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Structural laminated hybrid composites based on raffia and glass fibers: Effect of alkali treatment, mechanical and thermal properties

机译:基于酒椰纤维和玻璃纤维的结构层压杂化复合材料:碱处理,机械和热性能的影响

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摘要

This work deals with the effect of the alkaline treatment of laminated hybrid composite materials based on Rafia fibers and glass fibers in sandwich structure. Structural analysis (Fourier Transform Infrared Spectroscopy) has shown that most of the changes caused by the alkaline treatment of Rafia fibers involve the removal of fiber surface from a certain amount of wax, hemicellulose, pectin and lignin. These changes are at the origin of the improvement of the mechanical properties of the composites. Flexural modulus results show an increase of 3.4 GPa-3.6 GPa for the untreated and treated Rafia fiber sandwich composites, respectively. The degree of interfacial adhesion quantified by a droplet test, shows that the alkaline modification reveals a sharp increase in shear stress for processed Rafia fibers with a 38% gain compared to untreated fibers. In addition, the measurement of the thermal conductivity has proved that the alkaline treatment decreases the thermal conductivity of the fibers. Finally, the mixing rule technique was used to predict the flexural modulus of the laminates using the mechanical parameters of each layer and the result was compared to the experimental data. It is assumed that Rafia fiber treatments will support the development of synthetic fiber reinforced sandwich polymer composites for industrial applications.
机译:这项工作处理了基于拉菲亚纤维和三明治结构的玻璃纤维的层压混杂复合材料的碱处理效果。结构分析(傅立叶变换红外光谱法)表明,拉菲纤维的碱性处理引起的大多数变化涉及从一定量的蜡,半纤维素,果胶和木质素中去除纤维表面。这些变化是复合材料机械性能改善的起点。弯曲模量结果表明,未处理和处理后的拉菲纤维夹芯复合材料分别增加了3.4 GPa-3.6 GPa。通过液滴测试量化的界面粘附程度表明,碱性改性显示出经过处理的拉菲亚纤维的剪切应力急剧增加,与未处理的纤维相比,增加了38%。另外,热导率的测量已经证明,碱性处理降低了纤维的热导率。最后,使用混合规则技术使用每一层的机械参数来预测层压板的弯曲模量,并将结果与​​实验数据进行比较。假定Rafia纤维处理将支持工业应用的合成纤维增强夹芯聚合物复合材料的开发。

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