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Analytical Investigation on Ultimate Behaviors for Steel Heavy Clip-angle Connections Using FE Analysis

机译:有限元分析法分析重载角钢连接的极限行为

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This paper describes an analytical investigation on the strength, stiffness, and mechanical behavior of heavy clip-angle connections subjected to static loading. The work is based on the results of a large experimental investigation into the cyclic behavior of connection components incorporating with thick clip-angles. The results of these tests are described first, and then methodologies to generate the response of connection components, utilizing nonlinear finite element (FE) models with the advanced modeling methods such as the pretension force in the bolts and the interaction between two contact surfaces, are presented in this study. Numerical test results obtained from FE analyses are compared with experimental test results in an effort to verify that 3D FE models can simulate the overall and detailed behavior of a various type of clip-angle connections accurately. These FE models provide useful instrumentation, which is difficult to obtain during an experiment, such as the distribution of the plastic strain, prying forces induced by the initial bolt pretension, and friction forces on the interface between a clip-angle and a steel beam. These valuable results can support the basic knowledge for developing strength models consistent with the AISC-LRFD component method of the clip-angle design. They are also utilized to better understand the parametric effect of connection components and achieve a comprehensive study of their behavior.
机译:本文介绍了对承受静态载荷的重型夹角连接的强度,刚度和机械性能的分析研究。这项工作是基于对带有厚夹角的连接组件的循环行为进行的大型实验研究的结果。首先描述了这些测试的结果,然后介绍了利用非线性有限元(FE)模型和高级建模方法(例如螺栓中的预紧力以及两个接触面之间的相互作用)生成连接组件响应的方法。在这项研究中提出。从有限元分析获得的数值测试结果与实验结果进行比较,以验证3D有限元模型可以准确模拟各种夹角连接的整体和详细行为。这些有限元模型提供了有用的仪器,在实验中很难获得这些仪器,例如塑性应变的分布,由初始螺栓预紧力引起的撬力以及在夹角和钢梁之间的界面上的摩擦力。这些有价值的结果可为开发与夹角设计的AISC-LRFD组件方法一致的强度模型提供基础知识。它们还被用来更好地理解连接组件的参数效果并实现对其行为的全面研究。

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