使用可持续纳米复合材料的汽车保险杠筋膜原型

Sefiu Adekunle Bello , Sodiq Olamide Olaitan , Mohammed Kayode Adebayo , Lateef Olayinka Akinwande , Funsho Olaitan Kolawole , Maruf Yinka Kolawole , Abdulmumuni Ariboh Suberu , Fawaz Afolami Arowoduye , Muhiz Akangbe , Roseline Ifeoluwa Michael , Timothy Adeyi
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引用次数: 0

摘要

蛋壳和枣子是造成土地污染的废物。将它们转化为有用的材料对于保护环境免受与腐烂蛋壳有关的健康危害以及枣子废料可能产生的影响至关重要。这项研究的重点是将蛋壳和枣籽转化为增强颗粒,用于生产可持续的聚合物和金属纳米复合材料,用于汽车保险杠筋膜的原型设计。蛋壳纳米颗粒掺入低密度聚乙烯达12 wt%。利用铝合金废料和枣籽颗粒制备铝铜镁金属纳米复合材料,并对其进行热处理。对所制备的纳米复合材料进行了化学、结构和力学分析。通过扫描电镜对聚合物纳米复合材料的结构完整性进行了验证。在极低密度聚乙烯中添加12wt %的蛋壳纳米颗粒,其冲击能、拉伸强度和弯曲强度分别提高了1.5%、110.4和47.7%。保险杠筋板模具零件的制造选择了退火后冲击能最高的1 wt%的枣籽颗粒增强Al-Cu-Mg。将所制备的聚合物纳米复合材料与现有的汽车保险杠筋膜材料进行性能比较,证实了含有12 wt%蛋壳纳米颗粒的纳米复合材料的抗拉强度和冲击能适合于汽车保险杠筋膜材料。因此,利用VLDPE/ 12wt %蛋壳纳米复合材料制备保险杠筋膜是卓有成效的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Vehicle bumper fascia prototyping using sustainable nanocomposites
Eggshells and date seeds are wastes which contribute to land pollution. Their conversions to useful materials are important to save the environment from the health hazards associated with rotten eggshells and possible impacts from the date seed wastes. This study focuses on conversion of eggshells and date seeds into reinforcing particles for producing sustainable polymeric and metallic nanocomposites for prototyping a vehicle bumper fascia. Eggshell nanoparticles were incorporated into low-density polyethylene up to 12 wt%. Metallic nanocomposites were produced using Al–Cu–Mg sourced from aluminium alloy scraps and date seed particles and then, heat treated. The developed nanocomposites were analysed chemically, structurally, and mechanically. The structural integrity of the polymeric nanocomposites was confirmed by the scanning electron microscope. Enhancements in impact energy, tensile and flexural strengths at 12 wt% of eggshell nanoparticle additions to the very low-density polyethylene are 1.5, 110.4 and 47.7 %, respectively. 1 wt% date seed particle reinforced Al–Cu–Mg that has highest impact energy after annealing treatment is selected for the mould parts fabrication for forming the bumper fascia. Property comparison of the produced polymeric nanocomposites with those of existing bumper fascia materials affirms that the tensile strength and impact energy of the nanocomposite that contains 12 wt% eggshell nanoparticles are suitable for the automobile bumper fascia. Hence, fabrication of the bumper fascia using the VLDPE/12 wt% eggshell nanocomposite was fruitful.
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