Hair fluffy shaping device

By combining heating elements, infrared radiation, and anti-static components, the problem of hair damage and static electricity during use of existing volumizing combs is solved, achieving rapid hair styling and healthy hair care.

CN224055502UActive Publication Date: 2026-03-31付冬强
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-25
Publication Date
2026-03-31

AI Technical Summary

Technical Problem

Existing volumizing combs are prone to damaging hair, generating static electricity, and producing poor styling results during use.

Method used

It combines a heating element, an infrared group, and an anti-static group. The infrared group promotes blood circulation and hair follicle regeneration, the anti-static group neutralizes positive ions, and the combination of a fan and air guide structure achieves cool air shaping, reducing heat damage and static electricity generation.

Benefits of technology

Reduces hair damage, enhances hair volume and smoothness, promotes scalp health, and achieves quick styling.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224055502U_ABST
Patent Text Reader

Abstract

A hair fluffy shaping device comprises a holding piece, a control part is arranged in the holding piece, a heating assembly is arranged at one end of the holding piece, at least one hair combing piece is arranged on the heating assembly, the hair combing piece is used for combing hair and shaping the hair through cold air, and the hair combing piece is provided with an air guide structure. At least one infrared group and at least one static electricity eliminating group are arranged in the heating assembly, a fan connected with the control part is arranged in the holding part, and a flow dividing part is arranged at the joint of the heating assembly and the holding part and used for uniformly distributing airflow formed by the fan to the air guide structures of the hair combing parts. A switching unit is arranged at the end, close to the flow dividing piece, of the holding piece, and the switching unit, the draught fan, the infrared set and the static electricity removing set are electrically connected with the control part. The hair can be fluffy and glossy, and the hair and scalp can be cared.
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Description

Technical Field

[0001] This utility model relates to the technical field of hair styling tools, specifically to a hair volumizing and shaping device. Background Technology

[0002] A volumizing styling comb is a hair styling tool that uses heating and curling functions to help users quickly create voluminous hairstyles, greatly improving the convenience of hair styling. However, this type of hair styling tool can easily cause some damage to the hair during the styling process because it relies on heat. In addition, the volumizing styling comb is prone to generating static electricity through friction with the hair during styling, and the fact that it relies on the generated heat for styling results in poor hair styling effects. Summary of the Invention

[0003] The purpose of this invention is to overcome the shortcomings of the existing technology and provide a hair volumizing styling device. This styling device can reduce the generation of static electricity in the hair, prevent frizz, and make the hair more voluminous, smooth, and shiny. It can also care for the hair and scalp, reduce the damage to the hair during the heat styling process, and at the same time, allow the user to quickly switch to the cool air mode to set the hair while styling, thereby achieving rapid hair styling and setting.

[0004] To achieve the above objectives, the present invention adopts the following technical solution:

[0005] A hair volumizing styling device includes a grip with a control unit inside. A heating element is located at one end of the grip, and at least one hair comb is mounted on the heating element for combing and styling hair with cool air. The hair comb has an air guide structure for guiding airflow to style the hair. The heating element contains at least one infrared group and at least one anti-static group. A fan connected to the control unit is located within the grip, and the fan pushes air in the grip to form an airflow that is delivered to each hair comb. A flow divider is located at the connection between the heating element and the grip, and the flow divider evenly distributes the airflow generated by the fan to the air guide structures of each hair comb. A switching unit is located near the flow divider on the grip for switching between cool air modes. The switching unit, fan, infrared group, and anti-static group are electrically connected to the control unit.

[0006] The heating component comprises at least one first heat-conducting part, at least one second heat-conducting part spliced ​​with the first heat-conducting part, and at least one heating element respectively disposed in the first heat-conducting part and the second heat-conducting part. The hair comb is respectively embedded on the outer surface of the first heat-conducting part and the second heat-conducting part, and / or the hair comb is respectively disposed between the splice of the first heat-conducting part and the second heat-conducting part.

[0007] The heating component has at least one first clamping groove at each end of the first heat-conducting part and a second clamping groove at each end of the second heat-conducting part. The first clamping groove at one end of the first heat-conducting part cooperates with the second clamping groove on the same side of the second heat-conducting part to clamp the infrared group. The first clamping groove at the other end of the first heat-conducting part cooperates with the second clamping groove on the same side of the second heat-conducting part to clamp the static elimination group.

