CN207973821U - A kind of weak electrolyte circulation and stress device - Google Patents
A kind of weak electrolyte circulation and stress device Download PDFInfo
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- CN207973821U CN207973821U CN201820312960.5U CN201820312960U CN207973821U CN 207973821 U CN207973821 U CN 207973821U CN 201820312960 U CN201820312960 U CN 201820312960U CN 207973821 U CN207973821 U CN 207973821U
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- partition
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Abstract
The utility model is related to a kind of weak electrolyte circulation and stress devices, including electrolytic cell, first partition, second partition, pole plate fixing bracket;The cell body bottom is equipped with electrolyte inlet tube and pipe is recovered by filtration;Electrolytic cell is divided into the first cavity, the second cavity and third cavity by the first partition and second partition;First cavity is surrounded by first partition and electrolytic cell;The bottom of first cavity is equipped with electrolyte inlet tube;Second cavity is surrounded by electrolytic cell, first partition and second partition;Third cavity is surrounded by second partition and electrolytic cell;After such structure, the impurity that anode material adsorbs in start process can be effectively prevent to improve the efficiency of plating, while can also to ensure the finish on plated item surface because the immersion of electrolyte is gradually detached from from anode material.
Description
Technical field
The utility model is related to be electrolysed field of electroplating more particularly to a kind of weak electrolyte circulation and stress device.
Background technology
Electrolyte in traditional electroplanting device will not be collected when shutting down, and anode material adsorbs in start process
Impurity can be because the immersion of electrolyte be gradually detached from from anode material, and impurity is detached from from anode material and can influence to be electrolysed
Impurity content in liquid causes the pollution again of electrolyte, to further influence the surface smoothness of plating, makes plating
Quality be greatly reduced.
Utility model content
The technical problems to be solved in the utility model is a kind of weak electrolyte circulation and stress device of design, solves above-mentioned electrolysis
The prior art problem that liquid pollutes again.
In order to solve the above technical problems, the utility model provides a kind of weak electrolyte circulation and stress device, including electrolysis
Slot, first partition, second partition, pole plate fixing bracket;The cell body bottom is equipped with electrolyte inlet tube and is recovered by filtration
Pipe;Electrolytic cell is divided into the first cavity, the second cavity and third cavity by the first partition and second partition;First cavity
It is surrounded by first partition and electrolytic cell;The bottom of first cavity is equipped with electrolyte inlet tube;Second cavity is by being electrolysed
Slot, first partition and second partition surround;Third cavity is surrounded by second partition and electrolytic cell;The bottom of the third cavity is set
Pipe is recovered by filtration;The upper end that pipe is recovered by filtration is equipped with plug;The tube wall that pipe is recovered by filtration is equipped with filter hole;Institute
It states third cavity bottom and is equipped with pole plate fixing bracket;The height of the first partition is less than the height of second partition.
Further, the first partition and the upper board edge of second partition are ripple type.The wave-shape board
Further, it is described be recovered by filtration the filter hole of extreme lower position on pipe be higher than bottom of electrolytic tank 2cm.
Further, the pole plate fixing bracket includes anode board mount and cathode board mount;The anode board mount packet
Include fixed part and wave-shape board;The fixed part is connected with the side of wave-shape board;The fixed part is fixed on the groove body bottom of electrolytic cell
Portion;Be connected with the fixed part sides adjacent of side of the wave-shape board is fixed on the groove body bottom of electrolytic cell;The cathode board mount is
Cube frame structure;The cube frame side is equipped with the fixed plate with hole;The cube frame bottom and electricity
The groove body bottom for solving slot is connected.
Further, the pipe that is recovered by filtration is connected in electrolyte collecting tank;The electrolyte inlet tube is connected to electricity
It solves in liquid collecting tank.
Further, the electrolytic cell, first partition, second partition, inlet tube and pipe is recovered by filtration is plastic material.
The beneficial effects of the utility model:After such structure, anode material can be effectively prevent in start process
The impurity of middle absorption can be gradually detached from from anode material because of the immersion of electrolyte, to improve the efficiency of plating, while
It can ensure the finish on plated item surface.
