Massage head module and eye massage instrument

By using a ring-shaped flexible massage head support and heating/cooling components, the problem of insufficient fit between the massage head and the area to be massaged in eye massagers is solved, resulting in a better fit and user experience, as well as improved device stability and lifespan.

CN224251614UActive Publication Date: 2026-05-19GUANGDONG SKG INTELLIGENT TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
GUANGDONG SKG INTELLIGENT TECH CO LTD
Filing Date
2025-04-01
Publication Date
2026-05-19

AI Technical Summary

Technical Problem

The massage heads in existing eye massagers do not fit the area to be massaged very well, resulting in unsatisfactory results and a need to improve the user experience.

Method used

The massage head support and heating/cooling components adopt a ring-shaped flexible structure. The massage head support can deform under external force to fit closely to the area to be massaged, combining hot and cold compress functions. The heating/cooling components are set in the housing space to protect and regulate the temperature.

Benefits of technology

It improves the fit between the massage head and the area to be massaged, enhances the effect of the eye massager, improves the user experience, and extends the service life of the heating and cooling components.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a massage head module and an eye massager, the massage head module comprises a massage head, a massage head support and a heating and refrigerating assembly, the massage head is used for making contact with a to-be-massaged part, the massage head support is connected to the massage head, the massage head support is of an annular flexible structure, the massage head support defines a containing space, and the heating and refrigerating assembly is arranged in the containing space; the massage head support is configured to be at least partially deformed under the action of external force, at least part of the heating and refrigerating assembly is arranged in the containing space, and the heating and refrigerating assembly is connected with the massage head in a heat conduction mode and used for heating or refrigerating the massage head so that the massage head can conduct hot compress or cold compress on the portion to be massaged. The fitness between the massage head and the to-be-massaged part can be improved.
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Description

Technical Field

[0001] This application relates to the field of massage device technology, and in particular to a massage head module and an eye massager. Background Technology

[0002] With the fast pace of modern life and the widespread use of electronic devices, people are increasingly straining their eyes, leading to more common problems such as eye fatigue and dryness. Eye massagers, as a device to relieve eye discomfort, are gradually gaining popularity among consumers. However, in some technologies, the fit between the massage head and the area being massaged in eye massagers is poor, resulting in unsatisfactory performance and a need for improvement in user experience. Utility Model Content

[0003] In view of the above-mentioned shortcomings in the related technologies, this application provides a massage head module and an eye massager to solve the problem of poor fit between the massage head and the area to be massaged in the related technologies.

[0004] To address the aforementioned technical problems, in a first aspect, this application provides a massage head module, which includes:

[0005] A massage head, the massage head being used to contact the area to be massaged;

[0006] A massage head support is connected to the massage head. The massage head support is a ring-shaped flexible structure that encloses a receiving space. The massage head support is configured to deform at least partially under external force.

[0007] A heating and cooling assembly, at least a portion of which is disposed within the receiving space, is thermally connected to the massage head and is used to heat or cool the massage head so that the massage head applies a hot or cold compress to the area to be massaged.

[0008] This design, with the massage head support connected to the massage head and featuring a flexible, annular structure, allows for at least partial deformation under external force. When the massage head contacts the area to be massaged, the flexible support deforms, enabling the massage head to better adapt to the shape of the area and fit more closely, thus improving the fit between the massage head and the area. This enhances the effectiveness of eye massagers and improves the user experience when the massage head module is used.

[0009] Furthermore, the heating and cooling components can heat the massage head to provide a hot compress function, which promotes blood circulation in the massaged area and relieves muscle tension. Simultaneously, the components can also cool the massage head to provide a cold compress function, which reduces swelling and other discomfort in the massaged area. Therefore, the combination of hot and cold compresses meets different user needs, thereby enhancing the effectiveness of the eye massager and improving the user experience.

[0010] Furthermore, since the ring-shaped flexible structure of the massage head bracket forms an accommodating space, and at least part of the heating and cooling components are disposed within the accommodating space, the massage head bracket can provide physical protection for the heating and cooling components, protecting them from possible mechanical damage such as collisions and compressions, reducing the risk of damage to the heating and cooling components, extending their service life, and ensuring the stable operation of the massage head module.

[0011] In a possible implementation of the first aspect, the massage head support is a silicone support; and / or,

[0012] The massage head is a ceramic massage head.

[0013] This design serves several purposes. First, the excellent elasticity and flexibility of silicone allow for better fit between the massage head and the area being massaged, thanks to the deformation of the silicone support. Second, silicone's good wear and corrosion resistance makes it less susceptible to damage from external factors, allowing it to withstand repeated massage movements and various frictions during daily use, thus extending the lifespan of the massage head support. Finally, the smooth surface of silicone makes it easy to clean, preventing dust and dirt buildup and ensuring a hygienic user experience.

[0014] On the other hand, because ceramic materials typically have excellent thermal conductivity, ceramic massage heads can quickly and evenly transfer heat, resulting in a more uniform surface temperature and further enhancing the effects of hot and cold compresses. Simultaneously, the antibacterial and wear-resistant properties of ceramic materials make them easy to clean and maintain, thus ensuring the hygiene and lifespan of the massage head.

[0015] In a possible implementation of the first aspect, the massage head support is arranged around the support axis, and in the extending direction of the support axis, the massage head support has a proximal end and a rearward end, the proximal end is disposed on the side of the massage head support close to the part to be massaged, the proximal end is connected to the massage head, and the rearward end is disposed on the side of the massage head support away from the proximal end.

[0016] The side portion of the massage head bracket is connected between the proximal end and the aft end. The side portion includes a first side and a second side, which are respectively disposed on both sides of the massage head bracket. The distance between the proximal end and the aft end gradually decreases from the first side to the second side.

