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Effects of surface grafting of copper nanoparticles on the tensile and bonding properties of flax fibers

机译:铜纳米粒子表面接枝对亚麻纤维拉伸和粘结性能的影响

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In the present work, functionalized copper nanoparticles (FCuNPs) were grafted onto flax fibers, and the effects on the tensile properties, bonding strength to an epoxy resin, as well as the properties of the flax fiber-epoxy model composites were investigated. The copper nanoparticles were synthesized at ambient temperature by a chemical reduction method. The reduction of solution of copper chloride salt in the polyvinylalcohol medium was done by using sodium borohydrate. Ultraviolet-visible spectroscopy, transmission electron microscopy, and X-ray diffraction studies were used to characterize the size of the synthesized particles. The synthesized copper nanoparticles were applied to saturate the unidirectional flax natural fibers, whose surfaces were previously tailored with the cationic agent triethylammonium chloride. A remarkable improvement in the tensile strength by 75% and modulus by 50% for FCuNPs grafted flax fibers was found. Thermo-mechanical properties of the flax fiber reinforced epoxy composites were studied using DMTA. Finally, the anti-microbial analysis for composites was also conducted against Aspergillus niger spores, and enhanced anti-microbial performance was observed for treated fiber-based composites.
机译:在目前的工作中,将功能化的铜纳米粒子(FCuNPs)接枝到亚麻纤维上,并研究了其对拉伸性能,与环氧树脂的粘合强度以及亚麻纤维-环氧模型复合材料的性能的影响。通过化学还原法在环境温度下合成铜纳米粒子。通过使用硼氢化钠还原氯化铜盐在聚乙烯醇介质中的溶液。紫外可见光谱,透射电子显微镜和X射线衍射研究用于表征合成颗粒的大小。将合成的铜纳米粒子用于饱和单向亚麻天然纤维,该纤维的表面事先已用阳离子试剂三乙基氯化铵定制。发现FCuNPs接枝亚麻纤维的抗张强度显着提高了75%,模量提高了50%。使用DMTA研究了亚麻纤维增强环氧复合材料的热机械性能。最后,还对黑曲霉的孢子进行了复合材料的抗微生物分析,观察到处理过的纤维基复合材料的抗微生物性能增强。

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