Eye massage instrument

By using a rigid connection between the mid-frame and the silicone inner shell and a detachable atomizing component design in the eye massager, the problem of deformation and collapse of the silicone inner shell caused by the atomizing component is solved, achieving a stable massage effect and convenient cleaning, thus improving the user experience.

CN224056295UActive Publication Date: 2026-03-31DONGGUAN SANHESHENG TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-02
Publication Date
2026-03-31

AI Technical Summary

Technical Problem

The atomizing components of existing eye massagers are prone to deformation and collapse after being installed in the silicone inner shell, affecting the performance.

Method used

A rigid structure is used to support the middle frame and the silicone inner shell. The mounting plate is fixedly connected to the silicone inner shell and has a harderness than the silicone inner shell. The atomizing component is detachably installed on the mounting plate to ensure that the silicone inner shell does not deform. The steam is heated by the heating element.

Benefits of technology

This design prevents the silicone inner shell from deforming and collapsing, ensuring the massage effect, improving production efficiency and ease of cleaning, and enhancing the user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an eye massage instrument which comprises a shell and an atomization assembly, the shell comprises a face cover, a middle frame, a silica gel inner shell and a mounting plate, the middle frame is attached to the inner side wall of the silica gel inner shell to support the silica gel inner shell, and the face cover, the middle frame and the silica gel inner shell are fixedly connected; a plurality of eye massage heads are arranged on the silica gel inner shell, the eye massage heads are arranged on the outer side wall of the side, facing the eyes of the human body, of the silica gel inner shell in a protruding mode, and the eye massage heads and the silica gel inner shell are of an integrated structure; a first mounting hole is formed in the middle of the silica gel inner shell in the left-right direction of the eye massage instrument; the mounting plate is located on the side, away from the face cover, of the middle frame and corresponds to the first mounting hole. The hardness of the mounting plate is greater than that of the silica gel inner shell, the mounting plate is fixedly connected with the silica gel inner shell, and the mounting plate seals the first mounting hole; the atomization assembly is located on the side, away from the middle frame, of the mounting plate, detachably mounted on the mounting plate and used for atomizing water to form steam.
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Description

Technical Field

[0001] This utility model relates to the field of massager technology, and in particular to an eye massager. Background Technology

[0002] In daily life and work, prolonged use of the eyes can cause eye fatigue. Eye massagers can effectively massage and relax the eyes to relieve this fatigue. An eye massager generally consists of a housing and an eye massage head located on the outer surface of the housing (the side closest to the eyes). The eye massage head massages the area around the eyes (the eye socket area). The housing typically includes a front cover and an inner shell positioned opposite each other. The inner shell is located on the side of the front cover closest to the eyes. Currently, some eye massagers use silicone for the inner shell, and the eye massage head is integrated with the inner shell, meaning the eye massage head is also made of silicone, giving it a soft and comfortable feel.

[0003] To enrich the massage methods and improve the massage effect of eye massagers, eye massagers that use steam to enhance eye care have appeared on the market. These eye massagers are equipped with atomizing components that can atomize water into steam. The principle of steam eye care is to use the warmth and humidity of steam to promote microcirculation of blood in the eyes, thereby relieving eye fatigue, brightening the eyes and refreshing the mind, and eliminating eye discomfort.

[0004] Currently, atomizing components are generally placed on the outer wall of the inner shell. However, since the inner shell is made of soft silicone, it is easy for the inner shell to deform and collapse after the atomizing component is installed, thus affecting the performance. Utility Model Content

[0005] The purpose of this invention is to provide an eye massager that can prevent the silicone inner shell from deforming and collapsing after the atomizing component is installed on the housing, thereby ensuring the massage effect.

[0006] This utility model provides an eye massager, including a housing and an atomizing component. The housing includes a face cover, a middle frame, a silicone inner shell, and a mounting plate. The silicone inner shell is located on the side of the face cover facing the human eye. The middle frame is located between the face cover and the silicone inner shell, and the middle frame abuts against the inner wall of the silicone inner shell to support it. The face cover, the middle frame, and the silicone inner shell are fixedly connected. The silicone inner shell is provided with multiple eye massage heads, which protrude from the outer wall of the silicone inner shell facing the human eye. The eye massage heads and the silicone inner shell are an integral structure.

[0007] Along the left-right direction of the eye massager, a first mounting hole is provided in the middle of the silicone inner shell; the mounting plate is located on the side of the middle frame away from the face cover, and the mounting plate is set corresponding to the first mounting hole; the hardness of the mounting plate is greater than the hardness of the silicone inner shell, the mounting plate is fixedly connected to the silicone inner shell, and the mounting plate seals the first mounting hole.

[0008] The atomizing component is located on the side of the mounting plate away from the middle frame. The atomizing component is detachably mounted on the mounting plate and is used to atomize water into steam.

[0009] In one possible implementation, the mounting plate is integrally connected to the silicone inner shell.

[0010] In one possible implementation, the silicone inner shell has a recessed portion around the first mounting hole, the recessed portion being formed by the silicone inner shell recessing inward toward the middle frame; the recessed portion has an annular folded edge around the first mounting hole, and the edge of the mounting plate is fixedly connected to the annular folded edge; a receiving groove is formed between the mounting plate and the recessed portion, and the atomizing component is disposed in the receiving groove.

[0011] In one possible embodiment, the eye massager further includes a heating element, a second mounting hole on the silicone inner shell, the heating element being disposed corresponding to the second mounting hole, the heating element being fixedly connected to the silicone inner shell, and the heating element sealing the second mounting hole; the heating element is capable of generating heat after being powered on, and the heating element is used to heat the steam generated by the atomization component.

[0012] In one possible implementation, the silicone inner shell is provided with a first annular clamping portion and a second annular clamping portion around the periphery of the second mounting hole, the first annular clamping portion and the second annular clamping portion being spaced apart; the heating element is a sheet-like metal heating plate, the edge of the heating element being sandwiched between the first annular clamping portion and the second annular clamping portion.

[0013] In one possible implementation, the heating element is integrally connected to the silicone inner shell.

[0014] In one possible implementation, the atomizing assembly includes a water tank, an atomizing plate, a sealing component, a first electrical connector, and a first magnetic connector, wherein the atomizing plate, the first electrical connector, and the first magnetic connector are all disposed on the wall of the water tank, and the atomizing plate is electrically connected to the first electrical connector.

[0015] The water storage tank has a water storage cavity inside, and the water storage tank has a water inlet and a water outlet, both of which are connected to the water storage cavity. A sealing member is provided corresponding to the water inlet, and the sealing member is used to open or seal the water inlet. An atomizing plate is provided corresponding to the water outlet, and water in the water storage cavity can reach the atomizing plate through the water outlet so that the water can be atomized into steam by the atomizing plate.

[0016] The housing contains an electronic control component, and the inner sidewall of the mounting plate is provided with a second electrical connector and a second magnetic connector. The electronic control component is electrically connected to the second electrical connector. When the atomizing component is installed on the mounting plate, the first electrical connector and the second electrical connector come into contact and conduct electricity, and the first magnetic connector and the second magnetic connector are attracted by magnetic force.

[0017] In one possible implementation, a nose bridge clearance groove is provided at the lower center of the silicone inner shell along the left-right direction of the eye massager; a support strip is provided inside the shell, the support strip is disposed on the inner side wall of the silicone inner shell, and the support strip is disposed close to the nose bridge clearance groove.

[0018] In one possible implementation, the silicone inner shell has a flange at its edge, the flange being located on the side of the silicone inner shell closer to the faceplate, and the edge of the middle frame is sandwiched between the flange and the silicone inner shell; a groove is formed between the flange and the inner wall of the silicone inner shell, and the edge of the middle frame is located within the groove; a support portion is provided at the edge of the middle frame, and the inner wall of the groove is fitted to the support portion;

[0019] The edge of the cover is provided with a first snap-fit ​​part, and the edge of the middle frame is provided with a second snap-fit ​​part. The second snap-fit ​​part passes through the flange and engages with the first snap-fit ​​part.

[0020] In one possible implementation, a first limiting part is provided at the edge of the face cover, and a second limiting part is provided at the edge of the middle frame. The second limiting part passes through the flange and abuts against the first limiting part vertically.

[0021] There is a locking gap between the edge of the cover and the edge of the middle frame, and the locking gap corresponds to the second limiting part; a locking protrusion is provided on the flange, and the locking protrusion is arranged vertically and vertically corresponding to the second limiting part. The locking protrusion is locked in the locking gap, and the locking protrusion is sandwiched between the edge of the cover and the second limiting part.

[0022] The eye massager provided by this utility model integrates the eye massage head and the silicone inner shell into one structure, eliminating the need for assembly during production, thereby improving production efficiency and saving production costs. Moreover, since the silicone inner shell is made of flexible silicone, and the eye massage head is integrally molded with the silicone inner shell, the eye massage head is also made of silicone, thus providing better massage comfort.

