Flow dividing type water treatment device for water industry

By designing a water industry diversion water treatment device containing multiple components, the problem of sludge water separation and excessive water pressure is solved, and the convenience of sludge treatment and the stability and safety of water treatment are achieved.

CN222948156UActive Publication Date: 2025-06-06WUHAN BISHUI INVESTMENT & OPERATION CO LTD
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Patent Information

Application Number
CN202421690146.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-17
Publication Date
2025-06-06
Estimated Expiration
2034-07-17

AI Technical Summary

Technical Problem

When used in existing diverting water treatment equipment, the sludge contains more water, which leads to difficulties in treatment and transportation. At the same time, when all diverting pipes are closed, excessive water pressure may lead to dangerous equipment and affect the treatment effect.

Method used

A water industry diverted water treatment device is designed, including sleeves, inlet pipes, filtration components, diverted components, push components, slag discharge components, sterilization components and pressure control components. The device drives the sewage through the motor to drive the screw plate, filters and compresses through the filter cartridge and cone cartridge, realizes the separation of sludge moisture, and ensures the stability and safety of water treatment through the ultraviolet sterilization and the design of the shunt pipe.

Benefits of technology

It effectively reduces the moisture in the sludge, simplifies the transportation and treatment of sludge, avoids equipment dangers caused by excessive water pressure, ensures the stability and safety of water treatment, and can operate normally during equipment failure or maintenance.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a split-flow type water treatment device in water industry, which comprises a sleeve and an inlet pipe, the sleeve is provided with a filter assembly, the filter assembly comprises a clamping cover and a filter cartridge, the top of the clamping cover is provided with a split-flow assembly, the split-flow assembly comprises a split-flow pipe and a valve, the sleeve is provided with a push assembly, and the push assembly is provided with a push rod. The pushing assembly comprises a motor and a spiral plate, a deslagging assembly is installed on one side of the clamping cover, and the deslagging assembly comprises a conical cylinder and a pressure valve. According to the divided-flow type water treatment device for the water industry, sludge in the filter cylinder can be pushed by the spiral plate to move into the conical cylinder, and the pressure borne by the sludge in the conical cylinder is increased along with reduction of the inner diameter; and the pressure valve is pushed open by utilizing the pressure of the sludge, so that the sludge is discharged outwards through the conical cylinder, the moisture in the sludge is effectively reduced, the subsequent transportation and treatment work of the sludge is facilitated, the water pressure safety in the clamping cover is guaranteed, and the sludge flow dividing device is suitable for flow dividing operation of water treatment.
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Description

Technical Field

[0001] The utility model relates to the technical field of diversion type water treatment equipment, in particular to a diversion type water treatment device for the water industry. Background Art

[0002] In order to ensure the stability and reliability of water treatment, it is often necessary to use diversion-type water treatment equipment. The utility model patent with patent application number CN201721202079.1 discloses a diversion-type sewage treatment equipment with a buffering function. It has a simple structure and is easy to use. It can control the flow rate of sewage entering and divert the sewage flow in and out for treatment, greatly improving the efficiency of sewage treatment. It can also minimize the impact force of the sewage flow, and will not cause damage to the equipment due to excessive impact force, making the sewage treatment machine work more stably. According to the technical solution disclosed by it, when the existing diversion-type water treatment equipment is in use, on the one hand, the sludge separated from the sewage often contains more water, which is inconvenient for the subsequent sludge treatment and transportation. On the other hand, when all the diversion pipes are closed, it is easy to cause the sewage treatment equipment at the front end to be dangerous due to excessive water pressure, which is not conducive to ensuring the effect of sewage treatment.

[0003] Therefore, how to design a diversion water treatment device for the water industry has become our current problem to be solved. Utility Model Content

[0004] In view of the deficiencies in the prior art, the purpose of the present invention is to provide a diversion type water treatment device for the water industry to solve the problems raised in the above-mentioned background technology. The present invention has a reasonable design and is relatively convenient to use, and is suitable for use in diversion operations of water treatment.

