叠合板整体组合梁火灾全过程承载力研究

IF 4 3区 工程技术 Q1 CONSTRUCTION & BUILDING TECHNOLOGY Steel and Composite Structures Pub Date : 2021-01-01 DOI:10.12989/SCS.2021.38.1.087
Junli Lyu, Zhou Shengnan, Chen Qichao, Yong Wang
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引用次数: 2

摘要

为研究叠合板整体组合梁在火灾过程中的破坏形式、抗弯刚度和剩余承载力,对4根叠合板整体组合梁进行了恒载增温下的火灾试验。防火试验中考虑了后浇层厚度、预制底板搭接长度、柱钉间距等因素。试验结果表明,在相同的火灾时间和外荷载作用下,后浇层厚度和柱钉间距是影响叠合板整体组合梁耐火性能的重要参数。同样,后浇层厚度和柱钉间距是影响叠合板整体组合梁火灾后抗弯刚度的主要因素。叠合板整体组合梁火灾后的破坏形式与常温下的破坏形式基本相同。在这两种情况下,梁都经历了弯曲破坏。高温火灾后,叠合板整体组合梁出现裂缝的时间提前,残余承载力和抗弯刚度均有不同程度的降低。在本次试验中,叠合板单片组合梁火灾后的抗弯承载力和延性分别比室温下试验降低了23.3%和55.4%。提出了火灾中和火灾后叠合板整体组合梁残余承载力和抗弯刚度的计算方法,具有较好的精度。
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The bearing capacity of monolithic composite beams with laminated slab throughout fire process
To investigate the failure form, bending stiffness, and residual bearing capacity of monolithic composite beams with laminated slab throughout the fire process, fire tests of four monolithic composite beams with laminated slab were performed under constant load and temperature increase. Different factors such as post-pouring layer thickness, lap length of the prefabricated bottom slab, and stud spacing were considered in the fire test. The test results demonstrate that, under the same fire time and external load, the post-pouring layer thickness and stud spacing are important parameters that affect the fire resistance of monolithic composite beams with laminated slab. Similarly, the post-pouring layer thickness and stud spacing are the predominant factors affecting the bending stiffness of monolithic composite beams with laminated slab after fire exposure. The failure forms of monolithic composite beams with laminated slab after the fire are approximately the same as those at room temperature. In both cases, the beams underwent bending failure. However, after exposure to the high-temperature fire, cracks appeared earlier in the monolithic composite beams with laminated slab, and both the residual bearing capacity and bending stiffness were reduced by varying degrees. In this test, the bending bearing capacity and ductility of monolithic composite beams with laminated slab after fire exposure were reduced by 23.3% and 55.4%, respectively, compared with those tested at room temperature. Calculation methods for the residual bearing capacity and bending stiffness of monolithic composite beams with laminated slab in and after the fire are proposed, which demonstrated good accuracy.
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来源期刊
Steel and Composite Structures
Steel and Composite Structures 工程技术-材料科学:复合
CiteScore
8.50
自引率
19.60%
发文量
0
审稿时长
7.5 months
期刊介绍: Steel & Composite Structures, An International Journal, provides and excellent publication channel which reports the up-to-date research developments in the steel structures and steel-concrete composite structures, and FRP plated structures from the international steel community. The research results reported in this journal address all the aspects of theoretical and experimental research, including Buckling/Stability, Fatigue/Fracture, Fire Performance, Connections, Frames/Bridges, Plates/Shells, Composite Structural Components, Hybrid Structures, Fabrication/Maintenance, Design Codes, Dynamics/Vibrations, Nonferrous Metal Structures, Non-metalic plates, Analytical Methods. The Journal specially wishes to bridge the gap between the theoretical developments and practical applications for the benefits of both academic researchers and practicing engineers. In this light, contributions from the practicing engineers are especially welcome.
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