Hair styling device

CN224597709UActive Publication Date: 2026-08-07DREAME TECH (SHANGHAI) CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
DREAME TECH (SHANGHAI) CO LTD
Filing Date
2025-06-12
Publication Date
2026-08-07

AI Technical Summary

Technical Problem

然而,在现有技术中,毛发定型装置在将用户的头发加热软化后无法第一时间对冷却,导致无法实现头发的定型,使得难以达到预期的造型效果

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Abstract

The application provides a hair styling device. The hair styling device comprises a clamping assembly, a heating assembly and a cooling assembly. The clamping assembly comprises two arms arranged oppositely, at least one of the two arms is rotatable relative to the other arm, and a space for accommodating hair is formed between the two arms. The heating assembly is used for heating the hair in the space. The cooling assembly is arranged on at least one of the two arms, extends along the length direction of the arm, and clamps and cools the hair. In this way, after the two arms clamp the user's hair, the user's hair is accommodated in the space of the two arms and is heated and softened by the heating assembly on the two arms. When the user moves the hair styling device towards the hair tips, the cooling assembly can cool and straighten the softened hair in the first time, so that the user's hair achieves the expected styling effect.
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Description

Technical Field

[0001] This application relates to the field of household appliance technology, and specifically to a hair styling device. Background Technology

[0002] Hair styling devices are devices that can style hair. Typically, these devices generate hot air to heat and soften the user's hair, allowing it to be styled as desired. However, in existing technologies, hair styling devices cannot cool the softened hair immediately after heating, resulting in incomplete styling and difficulty in achieving the desired look. Utility Model Content

[0003] This application provides a hair styling device that can heat and soften a user's hair and then cool it immediately to achieve the function of straightening and styling the user's hair.

[0004] In a first aspect, embodiments of this application provide a hair styling device, comprising:

[0005] The clamping assembly includes two arms arranged opposite each other, at least one of the arms being rotatable relative to the other arm, and a space for receiving hair is formed between the two arms.

[0006] A heating element for heating the hair within the space;

[0007] A cooling assembly is disposed on at least one of the two arms, the cooling assembly extending along the length of the arm, the cooling assembly clamping and cooling the hair.

[0008] Optionally, the hair styling device further includes a main housing, at least one of the two arms being rotatably connected to the main housing, the main housing including an air inlet, at least one of the two arms including an air outlet extending along the length of the arm, the air outlet emitting airflow toward the space.

[0009] Optionally, the cooling assembly includes a first cooling element and a second cooling element, which are respectively disposed on the two arms. The clamping assembly includes an open position and a closed position, wherein when the clamping assembly is in the closed position, the first cooling element and the second cooling element abut against each other.

[0010] Optionally, the cooling component uses the Peltier effect for cooling.

[0011] Optionally, both the first cooling element and the second cooling element are strip-shaped protrusions from the inner side of the arm.

[0012] Optionally, the air outlet is a plurality of holes discretely arranged along the length of the arm.

[0013] Optionally, the air outlet is in the shape of a hole or a long groove, and the length of the air outlet is less than or equal to the length of the cooling component.

[0014] Optionally, the hair styling device further includes a conditioning component disposed on at least one of the two arms, the conditioning component being used to provide a conditioning medium for the hair.

[0015] Optionally, in the width direction of the inner sidewall of the arm, the air outlet, the cooling component, and the maintenance component are arranged sequentially, with the hair first passing through the air outlet, then through the cooling component, and finally through the maintenance component.

[0016] Optionally, the hair styling device further includes a heating component disposed within the clamping assembly and an airflow generator disposed within the main housing. The airflow generator is used to generate airflow between the air inlet and the air outlet, and the heating component is used to heat the airflow at the air inlet.

[0017] Secondly, embodiments of this application provide a hair styling device, comprising:

[0018] The clamping assembly includes two arms arranged opposite each other, at least one of the arms being rotatable relative to the other arm, and a space for receiving hair is formed between the two arms.