[0005] To achieve the above-mentioned objectives, the utility model provides the following technical solutions: a diversion-type water treatment device for the water industry, comprising a sleeve and an inlet pipe, a filter assembly installed on the sleeve, the filter assembly comprising a card cover and a filter cartridge, a diversion assembly installed on the top of the card cover, the diversion assembly comprising a diversion pipe and a valve, a pushing assembly installed on the sleeve, the pushing assembly comprising a motor and a screw plate, a slag discharge assembly installed on one side of the card cover, the slag discharge assembly comprising a cone and a pressure valve, a sterilization assembly installed on the card cover, the sterilization assembly comprising a baffle and an ultraviolet lamp, a pressure control assembly installed on the sleeve, the pressure control assembly comprising a guide sleeve and a button.

[0006] Furthermore, the inlet pipe is welded to the top of one end of the sleeve, the other side of the card cover is welded to the other end of the sleeve, the filter cartridge is welded to the inner side of the card cover, the cone cylinder is welded to one side of the card cover, the sleeve is connected to the cone cylinder through the filter cartridge, and the pressure valve is installed on the inner side of the cone cylinder.

[0007] Furthermore, the motor is installed on the outer side of one end of the sleeve by bolts, one end of the screw plate passes through the inner wall of the sleeve and is keyed to the output shaft of the motor, the other end of the screw plate passes through the sleeve and the filter cartridge in turn and extends to the inner side of the cone cartridge, and the outer sides of the screw plate are respectively clamped on the inner walls of the sleeve, the filter cartridge and the cone cartridge.

[0008] Furthermore, the shunt pipe is welded to the top of the card cover, the valve is installed on the shunt pipe, and the shunt pipe is communicated with the inner side of the card cover.

[0009] Furthermore, a sealing cover is welded around the card cover, the ultraviolet lamp is installed on the inner side of the sealing cover by bolts, one end of the baffle is clamped on the outer side of the filter cartridge, and the other end of the baffle is spirally coiled on the inner side of the card cover and clamped on the inner wall of the card cover, and the baffle is a quartz glass baffle.

[0010] Furthermore, a solenoid valve is installed on the inlet pipe, the guide sleeve is welded to the top of the sleeve, and the bottom end of the guide sleeve is connected to the inner side of the sleeve.

[0011] Furthermore, a piston is clamped on the inner wall of the bottom of the guide sleeve, the top of the piston is connected to the top of the guide sleeve through a spring, and the button is installed on the top of the guide sleeve through a bolt.

[0012] Furthermore, the sleeve is externally connected to a switch group, the switch group is connected to a button and an ultraviolet lamp through wires, and the button is connected to a motor and a solenoid valve through wires.

[0013] Beneficial effects: 1. When the diversion water treatment device for the water industry is working, the sewage is passed into the sleeve through the inlet pipe, and the motor pushes the sewage to the right in the sleeve through the screw plate, and enters the inner side of the card cover after being filtered by the filter cartridge. When the water flows along the baffle, it is sterilized by the ultraviolet lamp in multiple ways, and then diverted to different subsequent purification equipment through different diversion pipes. Even if a certain equipment at the back end fails or needs maintenance, it can ensure the normal progress of water treatment and the stability of equipment operation. The sludge in the filter cartridge moves into the cone under the push of the screw plate. As the inner diameter of the cone decreases, the pressure on the sludge increases, thereby squeezing out the water in the sludge, and then using the pressure of the sludge to push the pressure valve open, so that the sludge is discharged outward through the cone, effectively reducing the water content in the sludge, and facilitating the subsequent transportation and treatment of the sludge.

[0014] 2. When the diversion water treatment device of the water industry is in use, when the equipment connected to the rear end of multiple diversion pipes evenly malfunctions (such as power failure), the valve in the diversion pipe is closed. At this time, the motor continuously pushes the water to the right through the screw plate, thereby increasing the water pressure in the sleeve and the card cover. The water pressure in the sleeve pushes the piston in the guide sleeve upward, and the piston compresses the spring and squeezes the button, thereby closing the solenoid valve and the motor to prevent the motor from driving the screw plate to continuously push water and causing the water pressure in the sleeve and the card cover to continue to increase, thereby ensuring the safety of the water pressure in the card cover and preventing the water from being discharged outward through the cone due to the increase in water pressure, thereby ensuring the dryness of the sludge.

