首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >DEVELOPMENT AND CHARACTERIZATION OF FLY ASH NANOPARTICLES REINFORCED EPOXY RESIN COMPOSITE FOR ACOUSTIC APPLICATIONS
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DEVELOPMENT AND CHARACTERIZATION OF FLY ASH NANOPARTICLES REINFORCED EPOXY RESIN COMPOSITE FOR ACOUSTIC APPLICATIONS

机译:粉煤灰纳米粒子增强环氧树脂复合材料对声学应用的发展及表征

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Noise is an unwanted sound; requires reduction and control through the use of absorptive materials. This is imperative due to the adverse effect noise poses to human health, knowledge dissemination, and tranquility which is increasing daily due to industrialization and heightened allied activities. The use of natural and synthetic reinforced composites in noise pollution control is an emerging area of research. This study aims to develop and characterize fly ash nanoparticles reinforced epoxy resin composite for acoustic applications. Samples were prepared with fly ash nanoparticles reinforcement at 5%, 10%, 15%, 20%, and 25% and investigation of noise reduction coefficient (NRC), porosity and mechanical properties (hardness, impact, flexural strength) of samples were done. Cenospheres were obtained when fly ash particles were characterized separately with the aid of sieve analysis and x-ray fluorescence analysis. The cenospheres are hollow spherical and lightweight, inert filler material. Correlation between porosity of the samples and their sound absorption properties was observed and showed that as porosity increased, the NRC values increased and as the porosity decreased the NRC values decreased. It was also observed that heat of polymerization, fly ash nanoparticles structure and air bubbles during sample preparation (mixing) influenced the porosity values which in turn influenced the NRC values of the composite. There was also a steady decrease in mechanical properties, as reinforcements were added (5%, 10 %, 15 %, 20 %, and 25 %), this was attributed to the high surface areas and shape of reinforcement added.
机译:噪音是一个不必要的声音;需要通过使用吸收材料来减少和控制。这是由于由于工业化和提高了盟友的人类健康,知识传播和宁静而增加的噪音,知识传播和宁静,因此这是必要的。在噪声污染控制中使用天然和合成的增强复合材料是一种新兴的研究领域。本研究旨在开发和表征粉煤灰纳米粒子增强的声学应用中的环氧树脂复合材料。用粉煤灰纳米颗粒增强制备样品5%,10%,15%,20%和25%,并进行降噪系数(NRC),孔隙率和机械性能(硬度,抗冲击,弯曲强度)进行样品。借助于筛分分析和X射线荧光分析,当粉煤灰颗粒分别表征飞灰颗粒时获得了吊孔。吊板是中空球形和轻质的惰性填充材料。观察到样品的孔隙率和它们的吸声特性之间的相关性,并显示出孔隙率增加,NRC值增加并且随着孔隙率降低而降低。还观察到聚合热,粉煤灰纳米颗粒结构和样品制备期间的气泡影响(混合)影响孔隙率值,又影响了复合材料的NRC值。由于加入增强率(5%,10%,15%,20%和25%),因此也存在稳定的机械性能下降,这归因于加入的高表面积和增强物的形状。

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