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The Influence of Key Component Characteristic on the Resistance to Progressive Collapse of Composite Joint With the Concrete-Filled Steel Tubular Column and Steel Beam With Through Bolt-Extended Endplate

机译:通过螺栓延伸端板耐混凝土钢管柱和钢梁耐级复合接头逐步塌陷耐力塌陷的影响

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Finite element (FE) analysis of composite joint with the concrete-filled steel tubular (CFST) column and steel beam with through bolt-extended endplate was carried out in the case of progressive collapse in this paper. The reasonable constitutive model of steel plate, through bolt and core concrete materials under large deformation were selected, and the comprehensive fracture criterion and damage evolution path of ductile damage, shear damage and mixed damage modes based on stress triaxiality were considered in the steel constitutive structure, respectively. The accuracy of modeling method and material constitutive was verified by the comparison of the overall deformation processes, failure modes and resistances of joints with experimental results and FE results. A typical composite joint with the CFST column and steel beam with through bolt-extended endplate was designed, and four joints were derived for comparison by adjusting the diameter of through bolt and the thickness of extended endplate. The FE models of these five joints were established to investigate failure modes and resistance mechanisms by using ABAQUS/Explicit module. The results show that the failure modes of composite joint with the CFST column and steel beam with through bolt-extended endplate can be divided into three types: steel beam and through bolts failure, through bolts failure, and steel beam failure. The different strengths and weaknesses between the through bolt, extended endplate and steel beam affect the progressive collapse resistance of joint directly. With the increase of the diameter of through bolt and the thickness of extended endplate, the failure mode of joint gradually turns from through bolt failure to steel beam failure, and the resistance and ductility of joint are enhanced, the anti-progressive collapse ability of composite joint with CFST column and steel beam with through bolt-extended endplate increases.
机译:在本文进行逐渐塌陷的情况下,在累计填充钢管(CFST)柱和钢梁与螺栓延伸端板上的有限元(FE)分析。选择了钢板的合理本构模型,通过螺栓和芯混凝土材料在大变形下进行了钢板的综合性裂缝标准和基于应力三轴的局部损伤,剪切损伤和混合损伤模式的损伤演化路径, 分别。通过比较实验结果和Fe结果的整体变形过程,失效模式和接头的整体变形过程,失效模式和电阻来验证建模方法和材料本构型的准确性。设计了具有CFST柱和具有螺栓延伸端板的钢梁的典型复合接头,并通过调节通过螺栓的直径和延伸端板的厚度来获得四个接头。建立了这五个关节的FE模型,通过使用ABAQUS /明确模块来调查失效模式和电阻机制。结果表明,通过螺栓 - 延伸端板与CFST柱和钢梁的复合接头的故障模式可分为三种类型:钢梁和螺栓故障,通过螺栓故障,钢梁故障。通过螺栓,延伸端板和钢梁之间的不同优点和弱点直接影响关节的渐进式塌陷性。随着通过螺栓直径的增加和延伸端板的厚度,关节的故障模式从螺栓故障逐渐转动到钢束故障,并且接头的电阻和延展性增强,复合材料的反渐进塌陷能力通过螺栓延伸端板的CFST柱和钢梁的关节增加。

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