The Effect of Aluminum-Oxide Powders on the Structure and Properties of Copper Electrodeposited Composite Coatings
- Authors: Volkova I.R.1, Tyryshkina L.E.1,2, Volochaev M.N.1, Zaloga A.N.2, Shabanova K.A.1,3, Ovchinnikov A.V.3, Lyamkin A.I.1,2
- 
							Affiliations: 
							- Federal Research Center “Krasnoyarsk Science Center”, Siberian Branch, Russian Academy of Sciences, 660036, Krasnoyarsk, Russia
- Siberian Federal University, 660041, Krasnoyarsk, Russia
- Reshetnev Siberian State University of Science and Technology, 660037, Krasnoyarsk, Russia
 
- Issue: Vol 59, No 1 (2023)
- Pages: 39-44
- Section: НОВЫЕ ВЕЩЕСТВА, МАТЕРИАЛЫ И ПОКРЫТИЯ
- URL: https://rjeid.com/0044-1856/article/view/663821
- DOI: https://doi.org/10.31857/S0044185622700024
- EDN: https://elibrary.ru/PUGQJC
- ID: 663821
Cite item
Abstract
Copper electrodeposited composite coatings containing two types of aluminum-oxide powders with different dispersities (alumina Al2O3-1 and electroexplosive aluminum-oxide nanopowder Al2O3-2) are obtained during the work. The studies show that introducing the powders leads to a change in the microstructure of the composites and a change in the grain growth principles during the formation of the coatings. Refinement and ordering of the grain structure of the coatings occurs and twinning defects and texture are formed. The change in the formation of the microstructure of the composites leads to a change in some operational characteristics: an increase in the microhardness (by 10% in the composites with the addition of alumina and by more than 30% in the coatings with electroexplosive aluminum oxide) and ultimate tensile strength (by 20% in the composites with Al2O3-1 and almost 1.5-fold in the samples with Al2O3-2).
About the authors
I. R. Volkova
Federal Research Center “Krasnoyarsk Science Center”, Siberian Branch, Russian Academy of Sciences, 660036, Krasnoyarsk, Russia
														Email: Iriny_24@mail.ru
				                					                																			                												                								Россия, 660036,  Красноярск, Академгородок, 50						
L. E. Tyryshkina
Federal Research Center “Krasnoyarsk Science Center”, Siberian Branch, Russian Academy of Sciences, 660036, Krasnoyarsk, Russia; Siberian Federal University, 660041, Krasnoyarsk, Russia
														Email: Iriny_24@mail.ru
				                					                																			                												                								Россия, 660036,  Красноярск, Академгородок, 50; Россия, 660041,  Красноярск, пр. Свободный, 79						
M. N. Volochaev
Federal Research Center “Krasnoyarsk Science Center”, Siberian Branch, Russian Academy of Sciences, 660036, Krasnoyarsk, Russia
														Email: Iriny_24@mail.ru
				                					                																			                												                								Россия, 660036,  Красноярск, Академгородок, 50						
A. N. Zaloga
Siberian Federal University, 660041, Krasnoyarsk, Russia
														Email: Iriny_24@mail.ru
				                					                																			                												                								Россия, 660041,  Красноярск, пр. Свободный, 79						
K. A. Shabanova
Federal Research Center “Krasnoyarsk Science Center”, Siberian Branch, Russian Academy of Sciences, 660036, Krasnoyarsk, Russia; Reshetnev Siberian State University of Science and Technology, 660037, Krasnoyarsk, Russia
														Email: Iriny_24@mail.ru
				                					                																			                												                								Россия, 660036,  Красноярск, Академгородок, 50; Россия, 660037,  Красноярск, пр-т. им. газеты “Красноярский рабочий”, 31						
A. V. Ovchinnikov
Reshetnev Siberian State University of Science and Technology, 660037, Krasnoyarsk, Russia
														Email: Iriny_24@mail.ru
				                					                																			                												                								Россия, 660037,  Красноярск, пр-т. им. газеты “Красноярский рабочий”, 31						
A. I. Lyamkin
Federal Research Center “Krasnoyarsk Science Center”, Siberian Branch, Russian Academy of Sciences, 660036, Krasnoyarsk, Russia; Siberian Federal University, 660041, Krasnoyarsk, Russia
							Author for correspondence.
							Email: Iriny_24@mail.ru
				                					                																			                												                								Россия, 660036,  Красноярск, Академгородок, 50; Россия, 660041,  Красноярск, пр. Свободный, 79						
References
- Ramalingam S., Balakrishnan K., Shanmugasamy S. et al. // Surface Engineering. 2017. V. 33. № 5. P. 369–374.
- Akanksha R. Shelke, J. Balwada, S. Sharma et al. // Materials Today: Proceedings. 2020. № 28. P. 2090–2095.
- Eslami M., Saghafiana H., Golestani-fard F. // Applied Surface Science. 2014. V. 300. P. 129–140.
- ГОСТ 9.305-84. Покрытия металлические и неметаллические неорганические. Операции технологических процессов получения покрытий. Введ. 1986-01-01.
- Ковенский И.М. Металловедение покрытий. Учебник для ВУЗов / Ковенский В.В., Поветкин В.В. М.: СП “Интермет Инжиниринг”. 1999 г. 296 с.
- Goral A. // Surface & Coatings Technology. 2017. V. 319. P. 23–32.
- Imaz N., Garcı’a-Lecina E., Sua’rez C. et al. // Transactions of the Institute of Metal Finishing. 2009. V. 87. № 2. P. 64–71.
- Гамбург Ю.Д. Электрохимическая кристаллизация металлов и сплавов / Гамбург Ю.Д. М.: Янус-К. 1997 г. 384 с. с илл.
- Брусницына Л.А., Степановских Е.И., Алексеева Т.А. // Бутлеровские сообщения. 2021. Т. 67. № 7. С. 39–46.
Supplementary files
 
				
			 
					 
						 
						 
						 
						 
									

 
  
  
  Email this article
			Email this article 
 Open Access
		                                Open Access Access granted
						Access granted Subscription or Fee Access
		                                							Subscription or Fee Access
		                                					





