CN205380331U - Fluid pressure type micro -processing electrolytic machining water tank height -regulating device - Google Patents
Fluid pressure type micro -processing electrolytic machining water tank height -regulating device Download PDFInfo
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- CN205380331U CN205380331U CN201620233508.0U CN201620233508U CN205380331U CN 205380331 U CN205380331 U CN 205380331U CN 201620233508 U CN201620233508 U CN 201620233508U CN 205380331 U CN205380331 U CN 205380331U
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- water tank
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Abstract
The utility model relates to a micro -processing electrochemical machining technical field especially relates to a fluid pressure type micro -processing electrolytic machining water tank height -regulating device. By handle, spring, hydraulic means, water pump, water tank, outlet pipe, absorb water tub, electrolysis trough, workstation constitute. Wherein, pass through hinged joint between handle and the hydraulic means, spring one end is installed on the handle, and the other end is installed on hydraulic means, the water tank is placed above the backup pad on hydraulic means, the water pump is put in the water tank bottom, tub one end that absorbs water is connected with the water pump, the other end and electrolytic bath connection, outlet pipe one end is connected with the delivery port of electrolysis trough, and the other end is connected with the water tank, the electrolysis trough is laid on the workstation. The utility model discloses simple structure, regulation convenience can change the difference in height between electrolysis trough and the water tank in a flexible way.
Description
Technical field
This utility model relates to micro forming technical field of electrolysis processing, particularly relates to a kind of fluid pressure type micro forming Electrolyzed Processing water tank height-regulating device.
Background technology
Micro forming technology can reduce the coefficient of friction on contact surface, and can improve the bearing capacity of kinematic pair, thus improving the tribological property of friction pair, but the microstructure size of micro forming is little, and the processing of micro forming belongs to micron-sized high accuracy microfabrication.Manufacturing process conventional at present has Laser Processing, Electrolyzed Processing, ultrasonic vibrating machining etc..Wherein the Electrolyzed Processing of micro forming is to adopt electrochemical principle, with cutter be negative electrode, workpiece carry out electrochemical corrosion processing for anode, it has the advantage such as efficiency height, good, the nothing processing heat affecting of precision, in addition Electrolyzed Processing is to cutter not damaged, hardness not requirement to processing metal material, is particularly suitable for the metal material that workhardness is big.
In practical operation, the electrolyte volume of test configurations configures as required, process of the test is sometimes also wanted dilute electrolyte, thus result in high water tank height not fix, and the general volume of electrolysis bath of micro forming Electrolyzed Processing is less, and the general power invariability of water pump adopted, its lift regulates inconvenience, the liquid level that can not adapt to the electrolyte in water tank very well changes, and lift too small then electrolyte circulation is smooth, and lift is too high, and electrolyte easily overflows electrolysis bath.Owing to electrolyte has corrosivity, experiment porch and equipment being caused severe contamination, even damaged, brings difficulty to test, micro forming Electrolyzed Processing quality also can be produced to have a strong impact on by the instability of flow of electrolyte circulation in addition.
For solving the problems referred to above, the utility model proposes a kind of fluid pressure type micro forming Electrolyzed Processing water tank height-regulating device.By changing the difference in height between water tank and electrolysis bath, to reach to change the purpose of pump capacity.That is, time too small at electrolyte circular flow or not smooth, by improving tank height, to reduce the difference in height between water tank and electrolysis bath, thus improving the flow of water pump;When electrolyte circular flow is excessive, by reducing tank height, to increase the difference in height between water tank and electrolysis bath, thus reducing the flow of water pump.This utility model can make water pump adapt to different liquid level change, and the moment keeps the constant of electrolyte circular flow.
This utility model has simple in construction, easy to adjust, difference in height between flexibly changing electrolysis bath and water tank, efficiently solving in micro forming electrolyte circulation system, not adapting to the technical barrier of high water tank change because pump power is constant, thus ensureing that electrolyte follows the constant of pendular ring flow.
Utility model content
Technical problem to be solved in the utility model is in that to solve in existing micro forming electrolyte circulation system, the technical barrier of high water tank change is not adapted to because pump power is constant, a kind of difference in height that can change between electrolysis bath and water tank is provided, water pump can be made to can adapt to different liquid level change, and the moment keeps the fluid pressure type micro forming Electrolyzed Processing water tank height-regulating device that electrolyte circular flow is constant.
Technical problem to be solved in the utility model realizes by the following technical solutions.
