Ultraviolet lamp disinfectant fluid treatment device

By incorporating silicone protrusions and connecting springs into the UV germicidal lamp assembly, along with a limiting structure, the problem of inconvenient maintenance in traditional UV lamp disinfection water treatment devices is solved, enabling rapid installation and disassembly and improving maintenance efficiency and practicality.

CN224077103UActive Publication Date: 2026-04-03SHANGHAI UCAN BIO-TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-31
Publication Date
2026-04-03

AI Technical Summary

Technical Problem

Traditional ultraviolet lamp disinfection water treatment devices are inconvenient to maintain in the food or pharmaceutical fields, resulting in low work efficiency. The way the ultraviolet lamp tubes are fixed is not easy to operate, and there are long downtime periods.

Method used

The ultraviolet germicidal lamp assembly uses a design with silicone protrusions and connecting springs to achieve quick installation and disassembly. Combined with the limiting structure of sliding blocks and limiting protrusions, the maintenance process is simplified.

Benefits of technology

This improved the maintenance efficiency of the ultraviolet lamp disinfection water treatment device, ensured the rapid replacement and cleaning of the ultraviolet lamp components, and enhanced the practicality of the device.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an ultraviolet lamp disinfectant fluid treatment device, and relates to the field of water treatment.The ultraviolet lamp disinfectant fluid treatment device comprises a water treatment cavity, mounting shells are mounted at the two ends of the water treatment cavity correspondingly, ultraviolet germicidal lamp assemblies are mounted at one ends of the interiors of the mounting shells at equal intervals, and silica gel protruding blocks are inserted into the four corners of one end of each ultraviolet germicidal lamp assembly correspondingly; the silica gel protruding block is installed at one end of the movable column, and one end of the movable column is movably connected to the interior of one end of the installation sleeve. According to the water treatment device, the arranged ultraviolet sterilization lamp assembly is utilized, so that in the using process, liquid needing water treatment is subjected to ultraviolet treatment through the ultraviolet sterilization lamp assembly from top to bottom and from bottom to top, and then various microorganisms such as bacteria, viruses and fungi are rapidly killed; and when the ultraviolet germicidal lamp assembly is maintained subsequently, the traditional bolt fixing mode is abandoned due to the mounting and limiting mode of the ultraviolet germicidal lamp assembly.
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Description

Technical Field

[0001] This application relates to the field of water treatment, and in particular to a water treatment device for ultraviolet lamp disinfection. Background Technology

[0002] Water treatment refers to the process of purifying, softening, disinfecting, and desalinating water through a series of technologies and processes to meet the water quality requirements for different purposes. Ultraviolet light is often used to irradiate the liquid that needs to be treated to complete the ultraviolet disinfection treatment. However, ultraviolet lamps require regular maintenance, and ultraviolet lamp disinfection water treatment devices are used more frequently in the food or pharmaceutical fields.

[0003] A search revealed a drinking water treatment and disinfection device (publication number: CN221500706U) in Chinese patent literature, but it still has the following defects:

[0004] While the aforementioned drinking water treatment and disinfection device allows for convenient installation and removal of the ultraviolet (UV) lamps by using mounting brackets and inserts to connect them to the housing, facilitating easy replacement and cleaning during use and preventing corrosion and damage, thus extending the lamps' lifespan, it still presents challenges. In the food and pharmaceutical industries, UV lamps are used more frequently, and traditional UV lamps are often fixed with bolts or other fasteners. This makes maintenance difficult, resulting in inefficient operation and extended downtime. Utility Model Content

[0005] In order to improve the situation where ultraviolet lamp disinfection water treatment devices are used more frequently in the food or pharmaceutical fields, and where the ultraviolet lamps in traditional ultraviolet lamp disinfection water treatment devices are often fixed by bolts or other fasteners, making it difficult to operate when maintenance is needed, resulting in poor work efficiency and long downtime, this application provides an ultraviolet lamp disinfection water treatment device.

[0006] The ultraviolet lamp disinfection water treatment device provided in this application adopts the following technical solution:

[0007] A water treatment device for ultraviolet (UV) disinfection includes a water treatment chamber. Both ends of the water treatment chamber are fitted with mounting housings. UV germicidal lamp assemblies are evenly spaced and installed inside one end of each mounting housing. Silicone protrusions are inserted into the four corners of one end of each UV germicidal lamp assembly, and these protrusions are mounted on one end of a movable column. One end of the movable column is movably connected to the inside of one end of a mounting sleeve. A connecting spring is installed inside one end of the mounting sleeve, and one end of the connecting spring is connected to one end of the movable column. An insulating pad is installed at one end of the mounting sleeve, and one end of the insulating pad abuts against one end of the UV germicidal lamp assembly.

