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首页> 外文期刊>Journal of structural fire engineering >Flexural behavior of fire damaged self-compacting concrete beams strengthened with fiber reinforced polymer (FRP) wrapping
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Flexural behavior of fire damaged self-compacting concrete beams strengthened with fiber reinforced polymer (FRP) wrapping

机译:用纤维增强聚合物(FRP)包装强化防火损坏自压式混凝土梁的弯曲行为

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摘要

Purpose - Building elements that are damaged by fire are often strengthened by fiber wrapping techniques. Self-compacting concrete (SCC) is an advanced building material that is widely used in construction due to its ability to flow and pass through congested reinforcement and fill the required areas easily without compaction. The aim of the research work is to examine the flexural behavior of SCC subjected to elevated temperature. This research work examines the effect of natural air cooling (AC) and water cooling (WC) on flexural behavior of M20, M30, M40 and M50 grade fire-affected retro-fitted SCC. The results of the investigation will enable the designers to choose the appropriate repair technique for improving the service life of structures. Design/methodology/approach - In this study, an attempt has been made to evaluate the flexural behavior of fire exposed reinforced SCC beams retrofitted with laminates of carbon fiber reinforced polymer (CFRP), basalt fiber reinforced polymer (BFRP) and glass fiber reinforced polymer (GFRP). Beam specimens were cast with M20, M30, M40 and M50 grades of SCC and heated to 925°C using an electrical furnace for 60 min duration following ISO 834 standard fire curve. The heated SCC beams were cooled by either natural air or water spraying. Findings - The reduction in the ultimate load carrying capacity of heated beams was about 42 % and 55 % for M50 grade specimens that were cooled by air and water, respectively, in comparison with the reference specimens. The increase in the ultimate load was 54%, 38% and 27% for the specimens retrofitted with CFRP, BFRP and GFRP, respectively, compared with the fire-affected specimens cooled by natural air. Water-cooled specimens had shown higher level of damage than the air-cooled specimens. The specimens wrapped with carbon fiber could able to improve the flexural strength than basalt and glass fiber wrapping. Originality/value - SCC, being a high performance concrete, is essential to evaluate the performance under fire conditions. This research work provides the flexural behavior and physical characteristics of SCC subjected to elevated temperature as per ISO rate of heating. In addition attempt has been made to enhance the flexural strength of fire-exposed SCC with wrapping using different fibers. The experimental data will enable the engineers to choose the appropriate material for retrofitting.
机译:目的 - 火灾损坏的建筑元素通常通过光纤包装技术加强。自压力混凝土(SCC)是一种先进的建筑材料,由于其流动和通过拥挤的加固和填充所需区域而无需压实,因此是一种先进的建筑材料。研究工作的目的是检查受温度升高的SCC的弯曲行为。该研究工作检测了天然气冷却(AC)和水冷却(WC)对M20,M30,M40和M50级的抗弯曲行为的影响。调查结果将使设计人员能够选择适当的修复技术,以改善结构的使用寿命。设计/方法/方法 - 在本研究中,已经尝试评估了用碳纤维增强聚合物(CFRP),玄武岩纤维增强聚合物(BFRP)和玻璃纤维增​​强聚合物的层压板改装的抗火曝光强化SCC梁的弯曲行为(GFRP)。梁样本用M20,M30,M40和M50等级铸造SCC,并使用电炉加热至925°C,持续60分钟,持续60分钟后,持续时间为834标准火灾曲线。通过天然空气或喷水冷却加热的SCC束。结果 - 与参考标本相比,通过空气和水冷却的M50级样品的最终载荷承载能力的降低约为42%和55%。与通过天然空气冷却的受火灾影响的样品相比,最终载荷的增加分别为CFRP,BFRP和GFRP的试样为54%,38%和27%。水冷的标本显示比空气冷却的标本更高的损坏。用碳纤维包裹的标本可以提高比玄武岩和玻璃纤维包装的弯曲强度。原创性/值 - SCC是一种高性能混凝土,对于评估火灾条件下的性能至关重要。该研究工作提供了根据ISO加热速率的升高温度的SCC的弯曲行为和物理特性。此外,已经尝试提高了用不同纤维包装的燃烧SCC的弯曲强度。实验数据将使工程师能够选择适当的改装材料。

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