Linkage drainage control device for direct water pump house

By designing a direct water pump room linkage drainage control device including a crushing silo and a shell, the wastewater is treated with a filter layer and a motor-driven slag treatment machine, the problem of existing devices being difficult to disassemble and clean and inconvenient for wastewater treatment is solved, and the equipment is conveniently maintained and environmentally friendly wastewater treatment is achieved.

CN222908977UActive Publication Date: 2025-05-27SHAANXI SHANMEI HUANGLING MINING IND CO LTD
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Patent Information

Application Number
CN202421434909.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-21
Publication Date
2025-05-27
Estimated Expiration
2034-06-21

AI Technical Summary

Technical Problem

The existing direct water pump room linkage drainage control device is not easy to disassemble and clean, and is not convenient for wastewater treatment, affecting the environment.

Method used

A direct water pump room linkage drainage control device including a crushing chamber and a shell is designed. A filter layer and a partition are provided in the crushing chamber. Through holes are distributed on the filter layer to block large particles of impurities. The motor drives the main rotor and the slave rotor drives the slag knife to crush the impurities, and is guided into the biological filler silo through the connecting pipe for treatment. Finally, the treated wastewater is discharged through the drain pipe.

Benefits of technology

It realizes convenient disassembly and assembly and cleaning of the filter layer, facilitates wastewater treatment, ensures the normal operation of the equipment and reduces the impact on the environment.

✦ Generated by Eureka AI based on patent content.

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    Figure CN222908977U_ABST
Patent Text Reader

Abstract

The utility model discloses a direct water pump room linkage drainage control device which comprises a crushing bin and a shell, the crushing bin is arranged at the lower end of the interior of the shell, positioning blocks are arranged at the two ends of the inner wall of the crushing bin, a partition plate is arranged on the lower portion of each positioning block, inserting blocks are arranged at the two ends of the upper portion of each partition plate, and inserting grooves are formed in one ends of the interiors of the positioning blocks. An adjusting bin is arranged on the side portion of the inserting groove, a pull rod is arranged in the adjusting bin, a pull block is fixed to one end of the pull rod, a clamping block is fixed to the other end of the pull rod, the clamping block is connected with the inserting block in a clamped mode, a spring is arranged outside the pull rod, and the side portion of the clamping block is fixedly connected with one end of the inner wall of the adjusting bin through the spring. A filter layer is arranged in the middle of the partition. According to the utility model, the filter layer is easy to disassemble, assemble and clean, and waste water is convenient to treat.
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Description

Technical Field

[0001] The utility model relates to the technical field of drainage control devices, in particular to a linkage drainage control device for a direct water pump house. Background Technique

[0002] A water pump house is a building specifically used to store water pump equipment. The water pump house can protect the water pump equipment, reduce noise, and facilitate maintenance and repair. During the normal operation of the pump house, a large amount of waste water is generated. If it cannot be discharged in time, it will affect the normal operation of the pump house equipment. Therefore, the linkage drainage control device for the direct water pump house plays an important role.

[0003] There are some drawbacks in the conventional linkage drainage control device for the direct water pump house. First, it is not easy to disassemble, assemble, and clean the internal filtering structure, which consumes labor. Second, it is not convenient to treat the waste water, and directly discharging it affects the environment. Content of the Utility Model

[0004] The purpose of the utility model is to provide a linkage drainage control device for a direct water pump house to solve the problems raised in the above background technique.

[0005] To achieve the above purpose, the utility model provides the following technical solution: A linkage drainage control device for a direct water pump house, including a crushing bin and a housing. The crushing bin is arranged at the lower end inside the housing. Both ends of the inner wall of the crushing bin are provided with positioning blocks, and a partition board is arranged below the positioning blocks. Both ends of the upper part of the partition board are provided with insertion blocks. One end inside the positioning block is provided with a slot, and the insertion block is clamped with the slot. A regulating bin is arranged on the side of the slot, and a pull rod is arranged inside the regulating bin. One end of the pull rod is fixed with a pull block, the other end of the pull rod is fixed with a clamping block, and the clamping block is clamped with the insertion block.

