Special toothbrush equipment for orthodontic patient

By combining an ultrasonic toothbrush with a water-air pump, the problem of toothbrush bristles getting caught when cleaning orthodontic brackets is solved, achieving efficient and thorough oral cleaning and preventing the re-adhesion of dirt and tooth sensitivity.

CN120959505AInactive Publication Date: 2025-11-18宋可然
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Patent Information

Application Number
CN202511331271.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-09-17
Publication Date
2025-11-18
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Existing toothbrushes are ineffective at cleaning orthodontic patients by removing irregularities and gaps in orthodontic brackets, resulting in severe bristle snagging and limited cleaning effect.

Method used

It adopts an ultrasonic toothbrush combined with a water-air pump and multiple brush designs. It uses high-frequency sound waves to generate cavitation effect to clean the tray. With the help of water-air delivery and drying mechanism, it ensures cleaning effect, and improves cleaning efficiency through stirring mechanism and heating module.

Benefits of technology

It achieves high-precision cleaning of food debris inside orthodontic brackets, avoids lint buildup, ensures thorough cleaning of teeth and gums, prevents bacterial growth, and reduces the risk of tooth sensitivity.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of orthodontics, in particular to special toothbrush equipment for orthodontic patients, which comprises a cleaning medium storage module, the outer side of the cleaning medium storage module is provided with a water-air integrated pump used for pumping out water in the cleaning medium storage module, the output end of the water-air integrated pump communicates with an output pipe, and the other end of the output pipe is fixedly connected with the cleaning body; the outer side of the cleaning medium storage module is further provided with a placing cylinder used for placing a cleaning body, and the outer side of the placing cylinder is provided with a side edge opening; the ultrasonic toothbrush generates high-frequency sound waves to clean a metal bracket and teeth in an oral cavity, food residues in an orthodontic bracket are directly stripped, high-precision cleaning is achieved, the central thick brush and the side thick brush are large in size and not prone to hair hanging when making contact with the orthodontic bracket, the quality of the toothbrush is guaranteed, and the toothbrush is convenient to use. And the edge detail brush arranged on the periphery can clean the details of the gingiva, so that the cleaning quality is further ensured.
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Description

Technical Field

[0001] This invention relates to the field of orthodontic technology, specifically to a toothbrush device for orthodontic patients. Background Technology

[0002] Orthodontics (commonly known as "teeth straightening") is an important branch of oral medicine. It mainly uses various orthodontic appliances to adjust the coordination of teeth, jawbone and face in order to achieve the goals of straight teeth, normal bite, improved facial aesthetics and oral function.

[0003] Orthodontic treatment typically requires the wearing of metal braces. Oral cleaning is usually done with a toothbrush. Various toothbrushes are available on the market designed specifically for orthodontic patients, such as those with a V- or U-shaped center to conform to the contours of teeth with braces, ensuring effective cleaning. However, due to the irregularity of the braces and the gaps between them and the teeth, bristles will get caught regardless of the toothbrush's shape, severely affecting its quality and limiting its cleaning effectiveness. Therefore, this paper proposes a toothbrush device specifically designed for orthodontic patients to address these issues. Summary of the Invention

[0004] The purpose of this invention is to provide a toothbrush device specifically for orthodontic patients, in order to solve the problems mentioned in the background art.

[0005] To achieve the above objectives, the present invention provides the following technical solution:

[0006] As an alternative solution to the toothbrush device for orthodontic patients described in this invention, the toothbrush device for orthodontic patients includes a cleaning medium storage module.

[0007] An integrated water-air pump for extracting water from the inside of the cleaning medium storage module is installed on the outside of the cleaning medium storage module. The output end of the integrated water-air pump is connected to an output pipe, and the other end of the output pipe is fixedly connected to the cleaning body.

[0008] The cleaning medium storage module is also equipped with a placement cylinder for placing the cleaning body, and the placement cylinder has a side opening on the outside.

[0009] The cleaning unit includes an ultrasonic toothbrush, which has an output tube installed inside. The other end of the ultrasonic toothbrush is equipped with a toothbrush head for cleaning the mouth of orthodontic patients. A raised media discharge platform is installed above the toothbrush head. A central coarse brush is installed in the center above the media discharge platform. Side coarse brushes are fixedly connected to the media discharge platform on both sides of the central coarse brush. An edge fine brush is fixedly connected to the media discharge platform on the other side of the side coarse brush.

