Pupil film glasses cleaning instrument convenient for replacing cleaning fluid

By designing a pupil mask glasses cleaner that is easy to replace the cleaning liquid, the problem of manual pouring and replacing the cleaning liquid is solved, and automatic storage and discharge of the cleaning liquid is achieved, improving the practicality and stability of the equipment.

CN223078572UActive Publication Date: 2025-07-08SUZHOU FENGSHANG ZHIXUAN MEDICAL TECH CO LTD
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Patent Information

Application Number
CN202421828038.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-31
Publication Date
2025-07-08
Estimated Expiration
2034-07-31

AI Technical Summary

Technical Problem

The existing pupil mask glasses cleaner requires manual pouring and replacement of cleaning liquid, which is not very practical, and the cleaning liquid and detergent are easily dropped when carried, which affects normal use.

Method used

A pupil membrane glasses cleaning meter is designed to facilitate replacement of cleaning liquid, including storage structure, cleaning structure and automatic drainage structure. It is fixed by a suction cup, and a cleaning agent storage component and automatic drainage component are set to realize the automatic delivery of cleaning liquid and the automatic discharge of waste liquid.

Benefits of technology

It realizes automatic replacement and storage of cleaning fluid, avoids the drop of cleaning fluid and detergent, and improves the convenience of use and the stability of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The pupil film glasses cleaning instrument comprises a storage structure, a cleaning agent storage assembly, a cleaning structure and an automatic water feeding and discharging structure are embedded in the storage structure, the upper side of the automatic water feeding and discharging structure is communicated with the cleaning structure, and the cleaning agent storage assembly is arranged on the right side of the cleaning structure. The storage structure comprises a cleaning instrument shell, the lower side of the cleaning instrument shell is in threaded connection with a suction cup, the upper side of the cleaning instrument shell is rotationally connected with a first sealing assembly, a mainboard is embedded in the cleaning instrument shell, the upper side of the mainboard is in clamped connection with a middle shell, and a switch, a touch display screen and a controller are embedded in the right side of the middle shell. A switch is arranged on the front side of the touch display screen. According to the pupil film glasses cleaning instrument convenient to replace the cleaning liquid, bottled cleaning agents are stored through arrangement of the storage box, the bottled cleaning agents are limited through a limiting plate under the self-elasticity effect of a spring shaft, the cleaning liquid storage bottle is stored under the auxiliary effect of a first storage box, and the cleaning liquid storage bottle is prevented from falling off.
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Description

Technical Field

[0001] The utility model relates to the technical field of glasses cleaning instruments, in particular to a pupil membrane glasses cleaning instrument which is convenient for replacing cleaning liquid. Background Technique

[0002] Glasses cleaning machines mainly use ultrasonic cleaning machine technology and can quickly clean the dirt on the surface and in the fine cracks of glasses. At first, they were mainly used in glasses stores and production factories. Now, they have gradually developed into household appliances, and professional cleaning work can also be done at home. They are very good cleaning assistants. When the existing pupil membrane glasses cleaning instrument is cleaning, the user needs to manually pour the cleaning liquid and manually replace the cleaning liquid after cleaning, so its practicability is not strong. When the existing glasses cleaning instrument is carried, the cleaning liquid and cleaning agent need to be stored and carried separately, so the cleaning liquid and cleaning agent are prone to falling during carrying, which affects the normal use of the glasses cleaning instrument. Content of the Utility Model

[0003] The purpose of the utility model is to provide a pupil membrane glasses cleaning instrument which is convenient for replacing cleaning liquid to solve the problems put forward in the above background technique that when the existing pupil membrane glasses cleaning instrument is cleaning, the user needs to manually pour the cleaning liquid and manually replace the cleaning liquid after cleaning, so its practicability is not strong. When the existing glasses cleaning instrument is carried, the cleaning liquid and cleaning agent need to be stored and carried separately, so the cleaning liquid and cleaning agent are prone to falling during carrying, which affects the normal use of the glasses cleaning instrument.

