CN224180390U - Tail treatment device of quartz sand washing system - Google Patents
Tail treatment device of quartz sand washing systemInfo
- Publication number
- CN224180390U CN224180390U CN202520881652.4U CN202520881652U CN224180390U CN 224180390 U CN224180390 U CN 224180390U CN 202520881652 U CN202520881652 U CN 202520881652U CN 224180390 U CN224180390 U CN 224180390U
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- Prior art keywords
- filter
- bin
- fixedly arranged
- filter bin
- outer side
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Abstract
The utility model relates to the technical field of quartz sand washing, in particular to a tail treatment device of a quartz sand washing system, which comprises a filter bin, wherein a supporting ring is fixedly arranged in the filter bin, a negative pressure component is fixedly arranged on the outer side surface of the filter bin, the negative pressure component comprises a vacuum pump fixedly arranged on the outer side surface of the filter bin, an annular pipe is fixedly arranged on the outer side surface of the filter bin, the filter component is movably arranged in the filter bin, the filter component comprises a filter cylinder, and a discharging component is fixedly embedded and arranged on the outer side surface of the filter bin. According to the utility model, the waste water is discharged into the filter cylinder, the vacuum pump is operated, a negative pressure environment is created in the filter bin, the speed of the waste water passing through the filter cylinder is increased, most of sludge and impurities in the waste water are blocked by the filter cylinder, then the waste water is scraped downwards along with the rotation of the spiral blade, and finally the waste water is discharged from the discharging pipe, so that the sludge and impurities in the waste water are conveniently filtered in the waste water discharging process, and the treatment speed of the waste water is increased.
Description
Technical Field
The utility model relates to the technical field of quartz sand washing, in particular to a tail treatment device of a quartz sand washing system.
Background
In the quartz sand washing process, waste water, sludge and residual impurities can be generated, the tail treatment comprises the treatment of the waste, the environment protection standard is ensured, the purpose of resource utilization is achieved, the tail treatment comprises the steps of waste water treatment, sludge treatment and solid waste treatment, the waste water treatment relates to a sedimentation tank and the use of a flocculating agent, and the waste water is generally precipitated in a gravity sedimentation mode during sedimentation.
When the existing wastewater is treated, the sludge and impurities in the wastewater can be discharged to the next process after the wastewater is required to be subjected to standing precipitation, the time spent by standing precipitation is long, the wastewater treatment time can be increased, and the sludge and impurities in the wastewater are not convenient to filter in the wastewater discharge process.
Disclosure of utility model
The utility model aims to provide a tail treatment device of a quartz sand washing system, which aims to solve the problems in the background technology.
In order to achieve the above purpose, the present utility model provides the following technical solutions:
a quartz sand washing system tail treatment device includes:
The filter bin is internally and fixedly provided with a supporting ring;
The negative pressure assembly is fixedly arranged on the outer side surface of the filter bin and comprises a vacuum pump fixedly arranged on the outer side surface of the filter bin, and an annular pipe is fixedly arranged on the outer side surface of the filter bin;
The filter assembly is movably arranged in the filter bin and comprises a filter cylinder, and a spiral blade is rotationally connected in the filter cylinder;
and the blanking assembly is fixedly embedded and arranged on the outer side surface of the filter bin.
Further characterized in that the blanking component comprises:
The bin is fixedly arranged on the inner side surface of the filter bin through a bracket;
The second electromagnetic valve is fixedly arranged on the surface of the lower end of the storage bin;
The blanking pipe is fixedly embedded and arranged on the outer side surface of the filtering bin, and one end of the blanking pipe is fixedly communicated with the bin;
the screw rod is rotationally connected to the inside of the blanking pipe;
And the second motor is fixedly arranged at one end of the blanking pipe, and the output end of the second motor is fixedly connected with one end of the screw rod.
The filter cartridge is characterized in that a cover plate is movably arranged at the upper end of the filter cartridge, connecting lugs are symmetrically and fixedly arranged on the outer side surfaces of the cover plate and the filter cartridge, and bolts are connected between two adjacent connecting lugs.
The water inlet pipe is fixedly embedded in the upper surface of the cover plate, a plurality of jacking blocks are fixedly arranged on the lower surface of the cover plate at equal angles, a first electromagnetic valve is fixedly arranged at the lower end of the filtering bin, and a water level sensor is fixedly arranged at the lower end of the inside of the filtering bin through a bracket.
The novel filter is characterized in that a plurality of air inlet pipes are fixedly embedded in the outer side surface of the annular pipe at equal angles, the air inlet pipes penetrate through the filter bin fixedly, and a hemispherical cover is fixedly arranged at one end of each air inlet pipe through a bracket.
