Spectacle cleaning machine
By designing an eyeglass cleaning machine with automatic water supply and a movable cover, the problems of cumbersome water filling and foreign object entry in existing equipment have been solved, improving cleaning efficiency and quality and extending the service life of eyeglasses.
Patent Information
- Application Number
- CN202521433896.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-09
- Publication Date
- 2026-08-25
- Estimated Expiration
- 2035-07-09
AI Technical Summary
Existing eyeglass cleaning equipment has a cumbersome water filling method, is inefficient, and lacks effective shielding and protection during the cleaning process, making it easy for foreign objects to enter, affecting the cleaning quality and the lifespan of the eyeglasses.
Design an eyeglass cleaning machine with a water system and a movable cover to achieve automatic water supply and cover the cleaning tank opening during the cleaning process to prevent foreign objects from entering.
It features automatic water filling, which improves cleaning efficiency, prevents foreign objects from entering, and ensures cleaning quality and the lifespan of eyeglasses.
Smart Images

Figure CN224682497U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of cleaning equipment technology, and in particular to an eyeglass cleaning machine. Background Technology
[0002] In modern life, eyeglasses have become an indispensable daily necessity for many people. Whether they are prescription glasses, sunglasses, or protective glasses, keeping the lenses clean is crucial for visual clarity and comfort. Ultrasonic cleaning equipment, with its highly efficient cleaning capabilities, can effectively remove dirt, grease, and bacteria from the surface and crevices of eyeglasses, and is widely used in the eyeglass cleaning industry.
[0003] However, existing ultrasonic-based eyeglass cleaning equipment still has some problems that urgently need to be solved in practical use. On the one hand, the water filling method is mostly manual, requiring users to slowly pour water into the cleaning tank, which is not only cumbersome and inefficient. On the other hand, the cleaning tank is open during the cleaning process and lacks an effective shielding structure, allowing external dust, hair, and other foreign objects to easily fall into the tank. This not only contaminates the cleaning solution but may also cause secondary wear or scratches to the surface of the eyeglasses during the cleaning process, seriously affecting the cleaning quality and the lifespan of the eyeglasses.
[0004] Therefore, there is an urgent need to improve existing eyeglass cleaning equipment to enhance ease of use and the reliability of cleaning results. Utility Model Content
[0005] The purpose of this invention is to address the shortcomings of existing technologies, such as the fact that water addition is mostly done manually, which is cumbersome and inefficient, and to propose a glasses cleaning machine.
[0006] To achieve the above objectives, the present invention adopts the following technical solution:
[0007] Design an eyeglass cleaning machine, including:
[0008] A housing with an inlet and mounting frame;
[0009] A cleaning tank equipped with an ultrasonic oscillator is fixedly installed in the mounting frame, with the opening of the cleaning tank facing the inlet.
[0010] The tank also includes a water circuit assembly and a baffle. The water circuit assembly is connected to the water circuit of the cleaning tank, and the baffle is movably connected above the opening of the cleaning tank.
[0011] Furthermore, the water system assembly includes an inlet and an outlet installed on the side of the housing, and the inlet and outlet are respectively connected to the cleaning tank via pipes.
[0012] Furthermore, the waterway assembly also includes:
[0013] An inlet valve and a filter are installed on the inlet pipe, and an outlet valve is also installed on the outlet pipe.
[0014] Furthermore, it also includes a drive assembly installed in the housing;
[0015] The drive assembly includes two mounting brackets fixedly installed in the housing, and two guide rods fixedly installed between the two mounting brackets;
[0016] A cover seat is slidably connected between the two guide rods, and the cover seat and the cover are fixedly connected.
[0017] Furthermore, a pulley is rotatably connected to the upper end of the mounting bracket, and the two pulleys are driven by a synchronous belt. The middle part of the cover seat is connected to one side of the synchronous belt.
[0018] One of the mounting brackets has a motor fixed to it, and the motor shaft is fixedly connected to a pulley nearby.
[0019] Furthermore, the cleaning tank is installed inside the mounting frame;
[0020] An ultraviolet lamp is fixedly installed on the inner side of the mounting frame, and the ultraviolet lamp is located on one side in the direction of the opening of the cleaning tank.
[0021] Furthermore, a liquid level sensor is also installed on the side of the cleaning tank.
