ELECTROPLATING SYSTEM
20170298529 ยท 2017-10-19
Inventors
- Wen-Feng Cheng (Taoyuan, TW)
- Shun-Chang HSIAO (TAOYUAN, TW)
- Huan-Hsin LO (TAOYUAN, TW)
- Chi-Chang HSU (TAOYUAN, TW)
- Shang-Pei Sun (TAOYUAN, TW)
Cpc classification
C25D17/10
CHEMISTRY; METALLURGY
International classification
C25D17/00
CHEMISTRY; METALLURGY
Abstract
An electroplating system includes an electroplating bath in which a cathode end and at least an anode end are configured. The anode end is provided with plural anode elements which are insulative from one another, as well as plural conductive elements which are connected electrically with each anode element, respectively. The electroplating system enables a variety of distribution of the electric lines of force to be formed in the electroplating bath through energizing one or any number of anode elements. In particular, good benefits can be achieved by a more aggressive and reliable means, without a need for changing the original anode end equipment.
Claims
1. An electroplating system comprising an electroplating bath in which a cathode end and at least an anode end are disposed, wherein each anode end is provided with plural anode elements which are insulative from one another, as well as plural conductive elements which are connected electrically with each anode element, respectively.
2. The electroplating system according to claim 1, wherein the anode end is provided with a bracket and each anode element is disposed on the bracket, insulative from other anode elements.
3. The electroplating system according to claim 2, wherein the bracket is connected with a swinging device.
4. The electroplating system according to claim 1, wherein the anode end is provided with a bracket, each anode element is disposed on the bracket and is insulative from other anode elements, and each conductive element is fixed on the bracket.
5. The electroplating system according to claim 1, further comprising a distributor for connecting with an external power source, wherein the distributor provides for connecting electrically with the conductive elements disposed on each anode element and is provided with plural switch circuits, with each switch circuit controlling the on or off of the circuit of each anode element.
6. The electroplating system according to claim 1, further comprising a distributor for connecting with an external power source, wherein the distributor provides for connecting electrically with the conductive elements disposed on each anode element and is provided with plural switch circuits, with each switch circuit controlling the on or off of the circuit of each anode element; each anode end being provided with a bracket and being disposed on the bracket, insulative from other anode ends; each conductive element being fixed on the bracket; the distributor being provided with plural lead wires, with each lead wire being connected electrically with each conductive element.
7. The electroplating system according to claim 6, wherein the bracket is connected with a swinging device.
8. The electroplating system according to claim 1, wherein each anode element is provided with plural meshes.
9. The electroplating system according to claim 1, wherein each anode element manifests a rectangular outline.
10. The electroplating system according to claim 1, wherein each anode element manifests a circular outline.
11. The electroplating system according to claim 1, wherein each anode elements manifests a square outline.
12. The electroplating system according to claim 1, wherein each anode element manifests an elliptic outline.
13. The electroplating system according to claim 1, wherein each anode element manifests a triangular outline.
14. The electroplating system according to claim 1, wherein each anode element manifests a trapezoidal outline.
15. The electroplating system according to claim 1, wherein each anode element manifests an L-shaped outline.
16. The electroplating system according to claim 1, wherein each anode end is provided with two anode elements in a different outline.
17. The electroplating system according to claim 1, wherein the electroplating system includes an anode strip.
18. The electroplating system according to claim 17, wherein the anode end is further disposed between the anode strip and the cathode end.
19. The electroplating system according to claim 17, wherein the anode end is disposed on the other side of the anode strip, opposite to the cathode end.
20. The electroplating system according to claim 17, wherein the anode strip is connected with a swinging device.
21. The electroplating system according to claim 1, wherein the anode end is connected with a swinging device.
22. The electroplating system according to claim 1, wherein the anode end and the cathode end are connected with a swinging device.
23. The electroplating system according to claim 1, wherein the cathode end is connected with a swinging device.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0018] The present invention provides primarily an electroplating system in which the electric power distribution can be adjusted according to the shape of the product or the configuration that the product is suspended and disposed. As shown in
[0019] In principle, when the electroplating system of the present invention operates practically, the anode ends 30 in pairs are disposed respectively in the electroplating bath 10, opposite to two sides of the cathode end 20. The product to be electroplated, whereas, is suspended on the cathode end 20. Therefore, when the electric current is applied respectively to the anode ends 30 and the cathode end 20, metal ions will be precipitated and deposited on the cathode end 20 in the electroplating solution in the electroplating bath 10 due to the electrolytic reaction. When the metal ions are reduced on the cathode, a metal coating will be plated on the surface of the product.
[0020] As the electroplating system of the present invention is provided with plural anode elements 32, with each of which being able to control the on or off of the circuit, a variety of distribution of the electric lines of force can be formed in the electroplating bath 10 through energizing one or any number of anode elements 32. In particular, when the shape of the product to be electroplated or the configuration that the product is suspended and disposed is changed, the corresponding distribution of the electric lines of force can be formed only through a simple way of switching an electric current supplying loop, without a need for changing the original anode end equipment. Therefore, the quality of electroplating can be improved by a more aggressive and reliable means to result in good benefits.
[0021] Referring to
[0022] Referring to
[0023] Under all kinds of the abovementioned structure patterns that can be implemented, in the electroplating system of the present invention, the said each anode element 32 is provided with plural meshes 321. In other words, the said anode element 32 can manifest as a structure pattern of a net or basket, so that the metal ions in the electroplating bath can have a better fluidity.
[0024] In addition, in the embodiment as shown in
[0025] Specifically, in the electroplating system disclosed by the present invention, plural anode elements, each of which is able to control the on or off of the circuit, are used primarily to form a variety of distribution of the electric lines of force in the electroplating bath through energizing one or any number of anode elements. In particular, when the shape of the product to be electroplated or the configuration that the product is suspended and disposed is changed, the corresponding distribution of the electric lines of force can be formed only through a simple way of switching an electric current supplying loop, without a need for changing the original anode end equipment. Accordingly, the quality of electroplating can be improved by a more aggressive and reliable means to result in good benefits.
[0026] It is of course to be understood that the embodiments described herein is merely illustrative of the principles of the invention and that a wide variety of modifications thereto may be effected by persons skilled in the art without departing from the spirit and scope of the invention as set forth in the following claims.