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灰土挤密桩处理黄土湿陷工程问题分析
引用本文:梁东,王刚,王华,李卫华.灰土挤密桩处理黄土湿陷工程问题分析[J].探矿工程,2015,42(2):82-84.
作者姓名:梁东  王刚  王华  李卫华
作者单位:河南省地矿建设工程〈集团〉有限公司,河南省地矿局第二地质环境调查院,郑州市污水净化有限公司,河南省地矿局第二地质环境调查院
摘    要:郑州豫翠园工程灰土挤密桩处理黄土湿陷施工中,消除黄土湿陷性的效果不好,施工后个别层位仍为轻微湿陷。通过对黄土湿陷机理、灰土挤密桩处理湿陷原理以及该工程具体问题的分析,认为灰土桩成孔方法不对以及挤密冲击力不够是导致效果不好的主要原因。将挤密桩成孔调整为冲击挤密成孔工艺,回填夯实灰土的冲击锤质量由100 kg增加到200 kg以增大冲击力,场地各土层的黄土湿陷现象全部消除,处理效果良好。

关 键 词:灰土挤密桩  湿陷性黄土  湿陷系数  冲击挤密成孔
收稿时间:2014/8/18 0:00:00
修稿时间:2014/12/26 0:00:00

Analysis on Construction Problems of Lime-soil Compaction Pile for Handling Collapse in Loess
LIANG Dong,WANG Gang,WANG Hua and LI Wei-hua.Analysis on Construction Problems of Lime-soil Compaction Pile for Handling Collapse in Loess[J].Exploration Engineering(Drilling & Tunneling),2015,42(2):82-84.
Authors:LIANG Dong  WANG Gang  WANG Hua and LI Wei-hua
Abstract:In a construction for handling loess collapse with lime-soil compaction pile in Zhengzhou, there was still slight collapse in some individual horizons after the treatment. By the analysis on loess collapse mechanics, principles of collapse treatment with lime-soil compaction pile and some engineering problems, it is found that the unsuitable boring method for lime-soil pile and not enough compaction impact force are the main causes. By taking impact compaction boring and increasing the weight of compact hammer for backfilling from 100kg to 200kg, the loess collapse are all eliminated.
Keywords:lime-soil compaction pile  collapsible loess  coefficient of collapsibility  impact compaction boring
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