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Thermal Behaviour of a Gypsum Fibre Board Associated with Rigid Polyurethane Foam under Standard Fire Conditions

机译:标准火灾条件下与硬质聚氨酯泡沫相关的石膏纤维板的热行为

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摘要

Due to its low thermal conductivity (λ ≈ 20 mW/m.K), rigid polyurethane (PUR) foam has the potential to improve the thermal performance of buildings without increasing the thickness of construction elements. Nevertheless, PUR foam has the drawback of having a low resistance to fire: non-flaming thermal degradation of PUR starts at temperatures about 150-180°C, and flashignition around 300°C. Taking advantage of the stable behaviour of gypsum fibre at high temperature, a new panel composed of gypsum fibre and PUR has been developed, with the objective of resisting to fire for 30 minutes. At first, the thermal properties of the different materials at high temperature have been established. Then, a heat transfer model using temperature-dependent thermal properties and apparent specific heat capacity has been developed. Finally, the model has been compared to full-scale test results performed according to EN 1365-1.
机译:由于其低导热系数(λ≈20 mW / m.K),硬质聚氨酯(PUR)泡沫具有在不增加建筑构件厚度的情况下改善建筑物热性能的潜力。然而,PUR泡沫具有耐火性低的缺点:PUR的非燃烧热降解始于约150-180°C的温度,闪燃约300°C。利用石膏纤维在高温下的稳定性能,开发了一种由石膏纤维和PUR组成的新型面板,其目标是耐火30分钟。首先,已经确定了不同材料在高温下的热性能。然后,已经开发出利用温度依赖性热特性和表观比热容的传热模型。最后,将模型与根据EN 1365-1执行的全面测试结果进行了比较。

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