Batch rinsing equipment for children orthodontic treatment instruments

By designing a device that includes a drive component, a rinsing tank, and a rinsing component, and employing a combination of dynamic shaking and rinsing, the problems of cleaning dead spots and low efficiency in existing equipment are solved. This achieves a highly efficient and comprehensive cleaning effect, reduces manual intervention, and improves cleaning quality and efficiency.

CN120901012APending Publication Date: 2025-11-07HOSPITAL OF STOMATOLOGY GUANGZHOU MEDICAL UNIVERSITY (YANGCHENG HOSPITAL OF GUANGZHOU MEDICAL UNIVERSITY)
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Patent Information

Application Number
CN202511292332.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-09-11
Publication Date
2025-11-07

AI Technical Summary

Technical Problem

Existing equipment has problems such as cleaning dead spots, uneven cleaning, excessive manual intervention, and insufficient processing capacity when cleaning children's orthodontic instruments, making it difficult to meet the needs of high-frequency and high-standard cleaning.

Method used

Design a device comprising a drive component, a rinsing tank, a collection component, and a rinsing component to achieve efficient cleaning of orthodontic devices by combining dynamic shaking and rinsing, thereby reducing manual intervention.

Benefits of technology

It achieves efficient and comprehensive cleaning of children's orthodontic instruments, reduces manual intervention, improves cleaning quality and efficiency, ensures cleaning effect, and protects the surface of the instruments.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the field of batch rinsing of orthodontic treatment instruments, and discloses batch rinsing equipment for children orthodontic treatment instruments, which comprises a driving component, a rinsing water tank is placed in the driving component, a flushing component is arranged on the inner surface of the rinsing water tank, and a collecting component is clamped in the center of the interior of the rinsing water tank; the collecting part is used for receiving the correction treatment instrument, so that the correction treatment instrument is immersed into water, and meanwhile, the outer surface of the correction treatment instrument can be brushed in a vibrating manner; the flushing part is used for flushing the rinsed correction treatment instrument; the rinsing water tank is used for controlling discharge of rinsing water and providing support for the collecting part; through cooperative operation of the collecting part, the flushing part, the rinsing water tank and the driving part, manual participation can be reduced, efficient batch cleaning can be reduced, full coverage can be achieved, instrument floating is prevented, no dead corner exists during rinsing, and the rinsing quality is guaranteed.
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Description

TECHNICAL FIELD

[0001] The present application relates to the field of batch rinsing of children's orthodontic treatment instruments, in particular to a batch rinsing equipment for children's orthodontic treatment instruments. BACKGROUND

[0002] In the process of children's orthodontic treatment, the cleaning work of various treatment instruments is crucial. As a key means to improve the misalignment of children's teeth, occlusal abnormalities and other problems, orthodontics covers fixed orthodontics, invisible orthodontics, functional orthodontics and other ways, involving dozens of precise instruments such as brackets, arch wires, buccal tubes, traction hooks, etc. When these instruments come into contact with the mucosa of children's oral cavity and the surface of teeth, they will be contaminated with saliva, food residues, dental plaque and microorganisms. If not cleaned thoroughly, it may not only cause cross infection, but also affect the wearing stability of the orthodontic device and the treatment effect, and even cause gingivitis, oral ulcer and other oral diseases, which poses a potential threat to children's oral health.

[0003] At present, medical institutions mostly use ultrasonic cleaning equipment to rinse the treatment instruments, but the existing equipment has many limitations in actual application:

[0004] Firstly, the traditional equipment is mostly in a static cleaning mode, and the instruments are placed in the cleaning tank, relying only on the ultrasonic cavitation effect to remove dirt. It is difficult to completely remove the residues in the fine structures such as bracket grooves and arch wire threads, and it is easy to form cleaning dead angles;

[0005] Secondly, some light instruments (such as invisible orthodontic accessories and elastic traction rings) are prone to floating on the liquid surface during cleaning, which cannot fully contact the cleaning medium, resulting in uneven cleaning effect;

[0006] Thirdly, after cleaning, the instruments need to be manually transferred for secondary rinsing, which not only increases the workload of medical staff, but also may cause secondary pollution during the transfer process. In addition, the batch processing capacity of the existing equipment is limited, and it is difficult to balance the cleaning efficiency and cleanliness in the face of the diverse and large number of children's orthodontic instruments, which cannot meet the high frequency and high standard requirements of pediatric oral diagnosis and treatment. SUMMARY

[0007] The purpose of the present application is to provide a batch rinsing equipment for children's orthodontic treatment instruments, which solves the following technical problems: how to efficiently clean the treatment instruments in batches and reduce the manual participation in the rinsing work, and how to improve the quality of batch cleaning of the treatment instruments.