[0015] 3. The diversion water treatment device for the water industry is reasonably designed, efficient and convenient to use, and is suitable for diversion operations in water treatment. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 This is a schematic diagram of the structure of a split-flow water treatment device for the water industry according to the utility model;

[0017] Figure 2 This is a cross-sectional view of a split-flow water treatment device for the water industry according to the utility model;

[0018] Figure 3 It is a side sectional view of a card cover of a split-flow water treatment device in the water industry of the utility model;

[0019] Figure 4 This is a structural schematic diagram of a guide sleeve of a split-flow water treatment device in the water industry according to the utility model;

[0020] In the figure: 1. sleeve; 2. inlet pipe; 3. card cover; 4. filter cartridge; 5. cone cylinder; 6. pressure valve; 7. motor; 8. screw plate; 9. solenoid valve; 10. shunt pipe; 11. valve; 12. baffle; 13. sealing cover; 14. ultraviolet lamp; 15. guide sleeve; 16. piston; 17. spring; 18. button. DETAILED DESCRIPTION

[0021] The following will be combined with the drawings in the embodiments of the utility model to clearly and completely describe the technical solutions in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all of the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the utility model.

[0022] See also Figures 1 to 4The utility model provides a technical solution: a diversion-type water treatment device for the water industry, comprising a sleeve 1 and an inlet pipe 2, a filter assembly is installed on the sleeve 1, the filter assembly comprises a card cover 3 and a filter cartridge 4, a diversion assembly is installed on the top of the card cover 3, the diversion assembly comprises a diversion pipe 10 and a valve 11, a pushing assembly is installed on the sleeve 1, the pushing assembly comprises a motor 7 and a screw plate 8, a slag discharge assembly is installed on one side of the card cover 3, the slag discharge assembly comprises a cone 5 and a pressure valve 6, a sterilization assembly is installed on the card cover 3, the sterilization assembly comprises a baffle 12 and an ultraviolet lamp 14, a pressure control assembly is installed on the sleeve 1, the pressure control assembly comprises a guide sleeve 15 and a button 18, an electromagnetic valve 9 is installed on the inlet pipe 2, the guide sleeve 15 is welded to the top of the sleeve 1, the bottom end of the guide sleeve 15 is connected to the inner side of the sleeve 1, a piston 16 is clamped on the inner wall of the bottom of the guide sleeve 15, and the top of the piston 16 passes through The spring 17 is connected to the top of the guide sleeve 15, and the button 18 is installed on the top of the guide sleeve 15 by bolts. The sleeve 1 is externally connected to a switch group, and the switch group is connected to the button 18 and the ultraviolet lamp 14 by wires. The button 18 is connected to the motor 7 and the solenoid valve 9 by wires. When in use, when the equipment connected to the rear ends of the plurality of shunt pipes 10 evenly malfunctions (such as power failure), the valve 11 in the shunt pipe 10 is closed. At this time, the motor 7 continuously pushes the water to the right through the screw plate 8, thereby increasing the water pressure in the sleeve 1 and the card cover 3. The water pressure in the sleeve 1 pushes the piston 16 in the guide sleeve 15 upward, and the piston 16 compresses the spring 17 and squeezes the button 18, thereby closing the solenoid valve 9 and the motor 7, so as to prevent the motor 7 from driving the screw plate 8 to continuously push water and causing the water pressure in the sleeve 1 and the card cover 3 to continue to increase, thereby ensuring the safety of the water pressure in the card cover 3, and at the same time preventing the water from being discharged outward through the cone 5 due to the increase in water pressure, thereby ensuring the dryness of the sludge.

