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Finite Element Simulation of a Bolted Steel Joint in Fire Using ABAQUS Program

机译:基于aBaQUs程序的钢管螺栓接头有限元模拟

摘要

The research on the performance of steel connections at elevated temperatures is of great importance for the understanding of structural collapses caused by fire; concerning fire safety in building design. The joints of any steel building are significant structural components, as they provide links between principal members. This study presents a detailed three-dimensional (3-D) finite element (FE) model of a steel endplate beam-to-column joint subjected to simulations at ambient and elevated temperatures. The model was defined using ABAQUS software, on the basis of experimental tests performed in Al-Jabri et al., 1999. Good agreement between simulations and experimental observations confirms that the finite element ABAQUS solver is suitable for predicting the behaviour of the structural steel joint in fire. Using the European standards (EN 1993-1-8, 2005), a component based model was also developed to predict the behaviour of the joint, and to compare against the FE model at both ambient and elevated temperatures. Comparison of the results provided a high level of accuracy between models, especially in the elastic zone.The validated FE model was used to conduct further studies with new 3D loading conditions in order to enhance the understanding of steel joints behaviour on fire. The Component Method model was extended and compared against ABAQUS model, providing useful results which enforced the use of this method on 3D. /Kir10
机译:对于高温下钢连接性能的研究对于理解由火引起的结构塌陷具有重要意义。关于建筑设计中的消防安全。任何钢结构的接缝都是重要的结构部件,因为它们提供了主要构件之间的链接。这项研究提供了在环境温度和高温条件下进行模拟的钢端板梁对柱节点的详细三维(3-D)有限元(FE)模型。该模型是根据ABAQUS软件在Al-Jabri等人(1999年)进行的实验测试的基础上定义的。模拟与实验观察值之间的良好一致性证实了有限元ABAQUS求解器适用于预测结构钢接头的性能着火了。使用欧洲标准(EN 1993-1-8,2005),还开发了基于组件的模型来预测关节的行为,并在环境温度和高温下与FE模型进行比较。结果的比较为模型之间,特别是在弹性区域中的模型提供了较高的准确性。经过验证的有限元模型用于在新的3D载荷条件下进行进一步的研究,以增强对钢接头火势行为的了解。扩展了Component Method模型,并将其与ABAQUS模型进行了比较,从而提供了有用的结果,从而在3D上强制使用了该方法。 / Kir10

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  • 作者

    Rueda Romero Elena;

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  • 年度 2010
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  • 原文格式 PDF
  • 正文语种 en
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