Cold and hot compress assembly mounting structure of eye massager

By improving the installation structure of the hot and cold compress assembly of the eye massager, and using components such as silicone sleeves, crimping parts and cooling fans, the problems of inconvenience and low stability in the prior art are solved, the close contact between the semiconductor parts and the massage parts is achieved, and the effect of cooling and heating is improved.

CN223263179UActive Publication Date: 2025-08-26NINGBO FULLJOY ELECTRONIC TECH CO LTD
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Patent Information

Application Number
CN202422102799.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-29
Publication Date
2025-08-26
Estimated Expiration
2034-08-29

AI Technical Summary

Technical Problem

The installation method of the semiconductor refrigeration and heating unit of the existing eye massager is low in stability and inconvenient to install, which affects the use effect.

Method used

The combined structure of silicone sleeve, crimping piece, massage piece and heat dissipation assembly is adopted to achieve close contact between the semiconductor part and the massage piece through fasteners and positioning grooves, and the heat dissipation fan is used to improve heat dissipation efficiency.

Benefits of technology

It achieves convenient assembly and reliable connection, and the semiconductor parts are in close contact with the massage parts, ensuring the stability and efficiency of cooling and cooling effects.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a cold and hot compress assembly mounting structure of an eye massager, which comprises a shell, a silica gel sleeve and a cold and hot compress assembly, the silica gel sleeve is arranged in the shell, the silica gel sleeve is provided with a silica gel head, the cold and hot compress assembly comprises a heat dissipation assembly, a heat conduction piece, a semiconductor piece, a crimping piece and a massage piece, the massage piece is arranged at the outer end part of the silica gel head, and the heat conduction piece is arranged in the shell. The crimping part is arranged at the inner end of the silica gel head and fixedly connected to the massage part so that the silica gel head can be clamped between the crimping part and the massage part, an installation cavity is defined by the crimping part, the massage part and the silica gel head, and the heat conduction part and the semiconductor part are fixedly clamped in the installation cavity from inside to outside. The heat dissipation assembly is arranged in the shell and fixedly connected with the heat conduction part, the crimping part and the silica gel head are matched to form a lead channel for an electric connecting wire of the semiconductor part to extend into the shell, through the arrangement, assembly is convenient, connection is reliable, the semiconductor part is in close contact with the massage part, and therefore the refrigeration and cold and hot effects are effectively guaranteed.
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Description

Technical Field

[0001] The utility model relates to the technical field of massage devices, in particular to a hot and cold compress component installation structure of an eye massager. Background Art

[0002] With the continuous development of electronic technology and the continuous improvement of living standards, people are using electronic devices such as mobile phones and computers more and more frequently in their daily work and life. As a result, the discomfort caused by eye fatigue is becoming more and more common. To relieve eye fatigue, common practices include eye massage and eye mask application. However, these methods have the problem of limited effectiveness and poor relief.

[0003] To address these technical issues, a variety of eye massage devices have emerged on the market in recent years. Among them, those that utilize semiconductors for cooling and heating, providing both hot and cold compresses, have gained widespread popularity due to their adjustable temperature and high comfort. Their operating principle is to leverage the heat transfer properties of semiconductors when powered, achieving rapid cooling and heating, providing the therapeutic benefits of cold and hot compresses to the eyes, thereby alleviating eye fatigue and improving comfort.

[0004] The semiconductor cooling and heating units in existing eye massagers are installed by first gluing the massage aluminum component to a silicone sleeve, then placing the semiconductor component. Finally, the heat sink aluminum component is also glued to the silicone sleeve, with the semiconductor component pressed between the two components. This mounting structure has the following drawbacks: Because both the massage aluminum component and the heat sink aluminum component are glued to the silicone sleeve, it lacks stability and is inconvenient to install. This can easily prevent the heat sink aluminum component, semiconductor component, and massage aluminum component from fitting tightly together, impacting user experience. Therefore, improvements are needed. Summary of the Invention

[0005] The purpose of the utility model is to provide a hot and cold compress assembly installation structure for an eye massager, which is easy to assemble and has reliable connection. The semiconductor component is in close contact with the massage component, thereby effectively ensuring the cooling and hot and cold effects.