[0017] This design, with the massaged area being the eye region, the first side positioned near the inner corner of the eye and the second side near the outer corner, ensures that the distance between the proximal and distal ends gradually decreases from the first to the second side. This design fully considers the physiological structure of the human eye and conforms to ergonomic principles, allowing the massage head to naturally adapt to the shape and curve of the eye, better fitting the natural contour from the inner corner to the outer corner. This not only reduces discomfort and pressure caused by a poor fit but also allows the massage head to adhere more closely to the skin around the eye, thereby improving the overall massage and providing users with a more comfortable and fitting massage experience.

[0018] In one possible implementation of the first aspect, one of the massage head bracket and the massage head is provided with a mounting groove, and the other is provided with an insertion part, the insertion part being inserted into the mounting groove so that the massage head bracket is connected to the massage head.

[0019] This design, with its mounting groove and insertion part, precisely defines the connection position of the massage head bracket on the massage head. Therefore, on the one hand, during connection, simply aligning the insertion part with the mounting groove and inserting it allows for quick and easy connection of the massage head bracket to the massage head. On the other hand, it also ensures accurate fit between the massage head and other components in the massage head module, thereby guaranteeing the effective use of the massage head module.

[0020] In one possible implementation of the first aspect, the heating and cooling assembly includes:

[0021] A heating and cooling component, at least a portion of which is disposed within the receiving space, the heating and cooling component being used to generate heat so that the heating and cooling assembly heats the massage head, and the heating and cooling component being used to cool so that the heating and cooling assembly cools the massage head;

[0022] A heat sink is provided for dissipating heat from the heating and cooling components. At least a portion of the heat sink is disposed within the receiving space. The massage head bracket is provided with heat dissipation holes communicating with the receiving space.

[0023] With this setup, firstly, since the heating and cooling components can both heat and cool, the heating and cooling components can easily heat or cool the massage head, thus conveniently realizing both hot and cold compress functions.

[0024] Secondly, the design of the heat sink and ventilation holes effectively dissipates heat from the heating and cooling components. This, on the one hand, maintains the temperature of the heating and cooling components within their normal operating range, protecting them, ensuring stable and reliable operation, and extending their service life. On the other hand, when the massage head needs to be cooled quickly from a high temperature to a low temperature, good heat dissipation helps the heating and cooling components complete the cooling process faster, improving response speed and efficiency, allowing users to enjoy the desired temperature more promptly.

[0025] In one possible implementation of the first aspect, the heat sink includes:

[0026] The heat sink is a plurality of heat sinks arranged in parallel and spaced apart.

[0027] This design significantly increases the surface area for heat dissipation, allowing the heat sinks to exchange heat more effectively with the surrounding air, rapidly transferring heat into the air and thus improving heat dissipation. Furthermore, the spacing between the heat sinks provides channels for airflow, promoting natural air convection. This natural air convection circulation accelerates the heat dissipation process, improves efficiency, and further enhances heat dissipation.

[0028] In a possible implementation of the first aspect, the heating and cooling assembly further includes:

[0029] A fan is provided, which is corresponding to a plurality of heat sinks, and is used to blow air onto the plurality of heat sinks.

[0030] With this configuration, the fan's operation forces airflow, greatly accelerating the air convection speed around the heatsink. This allows air to sweep across the heatsink surface more quickly, carrying away heat from the heatsink and further enhancing the cooling effect.

[0031] In one possible implementation of the first aspect, the massage head module further includes:

[0032] A fan mounting bracket, wherein the fan is connected to the fan mounting bracket, and the fan mounting bracket is connected to the heat sink.

[0033] This design allows the fan mount to securely fix the fan to the heatsink, preventing the fan from shaking or shifting relative to the heatsink during operation. This ensures that the airflow from the fan is applied more accurately and effectively to the heatsink. Consequently, the fan's cooling effect is maximized, quickly removing heat from the heatsink and ensuring that the heating and cooling components operate within a suitable temperature range, thus improving the overall performance of the heating and cooling system.

[0034] In one possible implementation of the first aspect, the side portion of the massage head support includes:

[0035] The concave portion is recessed towards the inside of the massage head bracket, and the concave portion is a closed-loop concave portion arranged around the circumference of the massage head bracket.

[0036] This design, with its concave portion making it more prone to elastic deformation, increases the elasticity and flexibility of the massage head support. This characteristic is crucial for eye massagers because the skin around the eyes is delicate and has complex contours. The massage head support can better adapt to different users' eye shapes, fitting more closely to the skin and further enhancing massage comfort and effectiveness. Simultaneously, during the massage, the massage head support can also deform to some extent with eye movements and pressure, further reducing pressure on the skin around the eyes.

[0037] In a possible implementation of the first aspect, the concave portion includes:

[0038] bottom wall section;

[0039] The sidewall section has two sections, which are respectively connected to the two sides of the bottom wall section and are arranged in a concave shape with the bottom wall section. The heat dissipation hole is provided in the bottom wall section.

[0040] With this design, since the heat dissipation holes are located on the bottom wall of the concave part, and since the concave part is located on the side of the massage head support, when the airflow in the receiving space is blown out through the heat dissipation holes, it can be guided by the two side wall sections to a certain extent to avoid the airflow blowing directly into the eyes, thereby helping to reduce the irritation of the airflow to the eyes.

[0041] In one possible implementation of the first aspect, the massage head has a massage surface and a first heat transfer surface, the massage surface being used to contact the part to be massaged, and the first heat transfer surface being disposed on the side of the massage head opposite to the massage surface;

[0042] The heat sink has a second heat transfer surface, and the heating / cooling component has a third heat transfer surface. There are two third heat transfer surfaces, and the two third heat transfer surfaces are in surface contact with the first heat transfer surface and the second heat transfer surface, respectively.

[0043] This design, through surface-to-surface contact, maximizes the heat transfer area between the heating / cooling components and the massage head and heat dissipation components. Heat can be transferred more quickly and efficiently, enabling rapid temperature adjustment of the massage head and allowing users to enjoy a massage experience at the appropriate temperature more quickly.