[0008] The purpose of the present application can be achieved by the following technical solution: a batch rinsing equipment for children's orthodontic treatment instruments, comprising: a driving component, an internal rinsing water tank is placed in the driving component, a flushing component is arranged on the inner surface of the rinsing water tank, and a collection component is clamped in the center of the interior of the rinsing water tank;

[0009] The collecting component is used for receiving the orthodontic treatment instrument, so that the orthodontic treatment instrument is immersed underwater, and the outer surface of the orthodontic treatment instrument can be vibrated and brushed;

[0010] The flushing component is used for flushing the rinsed orthodontic treatment instrument;

[0011] The rinsing water tank is used for controlling the discharge of the rinsing water and providing support for the collecting component;

[0012] The driving component is used for controlling the operation of the flushing component, driving the flushing component to reciprocate in the rinsing water tank, and controlling the flushing component to swing up and down on the inner surface of the rinsing water tank.

[0013] As a preferred scheme of the present application, the collecting component comprises a water filtering net tank, an upper sealing frame is rotatably arranged on the upper surface of the water filtering net tank, triangular connecting frames are fixedly connected to the top of both ends of the water filtering net tank, cleaning wires are uniformly arranged on the bottom of the upper sealing frame, sliding balls are slidably sleeved in the upper sealing frame, and the sliding balls and the cleaning wires are staggered on the outer surface of the upper sealing frame.

[0014] As a preferred scheme of the present application, the flushing component comprises a first rotating shaft, a second rotating shaft and a transmission shaft, transmission sprockets are fixedly arranged at one end of the first rotating shaft, one end of the second rotating shaft and the middle part of the transmission shaft, and the transmission sprockets are arranged in two groups at one end of the first rotating shaft.

[0015] First transmission chains are meshingly connected to the outer surfaces of the transmission sprockets at one end of the first rotating shaft and the second rotating shaft, nozzles are uniformly fixedly arranged on the outer surfaces of the first rotating shaft and the second rotating shaft, respectively, water delivery branch pipes are connected between the nozzles, and a water guide main pipe is connected to one end of the water delivery branch pipes.

[0016] As a preferred scheme of the present application, the inner bottom end of the rinsing water tank is arranged in an inclined manner, a connecting nozzle is arranged at the lowest end of the bottom surface of the rinsing water tank, water baffle plates are arranged at both sides of the inner top end of the rinsing water tank, an isolation frame is arranged on one end surface of the rinsing water tank, and a limiting shaft hole is formed in the upper center of both end surfaces of the rinsing water tank.

[0017] Support shafts are rotatably clamped in the limiting shaft holes at one end of the rinsing water tank, first clamping grooves are arranged on the outer surfaces of one end of the transmission shaft and the support shaft, and transmission gears are fixedly connected to the outer surfaces of the other end of the transmission shaft and the support shaft.

[0018] As a preferred scheme of the present application: the driving component comprises a driver, a mounting groove is formed in the top of the driver, an operation panel is arranged on the front end surface of the driver, a handle is fixedly installed on the upper edge of the both end surfaces of the driver, and a micro electric push rod is fixedly installed on the upper edge of the handle on the both end surfaces of the driver;

[0019] A limiting guide rail is arranged at the top center of the handle, a transmission rack aligned with one end of the micro electric push rod is slidingly inserted into the limiting guide rail, a groove is formed in the top center of the both ends of the driver, a second clamping groove is symmetrically formed in the both end surfaces of the mounting groove, and an ultrasonic vibrator adapted to the bottom of the rinsing water tank is arranged at the bottom end in the mounting groove.

[0020] As a preferred scheme of the present application: the rinsing water tank is provided with limiting shaft holes in the both end surfaces, the both ends of the first rotating shaft and the second rotating shaft are rotationally clamped with the inside of the rinsing water tank through the limiting shaft holes, the rinsing water tank is inserted into the inside of the top end of the driver through the mounting groove, the ultrasonic vibrator in the mounting groove is adapted to and abuts against the bottom of the rinsing water tank, and the rinsing water tank is inserted into the inside of the mounting groove of one end of the drain valve through the connecting mouth at the bottom.

