Abstract

The advent of high-throughput plasma spray systems that allow axial feeding encourages the study of using liquid feedstock for various next-generation functional applications. The current study explores the benefit of such a plasma spray system to deposit hybrid powder-suspension Al2O3-YSZ ceramic matrix composite (CMC) coatings for tribological applications. The tribological performance of the hybrid processed CMC coatings was assessed using scratch, ball-on-plate wear and erosion tests and compared with that of monolithic powder-derived Al2O3 coatings. As-deposited and tribo-tested coatings were characterized using Scanning Electron Microscopy, X-ray Diffraction and Energy Dispersive Spectroscopy to analyse their microstructure and phase constitution. The results showed that the tribological performance of the hybrid powder-suspension Al2O3-YSZ CMC coating was significantly improved by enhancing the wear resistance under scratch, dry sliding ball-on-plate and erosion tests as compared to the conventional APS deposited monolithic Al2O3 coating. About 36% decrease in the dry sliding ball-on-plate specific wear rate and up to 50% decrease in the erosion wear rate was noted in the hybrid powder-suspension Al2O3-YSZ CMC coating as compared to the conventional APS deposited monolithic Al2O3 coating. The study concludes that the hybrid powder-suspension route can create CMC coatings with unique multi-length scale microstructures which can be attractive for combining different tribological attributes in the same coating system.

Highlights

  • Atmospheric plasma spraying (APS) is the most widely adopted thermal spray technology to deposit coatings for various functional applications such as corrosion, wear, thermal barrier, fuel cells etc. [1,2,3,4]

  • This study aimed to demonstrate the hybrid processing route using a high-power axial injection plasma torch to deposit an Al2O3-YSZ ceramic matrix composite (CMC) coating with multiple length scales for tribological applications

  • About 36% decrease in the dry sliding ball-onplate specific wear rate and up to 50% decrease in the erosion wear rate was noted in the hybrid powder-suspension Al2O3-YSZ CMC coating as compared to the conventional APS deposited monolithic Al2O3 coating

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Summary

Introduction

Atmospheric plasma spraying (APS) is the most widely adopted thermal spray technology to deposit coatings for various functional applications such as corrosion, wear, thermal barrier, fuel cells etc. [1,2,3,4]. The idea of feeding fine (

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