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Effects of graphene and α-Al2O3 nano-additives on the fretting wear behavior of MAO coatings on Ti6Al4V alloy: a comparison of self-lubrication and hardness-enhancement strategies

  • Zhangyue Qin
  • , Yali Zhang
  • , Xiaogang Zhang
  • , Xinlu Yuan
  • , Zhongmin Jin
  • Southwest Jiaotong University
  • Chengdu University
  • University of Leeds

科研成果: 期刊稿件文章同行评审

3 引用 (Scopus)

摘要

Fretting wear of Ti6Al4V alloy for femoral stems in artificial hip joints is a major contributor to prosthesis loosening and subsequent revision surgeries. Micro-arc oxidation (MAO) emerges as a feasible and highly promising surface modification technique to mitigate this problem. In recent years, two key optimization strategies have been proposed to enhance wear resistance of MAO coatings: incorporating self-lubricating and high-hardness nanomaterials. However, existing studies have focused on sliding wear, while the effects of such nano-additives on fretting wear behavior of MAO coatings remain unclear. In this study, self-lubricating graphene (G) and high-hardness alumina (Al2O3) nanomaterials were incorporated into MAO coatings on Ti6Al4V alloy. The fretting wear behaviors of conventional, G-reinforced, and Al2O3-reinforced coatings under various fretting regimes were systematically investigated, and optimization mechanisms were elucidated. The results revealed that both graphene and alumina significantly enhanced coatings’ fretting wear resistance. The optimization mechanism of graphene was primarily manifested in promoting lubrication. During debris generation, pore compression, and coating damage, graphene progressively transferred and dispersed throughout the wear region, forming a smooth and uniform lubricating film on the coating surface. In contrast, alumina markedly improved coating hardness by bearing load, reinforcing bonding, and filling pores, thereby enhancing wear resistance. Notably, under the mixed fretting regime (MFR) and gross slip regime (GSR), G-reinforced coatings exhibited the lowest friction coefficient due to excellent lubricating ability. Nevertheless, across all fretting regimes, Al2O3-reinforced coatings exhibited the lowest wear rate due to superior fatigue resistance. Overall, alumina demonstrated more pronounced improvement and greater potential than graphene.

源语言英语
期刊论文编号166212
期刊Applied Surface Science
729
DOI
出版状态已出版 - 30 5月 2026
已对外发布

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