[0021] As a preferred scheme of the present application: the bottom outer surface of the connecting mouth is provided with a sealing ring, the supporting shaft and the transmission shaft are clamped with the top of the driver through the groove, the rinsing water tank is clamped with the second clamping groove through the isolation frame at one end, and the transmission shaft is rotationally connected with one end of the first rotating shaft through the transmission sprocket and the second transmission chain.

[0022] As a preferred scheme of the present application: the first rotating shaft is rotationally connected with one end of the second rotating shaft through the transmission sprocket and the first transmission chain at one end, the filter net tank is clamped with the first clamping groove through the both ends of the triangular connecting frame, and the transmission rack is meshingly connected with the transmission gear in the inside of the limiting guide rail.

[0023] The present application has the following beneficial effects:

[0024] (1) The present application can control the swing amplitude and frequency of the collecting component by arranging the flushing component in the inside of the rinsing water tank, so that the instrument forms regular shaking in the rinsing process, completely gets rid of the limitation of static rinsing, the dynamic cleaning mode can promote the continuous impact of water flow on the surface of the instrument, accelerate the dirt peeling, significantly improve the rinsing quality, and the device can automatically switch to the flushing mode after the ultrasonic rinsing program is completed, without manual intervention throughout the process, so that the batch rinsing completely gets rid of the dependence on manual cleaning, greatly reduces the labor and time investment, efficiently completes the cleaning work of a large number of children's teeth correction treatment instruments, meets the centralized treatment demand, and significantly improves the overall efficiency of the cleaning link.

[0025] (2) The application constructs a double cleaning system of "dynamic impact vibration + physical friction" by setting sliding balls and cleaning wires inside the collecting part: the vibration generated by the sliding balls rolling with the water flow and constantly colliding with the filter net box is transmitted to the instrument, and the cleaning wires wipe the small gaps, which can effectively brush the stubborn dirt on the instrument, further promote the dirt to fall off through high-frequency vibration, ensure that the cleaning effect covers all parts, including small gaps and corners that are difficult to reach by traditional cleaning, and avoid hiding dirt from the root, in addition, the limiting design of the collecting part can prevent the instrument from floating, ensure that each surface of the instrument fully contacts the cleaning medium, and cooperate with the directional water flow of the flushing part to improve the cleaning effect while reducing the collision and wear between the instruments, and consider the cleaning efficiency and instrument protection.

[0026] (3) The application can reduce manual participation in efficient batch cleaning through the cooperation of the collecting part, the flushing part, the rinsing water tank and the driving part, and can fully cover the anti-instrument floating rinsing without dead angle to ensure the rinsing quality. BRIEF DESCRIPTION OF DRAWINGS

[0027] The application will be further described below in combination with the drawings.

[0028] Figure 1 Structure diagram of the batch rinsing equipment for children's dental orthodontic treatment instruments;

[0029] Figure 2 Structure diagram of the collecting part;

[0030] Figure 3 Structure diagram of the flushing part;

[0031] Figure 4 Structure diagram of the Figure 3 Structure diagram of the local enlargement of A in the middle;

[0032] Figure 5 Structure diagram of the cross-section of the rinsing water tank;

[0033] Figure 6 Structure diagram of the driving part.

[0034] BRIEF DESCRIPTION OF DRAWINGS:1, collecting component;2, flushing component;3, rinsing water tank;4, driving component;11, upper sealing frame;12, triangular connecting frame;13, sliding ball;14, arc-shaped buckle;15, cleaning wire;16, water filtering net box;21, water guide main pipe;22, first rotating shaft;23, second rotating shaft;24, first transmission chain;25, water conveying branch pipe;26, second transmission chain;27, transmission gear;28, transmission sprocket;29, transmission shaft;210, nozzle;211, first clamping groove;31, connecting nozzle;32, isolation frame;33, limiting shaft hole;34, water baffle;35, supporting shaft;41, mounting groove;42, second clamping groove;43, groove;44, drain valve;45, driver;46, operation panel;47, micro electric push rod;48, transmission rack;49, handle;410, limiting guide rail. DETAILED DESCRIPTION

[0035] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by a person of ordinary skill in the art without creative work are within the protection scope of the present application.

