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Study on Thermal and Acoustic Characteristics of Bagasse Fibre Reinforced Epoxy Composites

机译:蔗渣纤维增强环氧树脂复合材料的热和声特性研究

摘要

This research work mainly deals with processing and characterization of bagasse fiber reinforced epoxy composite. Effective Thermal conductivity and sound absorption coefficient of bagasse fiber reinforced epoxy composites are analysed experimentally by consuming the bagasse fiber from sugarcane waste stock in fabricating the sound absorber material by simple hand layup technique. In the first part their acoustic properties such as sound absorption coefficient (α) are examined and compared with experimental values. In second part the results are compared with the effective thermal conductivity (Keff) values obtained from experiment by using the established models such as Rule-of-Mixture (ROM), Maxwell’s model, bruggeman equation, Lewis and Nielsen. The thermal conductivity values are measured with the UnithermTM model 2022 tester according to the ASTM standard E-1530 whereas, absorption coefficient values are measured in impedance tube machine. According to the research analysis the reinforcement of the bagasse fiber results in reduction of thermal conductivity of epoxy as well as increased in the sound absorption coefficient on increment of filler volume fraction. With up gradation in heat insulation and sound absorption capacity, these reinforced epoxy composites can discover their application in wall insulation, food container, thermos- flask and other similar thermal and acoustic insulation applications
机译:这项研究工作主要涉及蔗渣纤维增强环氧复合材料的加工和表征。通过简单的手工铺网技术,通过消耗甘蔗废料中的蔗渣纤维来制造吸声材料,通过实验分析了蔗渣纤维增强环氧复合材料的有效导热系数和吸声系数。在第一部分中,检查了它们的声学特性,例如吸声系数(α),并与实验值进行了比较。在第二部分中,将结果与通过使用诸如混合规则(ROM),Maxwell模型,bruggeman方程,Lewis和Nielsen等建立的模型从实验获得的有效热导率(Keff)值进行比较。导热系数值是根据ASTM标准E-1530用UnithermTM 2022型测试仪测量的,而吸收系数值是在阻抗管机中测量的。根据研究分析,蔗渣纤维的增强会导致环氧树脂的导热性降低,并且随着填料体积分数的增加,吸声系数也会增加。随着隔热和吸声能力的提高,这些增强的环氧复合材料可以发现其在墙体保温,食品容器,保温瓶以及其他类似的隔热和隔音应用中的应用。

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    Koli Aakash;

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  • 年度 2015
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