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1

Okulov, V. V. T︠S︡inkovanie: Tekhnika i tekhnologii︠a︡. Globus, 2008.

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2

Okulov, V. V. T︠S︡inkovanie: Tekhnika i tekhnologii︠a︡. Globus, 2008.

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3

Race, Timothy D. Laboratory evaluation of commercial epoxy zinc-rich primers for civil works applications. US Army Corps of Engineers, Construction Engineering Research Laboratories, 1996.

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4

Race, Timothy D. Laboratory evaluation of commercial epoxy coating systems for civil works applications. U.S. Army Construction Engineering Research Laboratories, 1996.

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5

Golding, Steven. A survey of zinc concentrations in industrial stormwater runoff. Washington State Dept. of Ecology, 2006.

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6

1933-, Krauss George, Matlock David K, and TMS Ferrous Metallurgy Committee., eds. Zinc-based steel coating systems: Metallurgy and performance. Minerals, Metals & Materials Society, 1990.

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7

National Institute of Standards and Technology (U.S.), ed. The reactions of zinc vapor with Zircaloy-4 and pure zirconium. U.S. Dept. of Commerce, Technology Administration, National Institute of Standards and Technology, 2000.

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8

Schaefer, R. J. Interaction of zinc vapor with Zircaloy and the effect of zinc vapor on the mechanical properties of zircaloy. U.S. Nuclear Regulatory Commission, 2000.

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9

John F. Kennedy Space Center., ed. A method for predicting service life of zinc rich primers on carbon steel. National Aeronautics and Space Administration, John F. Kennedy Space Center, 1986.

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10

Abibsi, Abdelhafid. Electrodeposition of corrosion resistant zinc alloy coatings. Aston University. Department of Mechanical and Production Engineering, 1988.

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11

Beitelman, A. High solids and zinc-rich epoxy coatings for Corps of Engineers Civil Works structures. US Army Corps of Engineers, Construction Engineering Research Laboratories, 1996.

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12

International, Conference on Zinc and Zinc Alloy Coated Steel Sheet (6th 2004 Chicago IL U. S. A. ). 6th International Conference on Zinc and Zinc Alloy Coated Steel Sheet: GALVATECH '04, April 4-7, 2004. Association for Iron & Steel Technology, 2004.

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13

Kopyciński, Dariusz. Krystalizacja faz międzymetalicznych i cynku na żelazie oraz na jego nisko- i wysokowęglowych stopach podczas procesu cynkowania. AGH Uczelniane Wydawnictwa Naukowo-Dydaktyczne, 2006.

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14

Kopyciński, Dariusz. Krystalizacja faz międzymetalicznych i cynku na żelazie oraz na jego nisko- i wysokowęglowych stopach podczas procesu cynkowania. AGH Uczelniane Wydawnictwa Naukowo-Dydaktyczne, 2006.

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15

Taj, Imtiaz A. Comparative corrosion resistance of zinc-based coatings on steel. UMIST, 1997.

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16

J, Mendrek M., ed. The corrosion protection of AISI 1010 steel by organic and inorganic zinc-rich primers. National Aeronautics and Space Administration, 1995.

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17

International Conference on Zinc and Zinc Alloy Coated Steel Sheet (5th 2001 Brussels, Belgium). 5th International Conference on Zinc and Zinc Alloy Coated Steel Sheet: GALVATECH '2001 : June 26-28, 2001, Brussels, Belgium. Edited by Lamberights Marcel. Verlag Stahleisen, 2001.

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18

Y, Yan, U.S. Nuclear Regulatory Commission. Office of Nuclear Regulatory Research. Division of Engineering Technology., and Argonne National Laboratory, eds. Zinc-zircaloy interaction in dry storage casks. Division of Engineering Technology, Office of Nuclear Regulatory Research, U.S. Nuclear Regulatory Commission, 2001.

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19

Y, Yan, U.S. Nuclear Regulatory Commission. Office of Nuclear Regulatory Research. Division of Engineering Technology., and Argonne National Laboratory, eds. Zinc-zircaloy interaction in dry storage casks. Division of Engineering Technology, Office of Nuclear Regulatory Research, U.S. Nuclear Regulatory Commission, 2001.