[0006] Preferably, a spring is arranged outside the pull rod, and one end of the side of the clamping block is fixedly connected with the inner wall of the regulating bin through the spring.

[0007] Preferably, a filter layer is arranged in the middle of the partition board, and a sealing enclosure is arranged on the inner wall of the crushing bin corresponding to the partition board.

[0008] Preferably, a biological filler bin is arranged at the upper end inside the housing, and a connecting pipe is connected between the lower end of the side of the biological filler bin and the upper end of the side of the crushing bin.

[0009] Preferably, a water inlet pipe is connected to the lower end of the side of the crushing bin, and a drain pipe is connected to the upper end of the side of the biological filler bin.

[0010] Preferably, the rear end of the outer wall of the biological filler bin is respectively connected with a main runner and a driven runner through bearings, and the main runner and the driven runner are meshed with each other.

[0011] Preferably, both ends inside the biological filler bin are connected with slag crushing knives through bearings, and the slag crushing knives are fixedly connected with the main runner and the slave runner respectively.

[0012] Preferably, a motor is arranged at the rear of the main runner, and the output end of the motor is fixedly connected with the driving end of the main runner.

[0013] Compared with the prior art, the beneficial effects of the utility model are as follows: it is easy to disassemble, install and clean the filter layer, which is convenient for treating wastewater;

[0014] (1) A number of through holes are equidistantly distributed on the filter layer, which can intercept large-particle impurities, so that the impurities are continuously broken, which is beneficial to more sufficient crushing of the impurities. A bin door is arranged at the front end of the crushing bin. The bin door can be opened regularly. The pull block can be pulled towards the middle to drive the pull rod to move and the spring to be compressed. Then the clamping block is driven to move to make way for the insertion block. The insertion block is inserted into the slot. The pull block is released. Under the push of the spring, the clamping block is driven to reset through the pull rod, so that the clamping block is inserted into the insertion block, and then the position of the partition plate is fixed, which is easy to disassemble, install and clean the filter layer.

[0015] (2) External wastewater can be introduced into the crushing bin through the water inlet pipe under the action of a water pump. Driven by the motor, the main runner rotates, driving the slave runner to rotate. The main runner and the slave runner rotate in opposite directions. The main runner and the slave runner drive the slag crushing knives to rotate together. The slag crushing knives rotate in opposite directions, which can crush large impurities in the wastewater. The sewage passing through the filter layer is introduced into the biological filler bin through the connecting pipe. The biological filler has activity and can adsorb and treat harmful substances. The treated wastewater can be discharged through the drain pipe, which is convenient for treating wastewater. Description of the Drawings

[0016] Figure 1 It is the front view sectional structure schematic diagram of the utility model;

[0017] Figure 2 It is the back view structure schematic diagram of the utility model;

[0018] Figure 3 It is of the utility model Figure 1 The enlarged structure schematic diagram at A in

[0019] Figure 4 It is the structure schematic diagram of the partition plate and the filter layer of the utility model;

[0020] Figure 5 It is the structure schematic diagram of the clamping block and the pull rod of the utility model;

[0021] In the figure: 1. Biological filler bin; 2. Connecting pipe; 3. Water inlet pipe; 4. Slag crushing knife; 5. Shell; 6. Crushing bin; 7. Insert block; 8. Partition board; 9. Filter layer; 10. Positioning block; 11. Pulling block; 12. Drain pipe; 13. Main runner; 14. Pull rod; 15. Adjusting bin; 16. Sealing enclosure; 17. Slot; 18. Clamping block; 19. Spring; 20. Driven runner; 21. Motor. Specific implementation mode

[0022] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without making creative efforts shall fall within the protection scope of the present invention.

