Mouth wash self-making machine

By designing a mouthwash maker that includes an ozone generator and an NFC recognition module, the problem of mouthwash that is difficult to customize and control in existing technologies has been solved. It enables automatic adjustment of ozone concentration and water output according to the needs of the scenario, providing cleaning and care effects.

CN223900992UActive Publication Date: 2026-02-13ZHEJIANG DELIFU TECH CO LTD
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Patent Information

Application Number
CN202423139741.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-19
Publication Date
2026-02-13
Estimated Expiration
2034-12-19

AI Technical Summary

Technical Problem

Existing technologies lack a mouthwash device that can effectively remove bad breath, whiten teeth, and kill oral bacteria, and it is difficult to customize control according to different scenario requirements.

Method used

A mouthwash maker was designed, which includes an ozone generator, two water tanks and a pump system. Combined with an NFC identification module and a control unit, the ozone concentration and water output are controlled by a knob switch and a push-button switch to achieve automatic adjustment of different cleaning modes.

Benefits of technology

It can automatically customize ozone concentration and water output according to different scenario needs, providing the effects of removing bad breath, whitening teeth and killing bacteria, and is easy to operate and maintain.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a mouthwash self-making machine, which comprises a casing, a control part and a water outlet, the control part and the water outlet are arranged on the casing, an ozone generating device, a first water tank, a second water tank, a first water pump and a second water pump are arranged in the casing, and the ozone generating device is arranged at the bottom in the second water tank. The first water pump is connected with the first water tank and the second water tank, and the second water pump is connected with the second water tank and the water outlet; the capacity of the first water tank is larger than that of the second water tank; a cup stand is arranged at the bottom of the machine shell, an NFC recognition module is arranged in the cup stand, and the NFC recognition module, the ozone generation device, the first water pump and the second water pump are in signal connection with the control part. The utility model aims to provide a mouthwash self-making machine. The mouthwash produced by the machine has the effects of removing bad breath of a user, bleaching teeth and killing oral bacteria.
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Description

TECHNICAL FIELD

[0001] The utility model relates to oral cavity cleaning technical field, concretely relates to a mouthwash self -manufacturing machine. BACKGROUND

[0002] Because the bacteria in the oral cavity is the main pathogenic factor of causing many oral cavity diseases such as dental caries disease, periodontal disease, gingivitis, periodontitis, and the oral cavity of human is the most suitable place for the bacteria to breed. Therefore, to eliminate and prevent the diseases caused by oral hygiene, it is necessary to clean the oral hygiene in time.

[0003] Ozone mouthwash has the effect of removing oral cavity odor, tooth bleaching and killing oral cavity bacteria, has no odor, can obviously reduce the occurrence frequency of toothache for long-term use, has a good treatment effect on periodontal disease patients, and has no side effects such as oral mucosa, gum, tooth and taste abnormality, and is an ideal mouthwash for preventing and treating oral diseases. CONTENT OF THE UTILITY MODEL

[0004] The utility model discloses a kind of mouthwash self -manufacturing machines, and the mouthwash generated has the effect of removing user oral cavity odor, tooth bleaching and killing oral cavity bacteria.

[0005] In order to achieve the above purpose, the basic scheme of the utility model is as follows:

[0006] A kind of mouthwash self -manufacturing machine, including shell and control portion and water outlet set on shell, ozone generator is arranged in the shell, first water tank, second water tank, first water pump and second water pump are arranged in the shell, the ozone generator is arranged in the bottom of the second water tank, the first water pump is connected with the first water tank and second water tank, the second water pump is connected with the second water tank and water outlet;The capacity of the first water tank is greater than the second water tank;Cup holder is arranged at the bottom of the shell, NFC identification module is arranged in the cup holder, the NFC identification module, ozone generator, first water pump and second water pump are signal connected with the control portion respectively.

[0007] Compared with prior art, the mouthwash self -manufacturing machine of the application has the following beneficial effects:

[0008] 1, setting NFC identification module can automatically identify the NFC chip at the bottom end of cup, corresponding NFC chip is implanted into corresponding cup, and can be automatically customized according to the actual scene needs.

[0009] 2, every time outputting washing water, the water in the second water tank is full, the ozone content in the second water tank is changed by function selection to change the ozone content of washing water, the ozone concentration of washing water is controlled, that is, through the design of large and small water tanks, the water volume of small water tank is used up at a time, the ozone content is more easily controlled, and the customization scene is convenient.

[0010] Preferably, the control part is arranged on the front panel of the cabinet, and the water outlet is arranged below the control part.