Description of the drawings
Specific embodiment of the present utility model is furtherd elucidate below in conjunction with the accompanying drawings.
Fig. 1 is the structure chart of the weak electrolyte circulation and stress device of utility model;
Fig. 2 is the sectional structure chart of the weak electrolyte circulation and stress device of utility model;
Drawing reference numeral explanation:
1, electrolytic cell;2, first partition;3, second partition;4, electrolyte inlet tube;5, pipe is recovered by filtration;6, anode plate branch
Frame;7, cathode board mount;8, plug.
Specific implementation mode
In conjunction with Fig. 1 to Fig. 2, the utility model provides a kind of weak electrolyte circulation and stress device, including electrolytic cell 1,
One partition board 2, second partition 3, pole plate fixing bracket;1 body bottom of the electrolytic cell is equipped with electrolyte inlet tube 4 and pipe is recovered by filtration
5;Electrolytic cell 1 is divided into the first cavity, the second cavity and third cavity by the first partition 2 and second partition 3;First chamber
Body is surrounded by first partition 2 and electrolytic cell 1;The bottom of first cavity is equipped with electrolyte inlet tube 4;Second cavity by
Electrolytic cell 1, first partition 2 and second partition 3 surround;Third cavity is surrounded by second partition 3 and electrolytic cell 1;The third chamber
The bottom of body is equipped with and pipe 5 is recovered by filtration;The upper end that pipe 5 is recovered by filtration is equipped with plug 8;The tube wall that pipe 5 is recovered by filtration
It is equipped with filter hole;The third cavity bottom is equipped with pole plate fixing bracket;The height of the first partition 2 is less than second partition
3 height.Plug 8 can be very good the flow velocity of control electrolyte, and electrolyte is made fully to filter.
The present embodiment is preferred, and the upper board edge of the first partition 2 and second partition 3 is ripple type.Edge is ripple type
Structure can slow down the flow velocity of electrolyte, so that electrolyte and plating spare part is come into full contact with, while the work of filtering can also be played
With.
The present embodiment is preferred, it is described be recovered by filtration the filter hole of extreme lower position on pipe 5 be higher than 1 bottom 2cm of electrolytic cell.It can
Pipe 5 is recovered by filtration to prevent from effectivelying prevent the impurity of bottom to flow into, the liquid that contaminated filter recovery tube 5 recycles.
The present embodiment is preferred, and the pole plate fixing bracket includes anode board mount 6 and cathode board mount 7;The anode plate
Holder 6 includes fixed part and wave-shape board;The fixed part is connected with the side of wave-shape board;The fixed part is fixed on electrolytic cell 1
Groove body bottom;Be connected with the fixed part sides adjacent of side of the wave-shape board is fixed on the groove body bottom of electrolytic cell 1;The cathode
Board mount 7 is cube frame structure;The cube frame side is equipped with the fixed plate with hole;The cube frame
Bottom is connected with the groove body bottom of electrolytic cell 1.
The present embodiment is preferred, and the pipe 5 that is recovered by filtration is connected in electrolyte collecting tank;The electrolyte inlet tube 4 connects
It is connected in electrolyte collecting tank.
The present embodiment is preferred, the electrolytic cell 1, first partition 2, second partition 3, inlet tube and pipe 5 is recovered by filtration is
Plastic material.
Operation principle:
When booting, electrolyte is flowed into from electrolyte inlet tube 4 successively, passes through first partition 2, second partition 3 successively, then
It is flowed into third cavity from the structure of the ripple type of second partition 3, then electrolyte is made to be connect respectively with anode plate and cathode plate
It touches and is reacted.When electrolyte is shut down, electrolyte is recovered by filtration from filter recovery tube into electrolyte collection bracket groove, again will when being switched on
Electrolyte is entered by electrolyte inlet tube 4 in the first cavity.Electrolyte is recovered by filtration to electrolyte from filter recovery tube and concentrates
In slot, anode material can be prevented to be detached from from anode material in the immersion of electrolyte in the impurity of absorption.In electrolyte collection
Electrolyte obtains sufficient standing in bracket groove can also make contamination precipitation well, to ensure the cleannes of electrolyte.
