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Behaviour of prestressed hollow core slabs strengthened with NSM CFRP strips around openings: A finite element investigation

机译:NSM CFRP条带周围的预应力空心核心板的行为:有限元调查

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Prestressed Hollow Core Slabs (PHCSs) have become widely used in the construction industry owing to their economic benefits. During their service life, changes that would require openings to be situated along their spans may arise. A strengthening technique to recover or improve the original serviceability and resistances becomes indispensable. Limited research interest has been given to develop appropriate strengthening methods for the PHCSs with openings. The Near Surface Mounted (NSM) strengthening technique is among the practical and feasible solutions to rehabilitate or enhance the performance of these PHCSs. This paper demonstrates a Finite Element (FE) analysis technique to predict the responses of the PHCSs with openings, either unstrengthened or strengthened with NSM strips. The Concrete Damage Plasticity (CDP) model was successfully implemented to model the non-linear behaviour of concrete. The prestressing transmission length and the bond behaviour between the epoxy adhesive and concrete interfaces were put into practice. Acceptable agreements were found, upon validating the FE analysis results against the experimental data available in the literature. Maximum differences, compared to the experimentally attained results in the ultimate loads and the corresponding deformations of nearly 4% and −8.4%, respectively, were detected. An extensive parametric study was executed to assess the effect of various parameters on the overall behaviour of the examined slabs. The PHCS cross-sectional shape, CFRP reinforcement percentage, average precompression, opening location and size and the concrete compressive strength were taken as parameters. Above all, a gap of knowledge exits regarding the presence of design guidelines that evaluate reductions in the ultimate capacities of the PHCSs associated with the presence of openings at multiple locations along their spans and improvements experienced by employing the NSM strengthening technique. This could be bridged by utilizing the suggested modelling approach and the parametric study results in this research.
机译:由于经济效益,预应力空心核心板(PHCSS)已广泛应用于建筑业。在他们的使用寿命期间,可能会出现沿着他们的跨境所在的更改。恢复或改善原始可用性和电阻的强化技术变得不可或缺。已经有限的研究兴趣为具有开口的PHCS制定适当的加强方法。近表面安装(NSM)强化技术是恢复或增强这些PHCSS的性能的实用和可行的解决方案之一。本文演示了有限元(Fe)分析技术,以预测具有开口的PHCSS的响应,无论是未经nSM条带强化还是加强。成功实施了混凝土损伤可塑性(CDP)模型以模拟混凝土的非线性行为。预应力传动长度和环氧粘合剂和混凝土界面之间的粘合行为进行实践。在验证FE分析结果时发现可接受的协议,以防止文献中可用的实验数据。与实验达到的最大载荷的结果相比,最大差异分别检测到极限载荷的最终载荷和相应变形,分别近4%和-8.4%。执行了广泛的参数研究以评估各种参数对所检查板坯的整体行为的影响。 PHCS横截面形状,CFRP增强百分比,平均预压,打开位置和尺寸和混凝土抗压强度作为参数。最重要的是,知识的差距对设计指导的存在,这些指导方针评估了在沿着它们的跨越多个地点存在的开口相关的PHCS的最终能力的减少和通过采用NSM加强技术所经历的改进。这可以通过利用建议的建模方法和参数研究导致这项研究来弥合。

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