[0008] The hair comb includes a sliding part and at least two combing parts disposed on the surface of the sliding part. The sliding part is connected to a first heat-conducting part and / or a second heat-conducting part of a heating component. The side of the sliding part facing the first heat-conducting part or the second heat-conducting part is provided with at least one air guide groove. The air guide groove is provided with at least one air guide hole. The air guide hole is disposed through the bottom of the air guide groove and the air guide hole. The air guide groove and each of the air guide holes constitute the air guide structure of the hair comb.

[0009] The infrared assembly consists of a lamp board and at least one LED infrared lamp bead disposed on the lamp board. The lamp board is clamped between a first clamping groove at one end of the first heat-conducting part and a second clamping groove on the same side of the second heat-conducting part by a first mounting base.

[0010] The static elimination assembly includes a negative ion generator and at least one negative ion emitting needle connected to the negative ion generator. The negative ion generator is electrically connected to the control unit. The negative ion emitting needle is clamped between a first clamping groove at the other end of the first heat-conducting part and a second clamping groove on the same side of the second heat-conducting part via a second mounting base.

[0011] The fan is located at one end of the gripper near the end connected to the heating element. The gripper has at least one airflow hole at the end corresponding to the fan, and at least one air inlet at the other end of the gripper. Each air inlet is used to compensate for the air output from inside the gripper.

[0012] The fan is provided with a connecting sleeve, and the surface of the connecting sleeve is provided with at least two mounting parts. Each mounting part is fixedly connected to the holding member. At least one air guide is provided between each mounting part. Each air guide is used to divert and conduct the airflow generated by the fan.

[0013] The switching unit includes a switching control board disposed on the grip and a switching switch electrically connected to the switching control board. The switching switch is used to control the switching of the cold air mode. The switching switch is provided with a switching button. The switching control board is electrically connected to the control unit.

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

[0015] 1. Through the flow divider, the airflow generated by the fan can be evenly distributed to each comb component, and then output from each air guide hole through the air guide groove of each comb component. Through airflow guidance, the airflow in the cold air mode can be output from each comb component to the maximum extent. This output cold air can not only cool down the combing part of each comb component, but also work with the combing part to quickly style the hair. In addition, when the flow divider distributes the airflow, some gas is also delivered to the surface of the heating component to cool down the heating component, thereby effectively improving the styling effect of this invention in the cold air mode.

[0016] 2. The infrared beam design on the heating element allows the infrared rays emitted by the heating element to penetrate the skin surface directly when the user combs or styles their hair. This dilates blood vessels and increases blood supply to the scalp, promoting blood circulation to some extent. Furthermore, infrared rays have antibacterial properties, inhibiting sebum secretion on the scalp and helping to remove dandruff. Additionally, infrared rays promote hair growth; if hair loss is severe and thinning occurs, infrared rays can stimulate hair follicles to regenerate, helping to revive them and making hair thicker.

[0017] 3. The anti-static design on the heating element allows the negative ions generated when the user combs or styles their hair to neutralize the positive ions in the hair, reducing static electricity and keeping the hair smooth, preventing frizz caused by static. Negative ions also help repair damaged hair cuticles, making hair more voluminous, smooth, and shiny. Furthermore, negative ions have antibacterial and anti-inflammatory properties, effectively inhibiting bacteria and fungi on the scalp and reducing scalp inflammation. They also reduce scalp oil secretion, inhibit dandruff production, leaving the scalp feeling refreshed. Additionally, negative ions help improve the scalp's pH balance, creating a healthier scalp environment.

[0018] 4. The switching unit is located on the grip near the splitter, which makes it easier for users to switch the cool air mode to style their hair, thus achieving a quick styling effect.

[0019] In summary, this invention, when styling hair, utilizes the interaction between the infrared group and the anti-static group to reduce static electricity in the hair, prevent frizz, and make the hair more voluminous, smooth, and shiny. It also cares for the hair and scalp, reducing damage to the hair during heated styling. At the same time, the air guiding structure of the comb, combined with the cool air distribution of the splitter, and the switching unit located near the splitter, allows the user to quickly switch the cool air mode while styling to set the hair, thus achieving rapid styling and setting of the hair. Attached Figure Description

[0020] Figure 1 This is a three-dimensional structural diagram of the present invention.

[0021] Figure 2 This is an exploded structural diagram of the present invention in the state without a gripping component.

[0022] Figure 3 This is an exploded structural diagram of the heating element, infrared group, and static elimination group of this utility model.

[0023] Figure 4 This is a three-dimensional structural diagram of the hair comb component of this utility model.

[0024] Figure 5 This is a three-dimensional structural diagram of the diversion component of this utility model.

