Code-scanning automatic ultrasonic cleaning and blow-drying machine for glasses
By using a high-speed fan unit and a rotating bracket assembly driven by a DC reduction motor in the glasses cleaning equipment, combined with automatic control by scanning code, the shortcomings of the drying function in existing equipment are solved, and a high-efficiency, low-noise, and low-cost all-round drying effect is achieved, thereby improving the user experience.
Patent Information
- Application Number
- CN202422793969.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-15
- Publication Date
- 2025-10-21
- Estimated Expiration
- 2034-11-15
AI Technical Summary
The drying function of existing glasses cleaning equipment has problems such as insufficient wind power, high noise, high cost, and poor user experience, which limits the performance and market acceptance of the equipment.
The rotating bracket assembly driven by a high-speed fan unit and a DC reduction motor, combined with automatic control of code scanning, can achieve rotary cleaning and all-round drying of glasses, reduce wind loss, and improve drying efficiency and user experience.
It significantly improves the drying speed of glasses, reduces noise, simplifies the operation process, improves user experience, and reduces equipment complexity and cost.
Smart Images

Figure CN223461755U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to cleaning device especially relates to automatic glasses ultrasonic cleaning and blow drying machine of scanning code. BACKGROUND
[0002] In the design of glasses cleaning equipment, the drying function is a crucial link, which directly affects the user experience and the efficiency of the equipment. In the prior art, the drying function of glasses cleaning equipment usually relies on a large air volume motor to ensure that the glasses can dry quickly. However, this design has several significant problems:
[0003] 1. Conflict between wind power and motor size: In order to provide sufficient wind power, the motor must be large enough, which leads to the motor needing to be installed in the cabinet, increasing the volume and complexity of the equipment.
[0004] 2. Wind pipe resistance problem: A large air volume motor needs to guide the wind power to the glasses through a wind pipe, but the resistance of the wind pipe will significantly affect the air volume, resulting in insufficient wind power reaching the glasses.
[0005] 3. Structural design problem: In existing equipment, the distance between the air outlet and the glasses is too close to affect the placement of the glasses, and the distance is too far to effectively dry the glasses, especially the water on the glasses is difficult to completely remove.
[0006] 4. Noise problem: In order to increase the air volume, the motor must run at high speed, which will produce a lot of noise, affecting the user experience.
[0007] 5. Air volume rebound problem: Even if the air volume of the motor is increased, due to the rebound effect of the wind, the actual outlet wind power is not as expected, resulting in poor drying effect.
[0008] 6. Cost problem: In the prior art, in order to achieve the drying function, a large motor and a complex wind pipe system are needed, which increases the cost of the equipment and limits its market competitiveness.
[0009] 7. Control cost problem: In order to achieve the control function of the equipment, the existing technology often uses industrial computers, which not only increases the cost, but also increases the complexity of the equipment.
[0010] 8. User experience problem: The operation of the existing equipment is complex, and the user can not understand how to correctly place the glasses without screen guidance, which affects the use experience; the entire cleaning and drying process is relatively isolated for the user, without the enjoyment and participation, greatly reducing the user experience. INVENTION CONTENTS
[0011] In view of the problems of insufficient wind power, large noise, high cost, poor user experience and the like in the implementation of the blow-drying function of the existing glasses cleaning device, which limit the performance and market acceptance of the device, it is necessary to develop a new glasses cleaning device to solve the above problems and provide a more efficient, low-cost and better user experience solution.
[0012] In order to solve the above problems, the utility model provides a kind of automatic glasses ultrasonic cleaning and blow-drying machine of scanning code, including cleaning host component, rack assembly and electric control circulating water tank, electric control circulating water tank is arranged in rack assembly, cleaning host component is arranged on the top surface of rack assembly, and it is embedded in rack assembly as a whole;Characterized in that it comprises: at least 2 high-speed fan groups consisting of high-speed fan are provided on the side edge of the cleaning pool of the cleaning host component, and the rotating speed of the high-speed fan is at least 100000 revolutions per minute;The opposite side provided with high-speed fan group is provided with cleaning glasses support, the cleaning glasses support is provided with glasses fixing frame, and the cleaning host component is provided with embedded code scanner for collecting two-dimensional code scanned by user's mobile phone.
