Multifunctional orthokeratology lens cleaning machine

The multifunctional corneal refractive therapy lens cleaning machine, which integrates UVC ultraviolet sterilization, electric eddy current and ultrasonic cleaning functions, solves the problem that the existing cleaning machines cannot clean lenses of different sizes. It provides a simple, portable and low-cost cleaning solution, achieving efficient lens cleaning and sterilization effects.

CN223450277UActive Publication Date: 2025-10-17SHENZHEN SHENYONGTONG IND
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Patent Information

Application Number
CN202422603367.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-25
Publication Date
2025-10-17
Estimated Expiration
2034-10-25

AI Technical Summary

Technical Problem

Existing ultrasonic contact lens cleaning machines are unable to clean orthokeratology lenses of different sizes, and multifunctional cleaning machines have complex structures, are inconvenient to use, are expensive, and lack sterilization and purification functions.

Method used

A multifunctional orthokeratology lens cleaning machine was designed, which integrates UVC ultraviolet sterilization, electric eddy current cleaning and ultrasonic cleaning functions. It uses cleaning covers of different sizes, including OK lens cleaning covers and scleral lens cleaning covers, and has a magnetic charging interface. It has a simple structure, is portable, and is easy to use. It is suitable for orthokeratology lenses of different sizes.

Benefits of technology

It can effectively clean orthokeratology lenses of different sizes, has good cleaning effect and sterilization and purification functions, is safe and reliable, low cost, small in size, and suitable for a wide range of people.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a multifunctional orthokeratology lens cleaning machine which comprises a body which is of a vertical cylinder structure internally provided with a cleaning device, a cleaning tank is embedded in the upper portion of a shell, a control device is arranged on the top of an upper cover, and a magnetic attraction charging interface is formed in the side face of the shell. The cleaning device comprises a UVC ultraviolet sterilization structure, an electric vortex cleaning structure and an ultrasonic transduction structure, the output shaft is vertically arranged in the center of the bottom of the upper cover, and the cleaning cover is any one of an OK mirror cleaning cover and a sclera mirror cleaning cover. The UVC ultraviolet sterilization structure, the electric eddy current cleaning structure, the ultrasonic transduction structure and the magnetic attraction charging interface are electrically connected with the control device, and one side of the upper cover is rotationally connected with the shell through a correspondingly arranged damping structure. The orthokeratology cleaning device is simple in structure, convenient to use and low in cost, integrates the functions of ultrasonic cleaning, sterilization, purification and electric vortex cleaning, can clean orthokeratology lenses of different sizes, and is good in cleaning effect, safe and reliable.
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Description

TECHNICAL FIELD

[0001] The utility model relates to corneal molding lens cleaning technical field, especially in a kind of multifunctional corneal molding lens cleaning machine. BACKGROUND

[0002] Corneal molding lens is a kind of non-surgical treatment myopia method of correcting vision, by using specially-made lens to change the arc of cornea, let myopia patient vision be corrected.There are very limited means to choose control vision in the growth stage of vision of adolescent, corneal molding lens is without operation and reaches the advantage of normal vision of naked eye, becomes the few solution of preventable control vision problem, and gradually accepted by parents as a mainstream vision correction and prevention and control means.

[0003] Due to the variety of corneal molding lens, size is different, such as sclera mirror diameter is larger than RGP, OK mirror, soft contact lens, many ultrasonic contact lens cleaning machines on current market, can't clean sclera mirror, and these ultrasonic cleaning machine mostly only has cleaning function, without sterilization purification function, and existing multifunctional corneal molding lens cleaning machine structure is complex, inconvenient to use, and volume is larger, carry, inconvenient to use cost is higher.