[0023] In this embodiment, the inlet pipe 2 is welded to the top of one end of the sleeve 1, the other side of the card cover 3 is welded to the other end of the sleeve 1, the filter cartridge 4 is welded to the inner side of the card cover 3, the cone cylinder 5 is welded to one side of the card cover 3, the sleeve 1 is connected to the cone cylinder 5 through the filter cartridge 4, the pressure valve 6 is installed on the inner side of the cone cylinder 5, the motor 7 is installed on the outer side of one end of the sleeve 1 by bolts, one end of the screw plate 8 passes through the inner wall of the sleeve 1 and is keyed to the output shaft of the motor 7, and the screw plate The other end of 8 passes through the sleeve 1 and the filter cartridge 4 in sequence and extends to the inner side of the cone cylinder 5. The outer sides of the screw plate 8 are respectively clamped on the inner walls of the sleeve 1, the filter cartridge 4 and the cone cylinder 5. The shunt pipe 10 is welded to the top of the card cover 3. The valve 11 is installed on the shunt pipe 10. The shunt pipe 10 is connected to the inner side of the card cover 3. The card cover 3 is welded with a sealing cover 13 all around. The ultraviolet lamp 14 is installed on the inner side of the sealing cover 13 by bolts. One end of the baffle 12 is clamped on the outside of the filter cartridge 4. The other end of the baffle 12 is spirally coiled on the inner side of the card cover 3 and stuck on the inner wall of the card cover 3. The baffle 12 is a quartz glass baffle. When working, the sewage is passed into the sleeve 1 through the inlet pipe 2, and the motor 7 pushes the sewage to the right in the sleeve 1 through the screw plate 8, and enters the inner side of the card cover 3 after being filtered by the filter cartridge 4. When the water flows along the baffle 12, it is subjected to multiple sterilization operations by the ultraviolet lamp 14, and then is diverted to different subsequent purification equipment through different diversion pipes 10. Even if a certain equipment at the rear end fails or needs maintenance, it can ensure the normal progress of water treatment and the stability of equipment operation. The sludge in the filter cartridge 4 moves into the cone 5 under the push of the screw plate 8. In the cone 5, as the inner diameter decreases, the pressure on the sludge increases, and then the water in the sludge is squeezed out, and then the pressure of the sludge is used to push the pressure valve 6 open, so that the sludge is discharged outward through the cone 5, effectively reducing the water content in the sludge, and facilitating the transportation and treatment of the sludge.

[0024] The diversion type water treatment device of the water industry provides electric energy for all electrical equipment through an external power supply. When working, the sewage is passed into the sleeve 1 through the inlet pipe 2, and the motor 7 pushes the sewage to the right in the sleeve 1 through the screw plate 8, and enters the inner side of the card cover 3 after being filtered by the filter cylinder 4. When the water flows along the baffle 12, it is subjected to multiple sterilization operations by the ultraviolet lamp 14, and then is diverted to different subsequent purification equipment through different diversion pipes 10. Even if a certain equipment at the rear end fails or needs maintenance, it can ensure the normal progress of water treatment work and the stability of equipment operation. The sludge in the filter cylinder 4 moves into the cone cylinder 5 under the push of the screw plate 8. In the cone cylinder 5, as the inner diameter decreases, the pressure on the sludge increases, thereby squeezing out the water in the sludge, and then using the pressure of the sludge to open the pressure valve 6 is pushed open, so that the sludge is discharged outward through the cone 5, which effectively reduces the moisture in the sludge and facilitates the subsequent transportation and treatment of the sludge. When the equipment connected to the rear ends of the multiple shunt pipes 10 evenly malfunctions (such as power failure), the valve 11 in the shunt pipe 10 is closed. At this time, the motor 7 continuously pushes the water to the right through the screw plate 8, thereby increasing the water pressure in the sleeve 1 and the card cover 3. The water pressure in the sleeve 1 pushes the piston 16 in the guide sleeve 15 upward, and the piston 16 compresses the spring 17 and squeezes the button 18, thereby closing the solenoid valve 9 and the motor 7, preventing the motor 7 from driving the screw plate 8 to continuously push the moisture and causing the water pressure in the sleeve 1 and the card cover 3 to continue to increase, thereby ensuring the safety of the water pressure in the card cover 3 and preventing the moisture from being discharged outward through the cone 5 due to the increase in water pressure, thereby ensuring the dryness of the sludge.