[0011] Preferably, the control part comprises a circuit board and a rotary knob switch, a pressing switch is arranged on the rotary knob switch, the pressing switch is signal connected with the circuit board, and the NFC identification module, the ozone generating device, the first water pump and the second water pump are signal connected with the circuit board.

[0012] Beneficial effect: the technical scheme is controlled by the rotary knob switch or the pressing switch, that is, different water modes are set.

[0013] Preferably, the first water tank and the second water tank are arranged in front of and behind each other, and the bottom of each of the first water tank and the second water tank is provided with a water outlet.

[0014] Beneficial effect: the water outlet is arranged at the bottom, and the water in the water tank is more easily emptied.

[0015] Preferably, a water tank accommodating part is arranged in the cabinet, and the first water tank is arranged in the water tank accommodating part.

[0016] Beneficial effect: the first water tank can be taken out of the cabinet, and water can be replaced or cleaned.

[0017] Preferably, the water tank accommodating part is provided with an opening at the top, a cover plate is arranged at the opening of the water tank accommodating part, and the cover plate is magnetically connected with the top of the water tank accommodating part.

[0018] Beneficial effect: the cover plate is magnetically connected with the water tank accommodating part, and the cover plate is convenient to disassemble and assemble.

[0019] Preferably, a handle is arranged at the top of the first water tank.

[0020] Beneficial effect: the handle is convenient to take out the first water tank from the cabinet.

[0021] Preferably, a semislit is arranged at the top of the water tank accommodating part corresponding to the handle.

[0022] Beneficial effect: the semislit is used for accommodating the handle.

[0023] Preferably, the second water tank is designed in a shape that the lower part is wide and the upper part is narrow, and an observation window is arranged at the front of the second water tank and embedded in the cabinet.

[0024] Beneficial effect: the above design can reduce the gravity center of the second water tank after containing water, and make the product structure more stable; the design of the observation window enables the user to observe the bubbles generated in the process of generating ozone in the second water tank and the ozone water in the second water tank from the observation window.

[0025] Preferably, the bottom of the first water tank is provided with a water temperature sensor, and the bottom of the first water tank and the top and bottom of the second water tank are respectively provided with liquid level sensors; the water temperature sensor and the liquid level sensor are both signal connected with the circuit board.

[0026] Beneficial effects: the water temperature sensor can send an alarm to the control part when detecting that the water temperature exceeds 40°, the control part controls the display screen to display the alarm type, and sends an alarm sound to prompt the user to prevent scalding; meanwhile, the ozone generating device stops working. BRIEF DESCRIPTION OF DRAWINGS

[0027] Figure 1 A structure schematic view of the mouthwash self-making machine is provided for the embodiment of the utility model;

[0028] Figure 2 An explosion schematic view of the mouthwash self-making machine is provided for the embodiment of the utility model;

[0029] Figure 3 A structure schematic view of the inside of the mouthwash self-making machine is provided for the embodiment of the utility model

[0030] Figure 4 A structure schematic view of the control part is provided for the embodiment of the utility model;

[0031] Figure 5 An explosion schematic view of the cup holder is provided for the embodiment of the utility model;

[0032] Figure 6 A structure schematic view of the cover plate is provided for the embodiment of the utility model;

[0033] Figure 7 A structure schematic view of the first water tank is provided for the embodiment of the utility model;

[0034] Figure 8 A structure schematic view of the water tank containing part is provided for the embodiment of the utility model. DETAILED DESCRIPTION

[0035] The following is further described in detail through specific embodiments:

[0036] The reference signs in the drawings of the specification include: a machine shell 1, a control part 2, a water outlet 3, an ozone generating device 4, a first water tank 5, a second water tank 6, a first water pump 7, a second water pump 8, a cup holder 9, an NFC identification module 10, a circuit board 11, a knob switch 12, a press switch 13, a water tank containing part 14, a cover plate 15, a handle 16, a half groove 17, an observation window 18, a water temperature sensor 19, and a liquid level sensor 20.

[0037] As shown in the accompanying Figures 1-8As shown, the present embodiment shows a mouthwash self-making machine, which comprises a shell 1, a control part 2 and a water outlet 3 arranged on the shell 1, and an ozone generating device 4, a first water tank 5, a second water tank 6, a first water pump 7 and a second water pump 8 arranged in the shell 1. The ozone generating device 4 is arranged at the bottom of the second water tank 6. The first water pump 7 is connected with the first water tank 5 and the second water tank 6. The second water pump 8 is connected with the second water tank 6 and the water outlet 3. The capacity of the first water tank 5 is greater than that of the second water tank 6. A cup holder 9 is arranged at the bottom of the shell 1. An NFC identification module 10 is arranged in the cup holder 9. The NFC identification module 10, the ozone generating device 4, the first water pump 7 and the second water pump 8 are respectively signal connected with the control part 2.

