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首页> 外文期刊>Composite interfaces >Jute fiber-reinforced chemically functionalized high density polyethylene (JF/CF-HDPE) composites with in situ fiber/matrix interfacial adhesion by Palsule Process
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Jute fiber-reinforced chemically functionalized high density polyethylene (JF/CF-HDPE) composites with in situ fiber/matrix interfacial adhesion by Palsule Process

机译:黄麻纤维增强化学功能化高密度聚乙烯(JF / CF-HDPE)复合材料的原位纤维/基质界面粘合法

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摘要

Jute fiber-reinforced chemically functionalized polyethylene high density (JF/CFHDPE) composites have been processed, by Palsule process without using any compatibilizer and without any fiber modification, by using chemically functionalized maleic anhydride grafted polyethylene (MAPE) as matrix, in place of polyethylene. Fiber/matrix interfacial adhesion generated in situ, due to interactions between jute fiber and the maleic anhydride of the CF-HDPE matrix, has been established by Fourier transform infrared spectroscopy and scanning electron microscope micrographs. Mechanical properties of the JF/CF-HDPE composites developed with in situ fiber/matrix interfacial adhesion in this study have been found to be higher than those of the CF-HDPE matrix and increase with increasing amounts of jute fibers in the JF/CF-HDPE composites, and are better than properties of literature reported and laboratory processed jute fiber/polyethylene composites with and without MAPE compatibilizer. Measured tensile modulus of JF/CF-HDPE composites compares well with values predicted by rule of mixtures, inverse rule of mixture, Hrisch Model, Halpin-Tsai equations, Nielsen equations, and with Palsule equation. The feasibility of developing natural fiber/maleic anhydride grafted polyolefin composites by Palsule process without using any compatibilizer and without any fiber treatment is demonstrated.
机译:黄麻纤维增强的化学功能化聚乙烯高密度(JF / CFHDPE)复合材料已通过Palsule工艺进行加工,无需使用任何增容剂,也无需进行任何纤维改性,而是使用化学功能化的马来酸酐接枝聚乙烯(MAPE)代替聚乙烯。由于黄麻纤维与CF-HDPE基质中的顺丁烯二酸酐之间的相互作用,原位产生的纤维/基质界面粘附力已经通过傅立叶变换红外光谱和扫描电子显微镜显微照片建立。在这项研究中,发现具有原位纤维/基体界面粘合性的JF / CF-HDPE复合材料的机械性能高于CF-HDPE基体,并且随着JF / CF-C中黄麻纤维含量的增加而提高。 HDPE复合材料的性能优于文献报道和含或不含MAPE增容剂的实验室处理的黄麻纤维/聚乙烯复合材料的性能。 JF / CF-HDPE复合材料测得的拉伸模量与混合物规则,混合物逆定律,Hrisch模型,Halpin-Tsai方程,Nielsen方程和Palsule方程预测的值相比较。证明了在不使用任何增容剂且未进行任何纤维处理的情况下,通过Palsule工艺开发天然纤维/马来酸酐接枝的聚烯烃复合材料的可行性。

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