Shaping optimal zinc coating on the surface of high-quality ductile iron casting. Part II – Technological formula and value of diffusion coefficient
The completed research presented in the first part of the article has allowed linking the manufacturing technology of ductile iron castings with the process of hot dip galvanizing. On the basis of these data simulations were carried out to examine the behaviour of zinc diffusion coefficient D in the...
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doaj-1b0a59f4f5c24db28a963fc8030d20302020-11-25T03:03:22ZengPolish Academy of SciencesArchives of Metallurgy and Materials2300-19092017-03-0162139139510.1515/amm-2017-0061amm-2017-0061Shaping optimal zinc coating on the surface of high-quality ductile iron casting. Part II – Technological formula and value of diffusion coefficientKopyciński D.0Guzik E.1Szczęsny A.2Agh, University of Science and Technology, Faculty of Foundry Engineering, Al. Mickiewicza30, 30-059 Krakow, PolandAgh, University of Science and Technology, Faculty of Foundry Engineering, Al. Mickiewicza30, 30-059 Krakow, PolandAgh, University of Science and Technology, Faculty of Foundry Engineering, Al. Mickiewicza30, 30-059 Krakow, PolandThe completed research presented in the first part of the article has allowed linking the manufacturing technology of ductile iron castings with the process of hot dip galvanizing. On the basis of these data simulations were carried out to examine the behaviour of zinc diffusion coefficient D in the galvanized coating. The adopted model of zinc coating growth helped to explain the cases of excessive growth of the intermetallic phases in this type of coating. The paper analyzes covered the relationship between the roughness and phase composition of the top layer of product and the thickness and kinetics of zinc coating growth referred to individual sub-layers of the intermetallic phases.Roughness and phase composition in the surface layer of product were next related to the diffusion coefficient D examined in respective sublayers of the intermetallic phases.http://www.degruyter.com/view/j/amm.2017.62.issue-1/amm-2017-0061/amm-2017-0061.xml?format=INThot dip galvanizingductile ironsurface roughnessdiffusion coefficient |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Kopyciński D. Guzik E. Szczęsny A. |
spellingShingle |
Kopyciński D. Guzik E. Szczęsny A. Shaping optimal zinc coating on the surface of high-quality ductile iron casting. Part II – Technological formula and value of diffusion coefficient Archives of Metallurgy and Materials hot dip galvanizing ductile iron surface roughness diffusion coefficient |
author_facet |
Kopyciński D. Guzik E. Szczęsny A. |
author_sort |
Kopyciński D. |
title |
Shaping optimal zinc coating on the surface of high-quality ductile iron casting. Part II – Technological formula and value of diffusion coefficient |
title_short |
Shaping optimal zinc coating on the surface of high-quality ductile iron casting. Part II – Technological formula and value of diffusion coefficient |
title_full |
Shaping optimal zinc coating on the surface of high-quality ductile iron casting. Part II – Technological formula and value of diffusion coefficient |
title_fullStr |
Shaping optimal zinc coating on the surface of high-quality ductile iron casting. Part II – Technological formula and value of diffusion coefficient |
title_full_unstemmed |
Shaping optimal zinc coating on the surface of high-quality ductile iron casting. Part II – Technological formula and value of diffusion coefficient |
title_sort |
shaping optimal zinc coating on the surface of high-quality ductile iron casting. part ii – technological formula and value of diffusion coefficient |
publisher |
Polish Academy of Sciences |
series |
Archives of Metallurgy and Materials |
issn |
2300-1909 |
publishDate |
2017-03-01 |
description |
The completed research presented in the first part of the article has allowed linking the manufacturing technology of ductile iron castings with the process of hot dip galvanizing. On the basis of these data simulations were carried out to examine the behaviour of zinc diffusion coefficient D in the galvanized coating. The adopted model of zinc coating growth helped to explain the cases of excessive growth of the intermetallic phases in this type of coating. The paper analyzes covered the relationship between the roughness and phase composition of the top layer of product and the thickness and kinetics of zinc coating growth referred to individual sub-layers of the intermetallic phases.Roughness and phase composition in the surface layer of product were next related to the diffusion coefficient D examined in respective sublayers of the intermetallic phases. |
topic |
hot dip galvanizing ductile iron surface roughness diffusion coefficient |
url |
http://www.degruyter.com/view/j/amm.2017.62.issue-1/amm-2017-0061/amm-2017-0061.xml?format=INT |
work_keys_str_mv |
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