[0023] By setting a rigid middle frame that fits against the inner wall of the silicone inner shell, the soft silicone inner shell is supported, preventing deformation and collapse of the silicone inner shell when the human face comes into contact with the eye massage head and when it is subjected to force. This ensures that the eye massage head can always maintain effective contact with the human face, thus guaranteeing the massage effect of the eye massage head.

[0024] By incorporating a mounting plate that is fixedly connected to the silicone inner shell, and ensuring the mounting plate is harder than the silicone inner shell (i.e., a rigid plate), the atomizing component is mounted on the mounting plate during use. This prevents the silicone inner shell from deforming or collapsing under stress, thus guaranteeing the massage effect. Furthermore, because the atomizing component is detachably connected to the mounting plate (i.e., the atomizing component is a removable structure), it can be easily removed from the shell for cleaning, facilitating both cleaning and improving the cleaning efficiency. When adding water to the atomizing component, it can be removed from the shell first, making the water filling process convenient and preventing water from splashing onto the shell, thus enhancing the user experience. Attached Figure Description

[0025] Figure 1 This is a schematic diagram of the structure of the eye massager in an embodiment of this utility model.

[0026] Figure 2 for Figure 1 A schematic diagram of the explosion structure.

[0027] Figure 3 for Figure 2 A schematic diagram of the exploded structure after further decomposition.

[0028] Figure 4 for Figure 3 A schematic diagram of the exploded structure after further decomposition.

[0029] Figure 5 for Figure 4 A structural diagram in another direction.

[0030] Figure 6 This is a schematic diagram of the assembly structure of the silicone inner shell, mounting plate, second electrical connector and light-emitting device in an embodiment of this utility model.

[0031] Figure 7 for Figure 6 A structural diagram in another direction.

[0032] Figure 8 for Figure 6 A schematic diagram of the explosion structure.

[0033] Figure 9 for Figure 8 A structural diagram in another direction.

[0034] Figure 10 This is a schematic diagram of the atomizing component in an embodiment of the present invention.

[0035] Figure 11 for Figure 10 A structural diagram in another direction.

[0036] Figure 12 for Figure 10 A schematic diagram of the explosion structure.

[0037] Figure 13 for Figure 12 A schematic diagram of the exploded structure after further decomposition.

[0038] Figure 14 for Figure 13 A structural diagram in another direction.

[0039] Figure 15 This is a schematic cross-sectional view of the assembly of the silicone inner shell, heating element, and mounting plate in an embodiment of this utility model.

[0040] Figure 16 This is a schematic diagram of the exploded structure of the shell in an embodiment of this utility model.

[0041] Figure 17 This is a schematic diagram of the assembly structure of the silicone inner shell and the middle frame in an embodiment of this utility model.

[0042] Figure 18 for Figure 17 A schematic diagram of the explosion structure.

[0043] Figure 19 This is a schematic diagram of the assembly structure of the faceplate and the middle frame in an embodiment of this utility model.

[0044] Figure 20 This is a schematic diagram of the structure of the silicone inner shell in an embodiment of this utility model.

[0045] Figure 21 This is a schematic diagram of the structure of the middle frame in an embodiment of this utility model.

[0046] Figure 22 for Figure 21 A structural diagram in another direction.

[0047] Figure 23 This is a schematic diagram of the structure of the face cover in an embodiment of the present invention.

[0048] In the diagram: 1-Shell, 10-Support bar, 11-Face cover, 110-Interlocking gap, 111-First snap-fit ​​part, 112-First limiting part, 12-Middle frame, 12A-Left middle frame, 12B-Right middle frame, 121-Second snap-fit ​​part, 122-Second limiting part, 123-Snap hole, 124-Mounting part, 125-Support part, 1251-Supporting surface, 1252-Weight reduction groove, 13-Silicone inner shell, 13A-Nose bridge clearance groove, 130-Groove, 131-Flange, 132-First through hole, 133-Second through hole, 134-Snap protrusion 135-Protruding post, 136-First mounting hole, 137-Groove, 138-Inner recess, 1381-Annular folded edge, 139-Second mounting hole, 1391-First annular clamping edge, 1392-Second annular clamping edge, 14-Eye massage head, 15-Second magnetic suction component, 16-Receiving groove, 161-Receiving groove, 162-Horizontal groove, 17-Mounting plate, 171-First clearance hole, 172-Second clearance hole, 18-Vibration motor, 19-Air pump, 2-Atomizing assembly, 21-Water tank, 210-Water storage chamber, 211-Water injection hole 212-Outlet, 213-Channel, 214-Connecting hole, 215-Front mounting slot, 216-Rear mounting slot, 217-Through hole, 21A-Left side wall, 21B-Right side wall, 21C-Front side wall, 21D-Rear side wall, 21M-Upper housing, 21N-Lower housing, 22-Atomizing plate, 23-Sealing component, 231-Connecting post, 232-Plug, 24-First electrical connection component, 241-Adapter plate, 242-Conductive post, 25-Speaker, 22-Atomizing plate, 23-Sealing component, 231-Connecting post, 232-Plug, 24-First electrical connection component 1. Electrical connector, 241-Adapter plate, 242-Conductive post, 25-Speaker, 26-First magnetic clasp, 27-Front cover, 271-First sound outlet, 272-Steam outlet, 28-Rear cover, 281-Opening, 29-Sealing gasket, 3-Electrical control assembly, 31-Main control board, 32-Battery, 4-Second electrical connector, 41-Fixing block, 42-Spring pin, 5-Heating element, 6-Cover, 61-Steam outlet, 62-Second sound outlet, 7-Temple massage head, 8-Light-emitting device, 81-Lamp board, 82-Light guide post, 9-Headband. Detailed Implementation

[0049] The specific embodiments of this utility model will be further described in detail below with reference to the accompanying drawings and examples. The following examples are used to illustrate this utility model, but are not intended to limit the scope of this utility model.

[0050] The terms “first,” “second,” “third,” “fourth,” etc. (if present) in the specification and claims of this utility model are used to distinguish similar objects and are not necessarily used to describe a specific order or sequence.

[0051] The directional terms such as "up," "down," "left," "right," "front," "back," "top," and "bottom" (if present) used in the specification and claims of this utility model are defined according to the position of the structures in the drawings and the relative positions of the structures, and are only for the purpose of clarity and convenience in expressing the technical solution. It should be understood that the use of directional terms should not limit the scope of protection claimed by this utility model.

[0052] like Figures 1 to 14 As shown, the eye massager provided in this embodiment of the present invention includes a generally arched housing 1 and an atomizing component 2. The atomizing component 2 is disposed on the outer wall of the housing 1 facing the human eye, and the atomizing component 2 is positioned corresponding to the human eye. The housing 1 includes a face cover 11, a middle frame 12, a silicone inner shell 13, and a mounting plate 17 arranged sequentially. The face cover 11, the middle frame 12, and the silicone inner shell 13 are all generally arched. The silicone inner shell 13 and the face cover 11 are positioned opposite each other, with the silicone inner shell 13 located on the side of the face cover 11 facing the eyes. The middle frame 12 is located between the face cover 11 and the silicone inner shell 13. The middle frame 12 abuts against the inner wall of the silicone inner shell 13 (the inner wall of the silicone inner shell 13 is the side wall of the silicone inner shell 13 closest to the face cover 11) to support the silicone inner shell 13 (i.e., the middle frame 12 is in contact with the inner wall of the silicone inner shell 13). The face cover 11, the middle frame 12, and the silicone inner shell 13 are fixedly connected. The middle frame 12 and the face cover 11 can be made of rigid materials such as plastic.

[0053] The silicone inner shell 13 is equipped with multiple eye massage heads 14, which are spaced apart and used to massage the eye area (specifically, the eye socket area). Each eye massage head 14 protrudes from the outer wall of the silicone inner shell 13 on the side facing the eyes. The eye massage heads 14 and the silicone inner shell 13 are an integral structure, meaning both are made of silicone. The eye massage heads 14 protrude outwards from the atomizing component 2; that is, when the face comes into contact with the eye massage heads 14, the atomizing component 2 does not come into contact with the face, thus avoiding discomfort caused by contact between the atomizing component 2 and the face.

[0054] Along the left-right direction X of the eye massager, a first mounting hole 136 is provided in the middle of the silicone inner shell 13, and the first mounting hole 136 penetrates the silicone inner shell 13. The mounting plate 17 is located on the side of the middle frame 12 away from the face cover 11, and the mounting plate 17 is set corresponding to the first mounting hole 136; the hardness of the mounting plate 17 is greater than the hardness of the silicone inner shell 13, the mounting plate 17 is fixedly connected to the silicone inner shell 13, and the mounting plate 17 seals the first mounting hole 136. The mounting plate 17 can be made of a hard material such as plastic (e.g., nylon).

[0055] The atomizing component 2 is located on the side of the mounting plate 17 away from the middle frame 12. The atomizing component 2 is detachably mounted on the mounting plate 17. The atomizing component 2 is used to atomize water into steam to achieve the steam eye protection function.

