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首页> 外文期刊>Journal of structural engineering >Stiffness and Deflection of Steel-Concrete Composite Beams under Negative Bending
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Stiffness and Deflection of Steel-Concrete Composite Beams under Negative Bending

机译:负弯曲作用下钢混凝土组合梁的刚度和挠度

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摘要

Compared with simply supported beams, continuous steel-concrete composite beams have many advantages such as higher span/depth ratio, less deflection, and higher fundamental frequency of vibration due to its higher stiffness. However, in negative bending regions near interior supports, tension in concrete is unfavorable and a complicated issue, which deserves a special study. In this paper, a mechanics model based on elastic theory was established to investigate the stiffness of composite beams in negative bending regions by considering slips at the steel beam-concrete slab interface and concrete-reinforcement interface. In order to validate this approach, a test of three composite beams with profiled sheeting under negative bending was conducted. Meanwhile, a three-dimensional nonlinear finite element (FE) analysis was conducted to investigate the general behavior of the tested specimens. In addition, a comparative analysis between results derived from the analytical model, laboratory test, and FE analysis was performed. The results show that slip always exists for composite beams under negative bending even with complete shear connection (full composite action) between the steel and concrete components. The slip effect results in an additional curvature of beam bending and reduces the section stiffness by 10-20 percent compared with that of a beam without any slip in serviceability condition. This reduction should be considered in designing process especially for cantilever beams. Formulae under other loading cases and boundary conditions were also proposed. The results can serve as a basis for further study on stiffness of continuous steel-concrete composite beams and can directly be used for the deflection calculation of cantilever beams.
机译:与简支梁相比,连续钢-混凝土组合梁由于具有较高的刚度而具有许多优势,例如跨度/深度比更高,挠度较小以及振动的基本频率更高。但是,在内部支撑附近的负弯曲区域,混凝土中的张力是不利的且是一个复杂的问题,值得进行特殊研究。本文建立了一种基于弹性理论的力学模型,通过考虑钢梁-混凝土板界面和混凝土-钢筋界面处的滑移来研究负弯曲区域中组合梁的刚度。为了验证这种方法,在负弯曲下进行了三个带有异型板的复合梁的测试。同时,进行了三维非线性有限元(FE)分析,以研究被测样品的一般性能。此外,还对分析模型,实验室测试和有限元分析得出的结果进行了比较分析。结果表明,即使在钢构件和混凝土构件之间具有完全的剪切连接(完全的复合作用)下,复合梁在负弯曲下也始终存在滑移。与在使用条件下没有滑动的梁相比,滑动效果导致梁弯曲的附加曲率并使截面刚度降低了10%至20%。在设计过程中应特别考虑这种减小,特别是对于悬臂梁。还提出了在其他荷载工况和边界条件下的公式。计算结果可为进一步研究钢-混凝土连续组合梁的刚度提供依据,并可直接用于悬臂梁的挠度计算。

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