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Conductive mechanism for rotary electroplating mechanical cantilever

A rotary and rotating mechanism technology, applied in the direction of current conduction device, electrolysis process, electrolysis components, etc., can solve the problems of insulation damage, high temperature softening of insulation, etc.

Active Publication Date: 2020-10-30
义乌市义心科技有限责任公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] Since the clamping head of the front end of the rotary electroplating mechanical cantilever can rotate greatly, and when the clamping head rotates, it will drive the conductive wire connected to it to rotate synchronously. If the clamping head rotates 360°, the internal conductive wire will also rotate The corresponding rotation is tightened, and the outer insulation of the conductive wire will soften at high temperature after long-term use, which will easily cause the outer insulation of the conductive wire to be damaged under repeated tightening.

Method used

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  • Conductive mechanism for rotary electroplating mechanical cantilever
  • Conductive mechanism for rotary electroplating mechanical cantilever
  • Conductive mechanism for rotary electroplating mechanical cantilever

Examples

Experimental program
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Effect test

Embodiment 1

[0026] For example figure 1 -example Figure 5 Shown:

[0027] The invention provides a cantilever conductive mechanism of a rotary electroplating machine, the structure of which includes a middle connecting rod 1, an engaging arm 2, a support rod 3, a base 4, and a clamping mechanism 5, and the middle connecting rod 1 and the connecting arm 2 are movably engaged. , the connecting arm 2 is connected to the upper end of the support rod 3, the support rod 3 is welded to the base 4, the clamping mechanism 5 is installed at the front end of the connecting rod 1; the clamping mechanism 5 includes an outer Frame 51, conductive mechanism 52, clamping head 53, rotating disk 54, the outer frame 51 is connected with the rotating disk 54, the conductive mechanism 52 is embedded in the upper end position of the rotating disk 54, and the clamping head 53 is installed At the bottom position of the rotating disk 54.

[0028] Wherein, the conductive mechanism 52 includes a heat conduction ...

Embodiment 2

[0034] For example Image 6 -example Figure 8 Shown:

[0035] Wherein, the wire fixing ring a35 includes a fixed block c1, a booster bar c2, an overhanging frame c3, and an outer ring c4, the fixed block c1 and the outer ring c4 are an integrated structure, and the booster bar c2 is installed Between the block c1 and the outrigger c3, the outrigger c3 is movably engaged with the inner position of the fixed block c1 and the outer ring c4, and there are six outriggers c3, which are evenly placed on the outer ring c4 Distributed in a circular shape, through the thrust generated by the booster bar c2 on the outrigger c3, the outrigger c3 can fix the position of the conductive wire.

[0036] Wherein, the outstretched frame c3 includes a plate body c31, an elastic piece c32, an inner clamping block c33, a transmission line c34, and a linkage rod c35, and the elastic piece c32 is installed between the plate body c31 and the inner clamping block c33. The inner clamping block c33 i...

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Abstract

The invention discloses a conductive mechanism for a rotary electroplating mechanical cantilever. The conductive mechanism structurally comprises a middle connecting rod, a connecting arm, a supporting rod, a base and a clamping mechanism, wherein the middle connecting rod is movably clamped to the connecting arm; the connecting arm is connected with the upper end of the supporting rod; the supporting rod is welded to the base; and the clamping mechanism is installed at the front end of the middle connecting rod. A clamping head is driven to rotate by a rotating disc so that an outer disc canrotate along with the rotating disc, the outer disc squeezes a stressed block during rotating so that the stressed block can contract inwards, consequently, an integrated disc cannot synchronously rotate along with the rotation of the outer disc, and therefore, a conductive wire installed in the middle of a wire fixing ring cannot be rotationally tightened; and an outer extension frame can extendoutwards along an outer ring through the pushing force generated by a push-assisting strip on the outer extension frame, so that the extending outer extension frame clamps the conductive wire, and theproblem that the wire fixing ring cannot adapt to a conductive wire with smaller diameter if the diameter of the wire fixing ring cannot be changed is effectively avoided.

Description

technical field [0001] The invention relates to the field of electroplating, in particular to a cantilever conductive mechanism of a rotary electroplating machine. Background technique [0002] The conductive mechanism of the rotary electroplating mechanical cantilever is mainly used to provide power support for the rotary electroplating mechanical cantilever. It usually runs through the internal position of the rotary electroplating mechanical cantilever and guides the current to each electrical appliance on the rotary electroplating mechanical cantilever. , so as to realize the normal operation of the rotary electroplating mechanical cantilever. Based on the above description, the inventors found that the existing conductive mechanism of a rotary electroplating mechanical cantilever mainly has the following deficiencies, for example: [0003] Since the clamping head of the front end of the rotary electroplating mechanical cantilever can rotate greatly, and when the clampin...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C25D17/00
CPCC25D17/007
Inventor 尤德逢
Owner 义乌市义心科技有限责任公司
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