been carried out to investigate the effects of the confining pressure and those of the geometry configuration of the rockbolt ribs on the bond stress versus slip displacement curves and the crack propagations in the mortar. It is found that the maximum bond strength and the residual bond strength increase with the increase of confining pressure. Under lower confining pressure, the rib face angle controls the dilation of rock blocks. The obtained key parameters of the trilinear bond - slip models can be used to simulate the bond behavior between the rockbolt and rock interface in pullout test. The nodal axial forces and nodal bond force distributions along the rockbolt could be curve fitted using exponential models. The obtained parameters of the exponential models can be used for engineering practice under similar conditions.
机译:岩石锚固接口处的粘结条件是确定CMC锚固单元荷载传递机制的最重要因素之一。本文使用二维不连续变形分析(2D-DDA)方法研究了CMC锚杆单元的拉拔性能,该单元被建模为三个组成部分,即岩石,锚杆和砂浆。数值模型中使用的材料属性针对实验结果进行了校准。仿真结果表明,CMC锚杆单元的粘结应力与滑移位移曲线表现出三个阶段,可以通过三线性粘结滑移模型来表示。已经进行了参数研究,以研究围压和锚杆肋的几何构型对粘结应力与滑移位移曲线以及砂浆中裂纹扩展的影响。发现最大粘结强度和残余粘结强度随围压的增加而增加。在较低的围压下,肋面角控制岩石块的膨胀。所获得的三线性粘结滑移模型的关键参数可用于模拟抽拉试验中岩锚与岩石界面之间的粘结行为。沿锚杆的节点轴向力和节点结合力分布可以使用指数模型进行曲线拟合。所获得的指数模型参数可以在相似条件下用于工程实践。

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