[0008] By adopting the above technical solution and using the ultraviolet germicidal lamp assembly, the ultraviolet light generated by the assembly is used to treat the water during use. When maintenance is required, pressing the silicone protrusion causes the connecting spring to retract, thereby separating it from the mounting hole. This allows for quick separation of the ultraviolet germicidal lamp assembly from the interior of the mounting housing, making it easier to clean, maintain, and replace the ultraviolet germicidal lamp assembly.

[0009] Preferably, a connecting plate is installed at one end of each of the mounting housings, and a sliding block is installed at the other end of each connecting plate. The sliding blocks are movably connected inside the sliding groove, which is installed on the outer wall of the water treatment chamber.

[0010] By adopting the above technical solution, the sliding block is inserted into the interior of the sliding groove, and then works with the connecting plate to limit the position of the mounting housing.

[0011] Preferably, a first limiting protrusion is installed at equal intervals at one end of the inner side of the sliding groove, and the outer side wall of the first limiting protrusion abuts against the outer side wall of the second limiting protrusion.

[0012] By adopting the above technical solution, the outer wall of the first limiting protrusion abuts against the outer wall of the second limiting protrusion, thereby limiting the sliding block that slides into the sliding groove.

[0013] Preferably, the second limiting protrusions are installed at equal intervals at one end of the flexible sheet, and the flexible sheet is installed inside the groove, which is formed inside one end of the sliding block.

[0014] By adopting the above technical solution and utilizing the characteristics of the flexible sheet, the second limiting protrusion can be reset.

[0015] Preferably, a transparent plate is installed through the bottom of the water treatment chamber, and a circulation pipe is installed inside the water treatment chamber, the circulation pipe being configured in a serpentine structure.

[0016] By adopting the above technical solution, the circulating pipe is designed with a serpentine structure, which ensures that the liquid to be treated is fully heated.

[0017] Preferably, a storage box is installed at the front end of the water treatment chamber, and an electric heater is installed at the top of the storage box. Both sides of the water treatment chamber are connected to one end of a water pump through transmission pipes, and the other end of the water pump is connected to the input end and return end of the circulation pipe through transmission pipes respectively.

[0018] By adopting the above technical solution, the liquid stored inside the storage tank is heated by an electric heater, and then the liquid in the circulation pipe is circulated by a water pump.

[0019] Preferably, a limiting frame is installed on the outer wall of the water treatment chamber, and one end of the limiting frame abuts against the outer wall of the mounting housing. A flexible baffle is installed inside one end of the limiting frame, and the outer wall of the flexible baffle abuts against the outer wall of the mounting housing.

[0020] By adopting the above technical solution, the mounting housing is limited by the limiting frame, and the gap between the mounting housing and the water treatment chamber is sealed and protected by the limiting frame and the flexible baffle.

[0021] Preferably, connectors are provided on both sides of the water treatment chamber, and an installation ring is installed at one end of each connector. A wrapping balloon is installed on the inner side wall of each installation ring, and a silicone anti-slip pad is installed on the outer side wall of the wrapping balloon away from the installation ring.

[0022] By adopting the above technical solution and using the encapsulated balloon, the encapsulated balloon can be wrapped around the outer wall of the connecting tube, thereby ensuring its stability during transmission.

[0023] In summary, this application includes at least one of the following beneficial technical effects:

[0024] 1. Utilizing the specially designed ultraviolet germicidal lamp assembly, the liquid requiring water treatment is treated with ultraviolet light from both top to bottom and bottom to top during use, thereby quickly eliminating various bacteria, viruses, fungi, and other microorganisms. During subsequent maintenance of the ultraviolet germicidal lamp assembly, the installation limiting method abandons the traditional bolt fixing method. Instead, the potential energy released by the connecting spring drives a silicone protrusion to engage inside the mounting hole. Using this method, when maintenance is needed, pressing the silicone protrusion causes the connecting spring to retract, thus separating it from the mounting hole. This allows for quick separation of the ultraviolet germicidal lamp assembly from the mounting housing, making cleaning, maintenance, and replacement of the ultraviolet germicidal lamp assembly more convenient.

