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从电子垃圾到3D打印产品,多次回收利用如何影响高抗冲聚苯乙烯(HIPS)长丝性能。

From Electronic Waste to 3D-Printed Product, How Multiple Recycling Affects High-Impact Polystyrene (HIPS) Filament Performances.

作者信息

Hanitio Edbert Wing, Lutfhyansyah Novan Rifky, Efendi Balqis Mentari, Mardiyati Yati, Steven Steven

机构信息

Materials Science and Engineering Research Group, Faculty of Mechanical and Aerospace Engineering, Institut Teknologi Bandung, Jl. Ganesha No. 10, Bandung 40132, Indonesia.

出版信息

Materials (Basel). 2023 Apr 27;16(9):3412. doi: 10.3390/ma16093412.

Abstract

The rapid growth of the electronics industry is producing excessive electronic waste. One of the common types of materials in electronic waste is high-impact polystyrene (HIPS). In this study, HIPS from electronic waste was recycled through an extrusion process and used as a 3D print filament. The effects of recycling on printability, physical properties, and mechanical properties in horizontal and vertical directions were examined. It was found that until the fourth-cycle, mechanical properties such as horizontal tensile strength, horizontal flexural strength, vertical flexural strength, and vertical impact strength were comparable with virgin commercial filament. In addition, the vertical flexural modulus in the fourth cycle increased by 77.28%. However, the density of recycled HIPs' first to the fourth cycle slightly decreased by 10.6%, and the melt flow rate increased by 20.3%. It was also observed that until the third cycle, the effect of the reprocessing steps was insignificant on the defect of the 3D-printed product. In general, the experiments show various results, mainly in mechanical properties. Nevertheless, recycled HIPS filaments are comparable to or better than commercial ones in some cases. As a result, recycled HIPS filaments hold the potential to be considered as an alternative to other types of 3D print filaments.

摘要

电子工业的快速发展正在产生过多的电子垃圾。电子垃圾中常见的材料类型之一是高抗冲聚苯乙烯(HIPS)。在本研究中,通过挤出工艺对电子垃圾中的HIPS进行回收,并将其用作3D打印丝材。研究了回收对水平和垂直方向上的可打印性、物理性能和机械性能的影响。结果发现,直到第四个循环,水平拉伸强度、水平弯曲强度、垂直弯曲强度和垂直冲击强度等机械性能与原始商业丝材相当。此外,第四个循环中的垂直弯曲模量提高了77.28%。然而,回收的HIPS从第一个循环到第四个循环的密度略有下降,降幅为10.6%,熔体流动速率提高了20.3%。还观察到,直到第三个循环,后处理步骤对3D打印产品缺陷的影响不显著。总体而言,实验显示出各种结果,主要体现在机械性能方面。尽管如此,在某些情况下,回收的HIPS丝材与商业丝材相当或更优。因此,回收的HIPS丝材有潜力被视为其他类型3D打印丝材的替代品。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3a3d/10180321/81575a359832/materials-16-03412-g001.jpg

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