[0004] Therefore, need the engineering and technical personnel of the field to develop a structure simple, use convenient, and cost low, can clean different sizes of corneal molding lens, with UVC ultraviolet sterilization, set multiple cleaning functions in one multifunctional corneal molding lens cleaning machine. UTILITY MODEL CONTENT

[0005] The utility model solves technical problem to provide a structure simple, use convenient, volume is small, it is convenient to carry, cost is low, with ultrasonic cleaning, sterilization, purification, electric eddy current cleaning function in one, can clean different sizes of corneal molding lens, and cleaning effect is good, safe and reliable multifunctional corneal molding lens cleaning machine.

[0006] To solve the above technical problem, the technical scheme of the utility model is:

[0007] The utility model provides a multifunctional orthokeratology lens cleaning machine, including: the body is the vertical cylinder structure that is equipped with cleaning device inside, the body includes upper cover, shell, bottom plate, the upper part of shell is embedded with cleaning tank, the upper cover is movably arranged on the upper part of shell, the top of upper cover is equipped with control device, the bottom plate is embedded with the bottom of shell, the side of shell is equipped with magnetic attraction charging interface, the cleaning device includes UVC ultraviolet sterilization structure, electric eddy current cleaning structure, ultrasonic transducer structure, UVC ultraviolet sterilization structure, electric eddy current cleaning structure all embed the setting of cleaning tank, wherein, UVC ultraviolet sterilization structure sets up in the bottom of upper cover, UVC ultraviolet sterilization structure includes a plurality of UVC ultraviolet sterilization lamp, a plurality of UVC ultraviolet sterilization lamp is symmetrically arranged, electric eddy current cleaning structure includes motor and the cleaning cover of output shaft movable setting of motor, the output shaft is vertically arranged in the center position of the bottom of upper cover, the cleaning cover is any one including OK mirror cleaning cover, scleral lens cleaning cover, UVC ultraviolet sterilization structure, electric eddy current cleaning structure, ultrasonic transducer structure, magnetic attraction charging interface is electrically connected with control device respectively, one side of upper cover is movably connected with shell through the corresponding setting of damping pivot structure.

[0008] In the above structure, the cleaning cover is a hollow structure with a symmetrical holding groove for placing lenses, the holding groove is embedded in the inner side of the cleaning cover, a mounting hole is vertically arranged in the middle of the cleaning cover, the mounting hole is matched with the output shaft, the OK mirror cleaning cover and the scleral lens cleaning cover are movably connected with the output shaft.

[0009] In the above structure, the OK mirror cleaning cover includes a first cover body, a first cover cap, and a second cover cap, a first holding groove and a second holding groove are embedded in the first cover body, a circular hole is formed through one side of the mounting hole for mounting the first cover cap and the second cover cap, the first cover cap and the second cover cap are correspondingly arranged on the upper part of the first holding groove and the second holding groove, and the first cover cap and the second cover cap are respectively connected with the first cover body through corresponding pivots.

[0010] In the above structure, the scleral lens cleaning cover is vertically arranged and includes a second cover body, a third cover cap, and a fourth cover cap, the holding groove is embedded in the second cover body, the holding groove includes a third holding groove and a fourth holding groove, the third holding groove and the fourth holding groove are symmetrically arranged, a mounting hole is arranged in the middle of the second cover body, the third holding groove and the fourth holding groove are connected with the mounting hole as a whole, the mounting hole is matched with the output shaft, and the third cover cap and the fourth cover cap are respectively connected with the corresponding third holding groove and fourth holding groove through pivots arranged on the side of the second cover body.

[0011] In the structure, the upper cover comprises a panel, a pressing frame, a bottom cover, a lining, a waterproof rubber sleeve and an elastic button, the panel is embedded in the clamping groove arranged on the top inner side of the pressing frame, the panel is a touch panel, the bottom cover is a structure with a concave cavity protruding downward in the middle, the bottom cover is arranged at the lower part of the pressing frame, the lining is movably arranged outside the concave cavity, the top of the bottom cover is horizontally provided with a waterproof groove in the circumferential direction, the waterproof rubber sleeve is embedded in the waterproof groove, the bottom cover is screw-connected with the pressing frame, the motor is vertically arranged in the fixing groove arranged in the middle of the bottom cover, the motor is screw-connected with the bottom cover through the connecting frame arranged on the fixing groove, the elastic button is arranged at the upper part of the shell and located at the opposite side of the damping rotating shaft structure, and the upper cover is buckle-connected with the shell through the elastic button.