[0036] Please refer to Figures 1-6 As shown in the drawings, the present application is a kind of equipment for batch rinsing of children's dental orthodontic appliances, comprising: driving component 4, driving component 4 is placed inside the rinsing water tank 3, the inner surface of the rinsing water tank 3 is provided with flushing component 2, the inside center of the rinsing water tank 3 is clamped with collecting component 1;

[0037] The collecting component 1 is used to hold the orthodontic appliances, so that the orthodontic appliances are immersed underwater, and the outer surface of the orthodontic appliances can be vibrated and washed at the same time;

[0038] The flushing component 2 is used to flush the rinsed orthodontic appliances;

[0039] The rinsing water tank 3 is used to control the discharge of rinsing water, and at the same time provides support for the collecting component 1;

[0040] The driving component 4 is used to control the operation of the flushing component 2, drive the flushing component 2 to reciprocate inside the rinsing water tank 3, and can control the flushing component 2 to swing up and down on the inner surface of the rinsing water tank 3.

[0041] The collecting component 1 comprises a water filtering net box 16, the upper surface of the water filtering net box 16 is rotatably connected with an upper sealing frame 11, the top of the two ends of the water filtering net box 16 is fixedly connected with a triangular connecting frame 12, the bottom of the upper sealing frame 11 is uniformly provided with a cleaning wire 15, the inside of the upper sealing frame 11 is slidably sleeved with a sliding ball 13, and the sliding ball 13 and the cleaning wire 15 are staggered on the outer surface of the upper sealing frame 11.

[0042] The flushing component 2 comprises a first rotating shaft 22, a second rotating shaft 23 and a transmission shaft 29, the one end of the first rotating shaft 22, the second rotating shaft 23 and the middle part of the transmission shaft 29 are fixedly connected with a transmission sprocket 28, the transmission sprocket 28 is arranged in two groups at the one end of the first rotating shaft 22.

[0043] The outer surface of the one end transmission sprocket 28 of the first rotating shaft 22 and the second rotating shaft 23 is meshingly connected with a first transmission chain 24, the outer surface of the first rotating shaft 22 and the second rotating shaft 23 is fixedly connected with a nozzle 210, the nozzles 210 are connected with a water conveying branch pipe 25, and the one end of the water conveying branch pipe 25 is connected with a water guide main pipe 21.

[0044] The inside bottom end of the rinsing water tank 3 is arranged in an inclined manner, the bottom surface of the rinsing water tank 3 is provided with a connecting nozzle 31, the inside top end of the rinsing water tank 3 is provided with a water baffle 34, one end surface of the rinsing water tank 3 is provided with a separation frame 32, and the two end surfaces of the rinsing water tank 3 are provided with a limiting shaft hole 33 in the upper center.

[0045] The one end limiting shaft hole 33 of the rinsing water tank 3 is rotatably connected with a supporting shaft 35, the outer surface of the one end of the transmission shaft 29 and the supporting shaft 35 is provided with a first clamping groove 211, and the outer surface of the other end of the transmission shaft 29 and the supporting shaft 35 is fixedly connected with a transmission gear 27.

[0046] The driving component 4 comprises a driver 45, the top of the driver 45 is provided with a mounting groove 41, the front end surface of the driver 45 is provided with an operation panel 46, the two end surfaces of the driver 45 are fixedly connected with a handle 49 in the upper edge, and the two end surfaces of the driver 45 and the upper edge of the handle 49 are fixedly connected with a micro electric push rod 47.

[0047] The top center of the handle 49 is provided with a limiting guide rail 410, the limiting guide rail 410 is slidably connected with a transmission rack 48 which is aligned with the one end of the micro electric push rod 47, the two end surfaces of the inside of the mounting groove 41 are symmetrically provided with a second clamping groove 42, and the inside bottom end of the mounting groove 41 is provided with an ultrasonic vibrator which is matched with the bottom of the rinsing water tank 3.

[0048] The two end faces of the rinsing water tank 3 are provided with limiting shaft holes, the two ends of the first rotating shaft 22 and the second rotating shaft 23 are rotationally connected with the inside of the rinsing water tank 3 through the limiting shaft holes, which can limit the first rotating shaft 22 and the second rotating shaft 23, the rinsing water tank 3 is inserted into the inside of the driver 45 through the mounting groove 41, so that the rinsing water tank 3 can be quickly disassembled for cleaning, the ultrasonic vibrator in the inside of the mounting groove 41 is abutted with the bottom of the rinsing water tank 3, and the rinsing water tank 3 is inserted into the inside of the mounting groove 41 through the bottom connecting nozzle 31 and the one end mounting groove 41 of the drain valve 44.

