不饱和聚酯椰枣叶纤维DPLF复合材料的力学、形态、热学和动力学研究

IF 1 Q4 MATERIALS SCIENCE, COMPOSITES
Abir Berkouk, A. Meghezzi, Hamza Chelali, M. T. Soltani
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引用次数: 1

摘要

为了提高不饱和聚酯的性能,本研究讨论了开发一种产自阿尔及利亚撒哈拉沙漠北部的天然废物枣棕榈叶纤维DPLF的可能性,该纤维与热固性聚酯树脂UP的聚合物基体相结合。为此,分别用6% NaOH的碱性溶液和硅烷化合物处理含有6%和10%原纤维的复合板。在本研究中,进行了强度和断裂伸长率的力学研究。并用扫描电镜观察了材料的形态行为。采用DSC差示扫描量热法监测ATG热重分析和能量流。并对其吸水性能进行了研究。此外,还进行了动态力学分析。研究结果表明,含6%和10% DPLF纤维的复合材料经碱性氢氧化钠和硅烷处理后,力学性能良好。他们还表明,与未经处理的纤维相比,用碱性溶液和硅烷进行化学处理使复合材料具有一定的热稳定性。研究结果还探讨了各种复合材料对水的吸收,表明化学处理促进了与水的一些分子间结合。研究结果还表明,当复合材料中含有10% DPLF时,处理和未处理的纤维复合材料的存储模量(E')增加,并且切线的最大值向高温方向移动。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mechanical, Morphological, Thermal and Dynamic Study of Composites of Unsaturated Polyesters-Date Palm Leaf Fiber DPLF
In order to improve the properties of unsaturated polyesters, this study discusses the possibilities of developing a natural waste, date palm leaf fiber DPLF, produced in the northern Algerian Sahara, associated with the polymer matrix of a thermosetting polyester resin UP. For this purpose, composite plates containing virgin fiber at rates of 6 and 10% were treated with an alkaline solution of 6% NaOH on the one hand, and a silane compound on the other. In this research, a mechanical study of strength and elongation at break was carried out. In addition, morphological behavior was followed by SEM scanning electron microscopy. ATG thermogravimetric analysis and energy flow were monitored by DSC differential scanning calorimetry. Also, a study of the water absorption capacity has been conducted. In addition, a dynamic mechanical analysis DMA was carried out. The findings of this study show that there is a favorable mechanical behavior for the composites containing the 6% and 10% DPLF fiber, with alkaline NaOH and Silane treatment. They also show that the chemical treatment with alkaline solution and silane gives composites certain thermal stability compared to those with untreated fiber. Findings also explore that the absorption of water by the various composites shows that the chemical treatment promotes some intermolecular associations with water. Findings also show that the storage modulus (E') increases when the composite contains 10% DPLF, treated and untreated, and the maximum value of the tangent moves towards the high temperature for the treated and untreated fiber composite.
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来源期刊
CiteScore
1.90
自引率
25.00%
发文量
32
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