Batista Moises, Del Sol Irene, Gómez-Parra Álvaro, Vazquez-Martinez Juan Manuel
Mechanical Engineering and Industrial Design Department, School of Engineering, University of Cadiz, Avda. de la Universidad de Cadiz, 10, E11519 Puerto Real, Spain.
Polymers (Basel). 2024 Sep 6;16(17):2529. doi: 10.3390/polym16172529.
Polymer additive manufacturing has advanced from prototyping to producing essential parts with improved precision and versatility. Despite challenges like surface finish and wear resistance, new materials and metallic reinforcements in polymers have expanded its applications, enabling stronger, more durable parts for demanding industries like aerospace and structural engineering. This research investigates the tribological behaviour of FFF surfaces by integrating copper and aluminium reinforcement particles into a PLA (polylactic acid) matrix. Pin-on-disc tests were conducted to evaluate friction coefficients and wear rates. Statistical analysis was performed to study the correlation of the main process variables. The results confirmed that reinforced materials offer interesting characteristics despite their complex use, with the roughness of the fabricated parts increasing by more than 300%. This leads to an increase in the coefficient of friction, which is related to the variation in the material's mechanical properties, as the hardness increases by more than 75% for materials reinforced with Al. Despite this, their performance is more stable, and the volume of material lost due to wear is reduced by half. These results highlight the potential of reinforced polymers to improve the performance and durability of components manufactured through additive processes.
聚合物增材制造已从原型制作发展到能够生产精度更高、通用性更强的关键部件。尽管存在诸如表面光洁度和耐磨性等挑战,但聚合物中的新型材料和金属增强剂扩大了其应用范围,使得航空航天和结构工程等要求苛刻的行业能够制造出更坚固、更耐用的部件。本研究通过将铜和铝增强颗粒融入聚乳酸(PLA)基体中,研究了熔融沉积成型(FFF)表面的摩擦学行为。进行了销盘试验以评估摩擦系数和磨损率。进行了统计分析以研究主要工艺变量之间的相关性。结果证实,尽管增强材料使用起来较为复杂,但它们具有有趣的特性,所制造部件的粗糙度增加了300%以上。这导致摩擦系数增加,这与材料机械性能的变化有关,因为用铝增强的材料硬度增加了75%以上。尽管如此,它们的性能更稳定,因磨损而损失的材料体积减少了一半。这些结果突出了增强聚合物在提高通过增材工艺制造的部件的性能和耐用性方面的潜力。