[0013] The automatic glasses ultrasonic cleaning and blow-drying machine of scanning code is characterized in that the cleaning glasses support is provided with a rotating shaft, and when cleaning is needed, the glasses installed on the cleaning glasses support are rotated into the cleaning liquid by rotating the rotating shaft, and when blow-drying is needed, the glasses installed on the cleaning glasses support are separated from the cleaning liquid and are directed to the high-speed fan group by rotating the rotating shaft, the rotating angle can be controlled, and the rotating shaft is controlled to swing during the blow-drying process to realize the alternation of the front and back of the glasses facing the high-speed fan group.
[0014] The automatic glasses ultrasonic cleaning and blow-drying machine of scanning code is characterized in that the side surface of the cleaning host component is also provided with a rotary drive control box, the rotary drive control box is provided with a DC speed reducer, a DC motor drive board and a near switch group, the DC motor is connected with the rotating shaft, and the DC speed reducer is used to drive the cleaning glasses support to swing, and the near switch group includes an upper stop near switch and a lower stop near switch.
[0015] The automatic glasses ultrasonic cleaning and blow-drying machine of scanning code is characterized in that the glasses fixing frame is an adjustable glasses fixing frame.
[0016] The automatic glasses ultrasonic cleaning and blow-drying machine of scanning code is characterized in that the high-speed fan group includes four high-speed fans.
[0017] The automatic glasses ultrasonic cleaning and blow-drying machine of scanning code is characterized in that the high-speed fan group is further divided into two groups, and the high-speed fans of the two groups are at a certain angle.
[0018] The code scanning automatic glasses ultrasonic cleaning and blow-drying machine is characterized in that the side of the cleaning main assembly is provided with a tubular direct-current low-beam lamp tube above the opposite side of the high-speed fan group.
[0019] The code scanning automatic glasses ultrasonic cleaning and blow-drying machine is characterized in that the cabinet assembly comprises a replaceable advertising picture with a backlight source, which can be replaced by a merchant as needed.
[0020] The code scanning automatic glasses ultrasonic cleaning and blow-drying machine is characterized in that the cabinet assembly further comprises an aluminum alloy fan support provided with a fan air outlet, and the air outlet is cut from an aluminum plate.
[0021] The technical effects brought by the technical scheme of the utility model are as follows:
[0022] 1. Improved blow-drying efficiency: by using a high-speed rotating fan, the glasses are directly blow-dried, significantly improving the drying speed of the glasses and reducing the waiting time of the user.
[0023] 2. Reduced wind loss: the fan is arranged near the cleaning cavity, reducing the loss of wind in the transmission process, improving the blow-drying efficiency, and reducing the noise problem caused by the resistance of the air pipe.
[0024] 3. All-around blow-drying: the swing function of the fan ensures that the front and back of the glasses can be effectively blow-dried, ensuring the complete drying of the glasses and improving the cleaning effect.
[0025] 4. Improved user experience: the simplified operation mode and intuitive glasses fixing mode enable the user to easily use the device without complex guidance, improving the user experience.
[0026] 5. Enhanced device stability: the use of a direct-current reduction motor to drive the swing mechanism provides stable and reliable power output, ensuring long-term stable operation of the device.
[0027] 6. Improved device adaptability: through the design of the sliding groove, the device can adapt to glasses of different sizes and shapes, improving the universality and market adaptability of the device.
[0028] 7. Intelligent control: the integrated control panel can accurately control the start, stop and swing of the fan, realizing intelligent operation without the need for an additional industrial computer, simplifying the overall design of the device. BRIEF DESCRIPTION OF DRAWINGS
[0029] Figure 1 is a three-dimensional schematic view of the cleaning main assembly;
[0030] Figure 2 is an exploded view of the code scanning automatic glasses ultrasonic cleaning and blow-drying machine;
[0031] Figure 3 is a perspective view of the rotating support assembly;
[0032] Figure 4 is an exploded view of the rotating support assembly.
