This study investigates the use of duplex coatings, TiN/diamond-like-carbon (DLC), on improving the tribological performance of stainless steel 316L which is commonly used for femoral stems in total hip replacement implants. A range of substrate pre-treatment variants (nitriding and polishing) were applied to investigate the impact on the mechanical and tribological performance of the coatings. The tribological performance of plasma vapour deposition duplex coating variants was tested using a bespoke in-house fretting tribometer with an electrodynamic shaker utilising a ball-on-plate configuration. Fretting was replicated by applying micro-motion to the Ø12 Al2O3 ball relative to duplex coated SS 316L plates under a dead weight normal load. Un-polished substrates prior to the coating deposition led to improved tribological performance likely due to improve coating adhesion to the substrate surface. The hydrogenated DLC sample variants showed lower friction performance compared to hydrogen-free DLC variants most likely due to higher amounts of graphitisation.
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May 2025
Research Article|
January 27 2025
Enhancing fretting performance of 316L biomedical alloys through duplex TiN and DLC coatings
Thawhid Khan, PhD;
Thawhid Khan, PhD
Department of Mechanical Engineering, University of Sheffield, Sheffield, UK (corresponding author: thawhidkhan@yahoo.co.uk)
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Mohamad Taufiqurrakhman, PhD;
Mohamad Taufiqurrakhman, PhD
School of Mechanical Engineering, Institute of Functional Surfaces, University of Leeds, Leeds, UK
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Charlotte Merrell, MEng;
Charlotte Merrell, MEng
School of Mechanical Engineering, Institute of Functional Surfaces, University of Leeds, Leeds, UK
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Greg Pryce, PhD;
Greg Pryce, PhD
School of Mechanical Engineering, Institute of Functional Surfaces, University of Leeds, Leeds, UK
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Atreya Danturthi, MEng;
Atreya Danturthi, MEng
School of Mechanical Engineering, Institute of Functional Surfaces, University of Leeds, Leeds, UK
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Tomasz Liskiewicz, PhD;
Tomasz Liskiewicz, PhD
Faculty of Science and Engineering, Manchester Metropolitan University, Manchester, UK
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Hemant Pandit, PhD;
Hemant Pandit, PhD
Leeds Institute of Rheumatic and Musculoskeletal Medicine (LIRMM), University of Leeds, Chapel Allerton Hospital, Leeds, UK
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Yu Yan, PhD;
Yu Yan, PhD
Corrosion and Protection Center, Institute for Advanced Materials and Technology, University of Science and Technology Beijing, Beijing, China
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Mike Bryant, PhD
Mike Bryant, PhD
School of Mechanical Engineering, Haworth Building, University of Birmingham, Edgbaston, West Midlands, UK
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Publisher: Emerald Publishing
Received:
October 09 2024
Accepted:
January 20 2025
Online ISSN: 2050-6260
Print ISSN: 2050-6252
Emerald Publishing Limited: All rights reserved
2025
Surface Innovations (2025) 13 (3): 223–233.
Article history
Received:
October 09 2024
Accepted:
January 20 2025
Citation
Khan T, Taufiqurrakhman M, Merrell C, Pryce G, Danturthi A, Liskiewicz T, Pandit H, Yan Y, Bryant M (2025), "Enhancing fretting performance of 316L biomedical alloys through duplex TiN and DLC coatings". Surface Innovations, Vol. 13 No. 3 pp. 223–233, doi: https://doi.org/10.1680/jsuin.24.00099
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