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Fire design rules for LSF walls made of hollow flange channel sections

机译:由空心法兰槽型材制成的LSF墙的防火设计规则

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Cold-formed Hollow Flange Channel (HFC) sections can be used in Light gauge Steel Frame (LSF) wall systems due to their structural efficiency. Recent experimental and finite element analysis based investigations conducted by the authors have demonstrated the superior fire performance of LSF walls made of welded HFC sections. The authors have developed a wide range of fire performance data of LSF walls through a finite element analysis (FEA) based extensive parametric study. This paper investigates the applicability of the available fire design rules to predict their structural capacities. Since fire design rules were not available for HFC sections, the latest design rules for LCS studs subjected to non-uniform temperature distributions were selected for evaluation from the pool of various design rules given in standards and previous studies. Suitable modifications were then incorporated for simplification and improved accuracy. Two improved design methods based on AS/NZS 4600 and Eurocode 3 were proposed. The structural capacity of HFC section stud found from the design rule predictions was converted into load ratio which is the ratio between the structural capacities under fire and ambient conditions, and the load ratio versus FRR curve were produced for different LSF walls. These were then compared with the FEA results, to verify the accuracy of the proposed design rules. This paper also presents suitable DSM based design method proposed for HFC section studs subject to non-uniform temperature distributions in LSF walls, and verifies its accuracy. (C) 2016 Elsevier Ltd. All rights reserved.
机译:冷弯空心法兰槽(HFC)型材由于其结构效率高,可用于轻型钢框架(LSF)墙系统。作者最近进行的基于实验和有限元分析的研究表明,由HFC焊接制成的LSF墙具有出色的防火性能。作者通过基于有限元分析(FEA)的广泛参数研究,开发了LSF墙的各种防火性能数据。本文研究了可用的消防设计规则来预测其结构能力的适用性。由于HFC区域没有防火设计规则,因此从标准和先前研究中给出的各种设计规则库中选择了承受不均匀温度分布的LCS螺柱的最新设计规则进行评估。然后,为了简化和提高准确性,进行了适当的修改。提出了两种基于AS / NZS 4600和Eurocode 3的改进设计方法。从设计规则预测中得出的HFC型材的结构承载力被转换为荷载比,即火灾和环境条件下的结构承载力之比,并针对不同的LSF墙生成了荷载比与FRR的关系曲线。然后将这些与FEA结果进行比较,以验证所提出的设计规则的准确性。本文还提出了适用于基于LSM壁面温度分布不均匀的HFC型材的DSM设计方法,并验证了其准确性。 (C)2016 Elsevier Ltd.保留所有权利。

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