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Flexural analysis of posttensioned reinforced concrete beams using external steel bars

机译:使用外部钢筋的后张钢筋混凝土梁的受力分析

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A nonlinear analysis based on the incremental deformation method has been presented to predict the flexural response of reinforced concrete (RC) beams strengthened with externally unbonded steelbars instead of tendons. The steel bars (with ultimate strength between 668 and 788 MPa) generally have lower strength than tendons (with ultimate strength between 1400 and 1900 MPa), and can be posttensioned simply by tightening nuts or turnbuckles, unlike a tendon. The load–deflection, load–external bar stress and moment–curvature over the entire loading range are examined to evaluate the flexural response of RC beams with or without external steel bars. To satisfy force equilibrium, iterative processes for obtaining the neutral axis and external bar stress in the cross-section are performed. This iterative procedure with nonlinear analysis is essential because there is an interrelationship between the neutral axis, external bar stress, and beam deflection. The nonlinear analytical results for the deflection and external bar stress show good agreement with experimental values. Additionally, deformed shapes such as varying neutral axis and curvature distribution along the beam span, which were not observed in experimental tests, are also exhibited.
机译:提出了一种基于增量变形法的非线性分析方法,以预测用外部无粘结钢筋代替钢筋加固的钢筋混凝土(RC)梁的弯曲响应。钢筋(极限强度在668到788 MPa之间)通常比钢筋(极限强度在1400到1900 MPa之间)强度低,并且可以像钢筋束一样通过拧紧螺母或螺丝扣进行后张。在整个载荷范围内检查了载荷-挠度,载荷-外部钢筋的应力和弯矩-曲率,以评估带或不带外部钢筋的RC梁的挠曲响应。为了满足力平衡,执行了用于获得横截面中性轴和外部钢筋应力的迭代过程。这种具有非线性分析的迭代过程非常重要,因为中性轴,外部钢筋应力和梁挠度之间存在相互关系。挠度和外杆应力的非线性分析结果与实验值吻合良好。此外,还显示出变形的形状,例如沿光束跨度变化的中性轴和曲率分布,这在实验测试中没有观察到。

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