[0010] The ultrasonic toothbrush also has a cleaning mechanism installed on the outside for cleaning the brush head.

[0011] The media discharge platform includes a boss that is fixedly connected to the toothbrush head. The boss has a recessed groove inside, and the inner wall of the groove has evenly distributed drain outlets.

[0012] The boss is hollow, and a drain pipe is connected to the outside of the boss. The other end of the drain pipe is connected to the outlet pipe.

[0013] The bottom of the groove is fixedly connected to a central coarse brush arranged side by side, and the surface of the boss is equipped with side coarse brushes and edge fine brushes arranged in an inward and outward manner.

[0014] As an alternative embodiment of the toothbrush device for orthodontic patients described in this invention, a third solenoid valve is installed on the outside of the drain pipe.

[0015] As an optional embodiment of the toothbrush device for orthodontic patients described in this invention, the central coarse bristles and the side coarse bristles are made of soft rubber blocks, the height of the side coarse bristles is 1.2 times that of the central coarse bristles, and the edge fine bristles are set as fine bristles.

[0016] Orthodontic treatment typically requires wearing metal braces. Oral cleaning usually involves using a toothbrush. Various toothbrushes are designed for orthodontic patients, such as those with a V- or U-shaped center to conform to the contours of teeth with braces, ensuring effective cleaning. However, due to the irregularity of the braces and the gaps between them and the teeth, bristles will get caught regardless of the toothbrush's shape, severely affecting its quality and limiting its cleaning effectiveness. Ultrasonic toothbrushes, on the other hand, generate high-frequency sound waves to clean the mouth of orthodontic patients, causing oral fluids to... The ultrasonic toothbrush utilizes a cavitation effect to clean metal brackets and teeth inside the mouth, directly removing food debris from inside the orthodontic brackets for high-precision cleaning. The brush head at one end has a raised media discharge platform. Above the media discharge platform are a central coarse brush, a side coarse brush, and an edge fine brush. The central coarse brush is concave, allowing it to better conform to the shape of the orthodontic brackets and teeth when in contact with the side coarse brushes. The larger size of the central and side coarse brushes reduces the risk of bristle snagging when in contact with the orthodontic brackets, ensuring brush quality. The outer edge fine brushes provide detailed cleaning of the gum area, further guaranteeing cleaning quality.

[0017] When cleaning the mouth of orthodontic patients, ultrasonic cleaning requires a medium. At this time, a water-air integrated pump is installed on one side of the cleaning medium storage module. The water-air integrated pump is used to continuously transport the medium inside the cleaning medium storage module to the medium discharge platform and discharge it through the drain. This can ensure the quality of cavitation effect. The flowing water can not only ensure the continuous replenishment of the medium, but also help to remove the dirt that has been removed, preventing the dirt from re-adhering.

[0018] As an alternative embodiment of the toothbrush device for orthodontic patients described in this invention, the cleaning mechanism includes a cleaning ring fixedly connected to the ultrasonic toothbrush, a cleaning hole with a circular trajectory on one side of the cleaning ring, an air tube connected to one side of the cleaning ring, and an output tube connected to the other end of the air tube.

[0019] As an alternative embodiment of the toothbrush device for orthodontic patients described in this invention, a fourth solenoid valve is installed on the outside of the trachea.

[0020] After brushing is complete, the second solenoid valve on one side of the input tube opens, and gas is discharged through the water-air integrated pump and through the cleaning hole on the cleaning ring side. This cleans the toothbrush head, keeps it dry, and prevents bacterial growth.

[0021] As an optional solution of the toothbrush device for orthodontic patients described in this invention, the cleaning medium storage module includes a functional base, a hollow cylinder is installed on the top of the functional base, a partition plate is fixedly connected inside the hollow cylinder to divide the hollow cylinder into a cleaning chamber and a rinsing chamber, a stirring mechanism is fixedly connected to the functional base in the cleaning chamber, and the bottom of the partition plate is fixedly connected to the functional base.

[0022] A water-air integrated pump is installed on the outside of the functional base. The input end of the water-air integrated pump is connected to an input pipe. The other end of the input pipe is connected to an L-shaped pipe that is symmetrically arranged and fixedly connected to the partition plate. A first solenoid valve is installed on the outside of each L-shaped pipe.

