Eye massager

By designing single-contact tentacles, double-contact tentacles, and airbags for different areas of the eyes, combined with an independent drive motor and a precision transmission mechanism, the problem of existing eye massagers being unable to provide precise massage has been solved, achieving a highly efficient and comfortable eye massage effect.

CN224166574UActive Publication Date: 2026-04-28GUANGZHOU H & F ELECTRONICS TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
GUANGZHOU H & F ELECTRONICS TECH CO LTD
Filing Date
2024-12-30
Publication Date
2026-04-28

AI Technical Summary

Technical Problem

Existing eye massagers cannot accurately provide differentiated massage to different areas, nor can they fully conform to the physiological structural characteristics of different parts of the eye, resulting in poor massage comfort and effectiveness.

Method used

The design incorporates single-contact tentacles, double-contact tentacles, and airbags, each designed for precise massage of different areas of the eye. The single-contact tentacles are matched to the eye socket and surrounding area, the double-contact tentacles simulate kneading the sides of the nose, and the airbags cover the top of the eyeballs. Combined with independent drive motors and precision transmission mechanisms, multiple massage modes are achieved.

Benefits of technology

It enhances the comfort and effectiveness of massage, effectively relieving eye fatigue, promoting local blood circulation, and providing a professional-grade massage experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of massage instruments, and provides an eye massager, through the design of single-contact tentacles, double-contact tentacles and air bag massage, different areas of eyes can be accurately nursed, the comfort level and the effect of massage are greatly improved, the double-contact tentacles concentrate on the eye areas on the two sides of the nose wing, and the massage effect is greatly improved. A flexible double-shaft linkage structure and soft silica gel contacts accurately simulate kneading actions, tension and fatigue of fine and smooth muscles in the area are effectively relieved, local blood circulation is promoted, the massage comfort and effect are improved as a professional massager applies force gently and softly, the single-contact tentacle acts on the periphery of the eyes, including eye sockets, temples and other parts, and the massage effect is improved. The hemispherical contacts are matched with the adjustable pressure telescopic mechanism, muscle groups in the areas can be deeply relaxed whether the hemispherical contacts slide slightly along the edge of the eye socket or forcefully press and vibrate at the temples, and the tightening feeling of the side face of the head is relieved.
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Description

Technical Field

[0001] This utility model relates to the field of massage instrument technology, specifically an eye massager. Background Technology

[0002] In today's digital age, people's work and lives are heavily reliant on electronic screens, and prolonged screen time has become a common phenomenon. This has led to increasingly prominent problems such as eye fatigue, dryness, and vision decline, making eye health maintenance an urgent priority. Eye massage, as an effective way to relieve eye discomfort, has received widespread attention.

[0003] Existing eye massage technologies have significant shortcomings. Most traditional eye massagers employ only a single massage method, such as simple vibration or airbag compression, and the massage areas are relatively general, lacking specificity for different areas of the eye. For example, the muscles in the area around the nostrils are delicate and connected to the nasal cavity, and their massage needs are completely different from those of the eye sockets and temples. Existing technologies struggle to precisely differentiate massage for these different areas, failing to fully conform to the physiological structural characteristics of each part of the eye, resulting in significantly reduced massage comfort and unsatisfactory massage effects. Therefore, this paper proposes an eye massager that addresses these problems by setting different massage methods for different areas of the eye. Utility Model Content

[0004] To address the aforementioned problems, this utility model provides an eye massager that solves the issues of existing technologies failing to accurately provide differentiated massage to different areas, failing to fully conform to the physiological structural characteristics of various parts of the eye, resulting in a significant reduction in massage comfort and unsatisfactory massage effects.

[0005] This utility model is achieved through the following technical solution: an eye massager, comprising a main body and a massage component, wherein the massage component includes a single-contact tenon, a double-contact tenon and an airbag, the single-contact tenon is fixedly connected to a first tenon, and the single-contact tenon is connected to the main body through a single-contact tenon connection port, the double-contact tenon is fixedly connected to two second tenons, and the double-contact tenon is connected to the main body through a double-contact tenon connection port, and the airbag is connected to the main body through an airbag connection port.

[0006] Furthermore, the first and second tentacles are made of medical-grade soft silicone, with the first tentacles having a slightly higher hardness.

[0007] Furthermore, the first tentacle is designed to be a slightly convex hemisphere, the curvature of which matches the contour of the eye socket and surrounding muscles.

[0008] Furthermore, the internal structure of the dual-touch connector adopts a dual-axis linkage design, with each contact point connected to an independent small drive motor and a precision transmission mechanism.

[0009] Furthermore, the dual-contact tentacles and the single-contact tentacles are each driven by an independent micro-drive motor, and the motors are connected to the tentacles via a linkage mechanism.

[0010] Furthermore, a switch and a size / intensity adjustment button are provided on the right side of the main body.

