CN207713840U - A kind of molding micro-mould processing unit (plant) of jet flow electroforming - Google Patents
A kind of molding micro-mould processing unit (plant) of jet flow electroforming Download PDFInfo
- Publication number
- CN207713840U CN207713840U CN201721794533.7U CN201721794533U CN207713840U CN 207713840 U CN207713840 U CN 207713840U CN 201721794533 U CN201721794533 U CN 201721794533U CN 207713840 U CN207713840 U CN 207713840U
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- China
- Prior art keywords
- electroforming
- workpiece
- nozzle
- guide rail
- jet flow
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Abstract
The utility model provides a kind of molding micro-mould processing unit (plant) of jet flow electroforming, including:Pedestal, vertical straight line guide rail, working bin, workpiece, workpiece pedestal, electrolyte, inlet, compression pump, flow-monitoring device, infusion tube, motion control case, the pulse power, electroforming nozzle, horizontal linear guide rail, metallic nozzle, conveying device, first servo motor, link block, second servo motor, feed inlet and fuse equipment, the cathode of the pulse power connects workpiece, anode connects electroforming nozzle, the electrolyte is set in workpiece storehouse, workpiece storehouse is mounted on the base, horizontal linear guide rail and vertical straight line guide rail are mutually connected vertically by link block, the micro-mould of present apparatus processing has stronger compactness and intensity, service life is longer.
Description
Technical field
The utility model is related to micro-mould manufacture fields, and in particular to a kind of molding micro-mould processing dress of jet flow electroforming
It sets.
Background technology
It using metal ion cathode is technology that deposition principle produces product that electroforming, which is a kind of, has high manufacture
There is long processing times for the current galvanoplasticies of precision, and uniformity is poor, and the shortcomings of defect easily occurs in cast layer, serious to restrict
The application and development of galvanoplastics, based on this basis, people invent jet flow electroforming method, but jet flow electroforming can only be
It is carried out on metal covering, a limitation is added to the processing in this field.
Utility model content
In view of the deficiencies of the prior art, the utility model provides a kind of molding micro-mould processing unit (plant) of jet flow electroforming,
The present apparatus can carry out electroforming in nonmetallic or semiconductor surface, prepare the micro-mould with high compactness and high intensity.
To achieve the above object, the utility model adopts the following technical solution:
A kind of molding micro-mould processing unit (plant) of jet flow electroforming, including:Pedestal;The workpiece storehouse of installation on the base,
It is provided with electrolyte in the workpiece storehouse;It is welded on the vertical straight line guide rail on pedestal and on the left of workpiece storehouse, it is described vertical straight
First servo motor is installed on line guide rail top, link block is provided on vertical straight line guide rail, is connected by the link block
There are horizontal linear guide rail, the horizontal linear guide rail to be provided with the second servo motor on top;Workpiece in workpiece storehouse
Pedestal is equipped with workpiece on the workpiece pedestal;The metal spraying device being set on the left of vertical straight line guide rail, the metal spraying device packet
Metallic nozzle, conveying mechanism, fuse mechanism and feed inlet are included, the metallic nozzle is set on horizontal linear guide rail, described defeated
Mechanism one end is sent to connect metallic nozzle, the other end connects fuse mechanism, feed inlet is equipped in the fuse mechanism;It is set to work
Electroforming mechanism on the right side of part storehouse, the electroforming mechanism include electroforming nozzle, infusion tube, flux monitoring system, compression pump and into
Liquid mouth, the electroforming nozzle are mounted on horizontal linear guide rail and on the right side of metallic nozzle, infusion tube one end connection electricity
Nozzle is cast, the other end connects compression pump, and the compression pump connects inlet, and flux monitoring system is set to infusion tube and in electricity
It casts between nozzle and compression pump;Motion control case, the motion control case connection first servo motor and the second servo motor;Arteries and veins
Power supply is rushed, the pulse power cathode connects workpiece, and anode connects electroforming nozzle.