[0025] 2. Water circulation is achieved using a storage tank and circulation pipe. Water pumps on both sides work in conjunction with the circulation pipe to circulate the liquid inside the storage tank. The circulation pipe then heats the water treatment chamber. During the water treatment process, the liquid inside the water treatment chamber is heated to 20-30℃. At this temperature, the ultraviolet sterilization effect is better, avoiding the problem of insufficient ultraviolet penetration caused by excessively low water temperature. This improves the practicality of the device. Attached Figure Description

[0026] Figure 1 This is a schematic diagram of the main structure of this utility model;

[0027] Figure 2 This is a schematic diagram of the combined parts structure of the mounting shell, ultraviolet germicidal lamp assembly, silicone protrusion, connecting plate and sliding block in this utility model;

[0028] Figure 3 This is a schematic diagram of the disassembled parts structure of the silicone protrusion, movable column, mounting sleeve, connecting spring and insulating pad in this utility model;

[0029] Figure 4 This is a cross-sectional structural diagram of the water treatment chamber of this utility model;

[0030] Figure 5 This is a schematic diagram of the combined parts structure of the connector, mounting ring, enclosing balloon and silicone anti-slip pad in this utility model;

[0031] Figure 6 For practical purposes Figure 1 Enlarged structural diagram of part A in the diagram.

[0032] Reference numerals: 1. Water treatment chamber; 2. Mounting housing; 3. Ultraviolet germicidal lamp assembly; 4. Silicone protrusion; 5. Movable column; 6. Mounting sleeve; 7. Connecting spring; 8. Insulating pad; 9. Connecting plate; 10. Sliding block;

[0033] 11. Sliding groove; 12. First limiting protrusion; 13. Second limiting protrusion; 14. Flexible sheet; 15. Transparent plate; 16. Circulation pipe; 17. Storage box; 18. Electric heater; 19. Water pump; 20. Limiting frame;

[0034] 21. Flexible baffle; 22. Connector; 23. Mounting ring; 24. Encasing balloon; 25. Silicone anti-slip pad. Detailed Implementation

[0035] The following is in conjunction with the appendix Figures 1-6 This application will be described in further detail.

[0036] This application discloses an ultraviolet lamp disinfection water treatment device.

[0037] Reference Figure 1 , Figure 4 A water treatment device for ultraviolet lamp disinfection includes a water treatment chamber 1. A transparent plate 15, made of quartz glass, is fixedly connected through the bottom of the water treatment chamber 1. A serpentine circulation pipe 16 is fixedly connected inside the water treatment chamber 1. The input end of the circulation pipe 16 is connected to the output flange of a water pump 19 located on the right side of a storage tank 17. The return end of the circulation pipe 16 is connected to the input flange of a water pump 19 located on the left side of the storage tank 17. The storage tank 17 is fixedly connected to the front surface of the water treatment chamber 1. An electric heater 18 is fixedly connected to the top of the water treatment chamber 1. The two sides of the storage tank 17 are respectively connected to the output flange of the left water pump 19 and the input flange of the right water pump 19 through transmission pipes.

[0038] During the water treatment process, the storage tank 17 is set up so that the liquid inside the storage tank 17 is heated to a certain temperature by the electric heater 18 during use. Then, the liquid inside the storage tank 17 is circulated by the water pumps 19 on both sides in conjunction with the circulation pipe 16. In turn, the water treatment chamber 1 is heated by the circulation pipe 16. In this way, during the water treatment process, the liquid inside the water treatment chamber 1 is heated to a certain temperature, which effectively improves the sterilization effect of the ultraviolet germicidal lamp assembly 3.

[0039] Reference Figure 1 and Figure 2 Both sides of the water treatment chamber 1 are fixedly connected to sliding grooves 11, and sliding blocks 10 are movably connected through the inside of the sliding grooves 11. One end of the sliding block 10 is provided with a groove, and a flexible sheet 14 is fixedly connected inside the groove. One end of the flexible sheet 14 is fixedly connected with a second limiting protrusion 13 with a semi-cylindrical structure at equal intervals. The outer wall of the second limiting protrusion 13 abuts against the outer wall of the first limiting protrusion 12 with a semi-cylindrical structure. The first limiting protrusion 12 is fixedly connected at equal intervals to one end of the sliding groove 11. The end of the sliding block 10 away from the groove is fixedly connected to a connecting plate 9 with an "L"-shaped structure. The connecting plate 9 is fixedly connected to the outer wall of the bottom or top of the water treatment chamber 1 with a mounting housing 2. Several ultraviolet germicidal lamp assemblies 3 are installed at equal intervals inside one end of the mounting housing 2.

