Tribological Behaviour of Enamel Coatings Created by a Prototype Device for Local Repair of Inorganic Surfaces

Author:

Müller Miroslav1ORCID,Hromasová Monika2ORCID,Valášek Petr1ORCID,Nováková Iva3ORCID,Moravec Jaromír3ORCID,Jelínek Milan3

Affiliation:

1. Department of Material Science and Manufacturing Technology, Faculty of Engineering, Czech University of Life Sciences Prague, Suchdol, 16500 Praha, Czech Republic

2. Department of Electrical Engineering and Automation, Faculty of Engineering, Czech University of Life Sciences Prague, Suchdol, 16500 Praha, Czech Republic

3. Department of Engineering Technology, Faculty of Mechanical Engineering, Technical University of Liberec, 46117 Liberec, Czech Republic

Abstract

The ability of materials to withstand environmental influences is a frequent necessity in many industries. Special requirements are imposed by such industries where surfaces are affected by acidity during the processing or storage of products. In such cases, when the basic surface is exposed to chemical influences, it is possible to use enamel coatings, which, with their properties, guarantee the protection of the surface and achieve the required service life of the material. This article deals mainly with the interaction between the base material and the enamel and its resistance to wear between the original and the renovated surface caused by local heating. The article presents a methodical procedure for the preparation of test specimens with an enamel layer prepared by AWJ cutting, eliminating its damage. There are minimal differences in the microstructure between the original and the renovated surface due to the production technique. The renovated enamel surface had more bubbles of a larger size than the original surface. Good adhesion between the base metal material (substrate) and the ground coat was demonstrated. The tested surfaces demonstrated high resistance to intensive abrasion conditions with low linear wear increments.

Funder

Ministry of Industry and Trade

Publisher

MDPI AG

Subject

General Materials Science

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