[0022] Furthermore, a support plate is fixedly installed inside the enclosure, and a control unit and a speaker are fixedly installed on the end face of the support plate. The control unit and the speaker are electrically connected, and a sound outlet is opened on the end face of the enclosure opposite to the speaker.
[0023] Furthermore, the interior of the box is divided into a storage space by a partition, and a barrier part located in the storage space is fixedly installed on the inner side of the partition.
[0024] The box body is located behind the storage space and is fixedly installed with a cover plate by fasteners. The box body is located in front of the storage space and has an access port, which is rotatably connected to an opening and closing door.
[0025] Furthermore, a barcode scanning area and / or a button area are provided on the upper surface of the housing.
[0026] The advantages of the eyeglass cleaning machine proposed in this utility model are as follows: Firstly, by using a water circuit component to automatically supply water to the cleaning tank, the problem of manually adding water to the cleaning tank during eyeglass cleaning is solved. Secondly, a movable cover is used, which can slide to cover the opening side of the cleaning tank during the cleaning operation to prevent foreign objects from entering the cleaning tank during eyeglass cleaning. Attached Figure Description
[0027] Figure 1 The three-dimensional representation of this utility model Figure 1 ;
[0028] Figure 2 The three-dimensional representation of this utility model Figure 2 ;
[0029] Figure 3 This is a cross-sectional view of the storage space of this utility model;
[0030] Figure 4 This is a sectional view of the mounting frame of this utility model;
[0031] Figure 5 This is a schematic diagram of the partition structure of this utility model;
[0032] Figure 6 This is a schematic diagram of the support plate structure of this utility model;
[0033] Figure 7 This is a schematic diagram of the waterway component structure of this utility model;
[0034] Figure 8 This is a schematic diagram of the drive component structure of this utility model.
[0035] In the diagram: 1. Cabinet; 11. Inlet; 12. Mounting frame; 13. Sound outlet; 14. Scanning area; 15. Button area; 2. Cleaning tank; 21. Ultrasonic oscillator; 3. Water circuit assembly; 31. Water inlet; 32. Water outlet; 33. Water inlet valve; 34. Filter; 35. Water outlet valve; 4. Cover; 5. Drive assembly; 51. Mounting bracket; 52. Guide rod; 53. Cover seat; 54. Pulley; 55. Synchronous belt; 56. Motor; 6. Ultraviolet lamp; 7. Liquid level sensor; 8. Support plate; 81. Control unit; 82. Speaker; 83. Sound outlet; 9. Partition; 91. Storage space; 92. Barrier section; 93. Cover plate; 94. Opening door. Detailed Implementation
[0036] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments.
[0037] Reference Figure 1-8 As an embodiment of this utility model, a glasses cleaning machine is disclosed. This cleaning machine is used to solve the problems of needing to manually add water during the current glasses cleaning process and the lack of protection for the cleaning tank 2 during the cleaning process. Specifically, the cleaning machine includes a box 1 with an inlet 11 and a mounting frame 12.
[0038] A cleaning tank 2 equipped with an ultrasonic oscillator 21 is fixedly installed in the mounting frame 12. The ultrasonic oscillator 21 is fixedly installed at the bottom of the cleaning tank 2 for ultrasonic cleaning of the eyes. The opening of the cleaning tank 2 is directly opposite the inlet 11.
[0039] Specifically, in this embodiment, the mounting frame 12 is a ring structure and is fixed to the inner side of the housing 1. Its inner side has a stepped position, and the opening edge of the cleaning tank 2 is fixed at the stepped position. Of course, the fixing described in this embodiment can be adhesive fixing or fixing by fasteners such as bolts and rivets. Those skilled in the art can choose the installation method according to actual needs, which will not be elaborated here.
[0040] The housing 1 is equipped with a water circuit assembly 3 and a baffle 4. The water circuit assembly 3 is connected to the water circuit of the cleaning tank 2, and the baffle 4 is movably connected above the opening of the cleaning tank 2.
[0041] In this embodiment, the water circuit component 3 is used to automatically supply water to the cleaning tank 2, thereby solving the problem that the cleaning tank 2 needs to be manually filled with water during the current glasses cleaning process. Secondly, a movable cover 4 is used, which can be slid to cover the opening side of the cleaning tank 2 during the cleaning operation to prevent foreign objects from entering the cleaning tank 2 during the glasses cleaning operation.
