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Seismic performance of prefabricated high-strength concrete tube column-steel beam joints

机译:预制高强混凝土管柱-钢梁节点的抗震性能

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摘要

This study proposes a new type of fabricated hybrid frame structure, which is a prefabricated high-strength concrete tube column-steel beam joint hybrid frame structure. A series of six full-scale cruciform prefabricated high-strength concrete tube column-H-shaped beam joint specimens was tested under cyclic loading to investigate the seismic performance of the new fabricated hybrid frame structure. We designed the connection in the manner that the capacity of beam was higher than that of the column. The cracking pattern, failure modes, energy dissipation capacity, and strain profiles of the specimens were obtained and discussed. The test results showed that some specimens collapsed due to ring plate tearing failure and weld fracture, while other specimens collapsed due to column flexural failure. Shear connectors (i.e. shear studs and shear reinforcement) could ensure the reliable transmission of shear force, and the compound stirrups can effectively improve bearing capacity and joint ductility. The stiffness degradation of specimens was smooth with a linearly decreasing trend because of the prestressed reinforcement. The new joints could be applied in a seismic region.
机译:本研究提出了一种新型的预制混合框架结构,即一种预制的高强度混凝土管柱-钢梁节点混合框架结构。在循环载荷下测试了一系列六个完整的十字形预制高强度混凝土管柱-H形梁节点标本,以研究新型混合框架结构的抗震性能。我们设计连接的方式是使梁的承载能力大于柱的承载能力。获得并讨论了试样的破裂模式,破坏模式,能量耗散能力和应变曲线。测试结果表明,一些试样由于环板撕裂失效和焊缝断裂而塌陷,而另一些试样则由于柱弯曲失效而塌陷。剪力连接件(即剪力钉和剪力筋)可以确保可靠地传递剪力,复合箍筋可以有效地提高承载力和接头延性。试样的刚度退化是平滑的,并且由于预应力而呈线性下降的趋势。新的接头可以应用于地震区域。

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