CN211038977U - Carving mills profit autosegregation device of dry vacuum pump for machine - Google Patents
Carving mills profit autosegregation device of dry vacuum pump for machine Download PDFInfo
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- CN211038977U CN211038977U CN201922171627.4U CN201922171627U CN211038977U CN 211038977 U CN211038977 U CN 211038977U CN 201922171627 U CN201922171627 U CN 201922171627U CN 211038977 U CN211038977 U CN 211038977U
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Abstract
The utility model discloses an automatic oil-water separation device of a dry vacuum pump for an engraving and milling machine, which comprises a box body, a main tank, an auxiliary tank, the dry vacuum pump and a control system, wherein the control system consists of a relay, a valve, a leakage protector and a mainboard, the main tank, the dry vacuum pump and the auxiliary tank are sequentially installed in the box body from top to bottom, the main tank is provided with a main tank air inlet I, a main tank air inlet II, a main tank air outlet, a buoy mounting hole I and a main tank water outlet, the auxiliary tank is provided with an auxiliary tank air outlet, an auxiliary tank water inlet, an auxiliary tank water outlet and a buoy mounting hole II, oil-water-steam mixture circulates back and forth between the main tank and the auxiliary tank, oil-water and steam are separated through circulation, so that the gas entering the inside of the dry vacuum pump does not contain substances such as oil and water, the dry vacuum pump is not easy, the normal clamping and processing of the workpiece of the engraving and milling machine are ensured, and the automation of drainage and the recycling of cutting fluid are realized.
Description
Technical Field
The utility model relates to an carving mills profit autosegregation device of dry vacuum pump for machine.
Background
In order to normally process a thin non-magnetic material, a vacuum adsorption type table board is generally adopted by the existing engraving and milling machine, and a product is adsorbed on the table board by the vacuum negative pressure principle to be subjected to chip cutting processing; in order to ensure the adsorption effect, the dry vacuum pump is usually directly connected with the adsorption table board; however, when the engraving and milling machine is used for machining a product, cooling liquid, cooling water and the like are usually required to be added, and the temperature of the cutter is reduced through the cooling water; when a workpiece is machined, a machining process of cutting, blanking and cutting through is adopted, oil and water on the workpiece can be pumped away together by negative pressure, metal scraps can be generated during machining, the metal scraps move along with water flow and are directly pumped into a dry vacuum pump by negative pressure along a pipeline, and excessive oil-water mixed substances enter the dry vacuum pump and then easily cause short circuit burning damage of a dry vacuum pump coil, equipment failure is caused, and normal production is influenced; therefore, oil, water and vapor and metal dust pumped away by the negative pressure system need to be intercepted and filtered, so that the mixture of oil, water and the like is prevented from directly entering the inside of the dry vacuum pump, the dry vacuum pump is prevented from being damaged, the service life of the dry vacuum pump is prolonged, and the smooth production is ensured.
SUMMERY OF THE UTILITY MODEL
The to-be-solved technical problem of the utility model is to provide a convenient to use, easy operation can carry out automatic drainage to the lathe in adsorbing processing automatically, keeps vacuum, prevents that the work piece from adsorbing the not firm condemned condition that appears, avoids materials such as water, metal dust to get into dry vacuum pump's inside, prevents that dry vacuum pump from damaging, realizes the cyclic utilization of cooling water simultaneously, has practicality and the wide range of use's an engraving and milling machine dry vacuum pump's profit autosegregation device.
In order to solve the above problem, the utility model adopts the following technical scheme:
an oil-water separation device for a carving and milling machine comprises a box body, a main tank, an auxiliary tank, a dry vacuum pump, a control box, a valve installation box and a control system, wherein the control box and the valve installation box are respectively installed at two ends of the box body, the main tank, the dry vacuum pump and the auxiliary tank are sequentially installed in the box body from top to bottom, the main tank is provided with a main tank air inlet I, a main tank air inlet II, a main tank air outlet, a buoy installation hole I and a main tank water outlet, the auxiliary tank is provided with an auxiliary tank air outlet, an auxiliary tank water inlet, an auxiliary tank water outlet and a buoy installation hole II, one end of the main tank air inlet I is connected with a filter core I and a filter core II, the filter core I is connected with the filter core II, the filter core II is connected with the main tank air inlet I, the main tank water outlet is connected with the auxiliary tank water inlet, the, the air outlet of the main tank is connected with the air inlet of the vacuum pump.
The utility model discloses an installation through filter core one and filter core two can filter the particulate matter in the oil water vapour, through making a round trip to circulate with the mixed material of profit vapour in main jar and auxiliary tank for profit, vapour produce the separation, make the gas that gets into in the dry vacuum pump not contain material such as profit, make the dry vacuum pump not fragile when using, improved its life, have practicality and the wide range of use's an oil water separator for carving mills the machine.
