False tooth cleaning and disinfecting cabinet
By designing the support grid and guide plate lifting components of the denture cleaning and disinfection cabinet, the synchronous cleaning and ultrasonic disinfection of multiple dentures are achieved, solving the problem of low cleaning efficiency by manual one by one and improving the processing efficiency.
Patent Information
- Application Number
- CN202421636365.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-10
- Publication Date
- 2025-07-18
- Estimated Expiration
- 2034-07-10
AI Technical Summary
In the prior art, when a dental clinic or hospital or other places need to clean and disinfect multiple dentures, manual hand-held brushes are inefficient in processing one by one, which is a waste of time.
A denture cleaning and disinfection cabinet was designed, and a split net was set up in the inner cavity of the support grid. Combined with the guide plate and lifting components, the synchronous cleaning and ultrasonic disinfection of multiple dentures were realized. Through the continuous treatment of the preliminary cleaning unit and the re-cleaning unit, cross-contamination of impurities was avoided.
It realizes fast and efficient synchronous cleaning and disinfection of multiple dentures, saving time and avoiding the inefficiency of manual single treatment. It is suitable for the unified processing process of dental clinics or hospitals.
Smart Images

Figure CN223111823U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of denture cleaning, and particularly relates to a denture cleaning and disinfection cabinet. Background Art
[0002] Dentures are what people often call "false teeth". Medically, they are the general term for prostheses made after partial or complete loss of upper and lower teeth. Dentures are divided into removable and fixed types. Fixed dentures cannot be taken on and off by patients themselves, while removable dentures can be conveniently taken on and off by patients. Among them, removable dentures need to be cleaned and disinfected regularly.
[0003] The existing conventional method for cleaning and disinfecting dentures is to clean the dentures manually with a brush. However, in places such as dental clinics or hospitals, multiple dentures often need to be cleaned and disinfected at one time. If multiple dentures are cleaned and disinfected one by one manually with a brush, it will waste a lot of time and reduce the processing efficiency of denture cleaning and disinfection. Content of the Utility Model
[0004] In view of the problems existing in the prior art that in places such as dental clinics or hospitals, multiple dentures often need to be cleaned and disinfected at one time. If multiple dentures are cleaned and disinfected one by one manually with a brush, it will waste a lot of time and reduce the processing efficiency of denture cleaning and disinfection, etc., the utility model provides a denture cleaning and disinfection cabinet, which can synchronously clean and disinfect multiple dentures, is more suitable for the unified processing process of dentures in places such as dental clinics or hospitals, and can preliminarily process the impurities on the surfaces of multiple dentures during the preliminary cleaning to avoid subsequent bacterial cross-infection. After preliminary cleaning, multiple dentures enter the subsequent ultrasonic cleaning and disinfection process uniformly. The two processes can be carried out coherently without interference, and can more completely realize the synchronous cleaning and disinfection of multiple dentures. The specific technical solution is as follows:
[0005] A denture cleaning and disinfection cabinet includes a disinfection cabinet. A partition is installed in the inner cavity of the disinfection cabinet from front to back. The partition is arranged parallel to the inner wall of the disinfection cabinet. The partition divides the inner cavity space of the disinfection cabinet into a discharge chamber and a cleaning chamber. A first motor is installed on the front side wall of the disinfection cabinet. The output end of the first motor is connected to a guide plate. The guide plate is rotatably arranged above the cleaning chamber. The left and right sides of the disinfection cabinet are respectively connected with a first discharge port and a second discharge port. The first discharge port is communicated with the inner cavity of the discharge chamber, and the second discharge port is communicated with the inner cavity of the cleaning chamber. A supporting grid is arranged above the disinfection cabinet in a lifting manner. A plurality of dividing meshes are fixedly installed in the supporting grid. The dividing meshes divide the supporting grid into a plurality of independent spaces. A preliminary cleaning unit is arranged above the supporting grid, and a re-cleaning unit is arranged in the inner cavity of the cleaning chamber.
[0006] In the above technical solution, the width of the guide plate is greater than the width of the inner cavity of the cleaning bin.
