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Experimental Evaluation of PSC Structures from FRP with a Prestressing Strengthening Method

机译:PSC结构与预应力强化法的PSC结构的实验评价

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摘要

A prestressed concrete (PSC) structure is subject to prestress losses in the long and short terms, and the structure ages over time. The structure is susceptible to corrosion from exposure to environmental factors such as moisture, chloride, and carbonation, thus causing prestress loss. Therefore, strengthening the structure is needed to address this problem. Here, the near surface mounted (NSM) method and the external prestressing (EP) method were selected because they are capable of applying additional prestressing. Further, we used fiber-reinforced plastics or polymers, or carbon fiber-reinforced plastics or polymers because of their high tensile strength and noncorrosive properties. For EP tests, prestressed strands were used. Accordingly, this study performs four-point flexural tests and evaluations for 12 types of specimens fabricated with different PSC methods. All specimens fabricated with the NSM (prestressing, no prestressing) and EP methods achieved stiffness that was 50–60% higher than that of the control PSC specimen. It was observed that the EP method in conjunction with prestressing yielded the best strengthening effect. It is expected that the results of this study will be applied to real structures for strengthening them and improving their performances.
机译:预应力的混凝土(PSC)结构在长短短期和短期下进行预应力损失,并且随着时间的推移,结构年龄段。这些结构易于从暴露于水分,氯化物和碳化等环境因素的腐蚀的影响,从而引起预应力损失。因此,需要强化结构来解决这个问题。这里,选择近表面安装(NSM)方法和外部预应力(EP)方法,因为它们能够施加额外的预应力。此外,由于其高拉伸强度和非腐蚀性,我们使用纤维增强塑料或聚合物或碳纤维增强塑料或聚合物。对于EP测试,使用预应力的股线。因此,该研究对由不同PSC方法制造的12种类型的标本进行四点弯曲试验和评估。所有标本用NSM(预应力,没有预应力)和EP方法制造的刚度比对照PSC样本高50-60%的刚度。观察到,与预应力结合的EP方法产生了最佳的强化效果。预计本研究的结果将应用于实际结构,以加强它们,提高性能。

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