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Experimental Investigation of Beam-Column Joints with Cast Steel Stiffeners for Progressive Collapse Prevention

机译:铸钢加强型散射柱接头进行渐进式塌陷防治试验研究

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A full-scale experimental study was carried out on a two-story steel frame to investigate the progressive collapse behavior of beam-column joints with cast steel stiffeners (CSS). The frame was divided into four vertical sections, and each section had a specific joint arrangement of (1) joints with CSS and (2) welded joints without stiffeners. Seven loads of increasing magnitude were applied to the frame. In each section, one of the columns had a device at the base that could be removed and replaced to simulate the failure and repair of this column; this column is referred to as an adjustable column. Strain changes and displacements were monitored during column removal. Moreover, three types of finite-element models were developed to simulate the test frame. The results showed that compared to a welded joint without stiffeners, joints with CSS reduced the strain change and deformation of the frame, as well as the dynamic strain magnification factor of strain change; concrete slabs played a significant role during the load redistribution in the sudden failure of the adjustable column. (c) 2019 American Society of Civil Engineers.
机译:在两层钢架上进行全规模的实验研究,以研究梁柱接头与铸钢加强件(CSS)的渐进塌陷行为。将框架分成四个垂直部分,每个部分具有(1)接头的特定接头布置,其中(2)焊接接头没有加强件。将七个增加幅度的幅度施加到框架上。在每个部分中,其中一个列在基础上有一个设备,可以删除并替换以模拟该列的故障和修复;此列被称为可调列。在柱移除期间监测应变变化和位移。此外,开发了三种类型的有限元模型来模拟测试框架。结果表明,与没有加强筋的焊接接头相比,具有CSS的关节降低了框架的应变变化和变形,以及应变变化的动态应变放大系数;在可调柱突然失效的负载再分布过程中,混凝土板在载荷再分布过程中发挥了重要作用。 (c)2019年美国土木工程学会。

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