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Finite Element Analysis of Mechanical Performance of Concrete-filled Steel Tube Composite Frame under Different Fire Time

机译:不同火灾时间混凝土钢管复合框架力学性能的有限元分析

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Research on the mechanical properties of concrete-filled steel tube composite frames at high temperatures is one of the current hot issues. In this paper, the finite element simulation software is used to analyze the concrete-filled steel tube composite frame, introduce the failure mode of the concrete-filled steel tube composite frame under high temperature, and deeply study the simulation results of the single-story mechanical performance. The single-span concrete-filled steel tube composite frame structure based on the analysis of the concrete-filled steel tube bearing capacity, including the role of each beam and column in different temperature fields, structural fields and coupling fields, as well as the role in the entire section. As the temperature increases and decreases, its mechanical properties will change significantly under the action of concentrated loads. The bearing capacity of the composite frame at high temperature is somewhat lower than that at room temperature. The research results can provide a reference for the reinforcement and repair of the steel tube concrete composite frame under high temperature.
机译:高温混凝土钢管复合框架的力学性能研究是当前热门问题之一。在本文中,用于分析混凝土钢管复合框架的有限元仿真软件,在高温下引入混凝土钢管复合框架的故障模式,深入研究单层的仿真结果机械性能。单跨混凝土填充钢管复合框架结构基于分析混凝土钢管承载力,包括每个光束和柱子在不同温度场,结构领域和耦合领域的作用,以及作用在整个部分。随着温度升高和降低,其机械性能在浓缩载荷的作用下会显着变化。复合框架在高温下的承载能力略微低于室温。研究结果可以在高温下为钢管混凝土复合框架的加固和修复提供参考。

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