[0033] BRIEF DESCRIPTION OF DRAWINGS
[0034] 1. aluminum case, 2. socket with safety switch, 3. socket, 4. power supply, 5. DC speed reduction motor, 6. DC motor drive board, 7. aluminum case front cover plate, 8. near switch group, 9. rotating shaft front section, 10. positioning column, 11. hand nut, 12. rotating shaft middle section, 13. rotating shaft rear section, 14. rear shaft fixing seat, 15. DC low beam lamp tube, 16. water level sensor fixing frame, 17. water level sensor, 18. ultrasonic cleaning machine assembly, 19. embedded cleaning machine fixing cover plate, 20. embedded code scanner, 21. case, 22. case right side cover, 23. electric control water tank, 24. case upper bracket, 25. back light box, 26. back light advertising sticker, 27. case front door, 28. DC power supply, 29. electric control panel, 30. one-bit embedded socket, 31. three-bit embedded socket, 32. operation step instruction board, 33. case left side cover, 34. high speed fan clamping lower plate, 35. fan set right side cover, 36. air inlet cover, 37. fan set main body, 38. fan set left side cover, 39. high speed fan, 40. air outlet cover, 41. high speed fan clamping upper plate, 42. cushion block, 43. aluminum alloy upper cover fixing plate, 44. cleaning rack bottom plate, 45. cleaning rack upper plate, 46. rack rotating shaft nut, 47. rotating shaft base, 48. glasses fixing frame, 49. rotating shaft. 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. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0036] Figure 1 is a perspective view of the cleaning main machine assembly; Figure 2This is an exploded view of the code scanning automatic glasses ultrasonic cleaning and drying machine; the code scanning automatic glasses ultrasonic cleaning and drying machine mainly includes a side-placed aluminum chassis 1, a socket with a safety switch 2, a socket 3, a power supply 4, a DC reduction motor 5, a DC motor drive board 6, an aluminum chassis front cover 7, a proximity switch group 8, a front section of the rotating shaft 9, a positioning column 10, a hand-screw nut 11, a middle section of the rotating shaft 12, a rear section of the rotating shaft 13, a rear section shaft fixing seat 14, a DC low-beam lamp 15, a water level sensor fixing bracket 16, a water level sensor 17, an ultrasonic cleaning machine assembly 18, an embedded cleaning machine fixing cover 19, an embedded code scanner 20, a chassis 21, and a right side cover of the chassis 22, Electric control water tank 23, chassis upper bracket 24, backlight light box 25, backlight advertising sticker 26, chassis front door 27, DC power supply 28, electric control panel 29, one-position embedded socket 30, three-position embedded socket 31, operation step instruction sign 32, chassis left side cover 33, high-speed fan clamping lower plate 34, fan unit right side cover 35, air inlet cover 36, fan unit main body 37, fan unit left side cover 38, high-speed fan 39, air outlet cover 40, high-speed fan clamping upper plate 41, pad 42, aluminum alloy upper cover fixing plate 43, cleaning rack bottom plate 44, cleaning rack upper plate 45, rack rotating shaft nut 46, rotating shaft base 47, glasses fixing frame 48 and rotating shaft 49. The main purpose of this utility model is to improve the problems existing in the company's previous generation of products. It is centered around enabling users to obtain a cleaning service QR code, scan the cleaning service QR code, and place the glasses to be cleaned on the cleaning rack. The ultrasonic cleaning program is activated. First, the glasses to be cleaned are rotated into the cleaning liquid, and the ultrasonic cleaning program is activated for ultrasonic cleaning. After the cleaning is completed, the glasses to be cleaned are rotated to move away from the cleaning liquid, and the high-speed fan is activated to blow directly at the glasses. During the blowing process, the rotation can be set according to the program so that both the front and back of the glasses can be blown, achieving a drier and faster blowing. To achieve this purpose, the following improvements have been made:
[0037] The utility model fundamentally changes the way of blowing glasses by selecting a high-speed fan to directly blow glasses. It is mainly achieved by the cooperation of two parts: one is a rotating bracket assembly with a glasses fixing frame, and the other is a fan unit.
[0038] Figure 3 is a three-dimensional schematic diagram of a rotating bracket assembly; Figure 4is an exploded view of the rotating support assembly. The rotating support assembly mainly includes, side aluminum case, near switch group 8, rotating shaft front section 9, positioning column 10, hand rotating nut 11, rotating shaft middle section 12, rotating shaft rear section 13, cleaning rack bottom plate 44, cleaning rack upper plate 45, glasses fixing rack 48; the side aluminum case is provided with a DC speed reducer motor 5 and a DC motor drive board 6; the DC motor drive board 6 drives the DC speed reducer motor 5 to rotate; the rotating shaft of the driving DC speed reducer motor 5 is fixedly connected with the rotating shaft front section 9, the other end of the rotating shaft front section 9 is connected with the rotating shaft middle section 12, the main body of the rotating shaft middle section 12 is a connecting hole plate provided with a plurality of positioning holes, the other end of the rotating shaft middle section 12 is connected with the rotating shaft rear section 13, and the other end of the rotating shaft rear section 13 is fixed on the rotating shaft rear section shaft fixing seat 14. The rotating shaft of the DC speed reducer motor 5 rotates to drive the rotating shaft front section 9 and the rotating shaft middle section 12 to rotate.
