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Experimental Investigation on the Coating of Nickel-Base Super Alloy Using Wire Flame Spraying

Experimental Investigation on the Coating of Nickel-Base Super Alloy Using Wire Flame Spraying AbstractInconel738 is a nickel-based super alloy widely used in manufacturing gas turbines, particularly in the manufacture of blades that are in direct contact with hot gases during their operation. As a result, these blades are subjected to high temperatures, significant static and dynamic stresses, erosion and/or hot corrosion which can be very severe. The use of coatings is one of the most effective strategies to protect materials against corrosion and increase the wear resistance of materials. In this study, β-Ni-Al coatings were sprayed onto an Inconel738 substrate using a wire flame spraying process and characterization of coating has been made. http://www.deepdyve.com/assets/images/DeepDyve-Logo-lg.png Acta Universitatis Sapientiae Electrical and Mechanical Engineering de Gruyter

Experimental Investigation on the Coating of Nickel-Base Super Alloy Using Wire Flame Spraying

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Publisher
de Gruyter
Copyright
© 2022 Noureddine Menasri et al., published by Sciendo
eISSN
2066-8910
DOI
10.2478/auseme-2022-0003
Publisher site
See Article on Publisher Site

Abstract

AbstractInconel738 is a nickel-based super alloy widely used in manufacturing gas turbines, particularly in the manufacture of blades that are in direct contact with hot gases during their operation. As a result, these blades are subjected to high temperatures, significant static and dynamic stresses, erosion and/or hot corrosion which can be very severe. The use of coatings is one of the most effective strategies to protect materials against corrosion and increase the wear resistance of materials. In this study, β-Ni-Al coatings were sprayed onto an Inconel738 substrate using a wire flame spraying process and characterization of coating has been made.

Journal

Acta Universitatis Sapientiae Electrical and Mechanical Engineeringde Gruyter

Published: Dec 1, 2022

Keywords: Nickel-based super alloy; wire flame spraying; XRD diffraction; microhardness; microstructure

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