[0012] In the structure, the bottom of the bottom cover is concavely provided with a plurality of circular accommodating cavities, the plurality of circular accommodating cavities are symmetrically arranged, a UVC ultraviolet light transmission hole is arranged in the middle of each of the plurality of circular accommodating cavities, and a quartz glass sheet is arranged outside each of the plurality of circular accommodating cavities and corresponds to the UVC ultraviolet light transmission hole.

[0013] In the structure, the ultrasonic transducer structure comprises an ultrasonic transducer sheet, the ultrasonic transducer sheet is horizontally arranged outside the bottom of the cleaning tank, the ultrasonic transducer sheet is fixedly bonded with the cleaning tank by using glue, and the cleaning tank is made of stainless steel material.

[0014] In the structure, the lower part of the side surface of the shell is provided with a mounting hole of the magnetic charging interface, and the magnetic charging interface is embedded in the mounting hole.

[0015] In the structure, the control device comprises a main control PCB and a UVC ultraviolet lamp plate, the main control PCB and the UVC ultraviolet lamp plate are horizontally arranged in corresponding mounting grooves in the interior of the concave cavity, the bottom of the UVC ultraviolet lamp plate is provided with a UVC ultraviolet lamp corresponding to the plurality of UVC ultraviolet light transmission holes, the main control PCB comprises a microprocessor and touch keys, the touch keys are arranged in plurality, the plurality of touch keys are electrically connected with the panel, and the UVC ultraviolet lamp plate is electrically connected with the main control PCB.

[0016] In the structure, the lower part of the shell is provided with an energy storage power supply, the energy storage power supply comprises a storage battery and a secondary PCB horizontally arranged at the upper part of the storage battery, and the main control PCB is electrically connected with the secondary PCB.

[0017] The beneficial effects of the utility model lie in:

[0018] The utility model discloses to different size's corneal molding lens, adopt two different size cleaning cover, be OK mirror cleaning cover and sclera mirror cleaning cover respectively, can clean different size's corneal molding lens, make the crowd of cleaning machine more widely applicable. Meanwhile UVC ultraviolet is the light of 200-280nm wavelength also called short wave sterilization ultraviolet, it can penetrate the cell membrane and cell nucleus in the organism, destroy the molecular structure of DNA or RNA in the organism cell, cause growth cell death or regenerative cell death, four UVC ultraviolet symmetrical arrangement, can cover all areas of cleaning tank, when the cleaning machine works, four UVC ultraviolet germicidal lamp below opposite cleaning liquid and containing groove, UVC ultraviolet lamp pearl sends ultraviolet light through quartz glass sheet, can effectively remove bacteria and pathogenic microorganism, can all -round play the sterilization and purification effect, and will not produce harm to human body, in addition, when ultrasonic wave acts in liquid, the energy of the breaking moment of every bubble in liquid produces great shock wave, reaches the effect of cleaning and flushing lens, has the effect of effectively removing grease, and through electric rotation produces eddy current and a large number of bubbles along with the direction of eddy current movement, bubble friction carries lens attachment, makes lens attachment fall off and be carried away by water flow, clear effect is remarkable. The utility model discloses simple structure, convenient to use, small, portable, low in cost, has ultrasonic cleaning, sterilization, purification, electric eddy current cleaning function in an organic whole, can clean different size's corneal molding lens, and the cleaning effect is good, safe and reliable. BRIEF DESCRIPTION OF DRAWINGS

[0019] Figure 1 It is structure schematic diagram of the utility model multifunctional corneal molding lens cleaning machine embodiment;