[0044] In one possible implementation of the first aspect, the massage head module further includes:

[0045] A connecting fastener is provided, which is connected to the heat dissipation component, and the massage head is connected to the connecting fastener.

[0046] This design allows the heat sink and massage head to be securely connected together via the connecting fasteners, making the entire massage head module more stable. During operation, the connecting fasteners effectively reduce relative displacement between these components, ensuring they maintain their correct positional relationship, thus improving the overall reliability and stability of the massage head module and extending its service life.

[0047] In one possible implementation of the first aspect, the connecting fastener is also connected to the massage head bracket via a connecting structure.

[0048] This configuration, with the connecting fastener, heat dissipation component, and massage head connected together, and the fastener connected to the massage head bracket, further enhances the overall reliability and stability of the massage head module.

[0049] In a possible implementation of the first aspect, the connecting structure includes a connecting groove and a connecting protrusion, the connecting groove being disposed in one of the connecting fastener and the massage head bracket, and the connecting protrusion being disposed in the other of the connecting fastener and the massage head bracket, the connecting protrusion being inserted into the connecting groove.

[0050] This design, with its interlocking connection between the protruding and recessed parts, not only facilitates the connection between the connecting fastener and the massage head bracket but also provides a tighter fit. Therefore, during operation, even under vibration, shaking, or external forces, the massage head bracket and the connecting fastener are less prone to relative displacement or loosening, ensuring the stability and reliability of the connection between them.

[0051] In one possible implementation of the first aspect, the massage head module further includes:

[0052] A temperature sensing element is provided for detecting the temperature of the massage head. The temperature sensing element is also electrically connected to a controller so that the controller adjusts the heating or cooling temperature of the heating and cooling assembly based on the temperature detected by the temperature sensing element.

[0053] With this setup, the temperature sensor can detect the temperature of the massage head in real time and accurately. By feeding back the detected temperature information to the controller, the controller can precisely adjust the working state of the heating and cooling components according to the preset temperature range or the user-set temperature value, ensuring that the temperature of the massage head is always kept near the target temperature, avoiding excessively high or low temperatures, and providing users with a more stable and reliable hot or cold compress experience.

[0054] In one possible implementation of the first aspect, the massage head module further includes:

[0055] A buffer element is disposed between the temperature sensing element and the massage head.

[0056] With this design, the massage head may vibrate or be subjected to external pressure during operation due to the massage motion, while the temperature sensor may also be subjected to forces from other components within the massage head module. The buffer effectively cushions these forces, reducing direct impact on the temperature sensor and preventing damage from vibration or external forces. This extends the lifespan of the temperature sensor, ensures its normal operation, and guarantees the accuracy and reliability of temperature detection.

[0057] In a possible implementation of the first aspect, the buffer is connected to both the temperature sensing element and the massage head, such that the temperature sensing element is in close contact with the massage head.

[0058] This design, with its close fit, avoids temperature detection errors caused by gaps or poor contact. As a result, the temperature sensor can directly, stably, and accurately acquire temperature data from the massage head, reducing interference from external environmental factors and ensuring that the eye massager provides a stable and reliable temperature experience under different operating conditions, meeting users' needs for temperature accuracy.

[0059] Secondly, this application also provides an eye massager, which includes:

[0060] case;

[0061] The massage head module of any one of the first aspects, wherein at least a portion of the massage head module protrudes from the housing.

[0062] This design allows the flexible massage head support to deform under external force, enabling the massage head to better adapt to the shape of the area being massaged and fit more closely. This improves the fit between the massage head and the area being massaged, enhancing the effectiveness of the eye massager and improving the user experience.

[0063] In a possible implementation of the second aspect, the massage head module further includes:

[0064] The mounting base is a rigid base and is connected to the housing. The massage head bracket is connected to the mounting base.

[0065] This design, due to the high strength and rigidity of the mounting base, provides a stable foundation for the entire massage head module, thus ensuring the stability and reliability of the overall structure. Simultaneously, the mounting base also ensures the reliability and stability of the connection between the massage head module and the housing. Attached Figure Description

[0066] To more clearly illustrate the technical solutions in the embodiments of this application, the drawings used in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0067] Figure 1 A perspective view of the massage head module provided in the embodiments of this application;

[0068] Figure 2 This is a cross-sectional view of the massage head module provided in an embodiment of this application;

[0069] Figure 3 An exploded view of the massage head module provided in the embodiments of this application;

[0070] Figure 4 A perspective view of the massage head support provided in the embodiments of this application;

[0071] Figure 5 A cross-sectional view of the massage head provided in an embodiment of this application;

[0072] Figure 6 for Figure 2 Enlarged view of section A;

[0073] Figure 7 This is a schematic diagram of an eye massager provided in an embodiment of this application.

[0074] Explanation of reference numerals in the attached figures:

[0075] 1-Massage head; 11-Insert part; 12-Massage surface; 13-First heat transfer surface;

[0076] 2-Massage head support; 21-Accommodation space; 22-Proximal end; 23-Away end; 24-First side; 25-Second side; 26-Mounting groove; 27-Heat dissipation hole; 28-Concave part; 281-Bottom wall section; 282-Side wall section;

[0077] 3-Heating and cooling components; 31-Heating and cooling parts; 311-Third heat transfer surface; 32-Heat dissipation components; 321-Heat dissipation fins; 322-Second heat transfer surface; 33-Fan;

[0078] 4-Fan mounting hardware;

[0079] 5-Connecting fasteners;

[0080] 6-Connecting structure; 61-Connecting groove; 62-Connecting protrusion;

[0081] 7-Temperature sensing element;

[0082] 8-Buffer components;

[0083] 9- Mounting base;

[0084] 100-Massage head module;

[0085] 200 - Housing. Detailed Implementation

[0086] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.

