Hair straightening comb with vibratory massage function

By using a combination of metal thermal conduction teeth and thermal insulation teeth in the straight hair comb, the problems of insufficient vibration massage and heating damage are solved, providing a comfortable combing experience and protection effect.

CN223208001UActive Publication Date: 2025-08-12DONGGUAN CHANGFA PLASTIC ELECTRONICS CO LTD
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Patent Information

Application Number
CN202422128165.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-30
Publication Date
2025-08-12
Estimated Expiration
2034-08-30

AI Technical Summary

Technical Problem

The existing straight hair comb vibration massage function is insufficient and can easily damage the hair and scalp. The high temperature of the heated comb teeth may cause burning or damage.

Method used

The design is adopted that combines metal thermal teeth with thermal insulation teeth. The metal thermal teeth are used for heating and transferring heat. The thermal insulation teeth are used for thermal insulation and buffering to avoid direct contact with the skin, and provide massage effect with a vibrating motor.

Benefits of technology

Effective scalp massage and hair protection is achieved, avoiding direct contact damage while providing a comfortable combing experience and heating function.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of combs, in particular to a vibrating massage hair straightening comb which comprises a shell and a comb tooth assembly installed on the shell, a vibrating assembly is arranged in the shell and comprises an installation cavity formed in the shell, and the installation cavity is provided with a vibrating motor and a motor support used for installing the vibrating motor. The comb tooth assembly comprises a plurality of metal heat conduction teeth and heat insulation teeth arranged on the metal heat conduction teeth in a sleeving mode, and the heat insulation teeth are of hollow structures and comprise heat insulation heads arranged at the ends of the metal heat conduction teeth in a sleeving mode and heat insulation connecting strips attached to the side portions of the metal heat conduction teeth. When the vibration motor installed on the motor support works, the shell vibrates, and when the comb tooth assembly makes contact with the scalp, the good massage effect is achieved; the heat insulation head and the heat insulation connecting strip are matched, the metal heat conduction teeth can be prevented from making direct contact with the skin, hair damage is reduced, and in addition, when the comb tooth assembly makes contact with the hair and the scalp, the vibration motor is matched, hair follicles can be stimulated, and the scalp can be stimulated and massaged.
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Description

Technical Field

[0001] The utility model relates to the technical field of combs, in particular to a vibration massage hair straightening comb. Background Art

[0002] A hair straightening comb is one of the essential daily necessities in our daily life. An ordinary hair straightening comb generally consists of a comb head and a handle. Moreover, most ordinary hair straightening combs only have a single combing function and do not have other health care and physiotherapy functions. They are single in function and inconvenient to use.

[0003] As the pace of urban life continues to accelerate, many urban illnesses stem from excessive mental stress. Straightening combs, which frequently come into contact with sensitive scalps, are therefore very popular for their massage functions. However, the vibration of existing straightening combs drives the handle to vibrate as well, which not only affects the grip and can even cause numbness, but also weakens the vibration of the comb teeth, resulting in insufficient massage force. Furthermore, due to static electricity, vibrating massage combs tend to pull hair, and the vibration increases the pulling and pain, reducing the user experience.

[0004] The utility model, application number CN201720826214.3, discloses a massaging negative ion hair straightening comb, comprising a hair straightening comb body and a negative ion generator disposed within the comb body. The comb body comprises a handle and comb teeth fixedly connected to the handle. The handle is further provided with a fixing seat, the upper end of which is provided with a vibration-damping elastic pad. The lower end of the comb teeth is provided with a vibration plate, the lower end of which is provided with a mounting block protruding downwardly. A motor is secured to the mounting block, and an eccentric is mounted on the motor's rotating shaft. The vibration-damping elastic pad abuts the mounting block. The motor with the eccentric generates vibrations that drive the comb teeth, providing the massaging negative ion hair straightening comb with a superior massage function. The vibration-damping elastic pad eliminates the effect of motor vibration on the handle, enhancing the comb's grip. Furthermore, the negative ion generator eliminates static electricity, enhancing the hair smoothing effect.

[0005] The existing method often uses heat-conducting comb teeth to heat them directly before applying them to the hair. The heating temperature of the comb teeth in this method is relatively high, and it is easy to burn the hair or damage the scalp when directly applying them to the hair. The plastic comb teeth are prone to burnt when used for a long time. Utility Model Content

[0006] The purpose of the utility model is to provide a vibrating massage hair straightening comb to address the deficiencies of the prior art.