[0025] Figure 6 This is an exploded structural diagram of the fan and connecting sleeve of this utility model.

[0026] Figure 7 This is an exploded structural diagram of the gripping component of this utility model.

[0027] Figure 8 This is a schematic diagram of the structure of the second shell of this utility model.

[0028] Figure 9 This is a schematic diagram of the grip sleeve of this utility model.

[0029] Figure 10 This is a schematic diagram of the structure of the infrared group and the hidden strip of this utility model.

[0030] Explanation of icon numbers:

[0031] 1-Holding component; 11-Control unit; 111-Power switch; 112-Indicator light; 12-Fan; 121-Connecting sleeve; 1211-Mounting part; 1212-Air guide plate; 13-First housing; 14-Second housing; 141-Mounting groove; 142-Connecting hole; 143-Connecting part; 144-Connecting groove; 15-Holding sleeve; 151-Perforation; 16-Switching control board; 161-Switch switch; 1a-Power button; 1aa-Touch part; 1b-Light guide part; 1c-Power cord; 1d-Edge; 1e-Airflow hole; 1f-Air inlet; 1g-Switch button; 2-Heating unit Components; 21-First heat-conducting part; 211-First clamping groove; 22-Second heat-conducting part; 221-Second clamping groove; 2a-Fixing groove; 2b-Sliding groove; 3-Hair comb; 31-Sliding part; 32-Hair comb; 33-Air guide groove; 34-Air guide hole; 4-Infrared group; 41-Lamp board; 42-LED infrared lamp bead; 43-First mounting base; 5-Static elimination group; 51-Negative ion emitting needle; 52-Second mounting base; 6-Diverter; 61-Snap-fit ​​part; 62-Connecting hole; 63-Snap-slot; 64-Diverter hole; 7-End fixing part; 71-Limiting groove; 8-Cap; 9-Hidden strip. Detailed Implementation

[0032] The present invention will be further described below with reference to the accompanying drawings:

[0033] like Figure 1-10As shown, this utility model relates to a hair volumizing styling device, including a grip, a control unit 11 inside the grip, a heating element 2 at one end of the grip, and at least one hair comb 3 on the heating element 2 for combing and cool-air styling of the hair. The hair comb 3 has an air guiding structure for guiding airflow to style the hair. The heating element 2 contains at least one infrared group 4 and at least one anti-static group 5. A fan 12 connected to the control unit 11 is located inside the grip, and the fan 12 is used to push the air in the grip to form an airflow to each hair comb 3. The airflow distribution mechanism includes a diverter 6 at the connection between the heating element 2 and the grip, which distributes the airflow generated by the fan 12 evenly to the air guide structures of each of the combing parts 3. A switching unit is located near the diverter 6 on the grip 1, used to switch between cold air modes. The switching unit, fan 12, infrared group 4, and antistatic group 5 are electrically connected to the control unit 11. The grip consists of a first housing 13 and a second housing 14 fastened to the first housing 13. The control unit 11 is installed in the first housing 13 and includes a power switch 111 and... At least one indicator light 112 is provided. A power button 1a is provided on the second housing 14 at the position corresponding to the power switch 111. The bottom of the power button 1a is provided with a touch part 1aa, which controls the power switch 111 by pressing. A light guide part 1b is provided on the second housing 14 corresponding to the indicator light 112. The light guide part 1b is used to conduct the light emitted by the indicator light 112 outward so that the user can more directly observe the current status of the present invention (such as power-on indication, gear adjustment indication, etc.). The second housing 14 is provided with a mounting groove 141 at the position where the light guide plate is located. The mounting groove 141 corresponds to... The indicator light 112 is provided with a connection hole 142, and at least one connection part 143 is also provided in the mounting groove 141. The connection part 143 cooperates with the connection hole 142 to install the light guide plate in the mounting groove 141. In addition, the control unit 11 is also electrically connected to a power plug (not shown) through a power cord 1c. The power plug is used to connect the present invention to the mains power. It should be noted that in order to improve the comfort of the grip, a grip sleeve 15 is also provided on the grip. The grip sleeve 15 has through holes 151 respectively corresponding to the positions of the indicator light 112 and the power button 1a.

