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Fire resistance behavior of T-stub joint components under transient heat transfer conditions

机译:瞬态传热条件下T关节部件的防火行为

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The fire resistance behavior of T-stub joint components at elevated temperatures was experimentally and numerically investigated. To start, twelve T-stub specimens with different geometric properties were tested to failure under the transient heat transfer condition. The failure modes of these specimens were classified into three categories: complete yielding of the flange, pure bolt fracture failure, and the combination of the flange yielding and bolt fracture. The displacement-temperature curves obtained from the experiment were idealized as three segments, and the associated critical temperature, ultimate temperature, and deformation capacity were evaluated. Then the finite-element (FE) models of T-stubs were developed to simulate their responses under the transient heat transfer condition using ABAQUS (version 6.18). The comparison of critical temperature, failure temperature, and deformation capacity indicated that the FE analysis was in good agreement with the experimental results. A comprehensive parametric study was subsequently carried out to quantify the effects of various geometric parameters and load ratios on the response of the T-stubs under fire conditions. Meanwhile, a comparative assessment between the transient and steady analyses proves the reliability of the transient test method. Based on the data collected from the experiment and FE analysis, three analytical models (including the Spyrou?s model, the Heidarpour?s model, and the one recommended by Eurocode 3-1-8) were critically examined to reveal their performance in estimating the ultimate temperature and deformation capacity of T-stubs.
机译:实验和数值研究了T-TUB关节部件在升高温度下的耐火性能。为了开始,在瞬态传热条件下测试具有不同几何特性的12个T-TUBIMENS。这些标本的失效模式分为三类:完全屈服法兰,纯螺栓断裂衰竭,以及法兰屈服和螺栓骨折的组合。从实验中获得的位移温度曲线理想化为三个区段,并评估相关的临界温度,极限温度和变形能力。然后开发了T-stubs的有限元(Fe)模型以使用ABAQU(6.18版)模拟瞬态传热条件下的响应。临界温度,故障温度和变形容量的比较表明,FE分析与实验结果吻合良好。随后进行了综合的参数研究以量化各种几何参数和负载比对火条件下T型计的响应的影响。同时,瞬态和稳定分析之间的比较评估证明了瞬态测试方法的可靠性。基于实验和FE分析所收集的数据,三种分析模型(包括Spyrou?S模型,Heidarpour?S型号,欧洲古代码3-1-8推荐的型号)被严格检查,以揭示他们在估计中的表现T-stubs的极限温度和变形能力。

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