[0023] The outer side of the functional base is also fixedly connected to the placement cylinder.

[0024] As an alternative embodiment of the toothbrush device for orthodontic patients described in this invention, the input tube is connected to a side tube on its outer side, and a second solenoid valve is installed on the outer side of the side tube.

[0025] As an alternative embodiment of the toothbrush device for orthodontic patients described in this invention, a heating module for heating the liquid inside the cavity is installed above the functional base.

[0026] As an optional embodiment of the toothbrush device for orthodontic patients described in this invention, the stirring mechanism includes a stirring motor installed inside the functional base, a rotating shaft fixedly connected to the free end of the stirring motor, symmetrically arranged stirring plates fixedly connected to the outer side of the rotating shaft, and a deformable flexible plate fixedly connected to the other end of each stirring plate.

[0027] During oral cleaning, the hollow cylinder has two chambers. One chamber is for adding toothpaste or other cleaning paste, which is then mixed by a stirring mechanism to help remove dirt more easily. The other chamber is for holding the cleaning agent to clean the mouth. Both chambers are equipped with heating modules to heat the cleaning liquid in winter, preventing cold water from irritating the teeth and causing sensitivity.

[0028] Compared with the prior art, the beneficial effects of the present invention are:

[0029] The ultrasonic toothbrush, when used to clean the mouths of orthodontic patients, generates high-frequency sound waves that create a cavitation effect in the oral fluid, thereby cleaning the metal brackets and teeth inside the mouth. It directly removes food debris from inside the orthodontic brackets, achieving high-precision cleaning. The toothbrush head at one end has a raised media discharge platform. Above the media discharge platform are a central coarse brush, a side coarse brush, and an edge fine brush. The central coarse brush is concave, allowing it to better conform to the shape of the orthodontic brackets and teeth when in contact with the side coarse brushes. The large size of the central and side coarse brushes reduces the risk of bristle snagging when in contact with the orthodontic brackets, ensuring the quality of the cleaning. The outer edge fine brushes can perform detailed cleaning of the gum area, further guaranteeing the quality of the cleaning.

[0030] When cleaning the mouth of orthodontic patients, ultrasonic cleaning requires a medium. At this time, a water-air integrated pump is set on one side of the cleaning medium storage module. The water-air integrated pump is used to continuously transport the medium inside the cleaning medium storage module to the medium discharge platform and discharge it through the drain. This can ensure the quality of cavitation effect. The flowing water can not only ensure the continuous replenishment of the medium, but also help to remove the dirt that has been removed, preventing the dirt from re-adhering.

[0031] When cleaning the mouth, the hollow cylinder has two chambers inside. One chamber is for toothpaste and other cleaning pastes to be added and mixed by a stirring mechanism. This helps to remove dirt more easily during oral cleaning. The other chamber is for holding the cleaning agent to clean the mouth. Both chambers are equipped with heating modules, which can be used to heat the cleaning liquid in winter to avoid cold water irritating the teeth and causing tooth sensitivity.

[0032] After brushing is complete, the second solenoid valve on one side of the input tube opens, and gas is discharged through the water-air integrated pump and through the cleaning hole on the cleaning ring side. This cleans the toothbrush head, keeps it dry, and prevents bacterial growth. Attached Figure Description

[0033] Figure 1 This is a schematic diagram of the overall structure of a toothbrush device specifically designed for orthodontic patients.

[0034] Figure 2 A toothbrush device specifically designed for orthodontic patients. Figure 1 A schematic diagram of the structure at point A;

[0035] Figure 3 A toothbrush device specifically designed for orthodontic patients. Figure 1 A schematic diagram of the structure at point B;

[0036] Figure 4 This is a schematic diagram of the media discharge platform of a toothbrush device specifically designed for orthodontic patients.

[0037] Figure 5 This is a schematic diagram of the cleaning mechanism of a toothbrush device specifically designed for orthodontic patients.

[0038] Figure 6 This is a schematic diagram of the structure of a cleaning media storage module for a toothbrush device specifically designed for orthodontic patients.