[0056] The eye massager provided in this embodiment, by setting up an atomizing component 2, can atomize water into steam. The heat and humidity of the steam promote the microcirculation of blood in the eyes, thereby relieving eye fatigue, brightening the eyes and refreshing the mind, and eliminating eye discomfort, thus realizing the steam eye care function of the eye massager.

[0057] By integrating the eye massage head 14 with the silicone inner shell 13 into a single structure, there is no need to assemble the eye massage head 14 and the silicone inner shell 13 during production, thereby improving production efficiency and saving production costs. Moreover, since the silicone inner shell 13 is made of flexible silicone, and the eye massage head 14 and the silicone inner shell 13 are integrally molded, the eye massage head 14 is also made of silicone, thus providing better massage comfort.

[0058] By setting the middle frame 12, which is a rigid structure, the middle frame 12 is in contact with the inner wall of the silicone inner shell 13, thereby supporting the soft silicone inner shell 13 and preventing the human face from deforming and collapsing after contact with the eye massage head 14 and the silicone inner shell 13 is subjected to force, thus ensuring the massage effect of the eye massage head 14.

[0059] By setting the mounting plate 17, which is fixedly connected to the silicone inner shell 13, the mounting plate 17 is a rigid plate. During use, the atomizing component 2 is installed on the mounting plate 17, which can prevent the silicone inner shell 13 from deforming and collapsing under stress (i.e., the atomizing component 2 is not directly installed on the silicone inner shell 13), thereby ensuring the massage effect. At the same time, it can improve the positional stability of the atomizing component 2 after installation and the electrical connection stability between the first electrical connector 24 and the second electrical connector 4 (the first electrical connector 24 and the second electrical connector 4 are described in detail below). Moreover, since the atomizing component 2 is detachably connected to the mounting plate 17, that is, the atomizing component 2 is set as a detachable structure, the atomizing component 2 can be removed from the shell 1 during cleaning, thereby facilitating the cleaning of the atomizing component 2 and the shell 1 and improving the cleaning effect. When filling the atomizing component 2 with water, the atomizing component 2 can be removed from the housing 1 first, and then water can be filled into the atomizing component 2. This not only makes the water filling operation more convenient, but also avoids water splashing onto the housing 1 during water filling, thus improving the user experience.

[0060] like Figures 1 to 14 As shown, in one embodiment, the atomizing component 2 includes a water tank 21, an atomizing plate 22, a sealing member 23, and a first electrical connector 24. The atomizing plate 22 and the first electrical connector 24 are both disposed on the wall of the water tank 21. The first electrical connector 24 is specifically disposed on the wall of the water tank 21 on the side of the housing 1. The atomizing plate 22 is electrically connected to the first electrical connector 24.

[0061] The water storage tank 21 has a hollow structure and a water storage cavity 210 inside. The water storage tank 21 has an inlet 211 and an outlet 212, both of which are connected to the water storage cavity 210. A sealing member 23 is provided corresponding to the inlet 211 and is closably connected to the water storage tank 21. The sealing member 23 is used to open or seal the inlet 211. An atomizing plate 22 is provided corresponding to the outlet 212. The atomizing plate 22 blocks the outlet 212, allowing water in the water storage cavity 210 to reach the atomizing plate 22 through the outlet 212, where it is atomized into steam.

[0062] An electronic control component 3 is housed within the housing 1. A second electrical connector 4 is provided on the inner side wall of the mounting plate 17 (i.e., the side wall of the mounting plate 17 near the middle frame 12). The electronic control component 3 is electrically connected to the second electrical connector 4. When the atomizing component 2 is installed on the mounting plate 17, the first electrical connector 24 can contact and electrically connect with the second electrical connector 4, thereby electrically connecting the atomizing plate 22 to the electronic control component 3. When the atomizing component 2 is removed from the mounting plate 17, the first electrical connector 24 separates from the second electrical connector 4, and the electrical connection is broken. This method solves the problem of difficulty in electrically connecting the electronic control component 3 to the atomizing plate 22 caused by the detachable design of the atomizing component 2 and the housing 1.

[0063] The water tank 21 is used to store water. Water can be added to the water storage chamber 210 of the water tank 21 through the water injection hole 211 (or, when the eye massager is finished using, excess water in the water storage chamber 210 can also be discharged out of the water storage chamber 210 through the water injection hole 211); the sealing member 23 is used to open or seal the water injection hole 211. It can be opened when adding water and closed after adding water to seal the water injection hole 211, thereby preventing water in the water storage chamber 210 from leaking out during use and making it convenient for users to operate.

[0064] The atomizing plate 22 can be an ultrasonic atomizing plate, meaning that the atomizing plate 22 generates ultrasonic vibrations after being powered on, using the ultrasonic vibrations to atomize water into steam. The atomizing plate 22 can also be a heated atomizing plate, meaning that the atomizing plate 22 heats up after being powered on, heating the water to atomize it into steam. The atomizing plate 22 can also be an ultrasonic / heated atomizing plate, meaning that the atomizing plate 22 generates both ultrasonic vibrations and heat after being powered on, using both ultrasonic vibrations and heating to atomize water. In this embodiment, the atomizing plate 22 is an ultrasonic atomizing plate; during use, water in the water storage chamber 210 reaches the atomizing plate 22 through the water outlet 212. When the atomizing plate 22 is powered on, it uses ultrasonic vibrations to atomize the water into steam, which reaches the user's eyes, thus providing steam eye protection.

[0065] The electronic control component 3 is used to supply power to the atomizing plate 22 and control its operation (e.g., controlling the opening and closing of the atomizing plate 22 and its operating mode). The electronic control component 3 includes a main control board 31 (specifically including a main control circuit board and electronic components mounted on it) and a battery 32. The battery 32 is electrically connected to the main control board 31, and the second electrical connector 4 is also electrically connected to the main control board 31. When the atomizing component 2 is installed on the mounting plate 17, the first electrical connector 24 and the second electrical connector 4 come into contact and become electrically connected, thereby electrically connecting the atomizing plate 22 to the electronic control component 3 through the first electrical connector 24 and the second electrical connector 4, thus supplying power to the atomizing plate 22 and controlling its operation. The atomizing plate 22 can be disposed on the outer wall of the water storage tank 21 or embedded in the tank wall, as long as the water in the water storage cavity 210 can reach the atomizing plate 22 through the water outlet 212 and the steam generated by the atomizing plate 22 can flow to the human eye. The first electrical connector 24 can be disposed on the outer wall of the water storage tank 21 or embedded in the tank wall.

[0066] like Figures 8 to 14As shown, in one embodiment, the atomizing component 2 further includes a first magnetic suction member 26, which is disposed on the wall of the water storage tank 21, and a second magnetic suction member 15 is disposed on the inner side wall of the mounting plate 17. When the atomizing component 2 is installed on the mounting plate 17, the first magnetic suction member 26 and the second magnetic suction member 15 can be magnetically attracted, thereby detachably fixing the atomizing component 2 to the mounting plate 17 by magnetic force, facilitating the installation and removal of the atomizing component 2. The first magnetic suction member 26 and the second magnetic suction member 15 can both be magnets, or one can be a magnet and the other can be an iron block, as long as they can be magnetically attracted. Of course, in other embodiments, the atomizing component 2 can also be detachably connected to the housing 1 by other means, such as snap-fit.

[0067] like Figures 3 to 9 As shown, in one embodiment, the second electrical connector 4 includes a fixing block 41 and a spring pin 42 disposed on the fixing block 41. The spring pin 42 is electrically connected to the electronic control assembly 3 (specifically the main control board 31). The fixing block 41 is fixed to the inner sidewall of the mounting plate 17, thereby fixing the spring pin 42. At the same time, the second magnetic suction member 15 is disposed corresponding to the fixing block 41, and the fixing block 41 presses and fixes the second magnetic suction member 15 to the inner sidewall of the mounting plate 17. The mounting plate 17 is provided with a first clearance hole 171 at the position corresponding to the spring pin 42. The spring pin 42 extends out of the mounting plate 17 through the first clearance hole 171, so that after the atomizing assembly 2 is installed on the mounting plate 17, the conductive post 242 in the first electrical connector 24 can contact and conduct electricity with the spring pin 42. At the same time, the spring pin 42 can extend and retract to avoid the conductive post 242 from rigidly contacting the spring pin 42 and being damaged. Of course, in other embodiments, the first electrical connector 24 and the second electrical connector 4 can also be in other forms of mating, such as a plug and socket mating.

[0068] like Figures 1 to 3 and Figures 12 to 14 As shown, in one embodiment, along the left-right direction X of the eye massager, the atomizing component 2 is positioned in the middle of the housing 1, so that the steam generated by the atomizing component 2 can evenly reach the eyes of the user. Simultaneously, a speaker 25 is provided on the wall of the water tank 21, specifically located on the side of the water tank 21 away from the housing 1. The speaker 25 is electrically connected to the first electrical connector 24. When the atomizing component 2 is installed on the mounting plate 17, the speaker 25 can be electrically connected to the electronic control component 3 through the first electrical connector 24 and the second electrical connector 4, so that the electronic control component 3 can supply power to the speaker 25 and control its operation.