The filter cartridge is movably inserted into the support ring, a sealing bearing is fixedly embedded into the surface of the upper end of the cover plate, a rotating shaft is fixedly arranged on the inner ring of the sealing bearing, the rotating shaft is fixedly connected with the spiral blade, and a scraping plate is fixedly arranged at the lower end of the spiral blade.
Preferably, the upper end surface of the cover plate is fixedly provided with a first motor through a bracket, the output end of the first motor and the upper end of the rotating shaft are fixedly provided with gears, and the two gears are in meshed transmission connection.
Compared with the prior art, the utility model has the beneficial effects that:
1. Through the inside water level of water level sensor response filtration storehouse, after the water level reaches the settlement height, the solenoid valve is opened No. one, discharges the waste water after will filtering, when avoiding the solenoid valve to be in open state all the time, influences the negative pressure environment that negative pressure assembly built in filtration storehouse, through dismantling the bolt, makes the apron dismantle, is convenient for change the section of thick bamboo.
2. The vacuum pump operates to pump out the air inside the filter bin, and a negative pressure environment is built inside the filter bin, so that the negative pressure environment is built inside the filter bin, most of sludge and impurities in the wastewater are blocked by the filter cartridge, the wastewater passes through the filter cartridge, the speed of the wastewater passing through the filter cartridge is accelerated by the negative pressure environment, the sludge and impurities in the wastewater are convenient to filter in the wastewater discharge process, and the treatment speed of the wastewater is accelerated.
3. A motor is operated, the pass band moves the pivot and helical blade rotates, helical blade scrapes mud and impurity of straining a section of thick bamboo inner wall, keeps straining the permeability of section of thick bamboo, makes mud and impurity gather inside the feed bin simultaneously, and No. two solenoid valves open, make mud enter into the unloading intraduct, no. two motor operations drive the hob and rotate, make mud and impurity follow unloading pipe other end discharge, reduce the inside moisture that contains of mud and impurity.
Drawings
FIG. 1 is a schematic view of the overall structure of the present utility model;
FIG. 2 is a schematic view of the internal structure of the filter house according to the present utility model;
FIG. 3 is a schematic view of the overall vertical cross-section of the present utility model;
FIG. 4 is a schematic cross-sectional view of an endless tube in accordance with the present utility model;
FIG. 5 is a schematic view showing a sectional structure of a blanking member in the present utility model.
The device comprises a filter bin, a 101, a cover plate, 102, a top block, 103, a water inlet pipe, 104, a connecting lug, 105, a bolt, 106, a supporting ring, 107, a first electromagnetic valve, 108, a water level sensor, 2, a negative pressure component, 201, a vacuum pump, 202, an annular pipe, 203, an air inlet pipe, 204, a hemispherical cover, 3, a filter component, 301, a filter cartridge, 302, a rotating shaft, 303, a helical blade, 304, a scraper, 305, a sealing bearing, 306, a first motor, 307, a gear, 4, a blanking component, 401, a bin, 402, a second electromagnetic valve, 403, a blanking pipe, 404, a helical rod, 405 and a second motor.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
Referring to fig. 1-5, in an embodiment of the utility model, a tail treatment device of a quartz sand washing system comprises a filter bin 1, wherein a supporting ring 106 is fixedly installed inside the filter bin 1, a negative pressure component 2 is fixedly installed on the outer side surface of the filter bin 1, the negative pressure component 2 comprises a vacuum pump 201 fixedly installed on the outer side surface of the filter bin 1, an annular pipe 202 is fixedly installed on the outer side surface of the filter bin 1, a filter component 3 is movably arranged inside the filter bin 1, the filter component 3 comprises a filter cylinder 301, a spiral blade 303 is rotatably connected inside the filter cylinder 301, and a blanking component 4 is fixedly embedded and installed on the outer side surface of the filter bin 1.
Specifically, the negative pressure assembly 2 creates a negative pressure environment inside the filter bin 1, speeds up the waste water passing through the filter cartridge 301, scrapes off sludge and impurities on the inner wall of the filter cartridge 301 through the spiral blade 303, keeps the permeability of the filter cartridge 301, and then discharges the sludge and impurities through the discharging assembly 4.
Example 1
As shown in fig. 1-3, in this embodiment, a water inlet pipe 103 is fixedly embedded in the upper surface of a cover plate 101, a plurality of top blocks 102 are fixedly installed on the lower surface of the cover plate 101 at equal angles, a first electromagnetic valve 107 is fixedly installed at the lower end of the filter cartridge 1, and a water level sensor 108 is fixedly installed at the lower end of the inside of the filter cartridge 1 through a bracket.
