大型钢梁柱连接节点断裂性能分析

Liangjie Qi, Jonathan L. Paquette, M. Eatherton, R. Leon, T. Bogdan, N. Popa, E. Nunez
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引用次数: 2

摘要

最近完成的钢梁-柱连接试验对迄今为止测试过的最大的减梁截面试件进行了测试,结果表明,这种连接可以满足当前的抗震设计资格协议,从而可以进一步扩展当前的AISC抗震规定和AISC特殊和中间钢弯矩框架连接资格预审规定。然而,结果表明,在设计非常重的形状之间的焊接连接时,需要仔细考虑几何和材料效应。对这种行为的理解将有助于在美国地震活跃地区使用较重的结构形状,将重型钢截面的使用范围扩大到目前在超高层建筑中的使用。为了更好地解释实验测试结果,对整个系列的测试进行了广泛详细的有限元分析,这些测试包括四个试件和四个不同尺寸的梁。分析旨在澄清在材料和几何水平上的尺度效应对这些连接性能的影响。重点是连接的建模,以了解柱面板区域和简化梁截面之间的变形平衡,焊缝附近的应力集中,初始缺陷和残余应力的影响以及几种损伤积累模型的有效性。到目前为止,为所有四个试件开发的模型都能够准确地再现整体荷载-变形和力矩-旋转时程。
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Analysis of Fracture Behavior of Large Steel Beam-Column Connections
Recently completed experimental steel beam-column connection tests on the largest specimens of reduced-beam section specimens ever tested have shown that such connections can meet current seismic design qualification protocols, allowing to further extend the current AISC Seismic Provisions and the AISC Provisions for Prequalified Connections for Special and Intermediate Steel Moment Frames. However, the results indicate that geometrical and material effects need to be carefully considered when designing welded connections between very heavy shapes. Understanding of this behavior will ease the use of heavier structural shapes in seismic active areas of the United States, extending the use of heavy steel sections beyond their current use in ultra-tall buildings. To better interpret the experimental test results, extensive detailed finite element analyses are being conducted on the entire series of tests, which comprised four specimens with beams of four very different sizes. The analyses intend to clarify what scale effects, at both the material and geometric level, influence the performance of these connections. The emphasis is on modeling of the connection to understand the balance in deformation between the column panel zones and the reduced beam section, the stress concentrations near the welds, the effects of initial imperfections and residual stresses and the validity of several damage accumulation models. The models developed so far for all four specimens have been able to accurately reproduce the overall load-deformation and moment-rotation time histories.  
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