Effects of Diamond on Microstructure, Fracture Toughness, and Tribological Properties of TiO2-Diamond Composites

Author:

Liu Bing,Zhuge Zewen,Zhao Song,Zou Yitong,Tong Ke,Sun Lei,Wang Xiaoyu,Liang Zitai,Li Baozhong,Jin Tianye,Chen JunyunORCID,Zhao ZhishengORCID

Abstract

The reinforcements represented by graphene nanoplatelets, graphite, and carbon nanotubes have demonstrated the great potential of carbon materials as reinforcements to enhance the mechanical properties of TiO2. However, it is difficult to successfully prepare TiO2-diamond composites because diamond is highly susceptible to oxidation or graphitization at relatively high sintering temperatures. In this work, the TiO2-diamond composites were successfully prepared using high-pressure sintering. The effect of diamond on the phase composition, microstructure, mechanical properties, and tribological properties was systemically investigated. Diamond can improve fracture toughness by the crack deflection mechanism. Furthermore, the addition of diamond can also significantly reduce the friction coefficient. The composite composed of 10 wt.% diamond exhibits optimum mechanical and tribological properties, with a hardness of 14.5 GPa, bending strength of 205.2 MPa, fracture toughness of 3.5 MPa∙m1/2, and a friction coefficient of 0.3. These results enlarge the family of titania-based composites and provide a feasible approach for the preparation of TiO2-diamond composites.

Funder

National Natural Science Foundation of China

National Key R&D Program of China

Talent research project in Hebei Province

Natural Science Foundation of Hebei Province

National Postdoctoral Program for Innovative Talents

Publisher

MDPI AG

Subject

General Materials Science,General Chemical Engineering

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