[0039] The side surface of the cleaning rack bottom plate 44 is folded to form a Z-shaped folded portion, and is provided with a connecting hole matched with the connecting hole plate, and the cleaning rack bottom plate 44 is fixed on the rotating shaft middle section 12 through the Z-shaped folded portion. The cleaning rack bottom plate 44 is provided with two parallel guide grooves, and a plurality of hollow holes are arranged on the cleaning rack bottom plate 44, so that the water can be quickly passed during rotation. The cleaning rack bottom plate 44 is also provided with a plurality of positioning column mounting holes, and the positioning column is mounted in different positioning column mounting holes to match the buckle requirements of glasses of different sizes. The cleaning rack upper plate 45 is provided with guide groove ears matched with the two parallel guide grooves, and the glasses fixing rack 48 is fixed in the middle of the cleaning rack upper plate 45. The cleaning rack upper plate 45 can move along the two parallel guide grooves to overcome the resistance, and cooperate with the positioning column to realize the effect of fixing the glasses. The rotating shaft middle section 12 rotates under the driving of the DC motor, which drives the cleaning rack bottom plate 44 and the cleaning rack upper plate 45 to rotate, and further drives the glasses fixed thereon to rotate to form a certain angle.
[0040] The fan unit includes a high-speed fan clamping lower plate, a fan unit right side cover, an air inlet cover, a fan unit main body, a fan unit left side cover, a high-speed fan unit, an air outlet cover and a high-speed fan clamping upper plate. The fan unit tries to realize that the air outlet of the high-speed fan is close to the cleaning rack bottom plate 44 and the cleaning rack upper plate 45, but does not affect the rotation of the cleaning rack bottom plate 44 and the cleaning rack upper plate 45, which is conducive to improving the blow-drying effect and shortening the time. At the same time, in order to prevent the wind from rebounding and affecting the blow-drying effect, the side surface of the Z-shaped folded portion is also hollowed out, which further avoids the rebound of air flow when the high-speed fan works.
[0041] Attract customers to pay attention to the device and use it through various advertising and other ways; prompt customers on the operation step sign 32 how to obtain the cleaning service QR code, and after the customers obtain the service QR code, the customers aim the obtained service QR code at the embedded code scanner 20 of the device; after the embedded code scanner 20 of the device scans the service QR code, internally check whether it meets the requirements, and judge whether it is within the valid period, generally set the valid period of the free cleaning service QR code to be 10-20 minutes, and it can only be used once. After the device passes the check, prompt the customers to place the glasses on the glasses fixing frame, and adjust the position of the positioning column according to the size of the glasses to ensure that the glasses are firmly fixed, and then start the glasses cleaning process.
[0042] First, the water adding process is executed, the control loads the cleaning liquid from the electric control water tank 23, and monitors the liquid height in the cleaning tank in real time during the loading process. When the pre-set height is reached, the control stops adding water. Control the DC speed reducer motor 5 to work, rotate the cleaning frame bottom plate 44 and the cleaning frame upper plate 45 fixed with the glasses to be cleaned, and completely immerse the glasses to be cleaned in the cleaning liquid; start the ultrasonic wave to begin cleaning, and the cleaning process is carried out according to the pre-set program. In order to further improve the user experience and cleaning effect, the cleaning frame bottom plate 44 and the cleaning frame upper plate 45 can also be controlled to swing periodically during the ultrasonic cleaning process. After the ultrasonic cleaning is completed, the drainage process can be entered first to drain the cleaning liquid in the cleaning tank back to the electric control water tank, and the electric control water tank is a recyclable circulating water tank. After the drainage process is completed, the blow-drying process is entered. In order to shorten the waiting time of the customers as a whole, the blow-drying process can also be entered directly after the ultrasonic cleaning is completed, and the drainage process and the blow-drying process are parallel. The blow-drying process controls the glasses fixed on the glasses fixing frame 48 to rotate to the same height as the outlet of the high-speed air blower through the control of the DC speed reducer motor 5, and the front or side of the glasses lens is at a certain angle with the outlet direction of the high-speed air blower. Start the high-speed air blower to begin the blow-drying work. In order to further improve the blow-drying speed and effect, the front and side of the glasses lens are controlled to be alternately at a certain angle with the outlet direction of the high-speed air blower, and each angle is respectively stationary for a certain time. The length of time of blow-drying, the length of time of ultrasonic cleaning and the program can be flexibly set by the user to meet different application occasions.
