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Synthesis and Characterization of Epoxy Resin Reinforced with Luffa Fiber Composites for Sound Absorption

机译:用Luffa纤维复合材料加固环氧树脂的合成与表征吸声

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Now a day's sustainable development becomes an increasingly significant goal in the evaluation and promotion of Industries. There is currently considerable interest in developing sustainable acoustic absorbers. This research aims to develop and characterize composite materials made of Epoxy resin reinforced with luffa fibres as sustainable acoustic absorbers. The fibres where chemically modified by alkaline treatment and its effects on the fibre-matrix interaction were also evaluated. The effect of chemical modification on fibre morphology was studied by Scanning electron microscope (SEM). Likewise, the sound absorption coefficient of composites were studied using 2 types of Impedance tube methods namely Two microphone transfer function and standing wave method. The thermal analyses of composites were made using Thermogravimetric analysis. The sound absorption coefficient of untreated and treated composites across a range of frequencies was very similar. To be more specific, untreated composites appeared to perform better than those of treated ones. After chemical modifications, the SEM characterization showed that the alkaline treatment changed the morphology of fibers, resulting in decrease in sound absorption coefficients of composites. This is probably due to the new morphological aspect. The thermal characterization of composites shows that dehydration and degradation of lignin occurred around 40 – 260°C and maximum percentage cellulose was found to decompose at 380°C.
机译:现在,一天的可持续发展成为评估和促进行业的越来越重要的目标。目前对开发可持续的声学吸收剂有相当大的兴趣。该研究旨在开发和表征由Luffa纤维增强的环氧树脂制成的复合材料作为可持续的声学吸收器。还评价了通过碱性处理化学改性的纤维及其对纤维 - 基质相互作用的影响。通过扫描电子显微镜(SEM)研究了化学改性对纤维形态的影响。同样,使用2种类型的阻抗管方法研究了复合材料的吸声系数,即两个麦克风传递函数和驻波方法。使用热重分析进行复合材料的热分析。在一系列频率上的未处理和处理复合材料的声音吸收系数非常相似。更具体地,未经处理的复合材料似乎比处理过的复合材料更好。化学修饰后,SEM表征显示碱性处理改变了纤维的形态,导致复合材料的吸声系数降低。这可能是由于新的形态方面。复合材料的热表征显示木质素的脱水和降解发生约40-260℃,并发现最大百分比纤维素在380℃下分解。

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