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An all-round suspension electroplating method and electroplating equipment

A kind of electroplating equipment, all-round technology, applied in the direction of electrodes, plating tanks, etc.

Active Publication Date: 2021-02-26
创隆实业(深圳)有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

But this invention cannot carry out all-round suspension electroplating

Method used

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  • An all-round suspension electroplating method and electroplating equipment
  • An all-round suspension electroplating method and electroplating equipment
  • An all-round suspension electroplating method and electroplating equipment

Examples

Experimental program
Comparison scheme
Effect test

specific Embodiment approach 1

[0036] Combine below Figure 1-13 This embodiment is described. The present invention relates to the field of electroplating, more specifically, an omnidirectional suspension electroplating equipment, including an electroplating box 1, a runner 103, a retaining ring 104, a portal frame 2, a horizontal shaft 202, a support seat 207 and For the connecting column 208, the present invention can perform all-round suspension electroplating.

[0037] The upper parts of the left and right inner surfaces of the electroplating box 1 are rotatably connected with runners 103, the front and rear sides of each runner 103 are fixedly connected with retaining rings 104, and the left and right sides of the portal frame 2 are fixedly connected with horizontal shafts. 202 , the two horizontal shafts 202 are placed on the upper parts of the two runners 103 respectively, and the lower sides of the two gantry frames 2 are connected to the support bases 207 through the connecting columns 208 . The ...

specific Embodiment approach 2

[0039] Combine below Figure 1-13To illustrate this embodiment, the omni-directional suspension electroplating equipment also includes a cylinder 3, a gear ring 301, an arc clip 302, a fastening screw II303 and a push-pull column 304, and the cylinder 3 is rotatably connected between two support seats 207 , the upper side of the cylinder 3 is fixedly connected with a gear ring 301, the gear ring 301 is located on the upper side of the two support seats 207, the front and rear sides of the cylinder 3 are slidingly connected with push-pull columns 304, and the inner ends of the two push-pull columns 304 Both are fixedly connected with arc-shaped clips 302 , the front and rear ends of the gear ring 301 are screwed with fastening screws II303 , and the two fastening screws II303 are respectively pressed on the two push-pull columns 304 . The cylinder 3 can rotate on its own axis between the two support seats 207. When in use, move the two arc-shaped clips 302 close, and the two ar...

specific Embodiment approach 3

[0041] Combine below Figure 1-13 To illustrate this embodiment, the omni-directional suspension electroplating equipment also includes a round stopper 201, a vertical column 204, a horizontal column 205 and a rack 206. The right part of the gantry 2 is slidably connected to the horizontal column 205, and the left end of the horizontal column 205 is Fixedly connected with a round stopper 201, the right end of the horizontal column 205 is fixedly connected with a vertical column 204, the horizontal column 205 is sleeved with a compression spring 1, the compression spring 1 is located between the portal frame 2 and the vertical column 204, and the vertical column 204 The lower part is fixedly connected with a rack 206 arranged transversely, and the rack 206 is engaged with the gear ring 301 for transmission. The compression spring 1 gives the power to the right of the vertical column 204 all the time, so that the vertical column 204 and the tooth bar 206 have a tendency to move ...

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Abstract

The invention relates to the field of electroplating, in particular to an omnibearing suspension electroplating method and electroplating equipment. The method comprises the following steps: S1, afternuts on two threaded columns are dismounted, a front baffle is dismounted, two arc-shaped clamping pieces are moved to approach, and the two arc-shaped clamping pieces are used for suspending and fixing parts; S2, a portal frame moves rightwards, and when a vertical column moves to the right side wall of an electroplating box, relative displacement is generated among a cylinder, a gear ring and arack, so that the cylinder and the gear ring are driven to rotate; S3, an electroplating solution is added into the electroplating box, the rack drives the cylinder and the gear ring to rotate reversely, and the cylinder drives the parts to rotate reversely in the forward direction along with the left-right movement of the portal frame; and S4, a round head is pressed on a cathode column on the upper side of the parts arranged between the two arc-shaped clamping pieces, the parts further communicate with a cathode, and an anode column serving as an anode is electrified into the electroplatingsolution.

Description

technical field [0001] The invention relates to the field of electroplating, in particular to an omnidirectional suspension electroplating method and electroplating equipment. Background technique [0002] The application number is CN201811156789.4, which discloses a flexible thin film electroplating device. The invention discloses a flexible thin film electroplating device, including: a thin film electroplating device and an air blowing shaft device arranged in parallel with the thin film electroplating device; the thin film electroplating device includes A tension control device, an electroplating pole device, a water gate device, and water bag devices arranged on both sides of the water gate device. The flexible thin film electroplating device of the present invention adjusts the vertically moving film to a horizontal movement through the air blowing shaft device, thereby ensuring that the film exported by the device will not be wrinkled and deformed during the working pr...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): C25D7/06C25D17/02C25D17/10
CPCC25D7/0614C25D17/02C25D17/10
Inventor 彭长明陈雪影侯光微
Owner 创隆实业(深圳)有限公司