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Influence of bond stress-slip relationship on bond strength prediction

机译:粘结应力 - 滑移关系对粘结强度预测的影响

摘要

The study of the bond stress-slip relationship of FRP (fibre reinforced polymer) adhered to concrete has been a key point to understand the bond behaviour of externally bonded reinforcement (EBR) and near surface mounted (NSM) systems. Researchers have made an effort to determine bond-slip relationships through experimental and analytical/numerical methods, although they have not obtained univocal results.The area under the bond stress-slip relationship, representing the fracture energy, is one of the main parameters to make bond strength predictions. The fracture energy may be divided in two parts: elastic and softening contribution. These parts act both in a different way in predicting the failure load and the effective transfer length.In this paper the influence of the shape of the bond stress-slip relationship on the prediction of the bond strength and transfer length is investigated. Hereby, a comparison is made between the bilinear bond stress-slip relationship (linear elastic ascending branch-linear softening branch) and the elastic-exponential bond stress-slip relationship (linear elastic ascending branch-exponential softening branch).
机译:研究FRP(纤维增强聚合物)与混凝土的粘结应力-滑动关系已成为了解外部粘结增强材料(EBR)和近表面贴装(NSM)系统粘结性能的关键。尽管尚未获得明确的结果,但研究人员仍努力通过实验和分析/数值方法来确定粘结-滑动关系。粘结应力-滑动关系下的面积(代表断裂能)是要确定的主要参数之一粘结强度预测。断裂能可以分为两部分:弹性贡献和软化贡献。这些部分在预测破坏载荷和有效传递长度方面都以不同的方式发挥作用。本文研究了粘结应力-滑动关系的形状对预测粘结强度和传递长度的影响。因此,在双线性粘结应力-滑动关系(线性弹性上升分支-线性软化分支)和弹性-指数粘结应力-滑动关系(线性弹性上升分支-指数软化分支)之间进行比较。

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