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2018 | OriginalPaper | Chapter

Effects of Heat Treatments in Corrosion Behavior of HVOF-Sprayed Ni-Based Alloy Coatings

Authors : J. A. Cabral-Miramontes, R. Rocha Reséndez, C. Gaona Tiburcio, P. Zambrano-Robledo, C. Poblano Salas, F. Almeraya Calderon

Published in: Proceedings of the Symposium of Aeronautical and Aerospace Processes, Materials and Industrial Applications

Publisher: Springer International Publishing

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Abstract

It is well known that sprayed Ni-based alloy coatings show good corrosion resistance. They have good wear resistance after adding W and Mo elements to the alloy. High-velocity oxygen-fuel (HVOF) spraying is a thermal spray technique well matched to obtain corrosion- and wear-resistant coatings. Post-spray treatments such as laser remelting, shot peening, HIP, sealing, and furnace heat treatments are also used to improve the density and homogeneity of sprayed coatings. The corrosion properties of Ni-based alloy coatings processed by HVOF thermal spraying were studied as a function of annealing heat treatment at 850 and 950 °C in atmosphere of vacuum and air. Immersion tests in HCl, NaOH, and water media with various electrochemical techniques such as linear polarization resistance (LPR) and potentiodynamic anodic polarization curves (PAPC) were employed to perform such evaluation. The microstructural characterization of the as-sprayed coatings was analyzed by scanning electron microscopy (SEM). The results show that when the heat treatment temperature increases, the corrosion current density gradually decreases. This implies that thermally treated coatings increase its corrosion resistance relative to the coating of the substrate and heat treatment. Finally, it was found that a heat treatment at 950 °C in vacuum atmosphere improves the corrosion resistance of Ni-based coating applied by HVOF thermal spray.

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Metadata
Title
Effects of Heat Treatments in Corrosion Behavior of HVOF-Sprayed Ni-Based Alloy Coatings
Authors
J. A. Cabral-Miramontes
R. Rocha Reséndez
C. Gaona Tiburcio
P. Zambrano-Robledo
C. Poblano Salas
F. Almeraya Calderon
Copyright Year
2018
DOI
https://doi.org/10.1007/978-3-319-65611-3_5

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