Effect of Mg2+ on the microstructure and corrosion resistance of the phosphate conversion coating on hot-dip galvanized sheet steel

a-[ordm Mg2+ in the phosphate solution reduces pores in the phosphate coating on HDG steel. a-[ordm The phosphate coating with fewer pores display a better corrosion resistance. a-[ordm Mg2+ improves the corrosion resistance of phosphated HDG steel. a-[ordm Mg2+ distributes uniformly in Zn phosphate...

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Veröffentlicht in:Corrosion science 2010-12, Vol.52 (12), p.3907-3916
Hauptverfasser: TSAI, Cheng-Yang, LIU, Jen-Shou, CHEN, Pei-Li, LIN, Chao-Sung
Format: Artikel
Sprache:eng
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Zusammenfassung:a-[ordm Mg2+ in the phosphate solution reduces pores in the phosphate coating on HDG steel. a-[ordm The phosphate coating with fewer pores display a better corrosion resistance. a-[ordm Mg2+ improves the corrosion resistance of phosphated HDG steel. a-[ordm Mg2+ distributes uniformly in Zn phosphate and (Zn, Mg) phosphate hydrate coating. a-[ordm Mg2+ accelerates the nucleation of (Zn, Mg) phosphate by enhanced impingements. The effect of Mg2+ in the phosphate solution on the microstructural evolution and corrosion resistance of the coating on hot-dip galvanized steel has been explored. Surface morphology observations reveal that increasing the solution Mg2+ concentration increases the population density and refines the grain size of the phosphate grains. In the presence of Mg2+, the phosphate coating is composed of mixed Zn phosphate hydrate and (Zn, Mg) phosphate hydrate. Furthermore, elevating Mg2+ in the solution reduces the porosity of the phosphate coating. As a result, the corrosion resistance of the phosphate coating is improved.
ISSN:0010-938X
1879-0496
DOI:10.1016/j.corsci.2010.08.007