Detonation-Gun Spraying Technology for Multilayer Coatings

Author:

Yeskermessov Didar1ORCID,Kantay Nurgamit2ORCID,Kakimzhanov Dauir1ORCID,Rakhadilov Bauyrzhan3,Apsezhanova Akbota1,Ahmed Waqar4

Affiliation:

1. D. Serikbayev East Kazakhstan Technical University, Kazakhstan

2. Sarsen Amanzholov East Kazakhstan University, Kazakhstan

3. PlasmaScience LLP, Kazakhstan

4. University of Lincoln, UK

Abstract

This study investigated the structural-phase, morphology, elemental composition, and tribological properties of coatings systems based on Al2O3, NiCr, and NiCr-Al2O3 fabricated by detonation-gas spraying method in a nitrogen/propane atmosphere. The coatings were characterised using SEM-EDX, XRD, Raman spectroscopy, and hardness measurements, and results analysed are presented. According to the experimental data, an optimal mode was selected that provides an increase in mechanical and tribological characteristics, and a method for detonation spraying surface hardening was also developed. Tribology tests have shown that the wear rates and friction coefficients of the coatings are highly dependent on the degree of filling of the gun.

Publisher

IGI Global

Reference25 articles.

1. Characterization of SiC and Al2O3 Ceramics Exposed to Nitrogen Ions from Inverse-Z Pinch Plasma Discharge

2. ASTM G133–95. (1995). Standard Test Method for Linearly Reciprocating Ball-on-Flat Sliding Wear. ASTM International.

3. ASTM G99–05. (2005). Standard Test Method for Wear Testing with a Pin-on-Disk Apparatus. ASTM International.

4. Effect of TiO 2 addition on the microstructure and nanomechanical properties of Al 2 O 3 Suspension Plasma Sprayed coatings

5. Influence of Heat Treatment on the Phase Composition and Microhardness of Coatings Based on Ti3SiC2/ TiC

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