In this embodiment, the wastewater is introduced into the filter cartridge 301 through the water inlet pipe 103, the water level sensor 108 senses the water level inside the filter bin 1, after the water level reaches a set height, the first electromagnetic valve 107 is opened to discharge the filtered wastewater, and the negative pressure environment created inside the filter bin 1 by the negative pressure component 2 is prevented from being influenced when the first electromagnetic valve 107 is always in an open state.
As shown in fig. 2 to 4, in the present embodiment, a plurality of air inlet pipes 203 are fixedly embedded in the outer side surface of the annular pipe 202 at equal angles, and the air inlet pipes 203 penetrate through the filter house 1, and a hemispherical cover 204 is fixedly installed at one end of the air inlet pipe 203 through a bracket.
During specific implementation, the vacuum pump 201 operates to pump out air in the filter bin 1 through the air inlet pipes 203 and the annular pipe 202, and a negative pressure environment is built in the filter bin 1, so that most sludge and impurities in wastewater are blocked by the filter cylinder 301 through the negative pressure environment, the wastewater passes through the filter cylinder 301, the speed of the wastewater passing through the filter cylinder 301 is increased through the negative pressure environment, the sludge and impurities in the wastewater are filtered in the wastewater discharge process, and the wastewater treatment speed is increased.
As shown in fig. 2 and 3, in the present embodiment, a filter cartridge 301 is movably inserted into a supporting ring 106, a sealing bearing 305 is fixedly embedded in the upper end surface of a cover plate 101, a rotating shaft 302 is fixedly installed in the inner ring of the sealing bearing 305, the rotating shaft 302 is fixedly connected with a helical blade 303, a scraper 304 is fixedly installed at the lower end of the helical blade 303, a first motor 306 is fixedly installed on the upper end surface of the cover plate 101 through a bracket, gears 307 are fixedly installed at the output end of the first motor 306 and the upper end of the rotating shaft 302, and the two gears 307 are in meshed transmission connection.
In specific implementation, the first motor 306 runs, and drives the rotating shaft 302 to rotate through the gear 307, so that the spiral blade 303 rotates, the spiral blade 303 scrapes off sludge and impurities on the inner wall of the filter cylinder 301, the permeability of the filter cylinder 301 is kept, and meanwhile, the sludge and the impurities are accumulated in the storage bin 401, so that the sludge and the impurities are discharged conveniently.
In the embodiment, as shown in fig. 5, the blanking assembly 4 comprises a bin 401 fixedly installed on the inner side surface of the filter bin 1 through a bracket, a second electromagnetic valve 402 is fixedly installed on the lower end surface of the bin 401, a blanking pipe 403 is fixedly embedded and installed on the outer side surface of the filter bin 1, one end of the blanking pipe is fixedly communicated with the bin 401, a screw rod 404 is rotatably connected inside the blanking pipe 403, a second motor 405 is fixedly installed on one end of the blanking pipe 403, and an output end of the second electromagnetic valve is fixedly connected with one end of the screw rod 404.
In specific implementation, the second electromagnetic valve 402 is opened to enable sludge to enter the blanking pipe 403, the second motor 405 operates to drive the screw rod 404 to rotate, so that the sludge and impurities are discharged from the other end of the blanking pipe 403, and moisture contained in the sludge and impurities is reduced.
Example two
On the basis of the first embodiment, the problem that the filter cartridge 301 is not convenient to replace in the filter house 1 is solved.
As shown in fig. 2, in this embodiment, a cover plate 101 is movably disposed at the upper end of the filter cartridge 1, connecting lugs 104 are symmetrically and fixedly mounted on the outer side surfaces of the cover plate 101 and the filter cartridge 1, and bolts 105 are connected between two adjacent connecting lugs 104.
In specific implementation, the bolts 105 are detached by fastening the bolts 105 and the connecting lugs 104, so that the cover plate 101 is convenient to detach and the filter cartridge 301 is convenient to replace.
In the present utility model, in order to facilitate the control of the utility model by the operator, a PLC controller may be provided, where the first electromagnetic valve 107, the water level sensor 108, the vacuum pump 201, the first motor 306, the second electromagnetic valve 402 and the second motor 405 are all electrically connected to the PLC controller, and the PLC controller is in the prior art and will not be described herein.
It will be evident to those skilled in the art that the utility model is not limited to the details of the foregoing illustrative embodiments, and that the present utility model may be embodied in other specific forms without departing from the spirit or essential characteristics thereof. The present embodiments are, therefore, to be considered in all respects as illustrative and not restrictive, the scope of the utility model being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim concerned.