[0019] A heating element for heating the hair within the space;

[0020] A hair straightening assembly includes a first hair straightener and a second hair straightener respectively disposed on two arms, the hair straightening assembly extending along the length direction of the arms, and the surfaces of the first hair straightener and / or the second hair straightener are coated with keratin and / or berry oil.

[0021] Optionally, at least one of the two arms includes an air outlet that extends along the length of the arm and emits airflow toward the space.

[0022] When the hair straightening component is in the closed position, the first hair straightener and the second hair straightener abut against each other.

[0023] Both the first straightener and the second straightener are strip-shaped protrusions from the inner side of the arm.

[0024] The various embodiments provided in this manual involve two arms clamping the user's hair, which is then contained within the space of the arms and softened by the heating components on the arms. When the user moves the hair styling device toward the ends of the hair, the cooling components can immediately cool and straighten the softened hair, thereby achieving the desired styling effect. Attached Figure Description

[0025] Figure 1 This is a schematic diagram of the structure of a hair styling device provided in one embodiment of this specification.

[0026] Figure 2 Another schematic diagram of a hair styling device provided for one embodiment of this specification.

[0027] Figure 3 This is yet another structural schematic diagram of a hair styling device provided in one embodiment of this specification.

[0028] Figure 4 This is another schematic diagram of the hair styling device provided in one embodiment of this specification.

[0029] Figure 5 This is another schematic diagram of the hair styling device provided in one embodiment of this specification.

[0030] Figure 6 This is a cross-sectional structural diagram of a hair styling device provided in one embodiment of this specification.

[0031] Figure 7 This is another schematic diagram of the hair styling device provided in one embodiment of this specification.

[0032] Explanation of reference numerals in the attached figures

[0033] 100. Hair styling device; 10. Main housing; 11. Air inlet; 20. Clamping assembly; 21. Arm; 23. Space; 24. Air outlet; 30. Cooling assembly; 31. First cooling component; 32. Second cooling component; 40. Conditioning assembly; 41. Storage compartment; 42. Connection hole; 43. Adsorption component; 50. Heating assembly; 60. Airflow generator; 70. Hair straightening assembly; 71. First hair straightener; 72. Second hair straightener. Detailed Implementation

[0034] The technical solutions in the embodiments of this specification 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.

[0035] In this specification, the accompanying drawings are not necessarily drawn to scale, and local features may be enlarged or reduced to show the details of the local features more clearly.

[0036] Unless otherwise stated, all technical and scientific terms used in this specification have the same meaning as commonly understood by one of ordinary skill in the art. The terminology used in this specification is for the purpose of describing particular embodiments only and is not intended to limit the scope of this specification. The term "and / or" as used in this specification includes any and all combinations of one or more of the associated listed items. The singular forms "a," "the," and "the" as used in this specification and the appended claims are also intended to include the plural forms unless the context clearly indicates otherwise.

[0037] In the description of this specification, it should be understood that the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Therefore, a feature defined as "first" or "second" may explicitly or implicitly include one or more of the stated features. In the description of this specification, "a plurality of" means two or more, unless otherwise explicitly specified.

[0038] In the description of this specification, the terms "center," "longitudinal," "lateral," "length," "width," "thickness," "height," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," "outer," "clockwise," and "counterclockwise," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the purpose of simplifying the description in this specification and do not indicate that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. In other words, they should not be construed as limitations on this application.

[0039] In the description of this specification, unless otherwise expressly defined, the terms "installation," "connection," "joining," "fixing," "setting," etc., should be interpreted broadly. For example, "connection" can be a fixed connection, a detachable connection, or an integral part; it can be a mechanical connection or an electrical connection; it can be a direct connection or an indirect connection through an intermediate medium; it can also refer to the internal communication of two components or the interaction between two components. Those skilled in the art can understand the specific meaning of the above terms in this specification according to the specific circumstances.