[0020] Figure 2 It is sectional view of the utility model multifunctional corneal molding lens cleaning machine embodiment;

[0021] Figure 3 It is structure schematic diagram of the utility model multifunctional corneal molding lens cleaning machine embodiment upper cover;

[0022] Figure 4 It is OK mirror cleaning cover schematic diagram of the utility model multifunctional corneal molding lens cleaning machine embodiment;

[0023] Figure 5 It is sclera mirror mirror cleaning cover schematic diagram of the utility model multifunctional corneal molding lens cleaning machine embodiment;

[0024] Figure 6 It is structure exploded view one of the utility model multifunctional corneal molding lens cleaning machine embodiment;

[0025] Figure 7 It is structure exploded view two of the utility model multifunctional corneal molding lens cleaning machine embodiment.

[0026] In the figure, 1 - upper cover, 2 - shell, 3 - bottom plate, 4 - cleaning tank, 5 - magnetic charging interface, 6 - motor, 7 - cleaning cover, 8 - OK mirror cleaning cover, 81 - first containing groove, 82 - second containing, 83 - first cover, 84 - second cover, 9 - sclera mirror cleaning cover, 91 - third cover, 92 - fourth cover, 93 - third containing groove, 94 - fourth containing groove, 10 - mounting hole, 11 - panel, 12 - pressing frame, 13 - bottom cover, 14 - gasket, 15 - waterproof rubber sleeve, 16 - elastic button, 17 - connecting frame, 18 - quartz glass sheet, 19 - circular decorative ring, 20 - ultrasonic transducer sheet, 21 - main control PCB, 22 - UVC ultraviolet lamp plate, 23 - battery, 24 - auxiliary PCB, 25 - foot pad, 26 - UVC ultraviolet sterilization lamp, 27 - damping shaft. DETAILED DESCRIPTION

[0027] The specific embodiments of the utility model will be further described below in conjunction with the drawings. It should be noted that the description of these embodiments is used to help understand the utility model, but does not constitute a limitation on the utility model. In addition, the technical features involved in each embodiment of the utility model described below can be combined with each other as long as they do not conflict with each other.

[0028] As Figures 1-7 shown, a multifunctional orthokeratology lens cleaning machine, comprising: a body, the body is a vertical cylinder structure with a cleaning device inside, the body includes an upper cover 1, a shell 2, a bottom plate 3, the upper part of the shell 2 is embedded with a cleaning tank 4, the upper cover 1 is movably arranged on the upper part of the shell 2, the top of the upper cover 1 is provided with a control device, the bottom plate 3 is embedded and arranged at the bottom of the shell 2, the side of the shell 2 is provided with a magnetic charging interface 5, the cleaning device includes a UVC ultraviolet sterilization structure, an electric eddy current cleaning structure and an ultrasonic transducer structure, the UVC ultraviolet sterilization structure and the electric eddy current cleaning structure are embedded and arranged in the cleaning tank 4, wherein the UVC ultraviolet sterilization structure is arranged at the bottom of the upper cover 1, the UVC ultraviolet sterilization structure includes a plurality of UVC ultraviolet sterilization lamps 26, the plurality of UVC ultraviolet sterilization lamps 26 are symmetrically arranged, the electric eddy current cleaning structure includes a motor 6 and a cleaning cover 7 movably arranged on the output shaft of the motor 6, the output shaft is vertically arranged at the center position of the bottom of the upper cover 1, the cleaning cover 7 is any one of OK mirror cleaning cover 8 and sclera mirror cleaning cover 9, the UVC ultraviolet sterilization structure, the electric eddy current cleaning structure, the ultrasonic transducer structure and the magnetic charging interface 5 are electrically connected with the control device respectively, one side of the upper cover 1 is movably connected with the shell 2 through the corresponding damping shaft structure.

[0029] Specifically, in the embodiment, the damping shaft structure includes damping holes, damping shafts 27, damping springs and the like arranged on the upper cover 1 and the shell 2 correspondingly, and the damping shaft structure is a prior art, which will not be described in detail here.