Fluid pressure type micro forming Electrolyzed Processing water tank height-regulating device is made up of handle, spring, hydraulic means, water pump, water tank, outlet pipe, suction hose, electrolysis bath, workbench.Wherein, it is connected through the hinge between handle and hydraulic means;Spring one end is arranged on handle, and the other end is arranged on hydraulic means;Water tank is placed on above the gripper shoe on hydraulic means;Water pump is placed on water tank bottom;Suction hose one end is connected with water pump, and the other end is connected with electrolysis bath;Outlet pipe one end is connected with the outlet of electrolysis bath, and the other end is connected with water tank;Electrolysis bath is laid on the table.
Described hydraulic means is made up of small oil tank, oil sucting one-way valve, fuel sucking pipe, pipeline, oil extraction check valve, fuel tank, flowline, stop valve switch, stop valve, large tank, gripper shoe, piston rod A, piston rod B, and oil sucting one-way valve is arranged on fuel sucking pipe;Small oil tank and fuel tank are connected by fuel sucking pipe;Small oil tank and large tank are connected by pipeline;Oil extraction check valve is arranged on pipeline;Stop valve is arranged on flowline;Large tank and fuel tank are connected by flowline;Stop valve switch is arranged on stop valve;Gripper shoe is fixing with piston rod A to be connected;Piston rod B end is fixing with handle to be connected.
The beneficial effects of the utility model are: simple in construction, easy to adjust, the difference in height between flexibly changing electrolysis bath and water tank, so that water pump can adapt to different liquid level change, the moment keeps the constant of electrolyte circular flow, it is ensured that Electrolyzed Processing quality.
Accompanying drawing explanation
Fig. 1 is structural representation of the present utility model;
In figure: 1. handle;2. spring;3. hydraulic means;4. small oil tank;5. oil sucting one-way valve;6. fuel sucking pipe;7. pipeline;8. oil extraction check valve;9. fuel tank;10. flowline;11. stop valve switchs;12. stop valve;13. large tank;14. gripper shoe;15. water pump;16. water tank;17. outlet pipe;18 suction hoses;19 electrolysis baths;20. workbench;21. electrolyte;22. piston rod A, 23. piston rod B.
Detailed description of the invention
As it is shown in figure 1, fluid pressure type micro forming Electrolyzed Processing water tank height-regulating device is made up of handle 1, spring 2, hydraulic means 3, water pump 15, water tank 16, outlet pipe 17, suction hose 18, electrolysis bath 19, workbench 20.Wherein, it is connected through the hinge between handle 1 and hydraulic means 3;Spring 2 one end is arranged on handle 1, and the other end is arranged on hydraulic means 3;Water tank 16 is placed on above the gripper shoe 14 on hydraulic means 3;Water pump 15 is placed on bottom water tank 16, and the effect of water pump 15 is to be extracted in electrolysis bath 19 by electrolyte 21;Suction hose 18 one end is connected with water pump 15, and one end is connected with electrolysis bath 19;Outlet pipe 17 one end is connected with the outlet of electrolysis bath 19, and one end is connected with water tank 16;Electrolysis bath 19 is placed on workbench 20;Hydraulic means 3 is installed on below water tank 16.
Described hydraulic means 3 is made up of small oil tank 4, oil sucting one-way valve 5, fuel sucking pipe 6, pipeline 7, oil extraction check valve 8, fuel tank 9, flowline 10, stop valve switch 11, stop valve 12, large tank 13, gripper shoe 14, and oil sucting one-way valve 5 is arranged on fuel sucking pipe 6;Small oil tank 4 is connected by fuel sucking pipe 6 with fuel tank 9;Small oil tank 4 is connected by pipeline 7 with large tank 13;Oil extraction check valve 8 is fixed on pipeline 7;Stop valve 12 is arranged on flowline 10;Large tank 13 is connected by flowline 10 with fuel tank 9;Stop valve switch 11 is arranged on stop valve 12;Gripper shoe 14 is connected with large tank 13;Gripper shoe 14 is fixing with piston rod A22 to be connected;Piston rod B23 end is fixing with handle (1) to be connected.