[0040] In the description of this application, unless otherwise expressly defined, the terms "above," "over," "on top of," "below," "below," "under," or "below" for "first feature over second feature" can refer to the first and second features being in direct contact, or to the first and second features being in indirect contact through an intermediate medium. Furthermore, "above," "below," and "over" for "first feature over second feature" can mean the first feature is directly above or diagonally above the second feature, or simply indicates that the horizontal height of the first feature is higher than the horizontal height of the second feature. Similarly, "below," "below," and "below" for "first feature over second feature" can mean the first feature is directly below or diagonally below the second feature, or simply indicates that the horizontal height of the first feature is lower than the horizontal height of the second feature.

[0041] In related technologies, a hair straightener is a device that uses heat to soften hair, making it easier for users to style their hair. A hair straightener includes a main body that the user can hold, and upper and lower clamps mounted on the main body. One or both of the upper and lower clamps can rotate relative to the main body, thus clamping and releasing the user's hair. Heating wires are often installed inside the upper and lower clamps, which heat airflow and discharge it through vents to soften the user's hair.

[0042] In practical use, the hair straightener has only one type of air outlet, which can either blow hot or cold air to heat or cool the user's hair. During use, the user holds the main body and moves the upper and lower plates to clamp the hair. The user can then move the straightener towards the ends of the hair to heat and soften it. The user can then control the air outlet to blow cold air out to cool the softened hair, thus straightening and styling it.

[0043] Understandably, in this scenario, users need to repeatedly hold the hair straightener and straighten their hair. Specifically, they need to slowly move the device along the hair strands, allowing the hair to be deformed under the combined effects of heat and mechanical force. To solidify the style, the user needs to alternate between hot and cold air to ensure successful styling. In other words, the user first needs to switch to hot air mode, where hot air is expelled from the vents to heat and soften the hair; after the hair is softened, the user then switches to cold air mode to cool and set the style. However, in this process, the user needs to repeatedly hold the hair straightener and stretch it multiple times, which is time-consuming and laborious, resulting in a poor user experience. Furthermore, users often cannot judge whether their hair has softened properly, and touching their hair can easily lead to contact with the heated straightener, increasing the risk of burns.

[0044] Furthermore, in related technologies, there is often only one air outlet on the upper and lower plates. When softening the hair, the outlet needs to expel hot air; when styling the hair, it needs to expel cold air. In other words, the single-point air outlet design results in a limited range of hot air coverage. Users must repeatedly clamp the same section of hair multiple times to ensure even heating, which is not only time-consuming and laborious (an average of 15-20 clamping and pulling actions are required for a single styling session), but also prone to damaging the hair due to localized overheating. Secondly, switching between hot and cold air relies on manual adjustment, requiring users to frequently switch mode buttons during the styling process, which disrupts the continuity of operation and increases the risk of misoperation. The need to repeatedly switch the air outlet of the heated plate to achieve the softening and deformation of the hair further increases the user's workload.

[0045] Therefore, a technical solution is needed that can simultaneously heat and cool the hair during the hair stretching process of the electric hair straightener, thereby reducing the number of times the user has to stretch the hair and reducing the cumbersomeness of the operation.

[0046] Please see Figures 1 to 5 This application provides a hair styling device 100, which includes a heating component 50, a clamping component 20, and a cooling component 30.

[0047] The clamping assembly 20 includes two arms 21 arranged opposite to each other, at least one of the arms 21 being rotatable relative to the other arm 21, and a space 23 for accommodating hair is formed between the two arms 21; a heating assembly 50 is used to heat the hair in the space 23; a cooling assembly 30 is disposed on at least one of the two arms 21, the cooling assembly 30 extends along the length direction of the arm 21, and the cooling assembly 30 clamps and cools the hair.

