Anti-slide mechanism of anti-slide piles and engineering application of anchor anti-slide piles
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摘要: 在土體滑坡中,由于樁徑和剛度較大,懸臂式抗滑樁和埋入式抗滑樁水平變形遠小于坡體變形,容易導致樁體后側坡體發生局部開裂.在對懸臂式和埋入式抗滑樁變形和受力分析的基礎上,結合某路基滑坡加固工程實際,提出錨桿抗滑樁加固結構.作為一種埋入式抗滑結構,它既克服了懸臂式抗滑樁內部受力不合理的問題,又解決了普通抗滑樁容易引起的樁體后側坡體局部失穩的問題.運用FLAC計算軟件對路基加固工程中的錨桿抗滑樁的受力進行數值模擬計算.Abstract: The horizontal deformation of a cantilever anti-slide pile or an embeded anti-slide pile is less than that of landslide due to large pile diameter and stiffness, which leads to local cracking of the slope. On the basis of analyzing the stress and deformation of a cantilever anti-slide pile and an embeded anti-slide pile, the anchor anti-slide pile was put forward to reinforce subgrade landslide. As an embeded anti-slide structure, it solved not only the unreasonable stress problem of a cantilever anti-slide pile but also the local cracking problem of the slope. The stress of the anchor anti-slide pile was simulated with FLAC software in subgrade reinforcement engineering.
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Key words:
- landslide /
- anti-slide pile /
- anchor anti-slide pile /
- reinforcement
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