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Fire performance of steel and plasterboard sheathed non-load bearing LSF walls

机译:钢和石膏板护套无负荷LSF墙的防火性能

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摘要

Light gauge steel-framed (LSF) walls are used as load bearing and non-load bearing building components in traditional concrete framed buildings and emerging all-steel structures. Recent building fire disasters around the world have highlighted the necessity for improved fire performance in such building components. While the fire performance of gypsum plasterboard, magnesium oxide board, calcium silicate board and oriented strand board (OSB) sheathed LSF walls has been assessed using fire tests and numerical analyses in the past, fire performance of steel sheathed walls remains unknown. Steel sheathing can improve the in-plane shear capacity of steel framed walls and is an accepted lateral load carrying system with widespread applications in the cold-formed steel construction industry. This paper presents the results of a series of small-scale fire tests conducted on steel and gypsum plasterboard sheathed composite panels and framed walls, and also an enthalpy based analytical study using the experimental results. Provision of steel sheathing either only internally, only externally or both internally and externally in combination was found to enhance the fire performance of plasterboard panels and plasterboard framed walls. The confinement of water within plasterboards for a prolonged duration with the provision of steel sheathing was found to be the prime cause of this improvement. Furthermore, the formation of thermal bridges across the stud in cavity insulated walls was found to reduce the fire performance significantly.
机译:轻型钢框架(LSF)墙在传统的混凝土框架建筑和新兴的全钢结构中用作承重和非承重建筑构件。世界各地最近发生的建筑火灾都凸显了改善此类建筑组件的防火性能的必要性。尽管过去已经通过防火测试和数值分析来评估石膏石膏板,氧化镁板,硅酸钙板和定向刨花板(OSB)护套的LSF墙的防火性能,但钢护套墙的防火性能仍然未知。钢护套可以提高钢框架墙的面内剪切能力,是一种公认​​的侧向承载系统,在冷弯型钢建筑行业中得到了广泛的应用。本文介绍了在钢和石膏灰泥板护套的复合板和框架墙上进行的一系列小规模火灾测试的结果,以及使用实验结果进行的基于焓的分析研究。发现仅在内部,仅在外部或在内部和外部两者组合地提供钢护套可以增强石膏板面板和石膏板框架墙的防火性能。人们发现,在长时间不使用石膏板的情况下将水封闭在石膏板上是造成这种改善的主要原因。此外,发现在空腔绝缘壁中的双头螺栓上形成热桥会大大降低防火性能。

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