[0049] The bottom outer surface of the connecting nozzle 31 is provided with a sealing ring, which can seal the connection between the connecting nozzle 31 and the drain valve 44, the support shaft 35 and the transmission shaft 29 are connected with the top of the driver 45 through the groove 43, which can facilitate the insertion of the rinsing water tank 3 into the inside of the mounting groove 41, the rinsing water tank 3 is connected with the second clamping groove 42 through the one end isolation frame 32, the transmission shaft 29 is rotationally connected with the one end of the first rotating shaft 22 through the transmission sprocket 28 and the second transmission chain 26, which can synchronously drive the first rotating shaft 22 to deflect.

[0050] The first rotating shaft 22 is rotationally connected with the one end of the second rotating shaft 23 through the one end transmission sprocket 28 and the first transmission chain 24, which can make the first rotating shaft 22 and the second rotating shaft 23 rotate synchronously, so as to drive the nozzle 210 to deflect and flush, the water filtering net tank 16 is clamped with the first clamping groove 211 through the two ends of the triangular connecting frame 12, which can support the water filtering net tank 16 and quickly install and disassemble the water filtering net tank 16, and the transmission rack 48 is meshingly connected with the transmission gear 27 in the inside of the limiting guide rail 410, which can control the rotation of the transmission shaft 29.

[0051] The working principle of the present application is as follows: when the children's teeth correction treatment instrument is batch rinsed, first, the neutral rinsing agent suitable for the children's instrument is injected into the rinsing water tank 3, the mild formula can ensure the cleaning power and protect the surface plating of the instrument, then the upper sealing frame 11 is pulled upward to make it flip around the shaft, the arc-shaped buckle 14 is separated from the clamping groove on the top of the side of the water filtering net tank 16, at this time, the instruments such as bracket and arch wire for tooth correction can be orderly placed in the inside of the water filtering net tank 16, the water filtering net tank is made of food-grade stainless steel material, the fine mesh can prevent the instruments from falling and not hinder the liquid circulation, then the arc-shaped buckle 14 is accurately clamped with the top side of the water filtering net tank 16 by pressing the top of the upper sealing frame 11, so as to form a closed space and prevent the instruments from falling off in the subsequent operation.

[0052] After that, the filter net box 16 is lifted by the anti-slip handle of the triangular connecting frame 12, and is slowly lowered after being translated to the top of the rinsing water tank 3 until the triangles at both ends of the triangular connecting frame 12 perfectly fit into the first clamping grooves 211 on the outer surfaces of the transmission shaft 29 and the support shaft 35, so as to stably support the filter net box 16 in a suspended position inside the rinsing water tank 3, at this time, the upper sealing frame 11 will press the floating equipment below the rinsing agent liquid level, even if it is a lightweight invisible correction accessory, it will not float, ensuring complete immersion;

[0053] Then, after the operation panel 46 is operated to start the driver 45, the ultrasonic vibrator in the installation groove 41 immediately generates high-frequency vibration of 28 kHz, which can efficiently strip off dirt without damaging the precise structure of the equipment. When the ultrasonic wave propagates in the liquid, alternating high-pressure and low-pressure areas are formed, and the vacuum bubble cavitation nuclei generated in the low-pressure area instantaneously collapse in the high-pressure area, releasing impact force like countless micro brushes, which can deeply enter the thread gap, bracket groove and other fine structures of the equipment, and accurately strip off hidden dental plaque and food residues.

[0054] At the same time, the miniature electric push rod 47 extends according to the preset program, pushing the transmission rack 48 to slide along the limiting guide rail 410, and the precise meshing of the rack and the transmission gear 27 drives the transmission shaft 29 to rotate; when the push rod extends to the limit position and immediately retracts, at the moment when the end of the rack is separated, the transmission gear 27 drives the triangular connecting frame 12 to naturally swing through the transmission shaft 29, and the filter net box 16 forms a deflection angle of 15-30 degrees in the water tank, when it swings to the highest point, gravity promotes its reset deflection, the transmission shaft 29 and the transmission gear 27 rotate in the opposite direction, driving the transmission rack 48 to reset, and after the end of the rack is aligned with the electric push rod again, the push rod is started to extend again — this reciprocating mechanism makes the filter net box 16 form a continuous and stable pendulum motion, allowing the internal equipment to rub and collide with each other, breaking through the limitations of static cleaning, and accelerating the separation of dirt and the surface of the equipment;

