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Kraft Lignin as Fiber Treatment for Natural Fiber-Reinforced Composites

机译:牛皮纸木质素作为天然纤维增强复合材料的纤维处理

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Pine kraft lignin was sedimented from an aqueous NaOH solution(pH 13)onto flax fibers by submerging flax fiber mats in the alkaline solution for 5 min.This treatment has been used to improve the interfacial interactions between the hydrophilic flax and a hydrophobia soy-oil-based liquid molding resin.The flax fiber mat weight increase as a function of the lignin content in the alkaline treatment solution was determined and visualized using electron microscopy.Lignin sedimentation was found to decrease the contact angle between the resin and the treated flax fibers.Tensile and flexural properties of the composite samples showed an increase in mechanical properties with increasing lignin sedimentation,with a positive deviation for low lignin sedimentation.These results are in line with previous published data with hemp fiber composites [Thielemans et al.(2002),J.Appl.Polym.Sci.,83,323].Improved properties are attributed to the improved wettability,while the low lignin content deviation is due to small lignin deposits protruding from the surface and thus improving mechanical interlocking.Features on the fracture surfaces,visualized by electron microscopy,are consistent with these findings.The soy-oil-based resin behaves similar to existing petroleum-based unsaturated polyester and vinylester resins and its use is not inherent to the success of the lignin treatment.
机译:通过将亚麻纤维毡浸入碱性溶液中5分钟,将NaOH水溶液(pH 13)中的松树牛皮木质素沉淀到亚麻纤维上,该处理方法已用于改善亲水亚麻与疏水性大豆油之间的界面相互作用亚麻纤维垫的重量增加与碱性处理溶液中木质素含量的关系,并通过电子显微镜观察,发现木质素沉淀降低了树脂与处理后的亚麻纤维之间的接触角。复合材料样品的拉伸和挠曲性能显示,随着木质素沉降的增加,其机械性能有所提高,而对于低木质素沉降则具有正偏差。这些结果与以前发表的有关大麻纤维复合材料的数据相吻合[Thielemans等(2002), J.Appl.Polym.Sci。,83,323]。改善的性能归因于改善的润湿性,而木质素含量偏差小这是由于少量的木质素沉积物从表面突出,从而改善了机械互锁。断裂表面的特征(通过电子显微镜观察)与这些发现是一致的。豆油基树脂的行为类似于现有的石油基不饱和聚酯和乙烯基酯树脂及其使用并不是木质素处理成功的固有条件。

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