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Surface grafting of flax fibres with hydrous zirconia nanoparticles and the effects on the tensile and bonding properties

机译:含水氧化锆纳米粒子对亚麻纤维的表面接枝及其对拉伸性能和粘合性能的影响

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摘要

In the present study, a flax fibre yarn was modified through grafting of hydrous zirconia nanoparticles by hydrolysis of zirconium oxychloride solution, and the effects on the fibre and fiber-bonding properties were investigated. The grafting of the nanoparticles was confirmed by microscopy and spectroscopy analysis. The tensile and bonding strength to an epoxy resin (diglycidyl ether of bisphenol - F) of the modified flax fibres were tested with a single fibre tensile test and microbond pull-out test, respectively. Grafting of the nanoparticles onto the flax fibres brings in an obvious increase in the tensile strength and the interfacial shear strength of the flax fibre to the epoxy resin. An unidirectional flax fibre reinforced epoxy model composite was prepared by hand and characterized in terms of the thermo-mechanical and antimicrobial properties. Surface grafting of the flax fibre leads to an increase in the glass transition temperature and storage modulus, which is attributed to the enhanced bonding strength between the grafted fibre and the epoxy resin. In addition, the treated flax fibre-based composites expressed an antimicrobial performance. The study demonstrates that the fibre surface treatment with grafting of hydrous zirconia nanoparticles is a potential method to enhance the tensile and bonding properties of flax fibres.
机译:在本研究中,通过水解氯氧化锆溶液接枝含水氧化锆纳米粒子来改性亚麻纤维纱,并研究其对纤维和纤维粘合性能的影响。通过显微镜和光谱分析证实了纳米颗粒的接枝。改性亚麻纤维对环氧树脂(双酚-二缩水甘油醚的缩水甘油醚)的拉伸强度和粘合强度分别通过单纤维拉伸试验和微粘合拉出试验进行测试。纳米颗粒接枝到亚麻纤维上使亚麻纤维对环氧树脂的抗张强度和界面剪切强度明显增加。手工制备了单向亚麻纤维增强环氧模型复合材料,并根据热机械和抗菌性能对其进行了表征。亚麻纤维的表面接枝导致玻璃化转变温度和储能模量的增加,这归因于接枝纤维与环氧树脂之间增强的粘合强度。另外,处理过的亚麻纤维基复合材料表现出抗菌性能。研究表明,水合氧化锆纳米粒子的接枝处理纤维表面是增强亚麻纤维的拉伸和粘合性能的潜在方法。

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