[0007] In the above technical solution, two sets of lifting components are arranged at the top of the disinfection cabinet, and the two sets of lifting components are symmetrically arranged on the front and rear sides of the top of the disinfection cabinet respectively;
[0008] Each set of lifting components includes a first support plate fixedly installed on the top and side wall of the disinfection cabinet, and also includes a pulley rotatably connected to the side wall of the first support plate. A second support plate is fixedly installed in the middle of the right side wall of the disinfection cabinet. A rotating shaft is rotatably connected to the side wall of the second support plate. Reels are installed on the front and rear sides of the rotating shaft respectively. One end of a steel wire rope is wound around the outer wall of the reel. The other end of the steel wire rope is wound around the outer walls of the pulleys on the right side and the top in sequence. A connecting seat is installed on the outer wall of the supporting wire rack, and the other end of the steel wire rope is connected to the connecting seat.
[0009] In the above technical solution, a first gear is fixedly installed on the rotating shaft. An installation seat is fixedly installed on the right side wall of the disinfection cabinet. A second motor is installed on the side wall of the installation seat. The output end of the second motor is connected to a driving shaft. The driving shaft is rotatably connected to the installation seat. A second gear is fixedly installed on the driving shaft, and the second gear is meshed with the first gear.
[0010] In the above technical solution, the preliminary cleaning unit includes a fixing plate fixedly installed on the top of the disinfection cabinet. A connecting pipe penetrates through the fixing plate. A delivery pipe is communicated with the bottom end of the connecting pipe. A plurality of spray heads are equidistantly communicated and arranged at the bottom end of the delivery pipe.
[0011] In the above technical solution, the positions of the spray heads correspond to the positions of the supporting wire rack up and down.
[0012] Compared with the prior art, a denture cleaning and disinfection cabinet of the present utility model has the following beneficial effects:
[0013] First, for places such as dental clinics or hospitals, multiple dentures often need to be cleaned and disinfected at one time. If a brush is held manually to clean and disinfect multiple dentures one by one, a large amount of time will be wasted, and the processing efficiency of denture cleaning and disinfection will be reduced. By arranging a plurality of partition meshes in the inner cavity of the supporting wire rack, the space of the supporting wire rack can be partitioned, so as to synchronously clean and disinfect multiple dentures subsequently. Compared with the traditional manual single denture processing method, it is faster, more efficient and saves time;
[0014] Second, the utility model can first uniformly perform preliminary spraying and rinsing on multiple dentures in the inner cavity of the supporting grid, avoiding impurities on the surface of the dentures from entering the subsequent cleaning and disinfection process, and through the guide plate, the liquid after preliminary cleaning can be guided to the inner cavity of the discharge bin, preventing the liquid from flowing downward into the inner cavity of the cleaning bin and causing pollution;
[0015] Third, by setting a flexible rotating guide plate, the utility model can selectively block the upper part of the cleaning bin. The guide plate in the blocking state can guide the liquid after preliminary cleaning to the inner cavity of the discharge bin, and the guide plate in the non-blocking state can leave enough space for the supporting grid to move downward into the inner cavity of the cleaning bin, ensuring that multiple dentures in the inner cavity of the supporting grid enter the inner cavity of the cleaning bin for subsequent ultrasonic cleaning and disinfection process;
[0016] Fourth, through the winding and movement of the steel wire rope, the utility model can realize the flexible lifting and moving of the supporting grid, with convenient operation and strong automation. There is no need to manually fish out the dentures from the cleaning liquid, avoiding the direct contact of the cleaning liquid with the human hand;
[0017] In summary, the utility model can synchronously clean and disinfect multiple dentures, which is more suitable for the unified processing process of dentures in places such as dental clinics or hospitals. During preliminary cleaning, impurities on the surfaces of multiple dentures can be preliminarily treated to avoid subsequent bacterial cross-infection. After preliminary cleaning, multiple dentures enter the subsequent ultrasonic cleaning and disinfection process uniformly. The two processes can be carried out continuously without interference, and can more completely realize the synchronous cleaning and disinfection of multiple dentures. Compared with the traditional manual single denture processing method, it is faster, more efficient, and saves time. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 is a schematic structural diagram of the disinfection cabinet of the utility model;
[0019] Figure 2 is a schematic structural diagram of the disinfection cabinet of the utility model from another angle;
[0020] Figure 3 is a schematic structural diagram of the guide plate in the blocking state of the utility model;
[0021] Figure 4 is a schematic structural diagram of the guide plate in the retracted state of the utility model;
[0022] Figures 1 to 4In it, 1. disinfection cabinet, 2. partition board, 3. first motor, 4. guide plate, 5. first row outlet, 6. second row outlet, 7. discharge bin, 8. cleaning bin, 9. supporting grid, 10. dividing net, 11. connecting seat, 12. first support plate, 13. pulley, 14. second support plate, 15. rotating shaft, 16. reel, 17. steel wire rope, 18. first gear, 19. mounting seat, 20. drive shaft, 21. second gear, 22. second motor, 23. fixing plate, 24. connecting pipe, 25. conveying pipe, 26. nozzle. Detailed implementation mode
[0023] The following combines specific implementation cases and appendices Figures 1 to 4 The present utility model will be further described, but the present utility model is not limited to these embodiments.
