том 80 издание 4 страницы 363-372

Exploring the implications of CoCrFeNiCu high entropy alloy coatings on tribomechanical, wetting behavior, and interfacial microstructural characterizations in microwave-clad AISI 304 stainless steels

Shubham Sharma 1, 2, 3
Shashi Prakash Dwivedi 4
Ashutosh Pattanaik 5
Yashwant Singh Bisht 6
Teku Kalyani 7
Vikasdeep Singh Mann 8
Rajeev Kumar 9, 10
Kumar Abhinav 11, 12
Drazan Kozak 13
Jasmina Lozanovic 12, 14
4
 
Department of Mechanical Engineering , Lloyd Institute of Engineering & Technology , Knowledge Park II , Greater Noida , Uttar Pradesh 201306 , India
7
 
Department of Mechanical Engineering , Raghu Engineering College , Dakamarri 531162 , Andhra Pradesh , India
8
 
Department of Mechanical Engineering , Chandigarh College of Engineering, Chandigarh Group of Colleges , Jhanjeri , Mohali 140307 , Punjab , India
13
 
Mechanical Engineering Faculty in Slavonski Brod , University of Slavonski Brod , Trg Ivane Brlić-Mažuranić 2, HR-35000 Slavonski Brod , Croatia
14
 
Department of Engineering , University of Applied Sciences Campus Vienna , 1100 , Vienna , Austria
Тип публикацииJournal Article
Дата публикации2025-02-17
scimago Q3
wos Q3
БС2
SJR0.253
CiteScore3.0
Impact factor1.3
ISSN09320784, 18657109
Краткое описание

The exploration of high-performance coatings is specifically necessary for enhancing the mechanical, thermal, and corrosion-resistant characteristics of structural steels in response to the demand for cutting-edge materials in engineering applications. The current study addresses an existing void in the development of durable coatings that gain benefits from the distinctive characteristics of CoCrFeNiCu high entropy alloys (HEA) for stainless steel substrates, with a particular emphasis on SS 304. The primary objective was to examine the microstructural, mechanical, and corrosion behaviors of SS 304 that had been coated with CoCrFeNiCu HEA employing a microwave cladding process. HEA particles were prepared through mechanical milling, and a controlled cladding process was conducted under an inert environment. A variety of meticulous investigations, including Scanning Electron Microscopy (SEM), X-ray Diffraction (XRD), and wear rate measurements, have been performed to thoroughly assess crucial parameters, including surface hardness, resistance to corrosion, and wear behavior. This study explores the influence of a CoCrFeNiCu high entropy alloy (HEA) coating (20 % each component) on SS-304 steel. Utilizing microwave cladding, the coating demonstrated a substantial impact on wetting behavior, interfacial microstructure, hardness, and corrosion resistance. Surface hardness was substantially enhanced by the cladding process, resulting in a 54.76 % rise from 210 HV to 325 HV. This enhancement substantially raised the mechanical strength of the steel. Under 120 h of corrosion testing in 3.5 wt.% NaCl, a minimal weight loss of 0.342 mg was observed, suggesting that the material exhibited substantial corrosion resistance. In addition, the material’s capacity to resist abrasive forces has been demonstrated by the relatively minimal wear rate of 0.0012 mm3/m that was noticed throughout wear resistance experiments. Effective interfacial adhesion, bonding strength, and uniform distribution were observed by the coating, which resulted in enhanced mechanical characteristics and durability in harsh circumstances. Wetting characteristics indicated enhanced hydrophobicity/hydrophilicity compared to the uncoated surface. SEM images displayed a well-adhered, homogeneous interfacial region, signifying a robust metallurgical bond. The cladding surface exhibited a uniform distribution of CoCrFeNiCu HEA particles. Notably, the steel’s surface hardness increased by approximately 54.76 % postdeposition. These findings underscore the potential of CoCrFeNiCu HEA coatings in advancing steel surface properties for improved performance and durability. The potential of CoCrFeNiCu HEA coatings to enhance the performance and longevity of SS 304 steel in chemical, marine environments, etc., applications that necessitate superior resistance to wear, protection against corrosion, and structural or mechanical integrity is underscored by these findings.

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Sharma S. et al. Exploring the implications of CoCrFeNiCu high entropy alloy coatings on tribomechanical, wetting behavior, and interfacial microstructural characterizations in microwave-clad AISI 304 stainless steels // Zeitschrift fur Naturforschung - Section A Journal of Physical Sciences. 2025. Vol. 80. No. 4. pp. 363-372.
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Sharma S., Dwivedi S. P., Pattanaik A., Bisht Y. S., Kalyani T., Mann V. S., Kumar R., Abhinav K., Kozak D., Lozanovic J. Exploring the implications of CoCrFeNiCu high entropy alloy coatings on tribomechanical, wetting behavior, and interfacial microstructural characterizations in microwave-clad AISI 304 stainless steels // Zeitschrift fur Naturforschung - Section A Journal of Physical Sciences. 2025. Vol. 80. No. 4. pp. 363-372.
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TY - JOUR
DO - 10.1515/zna-2024-0054
UR - https://www.degruyter.com/document/doi/10.1515/zna-2024-0054/html
TI - Exploring the implications of CoCrFeNiCu high entropy alloy coatings on tribomechanical, wetting behavior, and interfacial microstructural characterizations in microwave-clad AISI 304 stainless steels
T2 - Zeitschrift fur Naturforschung - Section A Journal of Physical Sciences
AU - Sharma, Shubham
AU - Dwivedi, Shashi Prakash
AU - Pattanaik, Ashutosh
AU - Bisht, Yashwant Singh
AU - Kalyani, Teku
AU - Mann, Vikasdeep Singh
AU - Kumar, Rajeev
AU - Abhinav, Kumar
AU - Kozak, Drazan
AU - Lozanovic, Jasmina
PY - 2025
DA - 2025/02/17
PB - Walter de Gruyter
SP - 363-372
IS - 4
VL - 80
SN - 0932-0784
SN - 1865-7109
ER -
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@article{2025_Sharma,
author = {Shubham Sharma and Shashi Prakash Dwivedi and Ashutosh Pattanaik and Yashwant Singh Bisht and Teku Kalyani and Vikasdeep Singh Mann and Rajeev Kumar and Kumar Abhinav and Drazan Kozak and Jasmina Lozanovic},
title = {Exploring the implications of CoCrFeNiCu high entropy alloy coatings on tribomechanical, wetting behavior, and interfacial microstructural characterizations in microwave-clad AISI 304 stainless steels},
journal = {Zeitschrift fur Naturforschung - Section A Journal of Physical Sciences},
year = {2025},
volume = {80},
publisher = {Walter de Gruyter},
month = {feb},
url = {https://www.degruyter.com/document/doi/10.1515/zna-2024-0054/html},
number = {4},
pages = {363--372},
doi = {10.1515/zna-2024-0054}
}
MLA
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Sharma, Shubham, et al. “Exploring the implications of CoCrFeNiCu high entropy alloy coatings on tribomechanical, wetting behavior, and interfacial microstructural characterizations in microwave-clad AISI 304 stainless steels.” Zeitschrift fur Naturforschung - Section A Journal of Physical Sciences, vol. 80, no. 4, Feb. 2025, pp. 363-372. https://www.degruyter.com/document/doi/10.1515/zna-2024-0054/html.