Research Article

Evaluation of Hot Corrosion Behavior of WC-Co-Cr Coatings Coated by the HVOF Method

Volume: 4 Number: 1 June 26, 2023
TR EN

Evaluation of Hot Corrosion Behavior of WC-Co-Cr Coatings Coated by the HVOF Method

Abstract

Thermal spray coating techniques have wide-ranging applications in various fields, including marine, automotive, biomedical, and aerospace industries. These methods are popularly used because materials coated with thermal spray coatings exhibit excellent resistance to oxidation, erosion, corrosion, and abrasive environments, particularly at high temperatures. The present study utilized the high-speed oxy-fuel (HVOF) technique, a state-of-the-art thermal spray coating method, to apply a hard cermet ceramic coating material consisting of WC-Co-Cr onto a 316L stainless steel substrate. Isothermal hot corrosion tests were also conducted at 750°C in the presence of 45% Na2SO4 and 55% V2O5 hot corrosion salts for 1, 3, and 5 hours. Advanced characterization techniques such as X-Ray Diffractometry (XRD), Energy Dispersive Spectrum (EDS), scanning electron microscopy (SEM), and elemental mapping analysis devices were used to characterize the samples coated with the HVOF technique before and after hot corrosion tests. The findings indicate that WC-Co-Cr hard coatings, which are known for their high resistance to abrasion, sustain severe damage at high temperatures. The coating was damaged after 5 hours in the hot corrosion tests performed in the presence of V2O5 and Na2SO4 molten salt at 750°C.

Keywords

Supporting Institution

Bartın Üniversitesi Sağlık Hizmetleri meslek Yüksek Okulu Tıbbi Hizmetler ve Teknikleri Bölümü Optisyenlik Programı

Project Number

2021-FEN-A-010 and 2021-FEN-A-011.

Thanks

The Scientific Research Projects (BAP) Coordination of Bartin University provided financial support for this research under project numbers 2021-FEN-A-010 and 2021-FEN-A-011.

References

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Details

Primary Language

English

Subjects

Plating Technology

Journal Section

Research Article

Early Pub Date

June 23, 2023

Publication Date

June 26, 2023

Submission Date

April 25, 2023

Acceptance Date

May 15, 2023

Published in Issue

Year 2023 Volume: 4 Number: 1

APA
Ozgurluk, Y. (2023). Evaluation of Hot Corrosion Behavior of WC-Co-Cr Coatings Coated by the HVOF Method. Journal of Materials and Mechatronics: A, 4(1), 286-301. https://doi.org/10.55546/jmm.1287543
AMA
1.Ozgurluk Y. Evaluation of Hot Corrosion Behavior of WC-Co-Cr Coatings Coated by the HVOF Method. J. Mater. Mechat. A. 2023;4(1):286-301. doi:10.55546/jmm.1287543
Chicago
Ozgurluk, Yasin. 2023. “Evaluation of Hot Corrosion Behavior of WC-Co-Cr Coatings Coated by the HVOF Method”. Journal of Materials and Mechatronics: A 4 (1): 286-301. https://doi.org/10.55546/jmm.1287543.
EndNote
Ozgurluk Y (June 1, 2023) Evaluation of Hot Corrosion Behavior of WC-Co-Cr Coatings Coated by the HVOF Method. Journal of Materials and Mechatronics: A 4 1 286–301.
IEEE
[1]Y. Ozgurluk, “Evaluation of Hot Corrosion Behavior of WC-Co-Cr Coatings Coated by the HVOF Method”, J. Mater. Mechat. A, vol. 4, no. 1, pp. 286–301, June 2023, doi: 10.55546/jmm.1287543.
ISNAD
Ozgurluk, Yasin. “Evaluation of Hot Corrosion Behavior of WC-Co-Cr Coatings Coated by the HVOF Method”. Journal of Materials and Mechatronics: A 4/1 (June 1, 2023): 286-301. https://doi.org/10.55546/jmm.1287543.
JAMA
1.Ozgurluk Y. Evaluation of Hot Corrosion Behavior of WC-Co-Cr Coatings Coated by the HVOF Method. J. Mater. Mechat. A. 2023;4:286–301.
MLA
Ozgurluk, Yasin. “Evaluation of Hot Corrosion Behavior of WC-Co-Cr Coatings Coated by the HVOF Method”. Journal of Materials and Mechatronics: A, vol. 4, no. 1, June 2023, pp. 286-01, doi:10.55546/jmm.1287543.
Vancouver
1.Yasin Ozgurluk. Evaluation of Hot Corrosion Behavior of WC-Co-Cr Coatings Coated by the HVOF Method. J. Mater. Mechat. A. 2023 Jun. 1;4(1):286-301. doi:10.55546/jmm.1287543

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