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Tests and design equations for FRP-strengthening in shear

机译:剪力增强FRP的测试和设计方程式

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The experimental/analytical study presented herewith arrived at developing a mechanics-based (as opposed to regression-based) model of the shear capacity of reinforced concrete beams, strengthened with externally bonded fibre reinforced polymers (FRP). The model is obtained through the following steps, with due consideration of the underlying physical mechanisms: (a) the generalised constitutive law of an FRP layer bonded to concrete is defined first, then, (b) the compatibility imposed by the shear crack opening and the appropriate boundary conditions - which depend on the strengthening configuration (either side bonding, U-jacketing or wrapping) - are included in the formulation, and, finally, (c) analytical expressions of the stress field in the FRP strip/sheet crossing a shear crack are obtained. Through these expressions, closed-form equations for the effective debonding strength of FRP strips/sheets are defined as function of, both, the adopted strengthening configuration, and of some basic geometric and mechanical parameters. The so-obtained FRP contribution is then added to those of concrete and steel, which, for the sake of comparison, have been considered as given by different codes. The equations accuracy has been verified by predicting - a priori, with the developed equations - the shear strength of experimentally tested r.c. beams, both collected from the literature and obtained from purposely carried out tests on under-designed real-scale beam specimens, strengthened with different FRP schemes. No a posteriori calibration of the model was performed. The prediction capability of the developed equations has been finally compared to other approaches available in the literature.
机译:随即进行的实验/分析研究得出的结果是,开发了一种基于力学(而不是基于回归)的钢筋混凝土梁抗剪承载力模型,并采用了外部粘结的纤维增强聚合物(FRP)进行了加固。该模型是通过以下步骤获得的,同时适当考虑了潜在的物理机制:(a)首先定义粘结到混凝土上的FRP层的广义本构律,然后,(b)剪切裂缝开口和配方中包括适当的边界条件-取决于加强结构(侧面粘结,U形夹套或包裹),最后,(c)穿过A的FRP条/板中的应力场的解析表达式获得剪切裂纹。通过这些表达式,可以将FRP条/板的有效剥离强度的封闭式方程式定义为所采用的加固配置以及一些基本几何和机械参数的函数。然后将如此获得的FRP贡献添加到混凝土和钢材的FRP中,为了进行比较,已将其视为由不同的代码给出。方程的准确性已经通过预测-通过先验的公式和开发的方程-经实验测试的钢筋混凝土的剪切强度得到了验证。既从文献中收集的光束,又是通过对设计欠佳的真实比例梁样本进行有目的地测试而获得的,并通过不同的FRP方案进行了加固。没有执行模型的后验校准。最终将已开发方程的预测能力与文献中提供的其他方法进行了比较。

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