[0030] Specifically, in the embodiment, four fixed screw columns are vertically arranged on the inside of the shell 2, the upper cover 1 is rotationally connected with the shell 2 through the damping shaft 27, the cleaning tank 4 is connected with the shell 2 through a sleeve process, and the cleaning tank 4 and the shell 2 are integrally injection molded to ensure waterproof effect.

[0031] In the preferred embodiment of the utility model, the cleaning cover 7 is a hollow structure with symmetrical accommodation grooves for placing lenses, the accommodation grooves are embedded in the inner side of the cleaning cover 7, a mounting hole 10 is vertically arranged in the middle of the cleaning cover 7, the mounting hole 10 is matched with the output shaft, and the OK lens cleaning cover 8 and the sclera lens cleaning cover 9 are movably connected with the output shaft.

[0032] Specifically, in the embodiment, the cleaning cover includes the OK lens cleaning cover 8 and the sclera lens cleaning cover 9, the OK lens cleaning cover 8 and the sclera lens cleaning cover 9 are different in structure and size, are both hollow structures, and a square mounting clamping groove is arranged through the middle of the mounting hole 10.

[0033] In the preferred embodiment of the utility model, the OK lens cleaning cover 8 includes a first cover body, a first cover cap and a second cover cap, a first accommodation groove 81 and a second accommodation groove 82 are embedded on the first cover body, a circular hole for mounting the first cover cap 83 and the second cover cap 84 is arranged through one side of the mounting hole 10, the first cover cap 83 and the second cover cap 84 are arranged on the upper part of the first accommodation groove 81 and the second accommodation groove 82 correspondingly, and the first cover cap 83 and the second cover cap 84 are respectively connected with the first cover body through corresponding rotating shafts.

[0034] Specifically, in the embodiment, the first cover body is vertically arranged, and the first accommodation groove 81 and the second accommodation groove 82 are symmetrically arranged on the first cover body and connected with the mounting hole 10 as a whole.

[0035] In the preferred embodiment of the utility model, the sclera lens cleaning cover 9 is vertically arranged, includes a second cover body, a third cover cap 91 and a fourth cover cap 92, the accommodation grooves are embedded on the second cover body, the accommodation grooves include a third accommodation groove 93 and a fourth accommodation groove 94, the third accommodation groove 93 and the fourth accommodation groove 94 are symmetrically arranged away from each other, a mounting hole 10 is arranged in the middle of the second cover body, the third accommodation groove 93 and the fourth accommodation groove 94 are connected with the mounting hole 10 as a whole, the mounting hole 10 is matched with the output shaft, and the third cover cap 91 and the fourth cover cap 92 are respectively connected with the corresponding third accommodation groove 93 and fourth accommodation groove 94 through the rotating shafts arranged on the side edges of the second cover body.

[0036] Specifically, in the embodiment, the third cover 91 and the fourth cover 92 are respectively rotatably connected with the corresponding third cover 91 and the fourth cover 92 through the rotating shaft structures arranged on the second cover body side.

[0037] In the preferred embodiment of the utility model, the upper cover includes a panel 11, a pressing frame 12, a bottom cover 13, a lining body 14, a waterproof rubber sleeve 15 and an elastic button 16, the panel 11 is embedded in the clamping groove arranged on the top inner side of the pressing frame 12, the panel 11 is a touch panel, the bottom cover 13 is a structure with a concave cavity protruding downward in the middle, the bottom cover 13 is arranged at the lower part of the pressing frame 12, the lining body 14 is movably arranged outside the concave cavity, a waterproof groove is horizontally arranged on the top of the bottom cover 13, the waterproof rubber sleeve 15 is embedded in the waterproof groove, the bottom cover 13 is screw-connected with the pressing frame 12, the motor 6 is vertically arranged in the fixing groove arranged in the middle of the bottom cover 13, the motor 6 is screw-connected with the bottom cover 13 through the connecting frame arranged on the fixing groove, the elastic button 16 is arranged on the upper part of the shell 2 and located on the opposite side of the damping rotating shaft structure, and the upper cover 1 is buckle-connected with the shell 2 through the elastic button 16.