The safety during the use is improved, reduces the emergence of accident, guarantees going on smoothly of machine tooling, has practicality and the universality of using.
Preferably, the first buoy mounting hole and the second buoy mounting hole are respectively provided with a first buoy and a second buoy.
This setting is convenient for detect the water level in main jar and the vice jar through cursory, guarantees the timely drainage of vice jar, and water is reported to the police when overflowing to the main jar.
Preferably, the lower end of the auxiliary tank water outlet is connected with a one-way valve.
This setting guarantees that the auxiliary tank has the drainage function, can form the state of pressurize, prevents that suction unbalance from appearing in the absorption formula mesa, influences product processing.
Preferably, the first buoy is connected with an audible and visual alarm, and the second buoy is connected with the one-way valve.
This setting can prevent that drainage system from damaging the back, and water overflows to the main tank in, realizes alarming function, is convenient for in time make troubleshooting.
Preferably, an auxiliary tank air inlet is formed in the auxiliary tank and connected with an external air supply device.
This setting is convenient for to the leading-in malleation air of the inside of vice jar, realizes the quick drainage of vice jar.
Preferably, an electromagnetic valve is arranged between the air outlet of the auxiliary tank and the air inlet of the main tank II.
The arrangement facilitates the control of the air pressure difference between the main tank and the auxiliary tank through the electromagnetic valve.
The utility model has the advantages that: convenient to use, easy operation can be automatic carries out the drainage to carving mills the machine, can prevent that carving from milling the inside that material such as profit got into dry vacuum pump when the machine drainage, prevents that dry vacuum pump from damaging, can quick drainage, realizes the cyclic utilization of cooling water simultaneously, has practicality and the universality of use.
Drawings
In order to illustrate the embodiments of the present invention or the technical solutions in the prior art more clearly, the drawings used in the description of the embodiments or the prior art will be briefly described below, but the scope of the present invention is not limited thereto.
Fig. 1 is a schematic structural view of the present invention;
FIG. 2 is a schematic view of the internal structure of the present invention;
fig. 3 is a schematic side view of the present invention;
FIG. 4 is a schematic structural view of the engraving and milling machine of the present invention;
the automatic water supply system comprises a box body 1, a main tank 2, an auxiliary tank 3, a dry vacuum pump 4, a control box 5, a valve installation box 6, a filter element I7, a filter element II 8, a pressure regulating valve 9, a main tank air inlet I10, a main tank air inlet II 11, a main tank air inlet II 12, a main tank air outlet 13, a buoy installation hole I14, a main tank water outlet 15, a vacuum pump air inlet 16, an auxiliary tank air outlet 17, an auxiliary tank water inlet 18, an auxiliary tank air inlet 19, an auxiliary tank water outlet 20, a buoy installation hole II 21 and a carving and milling machine.
Detailed Description
Referring to fig. 1 to 4, the automatic oil-water separation device of the dry vacuum pump for the engraving and milling machine comprises a box body 1, a main tank 2, an auxiliary tank 3, a dry vacuum pump 4, a control box 5, a valve installation box 6 and a control system, wherein the control box 5 and the valve installation box 6 are respectively installed at two ends of the box body 1, the main tank 2, the dry vacuum pump 4 and the auxiliary tank 5 are sequentially installed in the box body 1 from top to bottom, the main tank 2 is provided with a main tank air inlet I10, a main tank air inlet II 11, a main tank air outlet 12, a float installation hole I13 and a main tank water outlet 14, the auxiliary tank 3 is provided with an auxiliary tank air outlet 16, an auxiliary tank water inlet 17, an auxiliary tank water outlet 19 and a float installation hole II 20, the lower end of the auxiliary tank water outlet 19 is connected with a one-way valve, one end of the main tank air inlet I10 is connected with a filter core I7 and a filter, the second filter element 8 is connected with the first main tank air inlet 10, the dry vacuum pump 4 is provided with a pressure regulating valve 9, the first filter element 7 and the second filter element 8 are arranged inside the valve installation box, the main tank water outlet 14 is connected with the auxiliary tank water inlet 17, the auxiliary tank air outlet 16 is connected with the second main tank air inlet 11, the dry vacuum pump 4 is provided with a vacuum pump air inlet 15, and the main tank air outlet 12 is connected with the vacuum pump air inlet 15.
The first buoy mounting hole 13 and the second buoy mounting hole 20 are respectively provided with a first buoy and a second buoy, the first buoy is connected with an audible and visual alarm, and the second buoy is connected with a one-way valve.
The sub-tank 4 is provided with a sub-tank air inlet 18, and the sub-tank air inlet 18 is connected to an external air supply device (not shown).
And an electromagnetic valve is arranged between the secondary tank air outlet 16 and the primary tank air inlet II 11.
