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Dynamic Mechanical Analysis of Randomly Oriented Short Bagasse/Coir Hybrid Fibre-Reinforced Epoxy Novolac Composites

机译:随机取向的短蔗渣/椰壳纤维混杂纤维增强环氧树脂酚醛清漆复合材料的动态力学分析

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摘要

Hybrid composites of epoxy novolac reinforced with short bagasse fibres and short coir fibres were prepared. The mechanical and dynamic mechanical properties of these bagasse-coir hybrid fibres reinforced epoxy novolac composites were investigated with reference to different layering patterns of the composites. The tensile properties of the tri-layer composites are recorded higher than those of the bi-layer composites, whereas the flexural properties of the tri-layer composites are lower than bi-layer composites. The tensile strength of the intimate mix composite is comparable with tri-layer composite having bagasse as skin material. The effect of layering pattern on storage modulus (E'), damping behavior (tan δ), and loss modulus (E") was studied as a function of temperature and frequency. The E' values of the bi-layer composites are recorded lower than those of tri-layer (bagasse/coir/bagasse) and intimately mixed hybrid composites. The minimum E' value is obtained for the composites made with coir as skin layer. Bi-layer composite shows maximum damping property. The theoretical modeling showed good correlation with experimental results at above glass transition temperature (T_g), while theoretical model deviates experimental data at lower T_g. The Arrhenius relationship has been used to calculate the activation energy of the glass transition of the composites.
机译:制备了用短蔗渣纤维和短椰壳纤维增强的环氧酚醛清漆杂化复合材料。参照复合材料的不同分层模式,研究了这些蔗渣-椰壳纤维杂化纤维增强的环氧酚醛清漆复合材料的机械和动态力学性能。记录的三层复合材料的拉伸性能高于双层复合材料的拉伸性能,而三层复合材料的弯曲性能低于双层复合材料。紧密混合复合材料的拉伸强度与具有甘蔗渣作为表皮材料的三层复合材料相当。研究了分层模式对储能模量(E'),阻尼行为(tanδ)和损耗模量(E“)随温度和频率的影响。双层复合材料的E'值记录得较低比三层(蔗渣/椰壳纤维/蔗渣/甘蔗渣)和紧密混合的混合复合材料的性能要好,以椰壳纤维为表皮层的复合材料的最小E'值是最大的,双层复合材料表现出最大的阻尼性能,理论模型显示出良好的阻尼性能。在玻璃化转变温度(T_g)以上时与实验结果之间存在相关性,而理论模型则在较低的玻璃化转变温度(T_g)下偏离了实验数据,阿累尼乌斯关系式已被用来计算复合材料的玻璃化转变温度。

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