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首页> 外文期刊>Journal of Constructional Steel Research >Full-scale experiments of gypsum-sheathed cavity-insulated cold- formed steel walls under different fire conditions
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Full-scale experiments of gypsum-sheathed cavity-insulated cold- formed steel walls under different fire conditions

机译:不同火灾条件下石膏护套空腔保温冷弯型钢墙的全尺寸试验

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摘要

Most previous fire experiments of cold-formed steel (CFS) walls focused on ISO 834 fire. The corresponding results may not represent the actual fire performance of CFS walls in some special circumstances. This paper presents a full-scale experimental investigation of gypsum-sheathed cavity-insulated CFS walls under four different fire conditions. The results show that the axial load has an insignificant effect on the heat transfer of such walls in fire. This realization provides a basis for the indirect coupling method of thermal-mechanical analysis of CFS walls, in which the time-temperature profiles of non load-bearing CFS walls are adopted in the thermal-mechanical analysis of load-bearing walls. In addition, for CFS walls with the same configuration and load level, different fire conditions do not change the failure mode of steel studs; in particular, the stud hot flanges exhibit almost the same temperature when the structural failure of CFS walls occurs. Hence, a new time equivalency method of CFS walls is proposed, which uses the same temperature of hot flange as the principle of equivalency. Meanwhile, both the equal area method and energy-based method are modified by using reference temperatures, and give a good prediction of the fire resistance time equivalency of CFS walls. Moreover, significant opening of gypsum board joints is observed during the fire exposure; however, this phenomenon is an inherent characteristic of heated gypsum boards and has insignificant correlation with the out-of-plane deflection of CFS walls. Furthermore, staggered board joints are recommended as an important and effective fire resistance configuration of CFS walls. (C) 2019 Elsevier Ltd. All rights reserved.
机译:以前,大多数冷弯型钢(CFS)墙的着火实验都集中在ISO 834着火上。在某些特殊情况下,相应的结果可能并不代表CFS墙的实际防火性能。本文提出了在四种不同火灾条件下石膏护套空腔绝缘CFS墙的全面实验研究。结果表明,轴向载荷对这种壁在火灾中的热传递影响不大。该认识为CFS墙体热力分析的间接耦合方法提供了基础,在承重墙体的热力学分析中采用了非承重CFS墙体的时温分布。此外,对于具有相同配置和载荷水平的CFS墙,不同的火灾条件不会改变钢钉的破坏模式;特别是,当CFS墙发生结构故障时,双头螺栓热法兰的温度几乎相同。因此,提出了一种新的CFS墙等效时间方法,该方法使用相同的热法兰温度作为等效原理。同时,通过使用参考温度对等面积法和基于能量的方法进行了修改,并为CFS墙的耐火时间当量提供了良好的预测。此外,在火灾中观察到石膏板接缝的明显张开。但是,这种现象是石膏板加热的固有特征,并且与CFS壁的平面外偏转无关。此外,建议将交错的板缝作为CFS墙的重要且有效的防火配置。 (C)2019 Elsevier Ltd.保留所有权利。

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