Bonding Characteristics of Cold Sprayed Copper Coating on Alumina Coated Q235 Steel Substrate

Cold spraying metallic coatings on ceramics (Ceramics Metallizing) are widely concerned in electrical industry due to its high density, low oxidation and high electrical conductivity. However, the bonding reliability of cold spraying coating on ceramics is usually considered to be poor since the met...

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Autores principales: Guosheng HUANG, Li MA, Lukuo XING, Xiangbo LI
Formato: article
Lenguaje:EN
Publicado: Kaunas University of Technology 2021
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Acceso en línea:https://doaj.org/article/4587609ba7784b1cbb4788dd3b50ac57
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spelling oai:doaj.org-article:4587609ba7784b1cbb4788dd3b50ac572021-11-20T07:34:17ZBonding Characteristics of Cold Sprayed Copper Coating on Alumina Coated Q235 Steel Substrate1392-13202029-728910.5755/j02.ms.25326https://doaj.org/article/4587609ba7784b1cbb4788dd3b50ac572021-11-01T00:00:00Zhttps://matsc.ktu.lt/index.php/MatSc/article/view/25326https://doaj.org/toc/1392-1320https://doaj.org/toc/2029-7289Cold spraying metallic coatings on ceramics (Ceramics Metallizing) are widely concerned in electrical industry due to its high density, low oxidation and high electrical conductivity. However, the bonding reliability of cold spraying coating on ceramics is usually considered to be poor since the metal particles don’t experience melting. The present paper is to exam the bonding quality of a cold spraying copper coating on a thermal sprayed alumina layer influenced by ceramics roughness and copper particle hardness. Pure copper coatings were successfully deposited on Al2O3 coated Q235 steel substrate with different roughness by cold spraying at 260 ℃ and 1.6 MPa using different hardness pure copper powders. The bonding quality and characteristics were studied by analyzing the surface, the cross-sectional microstructure of the coating and its interface after pull-off test. The results indicate that the high bonding quality (ranging from 8.26 MPa to 11.35 MPa) between copper coating and Al2O3 layer attributes to both metallurgical and interlock effect, which is mainly influenced by the hardness of the copper powders instead of Al2O3 surface roughness. The soft character of the pure copper powder makes it ready for deformation, subsequently interlocks with Al2O3, fills into the pores more completely, which increases the bonding quality between the copper coating and the Al2O3 layer.Guosheng HUANGLi MALukuo XINGXiangbo LIKaunas University of Technologyarticlecold spraythermal sprayceramicscopperbonding strengthMining engineering. MetallurgyTN1-997ENMedžiagotyra, Vol 27, Iss 4, Pp 407-415 (2021)
institution DOAJ
collection DOAJ
language EN
topic cold spray
thermal spray
ceramics
copper
bonding strength
Mining engineering. Metallurgy
TN1-997
spellingShingle cold spray
thermal spray
ceramics
copper
bonding strength
Mining engineering. Metallurgy
TN1-997
Guosheng HUANG
Li MA
Lukuo XING
Xiangbo LI
Bonding Characteristics of Cold Sprayed Copper Coating on Alumina Coated Q235 Steel Substrate
description Cold spraying metallic coatings on ceramics (Ceramics Metallizing) are widely concerned in electrical industry due to its high density, low oxidation and high electrical conductivity. However, the bonding reliability of cold spraying coating on ceramics is usually considered to be poor since the metal particles don’t experience melting. The present paper is to exam the bonding quality of a cold spraying copper coating on a thermal sprayed alumina layer influenced by ceramics roughness and copper particle hardness. Pure copper coatings were successfully deposited on Al2O3 coated Q235 steel substrate with different roughness by cold spraying at 260 ℃ and 1.6 MPa using different hardness pure copper powders. The bonding quality and characteristics were studied by analyzing the surface, the cross-sectional microstructure of the coating and its interface after pull-off test. The results indicate that the high bonding quality (ranging from 8.26 MPa to 11.35 MPa) between copper coating and Al2O3 layer attributes to both metallurgical and interlock effect, which is mainly influenced by the hardness of the copper powders instead of Al2O3 surface roughness. The soft character of the pure copper powder makes it ready for deformation, subsequently interlocks with Al2O3, fills into the pores more completely, which increases the bonding quality between the copper coating and the Al2O3 layer.
format article
author Guosheng HUANG
Li MA
Lukuo XING
Xiangbo LI
author_facet Guosheng HUANG
Li MA
Lukuo XING
Xiangbo LI
author_sort Guosheng HUANG
title Bonding Characteristics of Cold Sprayed Copper Coating on Alumina Coated Q235 Steel Substrate
title_short Bonding Characteristics of Cold Sprayed Copper Coating on Alumina Coated Q235 Steel Substrate
title_full Bonding Characteristics of Cold Sprayed Copper Coating on Alumina Coated Q235 Steel Substrate
title_fullStr Bonding Characteristics of Cold Sprayed Copper Coating on Alumina Coated Q235 Steel Substrate
title_full_unstemmed Bonding Characteristics of Cold Sprayed Copper Coating on Alumina Coated Q235 Steel Substrate
title_sort bonding characteristics of cold sprayed copper coating on alumina coated q235 steel substrate
publisher Kaunas University of Technology
publishDate 2021
url https://doaj.org/article/4587609ba7784b1cbb4788dd3b50ac57
work_keys_str_mv AT guoshenghuang bondingcharacteristicsofcoldsprayedcoppercoatingonaluminacoatedq235steelsubstrate
AT lima bondingcharacteristicsofcoldsprayedcoppercoatingonaluminacoatedq235steelsubstrate
AT lukuoxing bondingcharacteristicsofcoldsprayedcoppercoatingonaluminacoatedq235steelsubstrate
AT xiangboli bondingcharacteristicsofcoldsprayedcoppercoatingonaluminacoatedq235steelsubstrate
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