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劲性复合桩挤土效应及承载力作用机制研究

朱锐 周峰 陈廷柱 邓亚光

岩土力学2023,Vol.44Issue(12):3577-3586,10.
岩土力学2023,Vol.44Issue(12):3577-3586,10.DOI:10.16285/j.rsm.2023.0347

劲性复合桩挤土效应及承载力作用机制研究

Soil squeezing effect and bearing mechanism of strength composite pile

朱锐 1周峰 2陈廷柱 3邓亚光4

作者信息

  • 1. 南京工业大学交通运输工程学院,江苏南京 211816||陆军工程大学爆炸冲击防灾减灾国家重点实验室,江苏南京 210007
  • 2. 南京工业大学交通运输工程学院,江苏南京 211816
  • 3. 南京江北公用建设工程有限公司江苏南京 211800
  • 4. 江苏劲桩基础工程有限公司,江苏南通 226000
  • 折叠

摘要

Abstract

The construction technology of strength composite pile is very complex.In order to understand the soil squeezing effect and load transfer mechanism in the piling process,the soil compaction effect test and static cone penetration test of strength composite pile were conducted,and the changes of pore water pressure,total stress and effective stress of soil around the strength composite pile were studied.The test results showed that the soil squeezing effect of strength composite pile decreased gradually along the diameter and increased gradually along the length.In the piling process,the effective stress of the surrounding soil layer increased by 12%-63%,and the side friction resistance of pile increased significantly.The tip resistance and side resistance increased by about 13%-84%and 8%-97%,respectively.Additionally,four load-bearing members with decreasing bearing capacity were formed along the pile diameter through the combination of a variety of strength materials,which realized a better bearing effiiciency than that of conventional piles with homogeneous materials.It is consistent with the characteristics that the shear stress and compressive stress of piles caused by the pile top load along the diameter direction and length direction will gradually decay,which is also the source of the significant economic advantage of the strength composite pile.

关键词

劲性复合桩/挤土效应/承载力/有效应力/桩-土共同作用

Key words

strength composite pile/soil squeezing effect/bearing capacity/effective stress/pile-soil interaction

分类

建筑与水利

引用本文复制引用

朱锐,周峰,陈廷柱,邓亚光..劲性复合桩挤土效应及承载力作用机制研究[J].岩土力学,2023,44(12):3577-3586,10.

基金项目

江苏省自然科学基金(No.BK20220356) (No.BK20220356)

国家自然科学基金(No.51778287).This work was supported by the Natural Science Foundation of Jiangsu Province(BK20220356)and the National Natural Science Foundation of China(51778287). (No.51778287)

岩土力学

OA北大核心CSCDCSTPCD

1000-7598

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