[0069] Specifically, the speaker 25 (i.e., the loudspeaker) has music playback or voice playback functions. In this embodiment, the speaker 25 is placed on the atomizing component 2, which not only enhances the technological feel and fun of the eye massager, but also, since the atomizing component 2 is located in the middle of the housing 1, that is, the speaker 25 is also located in the middle of the housing 1, the sound emitted by the speaker 25 can propagate synchronously from the middle of the housing 1 to both sides (specifically, the sound emitted by the speaker 25 propagates to both sides from the gap between the human face and the housing 1 after contacting the human face), so that the sound reaches the human's ears synchronously. In this way, one speaker 25 can replace the original design of speakers placed at both ends (currently, eye massagers with music playback functions generally place the speakers at opposite ends of the housing, that is, the speakers on both sides are respectively placed at the human's ears), which not only saves costs, but also achieves good sound effects.

[0070] like Figures 1 to 3 and Figures 12 to 14 As shown, in one embodiment, the tank wall of the water storage tank 21 includes a left side wall 21A and a right side wall 21B arranged opposite to each other, and a front side wall 21C and a rear side wall 21D arranged opposite to each other. The front side wall 21C is located on the side of the rear side wall 21D facing the human eye (that is, the front side wall 21C is located on the side of the rear side wall 21D away from the shell 1).

[0071] Water outlet 212 is provided on the left side wall 21A and the right side wall 21B. Atomizing plate 22 is also provided on the left side wall 21A and the right side wall 21B. The atomizing plate 22 and water outlet 212 on the left side wall 21A and the right side wall 21B are respectively correspondingly set (that is, the atomizing plate 22 on the left side wall 21A is correspondingly set with the water outlet 212 on the left side wall 21A, and the atomizing plate 22 on the right side wall 21B is correspondingly set with the water outlet 212 on the right side wall 21B). Water inlet 211 and sealing member 23 are both provided on the top of water storage tank 21.

[0072] The speaker 25 is mounted on the front sidewall 21C, so that the sound played by the speaker 25 can be simultaneously transmitted to both ears of the human body. The first electrical connector 24 is mounted on the rear sidewall 21D, so that it can easily make contact with the second electrical connector 4. The first magnetic connector 26 is also mounted on the rear sidewall 21D, so that it can easily be magnetically attracted to the second magnetic connector 15.

[0073] Specifically, in this embodiment, the left side wall 21A and the right side wall 21B are respectively inclined at an obtuse angle to the front side wall 21C, that is, the left side wall 21A is inclined to the left front and the right side wall 21B is inclined to the right front, so that the steam generated by the atomizing plate 22 on the left side wall 21A and the atomizing plate 22 on the right side wall 21B can more easily reach the human eyes.

[0074] like Figures 12 to 14 As shown, in one embodiment, the water storage tank 21 is provided with a channel 213, which runs through the water storage tank 21 from front to back, and the channel 213 is not connected to the water storage cavity 210 (i.e., the channel 213 and the water storage cavity 210 are isolated from each other); the speaker 25 is electrically connected to the first electrical connector 24 through a wire (not shown), and the wire passes through the channel 213 (i.e., the wire runs through the channel 213), thereby solving the wiring problem of the electrical connection between the speaker 25 and the first electrical connector 24 and improving the safety of the wiring. Through holes 217 are provided on the left and right sides of the water storage tank 21, and the atomizing plate 22 is electrically connected to the first electrical connector 24 through a conductive wire (not shown), and the conductive wire passes through the through hole 217 (i.e., the conductive wire runs through the through hole 217).

[0075] like Figures 12 to 14 As shown, in one embodiment, a sealing gasket 29 is sandwiched between the atomizing plate 22 and the water storage tank 21. The sealing gasket 29 is provided corresponding to the water outlet 212 and is used to prevent water leakage between the atomizing plate 22 and the water storage tank 21.

[0076] like Figures 10 to 14 As shown, in one embodiment, the front sidewall 21C of the water tank 21 is provided with a front mounting groove 215, and the speaker 25 is disposed in the front mounting groove 215. The atomizing assembly 2 also includes a front cover plate 27, which is disposed corresponding to the left sidewall 21A, right sidewall 21B and front sidewall 21C of the water tank 21. That is, the front cover plate 27 is disposed corresponding to the atomizing plates 22 and the speaker 25 on both sides. The front cover plate 27 is fixedly connected to the water tank 21. The front cover plate 27 presses and fixes the atomizing plates 22 and the speaker 25 on both sides onto the water tank 21, and covers the atomizing plates 22 and the speaker 25 on both sides. That is, the front cover plate 27 not only serves to install and fix the atomizing plates 22 and the speaker 25, but also serves to cover and make it aesthetically pleasing, while preventing the atomizing plates 22 and the speaker 25 from being damaged by collision. The front cover 27 has steam outlet holes 272 at the positions corresponding to the atomizing plates 22 on both sides, so that the steam generated by the atomizing plates 22 can be discharged through the steam outlet holes 272. The front cover 27 has a first sound outlet hole 271 at the position corresponding to the speaker 25, so that the sound played by the speaker 25 can be discharged through the first sound outlet hole 271; the first sound outlet hole 271 is set in the form of multiple closely spaced small holes to improve the aesthetics.

[0077] like Figures 10 to 14As shown, in one embodiment, the rear sidewall 21D of the water tank 21 is provided with a rear mounting groove 216. The first electrical connector 24 and the first magnetic connector 26 are both disposed in the rear mounting groove 216. The channel 213 connects the front mounting groove 215 and the rear mounting groove 216. The atomizing assembly 2 also includes a rear cover plate 28, which is disposed corresponding to the rear mounting groove 216 of the water tank 21. That is, the rear cover plate 28 is disposed corresponding to the first electrical connector 24 and the first magnetic connector 26. The rear cover plate 28 is fixedly connected to the water tank 21. The rear cover plate 28 presses and fixes the first electrical connector 24 and the first magnetic connector 26 onto the water tank 21 and covers the first electrical connector 24 and the first magnetic connector 26. That is, the rear cover plate 28 not only serves to install and fix the first electrical connector 24 and the first magnetic connector 26, but also serves to cover and make it aesthetically pleasing, while preventing the first electrical connector 24 and the first magnetic connector 26 from being damaged by collision.

[0078] In this embodiment, the first electrical connector 24 includes an adapter plate 241 (the adapter plate 241 is a circuit board) and conductive posts 242 disposed on the adapter plate 241. The atomizing sheet 22 and the speaker 25 are both electrically connected to the adapter plate 241, and the conductive posts 242 are electrically connected to the adapter plate 241. The conductive posts 242 are used for electrical connection with the second electrical connector 4. An opening 281 is provided on the rear cover plate 28 at the position corresponding to the conductive posts 242. The conductive posts 242 are exposed or extend out of the rear cover plate 28 through the opening 281 (the conductive posts 242 may extend out of the rear cover plate 28 or not), thereby facilitating the electrical connection between the conductive posts 242 and the second electrical connector 4. Of course, in other embodiments, the first electrical connector 24 can also have other structural forms.

[0079] In this embodiment, the front cover plate 27, the water tank 21, and the rear cover plate 28 are fixed together with screws. Of course, in other embodiments, the front cover plate 27, the water tank 21, and the rear cover plate 28 can also be fixed in other ways.

[0080] like Figures 12 to 14 As shown, in one embodiment, the sealing component 23 includes a connecting post 231 and a plug 232 connected to each other. The water storage tank 21 is provided with a connecting hole 214, and the connecting post 231 is located in the connecting hole 214 and fixedly connected to the water storage tank 21. The plug 232 is provided corresponding to the water injection hole 211. The plug 232 is used to open or seal the water injection hole 211. The plug 232 is detachably connected to the water storage tank 21. Specifically, the plug 232 is fixed to the inner wall of the water injection hole 211 by an interference fit.

[0081] like Figures 10 to 14As shown, in one embodiment, the water storage tank 21 includes an upper tank 21M and a lower tank 21N. The upper tank 21M and the lower tank 21N are fixedly connected (specifically, they can be connected by screws). The upper tank 21M is located above the lower tank 21N. The water storage cavity 210 is formed by the upper tank 21M and the lower tank 21N (that is, the water storage cavity 210 is simultaneously located inside the upper tank 21M and the lower tank 21N). The water inlet 211 and the sealing member 23 are both located on the top of the upper tank 21M. The water outlet 212, the atomizing plate 22, the speaker 25, the first magnetic suction member 26, and the first electrical connector 24 are all located on the lower tank 21N. The front cover plate 27 and the rear cover plate 28 are fixedly connected to the lower tank 21N.

