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Rheological modeling and finite element simulation of epoxy adhesive creep in FRP-strengthened RC beams

机译:FRP加固RC梁中环氧胶蠕变的流变建模和有限元模拟

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摘要

We have shown that a significant creep occurs at the concrete-fiber reinforced polymer (FRP) interface based on double shear long-term test. The primary test parameters were the shear stress to ultimate shear strength ratio, the epoxy curing time before loading as well as the epoxy thickness. The test results showed that when the epoxy curing time before loading was earlier than seven days the shear stress level significantly affected the long-term behavior of epoxy at the interfaces, and in particular the combined effect of high shear stress and thick epoxy adhesive can result in interfacial failure if subjected to high-sustained stresses. In this paper, based on the previous experimental observations, an improved rheological model was developed to simulate the long-term behavior of epoxy adhesive at the concrete-FRP interfaces. Furthermore, the newly developed rheological creep model was incorporated in finite element (FE) modeling of a reinforced concrete (RC) beam strengthened with FRP sheets. The use of rheological model in FE setting provides the opportunity to conduct a parametric investigation on the behavior of RC beams strengthened with FRP. It is demonstrated that creep of epoxy at the concrete-FRP interfaces increases the beam deflection. It is also shown that consideration of creep of epoxy is essential if part or the entire load supported by FRP is to be sustained.
机译:我们已经显示,基于双剪长期测试,在混凝土纤维增强聚合物(FRP)界面处会发生明显的蠕变。主要测试参数为剪切应力与极限剪切强度之比,加载前的环氧固化时间以及环氧厚度。测试结果表明,当加载前的环氧树脂固化时间早于7天时,剪切应力水平显着影响了环氧树脂在界面上的长期行为,特别是高剪切应力和浓环氧粘合剂的共同作用如果承受高持续压力,会导致界面破坏。本文基于先前的实验观察结果,开发了一种改进的流变模型来模拟环氧粘合剂在混凝土-FRP界面的长期行为。此外,新开发的流变蠕变模型被纳入了用FRP板加固的钢筋混凝土(RC)梁的有限元(FE)建模中。在有限元环境中使用流变模型可以对玻璃纤维增​​强的RC梁的性能进行参数研究。结果表明,环氧树脂在混凝土-FRP界面处的蠕变会增加梁的挠度。还表明,要维持FRP承受的部分或全部负载,必须考虑环氧树脂的蠕变。

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