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用锁口管法施工钻孔咬合桩
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作者 秦建国 《山西建筑》 2001年第3期29-30,共2页
针对钻孔咬合桩围护结构在施工中需钻掉部分素混凝土 ,造成材料多耗且为施工带来不便的缺点 ,介绍了锁口管法。通过钻孔咬合桩的施工计划、施工方案以及锁口管设计、钻机选择、施工工艺、施工中的注意事项几方面论述了锁口管法可以避免... 针对钻孔咬合桩围护结构在施工中需钻掉部分素混凝土 ,造成材料多耗且为施工带来不便的缺点 ,介绍了锁口管法。通过钻孔咬合桩的施工计划、施工方案以及锁口管设计、钻机选择、施工工艺、施工中的注意事项几方面论述了锁口管法可以避免以上缺点 ,证明应用此法可快速。 展开更多
关键词 锁口管法 钻孔合桩 围护结构 工程施工
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A case study on behaviors of composite soil nailed wall with bored piles in a deep excavation 被引量:7
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作者 ZHU Feng-bin MIAO Lin-chang +1 位作者 GU Huan-da CHENG Yue-hong 《Journal of Central South University》 SCIE EI CAS 2013年第7期2017-2024,共8页
A complete case of a deep excavation was explored. According to the practical working conditions, a 3D non-linear finite element procedure is used to simulate a deep excavation supported by the composite soil nailed w... A complete case of a deep excavation was explored. According to the practical working conditions, a 3D non-linear finite element procedure is used to simulate a deep excavation supported by the composite soil nailed wall with bored piles in soft soil. The modified cam clay model is employed as the constitutive relationship of the soil in the numerical simulation. Results from the numerical analysis are fitted well with the field data, which indicate that the research approach used is reliable. Based on the field data and numerical results of the deep excavation supported by four different patterns of the composite soil nailed wall, the significant corner effect is founded in the 3D deep excavation. If bored piles or soil anchors are considered in the composite soil nailed wall, they are beneficial to decreasing deformations and internal forces of bored piles, cement mixing piles, soil anchors, soil nailings and soil around the deep excavation. Besides, the effects due to bored piles are more significant than those deduced from soil anchors. All mentioned above prove that the composite soil nailed wall with bored piles is feasible in the deep excavation. 展开更多
关键词 deep excavation 3D non-linear finite element bored pile composite soil nailed wall corner effect DEFORMATION internal force
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