[0082] like Figures 4 to 9 and Figure 15 As shown, in one embodiment, the silicone inner shell 13 has a recessed portion 138 around the first mounting hole 136. The recessed portion 138 is formed by the silicone inner shell 13 being recessed inward toward the middle frame 12. An annular folded edge 1381 is provided around the periphery of the recessed portion 138 around the first mounting hole 136. The annular folded edge 1381 protrudes from the edge of the recessed portion 138 toward the center of the first mounting hole 136. The mounting plate 17 is located on the side of the annular folded edge 1381 away from the middle frame 12. The edge of the mounting plate 17 is fixedly connected to the annular folded edge 1381, thereby improving the connection strength and sealing between the mounting plate 17 and the silicone inner shell 13. A receiving groove 161 is formed between the mounting plate 17 and the recessed portion 138. When the atomizing component 2 is installed on the mounting plate 17, the atomizing component 2 is disposed within the receiving groove 161.

[0083] like Figures 2 to 9 and Figure 15 As shown, in one embodiment, the eye massager also includes a heating element 5. A second mounting hole 139 is provided on the silicone inner shell 13. The heating element 5 is positioned corresponding to the second mounting hole 139, and is fixedly connected to the silicone inner shell 13, sealing the second mounting hole 139. The heating element 5 is electrically connected to the electronic control component 3 (specifically, electrically connected to the main control board 31). The electronic control component 3 is used to supply power to the heating element 5 and control its operation. The heating element 5 generates heat after being powered on, and is used to heat the steam generated by the atomization component 2.

[0084] Specifically, in this embodiment, the heating element 5 is a sheet-like metal heating plate, specifically a heating aluminum sheet, which generates heat after being energized. Of course, in other embodiments, the heating element 5 can be other heating elements. The heating element 5 serves two purposes: firstly, when heating, it can directly provide a warm compress and massage to the human eye area (i.e., the heat generated by the heating element 5 can be conducted to the eye area through thermal radiation, air convection, etc.); secondly, when heating, it can heat the steam atomized by the atomizing plate 22, heating the steam to a suitable temperature, thereby improving the eye-protecting effect of the steam.

[0085] like Figures 2 to 9 and Figure 15 As shown, in one embodiment, the silicone inner shell 13 has a first annular clamping edge 1391 and a second annular clamping edge 1392 around the periphery of the second mounting hole 139, with the first annular clamping edge 1391 and the second annular clamping edge 1392 spaced apart; the edge of the heating element 5 is clamped between the first annular clamping edge 1391 and the second annular clamping edge 1392, and the edge of the heating element 5 is fixed to the first annular clamping edge 1391 and the second annular clamping edge 1392, thereby improving the connection strength and sealing performance between the heating element 5 and the silicone inner shell 13.

[0086] In one implementation, the mounting plate 17 and the silicone inner shell 13 are connected as one unit through an insert vulcanization process, and the heating element 5 is also connected as one unit to the silicone inner shell 13 through the insert vulcanization process. Specifically, during manufacturing, the mounting plate 17 and the heating element 5 are first manufactured separately. Then, the mounting plate 17 and the heating element 5 are placed into a mold, and liquid or semi-solid silicone material is poured into the mold. After heating and vulcanization and demolding, the silicone inner shell 13 is obtained. At this point, the mounting plate 17 and the heating element 5 are fitted and fixed to the silicone inner shell 13 and connected as one unit. That is, the silicone inner shell 13 is prepared based on the mounting plate 17 and the heating element 5 through an insert vulcanization process. This improves the connection strength and sealing performance between the mounting plate 17 and the heating element 5 and the silicone inner shell 13, and facilitates manufacturing.

[0087] like Figures 2 to 9 As shown, in one embodiment, the silicone inner shell 13 has a receiving groove 16 on the outer wall facing the human eye. The receiving groove 16 is set to correspond to the position of the human eye. The first mounting hole 136 and the second mounting hole 139 are both set to correspond to the receiving groove 16. The atomizing component 2 is set in the receiving groove 16. The steam generated by the atomizing component 2 can flow into the receiving groove 16. The heating element 5 can heat the steam in the receiving groove 16, thereby improving the heating effect and enabling the heated steam to accurately reach the position of the human eye.

[0088] Specifically, in this embodiment, the receiving groove 16 includes a receiving groove 161 and a transverse groove 162 that are interconnected. Along the left-right direction X of the eye massager, the receiving groove 161 is located in the middle of the silicone inner shell 13, and the transverse groove 162 is located on the left and right sides of the receiving groove 161. The transverse groove 162 extends along the left-right direction X, and the transverse grooves 162 on the left and right sides are respectively located at the positions of the human eyes. At the same time, the transverse grooves 162 on the left and right sides are respectively located at the steam outlets 272 on the left and right sides of the front cover plate 27, so that the steam generated by the atomizing plates 22 on the left and right sides of the atomizing component 2 can flow into the transverse grooves 162 on the left and right sides respectively. The second mounting holes 139 are provided on the left and right sides of the receiving groove 161, and the second mounting holes 139 on the left and right sides correspond to the horizontal grooves 162 on the left and right sides respectively. There are two heating elements 5, and the two heating elements 5 are respectively provided in the second mounting holes 139 on the left and right sides. This allows the two heating elements 5 to heat the steam in the horizontal grooves 162 on the left and right sides respectively. After being heated, the steam in the horizontal grooves 162 on the left and right sides reaches the eyes of the human body to improve the steam eye protection effect.

[0089] like Figures 1 to 5 As shown, in one embodiment, the eye massager also includes a cover 6, which is disposed in the receiving groove 16 and covers the heating element 5. The cover 6 is provided with a steam hole 61 for steam to pass through, and the heated steam in the receiving groove 16 can be discharged through the steam hole 61. The steam hole 61 is configured as an elongated hole. At the same time, the cover 6 is located on the side of the atomizing component 2 away from the housing 1, and the cover 6 also covers part of the atomizing component 2. Specifically, the cover 6 also covers the lower half of the atomizing component 2 (that is, the part of the atomizing component 2 corresponding to the front cover plate 27). The cover 6 is provided with a second sound hole 62 at the position corresponding to the first sound hole 271, so that the sound emitted by the speaker 25 can be discharged through the second sound hole 62. The second sound hole 62 is configured as a plurality of small holes arranged at close intervals.

[0090] Specifically, in this embodiment, the second sound outlet 62 is located in the middle of the cover 6, and the steam holes 61 are located on the left and right sides of the second sound outlet 62. The steam holes 61 on the left and right sides correspond to the horizontal grooves 162 on the left and right sides, respectively, so that the heated steam in the horizontal grooves 162 can be discharged through the steam holes 61. The cover 6 not only serves to cover and improve aesthetics, but also prevents the human body from directly contacting the heating element 5 and causing burns. At the same time, the cover 6 also provides a certain buffering effect, preventing steam from directly hitting the eyes and improving the gentleness of the steam. In this embodiment, the cover 6 is detachably connected to the atomizing component 2 (specifically, the cover 6 and the atomizing component 2 are fixed by snap-fit); of course, in other embodiments, the cover 6 can also be detachably connected to the housing 1. After removing the cover 6, the atomizing component 2 can be removed from the housing 1 (or the cover 6 and the atomizing component 2 can be removed together).

[0091] like Figures 1 to 5 As shown, in one embodiment, multiple eye massage heads 14 are spaced apart around the periphery of the receiving groove 16. During operation, the multiple eye massage heads 14 massage the human eye socket area, while the steam in the receiving groove 16 provides steam massage to the human eyes. The combination of the two can greatly improve the massage effect.

[0092] like Figures 1 to 14 As shown, in one embodiment, the water tank 21 is at least partially transparent; a light-emitting device 8 is provided on the inner wall of the mounting plate 17, corresponding to the transparent portion of the water tank 21; the light-emitting device 8 is electrically connected to the electronic control component 3, which supplies power to the light-emitting device 8 and controls its operation; the light-emitting device 8 can emit light when the atomizing plate 22 is working (i.e., the light-emitting device 8 can emit light when atomizing is working. Of course, in other embodiments, the light-emitting device 8 can also be set to emit light when the atomizing plate 22 is not working). Meanwhile, the transparent portion of the water tank 21 is not covered by the covering member 6.

[0093] Specifically, on the one hand, since at least part of the water tank 21 is transparent, the user can directly observe the water level inside the tank. Furthermore, the light-emitting device 8 provides illumination when it emits light, making it easier for the user to see the water level in the tank. Simultaneously, the light emitted by the device 8 can pass through the transparent structure of the tank, enhancing its aesthetic appeal. On the other hand, since the light-emitting device 8 emits light when the atomizing plate 22 is working, it can also indicate the working status of the atomizing plate 22, allowing the user to intuitively perceive whether the atomizing plate 22 is working. Moreover, in this embodiment, the light-emitting device 8 emits blue light after being powered on. This blue light can sterilize and disinfect the water in the tank 21, further improving the eye-protecting effect of the steam.

