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钢筋混凝土梁承载力分析的打靶法及其应用
引用本文:肖承鹏,何光辉.钢筋混凝土梁承载力分析的打靶法及其应用[J].水运工程,2017(5):19-26.
作者姓名:肖承鹏  何光辉
作者单位:浙江海洋大学 港航与交通运输工程学院,浙江 舟山 316022,浙江海洋大学 港航与交通运输工程学院,浙江 舟山 316022
摘    要:根据钢筋混凝土(RC)梁静力学分析的虚功原理,导出了考虑钢筋和混凝土非线性材料特性及梁身剪切变形的RC梁静力分析控制微分方程与边界条件。将得到的控制方程转化为由6个一阶常微分方程构成的非线性微分方程组边值问题,从而采用非线性打靶法研究RC梁的静力学行为,得到了RC梁的位移与弯矩响应。对比RC梁Timoshenko模型与Euler-Bernoulli模型分析结果,验证了所展开分析的正确性、参数研究了RC梁的剪切效应,以及通过RC梁的弯矩分析,得到非线性RC梁弯矩调幅系数;通过RC梁的正应力分析,得到了RC梁的裂纹分布区域。

关 键 词:钢筋混凝土梁  材料非线性  Timoshenko假定  非线性打靶法  裂纹区域

Shooting method and its application for bearing capacity analysis of reinforced concrete beam
XIAO Chengpeng and HE Guanghui.Shooting method and its application for bearing capacity analysis of reinforced concrete beam[J].Port & Waterway Engineering,2017(5):19-26.
Authors:XIAO Chengpeng and HE Guanghui
Institution:School of Port and Transportation Engineering,Zhejiang Ocean University,Zhoushan 316022,China and School of Port and Transportation Engineering,Zhejiang Ocean University,Zhoushan 316022,China
Abstract:According to the virtual work principle for the static analysis of the reinforced concrete(RC)beam,the differential equations and their boundary conditions governing the static response are derived,taking into account the nonlinear properties of the rebar and concrete and the shearing deformation of the beam body.Subsequently,a nonlinear boundary value problem composed of 6 first order ordinary differential equations is obtained,thus,the static behavior of the RC beam is studied using the nonlinear shooting method,and the responses of displacements and bending moment of the RC beam are obtained.At the end,via the comparisons of results generated by Timoshenko and Euler-Bernoulli beam models,the correctness of the analysis is verified,and the shear effect of the RC beam is parametrically studied.Besides,the bending moment modulation coefficient of the nonlinear RC beam is gained,and the crack zone of the RC beam are obtained through the normal stress analysis.
Keywords:reinforced concrete beam  material nonlinearity  Timoshenko assumption  nonlinear shooting method  crack zone
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