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Advanced finite element modelling of perforated composite beams with flexible shear connectors

机译:带柔性剪切连接件的穿孔组合梁先进有限元建模

摘要

An extensive research and development programme has been undertaken by the authors to develop advanced analysis and design tools for practical design of long span composite beams in buildings. Both two- and three-dimensional finite element models employing solid and shell elements with material, geometrical and interfacial non-linearity were established to examine the full range structural behaviour of composite beams. In this paper, two-dimensional finite element models employing plane stress elements are established to examine the structural behaviour of perforated composite beams, and shear connectors with non-linear deformation characteristics are incorporated into the models through the use of both vertical and horizontal springs. It is demonstrated that after careful calibration against test data, the finite element models are able to predict the load carrying capacities of composite beams with large rectangular web openings against 'Vierendeel' mechanism satisfactorily. Moreover, a number of important structural quantities such as local axial and shear forces together with local bending moments acting onto the composite and the steel tee sections at failure are obtained after data analyses. Together with the load carrying capacities, these quantities compare favourably with the values obtained from a design method proposed previously by the authors, and hence, this provides quantitative justification to the proposed design method. Furthermore, the finite element models provide detailed information on the structural behaviour of shear connectors along the beam length, such as the longitudinal shear forces, the pull-out forces as well as the slippage of the shear connectors. Based on the findings of the finite element modelling, a number of recommendations on the design and construction of perforated composite beams are suggested. © 2008 Elsevier Ltd. All rights reserved.
机译:作者进行了广泛的研究和开发计划,以开发先进的分析和设计工具,用于建筑物中大跨度组合梁的实际设计。建立了二维和三维有限元模型,它们使用具有材料,几何和界面非线性的实心和壳单元来检查复合梁的全范围结构行为。在本文中,建立了使用平面应力单元的二维有限元模型,以研究多孔复合梁的结构性能,并通过使用垂直和水平弹簧将具有非线性变形特性的抗剪连接器纳入模型。结果表明,在对测试数据进行仔细校准之后,有限元模型能够针对“ Vierendeel”机制令人满意地预测具有大矩形腹板开口的复合梁的承载能力。此外,在数据分析之后,获得了许多重要的结构量,例如局部轴向力和剪切力,以及在破坏时作用于复合材料和三通处的局部弯矩。连同承载能力,这些数量与作者先前提出的设计方法获得的值相比具有优势,因此,这为提出的设计方法提供了定量依据。此外,有限元模型提供了有关剪切连接器沿梁长度的结构行为的详细信息,例如纵向剪切力,拔出力以及剪切连接器的滑移。根据有限元建模的结果,提出了许多关于多孔复合梁设计和建造的建议。 ©2008 Elsevier Ltd.保留所有权利。

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    Chung K. F.; Wang Aaron J.;

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  • 年度 2008
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  • 正文语种 eng
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