[0040] The ultraviolet germicidal lamp assembly 3 can perform ultraviolet sterilization on the liquid that needs to be treated during use. During the installation of the housing 2, the sliding block 10 is moved into the sliding groove 11 and is fixed by the second limiting protrusion 13 and the outer wall of the first limiting protrusion 12. In this way, since the ultraviolet germicidal lamp assembly 3 is maintained more frequently, the housing 2 can be quickly separated from the top and bottom of the water treatment chamber 1 during maintenance.

[0041] Reference Figures 1-3 The UV germicidal lamp assembly 3 has mounting holes at all four corners of one end, and silicone protrusions 4 are snapped into the inside of each mounting hole. The silicone protrusions 4 are fixedly connected to one end of the movable column 5, and the other end of the movable column 5 is movably connected to the inside of one end of the mounting sleeve 6. One end of the mounting sleeve 6 is fixedly connected to the inside of the mounting housing 2, and a connecting spring 7 is fixedly connected to one end of the mounting sleeve 6. One end of the connecting spring 7 is fixedly connected to one end of the movable column 5 inside the mounting sleeve 6. An insulating pad 8 is fixedly connected to one end of the mounting sleeve 6, and the end of the insulating pad 8 away from the mounting sleeve 6 abuts against one end of the UV germicidal lamp assembly 3.

[0042] During the installation of the ultraviolet germicidal lamp assembly 3, one end of the insulating pad 8 abuts against one end of the ultraviolet germicidal lamp assembly 3, and the potential energy released by the connecting spring 7 drives the silicone protrusion 4 to engage inside the mounting hole, thereby installing the ultraviolet germicidal lamp assembly 3 into the mounting housing 2. When maintenance is required, pressing the silicone protrusion 4 causes the connecting spring 7 to retract, thereby separating it from the mounting hole. This allows for quick separation of the ultraviolet germicidal lamp assembly 3 from the mounting housing 2, making it easier to clean, maintain, and replace the ultraviolet germicidal lamp assembly 3.

[0043] Reference Figure 1 and Figure 4 The outer walls of the water treatment chamber 1 are all fixedly connected with a concave-shaped limiting frame 20, and one end of the limiting frame 20 is fixedly connected with a flexible baffle 21. The output and input ends on both sides of the water treatment chamber 1 are flanged and connected with connectors 22. One end of the connector 22 is fixedly connected with a ring-shaped mounting ring 23. The inner wall of the mounting ring 23 is fixedly connected with a ring-shaped wrapping balloon 24. The outer wall of the wrapping balloon 24 away from the mounting ring 23 is fixedly connected with a silicone anti-slip pad 25.

[0044] With the setting of the limiting frame 20, when the mounting housing 2 is installed at the top or bottom of the water treatment chamber 1, the limiting frame 20 limits the mounting housing 2. The limiting frame 20, together with the flexible baffle 21, prevents the leakage of ultraviolet light source at the connection between the mounting housing 2 and the water treatment chamber 1. At the same time, when the mounting housing 2 moves and separates from the water treatment chamber 1, the flexible baffle 21 can deform, thereby effectively ensuring the safety of operation. In addition, after the connector 22 is flanged and connected to the connecting pipe, the wrapping balloon 24 is wrapped around the outer wall of the connecting pipe to avoid the phenomenon of instability at the connection due to excessive flow.

[0045] The implementation principle of the ultraviolet lamp disinfection water treatment device in this application embodiment is as follows: First, the connector 22 is connected to the connecting pipe by a flange, and the connecting pipe is wrapped with a wrapping balloon 24.

[0046] Secondly, the ultraviolet germicidal lamp assembly 3 is set up to perform ultraviolet sterilization on the liquid that needs to be treated from top to bottom and from bottom to top. The liquid inside the storage tank 17 is heated to a certain temperature by the electric heater 18 and then transferred to the circulation pipe 16. The circulation pipe 16 then heats the water treatment chamber 1. In this way, during the water treatment process, the liquid inside the water treatment chamber 1 is heated to a certain temperature.

