Eye massage structure
The eye massager, with its independent inflation channel and three-way valve design, solves the problems of loud noise and air leakage in airbag massagers, achieving a quiet, multifunctional, and portable massage experience.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-29
- Publication Date
- 2026-03-06
AI Technical Summary
Existing airbag massagers are noisy and bulky, cannot meet the massage intensity requirements of different parts of the body, and the airbags are prone to leakage or deflation.
It adopts an independent inflation channel and a three-way valve design to control the air pressure of the eye and temple airbags separately. It uses a silent ceramic piezoelectric pump for air supply and is equipped with three-way valves for eye and temple air intake and exhaust control to improve air tightness.
This eye massager is quiet and compact, and can adjust the air pressure according to the needs of different parts of the body to avoid air leakage. It provides multiple functions such as heat therapy and beauty effects, and reduces the cost of use.
Smart Images

Figure CN223969272U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of eye massage technology, specifically to an eye massage structure. Background Technology
[0002] In today's fast-paced modern life, eye fatigue has become a common problem. Eye massagers, in particular, are gaining popularity and becoming an indispensable part of daily life, offering a wide range of relief. They are useful for students feeling exhausted after long hours of studying, or for office workers experiencing eye discomfort from staring at computer screens all day. They primarily work by massaging acupoints around the eyes, powerfully promoting blood circulation and effectively relieving dryness, itchiness, and fatigue.
[0003] Currently, common eye massagers are mainly divided into two categories: magnetic finger massagers and airbag massagers. Airbag massagers, based on the principles of visual physiology, ingeniously integrate modern electronic and optical technologies with traditional Chinese medicine meridian theory. They utilize far-infrared heating and microcomputer chip control to provide heat therapy, vibration, and kneading to the eyes, helping to oxygenate and improve blood circulation, enhance the lens's accommodative function, restore ciliary muscle elasticity, optimize blood circulation, reduce visual pressure, relieve eye fatigue, lower the risk of vision impairment, promote metabolism, and maintain eye health. However, most commonly used airbag massagers currently only offer a single massage function. If users require additional cosmetic functions such as wrinkle removal or dark circle reduction around the eyes, they must use other beauty devices, increasing the cost for users. Furthermore, commonly used airbag massagers also have the following usage problems:
[0004] 1. An air pump is used to supply air to the airbags. However, air pumps are noisy, bulky, and take up a lot of space, which makes the overall structure of the eye massager relatively large.
[0005] The internal airbags of airbag massagers are a single unit, providing the same massage pressure throughout. This cannot meet the user's requirement for different massage intensities for different parts of the body, which can lead to a less than ideal user experience.
[0006] The air pump with a single outlet controls inflation, meaning the airbag can only be fully inflated at once, and the air pressure inside the airbag cannot be controlled. Furthermore, it uses a two-way valve for control, which has only one inlet and one outlet. After the massage is finished, the user can only manually open the outlet to release air, but the outlet has poor sealing, causing some airbags to leak or deflate. Utility Model Content
[0007] To address the shortcomings of existing technologies, this invention provides an eye massage structure that solves the problems mentioned in the background section. This invention primarily features a heat-compression massage structure, enabling it to perform air pressure massage, heat therapy, and red light therapy. The eye airbags and temple airbags utilize independent inflation channels, allowing for adjustable air pressure at different locations to meet users' individual massage needs. Furthermore, the three-way valves at the eyes and temples facilitate air intake and exhaust, eliminating the need for manual air release and enhancing the airbag's sealing, effectively preventing air leakage or deflation.
[0008] An eye massage structure includes an eye mask body, an internal control structure, external functional buttons, and a heat therapy massage structure on the side of the eye mask body that contacts the eyes. The heat therapy massage structure is electrically connected to the control structure.
[0009] Furthermore, the goggle body includes an outer cover, an outer shell, and an inner shell. The outer shell is fastened to the side of the inner shell away from the eyes. The outer cover is disposed on the outside of the outer shell. The control structure is disposed between the outer shell and the inner shell.
