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Pullout Performances of Grouted Rockbolt Systems with Bond Defects

机译:用粘合缺陷拔出灌浆岩波系统的表演

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This paper presents a numerical study on the pullout behaviour of fully grouted rockbolts with bond defects. The cohesive zone model (CZM) is adopted to model the bond-slip behaviour between the rockbolt and grout material. Tensile tests were also conducted to validate the numerical model. The results indicate that the defect length can obviously influence the load and stress distributions along the rockbolt as well as the load-displacement response of the grouted system. Moreover, a plateau in the stress distribution forms due to the bond defect. The linear limit and peak load of the load-displacement response decrease as the defect length increases. A bond defect located closer to the loaded end leads to a longer nonlinear stage in the load-displacement response. However, the peak loads measured from the specimens made with various defect locations are almost approximately the same. The peak load for a specimen with the defects equally spaced along the bolt is higher than that for a specimen with defects concentrated in a certain zone, even with the same total defect length. Therefore, the dispersed pattern of bond defects would be much safer than the concentrated pattern. For the specimen with dispersed defects, the peak load increases with an increase in the defect spacing, even if the total defect length is the same. The peak load for a grouted rockbolt system with defects increases with an increases in the bolt diameter. This work leads to a better understanding of the load transfer mechanism for grouted rockbolt systems with bond defects, and paves the way towards developing a general evaluation method for damaged rockbolt grouted systems.
机译:本文介绍了对粘合缺陷的完全灌浆岩波的拉出行为的数值研究。采用粘性区模型(CZM)来模拟岩突和灌浆材料之间的粘合滑动行为。还进行了拉伸试验以验证数值模型。结果表明,缺陷长度可以显然会影响沿着岩波的负荷和应力分布以及灌浆系统的负载 - 位移响应。此外,由于粘合缺损,应力分布形式的高原。随着缺陷长度的增加,负载 - 位移响应的线性极限和峰值负荷降低。粘合缺陷靠近加载端的粘合导致负载 - 位移响应中的更长的非线性阶段。然而,从用各种缺陷位置制成的样本测量的峰值载荷几乎大致相同。具有沿螺栓等间隔的缺陷的样品的峰值负荷高于具有在特定区域中浓缩的样品的样品,即使具有相同的总缺陷长度。因此,粘合缺陷的分散模式比浓缩的图案更安全。对于具有分散缺陷的样品,即使总缺陷长度是相同的,峰值负荷也随着缺陷间隔的增加而增加。具有缺陷的灌浆突波系统的峰值负荷随着螺栓直径的增加而增加。这项工作导致更好地了解具有粘合缺陷的灌浆岩波系统的载荷传递机制,并为损坏岩波灌浆系统开发一般评价方法。

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