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The effect of alkaline treatment and fiber orientation on impact resistant of bio-composites Sansevieria trifasciata fiber/polypropylene as automotive components material

机译:碱性处理和纤维取向对生物复合材料抗冲击性的影响Sansevieria Trifasciata纤维/聚丙烯作为汽车成分材料

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The increasing amount of car usage is causing an escalated amount of fuel consumption and CO_2 emission. It implicates demand for the automotive industry to increase the efficiency of their products, One of the most effective ways to solve the issue is to find green weight light material for the interior automotive component. The Aim of this research was to investigate the effect of alkaline treatment and fiber orientation on the impact resistant of material bio- composite sansevieiria trifasciata fiber/Polypropylene. In this research, bio-composites sansevieria trifasciata fiber/Polypropylene was prepared with random fiber orientation and unidirectional orientation by using a hot press method with pressure 140 Bar and temperature 240°C. Fiber was taken from Sansevieria trifasciata by using mechanical retting. In this study, Sansevieria fiber was given alkaline treatment (mercerization) with NaOH 3% (w/w) solution at temperature 100°C for an hour. The fraction of fiber volume that were used in this experiment are 0%, 5%, 10%, and 15%. The impact test was conducted based on ASTM D 6110 - 04, and the fracture analysis was investigated by scanning electron microscope (SEM). The best result of impact toughness and fracture analysis were achieved by bio composite untreated and unidirectional sansevieria trifasciata fiber/Polypropylene with fiber volume fraction of 15%, which was 48.092kJ/m~2 for impact resistant. As compared to the impact toughness standard, which needed for interior automotive component, the impact toughness of sansevieria trifasciata fiber/Polypropylene has fulfilled the standard of the interior material automotive industry. Therefore, this material can be potentially used as materials on the car exterior component.
机译:汽车使用的增加量造成的燃料消耗和排放CO_2的逐步升级的量。这暗示汽车行业,以增加其产品的效率要求,其中一个解决问题的最有效的方法就是找到绿色的轻质材料用于汽车内部组件。这项研究的目的是调查碱处理和纤维取向的影响生物材料复合sansevieiria trifasciata纤维/聚丙烯的耐效果。在这项研究中,生物复合材料虎尾兰纤维/聚丙烯是通过使用热压法与压力140巴和温度240℃下用随机纤维取向和单向取向制备。纤维用机械从沤虎尾兰拍摄。在这项研究中,虎尾兰纤维给予碱处理(丝光)用NaOH 3%在温度100℃(重量/重量)的溶液一小时。在这个实验中使用的纤维的体积分数为0%,5%,10%,和15%。冲击试验基于ASTM 6110 d进行 - 04,和断裂分析通过扫描电子显微镜(SEM)分析。 /聚丙烯为15%的纤维体积分数,这对耐冲击48.092kJ /米〜2的冲击韧性和断裂分析的最好的结果是由生物复合未处理的和单向虎尾兰纤维来实现的。相比于冲击韧性标准,这需要用于汽车内部部件,虎尾兰的冲击韧性trifasciata纤维/聚丙烯已经履行了内部材料汽车工业的标准。因此,该材料可以潜在地用作汽车外部部件上的材料。

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