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体外预应力纤维增强聚合物筋加固单向混凝土板的抗弯性能及应力计算

Flexural Performance and Stress Calculation of External Prestressed Fiber-Reinforced Polymer-Bar-Strengthened One-Way Concrete Slabs.

作者信息

Fang Dong, Gao Danying, Ding Chong, Gu Zhiqiang, You Peibo, Tang Jiyu

机构信息

School of Civil Engineering, Zhengzhou University, Zhengzhou 450001, China.

School of Water Conservancy and Transportation, Zhengzhou University, Zhengzhou 450001, China.

出版信息

Materials (Basel). 2024 Feb 29;17(5):1130. doi: 10.3390/ma17051130.

Abstract

External prestressing is widely employed in structural strengthening engineering due to its numerous advantages. However, external prestressed steel bars are prone to corrosion when exposed to the service environment. This paper is dedicated to examining the use of fiber-reinforced polymer (FRP) bars as external prestressing materials to strengthen one-way concrete slabs. Five one-way concrete slabs were strengthened with externally prestressed FRP bars with different prestress levels and different amounts of FRP bars, while one non-strengthened slab was used for comparison. The effects of strengthening on the flexural behavior, specifically the cracking load, ultimate load, stiffness and failure mode, were analyzed systematically. Moreover, the ductility and cost-benefit optimizing properties of the reinforcing design were discussed. The results show that external prestressed FRP bars significantly improve the cracking load, ultimate load and stiffness of one-way concrete slabs. The absence of a bond between the concrete and FRP bars overcomes the brittleness of the FRP bars, while the strengthened slabs exhibit satisfactory ductility and a higher post-yield stiffness and bearing capacity. Additionally, the cost/benefit ratio is optimized by increasing the prestress level, while a higher number of prestressed FRP bars is beneficial to ductility. Finally, a method for calculating the stress in prestressed FRP bars at ultimate loads was proposed. Irrespective of the prestressing material, this method is applicable to both strengthened beams and one-way slabs.

摘要

由于具有诸多优点,体外预应力在结构加固工程中得到广泛应用。然而,体外预应力钢筋暴露在使用环境中时容易腐蚀。本文致力于研究使用纤维增强聚合物(FRP)筋作为体外预应力材料来加固单向混凝土板。用不同预应力水平和不同数量的FRP筋对五块单向混凝土板进行体外预应力加固,同时使用一块未加固的板作为对照。系统分析了加固对弯曲性能的影响,特别是开裂荷载、极限荷载、刚度和破坏模式。此外,还讨论了加固设计的延性和成本效益优化特性。结果表明,体外预应力FRP筋显著提高了单向混凝土板的开裂荷载、极限荷载和刚度。混凝土与FRP筋之间不存在粘结,克服了FRP筋的脆性,加固后的板具有令人满意的延性以及较高的屈服后刚度和承载力。此外,通过提高预应力水平可优化成本效益比,而增加预应力FRP筋的数量有利于提高延性。最后,提出了一种计算极限荷载下预应力FRP筋应力的方法。无论预应力材料如何,该方法适用于加固梁和单向板。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ceca/10934112/ef172131f72a/materials-17-01130-g001.jpg

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