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20

Tsai, H. Zinc-zircaloy interaction in dry storage casks. U.S. Nuclear Regulatory Commission, 2001.

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21

International Conference on Zinc and Zinc Alloy Coated Steel Sheet. (2nd 1992 Amsterdam, The Netherlands). 2nd International Conference on Zinc and Zinc Alloy Coated Steel Sheet: Galvatech '92 : Amsterdam, The Netherlands, September 8-10, 1992. Edited by Centre de recherches métallurgiques. Verlag Stahleisen mbH, 1992.

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22

J, Mendrek M., Walsh D. W, and United States. National Aeronautics and Space Administration. Scientific and Technical Information Branch., eds. The corrosion protection of 2219-T87 aluminum by organic and inorganic zinc-rich primers. National Aeronautics and Space Administration, 1995.

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23

L, Farschon Christopher, United States. Federal Highway Administration., Ocean City Research Corporation, and Turner-Fairbank Highway Research Center, eds. Adhesion criteria between water-based inorganic zinc coatings and their topcoats for steel. Federal Highway Administration, 1999.

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24

Agbonlahor, Samson Osaretin. Influence of pretreatment on corrosion behaviour of duplex zinc/polymer coatings on steel substrates. Aston University. Department of Civil Engineering, 1987.

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25

R, Marder A., Metallurgical Society of AIME. Ferrous Metallurgical Committee., TMS Ferrous Metallurgy Committee., Minerals, Metals and Materials Society. Meeting, and International Conference on the Physical Metallurgy of Zinc Coated Steels: Processing, Structure, and Properties (1994 : San Francisco, Calif.), eds. The Physical metallurgy of zinc coated steel: Proceedings of an international conference sponsored by the Ferrous Metallurgy Committee of TMS/AIME held at the TMS Annual Meeting in San Francisco, California, February 27-March 3, 1994. Minerals, Metals & Materials Society, 1994.

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26

George C. Marshall Space Flight Center., ed. The corrosion protection of AISI [trademark sign] 1010 steel by organic and inorganic zinc-rich primers. National Aeronautics and Space Administration, George C. Marshall Space Flight Center, 1995.

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27

Hüpkes, Jürgen. Untersuchung des reaktiven Sputterprozesses zur Herstellung von aluminiumdotierten Zinkoxide-Schichten für Silizium-Dünnschicht-solarzellen. Forschungszentrum Jülich, Zentralbibliothek, 2006.

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28

United States. National Aeronautics and Space Administration., ed. New anti-corrosive coatings with resin-bonded polyaniline and related electroactive groups: Final report, grant no. NAG10-0174. National Aeronautics and Space Administration, 1997.

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29

United States. National Aeronautics and Space Administration., ed. New anti-corrosive coatings with resin-bonded polyaniline and related electroactive groups: Final report, grant no. NAG10-0174. National Aeronautics and Space Administration, 1997.

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30

United States. National Aeronautics and Space Administration., ed. New anti-corrosive coatings with resin-bonded polyaniline and related electroactive groups: Final report, grant no. NAG10-0174. National Aeronautics and Space Administration, 1997.

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31

American Welding Society. Committee on Thermal Spraying., ed. Guide for the protection of steel with thermal sprayed coatings of aluminum and zinc and their alloys and composites. American Welding Society, 1993.

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32

United States. Federal Highway Administration., ed. ADHESION CRITERIA BETWEEN WATERBASED INORGANIC ZINC COATINGS AND THEIR TOPCOATS FOR STEEL... PUB. NO. FHWA-RD-98-170.., U.S. DEPARTMENT OF T. s.n., 1999.

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33

E, Goodwin Frank, and TMS Ferrous Metallurgy Committee., eds. Zinc-based steel coating systems: Production and performance : proceedings of the international symposium held at the TMS Annual Meeting, February 16-19, 1998, San Antonio, Texas. Minerals, Metals & Materials Society, 1998.

