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2018 | OriginalPaper | Chapter

16. Zinc and Zinc Alloys

Author : Frank E. Goodwin

Published in: Springer Handbook of Materials Data

Publisher: Springer International Publishing

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Abstract

This chapter presents key facts about zinc's role in the world together with technical reasons for its widespread use. The frequency and occurrence of zinc resources are compared with present and forecast demand, showing that more than 200 years of future demand will be met by known zinc resources. An overview of the primary zinc production process is then given, including an overview of the mining, aqueous concentration, roasting, cementation and electrolytic refining steps. Mechanical, thermal and crystallographic properties of zinc are then provided, especially for the most widely produced and used grade, 99.99% (special high grade) zinc. The principal uses of zinc and its alloys are then described. The most important use of zinc is the corrosion protection of steel; the usual reactions occurring during corrosion of galvanized steel are given together with corrosion rates typical of many environments where it is used. The next most important use is zinc die casting alloys; the composition of these alloys and their engineering properties are provided. Compositions and technical characteristics of other applications including rolled and thermal sprayed zinc, as well as zinc anodes, are also given.

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Literature
16.1
go back to reference D. Smale: Zinc: Essential for Galvanizing. In: 8th Intl. Conf. on Zinc and Zinc Alloy Coated Sheets (Galvatech 2011), Genoa (Associazione Italiana di Metallurgia, Milan 2011) D. Smale: Zinc: Essential for Galvanizing. In: 8th Intl. Conf. on Zinc and Zinc Alloy Coated Sheets (Galvatech 2011), Genoa (Associazione Italiana di Metallurgia, Milan 2011)
16.2
go back to reference World Directory 2008: Primary and Secondary Zinc Plants (International Lead and Zinc Study Group, Lisbon 2008) World Directory 2008: Primary and Secondary Zinc Plants (International Lead and Zinc Study Group, Lisbon 2008)
16.3
go back to reference U.S. Bureau of Standards: Zinc and Its Alloys, Bulletin, Vol. 395 (U.S. Government Printing Office, Washington D.C. 1931) p. 214 U.S. Bureau of Standards: Zinc and Its Alloys, Bulletin, Vol. 395 (U.S. Government Printing Office, Washington D.C. 1931) p. 214
16.4
go back to reference ASM Handbook Committee: Properties and Selecton: Nonferrous Alloys and Pure Metals. In: Metals Handbook, 9th edn., Vol. 2 (American Society for Minerals, Materials Park 1979) ASM Handbook Committee: Properties and Selecton: Nonferrous Alloys and Pure Metals. In: Metals Handbook, 9th edn., Vol. 2 (American Society for Minerals, Materials Park 1979)
16.5
go back to reference W.B. Pietenpol, H.A. Miley: Electrical resistivities and temperature coefficients of lead, tin, zinc and bismuth in the solid and liquid states, Phys. Rev. 34, 1588–1600 (1929)CrossRef W.B. Pietenpol, H.A. Miley: Electrical resistivities and temperature coefficients of lead, tin, zinc and bismuth in the solid and liquid states, Phys. Rev. 34, 1588–1600 (1929)CrossRef
16.6
go back to reference S.W.K. Morgan: Zinc and Its Alloys and Compounds (Wiley, New York 1985) p. 245 S.W.K. Morgan: Zinc and Its Alloys and Compounds (Wiley, New York 1985) p. 245
16.7
go back to reference B.E. Rotheli, G.L. Cox, W.B. Littreal: Effect of pH on the corrosion rate of zinc in oxygenated aqueous solutions, Metals Alloys 3, 73–76 (1932) B.E. Rotheli, G.L. Cox, W.B. Littreal: Effect of pH on the corrosion rate of zinc in oxygenated aqueous solutions, Metals Alloys 3, 73–76 (1932)
16.8
go back to reference R. Thomas: Rust Prevention by Hot Dip Galvanization (Nordic Galvanic Association, Stockholm 1980) R. Thomas: Rust Prevention by Hot Dip Galvanization (Nordic Galvanic Association, Stockholm 1980)
16.9
go back to reference D. Knotkova: Atmospheric Corrosivity Classification Results of the International Testing Programme ISOCORRAG. In: NACE International Corrosion Conference, Houston (1993) p. 16 D. Knotkova: Atmospheric Corrosivity Classification Results of the International Testing Programme ISOCORRAG. In: NACE International Corrosion Conference, Houston (1993) p. 16
16.10
go back to reference F.E. Goodwin, A. Ponikvar: Engineering Properties of Zinc Alloys, 3rd edn. (International Lead Zinc Research Organization, Research Triangle Park 1989) F.E. Goodwin, A. Ponikvar: Engineering Properties of Zinc Alloys, 3rd edn. (International Lead Zinc Research Organization, Research Triangle Park 1989)
16.11
go back to reference Standard Method of European Zinc Testing Committee (International Lead Zinc Research Organization, Durham 1982), available from info@zinc.org Standard Method of European Zinc Testing Committee (International Lead Zinc Research Organization, Durham 1982), available from info@zinc.org
Metadata
Title
Zinc and Zinc Alloys
Author
Frank E. Goodwin
Copyright Year
2018
Publisher
Springer International Publishing
DOI
https://doi.org/10.1007/978-3-319-69743-7_16

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