Furthermore, it should be understood that although the present disclosure describes embodiments, not every embodiment is provided with a separate embodiment, and that this description is provided for clarity only, and that the disclosure is not limited to the embodiments described in detail below, and that the embodiments described in the examples may be combined as appropriate to form other embodiments that will be apparent to those skilled in the art.
Claims (7)
1. The utility model provides a quartz sand washing system afterbody processing apparatus which characterized in that includes:
the filter bin (1), the inside of the filter bin (1) is fixedly provided with a supporting ring (106);
The negative pressure assembly (2) is fixedly arranged on the outer side surface of the filter bin (1), the negative pressure assembly (2) comprises a vacuum pump (201) fixedly arranged on the outer side surface of the filter bin (1), and an annular pipe (202) is fixedly arranged on the outer side surface of the filter bin (1);
The filter assembly (3) is movably arranged in the filter bin (1), the filter assembly (3) comprises a filter cylinder (301), and a spiral blade (303) is rotatably connected in the filter cylinder (301);
And the blanking component (4) is fixedly embedded and arranged on the outer side surface of the filter bin (1).
2. The quartz sand washing system tail treatment device according to claim 1, wherein the blanking assembly (4) comprises:
the bin (401) is fixedly arranged on the inner side surface of the filter bin (1) through a bracket;
a second electromagnetic valve (402) is fixedly arranged on the lower end surface of the storage bin (401);
the blanking pipe (403) is fixedly embedded and arranged on the outer side surface of the filtering bin (1), and one end of the blanking pipe is fixedly communicated with the bin (401);
The screw rod (404) is rotationally connected inside the blanking pipe (403);
And a second motor (405) is fixedly arranged at one end of the blanking pipe (403), and the output end of the second motor is fixedly connected with one end of the screw rod (404).
3. The quartz sand washing system tail treatment device according to claim 1, wherein a cover plate (101) is movably arranged at the upper end of the filter bin (1), connecting lugs (104) are symmetrically and fixedly arranged on the outer side surfaces of the cover plate (101) and the filter bin (1), and bolts (105) are connected between two adjacent connecting lugs (104).
4. The quartz sand washing system tail treatment device according to claim 3, wherein a water inlet pipe (103) is fixedly embedded in the upper surface of the cover plate (101), a plurality of top blocks (102) are fixedly arranged on the lower surface of the cover plate (101) at equal angles, a first electromagnetic valve (107) is fixedly arranged at the lower end of the filter bin (1), and a water level sensor (108) is fixedly arranged at the lower end of the inner part of the filter bin (1) through a bracket.
5. The quartz sand washing system tail treatment device according to claim 1, wherein a plurality of air inlet pipes (203) are fixedly embedded in the outer side surface of the annular pipe (202) at equal angles, the air inlet pipes (203) fixedly penetrate through the filter bin (1), and a hemispherical cover (204) is fixedly arranged at one end of each air inlet pipe (203) through a bracket.
6. The quartz sand washing system tail treatment device according to claim 3, wherein the filter cartridge (301) is movably inserted into the supporting ring (106), a sealing bearing (305) is fixedly embedded in the surface of the upper end of the cover plate (101), a rotating shaft (302) is fixedly installed on the inner ring of the sealing bearing (305), the rotating shaft (302) is fixedly connected with the spiral blade (303), and a scraping plate (304) is fixedly installed at the lower end of the spiral blade (303).
7. The quartz sand washing system tail treatment device according to claim 6, wherein a first motor (306) is fixedly arranged on the upper end surface of the cover plate (101) through a bracket, gears (307) are fixedly arranged at the output end of the first motor (306) and the upper end of the rotating shaft (302), and the two gears (307) are in meshed transmission connection.
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202520881652.4U CN224180390U (en) | 2025-05-06 | 2025-05-06 | Tail treatment device of quartz sand washing system |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202520881652.4U CN224180390U (en) | 2025-05-06 | 2025-05-06 | Tail treatment device of quartz sand washing system |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| CN224180390U true CN224180390U (en) | 2026-05-01 |
Family
ID=99591357
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN202520881652.4U Active CN224180390U (en) | 2025-05-06 | 2025-05-06 | Tail treatment device of quartz sand washing system |
Country Status (1)
| Country | Link |
|---|---|
| CN (1) | CN224180390U (en) |
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2025
- 2025-05-06 CN CN202520881652.4U patent/CN224180390U/en active Active
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| Date | Code | Title | Description |
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| GR01 | Patent grant |