[0011] Furthermore, the switch is a large, tactile circular button, and there are two size and intensity adjustment buttons located on the side of the switch.

[0012] Furthermore, the main body is in the shape of a symmetrical eye mask, with foldable sides and a durable hinge in the middle.

[0013] Furthermore, the outer shell of the main body is made of high-strength, lightweight polycarbonate material, and the interior of the main body is filled with soft and breathable memory foam on the side that contacts the eyes.

[0014] The beneficial effects of this utility model are:

[0015] 1. Through the design of single-contact tentacles, double-contact tentacles and airbag massage, it can provide precise care for different areas of the eyes, greatly improving the comfort and effect of the massage. The three complement each other, exerting force from all key areas of the eyes in a coordinated manner, bringing users an unprecedented comfortable massage experience, effectively relieving eye fatigue, and helping to maintain and improve eye health.

[0016] 2. The dual-contact tentacles focus on the area around the eyes on both sides of the nose. Its flexible dual-axis linkage structure and soft silicone contacts precisely simulate kneading motions, effectively relieving tension and fatigue in the delicate muscles of this area, promoting local blood circulation, just like the skillful hands of a professional massage therapist gently applying force, improving the comfort and effect of the massage.

[0017] 3. The single-contact hand acts on the area around the eyes, including the eye socket and temples. The hemispherical contact point works in conjunction with the adjustable pressure telescopic mechanism. Whether it is a light touch along the edge of the eye socket or a strong press and vibration at the temple, it can deeply relax the muscle groups in these areas and relieve the tension on the side of the head. Attached Figure Description

[0018] Figure 1 This is a schematic diagram of the main structure of the present utility model;

[0019] Figure 2 This is a schematic diagram of the internal structure of the main body of this utility model;

[0020] Figure 3 This is a schematic diagram of the single-contact tentacle structure of this utility model;

[0021] Figure 4 This is a schematic diagram of the dual-contact hand structure of this utility model.

[0022] The attached figures are labeled as follows:

[0023] 10. Main body; 11. Switch; 12. Size and intensity adjustment button; 13. Airbag connection port; 14. Single contact connection port; 15. Double contact connection port; 20. Single contact contact; 21. First contact; 22. Double contact contact; 23. Second contact. Detailed Implementation

[0024] To more clearly and completely illustrate the technical solution of this utility model, the following description is provided in conjunction with the accompanying drawings.

[0025] Please see Figures 1-4 This utility model proposes an eye massager. When in use, an easy-to-operate switch 11 and an intensity adjustment button 12 are provided on the right side of the massager. The switch 11 is designed as a large, tactile circular button for easy turning on and off. There are two adjustment buttons located next to the switch 11 for precise adjustment. The massager can be adjusted by controlling the switch 11 and the intensity adjustment button 12 to provide massage according to the user's needs.

[0026] The main body 10 of the massager is shaped like a symmetrical eye mask, closely conforming to the contours of the human eye and the curves of the face. It effectively blocks external light, creating a comfortable massage environment for the user. The two sides are foldable, and the middle is connected by a durable hinge. The hinge is made of rust-resistant alloy material, ensuring smooth use and durability even with frequent folding. The outer shell of the main body 10 is made of high-strength, lightweight polycarbonate (PC) material, which has the characteristics of heat resistance, impact resistance and dimensional stability, protecting the internal components and reducing weight. The surface of the PC material is frosted to increase texture and anti-slip properties. Antioxidants and UV absorbers are also added to extend service life and prevent aging and discoloration. The inside of the main body 10 is filled with soft and breathable memory foam on the side that contacts the eyes. It can automatically adjust to the shape of the eyes, reducing pressure on the touch and airbags and improving comfort. The surface of the memory foam is covered with skin-friendly protein leather, which is soft, smooth and breathable, easy to clean and maintain, and keeps the skin around the eyes dry.

[0027] The single-contact tentacle 20 is fixedly connected to a first tentacle 21. The single-contact tentacle 20 is connected to the main body 10 by a single tentacle connection port 14. The first tentacle 21 is designed as a slightly convex hemispherical shape, and its curvature matches the contour of the eye socket and surrounding muscles, which can evenly distribute massage pressure. The contact material is medical-grade silicone, but it is slightly harder than the silicone of the double-contact tentacle 22 to provide sufficient support for deep massage.

[0028] The single-contact tentacle 20 primarily targets the area around the eyes, including the eye socket and temples. These areas have complex bone structures and extensive muscle distribution, requiring different forms of massage stimulation. The single-contact tentacle connection port 14 is equipped with a high-performance vibration motor and an adjustable pressure telescopic mechanism. The vibration motor can generate vibrations at multiple frequencies, controlled by a microprocessor, allowing switching from gentle, soothing vibrations to strong, deep vibrations. The telescopic mechanism can adjust the distance between the contact point and the skin according to massage needs, thereby controlling the massage pressure. When massaging the temples, the single-contact tentacle 20 extends, applying moderate pressure to the temples while activating the vibration function, effectively relieving tension on the sides of the head. When massaging the eye sockets, the tentacle retracts, moving slowly along the edge of the eye socket with lighter pressure, promoting blood circulation in the eyes and reducing eye strain and swelling.