[0025] In addition, it should be understood that although the present specification is described according to implementation modes, not every implementation mode contains only one independent technical solution. This description of the specification is only for the sake of clarity. Those skilled in the art should regard the specification as a whole. The technical solutions in each embodiment may also be appropriately combined to form other implementation modes that can be understood by those skilled in the art.

Claims

1. A diversion type water treatment device for the water industry, comprising a sleeve (1) and an inlet pipe (2), wherein a filter assembly is mounted on the sleeve (1), wherein the filter assembly comprises a card cover (3) and a filter cartridge (4), wherein a diversion assembly is mounted on the top of the card cover (3), wherein the diversion assembly comprises a diversion pipe (10) and a valve (11), wherein: The sleeve (1) is provided with a pushing assembly, the pushing assembly comprising a motor (7) and a screw plate (8); a slag discharge assembly is provided on one side of the card cover (3), the slag discharge assembly comprising a cone (5) and a pressure valve (6); a sterilization assembly is provided on the card cover (3), the sterilization assembly comprising a baffle (12) and an ultraviolet lamp (14); and a pressure control assembly is provided on the sleeve (1), the pressure control assembly comprising a guide sleeve (15) and a button (18).

2. A split-flow water treatment device for the water industry according to claim 1, characterized in that: The inlet pipe (2) is welded to the top of one end of the sleeve (1), the other side of the card cover (3) is welded to the other end of the sleeve (1), the filter cartridge (4) is welded to the inner side of the card cover (3), the cone cylinder (5) is welded to one side of the card cover (3), the sleeve (1) is connected to the cone cylinder (5) through the filter cartridge (4), and the pressure valve (6) is installed on the inner side of the cone cylinder (5).

3. A split-flow water treatment device for water industry according to claim 2, characterized in that: The motor (7) is mounted on the outer side of one end of the sleeve (1) by means of bolts, one end of the screw plate (8) passes through the inner wall of the sleeve (1) and is keyed to the output shaft of the motor (7), the other end of the screw plate (8) passes through the sleeve (1) and the filter cartridge (4) in sequence and extends to the inner side of the cone cartridge (5), and the outer sides of the screw plate (8) are respectively clamped on the inner walls of the sleeve (1), the filter cartridge (4) and the cone cartridge (5).

4. A split-flow water treatment device for water industry according to claim 3, characterized in that: The shunt pipe (10) is welded to the top of the card cover (3), the valve (11) is installed on the shunt pipe (10), and the shunt pipe (10) is connected to the inner side of the card cover (3).

5. A split-flow water treatment device for water industry according to claim 1, characterized in that: The card cover (3) is welded with a sealing cover (13) on all four sides, the ultraviolet lamp (14) is installed on the inner side of the sealing cover (13) by means of bolts, one end of the baffle (12) is clamped on the outer side of the filter cartridge (4), and the other end of the baffle (12) is spirally wound on the inner side of the card cover (3) and clamped on the inner wall of the card cover (3), and the baffle (12) is a quartz glass baffle.

6. A split-flow water treatment device for water industry according to claim 5, characterized in that: The inlet pipe (2) is provided with a solenoid valve (9), the guide sleeve (15) is welded to the top of the sleeve (1), and the bottom end of the guide sleeve (15) is connected to the inner side of the sleeve (1).

7. A split-flow water treatment device for water industry according to claim 6, characterized in that: A piston (16) is clamped on the inner wall of the bottom of the guide sleeve (15); the top of the piston (16) is connected to the top of the guide sleeve (15) via a spring (17); and the button (18) is mounted on the top of the guide sleeve (15) via a bolt.

8. A split-flow water treatment device for the water industry according to claim 7, characterized in that: The sleeve (1) is externally connected to a switch group, the switch group is connected to a button (18) and an ultraviolet lamp (14) via electric wires, and the button (18) is connected to a motor (7) and a solenoid valve (9) via electric wires.

Citation Information

Patent Citations

  • Shunting sewage treatment device with buffer function

    CN207659260U