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A Numerical Study on theThermo-mechanical Response of a Composite Beam Exposed to Fire

机译:组合梁受火热力学响应的数值研究

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摘要

This study presents an analytical framework for estimating the thermo-mechanical behavior of a composite beam exposed to fire. The framework involves: a fire simulation from which the evolution of temperature on the structure surface is obtained; data transfer by an interface model, whereby the surface temperature is assigned to the finite element model of the structure for thermo-mechanical analysis; and nonlinear thermo-mechanical analysis for predicting the structural response under high temperatures. We use a plastic-damage model for calculating the response of concrete slabs, and propose a method to determine the stiffness degradation parameter of the plastic-damage model by a nonlinear regression of concrete cylinder test data. To validate simulation results, structural fire experiments have been performed on a real-scale steel-concrete composite beam using the fire load prescribed by ASTM E119 standard fire curve. The calculated evolution of deflection at the center of the beam shows good agreement with experimental results. The local test results as well as the effective plastic strain distribution and section rotation of the composite beam at elevated temperatures are also investigated.
机译:这项研究提供了一个分析框架,用于估算暴露于火中的复合梁的热机械行为。该框架包括:火灾模拟,从中获得结构表面温度的变化;通过界面模型进行数据传输,从而将表面温度分配给结构的有限元模型以进行热机械分析;非线性热力学分析来预测高温下的结构响应。我们使用塑性损伤模型计算混凝土板的响应,并提出了一种通过混凝土圆柱试验数据的非线性回归确定塑性损伤模型的刚度退化参数的方法。为了验证模拟结果,已使用ASTM E119标准着火曲线规定的着火负荷,在实际比例的钢-混凝土组合梁上进行了结构性火灾实验。计算得出的梁中心挠度变化与实验结果吻合良好。还研究了局部测试结果以及在高温下复合梁的有效塑性应变分布和截面旋转。

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