[0029] The dual-contact tentacle 22 is fixedly connected to two second tentacles 23. The dual-contact tentacle 22 is connected to the main body 10 through a dual-tact connection port 15. The second tentacles 23 are made of medical-grade soft silicone. This silicone has good biocompatibility and softness, and does not irritate the skin. The surface of the silicone is specially treated to form a fine texture, which increases the friction with the skin and makes the massage effect more significant.

[0030] The dual-contact tentacles 22 are primarily designed for the eye area located on both sides of the nose. This area has delicate muscles and is connected to the nasal cavity, making it prone to fatigue and discomfort. The dual-contact design can better simulate the kneading motion of a human hand, providing a precise and effective massage to this area. The internal structure of the dual-contact connection port 15 adopts a dual-axis linkage design, with each contact point connected to an independent small drive motor and precision transmission mechanism. The drive motor is controlled by a microprocessor, enabling movements of different frequencies and amplitudes. During the massage, the dual contacts can first converge inward, gently pinching the eye muscles on both sides of the nose, and then move up and down or left and right according to a set rhythm, simulating the kneading motion of fingers, effectively relieving muscle tension and fatigue in this area and promoting blood circulation.

[0031] The airbag is located in the middle area of ​​the eye and is connected to the main body 10 by an airbag connection port 13. It mainly covers the area above and around the eyeball. The airbag is made of soft and well-sealed medical rubber material with a certain degree of elasticity and toughness. The airbag is inflated and deflated by a built-in micro air pump to achieve the massage action. The air pump is connected to the control circuit of the massager and can adjust the inflation volume, inflation speed and deflation speed of the airbag according to the preset program, thereby producing different massage intensities and rhythms. For example, when inflating, the airbag slowly inflates, gently squeezing the muscles and tissues above the eyeball to promote blood circulation in the eye; when deflated, it slowly returns to its original shape, allowing the eyes to relax. The shape of the airbag is designed to fit the curve of the middle area of ​​the eye, and can apply pressure evenly after inflation to avoid excessive pressure on the eyeball and ensure the safety and comfort of the massage.

[0032] The dual-contact tentacle 22 and the single-contact tentacle 20 are each driven by an independent micro drive motor. High-precision, low-noise brushless DC motors are selected, which have stable speed, large torque and long life. The motor and the tentacle are connected by a linkage mechanism. The linkage mechanism is designed according to the movement requirements of the tentacle and converts the rotational motion of the motor into complex movements. The micro air pump of the airbag is driven by a control circuit. The working parameters of the air pump can be precisely adjusted to realize multiple modes and intensity control of airbag massage.

[0033] Of course, there may be other implementations of this utility model. Based on this implementation, other implementations obtained by those skilled in the art without any creative effort are all within the scope of protection of this utility model.

Claims

1. An eye massager, comprising a main body and a massage component, characterized in that: The massage component includes a single-contact tentacle, a double-contact tentacle, and an airbag. The single-contact tentacle is fixedly connected to a first tentacle and is connected to the main body via a single-contact tentacle connection port. The double-contact tentacle is fixedly connected to two second tentacles and is connected to the main body via a double-contact tentacle connection port. The airbag is connected to the main body via an airbag connection port.

2. An eye massager according to claim 1, characterized in that: The first and second tentacles are made of medical-grade soft silicone, with the first tentacles having slightly higher hardness.

3. An eye massager according to claim 1, characterized in that: The first tentacle is designed to be a slightly convex hemisphere, the curvature of which matches the contour of the eye socket and surrounding muscles.

4. An eye massager according to claim 1, characterized in that: The internal structure of the dual-touch connector adopts a dual-axis linkage design, with each contact point connected to an independent small drive motor and a precision transmission mechanism.

5. An eye massager according to claim 4, characterized in that: The dual-contact tentacles and single-contact tentacles are each driven by an independent micro-drive motor, and the motors are connected to the tentacles via a linkage mechanism.

6. An eye massager according to claim 1, characterized in that: The main body has a switch and a size / intensity adjustment button on its right side.

7. An eye massager according to claim 6, characterized in that: The switch is a large, tactile circular button, with two size and intensity adjustment buttons located on the side of the switch.

8. An eye massager according to claim 1, characterized in that: The main body is shaped like a symmetrical eye mask, with foldable sides and a durable hinge in the middle.

9. An eye massager according to claim 8, characterized in that: The outer shell of the main body is made of high-strength, lightweight polycarbonate material, and the inside of the main body is filled with soft and breathable memory foam on the side that comes into contact with the eyes.