Its operation principle is as follows:
When electrolyte 21 circular flow is too small or smooth time, it is necessary to reduce the difference in height between water tank 16 and electrolysis bath 19, improve the flow of water pump 15.Now pressing handle 1, handle 1 drives piston rod B23 to move down, small oil tank 4 volume reduces, oil sucting one-way valve 5 in fuel sucking pipe 6 is closed, oil extraction check valve 8 in pipeline 7 is opened, the cavity of resorption of the fluid of small oil tank 47 input large tanks 13 by the road, and piston rod A22 moves up, gripper shoe 14 is forced to move up, jack-up water tank 16.Then release handle 1, handle 1 sets back under the effect of spring 2, oil extraction check valve 8 in pipeline 7 is closed, small oil tank 4 internal volume increases, and forms parital vacuum, and at this moment the oil sucting one-way valve 5 in fuel sucking pipe 6 is opened, by fuel sucking pipe 6 oil suction from fuel tank 9, due to the effect of oil extraction check valve 8 in pipeline 7, fluid is made not flow backwards, thus ensure that water tank 16 will not fall voluntarily.Repeating this action, water tank 16 height will being improved, to reduce the difference in height between water tank 16 and electrolysis bath 19, thus improving the flow of water pump 15.
When electrolyte 21 circular flow is excessive, it is necessary to increase the difference in height between water tank 16 and electrolysis bath 19, reduce the flow of water pump 15.Opening stop valve 12 to switch, the fluid of large tank 13 flows back to fuel tank 9 by flowline 10, stop valve 12, and water tank 16 will move down, and will reduce water tank 16 height, when water pump 15 flow is adjusted to suitable size, closes stop valve 12.This process increases the difference in height between water tank 16 and electrolysis bath 19, thus reducing the flow of water pump 15.
Claims (2)
1. fluid pressure type micro forming Electrolyzed Processing water tank height-regulating device, it is made up of handle (1), spring (2), hydraulic means (3), water pump (15), water tank (16), outlet pipe (17), suction hose (18), electrolysis bath (19), workbench (20), it is characterised in that: it is connected through the hinge between handle (1) and hydraulic means (3);Spring (2) one end is arranged on handle (1), and the other end is arranged on hydraulic means (3);Water tank (16) is placed on the gripper shoe (14) on hydraulic means (3) above;Water pump (15) is placed on water tank (16) bottom;Suction hose (18) one end is connected with water pump (15), and the other end is connected with electrolysis bath (19);Outlet pipe (17) one end is connected with the outlet of electrolysis bath (19), and the other end is connected with water tank (16);Electrolysis bath (19) is placed on workbench (20).
2. described fluid pressure type micro forming Electrolyzed Processing water tank height-regulating device according to claim 1, it is characterized in that: described hydraulic means (3) is made up of small oil tank (4), oil sucting one-way valve (5), fuel sucking pipe (6), pipeline (7), oil extraction check valve (8), fuel tank (9), flowline (10), stop valve switch (11), stop valve (12), large tank (13), gripper shoe (14), piston rod A (22), piston rod B (23), and oil sucting one-way valve (5) is arranged on fuel sucking pipe (6);Small oil tank (4) is connected by fuel sucking pipe (6) with fuel tank (9);Small oil tank (4) is connected by pipeline (7) with large tank (13);Oil extraction check valve (8) is arranged on pipeline (7);Stop valve (12) is arranged on flowline (10);Large tank (13) is connected by flowline (10) with fuel tank (9);Stop valve switch (11) is arranged on stop valve (12);Gripper shoe (14) is fixing with piston rod A (22) to be connected;Piston rod B (23) end is fixing with handle (1) to be connected.
Priority Applications (1)
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CN201620233508.0U CN205380331U (en) | 2016-03-22 | 2016-03-22 | Fluid pressure type micro -processing electrolytic machining water tank height -regulating device |
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CN201620233508.0U CN205380331U (en) | 2016-03-22 | 2016-03-22 | Fluid pressure type micro -processing electrolytic machining water tank height -regulating device |
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CN201620233508.0U Expired - Fee Related CN205380331U (en) | 2016-03-22 | 2016-03-22 | Fluid pressure type micro -processing electrolytic machining water tank height -regulating device |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN108488117A (en) * | 2018-05-17 | 2018-09-04 | 西安超音航空科技有限公司 | A kind of design method of novel manual fluid pressure generator |
-
2016
- 2016-03-22 CN CN201620233508.0U patent/CN205380331U/en not_active Expired - Fee Related
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN108488117A (en) * | 2018-05-17 | 2018-09-04 | 西安超音航空科技有限公司 | A kind of design method of novel manual fluid pressure generator |
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Legal Events
Date | Code | Title | Description |
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20160713 Termination date: 20170322 |
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CF01 | Termination of patent right due to non-payment of annual fee |