[0055] After the ultrasonic cleaning program is completed, the drain valve 44 is opened, and the 5-degree inclination design at the bottom of the rinsing water tank 3 causes the detached dirt to flow along the inclined surface with the waste liquid, which is quickly discharged through the connecting nozzle 31 and the drain valve 44, avoiding secondary adhesion of dirt. After the waste liquid is emptied, the flush agent switch connected to the water guide main pipe 21 is automatically opened, and the filtered and purified flush agent is divided into each nozzle 210 through the water delivery branch pipe 25, forming a fan-shaped oscillating high-pressure water column. Since the nozzles 210 on the first rotating shaft 22 and the second rotating shaft 23 are both directed at a 45-degree angle to the filter net box 16, the water flow can accurately cover each surface of the equipment;

[0056] More ingeniously, when the transmission shaft 29 rotates, it drives the two first rotating shafts 22 to reciprocate and deflect synchronously through the transmission sprocket 28 and the second transmission chain 26, and the first rotating shaft 22 drives the second rotating shaft 23 through the end sprocket and the first transmission chain 24, so that the nozzle 210 forms an up-and-down swing of 30 degrees during water spraying, and cooperates with the shaking of the water filtering net box 16 to realize the composite cleaning effect of "dynamic flushing + multi-angle coverage"; the waste water generated by flushing is discharged in real time through the drain valve 44, keeping the cleaning environment clean;

[0057] During this process, the shaking of the water filtering net box 16 will drive the internal sliding ball 13 to reciprocate and roll inside the upper sealing frame 11, and the high-frequency vibration generated by the ball impacting the side wall of the net box is transmitted to the instrument through metal, further promoting the loosening of stubborn dirt; at the same time, the instrument continuously squeezes the cleaning wire 15 in the shaking, and these fine wires made of medical-grade nylon will penetrate into the gaps of the instrument, like toothbrush bristles, to clean the residual dirt, forming a double-enhanced cleaning effect of "vibration + wiping";

[0058] After the rinsing is completed, the driving component 4 automatically stops, the operator takes out the water filtering net box 16 from the water tank through the triangular connecting frame 12, opens the arc-shaped buckle 14, and then takes out the clean instrument, and the whole process realizes efficient operation from loading to cleaning to unloading through the precise cooperation of the collecting component 1, the flushing component 2, the rinsing water tank 3 and the driving component 4, which not only reduces the risk of manual contact, but also ensures that each instrument meets the medical-grade cleaning standard through multiple cleaning mechanisms, perfectly meeting the strict needs of batch processing of children's orthodontic instruments.

[0059] The above describes one embodiment of the present application in detail, but the content is only the preferred embodiment of the present application, and cannot be considered as limiting the scope of the present application. Any equivalent changes and improvements made according to the scope of the present application should still belong to the scope of the present application.

Claims

1. A batch rinsing apparatus for child orthodontic treatment appliances, comprising: The utility model discloses a drive component (4), its characterized in that, the inside of drive component (4) is placed with rinsing water tank (3), the inner surface of rinsing water tank (3) is provided with flushing component (2), the inside center of rinsing water tank (3) is clamped with collection component (1); The collection component (1) is used for receiving the orthodontic appliance, so that the orthodontic appliance is immersed underwater, and the outer surface of the orthodontic appliance can be vibrated and brushed; The flushing component (2) is used for flushing the orthodontic appliance after rinsing; The rinsing water tank (3) is used for controlling the discharge of rinsing water and providing support for the collection component (1); The drive component (4) is used for controlling the operation of the flushing component (2), driving the flushing component (2) to reciprocate inside the rinsing water tank (3), and controlling the flushing component (2) to swing up and down on the inner surface of the rinsing water tank (3).

2. A mass rinsing apparatus for orthodontic appliances for children according to claim 1, characterized in that, The collection component (1) includes a water filtering net box (16), an upper sealing frame (11) is rotatably installed on one side of the upper surface of the water filtering net box (16), triangular connecting frames (12) are fixedly connected to the top of both ends of the water filtering net box (16), cleaning wires (15) are uniformly arranged on the bottom of the upper sealing frame (11), sliding balls (13) are slidably sleeved in the upper sealing frame (11), and the sliding balls (13) and the cleaning wires (15) are staggered on the outer surface of the upper sealing frame (11).

