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首页> 外文期刊>Journal of structural engineering >Moment-Rotation Model for Blind-Bolted Flush End-Plate Connections in Composite Frame Structures
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Moment-Rotation Model for Blind-Bolted Flush End-Plate Connections in Composite Frame Structures

机译:复合框架结构中盲插式齐平端板连接的弯矩-旋转模型

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摘要

This paper develops both a three-parameter power model and a Ramberg-Osgood model for quantifying the moment-rotation characteristics of a blind-bolted flush end-plate system that connects a composite beam to a concrete-filled steel tubular (CFST) column in a steel framed building structure. By default, these connections are semirigid, and accurate analyses of structures including them necessitate quantitative knowledge of their moment-rotation response. A detailed three-dimensional (3D) nonlinear-continuum-based finite element model of the connection region including the composite beam, flush end-plate, blind bolts and the concrete-filled steel tube is developed in this paper. This sophisticated FE model can capture the pertinent physical, geometrical, and contact nonlinearities, and its accuracy is verified against experimental data reported elsewhere in the literature. The calibrated FE model is then employed for a parametric study in which the effects of the slab reinforcement ratio, the thickness of the slab, the degree of the shear connection, the diameter of the blind bolts as well as the pretension force in them and their yield stress, the depth of the beam, and the thickness of the flush end-plate are investigated. The results of the parametric study are employed to calibrate moment-rotation relationships, which are proposed in a convenient analytic form. It is shown that the proposed model predicts the moment-rotation response of blind-bolted flush end-plate composite beam-to-CFST column connections with good accuracy, and it provides a valuable empirical modeling that can be used in the computer design of composite framed building frames in the new paradigm of design by advanced analysis. (C) 2014 American Society of Civil Engineers.
机译:本文开发了一个三参数功率模型和一个Ramberg-Osgood模型,用于量化将复合梁连接到钢管混凝土柱(CFST)的盲孔平头端板系统的力矩-旋转特性。钢架建筑结构。默认情况下,这些连接是半刚性的,要对其结构进行准确的分析,就必须对其力矩旋转响应进行定量了解。建立了详细的三维(3D)非线性连续体连接区域的有限元模型,包括复合梁,齐平端板,盲孔螺栓和钢管混凝土。这种复杂的有限元模型可以捕获相关的物理,几何和接触非线性,并且其准确性已根据文献中其他地方报告的实验数据进行了验证。然后,将经过校准的有限元模型用于参数研究,其中,板的配筋率,板的厚度,剪切连接的程度,盲孔螺栓的直径以及其中的预紧力及其影响研究了屈服应力,梁的深度和齐平端板的厚度。参数研究的结果用于校准力矩-旋转关系,以方便的分析形式提出。结果表明,所提出的模型预测了盲孔平顶端板组合梁至CFST柱连接的弯矩-旋转响应,具有良好的精度,为复合材料的计算机设计提供了有价值的经验模型。通过高级分析在新的设计范式中构建框架。 (C)2014年美国土木工程师学会。

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