[0024] Refer to Figures 1 to 4 As shown, a denture cleaning and disinfection cabinet includes a disinfection cabinet 1. A partition board 2 is installed in the inner cavity of the disinfection cabinet 1 from front to back. The partition board 2 is arranged parallel to the inner wall of the disinfection cabinet 1. The partition board 2 divides the inner cavity space of the disinfection cabinet 1 into a discharge bin 7 and a cleaning bin 8. A first motor 3 is installed on the front side wall of the disinfection cabinet 1. The output end of the first motor 3 is connected to a guide plate 4. The guide plate 4 is rotatably arranged above the cleaning bin 8. The left and right sides of the disinfection cabinet 1 are respectively connected with a first row outlet 5 and a second row outlet 6. The first row outlet 5 is communicated with the inner cavity of the discharge bin 7, and the second row outlet 6 is communicated with the inner cavity of the cleaning bin 8. A supporting grid 9 is arranged above the disinfection cabinet 1 in a lifting manner. A plurality of dividing nets 10 are fixedly installed in the supporting grid 9. The dividing nets 10 divide the supporting grid 9 into a plurality of independent spaces. A preliminary cleaning unit is arranged above the supporting grid 9, and a re-cleaning unit is arranged in the inner cavity of the cleaning bin 8. By arranging a plurality of dividing nets 10 in the inner cavity of the supporting grid 9, the space of the supporting grid 9 can be partitioned, so as to synchronously clean and disinfect a plurality of dentures subsequently. Compared with the traditional manual single denture treatment method, it is more rapid and efficient, saving time. Specifically, the width of the guide plate 4 is greater than the width of the inner cavity of the cleaning bin 8, so as to ensure that when the guide plate 4 is in an inclined state, it can completely block the upper part of the cleaning bin 8, ensuring that the cleaning liquid during preliminary cleaning can enter the inner cavity of the discharge bin 7 through the surface of the guide plate 4 and be discharged to the outside, avoiding the cleaning liquid entering the inner cavity of the cleaning bin 8 and causing subsequent pollution.
[0025] Refer to Figure 1 and Figure 2As shown in the figure, two sets of lifting components are provided at the top of the disinfection cabinet 1. The two sets of lifting components are symmetrically arranged on the front and rear sides of the top of the disinfection cabinet 1. Through the lifting components, the supporting wire rack 9 can be moved vertically, so as to enable the supporting wire rack 9 to flexibly enter or exit the inner cavity of the cleaning chamber 8; Each set of lifting components includes a first support plate 12 fixedly installed on the top and side wall of the disinfection cabinet 1, and also includes a pulley 13 rotatably connected to the side wall of the first support plate 12. A second support plate 14 is fixedly installed in the middle of the right side wall of the disinfection cabinet 1. A rotating shaft 15 is rotatably connected to the side wall of the second support plate 14. Reels 16 are installed on the front and rear sides of the rotating shaft 15 respectively. One end of a steel wire rope 17 is wound around the outer wall of the reel 16. The other end of the steel wire rope 17 is sequentially wound around the outer walls of the pulleys 13 on the right side and the top. A connecting seat 11 is installed on the outer wall of the supporting wire rack 9, and the other end of the steel wire rope 17 is connected to the connecting seat 11. By rotating the rotating shaft 15, the two reels 16 on the front and rear sides can be driven to unwind synchronously, prompting the steel wire rope 17 to move along the outer wall of the pulley 13. At this time, the connection point between the steel wire rope 17 and the connecting seat 11 gradually moves downward, so as to realize that the supporting wire rack 9 and the dentures in its inner cavity move downward into the inner cavity of the cleaning chamber 8; Through the ultrasonic cleaning effect and cleaning liquid in the inner cavity of the cleaning chamber 8, multiple dentures in the supporting wire rack 9 are uniformly further cleaned and disinfected.