In the above-mentioned technical solutions, workpiece is positioned on workpiece pedestal, metal material input feed inlet is entered into fuse
Mechanism is melted, and the metal stock solution after thawing transports metallic nozzle through conveying mechanism, and first is controlled by motion control case
Servo motor and the second servo motor carry out mobile control to metallic nozzle, and metallic nozzle sprays the metal stock solution in conveying mechanism
It to workpiece, metallizes to workpiece surface, in this course, metallic nozzle is on horizontal linear guide rail according to regulation path
It is mobile, achieve the effect that workpiece surface homogeneous metal.After workpiece metalization processing, stop the running of metallic nozzle and movement
To the horizontal linear guide rail leftmost side.The cathode of the pulse power connects workpiece, and anode connects electroforming nozzle, the electrolyte in workpiece storehouse
In being pumped by the passive suction pressure of inlet, then monitors electrolyte via flux monitoring system and sprayed from infusion tube to electroforming nozzle
The size of amount, motion control case control first servo motor and the second servo motor to control the movement of electroforming nozzle, in electroforming
During nozzle moves, infusion tube follows electroforming nozzle to move together, ensures that electroforming solution is steadily sprayed by electroforming nozzle,
Electroforming nozzle carries out jet flow electroforming by the path of planning on horizontal linear guide rail to workpiece, during this jet flow electroforming
By the way of strong convection, and electroforming nozzle is combined to move, stirring action to a certain extent is will produce, to make electroforming solution exist
It is easier to update in narrow space, the more stable progress of electrotyping forming process, and the device is without using specific standard
Nozzle, that is to say, that the size of nozzle is on the preparation precision intensity of micro-mould without influence.
Preferably, the first servo motor connects link block, and first servo motor is controlled level the linear guide perpendicular
Moving up and down in straight the linear guide, can make the moving process more steady and smooth by link block.
Preferably, second servo motor is separately connected metallic nozzle and electroforming nozzle, the second Serve Motor Control gold
Belong to the movement of nozzle and electroforming nozzle on horizontal linear guide rail, makes metallic nozzle and electroforming nozzle can be by the path work of planning
Make.
Preferably, the workpiece pedestal is " T " font structure, which makes workpiece avoid contact to electrolyte, increase simultaneously
Electrolyte storage space is added.
Preferably, the feed inlet is funnel type structure, and the structure of funnel type can be more convenient the addition of raw metal.
Preferably, there is the pulse power impulse waveform of negative sense potential, the impulse waveform of negative sense potential can carry out
While electroforming, micro removal is carried out to the structure being electroformed, intensity higher, compactness are more preferable, use to obtain
The micro-mould of longer life expectancy.
A kind of advantageous effect of the molding micro-mould processing unit (plant) of jet flow electroforming provided by the utility model is:It can be non-
Metal or semiconductor surface carry out electroforming, prepare more preferable, intensity higher and micro- mould that the service life is longer with compactness
Tool, and prepare micro-mould and do not limited by nozzle size specification.
Description of the drawings
Fig. 1 is the overall structure diagram of the utility model.
In figure:1, pedestal;2, vertical straight line guide rail;3, workpiece storehouse;4, workpiece;5, workpiece pedestal;6, electrolyte;7, feed liquor
Mouthful;8, compression pump;9, flux monitoring system;10, infusion tube;11, motion control case;12, the pulse power;13, electroforming nozzle;
14, horizontal linear guide rail;15, metallic nozzle;16, conveying mechanism;17, first servo motor;18, link block;19, the second servo
Motor;20, feed inlet;21, fuse mechanism.
The following will be combined with the drawings in the embodiments of the present invention, carries out the technical scheme in the embodiment of the utility model
Clear, complete description, it is clear that the described embodiments are only a part of the embodiments of the utility model, rather than whole
Embodiment.The every other embodiment that ordinary people in the field is obtained without making creative work, belongs to
The scope of protection of the utility model.
Embodiment:A kind of molding micro-mould processing unit (plant) of jet flow electroforming.