[0048] In this application embodiment, the heating method of the heating component 50 is not limited to meet different needs. For example, the heating component 50 can be a direct heating element such as a heating plate, in which case the heating plate can directly contact and heat the user's hair; or, the heating component 50 can also be an indirect heating element such as a hair dryer, in which case the hair dryer can heat the hair by acting on the user's hair with hot air.

[0049] In some embodiments, the hair styling device 100 further includes a main housing 10, at least one of the two arms 21 is rotatably connected to the main housing 10, the main housing 10 includes an air inlet 11, at least one of the two arms 21 includes an air outlet 24, the air outlet 24 extends along the length of the arm 21, and the air outlet 24 emits airflow toward the space 23.

[0050] In this embodiment, after the two arms 21 clamp the user's hair, the air outlet 24 can discharge hot air into the space 23 to heat and soften the user's hair. The cooling component 30 is located on one side of the space 23, meaning that the cooling component 30 can cool and straighten the softened hair immediately, thereby achieving the desired styling effect. In other words, when the user moves the hair styling device 100, the user's hair should be heated first and then cooled. The space 23 heated by the heating component 50 should be located between the cooling component 30 and the hair ends, ensuring that when the hair styling device 100 moves towards the hair ends, the hair can be heated and softened first, and then cooled by the cooling component 30.

[0051] Specifically, both arms 21 can be connected to the main housing 10. In this case, one of the arms 21 can rotate relative to the main housing 10, while the other arm 21 is fixed to the main housing 10; or both arms 21 can be rotatably connected to the main housing 10. The rotation angle range and rotation speed of the two arms 21 can be the same or different, and no specific limitation is made here.

[0052] Furthermore, the placement of the air outlet 24 and the cooling component 30 on the two arms 21 is not affected and is not limited here. In one embodiment, both the air outlet 24 and the cooling component 30 are located on one of the arms 21; in another embodiment, the air outlet 24 and the cooling component 30 are located on the two arms 21 respectively. In yet another embodiment, there are multiple air outlets 24, which can be located on the two arms 21 respectively, and the cooling component 30 can be located on either arm 21. In yet another embodiment, there are multiple cooling components 30, which can be located on the two arms 21 respectively, and the air outlet 24 can be located on either arm 21. In yet another embodiment, there are multiple cooling components 30 and multiple air outlets 24, which can be located on both arms 21 simultaneously.

[0053] In this embodiment, the air inlet 11 is connected to the air outlet 24 via the clamping assembly 20, and the air outlet 24 faces the space 23 between the two arms 21. In this way, hot airflow can be generated through the air inlet 11 and the air outlet 24 to heat the space 23.

[0054] In this application, the specific application scenario of the hair styling device 100 is not limited, in order to meet different needs. In one example, the user can apply the hair styling device 100 in beauty and hairdressing scenarios, such as for treating human or pet hair. In another example, the hair styling device 100 can also be applied to silk and plastic products, etc., without specific limitations, depending on the actual situation. In the following description, the user's hair is used as an example.

[0055] For example, a user can hold the main housing 10 and control the two arms 21 to clamp a section of the user's hair and move it towards the ends. At this time, the space 23 is positioned closer to the ends of the hair relative to the cooling component 30. This means that while the user controls the hair styling device 100 to move relative to the hair, the hair is first heated and softened, and then cooled and styled by the cooling component 30. In this way, the user only needs to spend half the time and effort to straighten and style their hair, improving the user experience.

[0056] Please see Figures 1 to 3 In some embodiments, the cooling assembly 30 includes a first cooling element 31 and a second cooling element 32, which are respectively disposed on two arms 21. The clamping assembly 20 includes an open position and a closed position, wherein when the clamping assembly 20 is in the closed position, the first cooling element 31 and the second cooling element 32 abut against each other.

[0057] Thus, the two arms 21 come close together to clamp the user's hair, thereby fixing the relative position of the user's hair and the clamping component 20. At this time, the air outlet 24 can heat and soften the hair in the space 23. Then, the user moves the hair styling device 100, and the heated and softened hair can be cooled and straightened by the first cooling component 31 and the second cooling component 32, so that the hair can be quickly straightened and styled.

