An alkaline non-cyanide zinc plating solution consisting of 10 g/l zinc oxide, 90 g/l sodium hydroxide and 1.5 g/l gelatine was prepared . Using this solution, a smooth, uniform and one-grained semi-bright deposit was obtained on mild steel sheets over a wide range of current density and pH at 303 K. The plating bath had about 63% current efficiency and 25% throwing power at 303 K and at pH 10. Caffeine and vanillin additions to this bath gave bright zinc deposits
Zinc offers very effective sacrificial protection as well as brightness to steel. About 40% of the t...
Zinc electrodeposits are widely used to protect iron and steel from corrosion which are relatively i...
Zinc coatings may be electrodeposited from cyanide, alkaline or acid baths. However, cyanide electro...
318-323Zinc electrodeposition from non-cyanide alkaline solution was carried out in presence of sa...
Zinc electrodeposits are widely used to protect iron and steel from corrosion. Zinc coatings are pr...
Zinc plating is mostly carried out on steel articles for protection from atmospheric corrosion. Ele...
Alkaline non-cyanide zinc electrogalvanizing is utilized in some plating applications. This study wa...
Zinc coatings are normally obtained from chloride and non-cyanide alkaline baths. The environmental ...
259-265Zinc was electrochemically deposited from non-cyanide alkaline bath solution containing conde...
Zinc-nickel alloy has been proven as a highly corrosion resistant coating meant especially for autom...
A search for a non-cyanide zinc plating bath resulted on the development of a zinc acetate bath. To ...
In the present investigation, an attempt was made to electrodeposit zinc using an eco-friendly zinca...
A systematic electrochemical study of a novel cyanide free galvanic plating solution of alkaline zin...
The optimal conditions for deposition of zinc-nickel alloys onto stainless steel discs in alkaline s...
A new additive formulation for non-cyanide alkaline zinc baths was identified after experiments with...
Zinc offers very effective sacrificial protection as well as brightness to steel. About 40% of the t...
Zinc electrodeposits are widely used to protect iron and steel from corrosion which are relatively i...
Zinc coatings may be electrodeposited from cyanide, alkaline or acid baths. However, cyanide electro...
318-323Zinc electrodeposition from non-cyanide alkaline solution was carried out in presence of sa...
Zinc electrodeposits are widely used to protect iron and steel from corrosion. Zinc coatings are pr...
Zinc plating is mostly carried out on steel articles for protection from atmospheric corrosion. Ele...
Alkaline non-cyanide zinc electrogalvanizing is utilized in some plating applications. This study wa...
Zinc coatings are normally obtained from chloride and non-cyanide alkaline baths. The environmental ...
259-265Zinc was electrochemically deposited from non-cyanide alkaline bath solution containing conde...
Zinc-nickel alloy has been proven as a highly corrosion resistant coating meant especially for autom...
A search for a non-cyanide zinc plating bath resulted on the development of a zinc acetate bath. To ...
In the present investigation, an attempt was made to electrodeposit zinc using an eco-friendly zinca...
A systematic electrochemical study of a novel cyanide free galvanic plating solution of alkaline zin...
The optimal conditions for deposition of zinc-nickel alloys onto stainless steel discs in alkaline s...
A new additive formulation for non-cyanide alkaline zinc baths was identified after experiments with...
Zinc offers very effective sacrificial protection as well as brightness to steel. About 40% of the t...
Zinc electrodeposits are widely used to protect iron and steel from corrosion which are relatively i...
Zinc coatings may be electrodeposited from cyanide, alkaline or acid baths. However, cyanide electro...