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A thermo-mechanical interface model for simulating the bond behaviour of FRP strips glued to concrete substrates exposed to elevated temperature

机译:热力学界面模型,用于模拟FRP胶粘到暴露于高温的混凝土基材上的粘结行为

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摘要

This paper proposes a model aimed at simulating the bond behaviour of Fiber Reinforced Polymer (FRP) laminates glued to concrete substrates and exposed to high temperature. Based on a previous model already formulated by one of the authors and available in the scientific literature, the present paper proposes a theoretical model formulated within the general framework of Fracture Mechanics and Plasticity-based concepts. Particularly, the aforementioned model is extended herein to consider the thermal effects, through a temperature-based scaling function affecting the strength parameters and softening rules which define the failure surface and the post-cracking response of FRP-concrete joints. The mechanical soundness of the proposed model is demonstrated by the very good agreement between some experimental results taken from the scientific literature on FRP-to-concrete systems tested in pull-out loading at normal and elevated temperature and the corresponding theoretical simulations.
机译:本文提出了一个模型,旨在模拟胶粘到混凝土基材上并暴露在高温下的纤维增强聚合物(FRP)层压板的粘结行为。基于一位作者已经建立并在科学文献中可用的先前模型,本论文提出了在断裂力学和可塑性为基础的概念的一般框架内建立的理论模型。特别地,上述模型在本文中扩展为考虑温度效应,通过基于温度的缩放函数影响强度参数和软化规则,这些规则定义了FRP-混凝土接头的破坏面和开裂后响应。提出的模型的机械可靠性通过以下科学实验文献之间的很好的一致性来证明:在FRP到混凝土系统的科学文献中,在正常和高温下进行拉拔荷载测试时,该实验结果与相应的理论模拟之间具有很好的一致性。

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