[0006] The above-mentioned technical purpose of the present invention is achieved through the following technical solutions: a hot and cold compress assembly installation structure of an eye massager, comprising a shell, a silicone sleeve and a hot and cold compress assembly, the silicone sleeve is arranged in the shell, the silicone sleeve is provided with a silicone head extending out of the shell, the silicone head is arranged around the human eye, the hot and cold compress assembly includes a heat dissipation assembly, a heat conductor, a semiconductor component, a crimping component and a massage component, the massage component is arranged at the outer end portion of the silicone head, the crimping component is arranged at the inner end portion of the silicone head, the crimping component is fixedly connected to the massage component so that the silicone head is clamped between the crimping component and the massage component, the crimping component, the massage component and the silicone head are surrounded to form an installation cavity, the heat conductor and the semiconductor component are fixedly clamped in the installation cavity from the inside to the outside, the heat dissipation assembly is arranged in the shell and fixedly connected to the heat conductor, the crimping component and the silicone head cooperate to form a lead channel for the electrical connection line of the semiconductor component to extend into the shell.

[0007] Furthermore, the inner end of the massage piece is provided with a plurality of first connecting columns, the silicone head is provided with an avoidance groove for the first connecting columns to extend into the crimping piece, the crimping piece is provided with a first assembly hole at the position corresponding to the first connecting column, and the crimping piece and the massage piece are fixedly connected as one through a first fastener.

[0008] Furthermore, the outer periphery of the massage piece is provided with an outer ring edge, the silicone head is provided with an annular groove adapted to the outer ring edge, and the outer ring edge of the massage piece is inserted into the annular groove.

[0009] Furthermore, the inner end surface of the massage piece is provided with a flat surface, and the inner end of the crimping piece is provided with a pressing portion, and the heat conducting piece and the semiconductor piece are tightly pressed into the installation cavity by the cooperation between the flat surface of the massage piece and the pressing portion of the crimping piece.

[0010] Furthermore, the semiconductor component is in close contact with the contact end of the heat conducting component.

[0011] Furthermore, the heat dissipation assembly includes a heat dissipation member, which is fixedly connected to the heat conductive member via a second fastener so that the outer end surface of the heat dissipation member is in close contact with the inner end surface of the heat conductive member, and the inner end surface of the heat dissipation member is a fin-shaped structure.

[0012] Furthermore, the heat dissipation assembly further includes a heat dissipation fan. An installation area is provided in the middle of the inner end of the heat dissipation element, and the heat dissipation fan is provided in the installation area of ​​the heat dissipation element.

[0013] Furthermore, a plurality of positioning posts are provided at the outer end of the heat dissipation element, and the heat conducting element is provided with positioning grooves that are positioned and matched with the positioning posts.

[0014] Furthermore, the massage element is a metal heat-conducting element.

[0015] Furthermore, the hot and cold compress assembly also includes a thermistor electrically connected to the semiconductor component.

[0016] In summary, the present invention has the following beneficial effects:

[0017] The hot and cold compress assembly mounting structure of the present invention is easy to assemble and has reliable connection. The semiconductor component and the massage component are in close contact, thereby effectively ensuring the cooling and heating effects. During assembly, the massage component is first placed on the outer end of the silicone head, and the semiconductor component and the heat conductive component are placed in the silicone head in sequence. The crimping component is then installed on the inner end of the silicone head and fixedly connected to the massage component, thereby tightly crimping the semiconductor component and the heat conductive component between the crimping component and the massage component. Finally, the heat dissipation component is fixedly connected to the heat conductive component so that the contact surface of the heat dissipation component and the heat conductive component are in close contact. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 It is a schematic diagram of the overall structure of the utility model.

[0019] Figure 2 It is a three-dimensional sectional view of the present utility model.

[0020] Figure 3 This is a structural schematic diagram of the hot and cold compress assembly of the present invention when it is installed on a silicone pad.

[0021] Figure 4 It is an exploded schematic diagram of the hot and cold compress assembly of the present invention.

[0022] Figure 5 This is a cross-sectional view of the hot and cold compress assembly of the present invention when installed on a silicone pad.

[0023] Figure 6 It is a structural diagram of the massage piece of the present utility model.

[0024] Figure 7 It is a structural schematic diagram of the crimping piece of the utility model.

[0025] Figure 8 It is a structural schematic diagram of the heat conducting element of the present utility model.