[0038] Specifically, in the embodiment, the panel 11, the pressing frame 12 and the bottom cover 13 are constructed with accommodating cavity structures, the pressing frame 12 and the bottom cover 13 are matched, and the bottom cover 13 is screw-connected through the plurality of connecting columns arranged correspondingly.

[0039] Specifically, in the embodiment, the bottom cover 13 is provided with a concave cavity protruding downward in the middle, a circular hole through which an output shaft of the motor 6 protrudes is arranged in the middle of the concave cavity, a sealing ring is arranged on the circular hole, the motor 6 is sealingly connected with the bottom cover 13, and the motor 6 is screw-fixed with the bottom cover 13 through the connecting frame 17 arranged in the concave cavity.

[0040] In the preferred embodiment of the utility model, a plurality of circular accommodating cavities are concavely arranged on the bottom of the bottom cover 13, the plurality of circular accommodating cavities are symmetrically arranged, a UVC ultraviolet light transmission hole is arranged in the middle of each of the plurality of circular accommodating cavities, a quartz glass sheet 18 is arranged outside each of the plurality of circular accommodating cavities corresponding to the UVC ultraviolet light transmission hole, and a circular decorative ring 19 is arranged outside each of the quartz glass sheets 18.

[0041] Specifically, in the embodiment, four concave conical cavities are arranged on the bottom of the bottom cover 13, a UVC ultraviolet light transmission hole is arranged in the middle of each of the conical cavities, four light transmission quartz glass sheets 18 are arranged in the placing openings outside each of the conical cavities, and a circular decorative ring 19 is sleeved outside each of the quartz glass sheets.

[0042] In the preferred embodiment of the utility model, the ultrasonic transducing structure includes an ultrasonic transducing sheet 20, the ultrasonic transducing sheet 20 is horizontally arranged on the bottom outside of the cleaning tank 4, the ultrasonic transducing sheet 20 is fixedly bonded with the cleaning tank 4 through glue, and the cleaning tank 4 is made of stainless steel material.

[0043] Specifically, in the embodiment, the ultrasonic transducer sheet 20 is a circular sheet structure, and the ultrasonic transducer sheet 20 is movably arranged at a middle position of the bottom of the cleaning tank 4.

[0044] In the preferred embodiment of the utility model, the side lower part of the shell 1 is provided with a mounting hole of the magnetic charging interface 5, and the magnetic charging interface 5 is embedded in the mounting hole.

[0045] In the preferred embodiment of the utility model, the control device comprises a main control PCB 21 and a UVC ultraviolet lamp plate 22, the main control PCB 21 and the UVC ultraviolet lamp plate 22 are horizontally arranged in corresponding installation grooves in the concave cavity, the bottom of the UVC ultraviolet lamp plate 22 is provided with a plurality of UVC ultraviolet light transmission holes, and a UVC ultraviolet lamp 26 is arranged in each UVC ultraviolet light transmission hole, the main control PCB 21 comprises a microprocessor and a touch key, the touch key is provided in plurality, the plurality of touch keys are electrically connected with the panel 11, and the UVC ultraviolet lamp plate 22 is electrically connected with the main control PCB 21.

[0046] In the preferred embodiment of the utility model, the lower part of the shell 2 is provided with an energy storage power supply, the energy storage power supply comprises a storage battery 23 and a sub-PCB 24 horizontally arranged at the upper part of the storage battery 23, and the main control PCB 21 is electrically connected with the sub-PCB 24.