Shown in referring to Fig.1, a kind of molding micro-mould processing unit (plant) of jet flow electroforming, including:Pedestal;Mounted on the pedestal
Workpiece storehouse 3 on 1 is provided with electrolyte 6 in the workpiece storehouse 3;It is welded on pedestal 1 and in the vertical straight of 3 left side of workpiece storehouse
Line guide rail 2 is equipped with first servo motor 17 on 2 top of vertical straight line guide rail, connection is provided on vertical straight line guide rail 2
Block 18 is connected with horizontal linear guide rail 14 by the link block 18, second is provided on 14 top of horizontal linear guide rail
Servo motor 19;Workpiece pedestal 5 in workpiece storehouse 3 is equipped with workpiece 4 on the workpiece pedestal 5;It is set to vertical straight
The metal spraying device in 2 left side of line guide rail, the metal spraying device include metallic nozzle 15, conveying mechanism 16, fuse mechanism 21 and charging
Mouth 20, the metallic nozzle 15 is set on horizontal linear guide rail 14, and 16 one end of the conveying mechanism connects metallic nozzle 15, separately
One end connects fuse mechanism 21, and feed inlet 20 is equipped in the fuse mechanism 21;It is set to the electrocasting machine on 3 right side of workpiece storehouse
Structure, the electroforming mechanism include electroforming nozzle 13, infusion tube 10, flux monitoring system 9, compression pump 8 and inlet 7, described
Electroforming nozzle 13 is mounted on horizontal linear guide rail 14 and on 15 right side of metallic nozzle, 10 one end of the infusion tube connects electroforming
Nozzle 13, the other end connect compression pump 8, and the compression pump 8 connects inlet 7, and flux monitoring system 9 is set to infusion tube 10
And between electroforming nozzle 13 and compression pump 8;Motion control case 11, the motion control case 11 connect 17 He of first servo motor
Second servo motor 19;The pulse power 12,12 cathode of the pulse power connect workpiece 4, and anode connects electroforming nozzle 13.
In the above-mentioned technical solutions, workpiece 4 is positioned on workpiece pedestal 5, metal material input feed inlet 20 is entered
Fuse mechanism 21 is melted, and the metal stock solution after thawing transports metallic nozzle 15 through conveying mechanism 16, passes through motion control
Case 11 controls first servo motor 17 and the second servo motor 19 and carries out mobile control to metallic nozzle 15, and metallic nozzle 15 will be defeated
It send the metal stock solution in mechanism 16 to spray to workpiece 4, metallizes to 4 surface of workpiece, in this course, metallic nozzle 15 exists
According to the movement of regulation path on horizontal linear guide rail 14, achieve the effect that 4 surface homogeneous metal of workpiece.It metallizes to workpiece 4
After processing, stops the running of metallic nozzle 15 and be moved to 14 leftmost side of horizontal linear guide rail.The cathode of the pulse power 12 connects
Workpiece 4, anode connect electroforming nozzle 13, during the electrolyte 6 in workpiece storehouse 3 pumps 8 by 7 passive suction pressure of inlet, then via
Flux monitoring system 9 monitors electrolyte 6 and is controlled from infusion tube 10 to the size of 13 spray volume of electroforming nozzle, motion control case 11
First servo motor 17 and the second servo motor 19 control the movement of electroforming nozzle 13, in the process that electroforming nozzle 13 moves
In, infusion tube 10 follows electroforming nozzle 13 to move together, ensures that electroforming solution is steadily sprayed by electroforming nozzle 13, electroforming nozzle
13 carry out jet flow electroforming by the path of planning on horizontal linear guide rail 14 to workpiece 4, are adopted during this jet flow electroforming
With the mode of strong convection, and electroforming nozzle 13 is combined to move, stirring action to a certain extent is will produce, to make electroforming solution exist
It is easier to update in narrow space, the more stable progress of electrotyping forming process, and the device is without using specific standard
Nozzle, that is to say, that the size of nozzle is on the preparation precision intensity of micro-mould without influence.
Shown in referring to Fig.1, the first servo motor 17 connects link block 18, and first servo motor 17 is that controlled level is straight
The moving up and down on vertical straight line guide rail 2 of line guide rail 14 can make the moving process more steady and smooth by link block 18.
Shown in referring to Fig.1, second servo motor 19 is separately connected metallic nozzle 15 and electroforming nozzle 13, the second servo
Motor 19 controls the movement of metallic nozzle 15 and electroforming nozzle 13 on horizontal linear guide rail 14, makes metallic nozzle 15 and electroforming
Nozzle 13 can work by the path of planning.
Shown in referring to Fig.1, the workpiece pedestal 5 is " T " font structure, which makes workpiece 4 avoid contact to electrolyte
6, while increasing 6 storage space of electrolyte.
Shown in referring to Fig.1, the feed inlet 20 is funnel type structure, and the structure of funnel type can be more convenient adding for raw metal
Add.
