Liu Mengmeng, Ni Jing, Zhang Caixia, Wang Lihui, Guo Yue, Liu Zhifeng
School of Mechanical Engineering, Hangzhou Dianzi University, Hangzhou 310018, China.
Institute of Advanced Manufacturing and Intelligent Technology, Beijing University of Technology, Beijing 100124, China.
Polymers (Basel). 2023 Oct 12;15(20):4060. doi: 10.3390/polym15204060.
Polymer coatings can effectively improve the surface tribological properties of human implant materials, thereby increasing their service life. In this study, poly(vinylsulfonic acid, sodium salt) (PVS), poly(acrylic acid) (PAA) and poly(vinylphosphonic acid) (PVPA) were used to modify Ti6Al4V surfaces. Experimental analyses were combined with molecular simulation to explore the regulation mechanism of special functional groups contained in polymer molecular chains on the tribological properties of modified surfaces. In addition, the bearing capacities and velocity dependence of different polymer modified surfaces during friction were also explored. The PVS coating, due to physical adsorption, can have an anti-friction effect under NaCl solution lubrication, but is not durable under long-term or repeated usage. Both PAA and PVPA molecular chains can form chemical bonds with Ti6Al4V. Phosphate acid groups can firmly bind to the substrate, and the adsorption of salt ions and water molecules can form a hydrated layer on the PVPA coating surface, achieving ultra-low friction and wear. The adsorption of salt ions would aggravate the surface wear of the PAA-modified Ti6Al4V due to the unfirm binding of carboxyl groups to the substrate, resulting in a high friction coefficient. This study can provide effective guidance for the design of modified polymer coatings on metals.
聚合物涂层可以有效改善人体植入材料的表面摩擦学性能,从而延长其使用寿命。在本研究中,使用聚(乙烯磺酸钠)(PVS)、聚丙烯酸(PAA)和聚乙烯膦酸(PVPA)对Ti6Al4V表面进行改性。将实验分析与分子模拟相结合,以探究聚合物分子链中所含特殊官能团对改性表面摩擦学性能的调控机制。此外,还探究了不同聚合物改性表面在摩擦过程中的承载能力和速度依赖性。PVS涂层由于物理吸附作用,在NaCl溶液润滑下可产生减摩效果,但在长期或反复使用下不耐用。PAA和PVPA分子链均可与Ti6Al4V形成化学键。磷酸基团可牢固地结合在基底上,盐离子和水分子的吸附可在PVPA涂层表面形成水合层,实现超低摩擦和磨损。由于羧基与基底结合不牢固,盐离子的吸附会加剧PAA改性Ti6Al4V的表面磨损,导致摩擦系数较高。本研究可为金属表面改性聚合物涂层的设计提供有效指导。