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Full-scale fire resistance tests of steel and plasterboard sheathed web- stiffened stud walls

机译:钢和石膏板护套腹板加劲肋墙的全面耐火测试

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Light gauge steel-framed (LSF) walls, commonly made with lipped channel studs and gypsum plasterboard sheathing, are increasingly being used in low to mid-rise buildings. Improvements have been made with respect to fire, wind/seismic and energy performance of LSF walls with the use of improved stud sections, wall configurations, different sheathing members, and insulation materials. Although the provision of sheet steel as sheathing has been found to improve the in-plane shear capacity of LSF walls, its effects on the fire performance of load bearing walls remain unknown. Three full-scale ISO 834 standard fire tests were conducted in this study to investigate the fire performance of axially loaded gypsum plasterboard and steel sheathed LSF walls made with web-stiffened studs. The results revealed that compared to the commonly used lipped channel stud, the web-stiffened stud is capable of withstanding a 57% greater axial compression load, yet yield the same fire resistance level (FRL), when sheathed only with two layers of gypsum plasterboard. Under the selected load ratio, the addition of steel sheathing caused only marginal improvements in the stud temperature development, resulting in minor improvements to the FRL of load bearing walls. However, the axial load bearing capacity improvement caused by the inclusion of steel sheathing allowed the web-stiffened stud to withstand a 10% greater axial compression load compared to the plasterboard only wall.
机译:轻型钢框架(LSF)墙通常由唇形槽钉和石膏灰泥板制成,越来越多地用于中低层建筑。 LSF墙的防火,防风/抗震和能效方面已进行了改进,方法是使用改进的双头螺栓截面,墙构型,不同的护套构件和绝缘材料。尽管已经发现提供钢板作为护套可以改善LSF墙的面内剪切能力,但是其对承重墙防火性能的影响仍然未知。在这项研究中,进行了三个全面的ISO 834标准防火测试,以研究轴向荷载石膏石膏板和由腹板加筋的钢筋制成的LSF钢护套墙的防火性能。结果表明,与通常使用的带唇槽的螺柱相比,腹板加筋的螺柱在仅用两层石膏石膏板进行护套时,能够承受57%的更大轴向压缩载荷,但产生相同的耐火等级(FRL) 。在选定的负载比下,钢护套的添加仅使螺柱温度的发展略有改善,从而导致承重墙的FRL略有改善。但是,与仅使用石膏板的墙相比,由于包含钢护套而导致的轴向承载能力提高,使腹板加筋的螺栓承受的轴向压缩载荷大10%。

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