Study on fire resistance of a prefabricated reinforced concrete frame structure

IF 0.9 Q4 CONSTRUCTION & BUILDING TECHNOLOGY Journal of Structural Fire Engineering Pub Date : 2021-05-18 DOI:10.1108/JSFE-12-2020-0039
Shufeng Li, Zhang Jiaolei, D. Zhao, L. Deng
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引用次数: 5

Abstract

Purpose This study aims to further study the fire resistance of prefabricated concrete beam-column joints with end-plate connection. This paper aims to analyze the fire resistance of this joint in prefabricated reinforced concrete frame structure (PRCS). Design/methodology/approach First, the accuracy of the model is verified by using the test data. Based on this, a refined finite element model of PRCS structure with two stories and two spans is established. The influence of four working conditions with different fire floors (positions) and different axial compression ratios on the deformation, failure and fire resistance of PRCS structure are analyzed. Findings The results show that under the four working conditions, the fire resistance of the PRCS structure under Condition 1 and Condition 2 is smaller. It shows that the beam deformation develops slowly in PRCS structure under four kinds of fire positions, and the large displacement emerges 60 min later, which is poles apart from that of prefabricated beam column members. With the increase of the fire time, the material is damaged and deteriorated, which leads to the eccentricity of the axial load, so that the column top appears large lateral displacement. Under the Conditions 1 and 3, the lateral displacement of the column gradually decreases as the axial compression ratio rises. Originality/value It is found that there is a distinct lack of researching on the fire resistance of prefabricated joints, and the existed research studies are limited to the fire resistance of members. Thus, it is necessary to strengthen the first floor and side column design of prefabricated frame structure.
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预制钢筋混凝土框架结构的耐火性能研究
目的本研究旨在进一步研究端板连接预制混凝土梁柱节点的耐火性能。本文旨在分析预制钢筋混凝土框架结构(PRCS)中该节点的耐火性能。设计/方法/途径首先,利用试验数据验证了模型的准确性。在此基础上,建立了两层两跨PRCS结构的精细有限元模型。分析了不同防火楼层(位置)和不同轴压比的四种工况对PRCS结构变形、失效和耐火性能的影响。结果表明,在四种工况下,PRCS结构在工况1和工况2下的耐火性能较小。结果表明,在四种火力位置下,PRCS结构的梁变形发展缓慢,出现较大位移60 min后,即与预制梁柱构件的支柱不同的支柱。随着火灾时间的增加,材料受到破坏和劣化,导致轴向荷载偏心,使柱顶出现较大的横向位移。在条件1和条件3下,柱的横向位移随着轴压比的升高而逐渐减小。原创性/价值研究发现,对预制节点的耐火性研究明显不足,现有的研究仅限于构件的耐火性。因此,有必要加强装配式框架结构的首层和侧柱设计。
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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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