Synthesis of titanium carbide coating on Ti15Mo alloy and its tribological behaviour

Author:

Wang Hongxiang1,Shen Jiajia2,Zhang Weipeng2,Xu Zhentao2,Zheng Jingjing2,Luo Yong2ORCID

Affiliation:

1. Jiangsu Vocational College of Electronics and Information Huaian China

2. School of Materials Science and Physics China University of Mining & Technology Xuzhou China

Abstract

AbstractTi15Mo alloy has been regarded as one of the most potential biomedical materials due to its excellent performance. However, the low hardness and poor wear resistance of titanium alloy limit the further application. Therefore, high temperature solid carburising technology was performed on the surface of Ti15Mo alloys to prepare titanium carbide (TiC) coating with graphene (G) as the carburising agent. The microstructure, mechanical properties, and tribological properties of TiC coating under different lubricants were investigated. Results showed that TiC coating was closely bonded to the titanium substrate. The maximum thickness of TiC coating treated with 1150°C was approximately 184.02 μm, and the microhardness of alloys treated with 1100°C can achieve 1221.5 HV. All modified Ti15Mo alloys showed improved tribological performance compared to the original samples. The wear mechanisms of modified Ti15Mo alloys were abrasive wear and adhesive wear under the SBF lubricant, and the TiC coating was slightly peeled off. The overall friction coefficient and wear rate under 25% calf serum lubricant were lower than the SBF lubricant, and surface scratches were almost absent, and slight abrasive wear and adhesive wear occurred on the surface.

Funder

National Natural Science Foundation of China

Publisher

Institution of Engineering and Technology (IET)

Subject

Surfaces, Coatings and Films,Mechanical Engineering,Biomedical Engineering,Biomaterials,Biophysics

Reference31 articles.

1. Design and development of biomedical β‐Ti alloys;Yu Z.;Materials China,2004

2. The influence of β phase stability on deformation mode and compressive mechanical properties of Ti–10V–3Fe–3Al alloy

3. Effect of β stabilizing elements on the strengthening behavior of titanium α phase;Wu H.;Rare Met. Mater. Eng.,2012

4. Heterogeneous Precipitation of the α-Phase in Ti15Mo Alloy Subjected to High Pressure Torsion

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