Al Abir Anzum, Chakrabarti Dipto, Trindade Bruno
CEMMPRE-Centre for Mechanical Engineering, Materials and Processes, University of Coimbra, Rua Luís Reis Santos, 3030-788 Coimbra, Portugal.
Polymers (Basel). 2023 May 25;15(11):2451. doi: 10.3390/polym15112451.
This study investigated the mechanical and tribological properties of 3D-printed Poly (lactic acid) (PLA) composites reinforced with different concentrations of carbon fibers (SCF) and graphene nanoparticles (GNP) (0.5 to 5 wt.% of each filler). The samples were produced using FFF (fused filament fabrication) 3D printing. The results showed a good dispersion of the fillers in the composites. SCF and GNP promoted the crystallization of the PLA filaments. The hardness, elastic modulus, and specific wear resistance grew with the increase in the filler concentration. A hardness improvement of about 30% was observed for the composite with 5 wt.% of SCF + 5 wt.% GNP (PSG-5) compared to PLA. The same trend was observed for the elastic modulus with an increase of 220%. All the composites presented lower coefficients of friction (0.49 to 0.6) than PLA (0.71). The composite PSG-5 sample showed the lowest value of specific wear rate (4.04 × 10 mm/N.m), corresponding to about a five times reduction compared to PLA. Therefore, it was concluded that the addition of GNP and SCF to PLA made it possible to obtain composites with better mechanical and tribological behavior.
本研究调查了用不同浓度的短切碳纤维(SCF)和石墨烯纳米颗粒(GNP)(每种填料含量为0.5至5 wt.%)增强的3D打印聚乳酸(PLA)复合材料的力学和摩擦学性能。样品采用熔融长丝制造(FFF)3D打印技术制备。结果表明填料在复合材料中分散良好。SCF和GNP促进了PLA长丝的结晶。硬度、弹性模量和比耐磨性随填料浓度的增加而提高。与PLA相比,含5 wt.% SCF + 5 wt.% GNP的复合材料(PSG-5)的硬度提高了约30%。弹性模量也呈现相同趋势,增加了220%。所有复合材料的摩擦系数(0.49至0.6)均低于PLA(0.71)。复合PSG-5样品的比磨损率最低(4.04×10 mm/N.m),与PLA相比降低了约五倍。因此,得出结论,向PLA中添加GNP和SCF可以获得具有更好力学和摩擦学性能的复合材料。