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A Rate-dependent Continuum Damage Model for Dynamic Shear Debonding of CFRP-concrete Interface

机译:CFRP - 混凝土界面动态剪切剥离率依赖性连续体损伤模型

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摘要

Dynamic shear debonding behaviour in fibre reinforced polymer (FRP) strengthened concrete structures has been studied by some researchers through experiments and finite element (FE) simulations. However, there is still a lack of a continuum damage model to simulate dynamic debonding behaviour of CFRP-concrete interface using a method derived from nonlinear fracture mechanics (NLFM). To gain deeper insight into the dynamic fracture mechanics of carbon fibre reinforced polymer (CFRP)-concrete interface, a novel continuum damage model was proposed in this paper. Model analyses and regression test data were used to formulate the relationship between model coefficients and material parameters of tested specimens in literature. It was found that the dynamic enhancing effect on interfacial bond properties became more significant when a specimen has a larger CFRP load capacity or a lower concrete load capacity. The proposed damage model was verified through comparing numerical predictions of load-displacement curve and CFRP strain distribution along the bond length with published test results. Finally, based on a comparison with experimental study of specimens using basalt FRP and glass FRP, the proposed model was also found to be applicable to different types of FRP.
机译:通过实验和有限元(FE)模拟,一些研究人员研究了纤维增强聚合物(FRP)强化混凝土结构的动态剪切剥离行为。然而,仍然缺乏连续损伤模型来模拟CFRP - 具体界面的动态剥离行为,使用来自非线性裂缝力学(NLFM)的方法。为了更深入地了解碳纤维增强聚合物(CFRP)的动态断裂力学(CFRP) - 互联界面,本文提出了一种新型连续损伤模型。模型分析和回归测试数据用于制定在文献中测试样品的模型系数和材料参数之间的关系。结果发现,当样品具有较大的CFRP负载能力或较低的混凝土负载能力时,对界面粘合性能的动态增强效果变得更加显着。通过将负载 - 位移曲线和CFRP应变分布的数值预测与发表的测试结果进行比较,通过比较了粘合长度的数值预测来验证所提出的损坏模型。最后,基于与使用玄武岩FRP和玻璃FRP的样本的实验研究的比较,还发现所提出的模型适用于不同类型的FRP。

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