Study on the Performance of Cold Spray Stainless Steel Coatings on Aluminum Alloy Surfaces

To study the effects of cold spraying process parameters on the performance of 430 stainless steel coatings on the surface of 3003 aluminum alloy,430 stainless steel magnetic conductive coatings were prepared on the surface of 3003 aluminum cookware using three different cold spraying process parame...

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Main Author: LIU Chenyang, JIANG Beiping, HUANG Guosheng, MA Li, JIANG Dan, MA Bojiang
Format: Article
Language:zho
Published: Editorial Department of Materials Protection 2024-11-01
Series:Cailiao Baohu
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Online Access:http://www.mat-pro.com/fileup/1001-1560/PDF/20241116.pdf
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author LIU Chenyang, JIANG Beiping, HUANG Guosheng, MA Li, JIANG Dan, MA Bojiang
author_facet LIU Chenyang, JIANG Beiping, HUANG Guosheng, MA Li, JIANG Dan, MA Bojiang
author_sort LIU Chenyang, JIANG Beiping, HUANG Guosheng, MA Li, JIANG Dan, MA Bojiang
collection DOAJ
description To study the effects of cold spraying process parameters on the performance of 430 stainless steel coatings on the surface of 3003 aluminum alloy,430 stainless steel magnetic conductive coatings were prepared on the surface of 3003 aluminum cookware using three different cold spraying process parameters.The microstructure,bonding strength and resistance to thermal shock of the coatings were analyzed using scanning electron microscopy (SEM),tensile testing and thermal shock testing.Results showed that when spraying 430 stainless steel coating on the surface of 3003 aluminum alloy,the degree of oxidation and bonding strength of coatings increased with higher spraying temperatures and pressures.The oxygen content of the coatings reached a maximum of 0.55%(mass fraction),and the bonding strength achieved a maximum of 31.78 MPa.The porosity decreased as the spraying temperature and pressure increased,reaching a minimum of 1.2%.The electrical conductivity ranged from 1.07 to 1.27 MS/m.During thermal shock testing over 100 cycles,the bonding strength decreased from 31.78 MPa to 28.67 MPa,with only a small reduction,and the electrical conductivity decreased to 1.05 MS/m.These results demonstrated that increasing cold spraying temperature and pressure significantly improved the microstructure and bonding properties of the coatings,thereby enhancing their reliability during use.Additionally,the cold-sprayed coatings exhibited excellent characteristics,including high bonding strength,low porosity and low oxidation levels,making this process highly advantageous for the production of magnetic conductive coatings on cookware.
format Article
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publishDate 2024-11-01
publisher Editorial Department of Materials Protection
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series Cailiao Baohu
spelling doaj-art-a0fef92614a84fe2abeb8b36f0ef67a42025-08-20T01:57:11ZzhoEditorial Department of Materials ProtectionCailiao Baohu1001-15602024-11-01571113914610.16577/j.issn.1001-1560.2024.0258Study on the Performance of Cold Spray Stainless Steel Coatings on Aluminum Alloy SurfacesLIU Chenyang, JIANG Beiping, HUANG Guosheng, MA Li, JIANG Dan, MA Bojiang0(1.School of Mechanical and Electrical Engineering,Qingdao University of Science and Technology,Qingdao 266061,China;2.National Key Laboratory of Marine Corrosion and Protection,Luoyang Ship Material Research Institute,Qingdao 266237,China;3.Tongda Electromagnetic Energy Co.,Ltd.,Xiangtan 410083,China)To study the effects of cold spraying process parameters on the performance of 430 stainless steel coatings on the surface of 3003 aluminum alloy,430 stainless steel magnetic conductive coatings were prepared on the surface of 3003 aluminum cookware using three different cold spraying process parameters.The microstructure,bonding strength and resistance to thermal shock of the coatings were analyzed using scanning electron microscopy (SEM),tensile testing and thermal shock testing.Results showed that when spraying 430 stainless steel coating on the surface of 3003 aluminum alloy,the degree of oxidation and bonding strength of coatings increased with higher spraying temperatures and pressures.The oxygen content of the coatings reached a maximum of 0.55%(mass fraction),and the bonding strength achieved a maximum of 31.78 MPa.The porosity decreased as the spraying temperature and pressure increased,reaching a minimum of 1.2%.The electrical conductivity ranged from 1.07 to 1.27 MS/m.During thermal shock testing over 100 cycles,the bonding strength decreased from 31.78 MPa to 28.67 MPa,with only a small reduction,and the electrical conductivity decreased to 1.05 MS/m.These results demonstrated that increasing cold spraying temperature and pressure significantly improved the microstructure and bonding properties of the coatings,thereby enhancing their reliability during use.Additionally,the cold-sprayed coatings exhibited excellent characteristics,including high bonding strength,low porosity and low oxidation levels,making this process highly advantageous for the production of magnetic conductive coatings on cookware.http://www.mat-pro.com/fileup/1001-1560/PDF/20241116.pdfcold spraying;bond strength;stainless steels;electromagnetic heating;cookware
spellingShingle LIU Chenyang, JIANG Beiping, HUANG Guosheng, MA Li, JIANG Dan, MA Bojiang
Study on the Performance of Cold Spray Stainless Steel Coatings on Aluminum Alloy Surfaces
Cailiao Baohu
cold spraying;bond strength;stainless steels;electromagnetic heating;cookware
title Study on the Performance of Cold Spray Stainless Steel Coatings on Aluminum Alloy Surfaces
title_full Study on the Performance of Cold Spray Stainless Steel Coatings on Aluminum Alloy Surfaces
title_fullStr Study on the Performance of Cold Spray Stainless Steel Coatings on Aluminum Alloy Surfaces
title_full_unstemmed Study on the Performance of Cold Spray Stainless Steel Coatings on Aluminum Alloy Surfaces
title_short Study on the Performance of Cold Spray Stainless Steel Coatings on Aluminum Alloy Surfaces
title_sort study on the performance of cold spray stainless steel coatings on aluminum alloy surfaces
topic cold spraying;bond strength;stainless steels;electromagnetic heating;cookware
url http://www.mat-pro.com/fileup/1001-1560/PDF/20241116.pdf
work_keys_str_mv AT liuchenyangjiangbeipinghuangguoshengmalijiangdanmabojiang studyontheperformanceofcoldspraystainlesssteelcoatingsonaluminumalloysurfaces