[0038] The working principle of the mouthwash self-making machine of the present embodiment is as follows: the first water pump 7 injects the water in the first water tank 5 into the second water tank 6 and fills the second water tank 6. After a water cup with an NFC chip is placed on the cup holder 9, the NFC identification module 10 in the cup holder 9 recognizes the NFC chip. The control part 2 controls the ozone generating device 4 to generate ozone water with a certain concentration in the second water tank. Finally, the ozone water in the second water tank 6 is injected into the cup through the second water pump 8 from the water outlet 3.

[0039] The NFC identification module 10 can automatically identify the chip at the bottom end of the cup. The corresponding NFC chip is implanted with corresponding cup data. The actual scene can be automatically customized according to the actual needs. For example, large cup mode, small cup mode and dental cleaner mode. Different modes correspond to different water outputs.

[0040] By rotating the knob switch, different cleaning modes can be selected. The deep cleaning mode corresponds to an ozone concentration of 1.5 ppm-2 ppm, which is suitable for comprehensive oral care when brushing teeth, preventing tooth decay, fixing teeth, relieving inflammation and treating ulcers. The daily care mode corresponds to an ozone concentration of 0.6 ppm-1 ppm, which is suitable for oral cleaning after eating, removing bacteria and food residues on the surface of the oral cavity, and freshening breath.

[0041] The dental cleaner mode is a mode for use with a dental cleaner, and the corresponding ozone concentration is 0.6 ppm-0.8 ppm.

[0042] Each time the mouthwash is output, the water in the second water tank 6 is filled. The ozone content of the mouthwash can be changed by changing the working time of the ozone generating device 4 in the second water tank 6, so as to control the ozone concentration of the mouthwash. That is, by designing a large water tank and a small water tank, the water in the small water tank can be used up at one time, the ozone content is easier to control, and the scene is convenient to customize.

[0043] The control part 2 is arranged on the front panel of the shell 1, and the water outlet 3 is arranged below the control part 2. This design is convenient for users to receive the mouthwash.

[0044] Specifically, the control unit 2 comprises a signal-connected circuit board 11 and a knob switch 12, and a press switch 13 is arranged on the knob switch 12, and the press switch 13 is signal-connected with the circuit board 11. Specifically, the NFC identification module 10, the ozone generation device 4, the first water pump 7 and the second water pump 8 are signal-connected with the circuit board 11 respectively.

[0045] In the embodiment, different cleaning modes are set by the knob switch 12, and then the press switch 13 is pressed to confirm the drainage.

[0046] The first water tank 5 and the second water tank 6 are arranged in front of and behind each other. Compared with the up-and-down arrangement of the first water tank 5 and the second water tank 6, the front-and-back arrangement makes the center of gravity of the product lower, the structure more stable, and the height and volume of the overall equipment easier to control, thereby achieving the effect of convenient design. The bottom of the first water tank 5 and the second water tank 6 is provided with the water outlet 3. The water outlet 3 is arranged at the bottom, and the water in the water tank is more easily drained.

[0047] The water tank containing portion 14 is arranged in the shell 1, and the first water tank 5 is arranged in the water tank containing portion 14. The first water tank 5 can be taken out of the shell 1, thereby facilitating water replacement or cleaning.

[0048] Specifically, the water tank containing portion 14 is provided with an opening at the top, and the water tank containing portion 14 is provided with a cover plate 15 at the opening, and the cover plate 15 is magnetically connected with the top of the water tank containing portion 14. The cover plate 15 is used to shield dust and impurities of the first water tank 5. The cover plate 15 is magnetically connected with the water tank containing portion 14, thereby facilitating disassembly and assembly. The cover plate 15 can also be arranged above the water tank containing portion 14 by press fitting or buckle connection.

[0049] In some embodiments, the top of the first water tank 5 is provided with a handle 16, and the top of the water tank containing portion 14 is provided with a half slot 17 corresponding to the handle 16. The handle 16 facilitates the first water tank 5 to be taken out of the shell 1, and the half slot 17 is used to contain the handle 16.