[0026] In the figure: 10, shell; 20, silicone sleeve; 21, silicone head; 211, ring groove; 30, hot and cold compress assembly; 31, heat dissipation assembly; 311, heat dissipation part; 3111, positioning column; 312, cooling fan; 32, heat conducting part; 321, positioning groove; 33, semiconductor part; 34, crimping part; 341, first assembly hole; 342, pressing part; 35, massage part; 351, first connecting column; 352, outer ring edge; 36, installation cavity; 37, lead channel. DETAILED DESCRIPTION

[0027] The present invention will be further described below with reference to the accompanying drawings.

[0028] In the description of the present invention, it should be noted that the terms "upper," "lower," "inner," "outer," "inner end," "outer end," and the like, indicating orientations or positional relationships, are based on the orientations or positional relationships shown in the accompanying drawings and are intended solely to facilitate and simplify the description of the present invention. They are not intended to indicate or imply that the devices or components referred to must have, be constructed, or operate in a specific orientation, and therefore should not be construed as limiting the present invention. Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.

[0029] like Figures 1-8 As shown, a hot and cold compress assembly installation structure of an eye massager includes a shell 10, a silicone sleeve 20 and a hot and cold compress assembly 30. The silicone sleeve 20 is arranged in the shell 10. The silicone sleeve 20 is provided with a silicone head 21 extending out of the shell 10. The silicone head 21 is arranged around the human eye, that is, the silicone head 21 is arranged at the position of the eye massager corresponding to the left and right eye sockets. The silicone head 21 can be extended and retracted in the inward and outward directions. An electric control module and a power supply module are provided in the shell 10. The hot and cold compress assembly 30 is electrically connected to the electric control module and the power supply module respectively.

[0030] The hot and cold compress assembly 30 includes a heat dissipation assembly 31, a heat conducting member 32, a semiconductor member 33, a crimping member 34 and a massage member 35. The massage member 35 is arranged at the outer end of the silicone head 21. Furthermore, the massage member 35 is a metal heat conducting member 32. The material of the metal heat conducting member 32 includes but is not limited to aluminum. The crimping member 34 is arranged at the inner end of the silicone head 21. The crimping member 34 is fixedly connected to the massage member 35 so that the silicone head 21 is clamped between the crimping member 34 and the massage member 35, so that the crimping member 34, the silicone head 21 and the massage member 35 are constituted to move synchronously. The body, the crimping part 34, the massage part 35 and the silicone head 21 are surrounded to form an installation cavity 36. The heat conductive part 32 and the semiconductor part 33 are fixedly clamped in the installation cavity 36 from the inside to the outside, so that the heat conductive part 32, the semiconductor part 33 and the massage part 35 can be in close contact in sequence, thereby achieving better heat conduction efficiency. The semiconductor part 33 is controlled to cool or heat by the electronic control module, and the heat on the semiconductor part 33 is quickly transferred to the massage part 35, thereby realizing the function of hot and cold compress through the massage part 35. The material of the heat conductive part 32 is a metal heat conductive part 32, including but not limited to aluminum. The heat dissipation component 31 is arranged in the shell 10 and is fixedly connected to the heat conductor 32. Specifically, the contact surface of the heat dissipation component 31 and the heat conductor 32 is tightly fitted, thereby achieving efficient heat dissipation. The crimping part 34 cooperates with the silicone head 21 to form a lead channel 37 for the electrical connection line of the semiconductor component 33 to extend into the shell 10. Specifically, the installation cavity 36 can be constructed as a rectangular structure, and accordingly, the semiconductor component 33 and the heat conductor 32 are constructed into a shape that matches the installation cavity 36. By constructing the above shape, the semiconductor component 33 and the heat conductor 32 can be prevented from shifting forward, backward, left, and right.

[0031] In some embodiments, the inner end of the massage member 35 is provided with a plurality of first connecting columns 351, and the silicone head 21 is provided with an avoidance groove for the first connecting columns 351 to extend into the crimping member 34. The crimping member 34 is provided with a first assembly hole 341 at a position corresponding to the first connecting column 351. The crimping member 34 and the massage member 35 are fixedly connected as one through a first fastener. The first fastener extends into the assembly hole and the first connecting column 351 and fixes the crimping member 34 and the massage member 35 as one. A plurality of first connecting columns 351 are provided and are respectively provided on both sides of the massage member 35. The two connecting columns are respectively fixedly connected by the first fastener, thereby playing a role of stable connection.