[0047] Specifically, in the embodiment, the lower inside of the shell 2 is provided with a screw column matched with the bottom plate 3, the shell 2 is screw-connected with the bottom plate 3, the upper part of the bottom plate 3 is provided with a clamping groove for placing the storage battery 23 and a fixing hole through which a stick tape is arranged, and the bottom outside of the bottom plate 3 is semi-embedded with a foot pad 25.

[0048] The working principle of the utility model is as follows:

[0049] The contact lens is placed in the cleaning cover, so that the cleaning cover 7 is completely in contact with the liquid in the cleaning tank 4, the motor 6 is started, the motor 6 drives the cleaning cover 7 to rotate, the cleaning cover 7 rubs the lens by rotating and drives the water flow to wash and soak the lens, when the ultrasonic wave acts on the liquid, an energy extremely great shock wave is generated in the moment of the breakage of each bubble in the liquid, the lens is cleaned and washed, the effect of effectively removing grease and dirt is achieved, and through the electric rotation, an eddy current and a large number of bubbles moving along the direction of the eddy current are generated, the bubbles rub the lens attachments, so that the lens attachments are detached and carried away by the water flow, the cleaning effect is remarkable, the UVC short wave sterilization technology is used, it can penetrate the cell membrane and the cell nucleus in organisms, damage the molecular structure of DNA or RNA in the cells of the organism, cause the death of growing cells or the death of regenerative cells, effectively remove bacteria and pathogenic microorganisms, play a sterilization and purification role in all directions, and will not harm the human body.

[0050] The embodiments of the present application are described in detail in combination with the drawings, but the present application is not limited to the described embodiments. For those skilled in the art, various changes, modifications, replacements and variations of the embodiments can be made without departing from the principles and spirits of the present application, and still fall within the protection scope of the present application.

Claims

1. A multifunctional orthokeratology lens cleaning machine, comprising: The main body is a vertical cylinder structure with a cleaning device inside. The main body includes an upper cover, an outer shell, and a bottom plate. The upper part of the outer shell is embedded with a cleaning tank. The upper cover is movably arranged on the upper part of the outer shell. A control device is provided on the top of the upper cover. The bottom plate is embedded in the bottom of the outer shell. It is characterized in that a magnetic charging interface is provided on the side of the outer shell. The cleaning device includes a UVC ultraviolet sterilization structure, an electric eddy current cleaning structure, and an ultrasonic transducer structure. The UVC ultraviolet sterilization structure and the electric eddy current cleaning structure are both embedded in the cleaning tank. The UVC ultraviolet sterilization structure is arranged in the At the bottom of the upper cover, the UVC ultraviolet sterilization structure includes a plurality of UVC ultraviolet sterilization lamps, and the plurality of UVC ultraviolet sterilization lamps are symmetrically arranged. The electric eddy current cleaning structure includes a motor and a cleaning cover movably arranged on the output shaft of the motor. The output shaft is vertically arranged at the center position of the bottom of the upper cover. The cleaning cover is any one including an OK lens cleaning cover and a scleral lens cleaning cover. The UVC ultraviolet sterilization structure, electric eddy current cleaning structure, ultrasonic transducer structure, and magnetic charging interface are respectively electrically connected to the control device, and one side of the upper cover is movably connected to the outer shell through a corresponding damping shaft structure.

2. The multifunctional orthokeratology lens cleaning machine according to claim 1, characterized in that: The cleaning cover is a hollow structure with symmetrically provided accommodating grooves for placing lenses. The accommodating grooves are embedded in the inner side of the cleaning cover. A mounting hole is vertically provided in the middle of the cleaning cover. The mounting hole matches the output shaft. The OK lens cleaning cover and the scleral lens cleaning cover are movably connected to the output shaft respectively.

3. The multifunctional orthokeratology lens cleaning machine according to claim 2, characterized in that: The OK lens cleaning cover includes a first cover body, a first cover cover, and a second cover cover. The first cover body is embedded with a first accommodating groove and a second accommodating groove. A circular hole for installing the first cover cover and the second cover cover is penetrated on one side of the mounting hole. The first cover cover and the second cover cover are correspondingly arranged on the upper part of the first accommodating groove and the second accommodating groove. The first cover cover and the second cover cover are respectively connected to the first cover body by corresponding rotating shafts.

