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Thermal performance of sisal fiber-cement roofing tiles for rural constructions

机译:剑麻纤维水泥屋面瓦的热性能

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Roofing provides the main protection against direct solar radiation in animal housing. Appropriate thermal properties of roofing materials tend to improve the thermal comfort in the inner ambient. Nonasbestos fiber-cement roofing components reinforced with cellulose pulp from sisal (Agave sisalana) were produced by slurry and dewatering techniques, with an optional addition of polypropylene fibers. Nonasbestos tiles were evaluated and compared with commercially available asbestos-cement sheets and ceramic tiles (frequently chosen as roofing materials for animal housing). Thermal conductivity and thermal diffusivity of tiles were determined by the parallel hot-wire method, along with the evaluation of the downside surface temperature. Cement-based components reinforced with sisal pulp presented better thermal performance at room temperature (25oC), while those reinforced with sisal pulp added by polypropylene fibers presented better thermal performance at 60oC. Non-asbestos cement tiles provided more efficient protection against radiation than asbestos corrugated sheets.
机译:屋面提供了主要的保护,防止动物房屋中直接受到太阳辐射。屋面材料的适当热性能倾向于改善内部环境的热舒适性。通过浆和脱水技术,用剑麻(Agave sisalana)的纤维素纸浆增强了非石棉纤维水泥屋顶材料,并可选地添加了聚丙烯纤维。对非石棉砖进行了评估,并将其与市售的石棉水泥板和瓷砖(通常选择作为动物住房的屋面材料)进行比较。瓷砖的热导率和热扩散率是通过平行热线法确定的,并评估了下表面温度。用剑麻浆增强的水泥基部件在室温(25oC)下表现出更好的热性能,而用聚丙烯纤维添加的剑麻浆增强的那些在60oC下表现出更好的热性能。与石棉波纹板相比,非石棉水泥砖提供了更有效的防辐射保护。

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