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Numerical simulation of the de-bonding phenomenon of FRCM strengthening systems

机译:FRCM强化系统脱胶现象的数值模拟

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Aim of the paper is to present a one dimensional simple model for the study of the bond behavior of Fabric Reinforced Cementitious Matrix (FRCM) strengthening systems externally applied to structural substrates. The equilibrium of an infinitesimal portion of the reinforcement and the mortar layers composing the strengthening systems allows to derive the governing equations. An analytical solution is determined solving the system of differential equations. In particular, in the first part of the paper a nonlinear shear-stress slip law characterized by a brittle post-peak behavior with a residual shear strength in the post peak phase is introduced for either the lower reinforcement-mortar interface (approach 1) or both the lower and the upper interface (approach 2). In the latter approach, a calibration of the shear strength of the upper interface is proposed in order to implicitly account for the effect of the damage of the mortar on the bond behavior. In the second part of the paper it is presented the solution of the problem in the case of softening behavior by approximating the shear-stress slip law throughout a step function. Comparisons with experimental data, available in literature, are presented in order to assess the reliability of the proposed approach.
机译:本文的目的是提出一个一维简单模型,用于研究外部应用于结构基材的织物增强水泥基增强体系的粘结性能。钢筋的无穷小部分和组成加强系统的砂浆层之间的平衡允许导出控制方程。确定了求解微分方程组的解析解。特别是,在本文的第一部分中,针对较低的增强砂浆界面(方法1)或引入了非线性的剪应力滑移定律,其特征在于峰后行为较脆,峰后阶段具有残余剪切强度。下部和上部接口(方法2)。在后一种方法中,建议对上界面的抗剪强度进行校准,以隐式考虑砂浆损坏对粘结性能的影响。在本文的第二部分中,通过在整个阶跃函数中逼近剪切应力滑移定律,给出了软化行为情况下问题的解决方案。与实验数据进行比较,可以从文献中获得,以评估所提出方法的可靠性。

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