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首页> 外文期刊>Journal of Constructional Steel Research >Effects of axial and rotational restraints on concrete-filled tubular columns under fire
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Effects of axial and rotational restraints on concrete-filled tubular columns under fire

机译:火灾下轴向约束和旋转约束对钢管混凝土柱的影响

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This paper presents a study of the effects of axial and rotational restraints on the fire response of concrete filled tubular (CFT) columns. The fiber model presented by the authors in a previous paper Ibanez et al. (2013) is employed to simulate the fire behavior of CFT columns within non-sway frames. Parametric studies are performed to analyze the influence of the different factors affecting the problem. Consequently, the opposite effects that the restraining frame has on the fire response of CFT columns are corroborated. On one hand, the restrained thermal elongation induces restraining forces which negatively affects the column. However, a beneficial effect is produced by the rotational restraint which positively modifies the boundary conditions of the heated column. Besides, another favorable effect comes from the gradual redistribution of the internal forces as the heated column loses its mechanical capacity, resulting in higher FRR. In a second step, current provisions given by Eurocode 4 Part 1.2 (EC4) are analyzed together with those given in the UK National Annex to Eurocode 4. Finally, these values are also used in the assessment of the simple calculation model presented by the authors in a previous paper Ibafiez et al. (2015) and subsequently a proposal is made obtaining reasonably accurate but slightly safe results since the guidelines of CEN-Horizontal Group Fire were followed. As a result, the fire effective length value of 0.5 L given by EC4 is found to lead to unsafe results, being more appropriate to adopt the value of 0.7 L suggested in the UK National Annex. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文介绍了轴向约束和旋转约束对钢管混凝土(CFT)柱的火灾响应的影响的研究。作者在以前的论文Ibanez等人中提出的纤维模型。 (2013年)被用来模拟非摇摆框架内CFT柱的燃烧行为。进行参数研究以分析影响问题的不同因素的影响。因此,证实了约束框架对CFT柱的火灾响应的相反影响。一方面,受限制的热伸长引起限制力,该限制力对立柱产生负面影响。然而,通过旋转约束产生了有益的效果,其积极地改变了加热塔的边界条件。此外,由于加热柱失去其机械性能,内力的逐渐重新分配会产生另一个有利效果,从而导致较高的FRR。第二步,分析欧洲法规4第1.2部分(EC4)给出的现行规定以及英国欧洲法规4国家附录中给出的规定。最后,这些值也用于评估作者提出的简单计算模型在以前的论文中,Ibafiez等人。 (2015年),随后提出了一项提案,因为遵循了CEN-Horizo​​ntal Group Fire的指南,因此获得了较为准确但略微安全的结果。结果,发现EC4给出的0.5 L的有效火力长度会导致不安全的结果,更适合采用英国国家附录中建议的0.7 L的值。 (C)2016 Elsevier Ltd.保留所有权利。

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