Influence of Ni-electrodeposited pretreatment on galvanized coatings of reactive steels

Chunshan Che , Jingtang Lu , Gang Kong , Qiaoyu Xu , Runzhou Sui

Journal of Wuhan University of Technology Materials Science Edition ›› 2007, Vol. 22 ›› Issue (2) : 221 -224.

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Journal of Wuhan University of Technology Materials Science Edition ›› 2007, Vol. 22 ›› Issue (2) : 221 -224. DOI: 10.1007/s11595-005-2221-9
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Influence of Ni-electrodeposited pretreatment on galvanized coatings of reactive steels

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Abstract

Four types of steel sheets containing 0.04%, 0.09%, 0.14% and 0.36% Si, respectively, were electrodeposited with a nickel layer of 3 μm in thickness and then galvanized in molten Zn at 450°C for various periods of time. The formation and growth of intermetallic compound layers on the surface of the samples were investigated by SEM and EDS. The experimental results show that the method of Ni-electrodeposited pretreatment can distinctively restrain the over-growth of the galvanized coatings of reactive steels and get eligible coatings with a proper thickness, bright appearance and strong adherence. EDS results indicate that a series of Ni-Zn intermetallic compounds γ′, γ and δ 2 are first formed on the surface of the samples. With a prolonged immersion time, the Γ2-Fe-Zn-Ni and δ-Fe-Zn are formed accompanied by the gradual disappearance of γ′, γ and δ 2 layer. After a longer immersion time, the lumpy ζ-Fe-Zn occurs between δ and liquid Zn and the Γ-Fe-Zn does between steel substrate and δ. Subsequently, ζ is in the form of a continuous and compact layer. The method of Ni-electrodeposited pretreatment changes the formation of Fe-Zn intermetallic compounds, which delay the growth of lumpy ζ and promote the growth of compact δ. Consequently, the abnormal growth of reactive steels is eliminated.

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hot-dip galvanizing / electrodepositing Ni / reactive steel / intermetallic compound

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Chunshan Che, Jingtang Lu, Gang Kong, Qiaoyu Xu, Runzhou Sui. Influence of Ni-electrodeposited pretreatment on galvanized coatings of reactive steels. Journal of Wuhan University of Technology Materials Science Edition, 2007, 22(2): 221-224 DOI:10.1007/s11595-005-2221-9

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References

[1]

Sandlin R. W. Galvanizing Characteristics of Different Types of Steel[J]. Wire and Wire Products, 1941, 16: 28-35.

[2]

Mackowiak J., Short N. R. Metallurgy of Galvanizing Coatings[J]. Inter. Mater. Review., 1979, 1: 1-19.

[3]

Marder A. R. The Metallurgy of Zinc-coated Steel[J]. Prog. Mater. Sci., 2000, 45: 191-271.

[4]

Foct J., Perrot P., Reumont G. Interpretation of the Role of Silicon on the Galvanizing Reaction Based on Kinetics,Morphology and Thermodynamics[J]. Scripta. Metall. Mater., 1993, 28: 1195-1200.

[5]

Chen Z. W., Kennon N. F., See K. B. Technigalva and Other Developments in Batch Hot-Dip Galvanizing[J]. JOM, 1992, 44(1): 22-27.

[6]

Yoshitaka A., Masahiro A. Transformation of Fe-Al Phase to Fe-Zn Phase on Pure Iron During Galvanizing[J]. Mater. Sci. Eng., 1998, A254: 305-310.

[7]

Chidambaram P. R., Rangarajan V., Van Ooij W. J. Characterization of High Temperature Hot Dip Galvanized Coatings[J]. Surf. Coat. Tech., 1991, 46: 245-253.

[8]

Verma A. R. B., Van Ooij W. J. High-temperature Batch Hot-dip Galvanizing. Part1.General Description of Coatings Formed at 560°C[J]. Surf. Coat. Tech., 1997, 89: 132-142.

[9]

Verma A. R. B., Van Ooij W. J. High-temperature Batch Hot-dip Galvanizing. Part 2.Comparison of Coatings Formed in the Temperature Range 520–555°C[J]. Surf. Coat. Tech., 1997, 89: 143-150.

[10]

Reumont G., Perrot P., Foct J. Thermodynamic Study of the Galvanizing Progress in a Zn-0.1% Ni Bath[J]. J. Mater. Sci., 1998, 33: 4759-4768.

[11]

Onishi M., Wakamatsu Y., Sasaki T. Formation Kinetics of Intermetallic Compounds in Fe-Zn Diffusion Couples[J]. J. Japan Institute Metals, 1973, 377(7): 24-730.

[12]

Krepski R P. Nickel-based Pretreatments to Solve the Silicon Steel Galvanizing Problem[C]. In: Proc 15 th Inter. Galva. Conf., Rome: EGGA, 1988: 1–4

[13]

“Handbook of Surface Treatment” Editorial Committee. Handbook of Surface Treatment[M], 1991. Shanghai: Shanghai Science and Technology Press. 240-248.

[14]

Penev G., Vassilev T. G.-A., . Themodynamic Optimization of the Ni-Zn system[J]. J. Phase. Equilibria., 2000, 21(3): 287-290.

[15]

Perrot P., Reumont G. Thermodynamic Description of Dross fFormation when Galvanizing Silicon Steels in Znic-Nickel Baths[J]. J. Phase Equilibria, 1994, 15(1): 479-482.

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