[0032] In some embodiments, the outer periphery of the massage member 35 is provided with an outer ring edge 352, and the silicone head 21 is provided with an annular groove 211 adapted to the outer ring edge 352. The outer ring edge 352 of the massage member 35 is inserted into the annular groove 211. Through the positioning and cooperation between the outer ring edge 352 and the annular groove 211, the massage member 35 can be better positioned to prevent the massage member 35 and the silicone head 21 from relative displacement during the massage process. Specifically, the inner ring wall of the annular groove 211 is provided with a shape adapted to the inner wall of the outer ring edge 352, thereby playing a better positioning role.

[0033] In some embodiments, the inner end surface of the massage member 35 is provided with a flat surface, and the inner end of the crimping member 34 is provided with a pressing portion 342. The flat surface of the massage member 35 cooperates with the pressing portion 342 of the crimping member 34 to tightly press the heat conducting member 32 and the semiconductor member 33 into the mounting cavity 36. Furthermore, the semiconductor member 33 is in close contact with the contact end of the heat conducting member 32. This arrangement ensures close contact between the heat conducting member 32, the semiconductor member 33, and the massage member 35, thereby ensuring efficient heat transfer.

[0034] The heat dissipation assembly 31 includes a heat dissipation member 311, which is fixedly connected to the heat conductor 32 by a second fastener so that the outer end surface of the heat dissipation member 311 is in close contact with the inner end surface of the heat conductor 32. The inner end surface of the heat dissipation member 311 is a fin-shaped structure. Specifically, the contact surfaces of the heat dissipation member 311 and the heat conductor 32 are also constructed as flat surfaces that fit each other. Second assembly holes are respectively provided on the left and right sides of the heat dissipation member 311, and third assembly holes are respectively provided at the positions corresponding to the second assembly holes of the heat conductor 32. The second fastener extends into the second assembly hole and the third assembly hole to fix the heat dissipation member 311 and the heat conductor 32.

[0035] Furthermore, the heat dissipation component 31 also includes a heat dissipation fan 312. An installation area is provided in the middle of the inner end of the heat dissipation component 311. The heat dissipation fan 312 is provided in the installation area of ​​the heat dissipation component 311. The heat dissipation efficiency of the heat dissipation component is improved through the setting of the heat dissipation fan 312.

[0036] Furthermore, the outer end of the heat sink 311 is provided with a plurality of positioning posts 3111, and the heat conductor 32 is provided with a positioning groove 321 for positioning and cooperating with the positioning posts 3111. Through the positioning and cooperating of the positioning posts 3111 and the positioning grooves 321, on the one hand, it is possible to facilitate the assembly of the heat conductor 32 and the heat sink 311, and on the other hand, it is possible to improve the connection stability of the heat conductor 32 and the heat sink 311.

[0037] The hot and cold compress assembly 30 also includes a thermistor electrically connected to the semiconductor component 33. The thermistor controls the temperature of the semiconductor by measuring temperature changes. The thermistor is specifically an NTC thermistor. The thermistor controls the temperature of the semiconductor by measuring temperature changes is a prior art and is not described in detail in this utility model.

[0038] In summary, the present invention has the following beneficial effects:

[0039] The hot and cold compress assembly installation structure of the present invention is easy to assemble and has reliable connection. The semiconductor component 33 and the massage component 35 are in close contact, thereby effectively ensuring the cooling and heating effects. During assembly, the massage component 35 is first placed on the outer end of the silicone head 21. The semiconductor component 33 and the heat-conducting component 32 are placed in sequence inside the silicone head 21. The crimping component 34 is then installed on the inner end of the silicone head 21 and the crimping component 34 and the massage component 35 are fixedly connected, thereby tightly crimping the semiconductor component 33 and the heat-conducting component 32 between the crimping component 34 and the massage component 35. Finally, the heat dissipation component 31 and the heat-conducting component 32 are fixedly connected so that the contact surfaces of the heat dissipation component 31 and the heat-conducting component 32 are in close contact.

[0040] The above description is only a preferred embodiment of the present invention. Therefore, any equivalent changes or modifications made according to the structure, features and principles described in the scope of the present invention patent application are included in the scope of the present invention patent application.

