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Compression-bend-shearing performance of column-to-column bolted-flange connections in prefabricated multi-high-rise steel structures

机译:预制多层高层钢结构中柱对柱螺栓-法兰连接的压弯剪切性能

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The bolted-flange connection is used to connect rectangular HSS columns in prefabricated multi-story and high-rise steel structures. It may subject to coexisting axial compression, bending moments and shearing under the combination of dead, live, wind loads or earthquake action. The bearing performance is different from that of bolted-flange connections used in pipelines, towers and mast structures. To investigate the bearing performance of a connection subjected to coexisting compression, bending moments and shearing, static tests and a finite element analysis (FEA) were applied to 12 column-to-column bolted-flange connections with different flange thicknesses, bolt edge distances, flange edge widths and bolt hole diameters, as well as one column without connection. The effects of flange thickness, bolt edge distance, flange edge width, and bolt hole diameter on the stiffness and strength of connections, bolt tension levels, and contact forces between flanges were obtained as well as effects on the failure mode and mechanisms of the connections. Flange thickness was found to have a considerable impact on the performance of connections, while the bolt edge distance and flange edge width were found to have a lesser effect. The FEA results agree well with the test results, verifying the finite element model (FEM). Some performance results that could not be obtained through testing were obtained. Based on yield line theory and T-stub analogies, the load transfer mechanism of bolted-flange connections was obtained and formulas for yield-bearing capacity are proposed. The results obtained from the formulas agree well with the test and FEA results.
机译:螺栓法兰连接用于连接预制的多层和高层钢结构中的矩形HSS柱。在静载荷,活载荷,风载荷或地震作用的共同作用下,它可能会同时承受轴向压缩,弯矩和剪切力。轴承性能不同于管道,塔架和桅杆结构中使用的螺栓法兰连接。为了研究在压缩,弯曲力矩和剪切力共同作用下的连接的轴承性能,将静力试验和有限元分析(FEA)应用于12种不同法兰厚度,螺栓边缘距离的柱-柱螺栓-法兰连接,法兰边缘宽度和螺栓孔直径,以及一列无连接。获得了法兰厚度,螺栓边缘距离,法兰边缘宽度和螺栓孔直径对连接的刚度和强度,螺栓张力水平以及法兰之间的接触力的影响,以及对连接的失效模式和机理的影响。 。发现法兰厚度对连接性能有相当大的影响,而螺栓边缘距离和法兰边缘宽度影响较小。 FEA结果与测试结果非常吻合,验证了有限元模型(FEM)。获得了一些无法通过测试获得的性能结果。基于屈服线理论和T型短管的类比,获得了螺栓法兰连接的载荷传递机理,并提出了屈服承载力的公式。从公式获得的结果与测试和FEA结果非常吻合。

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