[0007] To achieve the above purpose, the technical solution of the utility model is as follows:

[0008] A vibrating massage hair straightening comb comprises a shell and a comb tooth assembly mounted on the shell. The shell is provided with a vibration assembly, the vibration assembly comprises a mounting cavity formed in the shell, the mounting cavity is provided with a vibration motor and a support member for mounting the vibration motor; the comb tooth assembly comprises a plurality of metal heat-conducting teeth and heat-insulating teeth sleeved on the metal heat-conducting teeth, the heat-insulating teeth being hollow in structure, and comprising a heat-insulating head sleeved on the end of the metal heat-conducting teeth and a heat-insulating connecting strip affixed to the side of the metal heat-conducting teeth.

[0009] Furthermore: the heat-insulating teeth and the metal heat-conducting teeth are spliced together to form an integrated columnar structure.

[0010] Furthermore: a connecting protrusion is formed on the outer end of the metal heat-conducting tooth, and a connecting groove that matches the connecting protrusion is formed on the inner concave of the heat-insulating head.

[0011] Furthermore: a first connecting end face is formed at the outer end of the metal heat-conducting tooth, a connecting protrusion is formed on the first connecting end face, a connecting groove is formed on the second connecting end face, and a buffer gap exists between the first connecting end face and the second connecting end face.

[0012] Furthermore: the heat-insulating head is formed with a curved surface that contacts the scalp and hair.

[0013] Furthermore: a guide protrusion protruding inward is formed on the heat-insulating connecting strip along its length direction, and a guide groove cooperating with the guide protrusion is formed on the side of the metal heat-conducting tooth along its length direction.

[0014] Furthermore: the outer ring curvature of the heat-insulating teeth is adapted to the outer ring curvature of the metal heat-conducting teeth.

[0015] Furthermore: the comb tooth assembly also includes a metal heat-conducting plate for mounting the metal heat-conducting teeth and a heat-insulating plate for mounting the heat-insulating teeth.

[0016] Furthermore: the metal heat-conducting teeth are aluminum alloy heat-conducting teeth, and the heat-insulating teeth are nylon comb teeth.

[0017] Furthermore: an eccentric wheel is installed at the driving end of the vibration motor, and when the eccentric wheel rotates, it can contact the shell to drive the shell to generate vibration.

[0018] The beneficial effects of the present invention are as follows: when the vibration motor installed on the support is working, the shell will vibrate, and when the comb tooth assembly contacts the scalp, it has a better massage effect; combined with the heat insulation head and the heat insulation connecting strip, it can prevent the metal heat-conducting teeth from directly contacting the skin, reducing damage to the hair. In addition, when the comb tooth assembly contacts the hair and scalp, combined with the vibration motor, it can stimulate the hair follicles and massage the scalp. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 This is a schematic diagram of the structure of a straight hair comb.

[0020] Figure 2 Schematic diagram of the explosive structure of a straight hair comb.

[0021] Figure 3 It is a structural diagram of the comb tooth assembly.

[0022] Figure 4 This is a schematic diagram of the connection between the connecting protrusions of the heat-insulating teeth and the connecting grooves of the metal heat-conducting teeth.

[0023] Figure 5 It is a cross-sectional schematic diagram of the heat-insulating teeth and the metal heat-conducting teeth.

[0024] Reference numerals include:

[0025] 1- Shell,

[0026] 11-upper shell, 12-lower shell, 13-installation cavity, 14-motor bracket, 15-vibration motor, 16-eccentric wheel

[0027] 2-comb tooth assembly,

[0028] 20-insulation tooth, 21-insulation head, 22-insulation connecting strip, 23-arc surface, 24-guide protrusion,

[0029] 25-connection groove,

[0030] 3-metal heat-conducting teeth, 31-connecting protrusions, 32-guide grooves, 33-first connecting end faces,

[0031] 34 - second connecting end surface, 35 - metal heat conducting plate, 36 - heat insulating plate, 37 - opening. DETAILED DESCRIPTION

[0032] The present invention is described in detail below with reference to the accompanying drawings.

[0033] like Figure 1-5 As shown, a vibration massage straightening comb includes a shell 1 and a comb tooth assembly 2 installed in the shell 1. The shell 1 is provided with a vibration assembly, which includes a mounting cavity 13 formed in the shell 1. The mounting cavity 13 is provided with a vibration motor 15 and a support for mounting the vibration motor 15. When the vibration motor 15 installed in the support is in operation, the shell 1 will vibrate, and when the comb tooth assembly 2 contacts the scalp, it has a better massage effect.

[0034] Specifically, the housing 1 includes an upper housing 11 and a lower housing 12 joined together. Each housing 11 and 12 is formed with a mounting cavity 13. A supporting member is a motor bracket 14 mounted within the mounting cavity 13. An eccentric wheel 16 is mounted on the driving end of a vibration motor 15. When the eccentric wheel 16 rotates, it contacts the housing 1 to drive the housing 1 to vibrate. Powered by a battery, the vibration motor 15 rotates, thereby driving the eccentric wheel 16 mounted on the driving end to rotate and vibrate, which in turn drives the housing 1 to vibrate. When the comb assembly 2 contacts the scalp, it provides a good massage effect, thus maintaining hair.

