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A quasi-static nonlinear analysis for assessing the fire resistance of reinforced concrete 3D frames exploiting time-dependent yield surfaces

机译:利用时间相关屈服面评估钢筋混凝土3D框架耐火性的准静态非线性分析

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In this work an automatic procedure for evaluating the axial force-biaxial bending yield surface of reinforced concrete sections in fire is proposed. It provides an accurate time-dependent expression of the yield condition by a section analysis carried out once and for all, accounting for the strength reduction of the materials, which is a function of the fire duration. The equilibrium state of 3D frames with such yield conditions, once discretized using beam finite elements, is formulated as a nonlinear vectorial equation defining a curve in the hyperspace of the discrete variables and the fire duration. A generalized path following strategy is proposed for tracing this curve and evaluating, if it exists, the limit fire duration, that is the time of exposure which leads to structural collapse. Compared to the previous proposals on the topic, which are limited to local sectional checks, this work is the first to present a global analysis for assessing the fire resistance of 3D frames, providing a time history of the fire event and taking account of the stress redistribution. Numerical examples are given to illustrate and validate the proposal. (C) 2018 Elsevier Ltd. All rights reserved.
机译:在这项工作中,提出了一种自动程序,用于评估火灾中钢筋混凝土截面的轴向力-双轴弯曲屈服面。通过一劳永逸地进行的截面分析,它可以提供准确的随时间变化的屈服条件表达式,说明了材料的强度降低,这是燃烧持续时间的函数。具有这种屈服条件的3D框架的平衡状态,一旦使用梁有限元进行离散化,就可以被公式化为一个非线性矢量方程式,该方程式定义了离散变量的超空间和射击持续时间的曲线。提出了一种通用的路径跟踪策略,用于追踪该曲线并评估极限火焰持续时间(如果存在),也就是导致结构崩溃的暴露时间。与之前关于该主题的建议(仅限于局部剖面检查)相比,这项工作是第一个提出用于评估3D框架耐火性,提供起火事件的时间历史并考虑应力的全局分析的方法。重新分配。数值例子说明了该建议。 (C)2018 Elsevier Ltd.保留所有权利。

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