[0023] Please refer to Figures 1-5 , an embodiment provided by the present invention: a direct pump house linkage drainage control device, including a crushing bin 6 and a shell 5. Positioning blocks 10 are arranged at both ends of the inner wall of the crushing bin 6, and a partition board 8 is arranged below the positioning blocks 10. Insert blocks 7 are arranged at both ends of the upper part of the partition board 8. A slot 17 is arranged at one end inside the positioning block 10, and the insert block 7 is clamped with the slot 17. An adjusting bin 15 is arranged at the side of the slot 17, and a pull rod 14 is arranged inside the adjusting bin 15. A pulling block 11 is fixed at one end of the pull rod 14, a clamping block 18 is fixed at the other end of the pull rod 14, and the clamping block 18 is clamped with the insert block 7. A spring 19 is arranged outside the pull rod 14, and the side of the clamping block 18 is fixedly connected with one end of the inner wall of the adjusting bin 15 through the spring 19;

[0024] During use, a hatch is provided at the front end of the crushing bin 6. The hatch can be opened regularly. The pulling block 11 can be pulled towards the middle, driving the pull rod 14 to move and the spring 19 to compress. Furthermore, the clamping block 18 is driven to move to make way for the insert block 7. The insert block 7 is inserted into the slot 17. The pulling block 11 is released. Under the push of the spring 19, through the pull rod 14, the clamping block 18 is driven to reset, so that the clamping block 18 is inserted into the insert block 7, and further the position of the partition board 8 is fixed;

[0025] The crushing bin 6 is arranged at the lower end inside the shell 5, and the lower end of the side of the crushing bin 6 is connected with a water inlet pipe 3;

[0026] During use, external wastewater can be introduced into the crushing bin 6 through the water inlet pipe 3 under the action of a water pump;

[0027] A filter layer 9 is arranged in the middle of the partition board 8, and a sealing enclosure 16 is arranged on the inner wall of the crushing bin 6 corresponding to the partition board 8;

[0028] During use, a number of through holes are equidistantly distributed on the filter layer 9, which can intercept large-particle impurities, so that the impurities continue to be crushed, facilitating more complete crushing of the impurities;

[0029] At the upper end inside the housing 5, a biological filler bin 1 is provided. And a connecting pipe 2 is connected between the lower end of the side of the biological filler bin 1 and the upper end of the side of the crushing bin 6. The upper end of the side of the biological filler bin 1 is connected with a drain pipe 12;

[0030] During use, the sewage passing through the filter layer 9 enters the biological filler bin 1 through the connecting pipe 2. The biological filler is active and can adsorb and treat harmful substances. The treated wastewater can be discharged through the drain pipe 12;

[0031] At the rear of the main runner 13, a motor 21 is provided. And the output end of the motor 21 is fixedly connected to the driving end of the main runner 13. The rear end of the outer wall of the biological filler bin 1 is respectively connected with the main runner 13 and the driven runner 20 through bearings. And the main runner 13 and the driven runner 20 are meshed;

[0032] During use, driven by the motor 21, the main runner 13 rotates, driving the driven runner 20 to rotate. The main runner 13 and the driven runner 20 rotate in opposite directions;

[0033] At both ends inside the biological filler bin 1, slag crushing knives 4 are respectively connected through bearings. And the slag crushing knives 4 are respectively fixedly connected to the main runner 13 and the driven runner 20;

[0034] During use, the main runner 13 and the driven runner 20 together drive the slag crushing knives 4 to rotate. The slag crushing knives 4 rotate in opposite directions and can crush large impurities in the wastewater;

