折叠镙栓剪力连接结构行为的实验和数值研究

Yang Huang, Shiming Chen, P. Gu
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摘要

通过在钢镙钉中引入折角,提出了一种新型复合镙钉剪力连接器。设计并实验研究了四个推出试件和两个复合梁试件。研究了复合折榫剪力连接的结构行为和破坏机理。在推出和弯曲试验中都观察到了混凝土破坏,折叠钢镙钉能够屈服发展。研究发现,镙钉间距较密的试件的承载能力和剪切刚度高于镙钉间距较疏的试件,但镙钉间距较密的试件的延性和变形性能低于镙钉间距较疏的试件。通过有限元模型模拟,分析了混凝土板的强度和厚度、钢镙钉的强度、厚度和折角对折镙钉剪力连接力学性能的影响。由于实际有效剪切面积和承载力较大,折角可确定为 20°。在对钢筋破坏、混凝土剪切破坏和混凝土撬出等三种可能破坏模式进行承载力分析的基础上,提出并验证了折榫剪力连接的抗剪承载力计算公式。计算公式的计算结果与试验结果吻合良好。对于复合梁,通过变换截面法和塑性截面法得出的弯矩计算结果与试验值也十分吻合。建议剪切连接度应大于 1,以实现全复合梁。
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Experimental and numerical study on structural behavior of folded dowel shear connection
A new type composite dowel shear connector was proposed by introducing folded angles in the steel dowels. Four push-out specimens and two composite beam specimens were designed and experimentally studied. The structural behavior and failure mechanism of the composite folded dowel shear connection were investigated. The concrete failure was observed in both push-out and flexural tests, and the folded steel dowels were capable of yielding development. It is found that the bearing capacity and shear stiffness of the specimens with denser spacing dowels were higher than that of specimens with sparser dowels, but the ductility and deformation performance of the specimens with denser spacing dowels were lower than those with sparser dowels. By means of the finite element model simulation, the influence of strength and thickness of concrete slab, strength, thickness and folded angle of steel dowel on the mechanical properties of folded dowel shear connection were analysed. The folded angle could be determined as 20° because of the larger actual effective shear area and bearing capacity. Based on the bearing capacity analysis in terms of the three likely failure modes, such as steel failure, concrete shear failure and concrete pry-out, calculation formula of the shear bearing capacity of the folded dowel shear connection was put forward and verified. The calculated results by the proposed formula were in good agreement with the test results. For the composite beams, the calculated bending moments derived from the transformed section and the plasticity section methods were also in good agreement with the test values. It is suggested that the shear connection degree should be greater than 1 to enable a full composite beam.
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