首页> 外文期刊>Journal of natural fibers >A Study on Alkali Treatment Influence on Prosopis Juliflora Fiber-Reinforced Epoxy Composites
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A Study on Alkali Treatment Influence on Prosopis Juliflora Fiber-Reinforced Epoxy Composites

机译:碱治疗对Prosopis Juliflora纤维增强环氧复合材料的研究

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摘要

Usage of natural fibers as reinforcing materials in composites has increased in recent years, due to their exceptional advantages like lightweight, low cost and biodegradable. To overcome the drawbacks in using the natural fibers due to the lack of bonding, higher moisture absorption and lower melting point, surface modification by alkali treatment on prosopis juliflora fibers with different weight concentrations of NaOH (5%, 10% and 15%) were carried out in the present work. These fibers have been used as reinforcements in an epoxy matrix. The outcomes of fiber alteration along with different weight proportions (10, 15, 20 and 25 wt%) of prosopis juliflora on the mechanical and water absorption properties were investigated. The outcomes of fiber-loading and alkali treatments on the aforementioned properties were investigated. The alkali behavior of fiber attained better results by improving the bond between the fiber surface and polymer matrix and also increased the fiber strength. The water absorption test showed that NaOH-treated fiber composites reveal a smaller amount of water absorption than untreated prosopis juliflora fiber-reinforced composites. The alkali conducts effect on the prosopis juliflora fibers have been distinguished by means of infrared spectroscopy (FTIR), thermo-gravimetric analysis (TGA) study and microscopy analysis (SEM).
机译:近年来,近年来复合材料中的增强材料的用途是由于其轻质,成本低,可生物降解等优点。为了克服由于缺乏粘合,较高的吸湿性和较低的熔点而在使用天然纤维,通过对不同重量浓度的NaOH(5%,10%和15%)进行碱治疗的碱性处理的表面改性在目前的工作中进行。这些纤维已被用作环氧基质中的增强物。研究了纤维改变的结果以及不同的重量比例(10,15,20和25wt%)ProsoPis Juliflora对机械和吸水性特性进行了研究。研究了对上述性能的纤维加载和碱处理的结果。通过改善纤维表面和聚合物基质之间的粘合,纤维的碱性行为达到了更好的结果,并且还增加了纤维强度。吸水试验表明,NaOH处理的纤维复合材料显示出比未处理的PROSOPIS Juliflora纤维增强复合材料较少量的吸水性。通过红外光谱(FTIR),热重分析(TGA)研究和显微镜分析(SEM),通过红外光谱(FTIR),碱对PROFOPIS Juliflora纤维进行效果。

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