[0035] The comb tooth assembly 2 includes a plurality of metal heat-conducting teeth 3 and heat-insulating teeth 20 sleeved on the metal heat-conducting teeth 3. The heat-insulating teeth 20 are hollow structures. The heat-insulating teeth 20 include a heat-insulating head 21 sleeved on the end of the metal heat-conducting teeth 3 and a heat-insulating connecting strip 22 attached to the side of the metal heat-conducting teeth 3. The combination of the heat-insulating head 21 and the heat-insulating connecting strip 22 can prevent the metal heat-conducting teeth 3 from directly contacting the skin, thereby reducing damage to the hair. In addition, when the comb tooth assembly 2 contacts the hair and scalp, it can stimulate the hair follicles and massage the scalp in conjunction with the vibration motor 15.

[0036] The heat-insulating teeth 20 and the metal heat-conducting teeth 3 are spliced together to form an integrated columnar structure; the metal heat-conducting teeth 3 will not protrude outward and will not be exposed. When combing the hair, the hair, skin, etc. will not come into direct contact with the metal heat-conducting teeth 3. Heat is conducted through the heat-insulating connecting strips 22 and the heat-insulating head 21, which effectively protects the hair.

[0037] Furthermore, a connecting protrusion 31 is formed on the outer end of the metal thermally conductive tooth 3, and a connecting groove 25 is formed on the inner side of the thermal insulation head 21 to cooperate with the connecting protrusion 31; when the thermal insulation tooth 20 is spliced with the metal thermally conductive tooth 3, the thermal insulation head 21 is connected to the connecting protrusion 31 of the metal thermally conductive tooth 3 through the connecting groove 25, and the thermal insulation tooth 20 mounted on the metal thermally conductive tooth 3 can be stably connected to the metal thermally conductive tooth 3. When combing the hair, the thermal insulation tooth 20 is not easy to fall off the metal thermally conductive tooth 3, thereby ensuring the stability of the connection and better thermal insulation effect.

[0038] Furthermore, a first connecting end face 33 is formed at the outer end of the metal heat-conducting tooth 3, a connecting protrusion 31 is formed on the first connecting end face 33, a second connecting end face 34 is formed on the heat-insulating head 21, and a connecting groove 25 is formed on the second connecting end face 34; the metal heat-conducting tooth 3 can be in surface contact with the second connecting end face 34 of the heat-insulating head 21 through the first connecting end face 33, and a portion of the heat of the metal heat-conducting tooth 3 can be transferred to the heat-insulating head 21. When the heat-insulating head 21 contacts the hair and scalp, it has a heat-conducting effect, which not only prevents the metal heat-conducting tooth 3 from contacting the hair and scalp, but also has a heating effect, resulting in a better combing effect.

[0039] In one embodiment, a buffer gap exists between the first connecting end face 33 and the second connecting end face 34. This prevents heat from the metal heat-conducting teeth 3 from being transferred through the tips of the metal heat-conducting teeth 3 to the tip of the heat-insulating head 21, thus preventing damage to the scalp. The gap also allows the heat-insulating teeth 20 to move freely, providing a certain amount of movement cushion when the heat-insulating head 21 contacts the scalp, thus preventing damage to the scalp. After buffering contact, the metal heat-conducting teeth 3 make surface contact with the second connecting end face 34 of the heat-insulating head 21 through the first connecting end face 33, allowing some heat from the metal heat-conducting teeth 3 to be transferred to the heat-insulating head 21. When the heat-insulating head 21 contacts the hairy scalp, some heat from the metal heat-conducting teeth 3 can be transferred to the heat-insulating head 21.

[0040] Furthermore, the heat-insulating head 21 is formed with an arc-shaped surface 23 that contacts the scalp and hair; the outer ring curvature of the heat-insulating teeth 20 is adapted to the outer ring curvature of the metal heat-conducting teeth 3; the tips of the heat-insulating teeth 20 are connected to form a virtual arc surface, thereby improving the hair drying effect.

[0041] In order to further facilitate the combing effect, the heat-insulating teeth 20 are flat and oval in shape, which provides a better combing effect.

[0042] The insulating connecting strip 22 is formed with inwardly projecting guide protrusions 24 along its length, and the metal heat-conducting teeth 3 are formed with guide grooves 32 along their length that mate with the guide protrusions 24. This prevents the metal heat-conducting teeth 3 from swinging horizontally, and also prevents swinging to the point where a gap forms between the metal heat-conducting teeth 3 and the insulating teeth 20, which could cause hair jams.