[0043] In order to further improve or say that the user can feel the cleaning effect, a tubular DC low beam lamp tube is arranged on the side opposite to the high-speed air blower group above the cleaning host assembly, so that the user can more clearly observe the entire cleaning process and effect, and the interactive effect of the device is improved.
[0044] The above disclosed is only one embodiment of the utility model, of course, cannot with this to limit the scope of the right, the person skilled in the art can understand that the whole or part of the process of realizing the above embodiment, and the equivalent change made by the utility model claim, still belong to the range covered by the utility model.
Claims
1. A code scanning automatic glasses ultrasonic cleaning and drying machine, comprising a cleaning host assembly, a cabinet assembly and an electric control circulating water tank, the electric control circulating water tank is arranged in the cabinet assembly, the cleaning host assembly is arranged on the top surface of the cabinet assembly and is embedded in the cabinet assembly as a whole; characterized in that, The application relates to a cleaning main machine assembly. The cleaning main machine assembly is provided with at least two high-speed fan groups on one side edge of a cleaning pool, the rotating speed of the high-speed fan is at least 100,000 revolutions per minute, the opposite side provided with the high-speed fan group is provided with a cleaning glasses support, the cleaning glasses support is provided with a glasses fixing frame, and the cleaning main machine assembly is provided with an embedded code scanner for collecting a two-dimensional code scanned by a user's mobile phone.
2. The automatic ultrasonic cleaning and drying machine for coded lenses according to claim 1, characterized in that The cleaning glasses support is provided with a rotating shaft; when cleaning is needed, the glasses installed on the cleaning glasses support are rotated into the cleaning liquid by rotating the rotating shaft; when drying is needed, the glasses installed on the cleaning glasses support are separated from the cleaning liquid and face the high-speed fan group by rotating the rotating shaft, the rotating angle can be controlled, the rotating shaft is swung in the drying process, and the front and back of the glasses are alternately faced to the high-speed fan group.
3. The automatic ultrasonic cleaning and drying machine for scanning code glasses according to claim 2, characterized in that The side of the cleaning main machine assembly is also provided with a rotating drive control box, the rotating drive control box is internally provided with a DC speed reducer, a DC motor drive plate and a near-position switch group, the DC motor is connected with the rotating shaft, and the DC speed reducer is used for driving the cleaning glasses support to swing; the near-position switch group comprises an upper stop near-position switch and a lower stop near-position switch.
4. The automatic ultrasonic cleaning and drying machine for coded lenses according to claim 3, characterized in that The glasses fixing frame is an adjustable glasses fixing frame.
5. The automatic ultrasonic cleaning and drying machine for coded lenses according to claim 4, characterized in that The high-speed fan group comprises four high-speed fans.
6. The automatic ultrasonic cleaning and drying machine for coded lenses according to claim 5, characterized in that The high-speed fan group is further divided into small groups, and the high-speed fans of the two small groups are at a certain angle.
7. The automatic ultrasonic cleaning and drying machine for scanning code glasses according to claim 6, characterized in that The side of the cleaning main machine assembly is provided with a tubular DC low-beam lamp tube above the opposite side of the high-speed fan group.
8. The automatic ultrasonic cleaning and drying machine for coded lenses according to claim 6, characterized in that The cabinet assembly comprises a replaceable advertisement picture with a backlight source, and a merchant can replace the advertisement picture according to needs.
9. The automatic ultrasonic cleaning and drying machine for scanning code glasses according to claim 8, characterized in that The cabinet assembly further comprises an aluminum alloy fan support which is provided with a fan air outlet, and the air outlet is cut from an aluminum plate.