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Finite element simulation of new RHS column-to-I beam connections for avoiding tensile fracture

机译:新型RHS柱到I型梁连接的有限元模拟,以避免拉伸断裂

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Many beam-to-column connections, consisting of rectangular hollow section (RHS) columns and wide flange I-beam connections, sustain brittle fracture of welded connections at the beam ends during a large earthquake. These fractures most frequently occur in regions around the beam bottom flange groove welds. A series of tests was conducted on an improved RHS column-to-I beam connection. The aim of the tests was to find possible solutions for avoiding premature occurrences of brittle fracture in RHS column-to-I beam connections. Research results show that the improved connection does not fail by fracture as observed in the conventional connections and has a larger energy dissipation capacity than the conventional types. This paper describes the finite element modeling method employed to analyze the new RHS column-to-I beam connection. The ABAQUS finite element package is used to simulate the experimental behavior, and three highly detailed 3D finite element models are created. These are complex models accounting for material nonlinearity, large deformation and contact behavior. The connection models have been analyzed through the elastic and plastic ranges up to failure. Comparisons with experimental data show that the models have high levels of accuracy.
机译:在大地震中,由矩形空心截面(RHS)柱和宽法兰I型梁连接组成的许多梁对柱连接在梁端部承受焊接连接的脆性断裂。这些裂缝最常发生在梁底部法兰槽焊缝周围的区域。在改进的RHS列对I光束连接上进行了一系列测试。测试的目的是找到避免在RHS柱对I型梁连接中过早发生脆性断裂的解决方案。研究结果表明,改进的连接不会像常规连接中那样因断裂而失效,并且具有比常规类型更大的能量消耗能力。本文介绍了用于分析新型RHS列到I形梁连接的有限元建模方法。 ABAQUS有限元软件包用于模拟实验行为,并创建了三个高度详细的3D有限元模型。这些是复杂的模型,说明了材料的非线性,大变形和接触行为。已对连接模型进行了分析,直至达到破坏为止的弹性和塑性范围。与实验数据的比较表明,该模型具有很高的准确性。

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