[0010] Furthermore, the control structure includes a control motherboard, a battery, an inflation assembly, and several button positions, all of which are electrically connected to the control motherboard; the functional buttons and the button positions are matched and correspond to each other; the functional buttons are physical buttons or touch buttons.
[0011] Furthermore, the hot compress massage structure includes a red light heating plate, a massage airbag, and an eye contact layer. The eye contact layer is disposed on the side of the eye mask body that contacts the eyes. The red light heating plate is disposed between the eye contact layer and the eye mask body. The massage airbag is disposed between the red light heating plate and the eye mask body. The red light heating plate is electrically connected to the control main board, and the massage airbag is connected to the inflation component.
[0012] Furthermore, the red light heating plate includes a heating module and a red light module. The heating module includes a heating wire for generating heat and warming the user. The red light module includes several red lights that can shine through the eye contact layer onto the area around the user's eyes.
[0013] Furthermore, the massage airbag includes an eye airbag and a temple airbag, both of which are connected to the inflation assembly.
[0014] Furthermore, the eye airbag includes an upper eyebag portion and a lower eyebag portion, with an eye clearance hole provided between the upper eyebag portion and the lower eyebag portion, and the temple airbags are located on both sides of the eye airbag. The upper eyebag portion, the lower eyebag portion, and the temple airbags on both sides are each provided with an independent air nozzle.
[0015] Furthermore, the inflation assembly includes an air pump, a pressure detection module, and a control valve module. The air pump is connected to the massage airbag, the pressure detection module is connected to the massage airbag, and the control valve module is used to control the inflation pressure and is located between the air pump and the massage airbag.
[0016] Furthermore, the air pump is a ceramic piezoelectric pump, and is equipped with an eye outlet and a temple outlet;
[0017] The pressure detection module is a pressure sensor, which includes an eye pressure sensor and a temple pressure sensor.
[0018] The control valve module includes an eye three-way valve, an eye two-way valve, and a temple three-way valve.
[0019] Furthermore, the air outlet of the air pump is connected to the air inlet of the two-way valve, the air outlet of the two-way valve is connected to the air inlet of the three-way valve, the air outlet of the three-way valve is connected to the eye airbag, and the eye pressure sensor is connected to the eye airbag, forming an eye airbag inflation channel.
[0020] Furthermore, the air outlet of the air pump is connected to the air inlet of the temple three-way valve, the air outlet of the temple three-way valve is connected to the temple airbag, and the temple pressure sensor is connected to the temple airbag, forming a temple airbag inflation channel.
[0021] Compared with the prior art, the present invention has the following beneficial effects:
[0022] This utility model of an eye massage structure has air pressure massage, hot compress, and red light functions. It can not only massage the eyes through air pressure massage, but also apply hot compress to the area around the eyes to relieve fatigue. It also has beauty functions such as wrinkle removal and dark circle removal for the skin around the eyes. The overall structure is reasonably designed, saving space. Users do not need to purchase multiple devices, reducing their purchase costs. It is easy to carry and operate, and has diversified functions to meet the multiple needs of users.
[0023] This utility model's eye massage structure uses a silent ceramic piezoelectric pump to supply air to the massage airbags, making the massager quieter during use. The ceramic piezoelectric pump is small in size and built into the massager, which can effectively reduce the space occupied, making the overall size of this utility model smaller. Moreover, the overall weight of the ceramic piezoelectric pump is also lighter than that of a traditional air pump, which can also effectively reduce the overall weight of the massager.
[0024] The eye massage structure of this utility model has an eye airbag and a temple airbag that are each controlled by an air pump, which makes the air pressure at different positions of the eye airbag and temple airbag adjustable, thereby meeting the user's requirements for different massage intensities for different parts and effectively increasing the user experience.