[0087] In this application, the terms "upper," "lower," "left," "right," "front," "rear," "top," "bottom," "inner," "outer," "vertical," "horizontal," "lateral," and "longitudinal" indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. These terms are primarily for the purpose of better describing this application and its embodiments, and are not intended to limit the indicated device, element, or component to having a specific orientation, or to be constructed and operated in a specific orientation.

[0088] Furthermore, in addition to indicating location or positional relationship, some of the aforementioned terms may also have other meanings. For example, the term "above" may also be used in some cases to indicate a certain dependency or connection relationship. Those skilled in the art can understand the specific meaning of these terms in this application based on the specific circumstances.

[0089] Furthermore, the terms "installation," "setup," "equipped with," "connection," and "linked" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral structure; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium, or an internal connection between two devices, components, or parts. Those skilled in the art can understand the specific meaning of these terms in this application based on the specific circumstances.

[0090] Furthermore, the terms "first," "second," etc., are primarily used to distinguish different devices, elements, or components (which may be the same or different in specific type and construction), and are not intended to indicate or imply the relative importance or quantity of the indicated devices, elements, or components. Unless otherwise stated, "a plurality of" means two or more.

[0091] As described in the background section of this application, with the accelerating pace of modern life and the widespread use of electronic devices, people are increasingly straining their eyes, leading to more and more common problems such as eye fatigue and dryness. Eye massagers, as a device to relieve eye discomfort, are gradually gaining popularity among consumers. However, in related technologies, the fit between the massage head and the area to be massaged in eye massagers is often poor, resulting in unsatisfactory performance and a need for improved user experience.

[0092] In view of the above-mentioned problems, this application provides a massage head module and an eye massager to solve the problem of poor fit between the massage head and the area to be massaged in the related technology.

[0093] The technical solution of this application will be further described below with reference to specific embodiments and accompanying drawings:

[0094] like Figure 1 , Figure 2 and Figure 3 As shown, the massage head module 100 includes a massage head 1, a massage head support 2, and a heating / cooling assembly 3. The massage head 1 is used to contact the area to be massaged, and the massage head support 2 is connected to the massage head 1, and the massage head support 2 is a ring-shaped flexible structure. Figure 3 As shown, the massage head support 2 is enclosed to form a receiving space 21, and the massage head support 2 is configured to deform at least partially under the action of external force.

[0095] At least a portion of the heating and cooling component 3 is disposed within the receiving space 21. The heating and cooling component 3 is thermally connected to the massage head 1 and is used to heat or cool the massage head 1 so that the massage head 1 can apply heat or cold to the area to be massaged.

[0096] In this application, since the massage head support 2 is connected to the massage head 1, and since the massage head support 2 is a ring-shaped flexible structure, the massage head support 2 is configured to deform at least partially under external force. Therefore, when the massage head 1 contacts the area to be massaged, the flexible structure of the massage head support 2 can deform under external force, thereby allowing the massage head 1 to better adapt to the shape of the area to be massaged and fit more closely to the area, thus improving the fit between the massage head 1 and the area to be massaged. Thus, when the massage head module 100 is applied to an eye massager, it can enhance the effect of the eye massager and improve the user experience.

[0097] Furthermore, the heating and cooling component 3 can heat the massage head 1 to achieve a hot compress function, which promotes blood circulation in the massaged area and relieves muscle tension. Simultaneously, the heating and cooling component 3 can also cool the massage head 1 to achieve a cold compress function, which can reduce swelling and other discomfort in the massaged area. Therefore, the combination of hot and cold compresses can meet different user needs, thereby further enhancing the effectiveness of the eye massager and improving the user experience.

[0098] Furthermore, since the ring-shaped flexible structure of the massage head bracket 2 encloses and forms a receiving space 21, and at least part of the heating and cooling component 3 is disposed within the receiving space 21, the massage head bracket 2 can provide physical protection for the heating and cooling component 3, protecting it from possible mechanical damage such as collisions and compressions, reducing the risk of damage to the heating and cooling component 3, extending its service life, and ensuring that the massage head module 100 can operate stably.

[0099] Furthermore, the massage head support 2 is a silicone support; and / or, the massage head 1 is a ceramic massage head.

[0100] This design serves several purposes. First, the excellent elasticity and flexibility of silicone allow for better fit between the massage head 1 and the area being massaged, thanks to the deformation of the silicone support. Second, silicone's good wear and corrosion resistance makes it less susceptible to damage from external factors, allowing it to withstand repeated massage movements and various frictions during daily use, thus extending the lifespan of the massage head support 2. Finally, the smooth surface of silicone makes it easy to clean, preventing dust and dirt buildup and ensuring a hygienic user experience. Users can easily clean and maintain the massage head support 2, keeping it clean and reducing bacterial growth.

[0101] On the other hand, because ceramic materials typically have excellent thermal conductivity, ceramic massage heads can quickly and evenly transfer heat, making the surface temperature of massage head 1 more uniform, thereby further enhancing the effects of hot and cold compresses. Simultaneously, because ceramic materials also possess certain antibacterial and wear-resistant properties, they are easy to clean and maintain, thus ensuring the hygiene and lifespan of massage head 1.

[0102] In other embodiments, the massage head support 2 can also be a rubber support or a flexible plastic support, that is, the material of the massage head support 2 can be rubber or flexible plastic, etc. The material selection of the massage head support 2 is relatively flexible. Specifically, it can be selected according to actual needs. This application embodiment does not make specific limitations in this regard.

[0103] In other embodiments, the massage head 1 can also be a plastic massage head or a metal massage head, that is, the material of the massage head 1 can be plastic or metal, etc. The material selection of the massage head 1 is relatively flexible. Specifically, it can be selected according to actual needs. This application embodiment does not make specific limitations in this regard.

