牛血清润滑下自配PEEK及其复合材料的生物摩擦学比较研究

Q2 Materials Science
Hua Xin , Ruijuan Liu , Lei Zhang , JunHong Jia , Nairu He , SaSa Gao , ZhongMin Jin
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引用次数: 7

摘要

本研究系统研究了聚醚醚酮(PEEK) 450G及其复合材料(碳纤维增强PEEK- ca30、碳纤维/石墨烯/聚四氟乙烯增强PEEK- fc30、玻璃纤维增强PEEK- gl30)在自配组合下的生物摩擦学性能。在200万次循环摩擦试验中,PEEK轴承都表现出两阶段磨损。450G、CA30、FC30和GL30的总质量损失分别为9.03±1.87、9.59±0.22、11.29±1.30和23.01±0.77 mg。显然,玻璃纤维增强是不利的,并且在四种PEEK轴承中具有最高的磨损损失(P≤0.001)。与PEEK 450G相比,CA30的耐磨性能更优,稳态磨损系数降低62%。而FC30与450G相当。在450G轴承磨损区观察到犁沟、鳞状磨损痕和磨损屑附着。这些磨损形态与磨损和粘附磨损有关。在PEEK复合材料中,表面凹坑和纤维断裂是常见的磨损特征。仅在CA30和FC30轴承上观察到鳞状磨损痕。除了纤维脱落引起的材料损耗外,CA30和FC30中以粘附磨损为主,GL30中磨料磨损更为明显。在牛血清润滑下,未发现固体润滑膜。此外,磨损过程没有引起表面层结晶度的明显变化。本研究为PEEK及其复合材料在生理相关润滑条件下的摩擦学研究提供了基础知识,为人工假体的设计和开发提供了依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A comparative bio-tribological study of self-mated PEEK and its composites under bovine serum lubrication

In this study, the bio-tribological performances of polyether-ether-ketone (PEEK) 450G and its composites (carbon fiber reinforced PEEK-CA30, carbon fiber/graphene/polytetrafluoroethylene reinforced PEEK-FC30, and glass fiber reinforced PEEK-GL30) were systematically investigated under self-mating combination.

During 2 million cycle tribo-tests, PEEK bearings all exhibited two-stage wear. The total mass losses were 9.03 ± 1.87, 9.59 ± 0.22, 11.29 ± 1.30 and 23.01 ± 0.77 mg for 450G, CA30, FC30 and GL30, respectively. It was obvious that, glass fiber reinforcement was not favorable and had the highest wear loss among the four PEEK bearings (P ≤ 0.001). In respect to PEEK 450G, CA30 was superior in wear performance, with a 62% of reduction in steady state wear factor. While FC30 was comparable to that of 450G.

Plowing grooves, scale-like wear scars, and wear debris attachment were observed within the wear zone of 450G bearing. These kinds of wear morphologies were associated with abrasion and adhesion wear. In terms of PEEK composites, surface pit and fiber breakage were common wear features. Scale-like wear scars were only observed on the CA30 and FC30 bearings. Apart from fiber detachment induced material loss, adhesion wear was dominated in CA30 and FC30, while abrasive wear was more pronounced in GL30.

Under bovine serum lubrication, no solid lubrication film was found. Moreover, wear process did not induce obvious change in surface layer crystallinity. The work conducted in this study provide the basic tribological knowledge of PEEK and its composites under physiologically relevant lubrication condition, which is helpful for the design and development of artificial prosthesis.

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来源期刊
Biotribology
Biotribology Materials Science-Surfaces, Coatings and Films
CiteScore
4.20
自引率
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发文量
17
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