[0025] This utility model's eye massage structure uses an eye three-way valve and a temple three-way valve for control. Both the eye three-way valve and the temple three-way valve are equipped with exhaust ports, which can control free exhaust without requiring manual exhaust by the user. Moreover, using the eye three-way valve and the temple three-way valve to control air intake and exhaust has better air tightness than using an exhaust port, which can effectively prevent air leakage or deflation of the airbag. Attached Figure Description
[0026] Figure 1 This is a schematic diagram of the overall structure of the eye massage structure of this utility model;
[0027] Figure 2 This is an exploded view of the eye massage structure of this utility model;
[0028] Figure 3 This is a schematic diagram of the red light heating plate structure of the eye massage structure of this utility model;
[0029] Figure 4 This is a schematic diagram of the massage airbag structure of the eye massage structure of this utility model;
[0030] Figure 5 This is a schematic diagram of the inflatable structure of the eye massage structure of this utility model. Detailed Implementation
[0031] To enable those skilled in the art to better understand the technical solution of this utility model, the product of this utility model will be further described in detail below with reference to the embodiments and accompanying drawings.
[0032] It should be noted that when an element is referred to as being "fixed to" another element, it can be directly attached to the other element or there may be an intervening element; when an element is referred to as being "connected to" another element, it can be directly connected to the other element or there may be an intervening element. The terms "vertical," "horizontal," "left," "right," and similar expressions used herein are for illustrative purposes only and do not represent the only possible implementation.
[0033] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention pertains. The terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention. The term "and / or" as used herein includes any and all combinations of one or more of the associated listed items.
[0034] like Figure 1 and Figure 2 As shown, an eye massage structure includes an eye mask body. The eye mask body has an internal control structure and external functional buttons 6. A heat-compression massage structure is located on the side of the eye mask body that contacts the eyes. The heat-compression massage structure is electrically connected to the control structure. The eye mask body includes an outer cover 1, an outer shell 2, and an inner shell 3. The outer shell 2 is fastened to the inner shell 3 on the side away from the eyes. The outer cover 1 is located outside the outer shell 2. The control structure is located between the outer shell 2 and the inner shell 3. The control structure includes a control motherboard 4, a battery 5, an inflation assembly, and several button positions. The battery 5, the inflation assembly, and the button positions are all electrically connected to the control motherboard 4. The functional buttons and button positions are matched and correspond to each other. The functional buttons are physical buttons or touch buttons.
[0035] It should be noted that in this embodiment, the outer shell 2 and the inner shell 3 are made of plastic material, which facilitates the installation of the control structure. The control motherboard 4 is used to control the various electrical components to coordinate their operation and complete various functions. The battery 5 is used to provide power to this utility model.
[0036] like Figures 2 to 4As shown, the hot compress massage structure includes a red light heating plate 7, a massage airbag 8, and an eye contact layer 9. The eye contact layer 9 is disposed on the side of the eye mask body that contacts the eyes. The red light heating plate 7 is disposed between the eye contact layer 9 and the eye mask body. The massage airbag 8 is disposed between the red light heating plate 7 and the eye mask body. The red light heating plate 7 is electrically connected to the control main board 4, and the massage airbag 8 is connected to the inflation component. The red light heating plate 7 includes a heating module and a red light lamp 702 module. The heating module includes a heating wire 701 for generating heat and warming the user. The red light lamp 702 module includes several red light lamps 702, which can shine through the eye contact layer 9 onto the area around the user's eyes. The massage airbag 8 includes an eye airbag 81 and a temple airbag 82, both of which are connected to the inflation component. The eye airbag 81 includes an upper eyebag portion 811 and a lower eyebag portion 812. An eye clearance hole 813 is provided between the upper eyebag portion 811 and the lower eyebag portion 812. The temple airbags 82 are located on both sides of the eye airbag 81. The upper eyebag portion 811, the lower eyebag portion 812 and the temple airbags on both sides are each provided with an independent air nozzle 83.