[0104] Furthermore, the massage head support 2 is arranged around the support axis, in the direction of extension of the support axis (e.g., Figure 4 In the Y direction, such as Figure 4 As shown, the massage head support 2 has a proximal end 22 and a reversible end 23. The proximal end 22 is located on the side of the massage head support 2 that is close to the part to be massaged and is connected to the massage head 1. The reversible end 23 is located on the side of the massage head support 2 that is away from the proximal end 22.

[0105] The side of the massage head support 2 is connected between the proximal end 22 and the opposing end 23, such as... Figure 4 As shown, the side portion includes a first side 24 and a second side 25, which are respectively disposed on both sides of the massage head support 2. The distance between the near end 22 and the far end 23 gradually decreases from the first side 24 to the second side 25.

[0106] With this configuration, when the area to be massaged is the eye area, and the first side 24 is positioned near the corner of the eye and the second side 25 is positioned near the outer corner of the eye, the distance between the proximal end 22 and the opposing end 23 gradually decreases from the first side 24 to the second side 25. Therefore, this design fully considers the physiological structure of the human eye and conforms to ergonomic principles, allowing the massage head 1 to naturally adapt to the shape and curve of the eye, better fitting the natural contour from the corner to the outer corner. This not only reduces discomfort and pressure caused by a lack of fit but also allows the massage head 1 to fit more closely to the skin around the eye, thereby improving the comprehensiveness of the massage and providing the user with a more comfortable and fitting massage experience.

[0107] Furthermore, such as Figure 3 , Figure 5 and Figure 6 As shown, one of the massage head bracket 2 and the massage head 1 is provided with a mounting groove 26, and the other is provided with an insertion part 11. The insertion part 11 is inserted into the mounting groove 26 so that the massage head bracket 2 is connected to the massage head 1.

[0108] This design, with its mounting groove 26 and insertion part 11, accurately defines the connection position of the massage head bracket 2 on the massage head 1. Therefore, on the one hand, during connection, simply aligning the insertion part 11 with the mounting groove 26 and inserting it allows for quick and easy connection, facilitating the connection of the massage head bracket 2 to the massage head 1. On the other hand, it also ensures accurate fit between the massage head 1 and other components in the massage head module 100, thereby guaranteeing the effectiveness of the massage head module 100.

[0109] Regarding the mounting groove 26 and the insertion part 11, in this embodiment of the application, the mounting groove 26 can be an annular groove arranged around the axis of the bracket. In this case, the insertion part 11 can be an annular insertion part arranged around the axis of the bracket, or it can be a strip-shaped insertion part, and multiple strip-shaped insertion parts are provided, with multiple strip-shaped insertion parts arranged around the axis of the bracket; or, the mounting groove 26 can also be a strip-shaped groove. In this case, the insertion part 11 can be a strip-shaped insertion part, and the number of strip-shaped insertion parts and strip-shaped grooves is the same and multiple are provided, with multiple strip-shaped insertion parts and strip-shaped grooves arranged around the axis of the bracket.

[0110] As can be seen from the above description, the structure of the mounting groove 26 and the insertion part 11 is relatively flexible. Specifically, it can be set according to actual needs, and the embodiments of this application do not impose specific limitations on it.

[0111] For the heating and cooling component 3, further, such as Figure 2 and Figure 3 As shown, the heating and cooling assembly 3 includes a heating and cooling component 31 and a heat dissipation component 32. At least a portion of the heating and cooling component 31 is disposed within the receiving space 21. The heating and cooling component 31 is used to generate heat so that the heating and cooling assembly 3 heats the massage head 1, and the heating and cooling component 31 is also used to cool so that the heating and cooling assembly 3 cools the massage head 1.

[0112] The heat sink 32 is used to dissipate heat from the heating / cooling component 31. At least a portion of the heat sink 32 is disposed within the receiving space 21. The massage head bracket 2 is provided with heat dissipation holes 27 communicating with the receiving space 21. Figure 1 and Figure 3 (As shown).

[0113] With this configuration, firstly, since the heating and cooling component 31 can both heat and cool, it is convenient to heat or cool the massage head 1 through the heating and cooling component 31, thereby conveniently realizing both hot and cold compress functions.

[0114] Secondly, the heat sink 32 and the heat dissipation holes 27 effectively dissipate heat from the heating / cooling component 31. This, on the one hand, maintains the temperature of the heating / cooling component 31 within its normal operating temperature range, thereby protecting it, ensuring stable and reliable operation, and extending its service life. On the other hand, when the massage head 1 needs to be cooled quickly from a high temperature to a low temperature, good heat dissipation helps the heating / cooling component 31 complete the cooling process faster, improving response speed and efficiency, allowing users to enjoy the desired temperature more promptly.

[0115] In a preferred embodiment, the heating / cooling component 31 is a PTC ceramic cooling element. This design, due to the relatively simple structure of the PTC ceramic cooling element, which mainly consists of ceramic materials and electrodes, lacks complex moving mechanical parts. This simple structure results in high stability and reliability, reducing the likelihood of mechanical failures. Consequently, it maintains good heating and cooling performance over long-term use, minimizing maintenance and replacement frequency and lowering user operating costs.

[0116] In other embodiments, the heating / cooling component 31 can also be a water bag, that is, achieving heat therapy by heating the water in the water bag, or achieving cold therapy by cooling the water in the water bag. This configuration reduces manufacturing costs because water bags are relatively inexpensive.

[0117] Furthermore, such as Figure 2 and Figure 3 As shown, the heat sink 32 includes heat sinks 321, and there are multiple heat sinks 321 arranged in parallel and at intervals.

[0118] This design significantly increases the surface area for heat dissipation, allowing the heat sinks 321 to exchange heat more effectively with the surrounding air, rapidly transferring heat into the air and thus enabling the heat sink 32 to dissipate heat more efficiently. Furthermore, the spacing between the heat sinks 321 provides channels for airflow, facilitating air convection. This natural air convection circulation accelerates the heat dissipation process, improves heat dissipation efficiency, and also allows the heat sink 32 to dissipate heat more effectively.

