再生HDPE与仙人掌复合材料熔丝制备生物基材料

IF 1.8 Q3 COMPUTER SCIENCE, INTERDISCIPLINARY APPLICATIONS
Mamadou Bhoye BAH, James Wamai Mwangi, Karanja Kabini
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引用次数: 0

摘要

塑料污染已成为一个重大的全球问题,凸显了对可持续替代品和有效回收方法的需求。同时,仙人掌植物提供了一个有前途的生物基材料来源,特别是由于它在恶劣环境中的弹性。本研究的重点是仙人掌粉末与再生高密度聚乙烯(rHDPE)颗粒混合的性能表征,用于使用熔融长丝制造方法生产适合3D打印的长丝。研究了仙人掌和rHDPE的物理性能,分别用5%、10%和15%的仙人掌粉和rHDPE制备了复合长丝。利用万能试验机对复合材料长丝进行了性能评价。分析了仙人掌粉的化学成分,确定了仙人掌粉的粒度分布。HDPE颗粒和仙人掌粉的组合产生了一种可行的长丝,尽管增加仙人掌的比例降低了挤出性能。纯rHDPE长丝的拉伸强度为16.27 MPa, 5%和10%仙人掌复合材料的拉伸强度分别为14.97和10.74 MPa。打印试样的拉伸强度记录为:rHDPE为13.04 MPa, 5%仙人掌复合材料为8.28 MPa。结果表明,rHDPE的抗弯强度为21.77 MPa, 5%仙人掌的抗弯强度为15.64 MPa。这些发现表明,仙人掌粉可以作为一种有价值的添加剂,用于开发可持续的3D打印材料。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Fused Filament Fabrication of Recycled HDPE and Cactus Composite as a Biobased Material

Fused Filament Fabrication of Recycled HDPE and Cactus Composite as a Biobased Material

Plastic pollution has emerged as a significant global issue, highlighting the need for sustainable alternatives and effective recycling methods. Concurrently, the cactus plant offers a promising source of bio-based materials, particularly due to its resilience in harsh environments. This study focused on the performance characterization of cactus powder mixed with recycled high-density polyethylene (rHDPE) pellets for filament production suitable for 3D printing using the Fused Filament Fabrication method. The physical properties of both cactus and rHDPE were investigated, and composite filaments were prepared from 5%, 10%, and 15% cactus powder alongside rHDPE. Performance evaluation of the composite filaments was conducted using a Universal Testing Machine. Additionally, the chemical composition of cactus powder was analyzed, and the particle size distribution was determined. The combination of HDPE pellets and cactus powder yielded a viable filament, though increasing proportions of cactus reduced the extrusion properties. The tensile strength of pure rHDPE filament was measured at 16.27 MPa, while the tensile strengths for the 5% and 10% cactus composites were 14.97 and 10.74 MPa, respectively. For the printed specimens, the tensile strength was recorded at 13.04 MPa for rHDPE and 8.28 MPa for the 5% cactus composite. The flexural strength results showed 21.77 MPa for rHDPE and 15.64 MPa for the 5% cactus composite. These findings suggest that cactus powder can serve as a valuable additive in developing sustainable 3D printing materials.

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CiteScore
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