[0034] Furthermore, such as Figure 2 , 5As shown, one end of the diverter 6 is provided with a snap-fit ​​part 61. The inner side of the snap-fit ​​part 61 is a hollow structure (not shown). The snap-fit ​​part 61 is provided with at least one through hole 62, which penetrates the interior of the snap-fit ​​part 61. The hollow structure is connected to the interior of the heating element 2. The connection between the snap-fit ​​part 61 and the diverter 6 is provided with a slot 63. The inner side of one end of the first housing 13 and the second housing 14 of the aforementioned gripping member is provided with a snap edge 1d. The two snap edges 1d are engaged in the slot 63 of the diverter 6. The heating element 2 is installed on one end of the gripping member through the connection between the diverter 6 and the gripping member. The diverter 6 is provided with two or more diverting holes 64 near the edge. The airflow delivered by the fan 12 is diverted to the heating element 2 through each diverting hole 64.

[0035] like Figure 1-3 As shown, the heating component 2 comprises at least one first heat-conducting part 21, at least one second heat-conducting part 22 spliced ​​with the first heat-conducting part 21, and at least one heating element (not shown) respectively disposed in the first heat-conducting part 21 and the second heat-conducting part 22. A hair comb 3 is respectively embedded on the outer surface of the first heat-conducting part 21 and the second heat-conducting part 22, and / or the hair comb 3 is respectively disposed between the splice points of the first heat-conducting part 21 and the second heat-conducting part 22. The heating element is electrically connected to the control unit 11. One end of the first heat-conducting part 21 and the second heat-conducting part 22 is fixedly connected to the distributor 6 by screws, and the other end of the first heat-conducting part 21 and the second heat-conducting part 22 is fixed to an end fixing member 7 by screws. The end fixing member 7 is fitted with a cap 8. The cap 8 conceals the end fixing member 7, enhancing the aesthetic appearance of this invention. The end fixing member 7, facing the heating element 2, also has at least one limiting groove 71, which limits one end of the hair comb 3. The inner sides of the first heat-conducting part 21 and the second heat-conducting part 22 are respectively provided with fixing grooves 2a for installing the heating element. The fixing grooves 2a not only securely install the heating element but also allow the heat generated by the heating element to be more directly conducted to the first heat-conducting part 21 and the second heat-conducting part 22, minimizing heat loss. With the same heating time and power consumption, this invention maximizes the utilization of the heat generated by the heating element, thereby saving power to a certain extent.

[0036] like Figure 1-3 As shown, the first heat-conducting part 21 of the heating component 2 is provided with at least one first clamping groove 211 at both ends, and the second heat-conducting part 22 is provided with a second clamping groove 221 at both ends. The first clamping groove 211 at one end of the first heat-conducting part 21 cooperates with the second clamping groove 221 on the same side of the second heat-conducting part 22 to clamp the infrared group 4. The first clamping groove 211 at the other end of the first heat-conducting part 21 cooperates with the second clamping groove 221 on the same side of the second heat-conducting part 22 to clamp the static elimination group 5.

[0037] like Figure 1-4 As shown, the hair comb 3 includes a sliding part 31 and at least two combing parts 32 disposed on the surface of the sliding part 31. Each combing part 32 is used to cooperate with each other to comb the user's hair. The sliding part 31 is connected to the first heat-conducting part 21 and / or the second heat-conducting part 22 of the heating component 2. The side of the sliding part 31 facing the first heat-conducting part 21 or the second heat-conducting part 22 is provided with at least one air guide groove 33. The air guide groove 33 is provided with at least one air guide hole 34. The air guide hole 34 is disposed through the bottom of the air guide groove 33 onto the surface of the sliding part 31. The air guide groove 33 and each of the air guide holes 34 constitute the air guide structure of the hair comb 3. The air guide groove 33 is open at one end facing the diverter 6, and a baffle (not shown) is formed at the other end of the air guide groove 33. The baffle can prevent the airflow distributed by the diverter 6 from flowing out of the air guide groove 33, and ensure that the airflow entering the air guide groove 33 can be effectively output to each air guide hole 34. Specifically, the first heat-conducting part 21 or the second heat-conducting surface is provided with a sliding groove 2b, and the hair comb 3 is connected to the corresponding sliding groove 2b through the sliding part 31.

