加固自密实混凝土梁在加固前后高温下的受弯性能

IF 0.9 Q4 CONSTRUCTION & BUILDING TECHNOLOGY
B. Sachin, N. Suresh
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引用次数: 0

摘要

目的研究高温对钢筋自密实混凝土梁承载力的影响,以及GFRP加固后劣化梁的性能。暴露在持续高温下并测试抗弯承载能力的加固梁。进一步恶化的梁(暴露在500°C至800°C的温度下)通过采用GFRP板进行改造而重新加固。设计/方法/方法调查包括混凝土样本,即150个立方体 mm,尺寸为150的圆柱体 直径mm,带300 mm高,梁为150×150×1100 mm,根据IS 456–2000用最小抗拉钢筋加固。将试样置于300°C至800°C的高温下,时间间隔为100°C,持续2 h.对改造前后梁的残余抗压强度、弹性模量、初裂荷载和梁的5mm挠度承载力进行了测定。结果表明,在300°C时残余抗压强度增加,超过300°C后残余抗压强度降低。随着温度的升高,梁的弹性模量、初裂荷载和承载能力不断降低。在500°C–800°C的温度范围内,梁的承载能力从27.55%下降到38.77%,在对受损梁进行改造后,承载能力提高到24.48%。独创性/价值当试样因温度升高而受损时,使用GFRP板进行改造可观察到更好的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Flexural behaviour of reinforced self compacting concrete beams subjected to elevated temperature before and after retrofitting
Purpose The purpose of the paper is to study the effect of elevated temperature on load carrying capacity of reinforced self compacting concrete beams and the performance of deteriorated beams after retrofitting by GFRP sheets. The reinforced beams which were exposed to sustained elevated temperature and tested for flexural load-carrying capacity. Further deteriorated beams (exposed from 500°C to 800°C) were re-strengthened by adopting retrofitting with GFRP sheets. Design/methodology/approach The investigation includes the concrete specimens, i.e. cubes of 150 mm, cylinders of size 150 mm dia with 300 mm height and beams of 150 × 150 × 1,100 mm, reinforced with minimum tension reinforcement according to IS 456–2000. The specimens were subjected to elevated temperature from 300°C to 800°C with an interval of 100°C for 2 h. The residual compressive strength, modulus of elasticity, load at first crack of beams and load-carrying capacity of beams for 5-mm deflection were measured before and after retrofitting. Findings The result shows that there is a gain in residual compressive strength at 300°C and beyond which it decreases. The modulus of elasticity, load at first crack and load-carrying capacity of beams reduces continuously with an increase in temperature. The decrease in load-carrying capacity of beams is observed from 27.55% and up to 38.77% between the temperature range of 500°C–800°C and after the retrofitting of distressed beams, the load carrying capacity increases up to 24.48%. Originality/value Better performance was observed with retrofitting by GFRP sheets when the specimens were distressed due to elevated temperatures.
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来源期刊
Journal of Structural Fire Engineering
Journal of Structural Fire Engineering CONSTRUCTION & BUILDING TECHNOLOGY-
CiteScore
2.20
自引率
10.00%
发文量
28
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