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Processing and Characterization of Natural Fibre Reinforced Composites using Lignin Phenolic Binder

机译:木质素酚醛粘合剂对天然纤维增强复合材料的加工与表征

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Natural fibre-reinforced composites were prepared using a lignin-phenolic resol binder, in which 30 wt.-% of the phenol was substituted by a modified lignosulfonate from renewable resources. The reinforcement of the lignin phenolic binder matrix was accomplished by different natural fibres. The non-woven flax, flax/wood and flax/kenaf fibre mats were impregnated with the lignin-phenolic binder and they were compression-moulded at elevated temperature. The curing condensations of the synthesized lignin phenolic resins were characterized by differential scanning calorimetry. Water absorption, thickness swelling and flexural strengths of the natural fibre-reinforced composites were determined, as well as their thermal stability using thermogravimetric analysis. The flexural strengths of the flax/wood and flax/kenaf composites were higher than those of the flax reinforced composite. Morphological analysis using scanning electron microscopy showed an enhancement in fibre/matrix interaction for the flax/wood and flax/kenaf fibre mixtures.
机译:使用木质素-酚醛可熔酚醛树脂粘合剂制备天然纤维增强的复合材料,其中30 wt .-%的苯酚被可再生资源的改性木质素磺酸盐代替。木质素酚醛粘合剂基质的增强是通过不同的天然纤维完成的。用木质素-酚醛粘合剂浸渍非织造亚麻,亚麻/木材和亚麻/洋麻纤维垫,并在高温下将其压模。通过差示扫描量热法对合成的木质素酚醛树脂的固化缩合进行了表征。使用热重分析法测定了天然纤维增强复合材料的吸水率,厚度膨胀和弯曲强度,以及它们的热稳定性。亚麻/木材和亚麻/洋麻复合材料的弯曲强度高于亚麻增强复合材料的抗弯强度。使用扫描电子显微镜的形态学分析显示,亚麻/木材和亚麻/洋麻纤维混合物的纤维/基质相互作用增强。

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