[0119] Furthermore, such as Figure 1 , Figure 2 and Figure 3 As shown, the heating and cooling assembly 3 also includes a fan 33, which is correspondingly arranged with multiple heat sinks 321. The fan 33 is used to blow air onto the multiple heat sinks 321.

[0120] With this configuration, the operation of fan 33 can force airflow, greatly accelerating the air convection speed around heatsink 321, allowing air to pass over the surface of heatsink 321 more quickly and carry away the heat on heatsink 321 in time, thus further enhancing the heat dissipation effect.

[0121] Furthermore, such as Figure 1 , Figure 2 and Figure 3 As shown, the massage head module 100 also includes a fan fixing component 4, a fan 33 connected to the fan fixing component 4, and a fan fixing component 4 connected to a heat sink 32.

[0122] This configuration allows the fan mounting bracket 4 to securely fix the fan 33 to the heat sink 32, preventing the fan 33 from shaking or shifting relative to the heat sink 32 during operation. This ensures that the airflow from the fan 33 is applied more accurately and effectively to the heat sink 32. Consequently, the cooling effect of the fan 33 is maximized, quickly removing heat from the heat sink 32 and ensuring that the heating / cooling assembly 3 operates within a suitable temperature range, thus improving the overall performance of the heating / cooling assembly 3.

[0123] For the massage head holder 2, further, such as Figure 4 As shown, the side of the massage head support 2 includes a concave portion 28, which is recessed toward the inside of the massage head support 2, and the concave portion 28 is a closed-loop concave portion arranged around the massage head support 2.

[0124] This design allows the concave portion 28 to more easily undergo elastic deformation, thus increasing the elasticity and flexibility of the massage head support 2. This characteristic is crucial for eye massagers because the skin around the eyes is delicate and has a complex contour. The massage head support 2 can better adapt to different users' eye shapes, fitting more closely to the skin and further enhancing the comfort and effectiveness of the massage. Simultaneously, during the massage, the massage head support 2 can also deform to a certain extent with eye movements and pressure, further reducing pressure on the skin around the eyes.

[0125] Furthermore, such as Figure 4 As shown, the concave portion 28 includes a bottom wall section 281 and a side wall section 282. There are two side wall sections 282, which are respectively connected to the two sides of the bottom wall section 281 and are arranged in a concave shape with the bottom wall section 281. The heat dissipation hole 27 is provided in the bottom wall section 281.

[0126] With this configuration, since the heat dissipation hole 27 is located on the bottom wall section 281 of the concave portion 28, and since the concave portion 28 is located on the side of the massage head support 2, when the airflow in the receiving space 21 is blown out through the heat dissipation hole 27, it can be guided by the two side wall sections 282 to a certain extent to avoid the airflow blowing directly to the eyes, thereby helping to reduce the stimulation of the airflow to the eyes.

[0127] Regarding the fit between the massage head 1, the heating / cooling component 31, and the heat dissipation component 32, further, as... Figure 3 and Figure 5 As shown, the massage head 1 has a massage surface 12 and a first heat transfer surface 13. The massage surface 12 is used to contact the part to be massaged, and the first heat transfer surface 13 is disposed on the side of the massage head 1 away from the massage surface 12.

[0128] like Figure 3 As shown, the heat sink 32 has a second heat transfer surface 322, and the heating and cooling component 31 has a third heat transfer surface 311. There are two third heat transfer surfaces 311, and the two third heat transfer surfaces 311 are in surface contact with the first heat transfer surface 13 and the second heat transfer surface 322 respectively.

[0129] This configuration, through surface-to-surface contact, maximizes the heat transfer area between the heating / cooling component 31, the massage head 1, and the heat dissipation component 32. Heat can be transferred more quickly and efficiently, enabling rapid adjustment of the massage head temperature and allowing users to enjoy a massage experience at a suitable temperature more quickly.

[0130] For the massage head module 100, further, such as Figure 2 and Figure 3 As shown, the massage head module 100 also includes a connecting fastener 5, which is connected to the heat sink 32, and the massage head 1 is connected to the connecting fastener 5.

[0131] This configuration allows the heat sink 32 and the massage head 1 to be securely connected together via the connecting fastener 5, making the entire massage head module 100 more stable. During operation, the connecting fastener 5 effectively reduces the relative displacement between these components, ensuring that each component maintains its correct positional relationship, thus improving the overall reliability and stability of the massage head module 100 and extending its service life.

[0132] In this embodiment, the connection between the connecting fastener 5 and the heat sink 32, and between the massage head 1 and the connecting fastener 5, can be connected by screws or by snap-fit ​​and slot. The connection method is flexible and can be selected according to actual needs. This embodiment does not limit the specific connection method.

[0133] Furthermore, such as Figure 2As shown, the connecting fastener 5 is also connected to the massage head bracket 2 via the connecting structure 6.

[0134] With this configuration, based on the connection of the connecting fastener 5, the heat sink 32 and the massage head 1, the connection of the connecting fastener 5 to the massage head bracket 2 can further improve the overall reliability and stability of the massage head module 100.

[0135] Furthermore, such as Figure 6 As shown, the connecting structure 6 includes a connecting groove 61 and a connecting protrusion 62. The connecting groove 61 is disposed in one of the connecting fastener 5 and the massage head bracket 2, and the connecting protrusion 62 is disposed in the other of the connecting fastener 5 and the massage head bracket 2. The connecting protrusion 62 is inserted into the connecting groove 61.

[0136] This design, with the connecting protrusion 62 and the connecting groove 61 engaging in a convex-concave fit, not only facilitates the connection between the connecting fastener 5 and the massage head bracket 2 but also provides a tighter connection. Thus, during operation, even under vibration, shaking, or external force, the massage head bracket 2 and the connecting fastener 5 are less prone to relative displacement or loosening, ensuring the stability and reliability of the connection between them.

