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再生碳纤维增强聚乳酸熔融沉积成型丝材的力学性能和物理性能

Mechanical and Physical Properties of Recycled-Carbon-Fiber-Reinforced Polylactide Fused Deposition Modelling Filament.

作者信息

Omar Nur'ain Wahidah Ya, Shuaib Norshah Aizat, Hadi Mohd Haidiezul Jamal Ab, Azmi Azwan Iskandar, Misbah Muhamad Nur

机构信息

Faculty of Mechanical Engineering Technology, Universiti Malaysia Perlis (UniMAP), Arau 02600, Perlis, Malaysia.

Centre of Excellence for Biomass Utilization, Universiti Malaysia Perlis (UniMAP), Arau 02600, Perlis, Malaysia.

出版信息

Materials (Basel). 2021 Dec 28;15(1):190. doi: 10.3390/ma15010190.

Abstract

Carbon-fiber-reinforced plastic materials have attracted several applications, including the fused deposition modelling (FDM) process. As a cheaper and more environmentally friendly alternative to its virgin counterpart, the use of milled recycled carbon fiber (rCF) has received much attention. The quality of the feed filament is important to avoid filament breakage and clogged nozzles during the FDM printing process. However, information about the effect of material parameters on the mechanical and physical properties of short rCF-reinforced FDM filament is still limited. This paper presents the effect of fiber loading (10 wt%, 20 wt%, and 30 wt%) and fiber size (63 µm, 75 µm, and 150 µm) on the filament's tensile properties, surface roughness, microstructure, porosity level, density, and water absorptivity. The results show that the addition of 63 µm fibers at 10 wt% loading can enhance filament tensile properties with minimal surface roughness and porosity level. The addition of rCF increased the density and reduced the material's water intake. This study also indicates a clear trade-off between the optimized properties. Hence, it is recommended that the optimization of rCF should consider the final application of the product. The findings of this study provide a new manufacturing strategy in utilizing milled rCF in potential 3D printing-based applications.

摘要

碳纤维增强塑料材料已在多个领域得到应用,包括熔融沉积成型(FDM)工艺。作为一种比原始材料更便宜且更环保的替代品,磨碎的回收碳纤维(rCF)的使用受到了广泛关注。在FDM打印过程中,进料长丝的质量对于避免长丝断裂和喷嘴堵塞至关重要。然而,关于材料参数对短rCF增强FDM长丝的机械和物理性能影响的信息仍然有限。本文介绍了纤维含量(10 wt%、20 wt%和30 wt%)和纤维尺寸(63 µm、75 µm和150 µm)对长丝拉伸性能、表面粗糙度、微观结构、孔隙率水平、密度和吸水性的影响。结果表明,添加10 wt%的63 µm纤维可以提高长丝的拉伸性能,同时表面粗糙度和孔隙率水平最小。添加rCF增加了密度并减少了材料的吸水量。本研究还表明在优化性能之间存在明显的权衡。因此,建议对rCF的优化应考虑产品的最终应用。本研究的结果为在潜在的基于3D打印的应用中利用磨碎的rCF提供了一种新的制造策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e03c/8746072/85ca2c3d1dad/materials-15-00190-g001.jpg

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