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玉米秸秆废弃物中硅烷处理和未处理的天然纤维素纤维作为聚合物复合材料潜在增强材料的表征

Characterization of silane treated and untreated natural cellulosic fibre from corn stalk waste as potential reinforcement in polymer composites.

作者信息

Liu Yucheng, Lv Xueman, Bao Jianlun, Xie Jun, Tang Xu, Che Junjian, Ma Yunhai, Tong Jin

机构信息

Key Laboratory of Bionic Engineering (Ministry of Education, PR China), Jilin University (Nanling Campus), Changchun, 130022, PR China; Editorial Department of Journal of Bionic Engineering, Jilin University (Nanling Campus), Changchun, 130022, PR China.

Department of Ophthalmology, China-Japan Union Hospital of Jilin University, Changchun, 130033, PR China.

出版信息

Carbohydr Polym. 2019 Aug 15;218:179-187. doi: 10.1016/j.carbpol.2019.04.088. Epub 2019 May 2.

Abstract

Natural cellulosic fibres have significant potential as reinforcements to replace synthetic fibres applied in biopolymer composites. A natural cellulosic fibre was extracted from corn stalk waste and then it was treated by silane solution with different concentrations. The influences of silane on chemical, surface morphological and mechanical performances of Corn Stalk Fibre (CSF) as well as impact strength and impact fracture surface morphology of CSF reinforced polymer composites were evaluated in the present work. The chemical results showed that silane treatments remove a certain amount of hemicelluloses and lignin from the CSF surface, and increase the Crystallinity Index (CrI) and Crystalline Size (CrS) of the CSF. The CSF treated with 5 wt.% silane solution (5%STCF) presents a highest tensile strength of 223.33 MPa ± 41.22 MPa and Young's modulus of 18.98 GPa ± 2.43 GPa. The silane treatments can also improve the fibre-matrix interfacial bonding and enhance the impact strength of the polymer composites. The surface morphologies of the untreated and treated natural fibres and the impact fracture surface of the composites were examined by SEM.

摘要

天然纤维素纤维作为增强材料具有巨大潜力,可替代用于生物聚合物复合材料的合成纤维。从玉米秸秆废料中提取了一种天然纤维素纤维,然后用不同浓度的硅烷溶液对其进行处理。在本研究中,评估了硅烷对玉米秸秆纤维(CSF)的化学、表面形态和力学性能以及CSF增强聚合物复合材料的冲击强度和冲击断裂表面形态的影响。化学分析结果表明,硅烷处理可从CSF表面去除一定量的半纤维素和木质素,并提高CSF的结晶度指数(CrI)和结晶尺寸(CrS)。用5 wt.%硅烷溶液处理的CSF(5%STCF)具有最高的拉伸强度,为223.33 MPa±41.22 MPa,杨氏模量为18.98 GPa±2.43 GPa。硅烷处理还可改善纤维与基体的界面结合,提高聚合物复合材料的冲击强度。通过扫描电子显微镜(SEM)对未处理和处理后的天然纤维的表面形态以及复合材料的冲击断裂表面进行了研究。

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