[0094] In this embodiment, the upper body 21M of the water storage tank 21 is made of transparent material (e.g., transparent plastic), and the lower body 21N is made of opaque material (of course, the lower body 21N can also be made of transparent material). The light-emitting device 8 is provided corresponding to the upper body 21M. The lower body 21N is covered by the cover 6, while the upper body 21M is not covered by the cover 6.

[0095] like Figures 3 to 9 As shown, in one embodiment, the light-emitting device 8 includes a lamp board 81 (the lamp board 81 is a circuit board) and a light guide post 82. An LED chip (not shown) is disposed on the lamp board 81, and the light guide post 82 is disposed corresponding to the LED chip. The lamp board 81 is fixed to the inner wall of the mounting plate 17, and the lamp board 81 is electrically connected to the electronic control component 3 (specifically, the main control board 31). The LED chip emits light when powered on, and the light guide post 82 guides the light emitted by the LED chip. A second clearance hole 172 is provided on the mounting plate 17 corresponding to the position of the light guide post 82. The light guide post 82 is inserted into the second clearance hole 172, thereby allowing the light guide post 82 to guide the light emitted by the LED chip to the water storage tank 21.

[0096] like Figures 3 to 5 As shown, in one embodiment, the middle frame 12 is fixedly connected to the mounting plate 17 (specifically, it can be fixedly connected by screws). The middle frame 12 includes a left middle frame 12A and a right middle frame 12B arranged horizontally. The left middle frame 12A and the right middle frame 12B are approximately symmetrically arranged along the left-right direction X. The left middle frame 12A and the right middle frame 12B are fixedly connected. The mounting plate 17 is located at the junction of the left middle frame 12A and the right middle frame 12B. Both the left middle frame 12A and the right middle frame 12B are fixedly connected to the mounting plate 17.

[0097] like Figures 1 to 9 As shown, in one embodiment, along the left-right direction X of the eye massager, a nose bridge avoidance groove 13A is provided at the lower center of the silicone inner shell 13. The nose bridge avoidance groove 13A is formed by an upward groove on the lower side of the silicone inner shell 13. A support strip 10 is provided inside the shell 1, and the support strip 10 is fixedly installed on the inner wall of the silicone inner shell 13, and the support strip 10 is positioned close to the nose bridge avoidance groove 13A. When the eye massager is worn on the face, the nose bridge avoidance groove 13A corresponds to the position of the human nose bridge to avoid the human nose bridge; at the same time, in order to prevent the lower side of the silicone inner shell 13 from deforming and collapsing after contacting the human nose bridge, the support strip 10 is provided to support the lower side of the silicone inner shell 13. The support strip 10 can be a plastic strip, a metal strip, etc.

[0098] like Figures 16 to 23As shown, in one embodiment, the edges of the silicone inner shell 13, the middle frame 12, and the face cover 11 are fixed by snap-fitting; specifically, the upper edge of the silicone inner shell 13, the upper edge of the middle frame 12, and the upper edge of the face cover 11 are fixed by snap-fitting, and the lower edge of the silicone inner shell 13, the lower edge of the middle frame 12, and the lower edge of the face cover 11 are fixed by snap-fitting.

[0099] A flange 131 is provided at the edge of the silicone inner shell 13. The flange 131 is an integral structure with the silicone inner shell 13. The flange 131 is located on the side of the silicone inner shell 13 near the faceplate 11, that is, the flange 131 is formed by folding the edge of the silicone inner shell 13 inward. The edge of the middle frame 12 is sandwiched between the flange 131 and the silicone inner shell 13. The flange 131 and the inner sidewall of the silicone inner shell 13 are spaced apart, forming a groove 130 between the flange 131 and the inner sidewall of the silicone inner shell 13. The edge of the middle frame 12 is located in the groove 130. A support part 125 is provided at the edge of the middle frame 12. The support part 125 is an integral structure with the middle frame 12. The support part 125 is located in the groove 130. The inner wall of the groove 130 fits against the support part 125. The support part 125 can support the edge of the silicone inner shell 13.

[0100] A first snap-fit ​​portion 111 is provided on the edge of the face cover 11. The first snap-fit ​​portion 111 is located on the side of the face cover 11 near the silicone inner shell 13, and protrudes from the face cover 11 toward the side near the silicone inner shell 13. The first snap-fit ​​portion 111 and the face cover 11 are integrally formed. A second snap-fit ​​portion 121 is provided on the edge of the middle frame 12. The second snap-fit ​​portion 121 is located on the middle frame 12 near the face cover 11, and protrudes from the middle frame 12 toward the side near the face cover 11. The second snap-fit ​​portion 121 and the middle frame 12 are integrally formed. After the second snap-fit ​​portion 121 passes through the flange 131, it engages with the first snap-fit ​​portion 111, thereby fixing the edges of the silicone inner shell 13, the middle frame 12, and the face cover 11 by snap-fit. The flange 131 is provided with a first through hole 132 for the second snap-fit ​​part 121 to pass through, that is, the second snap-fit ​​part 121 passes through the first through hole 132 on the flange 131 and then engages with the first snap-fit ​​part 111.

[0101] In this embodiment, a flange 131 is provided at the edge of the silicone inner shell 13. The edge of the middle frame 12 is sandwiched between the flange 131 and the silicone inner shell 13. The second snap-fit ​​part 121 on the middle frame 12 passes through the flange 131 and engages with the first snap-fit ​​part 111, that is, the flange 131 can be hooked onto the second snap-fit ​​part 121, so that the edges of the silicone inner shell 13, the middle frame 12 and the face cover 11 are fixed by snap-fit, which is convenient for assembly. Moreover, since the flange 131 is located on the inner side of the silicone inner shell 13, it does not affect the aesthetics of the silicone inner shell 13. At the same time, by providing a support part 125 at the edge of the middle frame 12, the inner wall of the groove 130 fits against the support part 125, so that the support part 125 can support the edge of the silicone inner shell 13 and prevent the edge of the silicone inner shell 13 from collapsing during use.

[0102] like Figures 16 to 23 As shown, in one embodiment, the upper and lower edges of the silicone inner shell 13 are each provided with a flange 131. The upper flange 131 is formed by folding the upper edge of the silicone inner shell 13 inward and downward, and the lower flange 131 is formed by folding the lower edge of the silicone inner shell 13 inward and upward. The upper edge of the middle frame 12 is sandwiched between the upper flange 131 and the silicone inner shell 13, and the lower edge of the middle frame 12 is sandwiched between the lower flange 131 and the silicone inner shell 13.

[0103] Grooves 130 are formed between the upper flange 131 and the inner wall of the silicone inner shell 13, and between the lower flange 131 and the inner wall of the silicone inner shell 13. Support portions 125 are provided at the upper and lower edges of the middle frame 12. The upper support portion 125 is located in the upper groove 130 and fits against the inner wall of the upper groove 130 to support the upper edge of the silicone inner shell 13; the lower support portion 125 is located in the lower groove 130 and fits against the inner wall of the lower groove 130 to support the lower edge of the silicone inner shell 13.

[0104] The first snap-fit ​​portion 111 is provided at the upper and lower edges of the cover 11, and the upper and lower edges of the cover 11 are each provided with a plurality of first snap-fit ​​portions 111 spaced apart (that is, the upper edge of the cover 11 is provided with a plurality of first snap-fit ​​portions 111 spaced apart in the left-right direction X, and the lower edge of the cover 11 is also provided with a plurality of first snap-fit ​​portions 111 spaced apart in the left-right direction X).

[0105] The second latching part 121 is provided at the upper and lower edges of the middle frame 12, and the upper and lower edges of the middle frame 12 are each provided with a plurality of second latching parts 121 spaced apart (that is, the upper edge of the middle frame 12 is provided with a plurality of second latching parts 121 spaced apart in the left and right direction X, and the lower edge of the middle frame 12 is also provided with a plurality of second latching parts 121 spaced apart in the left and right direction X).

[0106] In this configuration, multiple first snap-fit ​​portions 111 on the upper edge of the face cover 11 are snapped into multiple second snap-fit ​​portions 121 on the upper edge of the middle frame 12, and multiple first snap-fit ​​portions 111 on the lower edge of the face cover 11 are snapped into multiple second snap-fit ​​portions 121 on the lower edge of the middle frame 12, thereby fixing the upper and lower edges of the silicone inner shell 13, the middle frame 12 and the face cover 11 by snap-fit, thereby improving the stability of the connection.

[0107] like Figures 16 to 23 As shown, in one embodiment, along the left-right direction X of the housing 1, each support portion 125 is a long strip structure that extends continuously from the left end of the middle frame 12 to its right end (i.e., there are no gaps or other structures on the support portion 125 that would break it apart). This arrangement ensures that the support portion 125 provides good support for all parts of the edge of the silicone inner shell 13, preventing local collapse of the edge of the silicone inner shell 13 (if the support portion 125 is not a continuous structure, for example, if the support portion 125 is composed of multiple spaced support blocks, there will be gaps between adjacent support blocks, and the edge of the silicone inner shell 13 cannot be effectively supported at these gaps, making the silicone inner shell 13 prone to collapse at these gaps).