[0043] The comb assembly 2 also includes a metal heat-conducting plate 35 for mounting the metal heat-conducting teeth 3, and a heat-insulating plate 36 for mounting the heat-insulating teeth 20. The housing 1 is formed with a drive opening 37, and both the metal heat-conducting plate 35 and the heat-insulating plate 36 are mounted in the drive opening 37. During installation, the heat-insulating plate 36 is sleeved onto the metal heat-conducting teeth 3 of the metal heat-conducting plate 35 via the formed heat-insulating teeth 20. At this point, the guide protrusions 24 formed on the heat-insulating connecting strip 22 slide together with the guide grooves 32 of the metal heat-conducting teeth 3, achieving a sliding connection. This connection is then achieved until the connecting protrusions 31 at the ends of the metal heat-conducting teeth 3 engage with the connecting grooves 25 of the heat-insulating head 21, achieving a fixed connection. This prevents the metal heat-conducting teeth 3 from being horizontally limited and from swaying.

[0044] The metal heat-conducting teeth 3 are made of aluminum alloy, while the heat-insulating teeth 20 are made of nylon. In this invention, the aluminum alloy teeth can be replaced with teeth made of other heat-conducting materials, allowing the heat from the heating plate to be transferred to the heated arc surface. Replacing the nylon teeth with heat-insulating teeth, such as plastic teeth, prevents heat from being transferred to the insulating teeth, thus providing insulation.

[0045] A heating assembly is provided in the housing 1 , and the heating assembly includes a heating plate, which is connected to the metal heat-conducting plate 35 , and heat is conducted to the metal heat-conducting teeth 3 through the heating of the heating plate.

[0046] In summary, it can be seen that the present invention has the above-mentioned excellent characteristics, which can enhance its performance unprecedented in the past and become a product with great practical value.

[0047] The above contents are only preferred embodiments of the present invention. For ordinary technicians in this field, according to the concept of the present invention, there may be changes in the specific implementation methods and application scope. The content of this specification should not be understood as limiting the present invention.

Claims

1. A vibrating massage hair straightening comb, comprising a housing and a comb tooth assembly mounted on the housing, characterized in that: A vibration assembly is provided in the housing, the vibration assembly including a mounting cavity formed in the housing, the mounting cavity being provided with a vibration motor and a support member for mounting the vibration motor; The comb tooth assembly includes multiple metal heat-conducting teeth and heat-insulating teeth sleeved on the metal heat-conducting teeth. The heat-insulating teeth are hollow structures. The heat-insulating teeth include heat-insulating heads sleeved on the ends of the metal heat-conducting teeth and heat-insulating connecting strips attached to the sides of the metal heat-conducting teeth.

2. A vibrating massage hair straightening comb according to claim 1, characterized in that: The heat-insulating teeth and the metal heat-conducting teeth are spliced to form an integrated columnar structure.

3. The vibrating massage hair straightening comb according to claim 1, characterized in that: The outer end of the metal heat-conducting tooth is formed with a connecting protrusion, and the inner concave end of the heat-insulating head is formed with a connecting groove that matches the connecting protrusion.

4. The vibrating massage hair straightening comb according to claim 3, characterized in that: The outer end of the metal heat-conducting tooth is formed with a first connecting end face, a connecting protrusion is formed on the first connecting end face, a connecting groove is formed on the second connecting end face, and a buffer gap is formed between the first connecting end face and the second connecting end face.

5. The vibrating massage hair straightening comb according to claim 1, characterized in that: The heat-insulating head is formed with an arc-shaped surface that contacts the scalp and hair.

6. The vibrating massage hair straightening comb according to claim 3, characterized in that: The heat-insulating connecting strip is formed with a guide protrusion protruding inwardly along the length direction, and the side portion of the metal heat-conducting tooth is formed with a guide groove matched with the guide protrusion along the length direction.

7. The vibrating massage hair straightening comb according to claim 1, characterized in that: The outer ring curvature of the heat-insulating teeth matches the outer ring curvature of the metal heat-conducting teeth.

8. The vibrating massage hair straightening comb according to claim 1, characterized in that: The comb tooth assembly further comprises a metal heat conducting plate for mounting the metal heat conducting teeth and a heat insulating plate for mounting the heat insulating teeth.

9. A vibrating massage hair straightening comb according to any one of claims 1 to 8, characterized in that: The metal heat-conducting teeth are aluminum alloy heat-conducting teeth, and the heat-insulating teeth are nylon comb teeth.

10. The vibrating massage hair straightening comb according to claim 1, characterized in that: An eccentric wheel is installed at the driving end of the vibration motor. When the eccentric wheel rotates, it can contact the shell to drive the shell to vibrate.

Citation Information

Patent Citations

  • Massage anion hair straightening comb

    CN207011895U