THE STRUCTURAL AND CONSTRUCTION PERFORMANCES OF A LARGE-SPAN HALF STEEL-PLATE-REINFORCED CONCRETE HOLLOW ROOF

IF 1.7 3区 工程技术 Q3 CONSTRUCTION & BUILDING TECHNOLOGY
M. Diao, Yi Li, Xinzheng Lu, H. Guan, Yun-Lun Sun
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引用次数: 0

Abstract

This paper proposes a new large span half steel-plate-reinforced concrete (H-SC) hollow roof structure for nuclear power plants. The roof composes of 23 I-shaped H-SC beams. Each H-SC beam consists of a steel plate assembly (a bottom plate, a web plate and a short top plate), which is cast inside an I-shaped reinforced concrete beam. This novel system not only has an equivalently high bearing capacity, stiffness and lower gravity load comparing with conventional RC roof, but also can be conveniently constructed by using the bottom plates as formworks. The numerical simulation was conducted to demonstrate its mechanical capacities and the influence of construction process. Firstly, a finite element (FE) model for the H-SC composes was built and a one-third scaled 12 meters large-span H-SC beam was tested to validate the proposed FE model and analyze the steel-concrete-interface bond-slip. Then, the numerical simulation was conducted to assess the effect of the construction process on the mechanical performance of the entire roof structure, in which the deactivation element and trace element techniques were used to simulate the deformation induced by the construction process. The results show that the deflection induced by the construction process accounts for 87% of the final deflection.
大跨度半钢板-钢筋混凝土空心屋面结构及施工性能研究
提出了一种新型的核电厂大跨度半钢板-钢筋混凝土(H-SC)空心屋面结构。屋顶由23根i形H-SC梁组成。每根H-SC梁由钢板组件(底板、腹板和短顶板)组成,浇筑在工字钢筋混凝土梁内。该系统不仅具有与传统RC屋面同等高的承载力、刚度和较低的重力荷载,而且可以方便地使用底板作为模板进行施工。通过数值模拟验证了其力学性能及施工过程的影响。首先,建立了H-SC组合物的有限元模型,并对1 / 3比例的12 m大跨度H-SC梁进行了试验验证,并对钢-混凝土界面粘结滑移进行了分析。然后,采用失活单元和微量元素技术模拟施工过程引起的变形,进行数值模拟,评估施工过程对整个屋面结构力学性能的影响。结果表明,施工过程引起的挠度占最终挠度的87%。
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来源期刊
Advanced Steel Construction
Advanced Steel Construction CONSTRUCTION & BUILDING TECHNOLOGY-ENGINEERING, CIVIL
CiteScore
2.60
自引率
29.40%
发文量
0
审稿时长
6 months
期刊介绍: The International Journal of Advanced Steel Construction provides a platform for the publication and rapid dissemination of original and up-to-date research and technological developments in steel construction, design and analysis. Scope of research papers published in this journal includes but is not limited to theoretical and experimental research on elements, assemblages, systems, material, design philosophy and codification, standards, fabrication, projects of innovative nature and computer techniques. The journal is specifically tailored to channel the exchange of technological know-how between researchers and practitioners. Contributions from all aspects related to the recent developments of advanced steel construction are welcome.
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