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3D Nonlinear Numerical Simulation of Intact and Debonded Reinforced Concrete Beams
引用本文:陈权,Marcus L. 3D Nonlinear Numerical Simulation of Intact and Debonded Reinforced Concrete Beams[J]. 西南交通大学学报(英文版), 2004, 12(2): 173-177
作者姓名:陈权  Marcus L
作者单位:[1]SchoolofComputerandCommunicationEngineering,SouthwestJiaotongUniversity,Chengdu610031,China [2]DepartmentofCivilandEnvironment,UniversityofSouthampton,SouthamptonSO171BJ,UK
摘    要:
To study the behaviour of reinforced concrete (RC) structures with sections of concrete removed and the reinforcement exposed, 3D nonlinear numerical analysis was performed upon both intact and debonded RC beams by using finite element techniques. The deformational characteristics and the ultimate loads were obtained through numerical models, as well as crack and stress distributions. The failure modes can also be deduced from computational results. Compared with intact beams, the normal assumptions of plane section behaviour is not hold true and the patterns of stress and strain are different in debonded RC beams. The numerical results show good consistency with experimental data. This kind of numerical simulation is a supplement to existing codes.

关 键 词:有限元分析 钢筋混凝土 非线性 极限负载

3D Nonlinear Numerical Simulation of Intact and Debonded Reinforced Concrete Beams
Marcus L. 3D Nonlinear Numerical Simulation of Intact and Debonded Reinforced Concrete Beams[J]. Journal of Southwest Jiaotong University, 2004, 12(2): 173-177
Authors:Marcus L
Abstract:
To study the behaviour of reinforced concrete (RC) structures with sections of concrete removed and the reinforcement exposed, 3D nonlinear numerical analysis was performed upon both intact and debonded RC beams by using finite element techniques. The deformational characteristics and the ultimate loads were obtained through numerical models, as well as crack and stress distributions. The failure modes can also be deduced from computational results. Compared with intact beams, the normal assumptions of plane section behaviour is not hold true and the patterns of stress and strain are different in debonded RC beams. The numerical results show good consistency with experimental data. This kind of numerical simulation is a supplement to existing codes.
Keywords:Finite element  Reinforced concrete  Nonlinear  Ultimate load
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