[0042] In some embodiments, the water circuit assembly 3 of this utility model includes a water inlet 31 and a water outlet 32 installed on the side of the housing 1. The water inlet 31 and the water outlet 32 are respectively connected to the cleaning tank 2 through pipes. Specifically, in this embodiment, the pipes of the water inlet 31 and the water outlet 32 are connected to the bottom of the cleaning tank 2. In order to facilitate assembly and maintenance, an interface can be reserved at the bottom of the cleaning tank 2. The pipe can be detachably connected to the interface by a threaded joint, thereby optimizing the reliability of the structure.
[0043] Of course, in order to achieve automatic control of water inlet and outlet, the water circuit component 3 in this embodiment also includes an inlet valve 33 and a filter 34 installed on the pipe of the inlet interface 31. The filter 34 is used to filter impurities in the inlet water and can be a water filter in the prior art. There are no further restrictions or descriptions here. An outlet valve 35 is also installed on the pipe of the outlet interface 32.
[0044] Specifically, in this embodiment, both the inlet valve 33 and the outlet valve 35 are electric water valves. The two electric water valves are electrically connected to the control unit 81 to realize automatic control of water inlet and drainage. For example, when the inlet valve 33 is opened, the external water source flows through the inlet valve 33 and the filter 34 along the inlet interface 31 and enters the cleaning tank 2.
[0045] Similarly, after the ultrasonic cleaning of the eyes is completed, the water outlet valve 35 can be opened, and the water in the cleaning tank 2 can be discharged outward through the pipe, the water outlet valve and the water outlet interface 32.
[0046] It should be noted that, in this embodiment, the following external water inlet and drainage methods can be used to adapt to the water inlet and drainage operations of the cleaning tank 2, specifically including:
[0047] 1. Municipal tap water can be directly connected to the inlet interface 31 through a pipe. At this time, the inlet interface 31 always maintains water pressure, and the outlet interface 32 adopts a direct drainage method. At this time, during the cleaning process of glasses, the water inlet and drainage of the cleaning tank 2 can be controlled by simply opening and closing the inlet valve 33 and the outlet valve 35.
[0048] 2. Two water tanks are used, which are connected to the water inlet 31 and the water outlet 32 respectively. The water tank on the water inlet 31 is responsible for replenishing water, while the water tank on the water outlet 32 is used as a wastewater recycling tank. This connection method does not require a fixed water supply point, which allows the water tank and the cleaning machine to be moved easily as a whole, thereby meeting the needs of convenient use and greatly improving the flexibility of use.
[0049] 3. Connect the water inlet 31 and water outlet 32 of this cleaning machine to a circulating filter water tank. By using a circulating filter water tank, the water supply needs can be met, and the wastewater after water cleaning can be collected and filtered at the same time, which can greatly improve the water utilization rate.
[0050] 4. Based on the second or third method, the water inlet 31 and water outlet 32 of this cleaning machine are placed in the housing 1 in a movable manner. Then, two water tanks are placed in the housing 1 for water supply and collection respectively. Alternatively, a circulating filter water tank can be placed to meet the water supply needs. This design integrates water supply and drainage, which can improve the integration of the entire equipment, facilitate use and save installation space.
[0051] In some embodiments, the present invention further includes a drive assembly 5 installed in the housing 1;
[0052] The drive assembly 5 includes two mounting brackets 51 fixedly installed in the housing 1, and two guide rods 52 fixedly installed between the two mounting brackets 51;
[0053] A cover seat 53 is slidably connected between the two guide rods 52, and the cover seat 53 and the cover 4 are fixedly connected.
[0054] Specifically, in this embodiment, a pulley 54 is rotatably connected to the upper end of the mounting bracket 51, and the two pulleys 54 are driven by a synchronous belt 55. The middle part of the cover seat 53 is connected to one side of the synchronous belt 55.
[0055] One of the mounting brackets 51 has a motor 56 fixed on it, and the shaft end of the motor 56 is fixedly connected to a pulley 54 adjacent to it.
