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Experimental study on the fire resistance of GFRP pultruded tubular beams

机译:GFRP拉挤管梁的耐火性试验研究

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This paper presents an experimental study about the fire resistance behaviour of pultruded glass fibre reinforced polymer (GFRP) beams. The main objectives of the study were to evaluate the influence on the fire resistance of GFRP beams of (i) the number of sides exposed to fire; (ii) the load level applied, and (iii) using different fire protection systems. To this end, a total of 12 GFRP tubular beams were exposed to the time-temperature curve of ISO 834, in either one or three sides, and simultaneously subjected to two different load levels corresponding to mid-span deflections of L/400 or L/250, L being the span. Different passive and active fire protection systems were assessed, including thick insulation boards, intumescent products and water-cooling. The results obtained show that three-side exposure causes a remarkable reduction of fire resistance, compared to one-side exposure, for both unprotected and protected profiles, highlighting the importance of adopting a building architecture with GFRP beams integrated in the floors. The efficacy of water-cooling for one-side exposure was confirmed; however, for three-side exposure it is shown that only passive protection is able to significantly extend the fire endurance of GFRP pultruded profiles. As expected, increasing the load level caused a (moderate) reduction of fire resistance.
机译:本文提出了拉挤玻璃纤维增​​强聚合物(GFRP)梁的耐火性能的实验研究。这项研究的主要目的是评估GFRP梁对耐火性的影响:(i)暴露于火的边数; (ii)施加的负荷水平,以及(iii)使用不同的消防系统。为此,总共12根GFRP管状梁在一侧或三侧暴露于ISO 834的时间-温度曲线,并同时承受与L / 400或L的中跨挠度相对应的两种不同载荷水平/ 250,L为跨度。评估了不同的被动和主动防火系统,包括厚保温板,膨胀产品和水冷系统。获得的结果表明,与单面暴露相比,无保护和受保护的型材,三面暴露导致耐火性显着降低,突出了采用在地板中集成有GFRP梁的建筑结构的重要性。证实了水冷对一侧暴露的功效;但是,对于三面暴露,表明只有被动保护才能显着延长GFRP拉挤型材的耐火性。不出所料,增加负载水平会导致(中等)耐火性降低。

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