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首页> 外文期刊>Journal of King Saud University-Engineering Sciences >Mechanical properties of abaca fiber reinforced polypropylene composites: Effect of chemical treatment by benzenediazonium chloride
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Mechanical properties of abaca fiber reinforced polypropylene composites: Effect of chemical treatment by benzenediazonium chloride

机译:蕉麻纤维增强聚丙烯复合材料的机械性能:氯化苯重氮化学处理的效果

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Untreated abaca fibers and benzenediazonium chloride treated abaca strands were employed as reinforcements for fabricating polypropylene composites by injection molding method. Various composites were fabricated with different fiber loadings of 30%, 35%, 40%, 45% and 50% with and without coupling agents. Abaca composites without coupling agents with 40% fiber loadings were found to have optimum properties when mechanical characterization was done and the investigation also revealed that untreated and treated composites with coupling agents were found to have improved tensile strength, flexural strength and impact strength when correlated to composites without coupling agents. Among various surface modifications performed, benzenediazonium chloride treated abaca strands reinforced polypropylene composites with coupling agents showed superior properties. For composites including coupling agents, surge in tensile strength and flexural strength was observed with hike in fiber content up to 50% whereas optimum impact properties were shown at 40% fiber loading. Between untreated composites with coupling agent and without coupling agent, composites with coupling agent showed 77.50% hike in tensile strength for 50% fiber loading. Benzenediazonium chloride treated composites with coupling agent showed 70.07% increase in tensile strength when compared to benzenediazonium chloride treated composites without coupling agent for 50% fiber loading. Untreated composites with coupling agent showed 64.91% increase in flexural strength when compared to untreated composites without coupling agent for 50% fiber loading. Benzenediazonium chloride treated composites with coupling agent showed 36.84% increase in flexural strength when compared to benzenediazonium chloride treated composites without coupling agent for 50% fiber loading. However, in case of impact strength, addition of coupling agent increased the impact strength up to 35% fiber loading and beyond 35% fiber loading addition of coupling agent decreased the impact strength. Untreated composites with coupling agent showed 3.53% decrease in impact strength when compared to untreated composites without coupling agent for 40% fiber loading. Benzenediazonium chloride treated composites with coupling agent showed 6.59% decrease in impact strength when compared to benzenediazonium chloride treated composites without coupling agent for 40% fiber loading.
机译:将未经处理的蕉麻纤维和经苯重氮氯化物处理过的蕉麻线用作增强材料,通过注塑方法制造聚丙烯复合材料。在有和没有偶联剂的情况下,制造了具有30%,35%,40%,45%和50%的不同纤维负载量的各种复合材料。当进行机械表征时,发现不添加偶联剂且纤维含量为40%的Abaca复合材料具有最佳性能,研究还显示,与偶联剂相关时,发现未处理和处理的偶联剂复合材料具有改善的拉伸强度,弯曲强度和冲击强度。不含偶联剂的复合材料。在进行的各种表面改性中,氯化苯二重氮处理的蕉麻丝增强聚丙烯复合材料与偶联剂表现出优异的性能。对于包含偶联剂的复合材料,当纤维含量提高到50%时,观察到抗张强度和弯曲强度的激增,而在40%的纤维负载下显示出最佳的冲击性能。在具有偶联剂和不具有偶联剂的未处理复合材料之间,具有50%纤维负载量的具有偶联剂的复合材料的拉伸强度提高了77.50%。与不使用偶联剂的苯二重氮氯化物处理的复合材料(含50%的纤维负载)相比,含偶联剂的氯化苯二氮卓处理的复合材料的抗张强度提高了70.07%。与未偶联剂的未处理复合材料相比,未经偶联剂的复合材料在50%纤维负载下的抗弯强度提高了64.91%。与未使用偶联剂的苯重氮氯化物处理的复合材料(含50%的纤维)相比,含偶联剂的氯化苯二氮卓处理的复合材料的抗弯强度提高了36.84%。然而,在冲击强度的情况下,加入偶联剂使冲击强度增加至高达35%的纤维负载量,而超过35%的纤维负载,则加入偶联剂降低了冲击强度。与未偶联剂的未处理复合材料相比,未经偶联剂的复合材料在40%的纤维负载下的冲击强度降低了3.53%。与未添加偶联剂的苯重氮氯化物处理的复合材料相比,含偶合剂的氯化苯二唑鎓氯化物处理的复合材料在纤维负载量为40%时,其冲击强度降低了6.59%。

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