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薄壁钢护筒-钢筋混凝土柱偏心受压破坏机理研究
引用本文:房 皓,杨 越,王多银.薄壁钢护筒-钢筋混凝土柱偏心受压破坏机理研究[J].水运工程,2019(4):61-66.
作者姓名:房 皓  杨 越  王多银
作者单位:重庆交通大学河海学院
摘    要:薄壁钢护筒与钢筋混凝土联合受力架空直立式作为一种新的码头结构形式逐渐被应用到实际工程中,然而绝大多数的组合构件处于偏心受压状态。目前对应用于码头结构的薄壁钢护筒-钢筋混凝土组合结构偏心受压承载性能的研究较少,还未有定论。对薄壁钢护筒-钢筋混凝土柱进行单向偏心受压承载性能试验,通过各试件的破坏状态和试验数据,得到荷载-应变曲线,分析其破坏机理。结果表明:钢护筒壁厚的增大和偏心率的减小对结构承载性能提升有直接影响,可为实际工程中的结构设计提供参考。

关 键 词:钢护筒-钢筋混凝土  联合受力  偏心受压  承载性能

Research on failure mechanism of eccentrically compressed of thin-walled reinforced concrete-filled steel tube column
FANG Hao,YANG Yue and WANG Duo-yin.Research on failure mechanism of eccentrically compressed of thin-walled reinforced concrete-filled steel tube column[J].Port & Waterway Engineering,2019(4):61-66.
Authors:FANG Hao  YANG Yue and WANG Duo-yin
Institution:School of River and Ocean Engineering,Chongqing Jiaotong University,Chongqing 400074,China,School of River and Ocean Engineering,Chongqing Jiaotong University,Chongqing 400074,China and School of River and Ocean Engineering,Chongqing Jiaotong University,Chongqing 40004,China
Abstract:The thin-walled reinforced concrete-filled steel tube composite overhead-vertical structure,as a new type of wharf structure,is applied to practical engineering.However,most of the composite members are in eccentric compression state.At present,there are few researches about the eccentric compressive bearing capacity of thin-walled steel sheath-reinforced concrete composite structures applied to wharf structures,and the final conclusion is still unknown.We make an experiment of the bearing capacity of thin-walled steel tube-reinforced concrete columns under unidirectional eccentric compression,obtain the load-strain curves by failure state and test data of each specimen,and analyze the failure mechanism.The results show that the increase of wall thickness and the decrease of eccentricity have a direct impact on the improvement of bearing capacity of the structure,which can provide reference for the structure design in practical engineering.
Keywords:steel sheath-reinforced concrete  joint force  eccentric compression  bearing capacity
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