[0056] In other words, during the ultrasonic cleaning of glasses, the pulley 54 can be driven to rotate by the motor 56. Since the two pulleys 54 are driven by the synchronous belt 55, and the cover seat 53 is fixed on one side of the synchronous belt 55, when the synchronous belt 55 is rotating, it will pull the cover seat 53 to move, thereby controlling the cover 4 to move above the cleaning tank 2 to block.
[0057] Similarly, after the cleaning operation is completed, the motor 56 drives the cover seat 53 to move backward and reset, so as to ensure that the user can easily take out the cleaned glasses.
[0058] Furthermore, in this embodiment, the cleaning tank 2 is installed inside the mounting frame 12; an ultraviolet lamp 6 is fixedly installed on the inner side of the mounting frame 12, and the ultraviolet lamp 6 is located on one side of the opening direction of the cleaning tank 2. In this embodiment, the ultraviolet lamp 6 is designed to sterilize the entire interior of the cleaning tank 2 with ultraviolet light when ultrasonically cleaning the glasses. In this way, while ultrasonic waves remove stains, ultraviolet light can effectively kill bacteria, viruses and other microorganisms attached to the glasses and the inner wall of the tank, thereby achieving the dual effects of cleaning and disinfection, ensuring that the glasses are more hygienic and safe after cleaning.
[0059] Of course, in order to achieve water level control during the water addition process, a liquid level sensor 7 is also installed on the side of the cleaning tank 2 in this embodiment. Specifically, the liquid level sensor 7 in this embodiment can be a non-contact sensor. The design of the liquid level sensor 7 is used to realize the automatic detection of the water level inside the cleaning tank 2. When the predetermined water level is reached, the water inlet valve 33 can be controlled to disconnect the water inlet.
[0060] Based on the above embodiments, in this embodiment, a support plate 8 is fixedly installed inside the housing 1. A control unit 81 and a speaker 82 are fixedly installed on the end face of the support plate 8. The control unit 81 and the speaker 82 are electrically connected. Of course, the control unit 81 can be connected to a server through a wireless module so that users can remotely control it. A sound outlet 13 opposite to the speaker 82 is opened on the end face of the housing 1.
[0061] It should be noted that the control unit 81 described in this embodiment, the ultrasonic oscillator 21, the water inlet valve 33, the water outlet valve 35, the motor 56, the ultraviolet lamp 6, and the liquid level sensor 7 are all electrically connected. When water needs to be added, the control unit 81 controls the water inlet valve 33 to open the water inlet. After the glasses are placed into the cleaning tank 2, the motor 56 can be controlled to rotate to close the cover 4, and at the same time, the ultraviolet lamp 6 is turned on for sterilization. The designed speaker 82 can be used to enhance the user's experience, such as to provide information such as the start of cleaning or the completion of cleaning. The specific details can also be defined by those skilled in the art. This method is a conventional means for those skilled in the art and will not be elaborated here.
[0062] It should be noted that, in this embodiment, the interior of the box 1 is divided into a storage space 91 by a partition 9. Specifically, the partition 9 has a U-shaped structure, and a barrier 92 located in the storage space 91 is fixedly installed on the inner side of the partition 9.
[0063] The box 1 is located behind the storage space 91 and is fixedly installed with a cover plate 93 by fasteners. Preferably, the fasteners in this embodiment can be bolts. The box 1 is located in front of the storage space 91 and has a retrieval opening. An opening and closing door 94 is rotatably connected to the retrieval opening.
[0064] Specifically, in this embodiment, the storage space 91 is designed to hold the eyeglass cleaning cloth. When in use, first open the cover 93 and place the cleaning cloth in the entire storage space 91. The barrier 92 is used to position the cleaning cloth in place.
[0065] After cleaning, there may be water droplets on the surface of the glasses. At this time, you can touch the opening and closing door 94 to open it, and then take a wiping cloth from the storage space 91 to wipe and clean the glasses.
[0066] In a preferred embodiment, the present invention provides a barcode scanning area 14 and / or a button area 15 on the upper surface of the housing 1. Through the design of the barcode scanning area 14 and the button area 15, when the product is in use, such as when it is a shared product, the user can start the cleaning machine through a dual confirmation mechanism of barcode scanning and button presses, thereby improving the reliability of the product. Specifically, this includes the following methods:
[0067] The first method is the QR code ordering mode:
[0068] Order by scanning a QR code: Users can place an order by scanning a QR code.