[0004] To achieve the above purpose, the utility model provides the following technical scheme: a pupil membrane glasses cleaning instrument which is convenient for replacing cleaning liquid, including a storage structure, on which a cleaning agent storage component, a cleaning structure and an automatic water inlet and drainage structure are inlaid. The upper side of the automatic water inlet and drainage structure is communicated with the cleaning structure, and the cleaning agent storage component is arranged on the right side of the cleaning structure. The storage structure includes a cleaning instrument housing, the lower side of the cleaning instrument housing is threadedly connected with a suction cup, the upper side of the cleaning instrument housing is rotatably connected with a first sealing component, a main board is inlaid in the cleaning instrument housing, the upper side of the main board is snap-connected with a middle shell, a switch, a touch display screen and a controller are inlaid on the right side of the middle shell, the controller is arranged on the right side of the touch display screen, and the switch is arranged in front of the touch display screen;

[0005] The first sealing component includes a rotating rod, a first sealing cover is rotatably connected to the rotating rod, a limiting convex block is fixed on the first sealing cover, and the lower side of the limiting convex block is inlaid in a limiting hole opened on the cleaning instrument housing.

[0006] Preferably, the cleaning agent storage component includes a storage box, a spring shaft is fixed in the storage box, and a limiting plate is fixed at one end of the spring shaft.

[0007] By adopting the above technical scheme, the bottled cleaning agent storage component is stored by setting the cleaning agent storage component.

[0008] Preferably, the cleaning structure includes a cleaning box, the cleaning box is rotatably connected to the second sealing assembly, a water level sensor is embedded in the inner wall at the rear side of the cleaning box, and an ultrasonic generator is embedded on the right side of the cleaning box.

[0009] By adopting the above technical solution, the pupil membrane glasses are automatically cleaned by setting the cleaning structure.

[0010] Preferably, the automatic water inlet and drainage structure includes a first storage tank, a water inlet assembly is embedded in the first storage tank, and a drainage assembly is arranged on the left side of the water inlet assembly.

[0011] Preferably, the water inlet assembly includes a cleaning liquid storage bottle, the cleaning liquid storage bottle is threadedly connected to a threaded sealing cover, a first water delivery pipe penetrates through the threaded sealing cover, the first water delivery pipe is threadedly connected to a second water delivery pipe through a threaded hollow connector, a first pressure pump is fixed on the first water delivery pipe, and a water inlet is communicated on the second water delivery pipe.

[0012] By adopting the above technical solution, the cleaning box is automatically supplied with water by setting the water inlet assembly.

[0013] Preferably, the drainage assembly includes a drainage port, a drainage pipe is communicated below the drainage port, the drainage pipe is rotatably and sealingly connected to a rubber sealing cover, the drainage pipe is snap-fitted and embedded in a limiting ring, the limiting ring is fixed on the inner wall of the right side of the second storage tank, and a second pressure pump is fixed on the drainage pipe.

[0014] By adopting the above technical solution, the waste water is automatically discharged by setting the drainage assembly.

[0015] Compared with the prior art, the beneficial effects of the present utility model are: the pupil membrane glasses cleaning instrument that is convenient to replace the cleaning liquid

[0016] (1) Four groups of suction cups are provided to prevent the eye cleaning instrument from moving during operation and falling from a height, causing unnecessary losses. The storage box is provided to store the bottled cleaning agent. Under the action of the self-elastic force of the spring shaft, the limiting plate limits the bottled cleaning agent, thereby preventing the bottled cleaning agent from falling. With the assistance of the first storage tank, the cleaning liquid storage bottle is stored, and similarly, the cleaning liquid storage bottle is prevented from falling, affecting the normal use of the eye cleaning instrument;

[0017] (2) An automatic water inlet and drainage structure is provided. With the assistance of the first pressure pump on the first water delivery pipe, the cleaning liquid in the cleaning liquid storage bottle is pumped into the cleaning box to soak the pupil membrane eyes. After cleaning the pupil membrane eyes, the staff opens the rubber sealing cover on the drainage pipe, and the waste water in the cleaning box is automatically discharged. A motor heating wire is embedded in the cleaning box to dry the cleaning box. Description of the Drawings

[0018] Figure 1This is a front view structural schematic diagram of the present utility model;

[0019] Figure 2 This is a structural schematic diagram of the cleaning agent storage component of the present utility model distributed on the middle shell;

[0020] Figure 3 This is a storage structural schematic diagram of the present utility model;

[0021] Figure 4 This is the present utility model Figure 1 A magnified structural schematic diagram at position A in the middle;

[0022] Figure 5 This is a three-dimensional structural schematic diagram of the bird repelling component of the present utility model.

