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System-level approach to predict the transient fire response of double angle connections

机译:系统级方法来预测双角连接的瞬态火响应

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摘要

This paper presents a system-level approach to simulate the transient response of double angle connection under realistic fire and loading conditions. The numerical model, developed using commercially available finite element software ANSYS, accounts for material and geometrical nonlinearities, degradation of constitutive material properties with temperature and non-linear contact interactions. The model is validated by comparing predictions from the analysis with the published experimental results. The validated model is applied to study the effect of system-level interactions, load level, non-standard fire scenarios and high-temperature properties of bolts on the fire performance of double angle connections. Results from the parametric studies indicate that type of fire scenario, system-level interactions and high-temperature bolt properties have significant influence on the transient fire performance of connection assembly. However, the type of bolts (grade) does not have much influence on the fire performance of double angle connections.
机译:本文提出了一种系统级方法来模拟在实际火灾和负载条件下双角连接的瞬态响应。使用市售的有限元软件ANSYS开发的数值模型考虑了材料和几何非线性,本构材料特性随温度的下降以及非线性接触相互作用。通过将分析的预测与已发布的实验结果进行比较来验证该模型。验证的模型用于研究系统级相互作用,负载水平,非标准火灾场景和螺栓的高温特性对双角连接件耐火性能的影响。参数研究的结果表明,火灾场景的类型,系统级的相互作用和高温螺栓的性能对连接组件的瞬态火灾性能具有重大影响。但是,螺栓(等级)的类型对双角连接的防火性能影响不大。

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