Method for electrodeposition of bronzes
a technology of electrodeposition and bronze, which is applied in the direction of electrolytic coating, surface reaction electrolytic coating, coating, etc., can solve the problems of not being electrolytically deposited in acid, having economic and technical disadvantages, and having their limits in the deposition of tin-copper alloys with high copper content, etc., to achieve the effect of facilitating the adjustment of ph, facilitating the solubility of metal salts, and contributing significantly to the stability of baths
Inactive Publication Date: 2006-11-23
ENTHONE INC
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- Abstract
- Description
- Claims
- Application Information
AI Technical Summary
Benefits of technology
The method achieves higher deposition rates, ensures uniform and high-quality coatings, reduces sludge formation, and is economically and environmentally friendly, enabling broader applications for bronze coatings with high copper content.
Problems solved by technology
Such electrolytes, however, are highly toxic, which makes their use problematic from the environmental standpoint, so that for some years there has been a push to develop cyanide-free electrolytes, for example electrolytes based on pyrophosphates or oxalates, which operate in a pH region of 5-9.
However, such methods have both economic and technical disadvantages, of which the relatively slow deposition rates may be mentioned here.
However, such methods have their limits in the deposition of tin-copper alloys with high copper contents, such as the so-called "true" bronzes, which have a copper content of at least 10%.
However, in this form tin can no longer be electrolytically deposited in an acid and thus is withdrawn from the process, which leads to uneven deposition of the two metals and to a decrease of the deposition rate.
In addition, oxidation to tetravalent tin leads to increased sludge formation, which can prevent stable operation and long lifetime of the acid electrolyte.
Moreover, because of such contaminated of a firmly bonding and pore-free coating is no longer guaranteed.
Because of such technical process disadvantages, there is currently no large area of use for electrolytically deposited bronze coatings.
Method used
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example 1 (
[0032] Example 1 (red bronze)
4 g / L Sn2+
18 g / L Cu2+
286 g / L methanesulfonic acid
3 g / L aromatic nonionic wetting agent
0.4 g / l aliphatic nonionic wetting agent
2 g / L oxidation inhibitor
20 mg / L complexing agent
example 2a (
[0033] Example 2a (yellow bronze)
4 g / L Sn2+
18 g / L Cu2+
240 g / L methanesulfonic acid
32.2 g / L aromatic nonionic wetting agent
2 g / L oxidation inhibitor
25 mg / L stabilizer / complexing agent
example 2b (
[0034] Example 2b (yellow bronze)
4 g / L Sn2+ 18 g / L Cu2+
286 g / L methanesulfonic acid
32.2 g / L aromatic nonionic wetting agent
6 mg / L brightener
2 g / L oxidation inhibitor
50 mg / L stabilizer / complexing agent
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Abstract
Abstract of the DisclosureA method for electrodeposition of bronzes, with which the substrate to be coated is plated in an acid electrolyte that contains at least tin and copper ions, an alkylsulfonic acid and a wetting agent, and the preparation of such an electrolyte.
Description
Detailed Description of the InventionFIELD OF THE INVENTION [0001] This invention concerns a method for electrodeposition of bronzes, with which the substrate to be coated is plated in an acid electrolyte that contains at least tin and copper ions, an alkylsulfonic acid and a wetting agent, and the preparation of such an electrolyte.BACKGROUND OF THE INVENTION[0002] Methods for deposition of tin and tin alloys on the basis of various types of electrolytes are known from the prior art and are already widely used in practice. Methods for deposition of tin and / or tin alloys from cyanide electrolytes are very common. Such electrolytes, however, are highly toxic, which makes their use problematic from the environmental standpoint, so that for some years there has been a push to develop cyanide-free electrolytes, for example electrolytes based on pyrophosphates or oxalates, which operate in a pH region of 5-9. However, such methods have both economic and technical disadvantages, of ...
Claims
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IPC IPC(8): C25D11/20C25D3/58C25D3/60
CPCC25D3/60C25D3/58C25D3/56
Inventor ZSCHINTZSCH, KATRINHEYER, JOACHIMKLEINFELD, MARLIESSCHAFER, STEFANSTEINIUS, ORTUD
Owner ENTHONE INC