[0023] In the figure: 1. Storage structure; 11. Cleaning instrument housing; 12. Suction cup; 13. First sealing component; 131. Rotating rod; 132. First sealing cover; 133. Limit convex block; 134. Limit hole; 14. Main board; 15. Middle shell; 16. Switch; 17. Touch display screen; 18. Controller; 19. Battery; 2. Cleaning agent storage component; 21. Storage box; 22. Spring shaft; 23. Limit plate; 3. Cleaning structure; 31. Cleaning box; 32. Second sealing component; 33. Water level sensor; 34. Ultrasonic generator; 4. Automatic water inlet and drainage structure; 41. First storage tank; 42. Water inlet component; 421. Cleaning liquid storage bottle; 422. Threaded sealing cover; 423. First water delivery pipe; 424. Threaded hollow connecting piece; 425. Second water delivery pipe; 426. First pressurizing pump; 427. Water inlet; 43. Drainage component; 431. Drainage port; 432. Drainage pipe; 433. Second pressurizing pump; 434. Rubber sealing cover; 435. Second storage tank; 436. Limit ring. Detailed implementation manners

[0024] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.

[0025] Please refer to Figures 1-5 , the present utility model provides a technical solution: A pupil membrane glasses cleaning instrument that is convenient for replacing the cleaning liquid, such as Figure 1 , Figure 2 and Figure 3As shown in the figure, it includes a storage structure 1. The storage structure 1 includes a cleaning instrument housing 11. A suction cup 12 is threadedly connected to the lower side of the cleaning instrument housing 11. A first sealing component 13 is rotatably connected to the upper side of the cleaning instrument housing 11. A main board 14 is inlaid in the cleaning instrument housing 11. A middle shell 15 is snap-fitted to the upper side of the main board 14. A switch 16, a touch display screen 17 and a controller 18 are inlaid on the right side of the middle shell 15. The controller 18 is arranged on the right side of the touch display screen 17, and the switch 16 is arranged on the front side of the touch display screen 17. A storage battery 19 is arranged on the lower side of the main board 14. The first sealing component 13 includes a rotating rod 131. A first sealing cover 132 is rotatably connected to the rotating rod 131. A limiting bump 133 is fixed on the first sealing cover 132. The lower side of the limiting bump 133 is inlaid in a limiting hole 134, and the limiting hole 134 is opened on the cleaning instrument housing 11;

[0026] Among them, a controller 18 for controlling the whole device is inlaid on the middle shell 15. A type-c interface is arranged on the main board 14, which is convenient for externally powering the whole device in the later stage. A sealing plate is rotatably connected to the front side of the cleaning instrument housing 11, so as to seal the automatic water inlet and drainage structure 4. A transparent observation port penetrates through the first sealing cover 132, which is convenient for staff to observe the internal cleaning data in real time;

[0027] Specifically, there are four groups of suction cups 12. The four groups of suction cups 12 are symmetrically arranged about the central axis of the cleaning instrument housing 11. The staff rotates the first sealing cover 132, and the limiting bump 133 on the first sealing cover 132 is separated from the limiting hole 134 on the cleaning instrument housing 11. The first sealing cover 132 rotates with the assistance of the rotating rod 131, so as to prevent the first sealing cover 132 from being discarded on one side and lost, causing unnecessary losses. The cleaning instrument housing 11 is detachably installed with the four groups of suction cups 12, so as to facilitate the replacement of the suction cups 12. The main board 14 is fixed on the bottom plate in the cleaning instrument housing 11, which is convenient for later removal and maintenance;

[0028] In the above scheme, the position of the cleaning instrument housing 11 is limited by the suction cup 12 on the lower side of the cleaning instrument housing 11. The storage battery 19 converts alternating current into direct current through an inverter to provide electrical energy for the whole device. The switch 16 on the middle shell 15 turns the cleaning instrument on or off, and the touch display screen 17 is set to display data and perform manual control.

