Methods & apparatus for cathode plate production

一种阴极板、阴极片的技术,应用在电极、电解过程、电解组件等方向,能够解决铜覆层损害整修等问题,达到提高粘合、减少资本投资、改善职业保健的效果

Inactive Publication Date: 2006-05-31
XSTRATA QUEENSLAND
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0012] When utilizing stainless steel support rods with copper cladding to improve conductivity, the copper cladding may be compromised or require refurbishment

Method used

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  • Methods & apparatus for cathode plate production
  • Methods & apparatus for cathode plate production
  • Methods & apparatus for cathode plate production

Examples

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[0080] The methods described above were tested on suitable electrorefining equipment. The test was performed on used cathode plates that were repaired / refurbished, as well as on new cathode plate production.

[0081] repaired board

[0082] Ten cathode plates located in the test facility were supplied and repaired in two groups.

[0083] group 1

[0084] The following repair / refurbishment procedures were performed on test panels 3, 4, 5, 7 and 9:

[0085] i) Mechanically remove the copper plates from the stent bars with a pneumatic cutting tool (sharp chisel).

[0086] ii) The stent rod is then straightened and polished around the window in the area where it will be re-plated.

[0087] iii) The stent rod is soaked in caustic solution and the rinsed.

[0088] iv) As with every conventional procedure, an attempt was made to "splash" the stent rod, however, this was not entirely successful.

[0089] v) Instead, etch the stent rods at different current densities and a mi...

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Abstract

The present invention relates to the electrolytic recovery of metals, and more particularly to methods and apparatus for producing cathode plates suitable for such electrolytic recovery. A first aspect of the invention comprises a method of providing a conductive coating on a cathode plate, the method comprising, inverting and submerging an upper portion of the cathode plate adjacent at least one anode in an electrolytic cell, and applying an electric current to electroplate the upper portion of the cathode plate , wherein each anode comprises: i) a first base adapted to be positioned adjacent to the support bar of the cathode plate; ii) a second extension connected to and extending from the base, and A sheet adapted to be positioned adjacent to the cathode plate, wherein each of the anodes is profiled so that, in use, a coating of consistent thickness is plated on the support rod and cathode sheet. A second aspect of the present invention provides an anode for electroplating the upper portion of a cathode plate having a support rod and cathode tabs, said anode comprising: i) a first exposed bottom which is longer than said support rod and in which having a constant cross-sectional shape over its length; ii) a second exposed portion connected to and extending from said base and having a length shorter than the width of said cathode tab. A third aspect of the present invention provides a method of reconditioning a cathode plate comprising the steps of: removing a conductive coating on a support rod and said cathode plate, and then applying a current density to said cathode plate in a deplating bath , such that the level of the current density is sufficient to etch exposed metal below the liquid level of the deplating bath, but insufficient to preferentially corrode any solder connection between the support rod and the cathode tab.

Description

technical field [0001] The present invention relates to the electrolytic recovery of metals, and more particularly to methods and apparatus for producing cathode plates suitable for such electrolytic recovery. Background technique [0002] Any discussion of prior art throughout this specification should not be taken as an admission that such prior art is generally known or forms part of the common general knowledge in the art. [0003] The electrolytic recovery of metals, especially copper, has been known for quite some time. The first patent for electrolytic refining of metals was for copper and was granted to James Elkington in England in 1865. In 1883 the first copper refinery was established in Newark by the Balbach Smelting and Refining Company. In the early days, electrorefining had difficulty producing hard, high-purity copper cathode deposits. Among the most important developments in overcoming the early difficulties were the use of additives to the electrolyte, e...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C25C7/06C25C7/02
CPCC25C7/02
Inventor W·K·韦布J·韦斯顿G·黑夫尔伦
Owner XSTRATA QUEENSLAND
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