[0047] Subsequently, during subsequent maintenance, since the installation method of the housing 2 is to move the sliding block 10 into the sliding groove 11 and to abut against the outer wall of the second limiting protrusion 13 and the first limiting protrusion 12, the sliding block 10 that moves into the sliding groove 11 is limited and fixed, which facilitates the subsequent separation of the housing 2 from the top and bottom of the water treatment chamber 1.

[0048] Finally, when maintenance is required, press the silicone protrusion 4 to retract the connecting spring 7, thereby separating it from the mounting hole. This allows the UV germicidal lamp assembly 3 to be quickly separated from the interior of the mounting housing 2, thus completing the use of the UV lamp disinfection water treatment device.

[0049] The above are merely optional embodiments of this disclosure and are not intended to limit this disclosure. Various modifications and variations can be made to this disclosure by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this disclosure should be included within the scope of protection of this disclosure.

Claims

1. A water treatment device for ultraviolet lamp disinfection, characterized in that: The device includes a water treatment chamber (1), both ends of which are equipped with mounting housings (2). Ultraviolet germicidal lamp assemblies (3) are installed at equal intervals inside one end of the mounting housings (2). Silicone protrusions (4) are inserted into the four corners of one end of the ultraviolet germicidal lamp assembly (3). The silicone protrusions (4) are installed at one end of a movable column (5). One end of the movable column (5) is movably connected to the inside of one end of a mounting sleeve (6). A connecting spring (7) is installed inside one end of the mounting sleeve (6). One end of the connecting spring (7) is connected to one end of the movable column (5). An insulating pad (8) is installed at one end of the mounting sleeve (6). One end of the insulating pad (8) abuts against one end of the ultraviolet germicidal lamp assembly (3).

2. The ultraviolet lamp disinfection water treatment device according to claim 1, characterized in that: One end of the mounting housing (2) is equipped with a connecting plate (9), and the other end of the connecting plate (9) is equipped with a sliding block (10). The sliding blocks (10) are movably connected inside the sliding groove (11), which is installed on the outer wall of the water treatment chamber (1).

3. The ultraviolet lamp disinfection water treatment device according to claim 2, characterized in that: The sliding groove (11) has a first limiting protrusion (12) installed at equal intervals at one end, and the outer wall of the first limiting protrusion (12) abuts against the outer wall of the second limiting protrusion (13).

4. The ultraviolet lamp disinfection water treatment device according to claim 3, characterized in that: The second limiting protrusion (13) is installed at equal intervals at one end of the flexible sheet (14), and the flexible sheet (14) is installed inside the groove, which is opened inside one end of the sliding block (10).

5. The ultraviolet lamp disinfection water treatment device according to claim 1, characterized in that: A transparent plate (15) is installed through the bottom of the water treatment chamber (1), and a circulation pipe (16) is installed inside the water treatment chamber (1), the circulation pipe (16) being arranged in a serpentine structure.

6. The ultraviolet lamp disinfection water treatment device according to claim 1, characterized in that: The front end of the water treatment chamber (1) is equipped with a storage box (17), and the top of the storage box (17) is equipped with an electric heater (18). Both sides of the water treatment chamber (1) are connected to one end of the water pump (19) through transmission pipes, and the other end of the water pump (19) is connected to the input end and return end of the circulation pipe (16) through transmission pipes respectively.

7. The ultraviolet lamp disinfection water treatment device according to claim 1, characterized in that: The outer walls of the water treatment chamber (1) are all equipped with limiting frames (20), and one end of the limiting frame (20) abuts against the outer wall of the mounting housing (2). A flexible baffle (21) is installed inside one end of the limiting frame (20), and the outer wall of the flexible baffle (21) abuts against the outer wall of the mounting housing (2).

8. The ultraviolet lamp disinfection water treatment device according to claim 1, characterized in that: Both sides of the water treatment chamber (1) are provided with connectors (22), and one end of each connector (22) is equipped with an installation ring (23). The inner sidewall of the installation ring (23) is equipped with a wrapping balloon (24), and the outer sidewall of the wrapping balloon (24) away from the installation ring (23) is equipped with a silicone anti-slip pad (25).

Citation Information

Patent Citations

  • Drinking water treatment and disinfection device

    CN221500706U