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首页> 外文期刊>Journal of structural engineering >Experimental And Numerical Investigation On Ductility Of Composite Beams In The Hogging Moment Regions Underrnfire Conditions
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Experimental And Numerical Investigation On Ductility Of Composite Beams In The Hogging Moment Regions Underrnfire Conditions

机译:火灾条件下在弯矩区复合梁延性的试验与数值研究

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This paper presents both the results of an experimental program and numerical simulations, which have been conducted to investigate the ductility of composite beams in the hogging moment regions under fire conditions. The main objective is to study the ductility issue related to the inelastic behavior of composite beams at an elevated temperature. A second objective is to investigate the feasibility of using a finite-element model for parametric studies. To fullfil the first objective, a total of four composite beams with decking slabs were tested to failure. They were designed to represent the internal joint of a continuous beam. The segment between the plastic hinge over support and adjacent point of inflection was represented by one-half of a simply supported beam subjected to a midspan point load. The specimens were heated to a certain temperature before they were subjected to a static point load up to failure. These four test results were then used to validate finite-element models constructed from MSC. Marc Mentat. It is demonstrated that the finite-element analysis gives reasonable accuracy compared to test results. Hence, it provides an efficient, economical, and yet accurate tool to study the inelastic behavior of composite beams in fire. Finally, a parametric study was conducted to investigate the influence of several parameters on the moment-rotation response and the rotational capacity at elevated temperatures.
机译:本文同时介绍了实验程序和数值模拟的结果,以研究复合材料梁在火灾条件下在弯矩区域的延性。主要目的是研究与复合梁在高温下的非弹性行为有关的延性问题。第二个目标是研究在参数研究中使用有限元模型的可行性。为了完成第一个目标,总共测试了四个带有装饰板的复合梁是否损坏。它们旨在代表连续梁的内部节点。支撑上方的塑料铰链和相邻的拐点之间的部分以承受中跨点载荷的简单支撑梁的一半表示。在承受静点载荷直至破坏之前,将样品加热到一定温度。然后将这四个测试结果用于验证从MSC构建的有限元模型。马克·孟塔结果表明,与试验结果相比,有限元分析可以提供合理的精度。因此,它为研究复合材料梁在火中的非弹性行为提供了一种有效,经济且准确的工具。最后,进行了参数研究,以研究几个参数对力矩旋转响应和高温下的旋转能力的影响。

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