Please use this identifier to cite or link to this item: http://elar.urfu.ru/handle/10995/130979
Title: Homogeneity, metallurgical, mechanical, wear, and corrosion behavior of Ni and B4C coatings deposited on 304 stainless steels developed by microwave cladding technique
Authors: Dwivedi, S. P.
Sharma, S.
Srivastava, A. P.
Sethi, V. A.
Mohammed, K. A.
Kumar, A.
Khan, M. I.
Abbas, M.
Tag-Eldin, E. M.
Issue Date: 2023
Publisher: Elsevier Editora Ltda
Citation: Dwivedi, S, Sharma, S, Srivastava, AP, Sethi, VA, Mohammed, K, Kumar, A, Khan, MI, Abbas, M & Tag-Eldin, E 2023, 'Homogeneity, metallurgical, mechanical, wear, and corrosion behavior of Ni and B4C coatings deposited on 304 stainless steels developed by microwave cladding technique', Journal of Materials Research and Technology, Том. 27, стр. 5854-5867. https://doi.org/10.1016/j.jmrt.2023.10.202
Dwivedi, S., Sharma, S., Srivastava, A. P., Sethi, V. A., Mohammed, K., Kumar, A., Khan, M. I., Abbas, M., & Tag-Eldin, E. (2023). Homogeneity, metallurgical, mechanical, wear, and corrosion behavior of Ni and B4C coatings deposited on 304 stainless steels developed by microwave cladding technique. Journal of Materials Research and Technology, 27, 5854-5867. https://doi.org/10.1016/j.jmrt.2023.10.202
Abstract: The microwave cladding technique for depositing Ni and 10 % B4C coatings on 304 stainless steel has yielded significant advancements in material properties and performance. The key findings of this study revealed remarkable improvements, including a 43.33% increase in material hardness, indicating enhanced wear resistance and mechanical properties. This improvement was attributed to the uniform distribution of B4C and Ni on the cladding surface, ensuring a consistent interfacial layer developed between SS 304 and the cladding surface without cracks and porosity. Microstructural analysis at 500× magnification unveiled an impressive 2233.35 grains per square inch, showcasing the refined grain structure achieved during the cladding process. Wear testing demonstrated a low wear rate of 0.00308 mm³/m and a favorable coefficient of friction of 0.1981, confirming the material's suitability for applications with demanding frictional conditions. Furthermore, the corrosion behavior of the coated 304 stainless steel was assessed, revealing a minimal corrosion weight loss of only 0.42 mg for the Ni and 10% B4C coated sample. The presence of various carbide phases, such as Cr2C, Cr23C6, Cr7BC4, Fe5C2, and Fe23B6, within the cladding further contributed to the material's enhanced mechanical and wear properties. © 2023
Keywords: CORROSION
HARDNESS
INTERFACIAL BOND LAYER
MICROWAVE CLADDING
NUMBER OF GRAINS
WEAR
AUSTENITIC STAINLESS STEEL
BORON CARBIDE
CLADDING (COATING)
CORROSIVE EFFECTS
FRICTION
STEEL CORROSION
WEAR OF MATERIALS
WEAR RESISTANCE
304 STAINLESS STEEL
BOND LAYER
CLADDING SURFACES
CORROSION BEHAVIOUR
INTERFACIAL BOND LAYER
INTERFACIAL BONDS
MECHANICAL BEHAVIOR
METALLURGICAL BEHAVIOR
MICROWAVE CLADDING
NUMBER OF GRAIN
HARDNESS
URI: http://elar.urfu.ru/handle/10995/130979
Access: info:eu-repo/semantics/openAccess
cc-by-nc-nd
License text: https://creativecommons.org/licenses/by-nc-nd/4.0/
SCOPUS ID: 85177184402
WOS ID: 001121712200001
PURE ID: 48554870
ISSN: 2238-7854
DOI: 10.1016/j.jmrt.2023.10.202
Sponsorship: Ministry of Education, India, MoE: KKU-IFP2-DB-6
The authors extend their appreciation to the Ministry of Education in KSA for funding this research work through the project number KKU-IFP2-DB-6.
Appears in Collections:Научные публикации ученых УрФУ, проиндексированные в SCOPUS и WoS CC

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