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基于剪力滞效应研究箱型梁的附加弯矩和挠度
引用本文:邓尚敏,赵修敏,杨绿峰.基于剪力滞效应研究箱型梁的附加弯矩和挠度[J].广西科学,2010,17(3):223-226.
作者姓名:邓尚敏  赵修敏  杨绿峰
作者单位:1. 广西大学工程防灾与结构安全教育部重点实验室,广西南宁,530004;南宁市建筑设计院,广西南宁,530023
2. 广西大学工程防灾与结构安全教育部重点实验室,广西南宁,530004
基金项目:国家自然科学基金项目,广西自然科学基金重点项目,广西科技计划基金项目,广西理工科学实验中心重点项目 
摘    要:利用多项式建立箱型梁剪力滞效应分析的一维离散有限元模型,通过箱型梁翼缘板的纵向转角位移差函数建立附加弯矩和附加挠度计算公式,计算分析宽高比、宽跨比、高跨比等因子对箱型梁截面的附加弯矩和附加挠度的影响。结果表明,利用一维离散有限元法计算分析箱型梁附加弯矩和挠度的精度较高,结果可靠。箱型梁宽跨比或宽高比增大时,剪力滞效应所产生的附加弯矩对箱型梁的影响随之增大。箱型梁翼缘宽度对附加弯矩和附加挠度的影响较大,而箱型梁高度能够显著提高箱梁截面的抗弯刚度。

关 键 词:箱型梁  弯矩  挠度  剪力滞  有限元
收稿时间:2010/3/20 0:00:00
修稿时间:2010/4/18 0:00:00

Analysis of Additional Bending Moment and Deflection of Boxgirders Based on Shear Lag Effect
DENG Shang-min,ZHAO Xiu-min and YANG Lu-feng.Analysis of Additional Bending Moment and Deflection of Boxgirders Based on Shear Lag Effect[J].Guangxi Sciences,2010,17(3):223-226.
Authors:DENG Shang-min  ZHAO Xiu-min and YANG Lu-feng
Affiliation:1.Key Lab of Engineering Disaster Prevention and Structural Safety of China Ministry of Education,Department of Civil Engineering,Guangxi University,Nanning,Guangxi,530004,China;2.Institute of Architecture and Building Design,Nanning,Guangxi,530023,China)
Abstract:Additional bending moment introduced by shear lag effect on box girders was analyzed based on the one-dimensional finite element method.The effects of the depth-span ratio,width-span ratio and width-depth ratio on deflection,bending moment and additional bending moment of box girders were investigated in details,respectively.The results obtained from one-dimensional finite element method agree well with those by close-form solutions,which show the effectiveness of the presented method.Examples demonstrate that the additional bending moment introduced by the shear lag effect on the box-girders increases with the widthspan ratio and the width-depth ratio.The flange-width of box-girder is greater impact on additional bending moment and additional deflection,but the depth can enhance the flexural rigidity.
Keywords:boxgirder  bending moment  deflection  shear lag effect  finite element
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