Ozone disinfection device

By introducing a power generation device, battery, and water separator into the ozone disinfection device, the problem of insufficient ozone generation caused by insufficient water flow is solved, enabling flexible control of the disinfection effect under different water flow rates, and ensuring effective disinfection and water output at high water flow rates.

CN223547803UActive Publication Date: 2025-11-14ZHONGRUI GUONENG TECH (DONGGUAN) CO LTD
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Patent Information

Application Number
CN202422988451.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-04
Publication Date
2025-11-14
Estimated Expiration
2034-12-04

AI Technical Summary

Technical Problem

Existing ozone water disinfection machines generate insufficient power when the water flow is low, resulting in insufficient ozone production and ineffective disinfection. Furthermore, when a large water flow is required, the output water is reduced to meet the disinfection needs.

Method used

The system employs a combination of a power generation device, a battery, and an ozone generator, along with a water separator to control the water flow direction. The power generation device stores electricity at low flow rates, while the battery provides power to the ozone generator when needed, ensuring that the ozone generator can operate normally when required.

Benefits of technology

The disinfection effect can be flexibly controlled under different water flow rates, avoiding the problem of insufficient power supply from the generator, ensuring effective disinfection even at high water flow rates, and not affecting the output water volume.

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Abstract

The utility model discloses an ozone disinfection device which comprises a power generation device, a battery and an ozone generator, the battery is respectively connected with the power generation device and the ozone generator, the power generation device is provided with a first water inlet and a first water outlet, and the ozone generator is provided with a second water inlet and a second water outlet. The ozone disinfection device further comprises a water separator, the water separator is provided with a separation assembly, a first channel, a second channel and a third channel, one end of the first channel is connected with the first water outlet, the other end of the first channel is communicated with an inlet of the separation assembly, one end of the second channel is connected with the second water inlet, and the other end of the second channel is communicated with the third channel. The other end of the second channel is connected with a first outlet of the separation assembly, the second channel and the third channel are in an open or closed state by controlling the separation assembly, when the ozone generator is not used, electric power generated by the power generation device is stored in the battery, and when the ozone generator is used, the battery provides electric power for the ozone generator. And the condition of insufficient power of the ozone generator is avoided.
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Description

Technical Field

[0001] This utility model relates to the field of ozone disinfection, and in particular to an ozone disinfection device. Background Technology

[0002] In recent years, with increasing attention to food safety and hygiene standards, ozone water sterilizers have been widely used in food processing, catering services, medical and health fields. Since ozone water sterilizers are typically used at faucets, external power supplies are prone to leakage. In a patent application with application number 200420012385.5, a turbine device is installed in the water channel, with a generator located beside it. The turbine device drives the generator to generate electricity, and the generator's power output is connected to an ozone generator. The ozone generator then uses this electricity to produce ozone. However, when the water flow is low, the power generation is low, resulting in insufficient power supply from the generator. The ozone generator will not be able to produce enough ozone to disinfect the water. Furthermore, to achieve disinfection, the water flow rate is usually reduced. However, in special usage scenarios, users may require a higher water flow rate to meet their needs. Utility Model Content

[0003] The purpose of this invention is to provide an ozone disinfection device to solve the problems mentioned in the background art.

[0004] To achieve the above objectives, this utility model provides the following technical solution:

[0005] An ozone disinfection device is provided, comprising a power generation device, a battery, and an ozone generator. The battery is connected to both the power generation device and the ozone generator. The power generation device has a first water inlet and a first water outlet. The ozone generator has a second water inlet and a second water outlet. The ozone disinfection device further includes a water separator, which has a separation component, a first channel, a second channel, and a third channel. One end of the first channel is connected to the first water outlet, and the other end of the first channel is connected to the inlet of the separation component. One end of the second channel is connected to the second water inlet, and the other end of the second channel is connected to the first outlet of the separation component. The second and third channels are opened or closed by controlling the separation component.

[0006] Furthermore, the battery is electrically connected to a charging port.

[0007] Furthermore, the ozone disinfection device also includes a housing that encloses the battery, power generation device, and ozone generator.

[0008] Furthermore, the inner wall of the housing is provided with a first fixing member and a second fixing member, and the power generation device and the ozone generator are respectively fixed to the first fixing member and the second fixing member.

[0009] Furthermore, the separation assembly includes a separation plate with two through holes corresponding to the second channel and the third channel, respectively. The separation assembly also includes a rotating rod and a rotating shaft. The rotating rod is provided with a spring bead for blocking one of the through holes. The rotating rod is fixed to the outer wall of the rotating shaft. The water separator is provided with a rotating hole for the rotating shaft to rotate.