[0038] like Figure 3 , 10 As shown, the infrared assembly 4 consists of a lamp board 41 and at least one LED infrared lamp bead 42 disposed on the lamp board 41. The lamp board 41 is clamped between a first clamping groove 211 at one end of the first heat-conducting part 21 and a second clamping groove 221 on the same side of the second heat-conducting part 22 via a first mounting base 43. The lamp board 41 is electrically connected to the control part 11. A hiding strip 9 is provided between the infrared assembly 4 and the corresponding hair comb 3. The hiding strip 9 is used to hide the infrared assembly 4, preventing the user from directly seeing the infrared assembly 4 inside the present invention, thereby improving the appearance of the present invention. It should be noted that when the user combs their hair, the infrared rays emitted by infrared group 4 can directly penetrate the skin surface, dilate blood vessels, and increase blood supply to the scalp, thus promoting blood circulation to a certain extent. Furthermore, infrared rays have antibacterial properties, inhibiting sebum secretion on the scalp and helping to remove dandruff. Simultaneously, infrared rays also promote hair growth; if hair loss is severe and thinning occurs, infrared rays can stimulate new hair regeneration in the hair follicles, helping them revive and making the hair thicker.

[0039] like Figure 3As shown, the antistatic assembly 5 includes a negative ion generator (not shown) and at least one negative ion emitting needle 51 connected to the negative ion generator. The negative ion generator is electrically connected to the control unit 11. The negative ion emitting needle 51 is clamped between the first clamping groove 211 at the other end of the first heat-conducting part 21 and the second clamping groove 221 on the same side of the second heat-conducting part 22 via the second mounting base 52. It should be noted that the negative ions generated by the antistatic assembly 5 can neutralize the positive ions in the hair, reduce the generation of static electricity, keep the hair smooth, and avoid frizz caused by static electricity. Negative ions help repair damaged hair cuticles, making the hair smoother and shinier. At the same time, negative ions have a bactericidal and anti-inflammatory effect, which can effectively inhibit bacteria and fungi on the scalp and reduce the occurrence of scalp inflammation. Negative ions can also reduce scalp oil secretion, inhibit dandruff production, make the scalp more refreshing, and help improve the pH balance of the scalp, making the scalp environment healthier.

[0040] like Figure 2 , 6 As shown, the fan 12 is located in the gripper near the end connected to the heating element 2. The gripper has at least one airflow hole 1e at the end corresponding to the fan 12, and at least one air inlet hole 1f at the other end of the gripper. Each air inlet hole 1f is used to compensate for the air output inside the gripper to ensure the normal delivery of airflow to the heating element 2.

[0041] like Figure 2 , 6 As shown, the fan 12 is provided with a connecting sleeve 121. The surface of the connecting sleeve 121 is provided with at least two mounting portions 1211. Each mounting portion 1211 is fixedly connected to the holding member. At least one air guide 1212 is also provided between each mounting portion 1211. Each air guide 1212 is used to divert and conduct the airflow generated by the fan 12. The mounting portions 1211 and the air guide 1212 are respectively designed with arc surfaces that are bent in the same direction near the end of the fan 12. Each mounting portion 1211 and the air guide 1212 form two or more primary gas diversion channels (as shown in the figure) on the surface of the connecting sleeve 121. Airflow is delivered to the diverting member 6 through each primary gas diversion channel.

[0042] like Figure 1 , 7As shown in Figure 9, the switching unit includes a switching control board 16 disposed on the grip 1 and a switching switch 161 electrically connected to the switching control board 16. The switching switch 161 is used for switching control of the cold air mode. The switching switch 161 is provided with a switching button 1g, which is used to touch the switching switch 161. The switching control board 16 is electrically connected to the control unit 11. The second housing 14 of the grip is provided with a connecting groove 144, and the aforementioned switching control board 16 is installed in the connecting groove 144. The aforementioned grip sleeve 15 is also provided with a through hole 151 corresponding to the setting position of the switching button 1g.

[0043] When in use, if this utility model is connected to mains power and the power switch 111 is activated via the power button 1a, the heating element of the heating component 2, the LED infrared lamp beads 42 of the infrared group 4, and the negative ion generator of the anti-static group 5 are all in operation by default. When the user combs and styles their hair using the comb 3 on the heating component 2, the heat emitted by the heating element assists in heat-setting the hair. At the same time, the negative ion generator emits negative ions to the hair and scalp through the negative ion emission needle 51, which can effectively remove static electricity from the hair, making the combed / styled hair smoother and more voluminous, and making the scalp feel fresher. Combined with the infrared rays emitted by the infrared group 4, it promotes blood circulation in the user's head. During the styling process, when it is necessary to set the style, the switch 161 can be touched by the switch button 1g. At this time, the heating element stops working, the fan 12 in the grip starts, and pushes the airflow to the direction of the splitter 6. The airflow is split to the heating element 2 through each splitter hole 64. At this time, part of the airflow output from each splitter hole 64 flows directly to the hair being treated for cool air styling; while the other part of the airflow output from each splitter hole 64 enters through the air guide groove 33 of the comb part 32 and is output from each air guide hole 34, so that the split airflow can be blown evenly to the deep layers of the hair to improve the styling effect. After use, the present invention can be turned off by touching the power switch 111 by the power button 1a.

