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Fire resistance of non-load bearing LSF walls with varying cavity depth

机译:具有不同空腔深度的非负载轴承LSF墙壁的耐火性

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Fire resistance of Light Gauge Steel Frame (LSF) wall systems is important in the emerging mid-rise cold-formed steel construction. Many studies have been conducted in recent times to improve the acoustic, thermal (energy) and fire performance of non-load bearing LSF walls. Increasing the wall cavity depth provides superior acoustic and thermal performance characteristics of LSF walls. LSF walls with increased cavity depth are constructed using different stud arrangements such as single, double and staggered rows of studs. Past research studies have been limited to non-load bearing LSF walls made of single row of steel studs with the same cavity depth of 90 mm. This paper investigates the fire resistance of single, double and staggered stud LSF walls with varying cavity depths under non-load bearing conditions. Four full-scale standard fire tests were conducted to investigate the effects of cavity depth for non-load bearing LSF walls and the results are presented in detail. Fire test results show that the temperatures across the wall depth decrease with increasing cavity depth. LSF walls with two layers of plasterboard lining and wider cavity resulted in increased fire resistance. This study also highlights the detrimental effects of staggered stud LSF wall arrangement causing structural failure of thin-walled steel studs.
机译:轻型钢框架(LSF)墙体系统的耐火性在新出现的中升冷成型钢结构中很重要。近期进行了许多研究,以改善非负载轴承LSF墙壁的声学,热(能量)和火灾性能。增加壁腔深度提供LSF墙壁的卓越声学和热性能特性。具有增加的腔深的LSF墙体使用不同的螺柱布置,例如单一,双和交错的螺柱。过去的研究研究仅限于由单排钢螺柱制成的非负载轴承LSF墙壁,其腔深度为90毫米。本文调查了在非承载条件下具有不同腔深度的单一,双倍和交错的螺柱LSF墙壁的耐火性。进行了四种全规模的标准火灾测试,以研究腔体深度对非负载轴承LSF壁的影响,并详细介绍了结果。火灾测试结果表明,墙体深度的温度随着腔深度的增加而降低。 LSF墙壁,带有两层石膏板衬里和较宽的腔体导致耐火性增加。本研究还突出了交错螺柱LSF墙体布置导致薄壁钢螺柱结构失效的不利影响。

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