[0137] In other embodiments, the connecting structure 6 may include a snap-fit ​​buckle and a slot, wherein the snap-fit ​​may be provided in one of the connecting fastener 5 and the massage head bracket 2, and the slot may be provided in the other of the connecting fastener 5 and the massage head bracket 2. Alternatively, the connecting structure 6 may also include a screw, a screw hole, and an internally threaded hole, wherein the screw hole is provided in one of the connecting fastener 5 and the massage head bracket 2 for the screw to pass through, and the internally threaded hole is provided in the other of the connecting fastener 5 and the massage head bracket 2 and is threadedly connected to the screw.

[0138] As can be seen from the above description, the structural configuration of the connection structure 6 is relatively flexible. Specifically, it can be configured according to actual needs, and the embodiments of this application do not impose specific limitations on it.

[0139] For the massage head module 100, further, such as Figure 2 and Figure 3 As shown, the massage head module 100 also includes a temperature detection element 7, which is used to detect the temperature of the massage head 1. The temperature detection element is also used to be electrically connected to the controller so that the controller can adjust the heating or cooling temperature of the heating and cooling assembly 3 based on the temperature detected by the temperature detection element 7.

[0140] With this configuration, the temperature sensor 7 can detect the temperature of the massage head 1 in real time and accurately. By feeding back the detected temperature information to the controller, the controller can precisely adjust the working state of the heating and cooling components 3 according to the preset temperature range or the temperature value set by the user, ensuring that the temperature of the massage head 1 is always kept near the target temperature, avoiding excessively high or low temperatures, and providing users with a more stable and reliable hot or cold compress experience.

[0141] Furthermore, in a preferred embodiment, the temperature sensing element 7 is a negative temperature coefficient temperature controller.

[0142] With this configuration, the negative temperature coefficient thermostat is highly sensitive to temperature changes, enabling it to quickly and accurately detect even minute temperature variations in the massage head 1. This high sensitivity helps the controller obtain accurate temperature information promptly, allowing for rapid and precise adjustment of the heating and cooling components 3. This ensures that the temperature of the massage head 1 remains stable within the set range, providing users with a more reliable and comfortable hot or cold compress experience.

[0143] In other embodiments, the temperature detection element 7 can also be a fiber optic temperature sensor or an infrared temperature sensor, etc. The type of temperature detection element 7 is more flexible. Specifically, it can be selected according to actual needs. This application embodiment does not make specific limitations in this regard.

[0144] Furthermore, such as Figure 2 and Figure 3 As shown, the massage head module 100 also includes a buffer 8, which is disposed between the temperature detection element 7 and the massage head 1.

[0145] With this configuration, the massage head 1 may vibrate or be subjected to external pressure during operation due to massage movements. Simultaneously, the temperature sensing element 7 may also be subjected to forces from other components within the massage head module 100. The buffer 8 effectively cushions these forces, reducing their direct impact on the temperature sensing element 7 and preventing damage due to vibration or external forces. This extends the service life of the temperature sensing element 7, ensures its normal operation, and guarantees the accuracy and reliability of temperature detection.

[0146] Furthermore, in a preferred embodiment, the buffer 8 is an ethylene-vinyl acetate copolymer foam.

[0147] With this design, the buffer 8 is made of ethylene-vinyl acetate copolymer foam. Ethylene-vinyl acetate copolymer foam has a unique pore structure, giving it excellent cushioning and shock absorption capabilities. In the massage head module 100, it can more effectively absorb vibrations generated during operation and external impacts that may occur during use, further protecting the temperature sensing element 7 from vibration and external forces, further preventing its internal components from loosening or being damaged, further ensuring the accuracy and stability of temperature detection, and further extending the service life of the temperature sensing element.

[0148] In other embodiments, the buffer 8 can also be a foam or rubber component, that is, the material of the buffer 8 can be foam or rubber, etc. The material selection of the buffer 8 is relatively flexible. Specifically, it can be selected according to actual needs. This application embodiment does not make specific limitations in this regard.

[0149] Furthermore, the buffer 8 is connected to both the temperature sensing element 7 and the massage head 1, so that the temperature sensing element 7 is in close contact with the massage head 1.

[0150] This close fit design avoids temperature detection errors caused by gaps or poor contact. As a result, the temperature sensor 7 can directly, stably, and accurately acquire the temperature data of the massage head 1, reducing interference from external environmental factors and ensuring that the eye massager provides a stable and reliable temperature experience under different operating conditions, meeting users' needs for temperature accuracy.

[0151] This application also provides an eye massager, such as... Figure 7 As shown, the eye massager includes a massage head module 100 and a housing 200. At least a portion of the massage head module 100 protrudes from the housing 200. The massage head module 100 has the same structure as any of the massage head modules 100 in the above embodiments and can bring the same or similar beneficial effects. For details, please refer to the description in the above embodiments. This embodiment will not be repeated here.

[0152] With this design, the flexible massage head support 2 can deform under external force, allowing the massage head 1 to better adapt to the shape of the area to be massaged and fit more closely to the area. This improves the fit between the massage head 1 and the area to be massaged, enhancing the effectiveness of the eye massager and improving the user experience.

[0153] Furthermore, such as Figure 1 , Figure 2 and Figure 3 As shown, the massage head module 100 also includes a mounting base 9, which is a rigid base. The mounting base 9 is connected to the housing 200, and the massage head bracket 2 is connected to the mounting base 9.

[0154] This design, due to the high strength and rigidity of the mounting base 9, provides a stable foundation support for the entire massage head module 100, thereby ensuring the stability and reliability of the overall structure of the massage head module 100. Simultaneously, the mounting base 9 also ensures the reliability and stability of the connection between the massage head module 100 and the housing 200.

[0155] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this application, and are not intended to limit them. Although this application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some or all of the technical features therein. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of this application.