[0039] In the diagram: 1. Cleaning medium storage module; 101. Functional base; 102. Hollow cylinder; 103. Divider plate; 104. Heating module; 105. Stirring motor; 106. Rotating shaft; 107. Stirring plate; 108. Deformable flexible plate; 109. L-shaped pipe; 110. First solenoid valve; 111. Input pipe; 112. Side pipe; 113. Second solenoid valve; 2. Placement cylinder; 3. Side opening; 4. Water-air integrated pump; 5. Output pipe; 6. Cleaning medium storage module; 7. Stirring plate; 8. Deformable flexible plate; 9. Deformable flexible plate; 100. Hollow cylinder; 111. Stirring plate; 12. Deformable flexible plate; 13. Deformable flexible plate; 14. Deformable flexible plate; 15. Deformable flexible plate; 16. Deformable flexible plate; 17. Deformable flexible plate; 18. Deformable flexible plate; 19. Deformable flexible plate; 100. Deformable flexible plate; 101. Functional base; 102. Deformable flexible plate; 103. Deformable flexible plate; 104. Deformable flexible plate; 105. Deformable flexible plate; 106. Deformable flexible plate; 107. Deformable flexible plate; 108. Deformable flexible plate; 109. Deformable flexible plate; 100. Deformable flexible plate; 100. Deformable flexible plate; 101. Functional base; 102 ... Deformable flexible plate; 100. Deformable Wash body; 601, ultrasonic toothbrush; 602, toothbrush head; 603, media discharge platform; 6031, boss; 6032, groove; 6033, drain outlet; 6034, drain pipe; 6035, third solenoid valve; 604, central coarse brush; 605, side coarse brush; 606, edge fine brush; 607, cleaning mechanism; 6071, cleaning ring; 6072, cleaning hole; 6073, air pipe; 6074, fourth solenoid valve. Detailed Implementation

[0040] Example 1: Please refer to Figure 1 , Figure 2 , Figure 3 , Figure 4 and Figure 5The present invention provides a technical solution:

[0041] A toothbrush device for orthodontic patients includes a cleaning medium storage module 1;

[0042] A water-air integrated pump 4 for extracting water from the inside of the cleaning medium storage module 1 is installed on the outside of the cleaning medium storage module 1. The output end of the water-air integrated pump 4 is connected to an output pipe 5, and the other end of the output pipe 5 is fixedly connected to the cleaning body 6.

[0043] The cleaning medium storage module 1 is also equipped with a placement cylinder 2 for placing the cleaning body 6. The placement cylinder 2 has a side opening 3 on its outer side.

[0044] The cleaning body 6 includes an ultrasonic toothbrush 601, an output tube 5 is installed inside the ultrasonic toothbrush 601, and a toothbrush head 602 for cleaning the mouth of orthodontic patients is installed at the other end of the ultrasonic toothbrush 601. A raised media discharge platform 603 is installed above the toothbrush head 602. A central coarse brush 604 is installed in the center above the media discharge platform 603. Side coarse brushes 605 are fixedly connected to the media discharge platform 603 on both sides of the central coarse brush 604. An edge fine brush 606 is fixedly connected to the media discharge platform 603 on the other side of the side coarse brush 605.

[0045] The ultrasonic toothbrush 601 is also equipped with a cleaning mechanism 607 for cleaning the toothbrush head 602.

[0046] The media discharge platform 603 includes a boss 6031 that is fixedly connected to the toothbrush head 602. The boss 6031 has a recessed groove 6032 inside, and the inner wall of the groove 6032 has evenly distributed drain outlets 6033.

[0047] The boss 6031 is hollow, and a drain pipe 6034 is connected to the outside of the boss 6031. The other end of the drain pipe 6034 is connected to the output pipe 5.

[0048] The bottom of the groove 6032 is fixedly connected to a central coarse brush 604 arranged side by side, and the surface of the boss 6031 is equipped with a side coarse brush 605 and an edge fine brush 606 arranged in an inward and outward manner.

[0049] A third solenoid valve 6035 is installed on the outside of the drain pipe 6034.

[0050] The central coarse brush 604 and the side coarse brush 605 are made of soft rubber blocks. The height of the side coarse brush 605 is 1.2 times that of the central coarse brush 604. The edge fine brush 606 is set with fine brushes.