[0029] As Figure 1 、 Figure 2 and Figure 5 shown in the figure, a cleaning agent storage component 2 is arranged on the right side of the cleaning structure 3. The cleaning agent storage component 2 includes a storage box 21. A spring shaft 22 is fixed in the storage box 21. One end of the spring shaft 22 is fixed with a limiting plate 23;

[0030] Among them, a rubber anti-slip pad is inlaid on the limiting plate 23. An iris eye storage box is inlaid on the upper side inside the storage box 21, so as to store the iris eyes;

[0031] In the above solution, the bottled cleaning agent is placed inside the storage box 21, and under the auxiliary action of the self-elastic force of the spring shaft 22, the bottled cleaning agents of different lengths are limited by the limiting plate 23.

[0032] As Figure 1 and Figure 4 shown, the cleaning agent storage component 2, the cleaning structure 3 and the automatic water inlet and drainage structure 4 are inlaid on the storage structure 1. The upper side of the automatic water inlet and drainage structure 4 is connected to the cleaning structure 3. The cleaning structure 3 includes a cleaning box 31. The cleaning box 31 is rotatably connected to the second sealing component 32. The water level sensor 33 is inlaid on the inner wall at the rear side of the cleaning box 31. The ultrasonic generator 34 is inlaid on the right side of the cleaning box 31. The automatic water inlet and drainage structure 4 includes a first storage tank 41. The water inlet component 42 is inlaid in the first storage tank 41. The drainage component 43 is arranged on the left side of the water inlet component 42. The water inlet component 42 includes a cleaning liquid storage bottle 421. The cleaning liquid storage bottle 421 is threadedly connected to the threaded sealing cover 422. The first water delivery pipe 423 penetrates through the threaded sealing cover 422. The first water delivery pipe 423 is threadedly connected to the second water delivery pipe 425 through the threaded hollow connecting piece 424. The first pressurizing pump 426 is fixed on the first water delivery pipe 423. The water inlet 427 is communicated with the second water delivery pipe 425. The drainage component 43 includes a drainage port 431. The lower side of the drainage port 431 is communicated with the drainage pipe 432. The drainage pipe 432 is rotatably and sealingly connected to the rubber sealing cover 434. The drainage pipe 432 is snap-fitted and inlaid in the limiting ring 436. The limiting ring 436 is fixed on the inner wall of the right side of the second storage tank 435. The second pressurizing pump 433 is fixed on the drainage pipe 432;

[0033] Among them, the model of the water level sensor 33 is HM21. The hydroxyl generation module is inlaid on the lower side inside the cleaning box 31. Through the waveform provided by the main board 14, the generation module generates hydroxyl to disinfect and sterilize the lens. The hydroxyl generation module is a prior art;

[0034] Specifically, the structures of the second sealing component 32 and the first sealing component 13 are the same. The silica gel ring is inlaid in the first sealing cover 132 inside the second sealing component 32, so as to prevent liquid leakage when the cleaning box 31 is cleaning, causing unnecessary losses;

[0035] Furthermore, electric valves are inlaid on both the second water delivery pipe 425 and the drainage pipe 432 to open or close the water inlet and outlet. The first water delivery pipe 423 is detachably installed with the second water delivery pipe 425 through the threaded hollow connecting piece 424, so as to replace the cleaning liquid storage bottle 421, and the operation is simple and convenient;

[0036] In the above solution, with the assistance of the first pressure pump 426 in the cleaning liquid storage bottle 421 in the first storage box 41, the cleaning liquid in the cleaning liquid storage bottle 421 enters the cleaning box 31 through the second water delivery pipe 425, the threaded sealing cap 422, the threaded hollow connector 424, the first water delivery pipe 423 and the water inlet 427, so as to soak the pupil membrane glasses in the cleaning box 31. The water level is monitored with the assistance of the water level sensor 33, and the pupil membrane glasses are cleaned with the assistance of the ultrasonic generator 34. After cleaning, the pupil membrane glasses are taken out, and the cleaning agent placed in the storage box 21 is put inside to automatically clean the cleaning box 31, avoiding grease adhesion and increasing the difficulty of later cleaning. The staff takes out the drain pipe 432 from the limit ring 436 and opens the rubber sealing cap 434. With the assistance of the second pressure pump 433 on the drain pipe 432, the waste water in the cleaning box 31 is quickly discharged through the drain port 431 and the drain pipe 432, thus facilitating the later cleaning treatment of the cleaning box 31 or the pupil membrane glasses in the cleaning box 31.

