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A coupled thermo-mechanical inelastic analysis approach for reinforced concrete flexural members during fire

机译:火灾期间钢筋混凝土受弯构件的热力-力学耦合分析方法

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摘要

A practical approach to evaluate the complete load-deflection-time response of reinforced concrete (RC) flexural members under fire is presented. The proposed approach is extendable for performance evaluation of RC structures at all three levels of complexity, namely member level, sub-assembly level, and the structural level. The approach involves three main steps: (a) transient heat transfer analysis to evaluate the temperature distribution across the critical section; (b) determination of moment-curvature characteristics for the critical sections using temperature-dependent constitutive laws for concrete and steel; and (c) nonlinear static analysis to obtain load-deflection plots of the member at regular intervals of the fire exposure. The series of load-deflection plots for different exposure durations are then used to obtain the deflection-time plots for the applied load level. The important issue of considering the initial stiffness of fire-affected beams taking into account the material degradation and thermal damage has been addressed in a simple yet rational manner. The presented approach does not consider the phenomenon of thermal spalling (explosive) and is applicable for cases where thermal spalling can be neglected. The approach is straightforward and easy to implement as only simple tools available to structural design engineers/design offices are required.
机译:提出了一种评估火灾下钢筋混凝土(RC)挠性构件完整的荷载-挠度-时间响应的实用方法。所提出的方法可扩展到在所有三个复杂度级别(即成员级别,子装配级别和结构级别)上进行RC结构的性能评估。该方法涉及三个主要步骤:(a)瞬态传热分析,以评估关键部分的温度分布; (b)使用与温度有关的本构法来确定混凝土和钢的关键截面的弯矩曲率特性; (c)非线性静态分析,以按规律的暴露时间获得构件的载荷-挠度图。然后使用不同暴露持续时间的一系列载荷-挠度图来获得所施加载荷水平的挠度-时间图。考虑到材料退化和热损伤,考虑火灾影响梁的初始刚度的重要问题已经以一种简单而合理的方式解决了。提出的方法没有考虑热剥落现象(爆炸性),并且适用于可以忽略热剥落的情况。该方法简单易行,因为只需要结构设计工程师/设计部门可用的简单工具即可。

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