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Modelling of Bolted Endplate Connections Subjected to Bending Moment and Axial Force in Fire

机译:受弯矩和轴力作用的螺栓端板连接建模

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摘要

This article presents an extensive application of component based method both at ambient and elevated temperatures. The analytical model is used to predict the connection behavior, with axial force in the connected beam being superposed. The formulas for the calculation of bending moment resistance and rotation stiffness are derived in the article. At the same time, two kinds of loading paths, proportional loading and non-proportional loading, are also thoroughly investigated. A total of 12 tests, in which the connection is subjected to proportional loading path, are utilized to validate the analytical model. At the same time, a 3D Finite Element Model using the ABAQUS is also presented to verify the analytical model. As to the connection under non-proportional loading path, 6 transient fire tests are chosen to verify the proposed model. Compared to the experimental results, the accuracy of the moment-rotation curves obtained from the analytical model are acceptable. Hence, the presented analytical model can be used to predict connection behavior under fire conditions, taking the influence of axial force into account.
机译:本文介绍了基于组件的方法在环境温度和高温下的广泛应用。该分析模型用于预测连接行为,其中连接梁中的轴向力是叠加的。推导了抗弯矩和抗弯刚度的计算公式。同时,还对比例加载和非比例加载两种加载路径进行了深入研究。总共进行了12个测试,其中连接处于比例加载路径下,以验证分析模型。同时,还提出了使用ABAQUS的3D有限元模型来验证分析模型。对于非比例加载路径下的连接,选择了6次瞬态火灾测试来验证所提出的模型。与实验结果相比,从分析模型获得的力矩-旋转曲线的精度是可以接受的。因此,考虑到轴向力的影响,提出的分析模型可用于预测火灾条件下的连接行为。

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