The Effect of Sliding Speed on the Tribological Properties of Ceramic Materials

Author:

Alparone Giovanni Paolo1,Penney David1ORCID,Jewell Eifion1ORCID,Sullivan James1,Mills Christopher2ORCID

Affiliation:

1. Department of Materials Engineering, Swansea University, Swansea SA2 8PP, UK

2. Tata Steel, Research and Development, Swansea Technology Centre, Swansea SA2 8PP, UK

Abstract

Ceramics are considered to be candidate materials for galvanising pot bearing materials due to their excellent corrosion resistance in many molten metals. Galvanising pot roll bearings must have excellent wear resistance, and, therefore, it is important to understand the wear behaviour of prospective bearing materials. This study investigates the friction- and wear-resistant properties of select ceramics, namely, pure hBN, BN M26, AlN-BN, Macor, 3YSZ, Al2O3 and Si3N4. The ceramics were tested at different sliding speeds using a pin-on-disc device equipped with SiC pins. The lowest coefficient of friction (COF) achieved was below 0.1, and it was measured for pure hBN at a 3.14 m/min sliding speed. However, a wear scar analysis showed that the BN grades suffered from severe wear. The highest wear rate was obtained for BN M26 at a 9.42 m/min sliding speed and was equal to 17.1 × 10−6 mm3 N−1 m−1. It was shown that the wear coefficient of the tested ceramics varied exponentially with hardness. The lowest wear was observed on the 3YSZ, Al2O3 and Si3N4 ceramics, which showed no volume loss, and, for this reason, they can be potentially used as bearing materials in continuous galvanising lines.

Funder

Engineering and Physical Sciences Research Council

Tata Steel UK

Publisher

MDPI AG

Subject

General Materials Science

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