Claims

1. A hot and cold compress assembly mounting structure for an eye massager, comprising a housing (10), a silicone sleeve (20), and a hot and cold compress assembly (30), wherein the silicone sleeve (20) is disposed within the housing (10), the silicone sleeve (20) being provided with a silicone head (21) extending out of the housing (10), the silicone head (21) being disposed around the human eye, and characterized in that: The hot and cold compress assembly (30) includes a heat dissipation assembly (31), a heat conducting member (32), a semiconductor member (33), a crimping member (34) and a massage member (35), wherein the massage member (35) is arranged at the outer end of the silicone head (21), the crimping member (34) is arranged at the inner end of the silicone head (21), the crimping member (34) is fixedly connected to the massage member (35) so that the silicone head (21) is clamped between the crimping member (34) and the massage member (35), and the crimping member (35) is fixedly connected to the massage member (35) so that the silicone head (21) is clamped between the crimping member (34) and the massage member (35). 4) The massage member (35) and the silicone head (21) are surrounded to form an installation cavity (36), the heat conducting member (32) and the semiconductor member (33) are fixedly clamped in the installation cavity (36) from the inside to the outside, the heat dissipation assembly (31) is arranged in the housing (10) and is fixedly connected to the heat conducting member (32), and the crimping member (34) cooperates with the silicone head (21) to form a lead channel (37) for the electrical connection line of the semiconductor member (33) to extend into the housing (10).

2. The hot and cold compress assembly mounting structure of an eye massager according to claim 1, characterized in that: The inner end of the massage member (35) is provided with a plurality of first connecting columns (351), the silicone head (21) is provided with an avoidance groove for the first connecting columns (351) to extend into the crimping member (34), the crimping member (34) is provided with a first assembly hole (341) at a position corresponding to the first connecting column (351), and the crimping member (34) and the massage member (35) are fixedly connected as a whole by a first fastener.

3. The hot and cold compress assembly mounting structure of an eye massager according to claim 1, characterized in that: The outer periphery of the massage member (35) is provided with an outer ring edge (352), the silicone head (21) is provided with an annular groove (211) adapted to the outer ring edge (352), and the outer ring edge (352) of the massage member (35) is inserted into the annular groove (211).

4. The hot and cold compress assembly mounting structure of an eye massager according to claim 1, characterized in that: The inner end surface of the massage member (35) is provided with a flat surface, and the inner end of the crimping member (34) is provided with a pressing portion (342). The flat surface of the massage member (35) cooperates with the pressing portion (342) of the crimping member (34) to tightly press the heat conducting member (32) and the semiconductor member (33) into the mounting cavity (36).

5. The installation structure of the hot and cold compress assembly of the eye massager according to claim 4, characterized in that: The semiconductor component (33) is in close contact with the contact end of the heat conducting component (32).

6. The hot and cold compress assembly mounting structure of an eye massager according to claim 4, characterized in that: The heat dissipation assembly (31) comprises a heat dissipation member (311), wherein the heat dissipation member (311) is fixedly connected to the heat conducting member (32) via a second fastener, so that the outer end surface of the heat dissipation member (311) is in close contact with the inner end surface of the heat conducting member (32), and the inner end surface of the heat dissipation member (311) is a fin-shaped structure.

7. The installation structure of the hot and cold compress assembly of the eye massager according to claim 6, characterized in that: The heat dissipation component (31) further comprises a heat dissipation fan (312); a mounting area is provided in the middle of the inner end of the heat dissipation component (311); and the heat dissipation fan (312) is arranged at the mounting area of ​​the heat dissipation component (311).

8. The hot and cold compress assembly mounting structure of an eye massager according to claim 6, characterized in that: The outer end of the heat dissipation element (311) is provided with a plurality of positioning columns (3111), and the heat conducting element (32) is provided with positioning grooves (321) that are positioned and matched with the positioning columns (3111).

9. The hot and cold compress assembly mounting structure of an eye massager according to any one of claims 1 to 8, characterized in that: The massage piece (35) is a metal heat-conducting piece (32).

10. The hot and cold compress assembly mounting structure of an eye massager according to claim 9, characterized in that: The hot and cold compress assembly (30) further includes a thermistor electrically connected to the semiconductor component (33).