Improved lubricating and corrosion resistance of MAO coatings on ZK61 Mg alloy by co-doping with graphite and nano-zirconia

Chao Yang, Liyuan Sheng*, Chaochao Zhao, Pinghu Chen, Wentai Ouyang, Daokui Xu, Yufeng Zheng, Paul K. Chu*

*Corresponding author for this work

Research output: Journal Publications and ReviewsRGC 21 - Publication in refereed journalpeer-review

7 Citations (Scopus)
6 Downloads (CityUHK Scholars)

Abstract

The poor wear and corrosion resistance of Mg alloys are hampering wider application. Micro-arc oxidation can improve the wear and corrosion resistance, but the resulting coatings have relatively low hardness, high friction coefficient, and surface porosity, rendering them susceptible to failure in the field. Herein, ZrO2 nanocrystalline and extrinsic graphite-doped MAO coatings are prepared on the ZK61 Mg alloy using a control electrolyte containing potassium fluorozirconate and nano-graphite. The ZrO2 nanocrystals formed in situ are uniformly distributed in the amorphous coating, while the extrinsic graphite is mainly located in the amorphous structure. The size and number of pores decrease after introducing ZrO2 and graphite into the MAO coating. Compared with doping with a single element, co-doping increases the content of ZrO2 and graphite in the MAO coating. Furthermore, ZrO2 densifies the porous Mg(OH)2 corrosion product and blocks the penetration of the corrosive medium to improve the corrosion resistance. The optimized sample shows corrosion potential and corrosion current density of −1.012 V and 1.425 × 10−7 A·cm−2, which are significantly better than the singly doped MAO coating. Graphite doping decreases the friction coefficient, while ZrO2 doping decreases the wear rate. The ZrO2 and graphite co-doped C10Zr10 coating demonstrates self-lubricating properties, resulting in a significantly reduced wear rate from 2.832 × 10−4 mm3·N−1·m−1 to 1.04 × 10−5 mm3·N−1·m−1. The results reveal that co-doping improves the properties of MAO coatings on Mg alloys. © 2024 The Authors.
Original languageEnglish
Pages (from-to)2275-2291
JournalJournal of Materials Research and Technology
Volume33
Online published27 Sept 2024
DOIs
Publication statusPublished - Nov 2024

Funding

This work was financially supported by the Postdoctoral Fellowship Program of CPSF under Grant Number GZC20231545, China Postdoctoral Science Foundation (2024T170557and 2023M742224), Shanghai Post-doctoral Excellence Program (No. 2023440), Shenzhen Basic Research Projects (Nos. JCYJ20210324120001003, JCYJ20200109144608205, and JCYJ20200109144604020), IER foundation (IERF202201, IERF202202, and IERF202102), City University of Hong Kong Strategic Research Grant (SRG) (7005505), and City University of Hong Kong Donation Research Grants (DON-RMG 9229021 and 9220061).

Research Keywords

  • Corrosion resistance
  • Graphite
  • Lubrication
  • Mg alloy
  • Micro-arc oxidation (MAO)
  • ZrO2

Publisher's Copyright Statement

  • This full text is made available under CC-BY-NC-ND 4.0. https://creativecommons.org/licenses/by-nc-nd/4.0/

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