Repairing of One-Way Solid Slab Exposed to Thermal Shock Using CFRP: Experimental and Analytical Study

Fibers Pub Date : 2024-02-19 DOI:10.3390/fib12020018
Mousa Shhabat, Ahmed Ashteyat, Mu’tasim Abdel-Jaber
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Abstract

This research was conducted to investigate, experimentally, theoretically, and numerically, the use of CFRP materials for repairing a reinforced concrete one-way solid slab exposed to thermal shock. Nine slabs, measuring 1800 mm in length, 500 mm in width, and 100 mm in depth, were cast. Seven of these slabs underwent thermal shock at a temperature of 600 °C, rapidly cooled by immersion in water for 15 min. Three primary parameters were examined: the type of CFRP (rope, strip, and sheet), spacing (100 and 200 mm), and the number of sheet layers (one and two). The experimental results revealed a significant decrease of approximately 45.4% in the compressive strength of the concrete after exposure to thermal shock. The thermally shocked RC slab showed a reduction in ultimate capacity by 15.4% and 38.5% in stiffness compared to the control slab. The results underscored the efficacy of CFRP materials, with all repair configurations exhibiting a substantial increase in maximum load capacity and stiffness. Capacity enhancement ranged from 23.7% to 53.4%, while stiffness improvement ranged from 27.6% to 57.1%. Notably, all repair configurations effectively minimized the maximum deflection. This reduction in deflection ranged from 5.2% to 26% compared to the control slab. Numerical results demonstrated strong concurrence with experimental results for both capacity and deflection. The enhancement in capacity ranged from 0.7% to 10.4%, while deflection decreased within a range from 0.95% to 14.16% compared to experimental results.
使用 CFRP 修复受热冲击的单向实心板:实验与分析研究
本研究通过实验、理论和数值分析,对使用 CFRP 材料修复受到热冲击的钢筋混凝土单向实心板进行了研究。共浇铸了九块长 1800 毫米、宽 500 毫米、深 100 毫米的板。其中七块板承受了 600 °C 的热冲击,并在水中浸泡 15 分钟后迅速冷却。研究了三个主要参数:CFRP 的类型(绳状、条状和片状)、间距(100 毫米和 200 毫米)以及片状层数(一层和两层)。实验结果表明,暴露于热冲击后,混凝土的抗压强度大幅下降了约 45.4%。与对照板相比,热冲击 RC 板的极限承载力降低了 15.4%,刚度降低了 38.5%。结果凸显了 CFRP 材料的功效,所有修复配置都显示出最大承载能力和刚度的大幅提高。承载能力提高了 23.7% 至 53.4%,刚度提高了 27.6% 至 57.1%。值得注意的是,所有修复配置都有效地减少了最大挠度。与对照板相比,挠度减少了 5.2% 到 26%。在承载力和挠度方面,数值结果与实验结果非常吻合。与实验结果相比,承载力提高了 0.7% 至 10.4%,挠度降低了 0.95% 至 14.16%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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