Shown in referring to Fig.1, the pulse power 12 has the impulse waveform of negative sense potential, and the impulse waveform of negative sense potential can
While carrying out electroforming, micro removal is carried out to the structure being electroformed, to obtain intensity higher, compactness more
The micro-mould good, the service life is longer.
The above be the utility model preferred embodiment, but the utility model should not be limited to the embodiment and
Attached drawing disclosure of that is all fallen so every do not depart from the lower equivalent or modification completed of spirit disclosed in the utility model
Enter the range of the utility model protection.
Claims (6)
1. a kind of molding micro-mould processing unit (plant) of jet flow electroforming, which is characterized in that including:
Pedestal;
Workpiece storehouse on the base is installed, electrolyte is provided in the workpiece storehouse;
It is welded on the vertical straight line guide rail on pedestal and on the left of workpiece storehouse, the vertical straight line guide rail is equipped with first on top
Servo motor is provided with link block on vertical straight line guide rail, horizontal linear guide rail, the level is connected with by the link block
The second servo motor is provided on the linear guide top;
Workpiece pedestal in workpiece storehouse is equipped with workpiece on the workpiece pedestal;
The metal spraying device being set on the left of vertical straight line guide rail, the metal spraying device include metallic nozzle, conveying mechanism, fuse machine
Structure and feed inlet, the metallic nozzle are set on horizontal linear guide rail, and described conveying mechanism one end connects metallic nozzle, another
End connects fuse mechanism, and feed inlet is equipped in the fuse mechanism;
The electroforming mechanism being set on the right side of workpiece storehouse, the electroforming mechanism include electroforming nozzle, infusion tube, traffic monitoring system
System, compression pump and inlet, the electroforming nozzle are mounted on horizontal linear guide rail and on the right side of metallic nozzle, and the infusion is soft
Pipe one end connects electroforming nozzle, and the other end connects compression pump, and the compression pump connects inlet, and flux monitoring system is set to defeated
Liquid hose and between electroforming nozzle and compression pump;
Motion control case, the motion control case connection first servo motor and the second servo motor;
The pulse power, the pulse power cathode connect workpiece, and anode connects electroforming nozzle.
2. the molding micro-mould processing unit (plant) of jet flow electroforming as described in claim 1, it is characterised in that:The first servo electricity
Machine connects link block.
3. the molding micro-mould processing unit (plant) of jet flow electroforming as described in claim 1, it is characterised in that:The second servo electricity
Machine is separately connected metallic nozzle and electroforming nozzle.
4. the molding micro-mould processing unit (plant) of jet flow electroforming as described in claim 1, it is characterised in that:The workpiece pedestal is
" T " font structure.
5. the molding micro-mould processing unit (plant) of jet flow electroforming as described in claim 1, it is characterised in that:The feed inlet is leakage
Bucket type structure.
6. the molding micro-mould processing unit (plant) of jet flow electroforming as described in claim 1, it is characterised in that:The pulse power tool
There is the impulse waveform of negative sense potential.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201721794533.7U CN207713840U (en) | 2017-12-20 | 2017-12-20 | A kind of molding micro-mould processing unit (plant) of jet flow electroforming |
Applications Claiming Priority (1)
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CN201721794533.7U CN207713840U (en) | 2017-12-20 | 2017-12-20 | A kind of molding micro-mould processing unit (plant) of jet flow electroforming |
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Publication Number | Publication Date |
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CN207713840U true CN207713840U (en) | 2018-08-10 |
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CN201721794533.7U Expired - Fee Related CN207713840U (en) | 2017-12-20 | 2017-12-20 | A kind of molding micro-mould processing unit (plant) of jet flow electroforming |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN114622252A (en) * | 2022-04-06 | 2022-06-14 | 河南理工大学 | High-precision jet electroforming nozzle and forming method thereof |
-
2017
- 2017-12-20 CN CN201721794533.7U patent/CN207713840U/en not_active Expired - Fee Related
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN114622252A (en) * | 2022-04-06 | 2022-06-14 | 河南理工大学 | High-precision jet electroforming nozzle and forming method thereof |
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CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20180810 Termination date: 20201220 |
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CF01 | Termination of patent right due to non-payment of annual fee |