[0037] Working principle: When using this pupil membrane glasses cleaning instrument that is convenient for replacing the cleaning liquid, it is convenient to carry with the assistance of the storage structure 1, store the cleaning agent with the assistance of the cleaning agent storage component 2, and perform automatic water supply, cleaning and drainage treatment with the assistance of the cleaning structure 3 and the automatic water inlet and drainage structure 4.

[0038] The orientation or positional relationship indicated by terms such as "center", "longitudinal", "transverse", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc. is based on the orientation or positional relationship shown in the drawings. It is only a simplified description for facilitating the description of the present invention, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and thus cannot be understood as a limitation to the protection content of the present invention.

[0039] Although the present invention has been described in detail with reference to the foregoing embodiments, for those skilled in the art, they can still modify the technical solutions recorded in the foregoing embodiments, or perform equivalent replacements for some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.

Claims

1. A pupil membrane glasses cleaning device facilitating the replacement of cleaning liquid, comprising a storage structure (1), on which a cleaning agent storage component (2), a cleaning structure (3) and an automatic water inlet and drainage structure (4) are embedded. The upper side of the automatic water inlet and drainage structure (4) is communicated with the cleaning structure (3), and the cleaning agent storage component (2) is arranged on the right side of the cleaning structure (3), characterized in that, The storage structure (1) includes a cleaning instrument housing (11). A suction cup (12) is threadedly connected to the lower side of the cleaning instrument housing (11). A first sealing assembly (13) is rotatably connected to the upper side of the cleaning instrument housing (11). A main board (14) is inlaid in the cleaning instrument housing (11). A middle housing (15) is snap-connected to the upper side of the main board (14). A switch (16), a touch display screen (17), and a controller (18) are inlaid on the right side of the middle housing (15). The touch display screen (17) is arranged on the right side of the controller (18). The switch (16) is arranged on the front side of the touch display screen (17). A storage battery (19) is arranged on the lower side of the main board (14). The first sealing assembly (13) includes a rotating rod (131). A first sealing cover (132) is rotatably connected to the rotating rod (131). A limiting convex block (133) is fixed on the first sealing cover (132). The lower side of the limiting convex block (133) is inlaid in a limiting hole (134) opened on the cleaning instrument housing (11).

2. The pupil membrane glasses cleaning device according to claim 1, characterized in that: The cleaning agent storage assembly (2) includes a storage box (21). A spring shaft (22) is fixed in the storage box (21). One end of the spring shaft (22) is fixed with a limiting plate (23).

3. The pupil membrane glasses cleaner according to claim 1, which is characterized in that: The cleaning structure (3) includes a cleaning box (31). A second sealing assembly (32) is rotatably connected to the cleaning box (31). A water level sensor (33) is inlaid on the rear inner wall of the cleaning box (31). An ultrasonic generator (34) is inlaid on the right side of the cleaning box (31).

4. The pupil membrane glasses cleaner according to claim 1, which is convenient for replacing the cleaning liquid, is characterized in that: The automatic water inlet and drainage structure (4) includes a first storage tank (41). A water inlet assembly (42) is inlaid in the first storage tank (41). A drainage assembly (43) is arranged on the left side of the water inlet assembly (42).

5. The pupil membrane glasses cleaning device according to claim 4, characterized in that: The water inlet assembly (42) includes a cleaning liquid storage bottle (421). A threaded sealing cap (422) is threadedly connected to the cleaning liquid storage bottle (421). A first water delivery pipe (423) penetrates through the threaded sealing cap (422). The first water delivery pipe (423) is threadedly connected to a second water delivery pipe (425) through a threaded hollow connector (424). A first pressure pump (426) is fixed on the first water delivery pipe (423). The second water delivery pipe (425) is communicated with a water inlet (427).

6. The pupil membrane glasses cleaning device according to claim 4, characterized in that: The drainage assembly (43) includes a drainage port (431). A drainage pipe (432) is communicated with the lower side of the drainage port (431). A rubber sealing cap (434) is rotatably and sealingly connected to the drainage pipe (432). The drainage pipe (432) is snap-inlaid in a limiting ring (436). The limiting ring (436) is fixed on the right inner wall of a second storage tank (435). A second pressure pump (433) is fixed on the drainage pipe (432).