The utility model discloses during the use, control system control dry vacuum pump starts, suction through dry vacuum pump, make the oil water vapour mixture get into filter core one by the pipeline, filter through filter core one and then get into filter core two, the oil water vapour mixture after filtering gets into the inside of main jar by main jar air inlet one, carry out first oil water, steam separation inside the main jar, oil water and some gas get into in the auxiliary jar through the auxiliary jar water inlet by the main jar delivery port, part gas is discharged directly by the main jar gas outlet and gets into in the dry vacuum pump by the vacuum pump air inlet in this process simultaneously, the oil water vapour mixture that gets into in the auxiliary jar simultaneously separates once more, the oil water is stored in the inside of auxiliary jar, the gas that contains a small amount of oil water gets into in the main jar through main jar air inlet two again by the auxiliary jar gas outlet simultaneously; the oil-water-steam mixture entering the main tank again carries out oil-water-steam final separation, the separated oil and water enter the auxiliary tank from the water outlet of the main tank through the water inlet of the auxiliary tank, and the separated gas enters the dry vacuum pump through the air outlet of the main tank, so that the water entering the dry vacuum pump does not contain oil-water substances; when the water level in the auxiliary tank reaches the float two detection position, the control system controls the external air supply device to inflate the inside of the auxiliary tank, positive pressure air is introduced, the one-way valve is opened through pressure increase, and therefore drainage of the auxiliary tank is completed.
The utility model discloses a control system comprises relay, valve, earth-leakage protector and mainboard, and the mainboard is used for embedded program to lead in.
The main tank, the auxiliary tank and the dry vacuum pump of the utility model are connected by pipelines,
the above is only the specific embodiment of the present invention, but the protection scope of the present invention is not limited thereto, and any changes or substitutions that are not thought of through the creative work should be covered within the protection scope of the present invention. Therefore, the protection scope of the present invention should be subject to the protection scope defined by the claims.
Claims (6)
1. The utility model provides an carving mills profit autosegregation device of dry vacuum pump for machine which characterized in that: comprises a box body, a main tank, an auxiliary tank, a dry vacuum pump, a control box, a valve installation box and a control system, wherein the control box and the valve installation box are respectively installed at two ends of the box body, the main tank, the dry vacuum pump and the auxiliary tank are sequentially installed in the box body from top to bottom, the main tank is provided with a main tank air inlet I, a main tank air inlet II, a main tank air outlet, a buoy mounting hole I and a main tank water outlet, the auxiliary tank is provided with an auxiliary tank air outlet, an auxiliary tank water inlet, an auxiliary tank water outlet and a buoy mounting hole II, one end of the first air inlet of the main tank is connected with a first filter element and a second filter element, the first filter element is connected with the second filter element, the second filter element is connected with the first air inlet of the main tank, the water outlet of the main tank is connected with the water inlet of the auxiliary tank, the air outlet of the auxiliary tank is connected with the air inlet II of the main tank, the dry vacuum pump is provided with a vacuum pump air inlet, and the main tank air outlet is connected with the vacuum pump air inlet.
2. The automatic oil-water separation device of the dry vacuum pump for the engraving and milling machine as claimed in claim 1, wherein: and the first buoy mounting hole and the second buoy mounting hole are respectively provided with a first buoy and a second buoy.
3. The automatic oil-water separation device of the dry vacuum pump for the engraving and milling machine as claimed in claim 1, wherein: the lower end of the auxiliary tank water outlet is connected with a one-way valve.
4. The automatic oil-water separation device of the dry vacuum pump for the engraving and milling machine as claimed in claim 2, wherein: the first buoy is connected with an audible and visual alarm, and the second buoy is connected with a one-way valve.
5. The automatic oil-water separation device of the dry vacuum pump for the engraving and milling machine as claimed in claim 1, wherein: and the auxiliary tank is provided with an auxiliary tank air inlet which is connected with an external air supply device.
6. The automatic oil-water separation device of the dry vacuum pump for the engraving and milling machine as claimed in claim 1, wherein: and an electromagnetic valve is arranged between the air outlet of the auxiliary tank and the air inlet II of the main tank.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201922171627.4U CN211038977U (en) | 2019-12-06 | 2019-12-06 | Carving mills profit autosegregation device of dry vacuum pump for machine |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201922171627.4U CN211038977U (en) | 2019-12-06 | 2019-12-06 | Carving mills profit autosegregation device of dry vacuum pump for machine |
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Publication Number | Publication Date |
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CN211038977U true CN211038977U (en) | 2020-07-17 |
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CN201922171627.4U Active CN211038977U (en) | 2019-12-06 | 2019-12-06 | Carving mills profit autosegregation device of dry vacuum pump for machine |
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CN (1) | CN211038977U (en) |
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2019
- 2019-12-06 CN CN201922171627.4U patent/CN211038977U/en active Active
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