Claims

1. A massage head module, characterized in that, include: Massage head (1), the massage head (1) being used to contact the area to be massaged; Massage head support (2), the massage head support (2) is connected to the massage head (1), the massage head support (2) is a ring-shaped flexible structure, the massage head support (2) encloses and forms a receiving space (21), the massage head support (2) is configured to deform at least partially under the action of external force; A heating and cooling assembly (3) is provided at least in the receiving space (21). The heating and cooling assembly (3) is thermally connected to the massage head (1) and is used to heat or cool the massage head (1) so that the massage head (1) can apply heat or cold to the area to be massaged.

2. The massage head module according to claim 1, characterized in that, The massage head support (2) is a silicone support; and / or, The massage head (1) is a ceramic massage head.

3. The massage head module according to claim 1 or 2, characterized in that, The massage head support (2) is arranged around the support axis. In the extension direction of the support axis, the massage head support (2) has a near end (22) and a far end (23). The near end (22) is arranged on the side of the massage head support (2) near the part to be massaged. The near end (22) is connected to the massage head (1). The far end (23) is arranged on the side of the massage head support (2) away from the near end (22). The side of the massage head support (2) is connected between the proximal end (22) and the rear end (23). The side includes a first side (24) and a second side (25). The first side (24) and the second side (25) are respectively disposed on both sides of the massage head support (2). The distance between the proximal end (22) and the rear end (23) gradually decreases from the first side (24) to the second side (25).

4. The massage head module according to claim 1 or 2, characterized in that, One of the massage head bracket (2) and the massage head (1) is provided with a mounting groove (26) and the other is provided with an insertion part (11). The insertion part (11) is inserted into the mounting groove (26) so that the massage head bracket (2) is connected to the massage head (1).

5. The massage head module according to claim 1 or 2, characterized in that, The heating and cooling assembly (3) includes: A heating and cooling component (31) is provided at least in the receiving space (21). The heating and cooling component (31) is used to generate heat so that the heating and cooling assembly (3) heats the massage head (1). The heating and cooling component (31) is also used to cool so that the heating and cooling assembly (3) cools the massage head (1). Heat sink (32) is used to dissipate heat from the heating and cooling component (31). At least a portion of the heat sink (32) is disposed within the receiving space (21). The massage head bracket (2) is provided with heat dissipation holes (27) communicating with the receiving space (21).

6. The massage head module according to claim 5, characterized in that, The heat sink (32) includes: The heat sink (321) is a plurality of heat sinks (321), which are arranged in parallel and spaced apart.

7. The massage head module according to claim 6, characterized in that, The heating and cooling assembly (3) also includes: A fan (33) is provided corresponding to a plurality of heat sinks (321), and the fan (33) is used to blow air onto the plurality of heat sinks (321).

8. The massage head module according to claim 7, characterized in that, The massage head module (100) also includes: A fan mounting bracket (4) is provided, wherein the fan (33) is connected to the fan mounting bracket (4), and the fan mounting bracket (4) is connected to the heat sink (32).

9. The massage head module according to claim 5, characterized in that, The side portion of the massage head support (2) includes: The concave portion (28) is recessed toward the inside of the massage head support (2), and the concave portion (28) is a closed-loop concave portion arranged around the massage head support (2).

10. The massage head module according to claim 9, characterized in that, The concave portion (28) includes: Bottom wall section (281); Side wall section (282), two side wall sections (282) are provided, the two side wall sections (282) are respectively connected to the two sides of the bottom wall section (281) and are arranged in a concave shape with the bottom wall section (281), and the heat dissipation hole (27) is provided on the bottom wall section (281).

11. The massage head module according to claim 5, characterized in that, The massage head (1) has a massage surface (12) and a first heat transfer surface (13). The massage surface (12) is used to contact the part to be massaged, and the first heat transfer surface (13) is disposed on the side of the massage head (1) away from the massage surface (12). The heat sink (32) has a second heat transfer surface (322), and the heating and cooling component (31) has a third heat transfer surface (311). There are two third heat transfer surfaces (311), and the two third heat transfer surfaces (311) are in surface contact with the first heat transfer surface (13) and the second heat transfer surface (322), respectively.

12. The massage head module according to claim 5, characterized in that, The massage head module (100) also includes: A connecting fastener (5) is connected to the heat sink (32), and the massage head (1) is connected to the connecting fastener (5).

13. The massage head module according to claim 12, characterized in that, The connecting fastener (5) is also connected to the massage head bracket (2) via a connecting structure (6).

14. The massage head module according to claim 13, characterized in that, The connecting structure (6) includes a connecting groove (61) and a connecting protrusion (62). The connecting groove (61) is disposed in one of the connecting fastener (5) and the massage head bracket (2), and the connecting protrusion (62) is disposed in the other of the connecting fastener (5) and the massage head bracket (2). The connecting protrusion (62) is inserted into the connecting groove (61).

15. The massage head module according to claim 1 or 2, characterized in that, The massage head module (100) also includes: Temperature detection element (7) is used to detect the temperature of the massage head (1). The temperature detection element (7) is also used to be electrically connected to the controller so that the controller adjusts the heating or cooling temperature of the heating and cooling assembly (3) based on the temperature detected by the temperature detection element (7).

16. The massage head module according to claim 15, characterized in that, The massage head module (100) also includes: A buffer (8) is disposed between the temperature detection element (7) and the massage head (1).

17. The massage head module according to claim 16, characterized in that, The buffer (8) is connected to both the temperature detection element (7) and the massage head (1) so that the temperature detection element (7) is in close contact with the massage head (1).

18. An eye massager, characterized in that, include: Casing (200); The massage head module (100) according to any one of claims 1-17, wherein at least a portion of the massage head module (100) protrudes from the housing (200).

19. The eye massager according to claim 18, characterized in that, The massage head module (100) also includes: Mounting base (9), which is a rigid base, is connected to the housing (200), and the massage head bracket (2) is connected to the mounting base (9).