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Proposal of a new method in EN1994-1-2 for the fire design of concrete-filled steel tubular columns

机译:在EN1994-1-2中提出了一种用于钢管混凝土柱防火设计的新方法的建议

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摘要

Previous investigations proved the unsafety of the current design guidelines in Annex H of EN 1994-1-2 for the calculation of the fire resistance of slender concrete-filled steel tubular (CFST) columns. In this paper, a new simplified design method based on the general rules in Clause 4.3.5.1 of EN 1994-1-2 is presented for correcting this inaccuracy. For the development of the method, an extensive parametric study consisting of about 20.500 analysis cases was carried out by using numerical models, which in turn were validated against a wide range of experimental results. The proposed method provides a significant extension over the current EN 1994-1-2 applicability limits, reaching high member slenderness, large eccentricities and being valid for all the commercially available geometries, including elliptical hollow sections. The design proposal is divided into two parts: thermal, where a simplified cross-sectional temperature field can be obtained based on equivalent temperatures for the composite section constituents, and mechanical, where a full method for evaluating the ultimate buckling load in the fire situation is given. The proposed method is valid for axially and eccentrically loaded columns, accounting for eccentricities on both minor and major axis and reaching large eccentricities of e/D = 1. Finally, it is proved that the proposed method provides safe predictions as compared to experimental results and meets the CENT TC250/SC4 accuracy criteria. (C) 2016 Elsevier Ltd. All rights reserved.
机译:先前的研究证明,EN 1994-1-2附件H中当前设计准则对于计算细长混凝土填充钢管(CFST)柱的耐火性是不安全的。本文提出了一种新的简化设计方法,该方法基于EN 1994-1-2的第4.3.5.1条中的一般规则来纠正此不准确性。为了开发该方法,使用数值模型进行了约20,500个分析案例的广泛参数研究,然后针对大量实验结果进行了验证。所提出的方法大大扩展了当前的EN 1994-1-2适用范围,达到了较高的构件细长度,大的偏心率,并且对包括椭圆形空心部分在内的所有商用几何形状均有效。设计方案分为两部分:热部分(可根据复合截面成分的等效温度获得简化的横截面温度场)和机械部分(用于评估火灾情况下的最终屈曲载荷的完整方法)给定的。所提出的方法对于轴向和偏心柱均有效,考虑了短轴和长轴上的偏心率并达到e / D = 1的大偏心率。最后,证明了所提出的方法与实验结果相比可提供安全的预测,并且符合CENT TC250 / SC4精度标准。 (C)2016 Elsevier Ltd.保留所有权利。

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