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首页> 外文期刊>Materials and structures >Numerical Simulation Of Rebar/concrete Interface Debonding Of Frp Strengthened Rc Beams Under Fatigue Load
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Numerical Simulation Of Rebar/concrete Interface Debonding Of Frp Strengthened Rc Beams Under Fatigue Load

机译:疲劳荷载下Frp加固RC梁钢筋混凝土界面剥离的数值模拟

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摘要

The aim of this paper is to simulate the rebar/concrete interface debonding of FRP strengthened RC beams under fatigue load and also, to ascertain the influence of design parameters such as the elastic modulus, thickness and length of the FRP plate on the debonding performance. In order to simplify the simulation, some basic equilibrium equations are formulated and then the stresses of the rebar and FRP plate are numerically solved, and stress intensity factor is avoided in the simulation by fundamentals of fracture mechanics because of its complexity around the crack tip of bi-material interface. With the combination of finite element method and difference approximation, authors program the degradation model of coefficient of friction, debond criterion, propagation law and loop of load process into a commercial finite element code to investigate the fatigue debonding. The relationships between the debond length as well as other fatigue parameters and number of cyclic load are obtained and discussed.
机译:本文的目的是模拟FRP加固RC梁在疲劳荷载下的钢筋混凝土界面剥离,并确定诸如FRP板的弹性模量,厚度和长度等设计参数对剥离性能的影响。为了简化模拟,建立了一些基本的平衡方程,然后对钢筋和FRP板的应力进行了数值求解,并且由于断裂力学的复杂性,裂纹力学基础避免了模拟中的应力强度因子。双材料界面。结合有限元方法和差值逼近,作者将摩擦系数的退化模型,脱粘准则,传播规律和载荷过程循环编程为商业有限元代码,以研究疲劳脱粘。获得并讨论了脱粘长度以及其他疲劳参数与循环载荷数量之间的关系。

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