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Date Palm Fiber Reinforced High Density Polyethylene Composites: Effect of Fiber Loadings on the Melt Rheological Behavior

机译:枣椰子纤维增强高密度聚乙烯复合材料:纤维载荷对熔体流变行为的影响

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In the recent years, the trend of using renewable source {green) fillers in the composites fabrication is increasing. One of these green fillers is natural fibers, which referred to the plant fibers, such as date palm fiber (DPF). In the present work, high-density polyethylene (HDPE)/DPF composites have been prepared. Four different DPF loadings were used (i.e. 0, 5, 10, 20 wt%) to prepare the composites. The effect of DPF loadings on the melt rheological behavior of the HDPE/DPF composites were studied. The melt rheological test results showed that both of storage modulus (G') and loss modulus (G") increased with the increase of DPF loadings. Additionally, the Han plot showed an upward shift from neat HDPE (i.e. DFC-0) to DFC-20, which indicated that the melt rheological properties changed with the increase of DPF loadings. The complex viscosity |η~*| of the composites samples also increased with the increase of DPF loadings. The increased was more significant at higher DPF loadings (i.e. DFC-20). Meanwhile, the Carreau-Yasuda model was found to be well fitted with the experimental data.
机译:近年来,复合材料制造中使用可再生源{绿色)填充物的趋势正在增加。其中一种绿色填料是天然纤维,其提到植物纤维,例如日期棕榈纤维(DPF)。在本作工作中,已经制备了高密度聚乙烯(HDPE)/ DPF复合材料。使用四种不同的DPF载荷(即0,5,10,20wt%)以制备复合材料。研究了DPF载荷对HDPE / DPF复合材料熔体流变行为的影响。熔体流变试验结果表明,储存模量(G')和损耗模量(G“)随着DPF负载量的增加而增加。另外,汉字显示从整齐的HDPE(即DFC-0)向DFC向上偏移-20表明熔体流变性能随着DPF载荷的增加而改变。复合材料的复合粘度随着DPF载荷的增加而增加。在较高的DPF载荷增加时,增加更大(即DFC-20)。与此同时,发现Carreau-Yasuda模型与实验数据很好。

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