[0051] Orthodontic treatment typically requires metal braces for shaping. Oral cleaning usually involves using a toothbrush. Various toothbrushes are designed for orthodontic patients, such as those with a V- or U-shaped center to conform to the contours of teeth with braces, ensuring effective cleaning. However, due to the irregularity of the braces and gaps between them and the teeth, bristles will get caught regardless of the toothbrush's shape, severely affecting its quality and limiting its cleaning effectiveness. The ultrasonic toothbrush 601 addresses this by using an ultrasonic transducer to convert electrical energy into high-frequency mechanical vibrations. These vibrations are transmitted through the brush head into the mouth, generating high-frequency sound waves (typically between 20kHz and 100kHz), far exceeding human hearing. These waves act on the oral fluids, creating cavitation and penetrating into the interdental spaces and gingival sulcus. The ultrasonic toothbrush 601 cleans areas difficult to reach by manual brushing, such as the gaps between orthodontic brackets and teeth, removing plaque and food debris (especially sticky starchy and protein-based debris) adhering to the tooth surface without causing physical friction damage to the enamel or gums. It directly removes food debris from inside the orthodontic brackets, achieving high-precision cleaning. Furthermore, the ultrasonic toothbrush 601 has a raised media discharge platform 603 on the surface of the brush head 602. The toothbrush 604 is mounted on the top of the toothbrush 3. The central coarse brush 604 is recessed so that it fits the orthodontic bracket and the shape of the tooth better when it is in contact with the orthodontic bracket. The central coarse brush 604 and the side coarse brush 605 are large in size, so that the bristles are less likely to get caught when they come into contact with the orthodontic bracket, thus ensuring the quality of the toothbrush. The outer edge fine brush 606 can clean the gum area in detail, further ensuring the quality of cleaning.

[0052] When cleaning the mouth of orthodontic patients, ultrasonic cleaning requires a medium. At this time, a water-air integrated pump 4 is set on one side of the cleaning medium storage module 1. The water-air integrated pump 4 is used to continuously transport the medium inside the cleaning medium storage module 1 to the medium discharge platform 603 and discharge it through the drain outlet 6033. This can ensure the quality of cavitation effect. High frequency vibration causes countless tiny bubbles to form in the liquid. When the bubbles burst rapidly, they release huge impact force, directly peeling off dirt and impurities (such as food residue from orthodontic brackets) from the surface of the object. The flowing water can not only ensure the continuous replenishment of the medium, but also help to remove the peeled dirt and prevent the dirt from re-adhering.

[0053] Also includes the following:

[0054] The placement cylinder 2 is hollow, which makes it easy to place the cleaning body 6 vertically. The output pipe 5 connected to one end of the cleaning body 6 is located inside the side opening 3 of the placement cylinder 2, which makes it easy to pick up and place the cleaning body 6.

[0055] The upper part of the central coarse brush 604 is concave compared to the side coarse brush 605, which facilitates its fit with the orthodontic bracket. The central coarse brush 604 and the side coarse brush 605 use brushes with a diameter of 2-5mm, which are less likely to enter the gap between the orthodontic bracket and the teeth and cause bristle snagging. The edge fine brush 606 can thoroughly clean the area where the teeth come into contact with the skin, and is less likely to cause injury due to severe friction.

[0056] Example 2: This example is an improvement upon Example 1. Please refer to [link / reference]. Figure 5 Specifically, the cleaning mechanism 607 includes a cleaning ring 6071 fixedly connected to the ultrasonic toothbrush 601. A cleaning hole 6072 with a circular trajectory is opened on one side of the cleaning ring 6071. An air tube 6073 is connected to one side of the cleaning ring 6071, and the other end of the air tube 6073 is connected to the output tube 5.

[0057] A fourth solenoid valve 6074 is installed on the outside of the trachea 6073.

[0058] After brushing is completed, the second solenoid valve 113 on one side of the input pipe 111 opens, and the gas is discharged through the water-air integrated pump 4 and through the cleaning hole 6072 on one side of the cleaning ring 6071. This can clean the toothbrush head 602, keep it dry, and prevent bacterial growth.

[0059] Also includes the following:

[0060] The fourth solenoid valve 6074 is opened to allow gas to be discharged through the air pipe 6073, and the third solenoid valve 6035 can also be opened to blow on the inside of the brush for drying. The annular cleaning ring 6071 and cleaning hole 6072 ensure that the toothbrush head 602 is thoroughly cleaned and dried to prevent water droplets from falling.

