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Enhancement of Thermal and Sound Insulation Properties of Cement Composite Roofing Tile by Addition of Nanocellulose Coated Pineapple Fiber and Modified Rubber Tire Waste

机译:添加纳米纤维素涂层菠萝纤维和改性橡胶轮胎垃圾水泥复合屋顶瓦的热和隔音性能的增强

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In this work, the enhancement of thermal and sound insulation properties of cement composite roofing tile with nanocellulose coated pineapple fiber and modified waste tire rubber is studied. The composite was composed of bacterial nanocellose (BNC) coated pineapple fibers, modified rubber particles, platicizer and type I Portland cement in the weight ratio of 10:50:0.8:100 with the water to cement ratio (w/c) of 0.5. The thermal conducitity of the fiber rubber cement composite could be reduced to 0.1080 ± 0.0048 W/m.K as opposed to 0.3810 ± 0.0041 and 0.5860 ± 0.0050 W/m.K for the fiber cement and the rubber cement composites, respectively. Moreover, the noise reduction coefficient of the fiber rubber cement composite could be increased to 0.2832 as opposed to 0.2143 and 0.1899 for the fiber cement and the rubber cement composites, respectively. These results revealed that adding nanocellulose coated pineapple fiber and modified rubber particles together to the cement composite can enhance the thermal insulation and sound absorption abilities of the composite roof tile significantly better than adding each constituent separately.
机译:在这项工作中,研究了用纳米纤维素涂层菠萝纤维和改性废轮胎橡胶的水泥复合屋顶瓦的热和隔音性能的增强。复合材料由细菌纳米纤维素(BNC)涂覆的菠萝纤维,改性橡胶颗粒,斑块和I型Portland水泥,其重量比为10:50:0.8:100,水与水泥比(w / c)为0.5。纤维橡胶水泥复合材料的热伸缩性可分别将纤维水泥和橡胶水泥复合材料的0.3810±0.0041和0.5860±0.005 / m.0.080±0.0041和0.5860±0.0050W / m。。此外,纤维橡胶水泥复合材料的降噪系数可以分别增加至0.2832,而不是0.2143和0.1899,用于纤维水泥和橡胶水泥复合材料。这些结果表明,将纳米纤维素涂覆的菠萝纤维和改性橡胶颗粒一起加入水泥复合材料可以提高复合车顶瓦片的热绝缘和吸声能力,比单独添加每个组成部分。

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