Development of the hardness, three-point bending, and wear behavior of self-lubricating Cu-5Gr/Al2O3-Cr3C2 hybrid composites

Author:

Şap Serhat1ORCID,Usca Üsame Ali2,Uzun Mahir3ORCID,Giasin Khaled4ORCID,Pimenov Danil Yu5

Affiliation:

1. Department of Electricity and Energy, Bingöl University, Bingöl, Turkey

2. Department of Mechanical Engineering, Bingöl University, Bingöl, Turkey

3. Department of Mechanical Engineering, İnönü University, Malatya, Turkey

4. School of Mechanical and Design Engineering, University of Portsmouth, Portsmouth, UK

5. Department of Automated Mechanical Engineering, South Ural State University, Chelyabinsk, Russia

Abstract

This research aims to assess the mechanical characteristics of high-performance copper composites made utilizing powder metallurgy. The composites were produced by adding reinforcement elements (Al2O3-Cr3C2) at different rates (3-6–9 wt.%) into copper-graphite (Cu-5Gr) via hot pressing technique. The microstructure, hardness, three-point bending and wear performance were analysed. The results determined that hybrid reinforced composites exhibited higher density, hardness and bending strength compared to Cu-Gr composites. The highest hardness of 73.02 HB was found in the CG-4 (copper graphit-4) sample. The maximum bending stress of 151.06 MPa occurred in sample CG-2. In addition, it was observed that the wear resistance increased significantly with the addition of the hybrid reinforcements. The lowest specific wear rate of 7.961 × 10−7 mm3/N.m occurred in sample CG-6. As a result, 15.92%, 58.16% and 83.21% improvements were achieved in hardness, bending strength and wear performance, respectively. The current work indicates that certain mechanical properties of copper can be improved via the powder metallurgy process and the addition of reinforcements which could expand the applications and use of this metal in different industries.

Publisher

SAGE Publications

Subject

Materials Chemistry,Mechanical Engineering,Mechanics of Materials,Ceramics and Composites

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