稻壳填充聚乙烯废弃物复合材料力学与物理性能的比较研究

Siti Nor Din
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摘要

聚乙烯(PE)是一种塑料,广泛应用于许多不同的应用领域,已成为我们日常生活中重要的一部分。然而,许多塑料制品制造商对环境产生了重大影响。因此,研究了几种方法,以减少废物处理问题。另一方面,稻壳(RH)是一种农业废弃物,它含有木质纤维素纤维,可以用作聚合物复合材料的填料。因此,将PE废物和RH纤维结合起来可能是拯救我们世界的可行选择。本研究的目的是确定不同的相对湿度纤维负荷,包括5%、10%、15%、20%和25%,对用HDPE和LDPE材料制造的复合材料的机械和物理特性的影响。研究发现,由于亲水性纤维与疏水性聚合物基体之间的结合不足,填料用量的增加会降低复合材料的抗拉强度、断裂伸长率和冲击强度。与RH/HDPE相比,在25% RH纤维的最高负荷下,RH/LDPE复合材料的拉伸强度下降了45%。两种复合材料的断裂伸长率都下降了98 - 99%,这是由于链伸长率和迁移率受到了限制。此外,相对于RH/LDPE废料复合材料的31%,RH/HDPE废料复合材料的冲击强度值下降了43%。相反,填料的加入大大提高了复合材料的模量和密度。虽然RH/HDPE和RH/LDPE复合材料的发展趋势相似,但RH/HDPE废料复合材料的机械性能优于RH/LDPE废料复合材料。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comparative Study of Mechanical and Physical Properties of Rice Husk Filled Polyethylene Waste Composites
Polyethylene (PE), a type of plastic, is utilized extensively in many different applications and has become a significant part of our daily life. However, numerous plastic product manufactures have a significant environmental impact. As a result, several approaches have been investigated in order to reduce waste disposal issues. Rice husk (RH), on the other hand, is a form of agricultural waste that contains lignocellulosic fiber that can be used as a filler in polymer composites. As a result, combining both PE waste and RH fiber could be a viable option for saving our world. The objective of this study was to ascertain the impact of different RH fiber loadings, including 5, 10, 15, 20, and 25 %, on the mechanical and physical characteristics of composites manufactured from used HDPE and LDPE materials. Due to inadequate bonding between the hydrophilic fiber and the hydrophobic polymer matrix, it was discovered that increasing the filler loading lowered the tensile strength, elongation at break, and impact strength of the composites. In comparison to RH/HDPE, the tensile strength of RH/LDPE composites showed a greater decline at 45 % at the highest loading of 25 % RH fiber. Both composites showed a 98–99 % decrease in elongation at break as a result of constrained chain elongation and mobility. Additionally, the impact strength value of RH/HDPE waste composites decreased by 43 % compared to 31 % for RH/LDPE waste composites. In contrast, the inclusion of fillers improved the modulus and density of the composites substantially. While the trends for RH/HDPE and RH/LDPE composites are similar, RH/HDPE waste composites demonstrated superior mechanical characteristics than RH/LDPE waste composites.
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