3. A mass rinsing apparatus for orthodontic appliances for children according to claim 2, characterized in that, The flushing component (2) includes first rotating shafts (22), second rotating shafts (23) and a transmission shaft (29), transmission sprockets (28) are fixedly installed at one end of the first rotating shafts (22) and the second rotating shafts (23) and the middle of the transmission shaft (29), and the transmission sprockets (28) are arranged in two groups at one end of the first rotating shafts (22). First transmission chains (24) are engagedly connected to the outer surfaces of the transmission sprockets (28) at one end of the first rotating shafts (22) and the second rotating shafts (23), nozzles (210) are fixedly installed on the outer surfaces of the first rotating shafts (22) and the second rotating shafts (23) respectively and uniformly, water delivery branch pipes (25) are connected between the nozzles (210), and a water guide main pipe (21) is connected to one end of the water delivery branch pipes (25).

4. A mass rinsing apparatus for orthodontic appliances for children according to claim 3, characterized in that, The inner bottom end of the rinsing water tank (3) is arranged in an inclined manner, a connecting nozzle (31) is arranged at the lowest end of the bottom surface of the rinsing water tank (3), water baffle plates (34) are arranged at the inner top ends of both sides of the rinsing water tank (3), an isolation frame (32) is arranged on one end surface of the rinsing water tank (3), and a limiting shaft hole (33) is formed in the upper center of both end surfaces of the rinsing water tank (3). Support shafts (35) are rotatably clamped in the limiting shaft holes (33) at one end of the rinsing water tank (3), first clamping grooves (211) are arranged on the outer surfaces of one end of the transmission shaft (29) and the support shafts (35), and transmission gears (27) are fixedly connected to the outer surfaces of the other ends of the transmission shaft (29) and the support shafts (35).

5. A mass rinsing apparatus for orthodontic appliances for children according to claim 4, characterized in that, The driving part (4) includes a driver (45), the top of the driver (45) is provided with a mounting groove (41), the front end face of the driver (45) is provided with an operation panel (46), the upper edge of the both end faces of the driver (45) is fixedly installed with a handle (49), the both end faces of the driver (45) and the upper edge of the handle (49) are fixedly installed with a micro electric push rod (47); The top center of the handle (49) is provided with a limiting guide rail (410), the limiting guide rail (410) is slidably connected with a transmission rack (48) aligned with one end of the micro electric push rod (47), the both ends of the top of the driver (45) are provided with a groove (43), the both end faces of the inside of the mounting groove (41) are symmetrically provided with a second clamping groove (42), and the inside of the mounting groove (41) is provided with an ultrasonic vibrator matched with the bottom of the rinsing water tank (3).

6. A batch rinsing apparatus for orthodontic appliances for children's teeth according to claim 5, characterized in that, The both end faces of the inside of the rinsing water tank (3) are provided with limiting shaft holes, the both ends of the first rotating shaft (22) and the second rotating shaft (23) are rotatably connected with the inside of the rinsing water tank (3) through the limiting shaft holes, the top end of the rinsing water tank (3) is inserted into the inside of the driver (45) through the mounting groove (41), the ultrasonic vibrator in the inside of the mounting groove (41) is matched and abuts against the bottom of the rinsing water tank (3), and the rinsing water tank (3) is inserted into the inside of the one end mounting groove (41) of the drain valve (44) through the connecting nozzle (31) at the bottom.

7. A mass rinsing apparatus for orthodontic appliances for children according to claim 6, characterized in that, The bottom outer surface of the connecting nozzle (31) is provided with a sealing ring, the support shaft (35) and the transmission shaft (29) are clamped with the top of the driver (45) through the groove (43), the rinsing water tank (3) is clamped with the second clamping groove (42) through the one end isolation frame (32), and the transmission shaft (29) is rotatably connected with the one end of the first rotating shaft (22) through the transmission sprocket (28) and the second transmission chain (26).

8. A mass rinsing apparatus for orthodontic appliances for children according to claim 7, characterized in that, The first rotating shaft (22) is rotatably connected with the one end of the second rotating shaft (23) through the transmission sprocket (28) and the first transmission chain (24) at the one end, the filter net tank (16) is clamped with the first clamping groove (211) through the both ends of the triangular connecting frame (12), and the transmission rack (48) is meshedly connected with the transmission gear (27) in the inside of the limiting guide rail (410).