[0069] Place the glasses in the device: Place the glasses that need to be cleaned into the device.
[0070] Ultrasonic cleaning: The equipment begins the ultrasonic cleaning process.
[0071] Disinfection and sterilization: The glasses are disinfected and sterilized using ultraviolet light.
[0072] Remove and dry: After cleaning, remove the glasses and dry them.
[0073] The second method is the button start mode:
[0074] Start button: The user presses the device's start button to begin the cleaning process.
[0075] Place the glasses in the device: Place the glasses that need to be cleaned into the device.
[0076] Ultrasonic cleaning: The equipment begins the ultrasonic cleaning process.
[0077] Disinfection and sterilization: The glasses are disinfected and sterilized using ultraviolet light.
[0078] Remove and dry: After cleaning, remove the glasses and dry them.
[0079] Of course, the buttons in the button area 15 mentioned above can be physical buttons or touch buttons, and their specific types are not limited here.
[0080] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.
Claims
1. A glasses cleaning machine, characterized in that, include: A box (1) having an inlet (11) and a mounting frame (12); A cleaning tank (2) equipped with an ultrasonic oscillator (21) is fixedly installed in the mounting frame (12), and the opening of the cleaning tank (2) is directly opposite the inlet (11). The water circuit assembly (3) and the baffle (4) are installed in the housing (1). The water circuit assembly (3) and the cleaning tank (2) are connected by water circuit. The baffle (4) is movably connected above the opening of the cleaning tank (2).
2. The eyeglass cleaning machine according to claim 1, characterized in that: The water circuit assembly (3) includes an inlet (31) and an outlet (32) installed on the side of the housing (1). The inlet (31) and the outlet (32) are connected to the cleaning tank (2) through pipes.
3. The eyeglass cleaning machine according to claim 2, characterized in that: The waterway component (3) also includes: An inlet valve (33) and a filter (34) are installed on the pipe of the inlet interface (31), and an outlet valve (35) is also installed on the pipe of the outlet interface (32).
4. The eyeglass cleaning machine according to claim 1, characterized in that: It also includes a drive assembly (5) installed in the housing (1); The drive assembly (5) includes two mounting brackets (51) fixedly installed in the housing (1), and two guide rods (52) fixedly installed between the two mounting brackets (51). A cover seat (53) is slidably connected between the two guide rods (52), and the cover seat (53) and the cover (4) are fixedly connected.
5. A glasses cleaning machine according to claim 4, characterized in that: A pulley (54) is rotatably connected to the upper end of the mounting bracket (51), and the two pulleys (54) are driven by a synchronous belt (55). The middle part of the cover seat (53) is connected to one side of the synchronous belt (55). One of the mounting brackets (51) has a motor (56) fixed on it, and the shaft end of the motor (56) is fixedly connected to a pulley (54) adjacent to it.
6. The eyeglass cleaning machine according to claim 1, characterized in that: The cleaning tank (2) is installed inside the mounting frame (12); An ultraviolet lamp (6) is fixedly installed on the inner side of the mounting frame (12), and the ultraviolet lamp (6) is located on one side of the opening direction of the cleaning tank (2).
7. The eyeglass cleaning machine according to claim 1, characterized in that: A liquid level sensor (7) is also installed on the side of the cleaning tank (2).
8. The eyeglass cleaning machine according to claim 1, characterized in that: A support plate (8) is fixedly installed inside the housing (1). A control unit (81) and a speaker (82) are fixedly installed on the end face of the support plate (8). The control unit (81) and the speaker (82) are electrically connected. A sound outlet (13) opposite to the speaker (82) is opened on the end face of the housing (1).
9. A glasses cleaning machine according to claim 1, characterized in that: The interior of the box (1) is divided into a storage space (91) by a partition (9), and a barrier part (92) located in the storage space (91) is fixedly installed on the inner side of the partition (9). The box (1) is located behind the storage space (91) and is fixedly installed with a cover plate (93) by fasteners. The box (1) is located in front of the storage space (91) and has a retrieval opening. An opening door (94) is rotatably connected to the retrieval opening.
10. A glasses cleaning machine according to any one of claims 1-9, characterized in that: A barcode scanning area (14) and / or a button area (15) are provided on the upper surface of the housing (1).