Many details are elaborated in the above description in order to fully understand the utility model.But above description
Only it is the preferred embodiment of the utility model, the utility model can be much to come different from other manner described here
Implement, therefore the utility model is not limited by specific implementation disclosed above.Any those skilled in the art exist simultaneously
It does not depart under technical solutions of the utility model ambit, it is all new to this practicality using the methods and technical content of the disclosure above
Type technical solution makes many possible changes and modifications, or is revised as the equivalent embodiment of equivalent variations.It is every without departing from this
The content of utility model technical solution any is simply repaiied according to the technical essence of the utility model is made to the above embodiment
Change, equivalent variations and modification, in the range of still falling within technical solutions of the utility model protection.
Claims (6)
1. a kind of weak electrolyte circulation and stress device, it is characterised in that:Including electrolytic cell(1), first partition(2), second partition
(3), pole plate fixing bracket;The electrolytic cell(1)Body bottom is equipped with electrolyte inlet tube(4)With pipe is recovered by filtration(5);Described
One partition board(2)And second partition(3)By electrolytic cell(1)It is divided into the first cavity, the second cavity and third cavity;First cavity
By first partition(2)And electrolytic cell(1)It surrounds;The bottom of first cavity is equipped with electrolyte inlet tube(4);Second chamber
Body is by electrolytic cell(1), first partition(2)And second partition(3)It surrounds;Third cavity is by second partition(3)And electrolytic cell(1)It encloses
At;The bottom of the third cavity is equipped with and pipe is recovered by filtration(5);It is described that pipe is recovered by filtration(5)Upper end be equipped with plug(8);Institute
It states and pipe is recovered by filtration(5)Tube wall be equipped with filter hole;The third cavity bottom is equipped with pole plate fixing bracket;Described first every
Plate(2)Height be less than second partition(3)Height.
2. weak electrolyte circulation and stress device according to claim 1, it is characterised in that:The first partition(2)With
Two partition boards(3)Upper board edge be ripple type.
3. weak electrolyte circulation and stress device according to claim 1, it is characterised in that:It is described that pipe is recovered by filtration(5)On
The filter hole of extreme lower position is higher than electrolytic cell(1)Bottom 2cm.
4. weak electrolyte circulation and stress device according to claim 1, it is characterised in that:The pole plate fixing bracket includes
Anode board mount(6)With cathode board mount(7);The anode board mount(6)Including fixed part and wave-shape board;The fixed part with
The side of wave-shape board is connected;The fixed part is fixed on electrolytic cell(1)Groove body bottom;The wave-shape board is connected one with fixed part
The sides adjacent of side is fixed on electrolytic cell(1)Groove body bottom;The cathode board mount(7)For cube frame structure;It is described vertical
Cube frame facet is equipped with the fixed plate with hole;The cube frame bottom and electrolytic cell(1)Groove body bottom be connected.
5. weak electrolyte circulation and stress device according to claim 1, it is characterised in that:It is described that pipe is recovered by filtration(5)Even
It is connected in electrolyte collecting tank;The electrolyte inlet tube(4)It is connected in electrolyte collecting tank.
6. weak electrolyte circulation and stress device according to claim 1, it is characterised in that:The electrolytic cell(1), first every
Plate(2), second partition(3), inlet tube and pipe is recovered by filtration(5)It is plastic material.
Priority Applications (1)
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CN201820312960.5U CN207973821U (en) | 2018-03-07 | 2018-03-07 | A kind of weak electrolyte circulation and stress device |
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CN201820312960.5U CN207973821U (en) | 2018-03-07 | 2018-03-07 | A kind of weak electrolyte circulation and stress device |
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CN207973821U true CN207973821U (en) | 2018-10-16 |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN112323134A (en) * | 2020-10-09 | 2021-02-05 | 厦门欧士佩电镀厂有限公司 | Energy-saving surface treatment method |
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2018
- 2018-03-07 CN CN201820312960.5U patent/CN207973821U/en active Active
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN112323134A (en) * | 2020-10-09 | 2021-02-05 | 厦门欧士佩电镀厂有限公司 | Energy-saving surface treatment method |
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