[0108] like Figures 16 to 23 As shown, in one embodiment, the support part 125 is provided with a support surface 1251, and the inner wall of the groove 130 is in contact with the support surface 1251. Along the left-right direction X of the shell 1, the support surface 1251 is a continuously extending flat structure (that is, there are no gaps, protrusions or other structures on the support surface 1251 that would make the support surface 1251 uneven), so that the support surface 1251 can provide good support for all parts of the edge of the silicone inner shell 13.

[0109] like Figures 16 to 23 As shown, in one embodiment, the support portion 125 has a plurality of weight-reducing grooves 1252 on the side near the silicone inner shell 13, and the plurality of weight-reducing grooves 1252 are spaced apart along the left-right direction X of the shell 1; the weight-reducing grooves 1252 are located between the support surface 1251 and the middle frame 12. By setting the weight-reducing grooves 1252, it is beneficial to reduce the weight of the middle frame 12, thereby facilitating the lightweight design of the shell 1.

[0110] like Figures 16 to 23As shown, in one embodiment, a first limiting portion 112 is provided at the edge of the face cover 11. The first limiting portion 112 is located on the side of the face cover 11 near the silicone inner shell 13, and protrudes from the face cover 11 toward the side near the silicone inner shell 13. The first limiting portion 112 and the face cover 11 are integrally formed. A second limiting portion 122 is provided at the edge of the middle frame 12. The second limiting portion 122 is located on the side of the middle frame 12 near the face cover 11, and protrudes from the middle frame 12 toward the side near the face cover 11. The second limiting portion 122 and the middle frame 12 are integrally formed. The second limiting portion 122 passes through the flange 131 and abuts against the first limiting portion 112 vertically. The flange 131 is provided with a second through hole 133 for the second limiting portion 122 to pass through, that is, the second limiting portion 122 passes through the second through hole 133 on the flange 131 and abuts against the first limiting portion 112 vertically.

[0111] Specifically, the first limiting part 112 and the second limiting part 122 can guide the middle frame 12 and the cover 11 during assembly, and also limit the vertical movement of the middle frame 12 and the cover 11 (i.e., prevent the middle frame 12 and the cover 11 from moving relative to each other vertically). Furthermore, they increase the support points of the flange 131 (i.e., the flange 131 can be hooked onto the second limiting part 122), improving the connection stability of the silicone inner shell 13, the middle frame 12, and the cover 11. The differences between the first limiting part 112 and the first snap-fit ​​part 111, and between the second limiting part 122 and the second snap-fit ​​part 121, are as follows: the first snap-fit ​​part 111 and the second snap-fit ​​part 121 have snap-fit ​​structures (such as slots, hooks, etc.) that allow them to snap together front and back; while the first limiting part 112 and the second limiting part 122 do not have snap-fit ​​structures, and they can only abut vertically, failing to provide front and back snap-fit ​​limiting.

[0112] In this embodiment, the first limiting part 112 is disposed at the upper and lower edges of the cover 11, and the upper and lower edges of the cover 11 are each provided with a plurality of spaced first limiting parts 112 (that is, the upper edge of the cover 11 is provided with a plurality of spaced first limiting parts 112 along the left-right direction X, and the lower edge of the cover 11 is also provided with a plurality of spaced first limiting parts 112 along the left-right direction X); each first limiting part 112 is located between adjacent first snap-fit ​​parts 111. The second limiting part 122 is disposed at the upper and lower edges of the middle frame 12, and the upper and lower edges of the middle frame 12 are each provided with a plurality of spaced second limiting parts 122 (that is, the upper edge of the middle frame 12 is provided with a plurality of spaced second limiting parts 122 along the left-right direction X, and the lower edge of the middle frame 12 is also provided with a plurality of spaced second limiting parts 122 along the left-right direction X); each second limiting part 122 is located between adjacent second snap-fit ​​parts 121.

[0113] In this configuration, multiple first limiting portions 112 on the upper edge of the cover 11 respectively abut against multiple second limiting portions 122 on the upper edge of the middle frame 12, and multiple first limiting portions 112 on the lower edge of the cover 11 respectively abut against multiple second limiting portions 122 on the lower edge of the middle frame 12, thereby improving the stability of the connection.

[0114] like Figures 16 to 23 As shown, in one embodiment, there is a locking gap 110 between the edge of the face cover 11 and the edge of the middle frame 12. The locking gap 110 corresponds to the second limiting part 122 (that is, the locking gap 110 is located between the edge of the face cover 11 and the second limiting part 122). A locking protrusion 134 is provided on the flange 131. The locking protrusion 134 is located on the side of the flange 131 near the face cover 11. The locking protrusion 134 protrudes from the flange 131 toward the side near the face cover 11. The locking protrusion 134 and the flange 131 are an integral structure. The locking protrusion 134 and the second limiting part 122 are arranged vertically and vertically (the second through hole 133 is arranged correspondingly to the locking protrusion 134). The locking protrusion 134 is engaged in the locking gap 110, and the locking protrusion 134 is sandwiched between the edge of the face cover 11 and the second limiting part 122, thereby further improving the connection stability and sealing of the silicone inner shell 13, the middle frame 12 and the face cover 11. Meanwhile, since the latching protrusion 134 is made of soft material, while the face cover 11 and the second limiting part 122 are both made of hard material, the soft latching protrusion 134 is sandwiched between the hard face cover 11 and the second limiting part 122. The second limiting part 122 can support the latching protrusion 134, so that the latching protrusion 134 can be tightly connected with the silicone inner shell 13 and the middle frame 12, preventing the edge of the silicone inner shell 13 from separating from the silicone inner shell 13 and the middle frame 12 and creating gaps (if the latching protrusion 134 is not supported by the second limiting part 122, since the latching protrusion 134 is relatively soft, the latching protrusion 134 is prone to deformation and comes out of the engagement gap 110).

[0115] In this embodiment, there are multiple engagement gaps 110 between the upper edge of the cover 11 and the upper edge of the middle frame 12, and between the lower edge of the cover 11 and the lower edge of the middle frame 12. Multiple spaced-apart protrusions 134 are provided on the upper and lower flanges 131 (i.e., multiple spaced-apart protrusions 134 are provided on the upper flange 131 and multiple spaced-apart protrusions 134 are also provided on the lower flange 131). The multiple protrusions 134 on the upper and lower sides are respectively engaged in the multiple engagement gaps 110 on the upper and lower sides. The upper protrusion 134 is sandwiched between the upper edge of the cover 11 and the upper second limiting part 122, and the lower protrusion 134 is sandwiched between the lower edge of the cover 11 and the lower second limiting part 122.

[0116] like Figures 16 to 23As shown, in one embodiment, along the left-right direction X of the housing 1, the length of the latching protrusion 134 is greater than the length of the second limiting part 122 (along the left-right direction X of the housing 1, the opposite ends of the latching protrusion 134 extend beyond the opposite ends of the second limiting part 122); this arrangement makes the length of the latching protrusion 134 longer, increasing the connection part and connection strength between the latching protrusion 134 and the silicone inner shell 13 and the middle frame 12, and enabling the latching protrusion 134 to better seal the engagement gap 110.

[0117] like Figures 16 to 23 As shown, in one embodiment, the inner wall of the silicone inner shell 13 is provided with protrusions 135, which are located between the upper and lower edges of the silicone inner shell 13. The middle frame 12 is provided with locking holes 123, which are located between the upper and lower edges of the middle frame 12. The protrusions 135 are inserted into and locked in the locking holes 123, thereby connecting the middle position of the silicone inner shell 13 and the middle frame 12, further improving the connection stability between the silicone inner shell 13 and the middle frame 12. In this embodiment, the inner wall of the silicone inner shell 13 is provided with multiple spaced protrusions 135, and the middle frame 12 is provided with multiple spaced locking holes 123, with the multiple protrusions 135 respectively locked in the multiple locking holes 123.

[0118] like Figures 1 to 5 As shown, in one embodiment, the middle frame 12 is provided with mounting portions 124 at both ends, and the mounting portions 124 and the middle frame 12 are integral structures (specifically, the mounting portions 124 at both ends are respectively provided at the end of the left middle frame 12A and the end of the right middle frame 12); along the left-right direction X of the eye massager, the mounting portions 124 at both ends extend to the opposite sides of the face cover 11 and the silicone inner shell 13, and each of the mounting portions 124 at both ends is provided with a temple massage head 7, which is used to massage the temples on both sides of the human body.

[0119] In one embodiment, the inner wall of the silicone inner shell 13 is provided with multiple grooves 137, each corresponding to a multiple eye massage head 14. Each groove 137 contains a vibration motor 18 (i.e., vibrator), which is electrically connected to the electronic control component 3 (specifically the main control board 31). The vibration motor 18 drives the eye massage head 14 to vibrate, thereby massaging the area around the eyes (eye socket area). The working principle of the vibration motor 18 can be found in existing technology and will not be elaborated here.

