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Wind Uplift Capacity of Foam-Retrofitted Roof Sheathing Subjected to Water Leaks

机译:受漏水影响的泡沫改建屋顶护套的抗风能力

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This paper evaluates the use of closed-cell Spray-Applied Polyurethane Foam (ccSPF) as a structural retrofit of existing wood-framed roofs. ccSPF is used as a thermal insulator in the building envelope and it forms a tenacious bond to most construction materials. As a result ccSPF is used to strengthen the wind resistance of wood roof structures. ccSPF is currently being installed in houses in Florida although the long-term performance of the material in presence of water is unknown. This study seeks to evaluate the effect of water leaks on the moisture buildup and wind uplift capacity of ccSPF-retrofitted wood roof panels.Nine full-scale roof attics were constructed and exposed to long-term environmental conditions and simulated rain in two phases, (five in Phase Ⅰ and four roofs in Phase Ⅱ). Numerous leak gaps were cut into the roofing systems simulating effects of long-term water leaks. It was found that moisture buildup occurs in roof sheathing and wood framing members, but it the increased wind uplift capacity of ccSPF-retrofitted roofs was not significantly affected. The high tensile strength of the water-saturated ccSPF to wood bond was confirmed in long-term tests using small-scale samples. While there was a reduction in tensile failure stresses after time due to exposure to moisture, the minimum values were more than xx psi, well above the wind uplift suctions producible by hurricane wind speeds. In the second phase, techniques to mitigate the moisture buildup were investigated. Preliminary results indicate that incorporating underside air vents within a ccSPF-retrofit may reduce the drying time of the roof sheathing. Further, installing a self-adhered waterproofing membrane underlayment on the roof deck substantially reduced the absorption of moisture into the wood roof system. A discussion of future testing is provided.
机译:本文评估了闭孔喷涂聚氨酯泡沫(ccSPF)作为现有木结构屋顶结构改造的用途。 ccSPF用作建筑围护结构中的绝热材料,它与大多数建筑材料形成牢固的结合。因此,ccSPF用于增强木屋顶结构的抗风性。 ccSPF目前正在佛罗里达州的房屋中安装,尽管尚不清楚这种材料在水存在下的长期性能。这项研究旨在评估漏水对ccSPF翻新木质屋顶板的水分积累和风力提升能力的影响。建造了9个全尺寸屋顶阁楼,并暴露于长期环境条件和两个阶段的模拟降雨中,(第一阶段有五个屋顶,第二阶段有四个屋顶)。在屋面系统中切入了许多泄漏缝隙,以模拟长期漏水的影响。已经发现,在屋顶护套和木框架构件中会发生水分积聚,但是对ccSPF翻新的屋顶增加的抗风能力没有显着影响。在使用小规模样品的长期测试中,证实了水饱和ccSPF对木材粘结的高抗拉强度。暴露于湿气后,拉伸破坏后的应力有所降低,但最小值超过xx psi,远高于飓风产生的吸风量。在第二阶段,研究了减轻水分积聚的技术。初步结果表明,在ccSPF改型中并入下面的通风口可以减少屋顶护套的干燥时间。此外,在屋顶甲板上安装自粘式防水膜垫层可大大减少湿气吸收到木质屋顶系统中。提供了有关将来测试的讨论。

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