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34

Zinc Dust Pigmented Primer, Performance-Based. AMPP, 2014. https://doi.org/10.5006/sspc-paint_29-2014.

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Scope This specification covers highly pigmented primers that contain zinc dust as the major pigment component (minimum 65% by weight in the dry film) and are defined by their ability to protect ferrous substrates. Individual products meeting minimum performance requirements of this standard may vary in formulation, raw materials, and application characteristics. SSPC-Paint 20 is a performance standard for inorganic or organic zinc-rich coatings that includes options for specifying higher zinc loading levels in the dry coating film. This specification does not cover weldable preconstruction pr
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35

Wilcox, G. D., and K. R. Baldwin. Corrosion of Zinc Alloy Coatings and Other Sacrificial Coating Systems. Woodhead Publishing, 2003.

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36

Wilcox, G. D. Corrosion of Zinc Alloy Coatings and Other Sacrificial Coating Systems. Taylor & Francis Group, 2004.

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37

Corrosion of Zinc Alloy Coatings and Other Sacrificial Coating Systems. CRC, 2007.

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38

Weld-Through Inorganic Zinc Primer. AMPP, 2004. https://doi.org/10.5006/sspc-paint_30-2004.

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Scope This specification covers a group of inorganic zinc primers that can protect carbon steel during the fabrication process, permit welding to specification requirements, and be overcoated. The major pigment component in this coating is zinc dust and the binder is inorganic. This specification defines the minimum compositional and laboratory performance requirements for characterizing a group of zinc primers. It is to be used in conjunction with SSPC-PS Guide 22.00, SSPC-PS Guide 12.00, and other SSPC specifications covering surface preparation, application, thickness, inspection, and safet
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39

(Editor), K. R. Baldwin, and G. D. Wilcox (Editor), eds. Corrosion of zinc alloy coatings and other sacrificial coatings systems. CRC, 2007.

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40

Interaction of zinc vapor with Zircaloy and the effect of zinc vapor on the mechanical properties of Zircaloy. Division of Engineering Technology, Office of Nuclear Regulatory Research, U.S. Nuclear Regulatory Commission, 2000.

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41

(Editor), G. Krauss, and D. K. Matlock (Editor), eds. Zinc Based Steel Coatings: Metallurgy and Performance. Minerals, Metals, & Materials Society, 1990.

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42

Wharton, Julian A. Non-chromate conversion coating treatments for zinc-alloy electrodeposits. 1997.

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43

Zinc sculpture in America, 1850-1950. University of Delaware Press, 2008.

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44

Inorganic zinc coatings and their topcoats for steel: Publication no. FHWA-RD-98-170. U.S. Dept. of Transportation, Federal Highway Administration, Research, Development, and Technology, Turner-Fairbank Highway Research Center, 1999.

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45

Kuklik, Vlastimil, and Jan Kudlacek. Hot-Dip Galvanizing of Steel Structures. Elsevier Science & Technology Books, 2016.

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46

Hot-Dip Galvanizing of Steel Structures. Elsevier Science & Technology Books, 2016.

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47

New anti-corrosive coatings with resin-bonded polyaniline and related electroactive groups: Final report, grant no. NAG10-0174. National Aeronautics and Space Administration, 1997.

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48

Flanders, William Thomas. Galvanizing and Tinning; a Practical Treatise on Coating with Tin and Zinc, with a Special Chapter on Tinning Gray Iron Castings. Creative Media Partners, LLC, 2018.

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49

Erosion Characteristics and Optical Properties of State-of-the-Art, Erosion-Resistant Coatings on Infrared Windows: Boron Phosphide, Gallium Phosphide, and Zinc Sulfide on Multispectral Zinc Sulfide. Storming Media, 1996.

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50

Dubois, M., and J. S. Kim. Zinc-Based Steel Coating Systems: Production and Performance : Proceedings of the International Symposium Held at the Tms Annual Meeting February 16-19, 1998 San Antonio, Texas. Minerals, Metals, & Materials Society, 1998.

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