[0061] Example 3: This example is an improvement on Example 2. Please refer to [link / reference]. Figure 1 and Figure 6 Specifically, the cleaning medium storage module 1 includes a functional base 101, a hollow cylinder 102 is installed on the top of the functional base 101, and a partition plate 103 is fixedly connected inside the hollow cylinder 102 to divide the hollow cylinder 102 into a cleaning chamber and a rinsing chamber. A stirring mechanism is provided in the cleaning chamber and is fixedly connected to the functional base 101. The bottom of the partition plate 103 is fixedly connected to the functional base 101.

[0062] A water-air integrated pump 4 is installed on the outside of the functional base 101. The input end of the water-air integrated pump 4 is connected to an input pipe 111. The other end of the input pipe 111 is connected to an L-shaped pipe 109 that is symmetrically arranged and fixedly connected to the partition plate 103. A first solenoid valve 110 is installed on the outside of each L-shaped pipe 109.

[0063] The outer side of the functional base 101 is also fixedly connected to the placement cylinder 2.

[0064] The input pipe 111 is connected to a side pipe 112 on the outside, and a second solenoid valve 113 is installed on the outside of the side pipe 112.

[0065] A heating module 104 for heating the liquid in the chamber is installed on top of the functional base 101.

[0066] The stirring mechanism includes a stirring motor 105 installed inside the functional base 101. A rotating shaft 106 is fixedly connected to the free end of the stirring motor 105. A stirring plate 107 arranged symmetrically is fixedly connected to the outer side of the rotating shaft 106. A deformable flexible plate 108 is fixedly connected to the other end of each stirring plate 107.

[0067] During oral cleaning, the hollow cylinder 102 has two sets of chambers inside. One set is for toothpaste and other cleaning pastes to be added and mixed by a stirring mechanism. This helps to remove dirt more easily during oral cleaning. The other set of chambers is used to hold the cleaning agent to clean the mouth. Both sets of chambers are equipped with heating modules 104, which can be used to heat the cleaning liquid in winter to avoid cold water irritating the teeth and causing tooth sensitivity.

[0068] Also includes the following:

[0069] Cleaning paste or other cleaning agents can be added to the cleaning chamber to mix with water and produce foam liquid, which is then easily drawn out by the water-air integrated pump 4 and discharged through the drain outlet 6033 to come into contact with the teeth, ensuring cleaning quality.

[0070] The L-shaped tube 109 points downwards, making it easy to extract the foam liquid or cleaning water from the bottom;

[0071] The process involves water cleaning, foam cleaning, and water cleaning. Toothpaste and a small amount of water are placed in the cleaning chamber. The stirring motor 105 drives the rotating shaft 106 to rotate, which in turn drives the stirring plate 107 and the deformable flexible plate 108 to rotate, thus mixing the toothpaste and water into a mixture for easy extraction and use. The deformable flexible plate 108 can deform, ensuring normal use even when in contact with the hollow cylinder 102. At the same time, its stirring mechanism can also play a good cleaning role when cleaning the cleaning chamber. Combined with the heating module 104, it can achieve a better cleaning of the hollow cylinder 102.

[0072] When cleaning the orthodontic brackets and teeth, the first solenoid valve 110 is closed and the second valve 113 is opened, allowing external air to enter through the side pipe 112 and be discharged by the water-air pump 4 to dry the toothbrush head 602.

[0073] This article uses specific examples to illustrate the principles and implementation methods of the present invention. The above examples are only for the purpose of helping to understand the method and core ideas of the present invention. The above descriptions are only preferred embodiments of the present invention. It should be noted that due to the limitations of textual expression, while there are objectively infinite specific structures, those skilled in the art can make several improvements, modifications, or changes without departing from the principles of the present invention, and can also combine the above technical features in an appropriate manner. These improvements, modifications, changes, or combinations, or the direct application of the inventive concept and technical solution to other situations without modification, should all be considered within the scope of protection of the present invention.

