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Stability study of bolting slop under water function

机译:水函数下锚杆坡度的稳定性研究

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Aiming at combined function of ground load and water on highway earth slope and deep foundation pit, we adopt model test to obtain axial strain distribution of the anchor rod with combined function of water and ground load. We also analyze strain change rule of slope surface of anchoring system, area around slipping surface as well as end of anchoring segment. Under combined function of water and ground load, with increase of water percolating capacity and ground load, the anchor rod system turns to down-warping status from integral tension status. Stress of top anchor rod changes greatly, and then the lower anchor rod, bottom anchor rod is the least in stress variation. When the slope failure slides downwards, its bending degree decreases, and its load resistance capability also lowers and result in side slope destabilization. The test result can be referred in design and study of earth anchor under similar conditions in the future.
机译:旨在综合函数在公路地球斜坡和深基坑上的地面负荷和水中的组合功能,采用模型试验,采用水和地荷的组合函数获得锚杆轴的应变分布。 我们还分析了锚固系统斜面的应变变化规则,滑动表面周围的区域以及锚固段的结束。 在水和地负荷的组合函数下,随着水的渗透能力和地负荷的增加,锚杆系统从整体张力状态转向翘曲状态。 顶部锚杆的应力大大变化,然后下锚杆,底部锚杆是至少应力变化的杆。 当斜坡故障向下滑动时,其弯曲度降低,其负载电阻能力也降低并导致侧倾稳定化。 测试结果可以在未来类似条件下的地球锚设计和研究中提及。

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