[0026] Refer to Figure 2 As shown in the figure, a first gear 18 is fixedly installed on the rotating shaft 15. An installation seat 19 is fixedly installed on the right side wall of the disinfection cabinet 1. A second motor 22 is installed on the side wall of the installation seat 19. The output end of the second motor 22 is connected to a drive shaft 20. The drive shaft 20 is rotatably connected to the installation seat 19. A second gear 21 is fixedly installed on the drive shaft 20, and the second gear 21 is meshed with the first gear 18. By starting the second motor 22 to drive the drive shaft 20 and the second gear 21 to rotate, the first gear 18 and the rotating shaft 15 are driven to rotate synchronously. At this time, the two reels 16 on the front and rear sides of the outer wall of the rotating shaft 15 unwind synchronously.
[0027] Refer to Figure 1 As shown in the figure, the preliminary cleaning unit includes a fixing plate 23 fixedly installed on the top of the disinfection cabinet 1. A connecting pipe 24 is installed through the fixing plate 23. The bottom end of the connecting pipe 24 is communicated with a delivery pipe 25. A plurality of nozzles 26 are equidistantly communicated and arranged at the bottom end of the delivery pipe 25. The cleaning liquid is sprayed downward from the nozzles 26 through an external cleaning liquid delivery device via the connecting pipe 24 and the delivery pipe 25, so as to synchronously perform a preliminary cleaning function on multiple dentures in the supporting wire rack 9. The liquid during the cleaning process is guided by the inclined guide plate 4 to flow into the inner cavity of the discharge bin 7 on the left side, and then this liquid is discharged through the first discharge port 5; In order to ensure that the cleaning liquid of the nozzles 26 can accurately act on the dentures in the supporting wire rack 9, the positions of the nozzles 26 and the supporting wire rack 9 correspond up and down.
[0028] In addition, the liquid contained in the inner cavity of the cleaning bin 8 contains a certain concentration of disinfectant, which can disinfect the dentures after cleaning. The ultrasonic cleaning device at the cleaning bin 8 is an existing device, and its principle mainly relies on the cavitation effect, acceleration effect, and rectilinear flow effect of ultrasonic waves in the liquid. These effects directly and indirectly affect the liquid and dirt, dispersing, emulsifying, and peeling the dirt layer, so as to achieve the purpose of cleaning. Since it is an existing device, no excessive limitation is imposed on it here.
[0029] It should be noted that the first motor 3 and the second motor 22 used in this application are self-locking motors commonly used in the market with an output end that can be locked. When they are shut down, the output end can be self-locked and will not rotate under external force. No excessive elaboration is made on the above existing components here.
[0030] The working principle of a denture cleaning and disinfection cabinet in this embodiment is as follows:
[0031] The dentures to be cleaned and disinfected are respectively placed in different areas of the inner cavity of the supporting grid 9. The cleaning liquid is sprayed downward from the nozzle 26 through the connecting pipe 24 and the delivery pipe 25 via an external cleaning liquid delivery device to synchronously perform a preliminary cleaning function on multiple dentures in the supporting grid 9. The liquid during the cleaning process is guided by the inclined guide plate 4 to flow into the inner cavity of the discharge bin 7 on the left, and then this liquid is discharged through the first discharge port 5.
[0032] After the preliminary cleaning, the first motor 3 is started to drive the guide plate 4 to rotate counterclockwise until the guide plate 4 fits against the right inner wall of the disinfection cabinet 1, leaving enough space for the subsequent descent of the supporting grid 9. The second motor 22 is started to drive the drive shaft 20 and the second gear 21 to rotate, and then drive the first gear 18 and the rotating shaft 15 to rotate synchronously. At this time, the two reels 16 on the front and rear sides of the outer wall of the rotating shaft 15 unwind simultaneously, causing the steel wire rope 17 to move along the outer wall of the pulley 13. At this time, the connection point between the steel wire rope 17 and the connecting seat 11 gradually moves downward to realize the downward movement of the supporting grid 9 and the dentures in its inner cavity into the inner cavity of the cleaning bin 8. Through the ultrasonic cleaning effect and the cleaning liquid in the inner cavity of the cleaning bin 8, a unified further cleaning and disinfection function is performed on multiple dentures in the supporting grid 9.
