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Acoustic and thermal performances assessment of sustainable insulation panels made from cardboard waste and natural fibers

机译:由纸板废料和天然纤维制成的可持续隔热板的声学和热性能评估

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? 2022 Elsevier LtdThis work aims to elaborate and characterize new ecological composite materials from cardboard waste and abandoned natural fibers for the manufacture of local acoustic absorbers/sound insulation panels and thermal insulation panels. For this purpose, twenty-eight samples were prepared by mixing a mass fraction of 60 of cardboard waste and 40 of natural fibers available in the south-east region of Morocco, i.e. Doum, Wheat straw, Reed, Esparto, Bagasse, Fig, and Olive. Firstly, the morphological analysis of the different fibers was carried out by scanning electron microscopy (SEM). Secondly, the acoustic and thermal properties were measured experimentally using standardized methods. In addition, bulk density, air flow resistivity and water absorption were measured. The experimental results showed that the studied panels have good acoustic and thermal performances. The sound absorption coefficient, sound transmission loss, bulk density, thermal conductivity, and heat capacity were in the range of 0.4–0.8; 20–45 dB; 278.6–343.8 kg/m3; 0.072–0.10 W/m.K; 1254.5–1807.5 J/kg.K, respectively. Consequently, the new panels developed in this study are good candidates for the development of local materials with the required acoustic and thermal insulation properties for applications in buildings. Their main advantages are: low environmental impact, low cost, and they can even compete with commercialized synthetic materials.
机译:?2022 Elsevier Ltd这项工作旨在从纸板废料和废弃的天然纤维中阐述和表征新的生态复合材料,用于制造局部吸音板/隔音板和隔热板。为此,将摩洛哥东南部地区60%的纸板废料和40%的天然纤维(即杜姆、小麦秸秆、芦苇、埃斯帕托、甘蔗渣、无花果和橄榄)的质量分数混合,制备了28个样品。首先,通过扫描电子显微镜(SEM)对不同纤维进行形貌分析;其次,使用标准化方法通过实验测量了声学和热学性能。此外,还测量了体积密度、气流电阻率和吸水率。实验结果表明,所研究的面板具有良好的声学和热学性能。吸声系数、传声损耗、堆积密度、导热系数、热容在0.4–0.8范围内;20–45分贝;278.6–343.8 千克/立方米;0.072–0.10 瓦/米;1254.5–1807.5 焦耳/千克。K。因此,本研究中开发的新面板是开发具有建筑应用所需隔音和隔热性能的局部材料的良好候选者。它们的主要优点是:对环境影响小,成本低,甚至可以与商业化的合成材料竞争。

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