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异形截面全夯式扩底灌注桩竖向承载受力机理研究
郑有明1,戴鸿涛2,刘献刚3,张一凡2,李永华2
摘 要

(1 江西华杰建筑设计有限公司, 南昌 330003; 2 南昌大学建筑工程学院, 南昌 330031;3 江西基业科技有限公司, 南昌 330200)

[摘要]提出一种异形截面全夯式扩底灌注桩,与直径500mm圆形截面全夯式扩底灌注桩进行对比,异形截面全夯式扩底灌注桩横截面面积可以扩大至圆形截面面积的1-357倍,且施工贯入比较容易,异形截面全夯式扩底灌注桩与圆形截面全夯式扩底灌注桩在同等桩身截面面积的情况下还可增大桩身侧面积,有利于增大摩擦力。对3根内切圆直径为500mm的异形截面全夯式扩底灌注桩进行现场载荷试验并采用ABAQUS软件对其进行分析,得到了异形截面全夯式扩底灌注桩荷载-沉降曲线和桩端土体挤密影响范围。有限元计算结果与现场试验结果基本吻合,验证了异形截面全夯式扩底灌注桩桩端土体挤密范围取值的合理性及数值模拟结果的准确性。

[关键词]全夯桩; 异形截面; 扩底灌注桩; 有限元分析

中图分类号:TU473文献标识码:A文章编号:1002-848X(2019)16-0127-06

 

Study on mechanism of vertical bearing capacity of fully rammed bottom-enlarged bored pile with irregular section

Zheng Youming1, Dai Hongtao2, Liu Xiangang3, Zhang Yifan2, Li Yonghua2

(1 Jiangxi Huajie Architectural Design Co., Ltd., Nanchang 330003, China; 2 School of Architecture and Civil Engineering,  Nanchang University, Nanchang 330031, China; 3 Jiangxi Jiye Science and technology Ltd., Nanchang 330200, China)

Abstract:A new fully rammed bottom\|enlarged bored pile with irregular section was presented. Comparing with the fully rammed bottom-enlarged bored pile with 500mm diameter circular section, the cross-sectional area of the fully rammed bottom-enlarged bored pile with irregular section can be expanded to 1-357 times of the circular  cross-sectional area, and the construction penetration is relatively easy. Given the same section area of pile body, fully rammed bottom-enlarged bored pile with irregular section can increase the lateral area of pile body, which is beneficial to increase friction when compared with the circular section pile. Three fully rammed bottom-enlarged bored piles with irregular section of  500mm inner tangential circle diameter were field tested and analyzed by ABAQUS software. The load-displacement curves of fully rammed bottom-enlarged bored piles with irregular section and the influence range of soil compaction at the end of piles were obtained. The results of finite element calculation are basically in agreement with the field test results, which can verify the rationality  of the soil compaction range at the end of the irregular-shaped fully rammed bored pile  and the accuracy of the numerical simulation results.

Keywords:fully rammed pile; irregular section; bottom\|enlarged bored file; finite element analysis

 

通讯作者:李永华,博士,副教授,一级注册结构工程师,Email: liyonghua@ncu.edu.cn。

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