[0033] The utility model can synchronously clean and disinfect multiple dentures, is more suitable for the unified processing process of dentures in places such as dental clinics or hospitals, and can preliminarily process the impurities on the surfaces of multiple dentures during the preliminary cleaning to avoid subsequent bacterial cross-infection. After the preliminary cleaning, multiple dentures enter the subsequent ultrasonic cleaning and disinfection process uniformly. The two processes can be carried out continuously without interference, and can more completely realize the synchronous cleaning and disinfection of multiple dentures. Moreover, it is faster and more efficient than the traditional manual single denture processing method, saving time.
[0034] The above are only the preferred embodiments of the present utility model and are not intended to limit the present utility model. For those skilled in the art, the present utility model may have various modifications and variations. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present utility model shall be included within the protection scope of the present utility model.
Claims
1. An artificial tooth cleaning and disinfection cabinet, comprising a disinfection cabinet (1), characterized in that, Inside the inner cavity of the disinfection cabinet (1), a partition plate (2) is installed from front to back. The partition plate (2) is arranged parallel to the inner wall of the disinfection cabinet (1). The partition plate (2) divides the inner cavity space of the disinfection cabinet (1) into a discharge bin (7) and a cleaning bin (8). A first motor (3) is installed on the front side wall of the disinfection cabinet (1). The output end of the first motor (3) is connected to a guide plate (4). The guide plate (4) is rotatably arranged above the cleaning bin (8). The left and right sides of the disinfection cabinet (1) are respectively connected to a first discharge port (5) and a second discharge port (6). The first discharge port (5) is communicated with the inner cavity of the discharge bin (7), and the second discharge port (6) is communicated with the inner cavity of the cleaning bin (8). A supporting wire rack (9) is arranged above the disinfection cabinet (1) in a lifting manner. A plurality of partition nets (10) are fixedly installed in the supporting wire rack (9). The partition nets (10) divide the supporting wire rack (9) into a plurality of independent spaces. A preliminary cleaning unit is arranged above the supporting wire rack (9), and a re-cleaning unit is arranged in the inner cavity of the cleaning bin (8).
2. The denture cleaning and disinfection cabinet according to claim 1, wherein: The width of the guide plate (4) is greater than the width of the inner cavity of the cleaning bin (8).
3. A denture cleaning and disinfection cabinet according to claim 1, characterized in that: Two groups of lifting components are arranged at the top end of the disinfection cabinet (1), and the two groups of lifting components are symmetrically arranged on the front and rear sides of the top end of the disinfection cabinet (1) respectively; Each group of lifting components includes a first support plate (12) fixedly installed on the top end and the side wall of the disinfection cabinet (1), and also includes a pulley (13) rotatably connected to the side wall of the first support plate (12). A second support plate (14) is fixedly installed in the middle of the right side wall of the disinfection cabinet (1). A rotating shaft (15) is rotatably connected to the side wall of the second support plate (14). On the front and rear sides of the rotating shaft (15), a reel (16) is installed respectively. One end of a steel wire rope (17) is wound around the outer wall of the reel (16). The other end of the steel wire rope (17) is wound around the outer walls of the pulleys (13) on the right side and the top end in sequence. A connecting seat (11) is installed on the outer wall of the supporting wire rack (9), and the other end of the steel wire rope (17) is connected to the connecting seat (11).
4. The denture cleaning and disinfection cabinet according to claim 3, wherein: A first gear (18) is fixedly installed on the rotating shaft (15). An installation seat (19) is fixedly installed on the right side wall of the disinfection cabinet (1). A second motor (22) is installed on the side wall of the installation seat (19). The output end of the second motor (22) is connected to a driving shaft (20). The driving shaft (20) is rotatably connected to the installation seat (19). A second gear (21) is fixedly installed on the driving shaft (20), and the second gear (21) is meshed and connected with the first gear (18).
5. The denture cleaning and disinfection cabinet according to claim 1, wherein: The preliminary cleaning unit includes a fixed plate (23) fixedly installed on the top end of the disinfection cabinet (1). A connecting pipe (24) is installed through the fixed plate (23). The bottom end of the connecting pipe (24) is communicated with a conveying pipe (25). A plurality of nozzles (26) are equidistantly communicated and arranged at the bottom end of the conveying pipe (25).
6. The denture cleaning and disinfection cabinet according to claim 5, wherein: The positions of the nozzles (26) correspond to the positions of the supporting wire rack (9) up and down.