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Shear Capacity of Open Sandwich Steel Plate-Concrete Composite Slab: Experimental and Analytical Studies

机译:开放式夹层钢板混凝土复合板剪切能力:实验和分析研究

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Considering that the fixed crack model by default of the general finite element software was unable to simulate the shear softening behavior of concrete in the actual situation, a rotational crack model based on the modified compression field theory developed by UMAT (user material) of ABAQUS software was proposed and applied to the nonlinear analysis, and a numerical simulated model for the steel-concrete composite slab was built for shear analysis. Experimental studies and numerical analyses were used to investigate the shear load-carrying capacity, deformation, and crack development in steel plate-concrete composite slab, as well as the effects of the shear span ratio and shear stud spacing on the shear performance and the contribution of the steel plate and the concrete to the shear performance. Shear capacity tests were conducted on three open sandwich steel plate-concrete composite slabs and one plain concrete slab without a steel plate. The results indicated that the shear-compression failure mode occurred primarily in the steel plate-concrete composite slab and that the steel plate sustained more than 50% of the total shear force. Because of the combination effect of steel plate, the actual shear force sustained by the concrete in the composite slab was 1.27 to 2.22 times greater than that of the calculated value through the Chinese Design Code for Concrete Structures (GB 50010-2010). Furthermore, the shear capacity of the specimen increases by 37% as the shear stud spacing decreases from 250?mm to 150?mm. By comparing the shear capacity, the overall process of load deformation development, and the failure mode, it was shown that the simulation results corresponded with the experimental results. Furthermore, the numerical simulation model was applied to analyze the influence of some factors on composite slab, and a formula of shear bearing capacity of slab was obtained. The results of the formula agreed with the test result, which could provide references to the design and application of steel plate-concrete composite slab.
机译:考虑到固定裂缝模型违约的一般有限元软件无法模拟混凝土在实际情况下的剪切软化行为,基于Abaqus软件UMAT(用户材料)开发的改进压缩场理论的旋转裂纹模型提出并应用于非线性分析,建立了钢混凝土复合板的数值模拟模型进行剪切分析。实验研究和数值分析用于研究钢板 - 混凝土复合板中的剪切承载能力,变形和裂纹开发,以及剪切跨度比对剪切性能的影响和剪切螺旋间距以及贡献钢板和混凝土到剪切性能。剪切容量测试是在三个开放式夹层钢板 - 混凝土复合板上进行的,没有钢板的普通混凝土板。结果表明,剪切压缩失效模式主要发生在钢板 - 混凝土复合板中,钢板持续超过总剪切力的50%。由于钢板的组合效果,通过对混凝土结构的中国设计代码(GB 50010-2010),混凝土中混凝土维持的实际剪切力量为1.27至2.22倍(GB 50010-2010)。此外,随着剪切螺柱间距从250Ω·mm减小,样品的剪切容量增加了37%。通过比较剪切容量,负载变形开发的整体过程以及失效模式,结果表明,模拟结果与实验结果相对应。此外,应用数值模拟模型来分析复合板上一些因素的影响,得到板坯的剪切承载力的公式。该公式的结果同意测试结果,可以提供对钢板 - 混凝土复合板的设计和应用的参考。

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