Claims

1. A toothbrush device specifically for orthodontic patients, characterized in that: Includes a cleaning media storage module (1); A water-air integrated pump (4) for extracting water from the inside of the cleaning medium storage module (1) is installed on the outside of the cleaning medium storage module (1). The output end of the water-air integrated pump (4) is connected to an output pipe (5), and the other end of the output pipe (5) is fixedly connected to the cleaning body (6). The cleaning medium storage module (1) is also equipped with a placement cylinder (2) for placing the cleaning body (6), and a side opening (3) is provided on the outside of the placement cylinder (2). The cleaning body (6) includes an ultrasonic toothbrush (601), an output tube (5) is installed inside the ultrasonic toothbrush (601), a toothbrush head (602) for cleaning the mouth of orthodontic patients is installed at the other end of the ultrasonic toothbrush (601), a raised media discharge platform (603) is installed above the toothbrush head (602), a central coarse brush (604) is installed in the center above the media discharge platform (603), side coarse brushes (605) are fixedly connected to the media discharge platform (603) on both sides of the central coarse brush (604), and an edge fine brush (606) is fixedly connected to the media discharge platform (603) on the other side of the side coarse brushes (605). The ultrasonic toothbrush (601) is also equipped with a cleaning mechanism (607) for cleaning the toothbrush head (602); The media discharge platform (603) includes a boss (6031) fixedly connected to the toothbrush head (602), the boss (6031) has a recessed groove (6032) inside, and the inner wall of the groove (6032) has evenly distributed drain outlets (6033). The boss (6031) is hollow, and a drain pipe (6034) is connected to the outside of the boss (6031). The other end of the drain pipe (6034) is connected to the output pipe (5). The bottom of the groove (6032) is fixedly connected to a central coarse brush (604) arranged side by side, and the surface of the boss (6031) is equipped with a side coarse brush (605) and an edge fine brush (606) arranged in an inward and outward manner.

2. The toothbrush device for orthodontic patients according to claim 1, characterized in that: A third solenoid valve (6035) is installed on the outside of the drain pipe (6034).

3. A toothbrush device for orthodontic patients according to claim 1, characterized in that: The central coarse brush (604) and the side coarse brush (605) are made of soft rubber blocks. The height of the side coarse brush (605) is 1.2 times that of the central coarse brush (604). The edge fine brush (606) is set with fine brushes.

4. A toothbrush device for orthodontic patients according to claim 1, characterized in that: The cleaning mechanism (607) includes a cleaning ring (6071) fixedly connected to the ultrasonic toothbrush (601). A cleaning hole (6072) with a circular trajectory is provided on one side of the cleaning ring (6071). An air tube (6073) is connected to one side of the cleaning ring (6071), and the other end of the air tube (6073) is connected to the output tube (5).

5. A toothbrush device for orthodontic patients according to claim 4, characterized in that: A fourth solenoid valve (6074) is installed on the outside of the trachea (6073).

6. A toothbrush device for orthodontic patients according to claim 1, characterized in that: The cleaning medium storage module (1) includes a functional base (101), a hollow cylinder (102) is installed on the top of the functional base (101), and a partition plate (103) is fixedly connected inside the hollow cylinder (102) to divide the hollow cylinder (102) into a cleaning chamber and a rinsing chamber. A stirring mechanism is fixedly connected to the functional base (101) in the cleaning chamber, and the bottom of the partition plate (103) is fixedly connected to the functional base (101). A water-air integrated pump (4) is installed on the outside of the functional base (101). The input end of the water-air integrated pump (4) is connected to an input pipe (111). The other end of the input pipe (111) is connected to an L-shaped pipe (109) that is symmetrically arranged and fixedly connected to the partition plate (103). A first solenoid valve (110) is installed on the outside of each L-shaped pipe (109). The outer side of the functional base (101) is also fixedly connected to the placement tube (2).

7. A toothbrush device for orthodontic patients according to claim 6, characterized in that: The input pipe (111) is connected to a side pipe (112) on the outside, and a second solenoid valve (113) is installed on the outside of the side pipe (112).

8. A toothbrush device for orthodontic patients according to claim 6, characterized in that: A heating module (104) for heating the liquid in the chamber is installed on top of the functional base (101).

9. A toothbrush device for orthodontic patients according to claim 6, characterized in that: The stirring mechanism includes a stirring motor (105) installed inside the functional base (101). A rotating shaft (106) is fixedly connected to the free end of the stirring motor (105). A stirring plate (107) arranged symmetrically is fixedly connected to the outside of the rotating shaft (106). A deformable soft plate (108) is fixedly connected to the other end of each stirring plate (107).