[0050] The second water tank 6 has a design of being wide at the lower part and narrow at the upper part. This design can lower the center of gravity of the second water tank 6 after containing water, thereby making the product structure more stable.

[0051] An observation window 18 is arranged at the front of the second water tank 6, and the observation window 18 is embedded in the shell 1, and the outer surface of the observation window 18 is flush with the outer surface of the shell 1, thereby keeping the product beautiful. The observation window 18 is made of transparent material, and edible glass or other materials can be used. The observation window 18 allows the user to observe the bubbles generated in the process of generating ozone in the second water tank 6 and the washing water in the second water tank 6.

[0052] In some other embodiments, the first water tank 5 can be divided into multiple independent water tanks to supply water to the second water tank 6, so that when one water tank is out of water, another water tank can supply water to the second water tank 6, that is, the supply of water to the second water tank 6 is uninterrupted.

[0053] Further, the bottom of the first water tank 5 is provided with a water temperature sensor 19, and the bottom and top of the second water tank 6 are respectively provided with liquid level sensors 20; the water temperature sensor 19 and the liquid level sensor 20 are both signal connected with the circuit board 11. The water temperature sensor 19 can send an alarm to the control part 2 when the detected water temperature exceeds 40°, prompting the user to prevent scalding; at the same time, the ozone generating device 4 stops working.

[0054] The above is only an embodiment of the present application, and the well-known specific structure and characteristics and other common knowledge in the scheme are not described in detail. It should be pointed out that for those skilled in the art, without departing from the structure of the present application, a number of modifications and improvements can be made, which should also be considered as the protection scope of the present application, and these will not affect the effect and practicality of the present application. The protection scope of the present application should be subject to the content of its claims, and the specific implementation mode and the like in the specification can be used to explain the content of the claims.

Claims

1. A mouthwash maker, characterized by: The utility model provides an ozone water purifier, including casing (1) and set up on casing (1) control part (2) and water outlet (3), the casing (1) is provided with ozone generator (4), first water tank (5), second water tank (6), first water pump (7) and second water pump (8) inside, ozone generator (4) sets up in the second water tank (6) bottom, first water pump (7) connects first water tank (5) with second water tank (6), second water pump (8) connects second water tank (6) with water outlet (3), the capacity of first water tank (5) is greater than second water tank (6), the bottom of casing (1) is provided with cup holder (9), cup holder (9) is provided with NFC identification module (10) inside, NFC identification module (10), ozone generator (4), first water pump (7) and second water pump (8) are connected with control part (2) signal respectively.

2. The machine for making mouthwash according to claim 1, characterized in that: The control part (2) is arranged on the front panel of the casing (1), and the water outlet (3) is arranged below the control part (2).

3. A machine for making mouthwash according to claim 2, characterized in that: The control part (2) comprises a circuit board (11) and a rotary knob switch (12) connected by a signal, a pressing switch (13) is arranged on the rotary knob switch (12), and the pressing switch (13) is connected with the circuit board (11) by a signal; the NFC identification module (10), the ozone generator (4), the first water pump (7) and the second water pump (8) are connected with the circuit board (11) by a signal respectively.

4. The mouthwash maker of claim 1, wherein: The first water tank (5) and the second water tank (6) are arranged in front of and behind each other, and the bottom of each of the first water tank (5) and the second water tank (6) is provided with a water outlet (3).

5. A mouthwash maker as defined in claim 4, wherein: The casing (1) is provided with a water tank containing part (14), and the first water tank (5) is arranged in the water tank containing part (14).

6. A mouthwash maker as defined in claim 5, wherein: The water tank containing part (14) is provided with an opening at the top, and a cover plate (15) is arranged at the opening of the water tank containing part (14), and the cover plate (15) is magnetically connected with the top of the water tank containing part (14).

7. The machine of claim 5, wherein: A handle (16) is arranged at the top of the first water tank (5).

8. A mouthwash maker as defined in claim 7, wherein: A half groove (17) is arranged at the top of the water tank containing part (14) corresponding to the handle (16).

9. The mouthwash maker of claim 4, wherein: The second water tank (6) is designed to be wide at the bottom and narrow at the top, and an observation window (18) is arranged at the front of the second water tank (6) and embedded in the casing (1).

10. The mouthwash maker of claim 3, wherein: A water temperature sensor (19) is arranged at the bottom of the first water tank (5), and a liquid level sensor (20) is arranged at the top and the bottom of the second water tank (6) respectively, and the water temperature sensor (19) and the liquid level sensor (20) are connected with the circuit board by a signal.