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低成本玻璃纤维增强聚合物复合材料加固钢筋混凝土梁的试验与分析研究:与碳/剑麻纤维增强聚合物的比较

Experimental and Analytical Studies on Low-Cost Glass-Fiber-Reinforced-Polymer-Composite-Strengthened Reinforced Concrete Beams: A Comparison with Carbon/Sisal Fiber-Reinforced Polymers.

作者信息

Rodsin Kittipoom, Ejaz Ali, Hussain Qudeer, Parichatprecha Rattapoohm

机构信息

Center of Excellence in Structural Dynamics and Urban Management, Department of Civil and Environmental Engineering Technology, College of Industrial Technology, King Mongkut's University of Technology North Bangkok, Bangkok 10800, Thailand.

National Institute of Transportation, National University of Sciences and Technology (NUST), Islamabad 44000, Pakistan.

出版信息

Polymers (Basel). 2023 Oct 9;15(19):4027. doi: 10.3390/polym15194027.

Abstract

This study presents an experimental framework with seventeen beams to investigate the impact of loading type, configuration, and through-bolt anchorage on LC-GFRP (Low-Cost Glass-Fiber-Reinforced Polymer) confinement performance. Beams underwent three-point and four-point bending, with LC-GFRP applied in various ways, including U-shaped, side-bonded, and fully wrapped, with and without anchors. The performance of LC-GFRP was compared to CFRP (Carbon-Fiber-Reinforced Polymer) and sisal wraps. LC-GFRP in side-bonded and U-shaped configurations without anchors under three-point bending showed no shear failure, while those under four-point bending without anchors experienced shear failure. With anchors, U-shaped configurations successfully prevented shear failure. The side-bonded, U-shaped, and U-shaped configurations along the full span with anchors demonstrated peak capacity enhancements of 72.11%, 43.66%, and 68.39% higher improvements than the corresponding configurations without anchors, respectively. Wrapping all sides of the beam with LC-GFRP or CFRP prevented shear failure without additional anchors, with complete wrapping being the most efficient method. When anchors were used, significant capacity enhancements were observed. Existing shear strength prediction models were evaluated, highlighting the need for more tailored expressions for LC-GFRP confinement, especially for non-U-shaped configurations.

摘要

本研究提出了一个包含十七根梁的实验框架,以研究加载类型、配置和贯穿螺栓锚固对低成本玻璃纤维增强聚合物(LC-GFRP)约束性能的影响。梁进行了三点和四点弯曲试验,LC-GFRP以各种方式应用,包括U形、侧面粘贴和完全包裹,有无锚固。将LC-GFRP的性能与碳纤维增强聚合物(CFRP)和剑麻包裹材料进行了比较。在三点弯曲下,无锚固的侧面粘贴和U形配置的LC-GFRP未出现剪切破坏,而在四点弯曲下无锚固的LC-GFRP则出现了剪切破坏。有锚固时,U形配置成功防止了剪切破坏。侧面粘贴、U形以及沿全跨有锚固的U形配置分别显示出峰值承载力提高,比相应无锚固配置分别高出72.11%、43.66%和68.39%。用LC-GFRP或CFRP包裹梁的所有侧面可防止剪切破坏,无需额外锚固,完全包裹是最有效的方法。使用锚固时,观察到承载力显著提高。对现有的抗剪强度预测模型进行了评估,强调需要针对LC-GFRP约束制定更具针对性的表达式,特别是对于非U形配置。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/42b3/10575116/59cb961280b1/polymers-15-04027-g001.jpg

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