[0120] like Figure 4 and Figure 5As shown, in one embodiment, the housing 1 is equipped with an air pump 19, which is electrically connected to the electronic control component 3 (specifically the main control board 31). The air pump 19 is connected to the massage airbag (not shown) inside the temple massage head 7 through components such as a reversing control valve (not shown), an air pipe, and an air nozzle. The reversing control valve has a first state and a second state. When the reversing control valve is in the first state, the air pump 19 is connected to the massage airbag through the reversing control valve, and the air pump 19 inflates the massage airbag, causing the temple massage head 7 to bulge. When the reversing control valve is in the second state, the air pump 19 is disconnected from the massage airbag and the massage airbag is connected to the external environment, and the massage airbag deflates, causing the temple massage head 7 to collapse. By controlling the working state of the reversing control valve (i.e., the reversing control valve frequently switches between the first and second states), the massage airbag can be continuously inflated and deflated, so that the temple massage head 7 continuously expands and contracts, thereby achieving the effect of massaging the temples. The working principle of the temple massage head 7 can be found in existing technology and will not be elaborated here.

[0121] In one implementation, the temple massage head 7 is rotatably connected to the mounting part 124, so the direction of the temple massage head 7 can be adjusted. This allows the distance between the two temple massage heads 7 and the orientation of the temple massage heads 7 to be adjusted according to the head shape and size of different users, which not only improves the versatility of the eye massager but also enhances the wearing comfort.

[0122] In one embodiment, a control component (not shown) is also provided on the mounting portion 124 at one end. The control component includes control buttons, a control circuit board (not shown), and other components. The control circuit board is electrically connected to the main control board 31. The control component is used to control the on / off state and working mode of the eye massager (e.g., music playback function, steam eye protection function, massage function on / off state and working mode, etc.). A charging component (not shown) is also provided on the mounting portion 124 at the other end. The charging component includes a charging connector, a charging circuit board (not shown), and other components. The charging circuit board is electrically connected to the main control board 31. The charging component is used to charge the battery 32. The specific structure and function of the control component and the charging component can be found in the prior art and will not be described in detail here.

[0123] like Figures 1 to 5 As shown, in one embodiment, there is an installation space between the middle frame 12 and the front cover 11, and components such as the main control board 31, battery 32, and air pump 19 are installed in this installation space.

[0124] In one embodiment, the eye massager also includes a headband 9, with its two ends connected to the opposite ends of the housing 1. The headband 9 is used to cooperate with the housing 1 to wear the eye massager on the user's head. Specifically, in this embodiment, the headband 9 is an elastic band, and its two ends are connected to the mounting portions 124 at opposite ends.

[0125] The above are merely specific embodiments of this utility model, but the protection scope of this utility model is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the technical scope disclosed in this utility model should be included within the protection scope of this utility model. Therefore, the protection scope of this utility model should be determined by the scope of the claims.

Claims

1. An eye massager, characterized in that, The eye massage instrument comprises a shell and an atomization assembly, the shell comprises a face cover, a middle frame, a silica gel inner shell and a mounting plate, the silica gel inner shell is located on the side of the face cover facing the human eye, the middle frame is located between the face cover and the silica gel inner shell, the middle frame is in abutment with the inner side wall of the silica gel inner shell to support the silica gel inner shell, and the face cover, the middle frame and the silica gel inner shell are fixedly connected; a plurality of eye massage heads are arranged on the silica gel inner shell, the eye massage heads are protruded on the outer side wall of the silica gel inner shell on the side facing the human eye, and the eye massage heads are in an integral structure with the silica gel inner shell; A first mounting hole is arranged at the middle position of the silica gel inner shell in the left-right direction of the eye massage instrument; the mounting plate is located on the side of the middle frame away from the face cover, and the mounting plate is arranged corresponding to the first mounting hole; the hardness of the mounting plate is greater than that of the silica gel inner shell, the mounting plate is fixedly connected with the silica gel inner shell, and the mounting plate seals the first mounting hole; The atomization assembly is located on the side of the mounting plate away from the middle frame, the atomization assembly is detachably mounted on the mounting plate, and the atomization assembly is used for atomizing water to form steam.

2. The eye massager of claim 1, wherein the first massage element and the second massage element are arranged to be rotated in the same direction. The mounting plate and the silica gel inner shell are connected in an integral structure.

3. The eye massager of claim 1, wherein the first massage element and the second massage element are arranged to be rotated in the same direction. An inner recess is arranged on the silica gel inner shell at the periphery of the first mounting hole, the inner recess is formed by inwardly recessing the silica gel inner shell towards the middle frame; an annular folded edge portion is arranged on the inner recess at the periphery of the first mounting hole, the edge of the mounting plate is fixedly connected with the annular folded edge portion; a containing groove is formed between the mounting plate and the inner recess, and the atomization assembly is arranged in the containing groove.

4. The eye massager of claim 1, wherein the first massage element and the second massage element are arranged to be rotated in the same direction. The eye massage instrument further comprises a heating element, a second mounting hole is arranged on the silica gel inner shell, the heating element is arranged corresponding to the second mounting hole, the heating element is fixedly connected with the silica gel inner shell, and the heating element seals the second mounting hole; the heating element can heat after being powered on, and the heating element is used for heating the steam formed by the atomization of the atomization assembly.

5. The eye massager of claim 4, wherein the first massage element and the second massage element are arranged to be rotated in the same direction. A first annular clamping edge portion and a second annular clamping edge portion are arranged on the silica gel inner shell at the periphery of the second mounting hole, and the first annular clamping edge portion and the second annular clamping edge portion are arranged at intervals; the heating element is a sheet-shaped metal heating plate, and the edge of the heating element is clamped between the first annular clamping edge portion and the second annular clamping edge portion.

6. The eye massager of claim 4, wherein the first massage element and the second massage element are arranged to be rotated in the same direction. The heating element and the silica gel inner shell are connected in an integral structure.

7. The eye massager of claim 1, wherein the first massage element and the second massage element are arranged to be rotated in the same direction. The atomization assembly comprises a water storage tank, an atomization sheet, a sealing element, a first electric connecting element and a first magnetic attracting element, the atomization sheet, the first electric connecting element and the first magnetic attracting element are arranged on the tank wall of the water storage tank, and the atomization sheet is electrically connected with the first electric connecting element; The water storage tank is internally provided with a water storage cavity, and the water storage tank is provided with a water injection hole and a water outlet hole, both of which are communicated with the water storage cavity; the plugging piece is arranged corresponding to the water injection hole, and is used for opening or sealing the water injection hole; the atomizing piece is arranged corresponding to the water outlet hole, and water in the water storage cavity can reach the atomizing piece through the water outlet hole to atomize the water into steam through the atomizing piece; The shell is internally provided with an electric control assembly, the inner side wall of the mounting plate is provided with a second electric connection piece and a second magnetic attraction piece, and the electric control assembly is electrically connected with the second electric connection piece; when the atomizing assembly is mounted on the mounting plate, the first electric connection piece and the second electric connection piece are in contact and conductive, and the first magnetic attraction piece and the second magnetic attraction piece are attracted by magnetic force.

8. The eye massager of claim 1, wherein the first massage element and the second massage element are arranged to be rotated in the same direction. A nose bridge avoiding groove is arranged on the middle lower side of the silica gel inner shell in the left-right direction of the eye massager; a supporting strip is arranged in the shell, and the supporting strip is arranged on the inner side wall of the silica gel inner shell and is arranged close to the nose bridge avoiding groove.

9. The eye massager of any one of claims 1-8, wherein, An edge of the silica gel inner shell is provided with a flange, the flange is arranged on the side of the silica gel inner shell close to the face cover, and the edge of the middle frame is clamped between the flange and the silica gel inner shell; a separation groove is formed between the flange and the inner side wall of the silica gel inner shell, and the edge of the middle frame is arranged in the separation groove; a supporting part is arranged on the edge of the middle frame, and the inner wall of the separation groove is matched with the supporting part; A first clamping part is arranged on the edge of the face cover, and a second clamping part is arranged on the edge of the middle frame, and the second clamping part is clamped with the first clamping part after penetrating through the flange.

10. The eye massager of claim 9, wherein the first massage element and the second massage element are arranged to be rotated in the same direction. A first limiting part is arranged on the edge of the face cover, and a second limiting part is arranged on the edge of the middle frame, and the second limiting part is in upper and lower abutment with the first limiting part after penetrating through the flange. The edge of the face cover and the edge of the middle frame have a clamping gap, the clamping gap corresponds to the second limiting part; a clamping convex part is arranged on the flange, the clamping convex part is arranged in upper and lower correspondence with the second limiting part, the clamping convex part is clamped in the clamping gap, and the clamping convex part is clamped between the edge of the face cover and the second limiting part.