[0044] The above description is only a preferred embodiment of the present utility model and is not intended to limit the scope of the present utility model. Therefore, without departing from the design spirit of the present utility model, any equivalent changes or modifications made by those skilled in the art to the structure, features and principles of the present utility model should fall within the protection scope of the patent application of the present utility model.

Claims

1. A hair volumizing styling device comprising a handle having a control portion disposed therein, characterized by: The holding handle is provided with a heating assembly at one end, and at least one hair combing part is arranged on the heating assembly to comb and cold air style the hair. The hair combing part has a wind guide structure to guide the airflow to style the hair. The heating assembly is provided with at least one infrared group and at least one static electricity removing group. The holding handle is provided with a fan connected to the control part to push the air in the holding handle to form the airflow to be delivered to the heating assembly. A flow distribution part is arranged at the connection between the heating assembly and the holding handle to uniformly distribute the airflow formed by the fan to the wind guide structure of each hair combing part. A switching unit is arranged at the end of the holding handle close to the flow distribution part to switch the cold air mode. The switching unit, the fan, the infrared group and the static electricity removing group are electrically connected to the control part.

2. A hair lofting device according to claim 1, characterised in that: The heating assembly is composed of at least one first heat conduction part, at least one second heat conduction part spliced with the first heat conduction part, and at least one heating sheet arranged in the first heat conduction part and the second heat conduction part respectively. The hair combing part is embedded on the outer surface of the first heat conduction part and the second heat conduction part respectively, and / or the hair combing part is arranged between the spliced parts of the first heat conduction part and the second heat conduction part.

3. A hair lofting device according to claim 2, wherein: The first heat conduction part of the heating assembly is provided with at least one first clamping groove at both ends respectively. The second heat conduction part is provided with a second clamping groove at both ends respectively. The first clamping groove at one end of the first heat conduction part cooperates with the second clamping groove at the same side of the second heat conduction part to clamp the infrared group. The first clamping groove at the other end of the first heat conduction part cooperates with the second clamping groove at the same side of the second heat conduction part to clamp the static electricity removing group.

4. A hair lofting device according to claim 2, wherein: The hair combing part includes a sliding part and at least two combing parts arranged on the surface of the sliding part. The sliding part is connected to the first heat conduction part and / or the second heat conduction part of the heating assembly. At least one wind guide groove is arranged on the side of the sliding part facing the first heat conduction part or the second heat conduction part. At least one wind guide hole is arranged in the wind guide groove. The wind guide hole is arranged through from the bottom surface of the wind guide groove to the surface of the sliding part. The wind guide groove and the wind guide hole constitute the wind guide structure of the hair combing part.

5. A hair lofting device according to claim 3, wherein: The infrared group is composed of a lamp plate and at least one LED infrared lamp bead arranged on the lamp plate. The lamp plate is clamped between the first clamping groove at one end of the first heat conduction part and the second clamping groove at the same side of the second heat conduction part through a first mounting seat.

6. A hair lofting device according to claim 3, wherein: The static electricity removing group includes a negative ion generator and at least one negative ion emitting needle connected to the negative ion generator. The negative ion generator is electrically connected to the control part. The negative ion emitting needle is clamped between the first clamping groove at the other end of the first heat conduction part and the second clamping groove at the same side of the second heat conduction part through a second mounting seat.

7. A hair lofting device according to claim 1, wherein: The fan is arranged in the holding handle close to the end connected to the heating assembly. At least one airflow hole is arranged on the holding handle corresponding to the end of the fan. At least one air inlet hole is arranged at the other end of the holding handle. Each air inlet hole is used to compensate the air output from the inside of the holding handle.

8. A hair lofting device according to claim 1, wherein: A connecting sleeve is arranged outside the fan. At least two mounting parts are arranged on the surface of the connecting sleeve. Each mounting part is fixedly connected to the holding handle. At least one wind guide sheet is arranged between each mounting part. Each wind guide sheet is used to conduct and distribute the airflow generated by the fan.

9. A hair lofting device according to claim 1, wherein: The switching unit comprises a switching control board arranged on the holding member and a switching switch electrically connected with the switching control board, the switching switch is used for switching control of the cold air mode, the switching switch is provided with a switching key, and the switching control board is electrically connected with the control unit.