Correia Arménio N, Gaspar Beatriz M, Cipriano Gonçalo, Braga Daniel F O, Baptista Ricardo, Infante Virgínia
Instituto Superior Técnico, Universidade de Lisboa, 1049-001 Lisboa, Portugal.
Institute of Science and Innovation in Mechanical and Industrial Engineering, 4200-465 Porto, Portugal.
Polymers (Basel). 2024 Feb 22;16(5):602. doi: 10.3390/polym16050602.
With the increasing demand for lighter, more environmentally friendly, and affordable solutions in the mobility sector, designers and engineers are actively promoting the use of innovative integral dissimilar structures. In this field, friction stir-based technologies offer unique advantages compared with conventional joining technologies, such as mechanical fastening and adhesive bonding, which recently demonstrated promising results. In this study, an aluminum alloy and a glass fiber-reinforced polymer were friction stir joined in an overlap configuration. To assess the main effects, interactions, and influence of processing parameters on the mechanical strength and processing temperature of the fabricated joints, a full factorial design study with three factors and two levels was carried out. The design of experiments resulted in statistical models with excellent fit to the experimental data, enabling a thorough understanding of the influence of rotational speed, travel speed, and tool tilt angle on dissimilar metal-to-polymer friction stir composite joints. The mechanical strength of the composite joints ranged from 1708.1 ± 45.5 N to 3414.2 ± 317.1, while the processing temperature was between 203.6 ± 10.7 °C and 251.5 ± 9.7.
随着移动领域对更轻、更环保且价格合理的解决方案的需求不断增加,设计师和工程师们正在积极推广创新型整体异种结构的应用。在这一领域,与传统连接技术(如机械紧固和胶粘剂粘接)相比,基于搅拌摩擦的技术具有独特优势,后者最近已展现出良好的效果。在本研究中,铝合金和玻璃纤维增强聚合物通过搅拌摩擦搭接连接在一起。为了评估加工参数对所制造接头的机械强度和加工温度的主要影响、相互作用及影响程度,开展了一项具有三个因素和两个水平的全因子设计研究。实验设计得出了与实验数据拟合度极佳的统计模型,从而能够深入了解转速、行进速度和刀具倾斜角度对异种金属与聚合物搅拌摩擦复合接头的影响。复合接头的机械强度范围为1708.1±45.5牛至3414.2±317.1牛,而加工温度则在203.6±10.7℃至251.5±9.7℃之间。