4. The multifunctional orthokeratology lens cleaning machine according to claim 3, characterized in that: The scleral lens cleaning cover is vertically arranged and includes a second cover body, a third cover, and a fourth cover. The accommodating groove is embedded in the second cover body. The accommodating groove includes a third accommodating groove and a fourth accommodating groove. The third accommodating groove and the fourth accommodating groove are symmetrically arranged in back to back directions. A mounting hole is provided in the middle of the second cover body. The third accommodating groove and the fourth accommodating groove are connected as a whole with the mounting hole. The mounting hole matches the output shaft. The third cover and the fourth cover are respectively flipped and connected with the corresponding third accommodating groove and the fourth accommodating groove through the rotating shaft provided on the side of the second cover body.

5. The multifunctional orthokeratology lens cleaning machine according to claim 4, characterized in that: The upper cover includes a panel, a pressure frame, a bottom cover, a lining, a waterproof rubber sleeve, and an elastic button. The panel is embedded in a slot provided on the inner side of the top of the pressure frame. The panel is a touch panel. The bottom cover is a structure with a concave cavity convex downward in the middle part. The bottom cover is arranged at the lower part of the pressure frame. The lining is movably arranged outside the concave cavity. A waterproof groove is horizontally provided on the top of the bottom cover. The waterproof rubber sleeve is embedded in the waterproof groove. The bottom cover is connected to the pressure frame screw. The motor is vertically arranged in a fixed groove provided in the middle part of the bottom cover. The motor is connected to the bottom cover screw via a connecting frame provided on the fixed groove. The elastic button is arranged on the upper part of the shell and is located on the opposite side of the damping shaft structure. The upper cover and the shell are connected by the elastic button buckle.

6. The multifunctional orthokeratology lens cleaning machine according to claim 5, characterized in that: The bottom of the bottom cover is concavely provided with a plurality of circular receiving cavities, and the plurality of circular receiving cavities are symmetrically arranged. A UVC ultraviolet light transmission hole is penetrated through the middle of the plurality of circular receiving cavities. Quartz glass sheets are respectively provided on the outside of the plurality of circular receiving cavities corresponding to the UVC ultraviolet light transmission holes, and a circular decorative ring is provided on the outside of each of the quartz glass sheets.

7. The multifunctional orthokeratology lens cleaning machine according to claim 1, characterized in that: The ultrasonic transducer structure includes an ultrasonic transducer sheet, which is horizontally arranged on the outside of the bottom of the cleaning tank. The ultrasonic transducer sheet is fixed to the cleaning tank by glue, and the cleaning tank is made of stainless steel.

8. The multifunctional orthokeratology lens cleaning machine according to claim 2, characterized in that: A mounting hole for the magnetic charging interface is provided on the lower side of the shell, and the magnetic charging interface is embedded in the mounting hole.

9. The multifunctional orthokeratology lens cleaning machine according to claim 5, characterized in that: The control device includes a main control PCB board and a UVC ultraviolet lamp board. The main control PCB board and the UVC ultraviolet lamp board are both horizontally arranged in corresponding mounting grooves inside the cavity. UVC ultraviolet lamps are provided at the bottom of the UVC ultraviolet lamp board corresponding to the multiple UVC ultraviolet light transmission holes. The main control PCB board includes a set microprocessor and touch keys. There are multiple touch keys, and the multiple touch keys are electrically connected to the panel. The UVC ultraviolet lamp board is electrically connected to the main control PCB board.

10. The multifunctional orthokeratology lens cleaning machine according to claim 9, characterized in that: An energy storage power supply is provided at the lower portion of the housing. The energy storage power supply includes a battery and a secondary PCB board horizontally arranged above the battery. The main control PCB board is electrically connected to the secondary PCB board.