[0010] Furthermore, the ozone disinfection device also includes a water outlet component, which is connected to a second water outlet.

[0011] Furthermore, the water outlet assembly includes a rotating head connector, a second sealing ring, an adapter, and a spray head, which are connected in sequence, and the rotating head connector is connected to the second water outlet.

[0012] Furthermore, the power generation device is a turbine generator, and the first water inlet is directly opposite the turbine generator's rotor.

[0013] Furthermore, the ozone generator is equipped with a detection and control component, which is connected to the battery and performs water flow detection at the second water inlet.

[0014] Compared with the prior art, the beneficial effects of this utility model are:

[0015] This utility model provides an ozone disinfection device, which includes a water separator between a power generation device and an ozone generator. The water separator controls the water flow direction, allowing for flexible control over whether to disinfect the water. When the ozone generator is not in use, the electricity generated by the power generation device is stored in a battery. When the ozone generator is in use, the battery provides power to the ozone generator to disinfect the water, effectively reducing the possibility of insufficient power in the ozone generator. Attached Figure Description

[0016] Figure 1 This is an overall structural diagram of the present invention;

[0017] Figure 2 This is an exploded view of the present invention;

[0018] Figure 3 This is a diagram showing the internal structure of the water separator of this utility model;

[0019] The components in the attached diagram are labeled as follows: 1. Housing; 101. Front housing; 102. Rear housing; 103. Perforation; 2. First sealing ring; 3. Generator; 4. Fourth fixing component; 5. Bolt; 6. Battery; 7. Charging port; 8. First fixing component; 9. Second fixing component; 10. Third fixing component; 11. Detection and control assembly; 12. Ozone generator; 13. Water outlet assembly; 1301. Rotary head connector; 1302. Second sealing ring; 1303. Adapter; 1304. Spray head; 14. Water separator; 1401. Rotating rod; 1402. Spring bead; 1403. Rotating shaft; 1404. Rotating hole; 1405. Separating plate; 15. Light panel. Detailed Implementation

[0020] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments. For clarity, many practical details will be described in the following description. However, it should be understood that these practical details should not be used to limit the present application. That is, in some embodiments of the present application, these practical details are not necessary. In addition, for the sake of simplifying the drawings, some conventional structures and components will be shown in a simple schematic manner in the drawings.

[0021] It should be noted that all directional indications in the embodiments of this application, such as up, down, left, right, front, back, etc., are only used to explain the relative positional relationship and movement of the components in a specific posture as shown in the attached figure. If the specific posture changes, the directional indication will also change accordingly.

[0022] Furthermore, the use of terms such as "first" and "second" in this application is for descriptive purposes only and does not specifically refer to any order or sequence, nor is it intended to limit this application. They are merely used to distinguish components or operations described using the same technical terms and should not be construed as indicating or implying relative importance or implicitly specifying the number of indicated technical features. Therefore, a feature defined with "first" or "second" may explicitly or implicitly include at least one of those features. Additionally, the technical solutions of various embodiments can be combined with each other, but only if they are feasible for those skilled in the art. If a combination of technical solutions is contradictory or impossible to implement, it should be considered that such a combination of technical solutions does not exist and is not within the scope of protection claimed in this application.

[0023] To further understand the utility model content, features and effects of this application, the following embodiments are provided, and detailed descriptions are given in conjunction with the accompanying drawings.

[0024] Please see Figures 1 to 3An ozone disinfection device is provided, including a power generation device 3, a battery 6, and an ozone generator 12. The battery 6 is connected to both the power generation device 3 and the ozone generator 12. The power generation device 3 has a first inlet and a first outlet. The ozone generator 12 has a second inlet and a second outlet. The ozone disinfection device also includes a water separator 14. The battery 6 can supply power to the water separator 14. The water separator 14 has a separation component, a first channel, a second channel, and a third channel. One end of the first channel is connected to the first outlet, and the other end of the first channel is connected to the inlet of the separation component. One end of the second channel is connected to the second inlet, and the other end of the second channel is connected to the first outlet of the separation component. One end of the third channel is connected to the second outlet of the separation component. The second and third channels can be opened or closed by controlling the separation component. In use, the first inlet is connected to an external water supply pipe, and water flows in through the first inlet. The power generation device 3 generates electricity through the flow of water and stores the electricity in the battery 6. Then, the water flows into the first channel through the first outlet and passes through the separation component. The separation component opens the second or third channel. When the separation component opens the second channel, the water flows into the second inlet through the second channel. The ozone generator 12 disinfects the water flowing in from the second inlet. After disinfection, the water flows out through the second outlet. When the separation component opens the third channel, the water flows out directly from the third channel. Users can control whether the water needs to pass through the ozone generator 12 according to their own needs through the water separator 14.

