Grygier Dominika, Kujawa Maciej, Kowalewski Piotr
Faculty of Mechanical Engineering, Wroclaw University of Science and Technology, Wybrzeże Stanisława Wyspiańskiego 27, 50-370 Wrocław, Poland.
Polymers (Basel). 2022 Jan 7;14(2):235. doi: 10.3390/polym14020235.
Nowadays, the replacement of a hip joint is a standard surgical procedure. However, researchers have continuingly been trying to upgrade endoprostheses and make them more similar to natural joints. The use of 3D printing could be helpful in such cases, since 3D-printed elements could mimic the natural lubrication mechanism of the meniscus. In this paper, we propose a method to deposit plastics directly on titanium alloy using 3D printing (FDM). This procedure allows one to obtain endoprostheses that are more similar to natural joints, easier to manufacture and have fewer components. During the research, biocompatible polymers suitable for 3D FDM printing were used, namely polylactide (PLA) and polyamide (PA). The research included tensile and shear tests of metal-polymer bonds, friction coefficient measurements and microscopic observations. The friction coefficient measurements revealed that only PA was promising for endoprostheses (the friction coefficient for PLA was too high). The strength tests and microscopic observations showed that PLA and PA deposition by 3D FDM printing directly on Ti6Al4V titanium alloy is possible; however, the achieved bonding strength and repeatability of the process were unsatisfactory. Nevertheless, the benefits arising from application of this method mean that it is worthwhile to continue working on this issue.
如今,髋关节置换是一种标准的外科手术。然而,研究人员一直在不断尝试改进人工关节假体,使其更接近天然关节。在这种情况下,3D打印可能会有所帮助,因为3D打印的部件可以模拟半月板的天然润滑机制。在本文中,我们提出了一种使用3D打印(熔融沉积成型)直接在钛合金上沉积塑料的方法。这一过程能够制造出更接近天然关节、易于制造且部件更少的人工关节假体。在研究过程中,使用了适合3D熔融沉积成型打印的生物相容性聚合物,即聚乳酸(PLA)和聚酰胺(PA)。研究包括金属-聚合物结合的拉伸和剪切试验、摩擦系数测量以及微观观察。摩擦系数测量结果表明,只有PA适用于人工关节假体(PLA的摩擦系数过高)。强度测试和微观观察表明,通过3D熔融沉积成型打印直接在Ti6Al4V钛合金上沉积PLA和PA是可行的;然而,所获得的结合强度和工艺重复性并不理想。尽管如此,应用该方法所带来的益处意味着继续研究这个问题是值得的。