[0037] It should be noted that: In this embodiment, the present invention also includes an adjustable headband 10, the two ends of which are connected to the two ends of the eye mask body; the present invention integrates the heating function and the red light function on the red light heating plate 7, which has a reasonable structural design, saves space and raw materials, reduces manufacturing costs, and is highly practical; the red light heating plate 7 uses a flexible circuit board, which facilitates the corresponding deformation according to the inflation and deflation of the massage airbag 8, avoiding bending and damage to the red light heating plate 7 due to deformation, and playing a role in protecting the red light heating plate 7; in this embodiment, with the cooperation of the heating wire 701, uniform heat is provided. The heating module on the red light heating plate 7 can precisely control the heating area, ensuring even heat distribution across the entire massage area and preventing localized overheating or underheating to avoid skin damage. This also optimizes the heating effect, providing a comfortable experience. Furthermore, the red light 702 provides cosmetic functions such as wrinkle removal and dark circle reduction, effectively treating the area around the eyes. The skin becomes more elastic, and it effectively eliminates eye bags and dark circles, improves sleep quality, and relieves eye fatigue. The eye contact layer 9 is made of a soft, skin-friendly, and light-transmitting material. This soft and skin-friendly material reduces discomfort during massage, making it more comfortable for prolonged use. It also reduces friction and pressure on the delicate skin around the eyes, lowering the risk of scratches or allergies and improving overall comfort and safety. The light-transmitting eye contact layer 9 allows light to pass through, ensuring that the light emitted by the red light lamp 702 is evenly distributed to the skin around the eyes, maximizing its cosmetic effect and enhancing the overall functionality of the product. The novel functionality and practicality are as follows: The eye-avoidance hole 813 allows the upper eyelid sac 811 and lower eyelid sac 812 to fit more closely to the upper and lower sides of the eyes. The temple air sac 82 includes a left temple air sac 82 and a right temple air sac 82, which can fit completely to the temples on both sides of the corners of the eyes, providing massage to the temples on both sides. The air nozzle 83 can be connected to a ceramic piezoelectric pump through an air tube, allowing each sac to be independently inflated and deflated, facilitating independent control of each sac and meeting the user's requirements for different massage intensities for different areas.
[0038] like Figure 5As shown, the inflation assembly includes an air pump 11, a pressure detection module, and a control valve module. The air pump 11 is connected to the massage airbag 8, and the pressure detection module is also connected to the massage airbag 8. The control valve module, used to control the inflation pressure, is located between the air pump 11 and the massage airbag 8. The air pump 11 is a ceramic piezoelectric pump with an eye outlet and a temple outlet. The pressure detection module is a pressure sensor, including an eye pressure sensor 12 and a temple pressure sensor 13. The control valve module includes an eye three-way valve 14, an eye two-way valve 15, and a temple three-way valve 16. The air outlet of the air pump 11 is connected to the air inlet of the two-way valve 15, the air outlet of the two-way valve 15 is connected to the air inlet of the three-way valve 14, the air outlet of the three-way valve 14 is connected to the eye airbag 81, and the eye pressure sensor 12 is connected to the eye airbag 81, forming an inflation channel for the eye airbag 81; the air outlet of the air pump 11 at the temple is connected to the air inlet of the three-way valve 16 at the temple, the air outlet of the three-way valve 16 at the temple is connected to the temple airbag 82, and the temple pressure sensor 13 is connected to the temple airbag 82, forming an inflation channel for the temple airbag 82.
[0039] It should be noted that in this embodiment, the eye pressure sensor 12 is used to detect the inflation pressure of the eye airbag 81, and the temple pressure sensor 13 is used to detect the inflation pressure of the temple airbag 82. The three-way valves 14 for the eye and 16 for the temple allow for separate venting of the eye airbag 81 and temple airbag 82, enabling users to choose different massage times for different locations according to their needs. Furthermore, the three-way valves control the venting, allowing for pressure adjustment; users can choose to increase or decrease pressure according to the settings. Compared to traditional manual venting, the three-way valves eliminate the need for vents inside the airbags, increasing the airtightness of the airbags and reducing leakage caused by poor venting. A two-way valve is provided in the inflation path of the eye airbag 81, effectively ensuring the stability of the air pressure and maintaining pressure.