[0025] Specifically, the battery 6 is electrically connected to a charging port 7. This structural design allows the battery 6 to be charged not only by the generator 3 but also by an external power source. The charging port 7 can be a magnetic charging port, providing good waterproof and leakage-proof performance.

[0026] Specifically, the ozone disinfection device further includes a housing 1, which encloses the battery 6, the power generation device 3, and the ozone generator 12. The housing 1 protects the battery 6, the power generation device 3, and the ozone generator 12. The housing 1 has three through holes corresponding to the first water inlet, the second water outlet, and the third channel, respectively. The first water inlet, the second water outlet, and the third channel are respectively located in the three through holes.

[0027] More specifically, the inner wall of the housing 1 is provided with a first fixing member 8, a second fixing member 9, a third fixing member 10 and a fourth fixing member 4, the ozone generator 12 is provided with a detection and control component 11, the detection and control component 11 is connected to the battery 6 and detects the water flow at the second water inlet, and the power generation device 3, the ozone generator 12, the detection and control component 11 and the battery 6 are respectively fixed to the first fixing member 8, the second fixing member 9, the third fixing member 10 and the fourth fixing member 4. The first fixing member 8, the second fixing member 9, the third fixing member 10, and the fourth fixing member 4 secure the power generation device 3, the ozone generator 12, the detection and control component 11, and the battery 6, preventing them from shaking or shifting within the housing 1. When the detection and control component 11 detects water flowing into the ozone generator 12, it activates the ozone generator 12 to disinfect the water. If no water flows into the ozone generator 12, it shuts it off to save power. The housing 1 includes a front shell 101 and a rear shell 102. The rear shell 102 is connected by bolts 5. A first sealing ring 2 is provided at the connection between the front shell 101 and the rear shell 102. The first sealing ring 2 seals the gap between the front shell 101 and the rear shell 102. During maintenance, the front shell 101 and the rear shell 102 can be separated by disassembling the bolts 5 to maintain the power generation device 3, the ozone generator 12, the detection and control component 11, and the battery 6. The ozone generator 12 is also equipped with a light panel 15, which is connected to the detection and control component 11. When water flow is detected at the second water inlet, the light panel 15 and the ozone generator 12 are activated to indicate to the user that the ozone generator 12 is working.

[0028] Specifically, the separation assembly includes a separation plate 1405, which has two through holes corresponding to the second channel and the third channel, respectively. The separation assembly also includes a rotating rod 1401 and a rotating shaft 1403. The rotating rod 1401 is provided with a spring bead 1402 for sealing one of the through holes. The rotating rod 1401 rotates around the rotating shaft 1403 so that the spring bead 1402 seals one of the through holes. The water separator 14 is provided with a rotating hole 1404 for the rotating shaft 1403 to rotate. The housing 1 is provided with a through hole 103. The rotating rod 1401 extends out of the housing 1 through the through hole 103 and can swing within the through hole 103. The through hole 103 is an arc-shaped hole. The rotating rod 1401 is fixed to the outer wall of the rotating shaft 1403. By moving the rotating rod 1401, the rotating shaft 1403 is driven to rotate. The spring ball 1402 on the rotating rod 1401 is below the separating plate 1405. When the spring ball 1402 rotates to the through hole, the ball of the spring ball 1402 extends into the corresponding through hole and seals the through hole. When it rotates to contact the bottom surface of the separating plate 1405, the ball of the spring ball 1402 is compressed. The direction of water flow is controlled by sealing one of the through holes through the back and forth rotation of the spring ball 1402.

[0029] Specifically, the ozone disinfection device further includes a water outlet assembly 13, which is connected to the second water outlet. The water outlet assembly 13 can be added or removed according to actual needs, and it serves to seal and change the direction of water flow.

[0030] More specifically, the water outlet assembly 13 includes a rotating connector 1301, a second sealing ring 1302, an adapter 1303, and a spray head 1304. The rotating connector 1301, second sealing ring 1302, adapter 1303, and spray head 1304 are connected sequentially. The rotating connector 1301 is connected to the second water outlet. When water flows out of the second water outlet, it passes sequentially through the rotating connector 1301, second sealing ring 1302, adapter 1303, and spray head 1304. The second sealing ring 1302 seals the connection between the rotating connector 1301 and adapter 1303, and the spray head 1304 can change the direction of water flow.