[0035] When the embodiment of the present application is in use: First, the external wastewater can be introduced into the crushing bin 6 through the water inlet pipe 3 under the action of a water pump. Driven by the motor 21, the main runner 13 rotates, driving the driven runner 20 to rotate. The main runner 13 and the driven runner 20 rotate in opposite directions. The main runner 13 and the driven runner 20 together drive the slag crushing knives 4 to rotate. The slag crushing knives 4 rotate in opposite directions and can crush large impurities in the wastewater. And a number of through holes are equidistantly distributed on the filter layer 9, which can intercept large particle impurities, so that the impurities are continuously crushed, facilitating more complete crushing of the impurities. Subsequently, the sewage passing through the filter layer 9 enters the biological filler bin 1 through the connecting pipe 2. The biological filler is active and can adsorb and treat harmful substances. The treated wastewater can be discharged through the drain pipe 12. In addition, a hatch is provided at the front end of the crushing bin 6. The hatch can be opened regularly. The pull block 11 can be pulled towards the middle, driving the pull rod 14 to move and the spring 19 to be compressed. Further driving the latch 18 to move, giving way to the plug 7. The plug 7 is inserted into the slot 17. The pull block 11 is released. Driven by the spring 19, through the pull rod 14, the latch 18 is driven to reset, so that the latch 18 is inserted into the plug 7, and further the position of the partition plate 8 is fixed. In summary, the device is easy to disassemble and clean the filter layer 9 and is convenient for treating wastewater.

Claims

1. A direct water pump room linkage drainage control device, characterized in that: The invention comprises a crushing chamber (6) and a shell (5), wherein the crushing chamber (6) is arranged at the lower end inside the shell (5), positioning blocks (10) are arranged at both ends of the inner wall of the crushing chamber (6), and a partition (8) is arranged at the lower part of the positioning block (10), and plug blocks (7) are arranged at both ends of the upper part of the partition (8), a slot (17) is arranged at one end inside the positioning block (10), and the plug block (7) is snap-fitted with the slot (17), an adjusting chamber (15) is arranged at the side of the slot (17), and a pull rod (14) is arranged inside the adjusting chamber (15), a pull block (11) is fixed at one end of the pull rod (14), and a clamping block (18) is fixed at the other end of the pull rod (14), and the clamping block (18) is snap-fitted with the plug block (7).

2. A direct water pump room linkage drainage control device according to claim 1, characterized in that: A spring (19) is arranged outside the pull rod (14), and the side of the clamping block (18) is fixedly connected to one end of the inner wall of the regulating chamber (15) through the spring (19).

3. A direct water pump room linkage drainage control device according to claim 1, characterized in that: A filter layer (9) is provided in the middle of the partition (8), and a sealing enclosure (16) is provided on the inner wall of the crushing bin (6) corresponding to the partition (8).

4. A direct water pump room linkage drainage control device according to claim 1, characterized in that: A biological filler bin (1) is provided at the upper end of the interior of the shell (5), and a connecting pipe (2) is connected between the lower end of the side of the biological filler bin (1) and the upper end of the side of the crushing bin (6).

5. A direct water pump room linkage drainage control device according to claim 4, characterized in that: The lower end of the side of the crushing bin (6) is connected to a water inlet pipe (3), and the upper end of the side of the biological filler bin (1) is connected to a drainage pipe (12).

6. A direct water pump room linkage drainage control device according to claim 4, characterized in that: The rear end of the outer wall of the biological filler bin (1) is connected to a main rotating wheel (13) and a slave rotating wheel (20) via bearings, and the main rotating wheel (13) and the slave rotating wheel (20) are meshed with each other.

7. A direct water pump room linkage drainage control device according to claim 6, characterized in that: Both ends of the biological filler bin (1) are connected to slag crushing knives (4) via bearings, and the slag crushing knives (4) are fixedly connected to the main rotating wheel (13) and the slave rotating wheel (20) respectively.

8. A direct water pump room linkage drainage control device according to claim 6, characterized in that: A motor (21) is arranged at the rear of the main rotating wheel (13), and an output end of the motor (21) is fixedly connected to a driving end of the main rotating wheel (13).