[0040] The above description is merely a preferred embodiment of this utility model and is not intended to limit the utility model in any way. Those skilled in the art can readily implement this utility model based on the accompanying drawings and the above description. However, any modifications, alterations, or variations made by those skilled in the art without departing from the scope of the utility model's technical solution, utilizing the disclosed technical content, are equivalent embodiments of this utility model. Furthermore, any equivalent changes, alterations, or variations made to the above embodiments based on the essential technology of this utility model still fall within the scope of this utility model's technical solution.
Claims
1. An eye massaging structure, characterized by: The eye mask body is internally provided with a control structure, externally provided with a functional key, and provided with a hot compress massage structure on the side in contact with the eye.
2. The eye massaging structure according to claim 1, wherein: The eye mask body comprises an outer cover, an outer shell and an inner shell, the outer shell is buckled on the side of the inner shell away from the eye, and the outer cover is arranged on the outer side of the outer shell.
3. The eye massaging structure according to claim 1, wherein: The control structure comprises a control mainboard, a battery, an inflation assembly and a plurality of key positions, the battery, the inflation assembly and the plurality of key positions are electrically connected with the control mainboard; the functional key and the key position are matched and corresponded with each other; the functional key is a physical key or a touch key.
4. The eye massaging structure according to any one of claims 1-3, wherein: The hot compress massage structure comprises a red light heating plate, a massage air bag and an eye contact layer, the eye contact layer is arranged on the side of the eye mask body in contact with the eye, the red light heating plate is arranged between the eye contact layer and the eye mask body, the massage air bag is arranged between the red light heating plate and the eye mask body, the red light heating plate is electrically connected with the control mainboard, and the massage air bag is connected with the inflation assembly.
5. The eye massaging structure according to claim 4, wherein: The red light heating plate comprises a heating module and a red light module, the heating module comprises an electric heating wire for heating and warming the user, and the red light module comprises a plurality of red light lamps which can irradiate around the user's eyes through the eye contact layer.
6. The eye massaging structure according to claim 4, wherein: The massage air bag comprises an eye air bag and a temple air bag, and the eye air bag and the temple air bag are connected with the inflation assembly.
7. The eye massaging structure according to claim 6, wherein: The eye air bag comprises an upper eye bag part and a lower eye bag part, an eye avoiding hole is arranged between the upper eye bag part and the lower eye bag part, the temple air bag is arranged on both sides of the eye air bag, and the upper eye bag part, the lower eye bag part and the temple air bags on both sides are all provided with independent air nozzles.
8. The eye massaging structure according to claim 7, wherein: The inflation assembly comprises a gas pump, a pressure detection module and a control valve module, the gas pump is connected with the massage air bag, the pressure detection module is connected with the massage air bag, and the control valve module is arranged between the gas pump and the massage air bag and is used for controlling the inflation size.
9. The eye massaging structure according to claim 8, wherein: The gas pump adopts a ceramic piezoelectric pump and is provided with an eye gas outlet and a temple gas outlet; The pressure detection module is a pressure sensor, and the pressure sensor comprises an eye pressure sensor and a temple pressure sensor; The control valve module comprises an eye three-way valve, an eye two-way valve and a temple three-way valve.
10. The eye massaging structure according to claim 9, wherein: The eye gas outlet of the gas pump is connected with the gas inlet of the eye two-way valve, the gas outlet of the eye two-way valve is connected with the gas inlet of the eye three-way valve, the gas outlet of the eye three-way valve is connected with the eye air bag, the eye pressure sensor is connected with the eye air bag, and an eye air bag inflation channel is formed.
11. The eye massaging structure according to claim 9, wherein: The temple gas outlet of the gas pump is connected with the gas inlet of the temple three-way valve, the gas outlet of the temple three-way valve is connected with the temple air bag, the temple pressure sensor is connected with the temple air bag, and a temple air bag inflation channel is formed.