Structure and Properties of the Aluminide Coatings on the Inconel 625 Superalloy

Author:

Adamiak Stanisław1,Bochnowski Wojciech1,Dziedzic Andrzej1,Filip Ryszard2,Szeregij Eugeniusz3

Affiliation:

1. 1Centre for Innovation and Transfer of Natural Sciences and Engineering Knowledge, University of Rzeszow, Pigonia 1 Street, 35-959 Rzeszow, Poland

2. 2Department of Material Science, Rzeszow University of Technology, W. Pola 2 Street, 35-959 Rzeszow, Poland

3. 3Center for Microelectronics & Nanotechnology, University of Rzeszow, Pigonia 1 Street, 35-959 Rzeszow, Poland

Abstract

AbstractThe research samples used in this study were based on the Inconel 625 alloy; the examined samples were coated with aluminide films deposited in a low-activity chemical vapor deposition (CVD) process. The samples’ microstructure was investigated with optical and electron microscopy and energy dispersive X-ray spectroscopy analysis. Hardness measurements were performed using Vickers and Berkovich test methods. The adhesion of the aluminide coating was determined by fractography. It was shown that the fracture mechanism was different for the respective zones of the aluminide coating and the substrate material. The outer zone of the aluminide coating is characterized by an intercrystalline fracture, with a small contribution of transcrystalline fracture within individual grains (large crystallites in the bottom of the zone, composed of smaller crystallites, also show an intercrystalline fracture). The substrate material exhibited a ductile intercrystalline fracture. Based on this investigation, an increase of the microhardness of the material occurring at loads below 0.2 N was observed. When determining microhardness of aluminide coating it is necessary to take into account the optimal choice of the indentation tip.

Publisher

Walter de Gruyter GmbH

Subject

Physical and Theoretical Chemistry,Mechanics of Materials,Condensed Matter Physics,General Materials Science

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