[0031] Specifically, the power generation device 3 is a turbine generator, and the first water inlet is directly opposite the turbine generator's impeller. The water flow impacts the impeller, causing it to rotate and generate electricity.

[0032] In use, the first inlet of the power generation device 3 is connected to an external faucet pipe. If water disinfection is required, the rotating rod 1401 is turned so that the spring ball 1402 seals the through hole on the separating plate 1405 corresponding to the third channel. If water disinfection is not required, the rotating rod 1401 is turned in the opposite direction so that the spring ball 1402 seals the through hole on the separating plate 1405 corresponding to the second channel. Then, the external faucet pipe is opened, and water flows into the power generation device 3 from the first inlet. The power generation device 3 is a turbine generator. The water flow impacts the rotor to drive the rotor to rotate and generate electricity, which is stored in the battery 6. Subsequently, water flows out from the first outlet. The water flows into the first channel of the water separator 14, and then into the second or third channel through the through hole on the separator 1405 that is not sealed by the spring bead 1402. If it flows into the second channel, the water enters the ozone generator 12. After the detection and control component 11 detects the water flow, it starts the ozone generator 12 and the light panel 15. The ozone generator 12 disinfects the water flow with the power provided by the battery 6, and the light panel 15 indicates that the ozone generator 12 is working. After disinfection, the water is discharged from the water outlet component 13. If it flows into the third channel, the water is discharged directly from the third channel. This utility model is convenient to use and can control whether the water flow is disinfected according to the needs.

[0033] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.

Claims

1. An ozone disinfection device, comprising a power generation device (3), a battery (6), and an ozone generator (12), wherein the battery (6) is connected to the power generation device (3) and the ozone generator (12) respectively, characterized in that: The power generation device (3) is provided with a first water inlet and a first water outlet. The ozone generator (12) is provided with a second water inlet and a second water outlet. The ozone disinfection device also includes a water separator (14). The water separator (14) is provided with a separation component, a first channel, a second channel and a third channel. One end of the first channel is connected to the first water outlet, and the other end of the first channel is connected to the inlet of the separation component. One end of the second channel is connected to the second water inlet, and the other end of the second channel is connected to the first outlet of the separation component. The second channel and the third channel are opened or closed by controlling the separation component.

2. The ozone disinfection device according to claim 1, characterized in that: The battery (6) is electrically connected to a charging port (7).

3. The ozone disinfection device according to claim 1, characterized in that: The ozone disinfection device also includes a housing (1), which is wrapped around the battery (6), the power generation device (3) and the ozone generator (12).

4. An ozone disinfection device according to claim 3, characterized in that: The inner wall of the housing (1) is provided with a first fixing member (8) and a second fixing member (9), and the power generation device (3) and the ozone generator (12) are respectively fixed to the first fixing member (8) and the second fixing member (9).

5. The ozone disinfection device according to claim 1, characterized in that: The separation assembly includes a separation plate (1405) with two through holes corresponding to the second channel and the third channel, respectively. The separation assembly also includes a rotating rod (1401) and a rotating shaft (1403). The rotating rod (1401) is provided with a spring bead (1402) for blocking one of the through holes. The rotating rod (1401) is fixed to the outer wall of the rotating shaft (1403). The water separator (14) is provided with a rotating hole (1404) for the rotating shaft (1403) to rotate.

6. The ozone disinfection device according to claim 1, characterized in that: The ozone disinfection device also includes a water outlet component (13), which is connected to the second water outlet.

7. An ozone disinfection device according to claim 6, characterized in that: The water outlet assembly (13) includes a rotary connector (1301), a second sealing ring (1302), an adapter (1303), and a spray head (1304). The rotary connector (1301), the second sealing ring (1302), the adapter (1303), and the spray head (1304) are connected in sequence. The rotary connector (1301) is connected to the second water outlet.

8. An ozone disinfection device according to claim 1, characterized in that: The power generation device (3) is a turbine generator, and the first water inlet is directly opposite the turbine generator's rotor.

9. An ozone disinfection device according to claim 1, characterized in that: The ozone generator (12) is equipped with a detection and control component (11), which is connected to the battery (6) and performs water flow detection on the second water inlet.

Citation Information

Patent Citations

  • Self-generating type ozone water generator

    CN2732728Y