[0058] Specifically, the cooling assembly 30 can be designed with double-sided cooling in conjunction with the two arms 21. The first cooling element 31 is integrated on the inner working surface of one of the two arms 21, and the second cooling element 32 is symmetrically integrated at the corresponding position of the other arm 21. When the clamping assembly 20 transitions from an open position (e.g., angle 30°) to a closed position (e.g., angle ≤ 5°), the first cooling element 31 and the second cooling element 32 can achieve precise surface contact alignment, thereby clamping the user's hair. At this time, the first cooling element 31 and the second cooling element 32 are in direct contact with the user's hair, which can quickly cool it down, thereby straightening and shaping the clamped hair under the rapid cooling effect of mechanical force.

[0059] It should be noted that, in the embodiments of this application, the materials and cooling methods of the first cooling element 31 and the second cooling element 32 are not limited, in order to meet different needs. In one example, the contact surfaces of the first cooling element 31 and the second cooling element 32 are made of medical-grade titanium alloy material, and the surface is treated with micro-arc oxidation, which not only ensures the thermal conductivity, but also has excellent wear resistance and biocompatibility, making it particularly suitable for applications that frequently come into contact with hair.

[0060] In some embodiments, the cooling component 30 cools via the Peltier effect.

[0061] In this way, the volume of the first cooling element 31 and the second cooling element 32 can be effectively reduced. The structure is simple and does not require the addition of mechanical moving parts. The temperature can be controlled instantly by adjusting the current.

[0062] Specifically, the first cooling element 31 and the second cooling element 32 employ thermoelectric cooling technology based on the Peltier effect, achieving precise temperature control through the unique thermoelectric properties of semiconductor materials. Specifically, when direct current passes through a thermocouple pair composed of P-type and N-type semiconductors, a significant temperature difference is generated at the junction. This physical effect allows the cooling element to achieve rapid cooling without relying on any mechanical moving parts. Thus, without the need for additional mechanical moving parts, the volume of the first cooling element 31 and the second cooling element 32 can be greatly reduced.

[0063] For example, the thickness of the first cooling element 31 and the second cooling element 32 can be controlled within 3 mm, which is difficult to achieve in traditional compressor refrigeration systems. Secondly, this solid-state refrigeration method has an extremely fast response speed, requiring only milliseconds to complete the switching of refrigeration modes, providing unprecedented temperature control precision for hair styling. The first cooling element 31 and the second cooling element 32 can stably control the temperature of the cooling surface within a fluctuation range of ±0.5℃.

[0064] Furthermore, from an energy efficiency perspective, by applying cooling only to specific areas requiring cooling, the energy wasted by cooling the entire cooling chamber as in traditional systems is avoided. In addition, the system's wear-free characteristics ensure an exceptionally long service life, significantly reducing equipment maintenance costs. Regarding safety, the Peltier refrigeration components typically operate at voltages below safe limits, completely eliminating the potential risks of high-pressure refrigeration systems.

[0065] Please see Figures 3 to 5 In some embodiments, the first cooling element 31 and the second cooling element 32 are both strip-shaped protrusions from the inner side of the arm 21.

[0066] Thus, the first cooling element 31 and the second cooling element 32 are respectively arranged in strip shape on the inner sidewalls of the two arms 21, and move closer or further away from each other as the two arms 21 move. In this way, the first cooling element 31 and the second cooling element 32 can clamp the user's hair and cool the area of ​​hair they are in contact with, and after cooling and styling are completed, they can move further apart to release the user's hair.

[0067] Specifically, the first cooling element 31 and the second cooling element 32 adopt a strip-shaped protrusion design. This structure has a small width and thickness, which is beneficial for the miniaturization of the hair styling device 100. The two cooling elements extend along the length of the two arms 21, forming parallel strip-shaped cooling bands. This strip-shaped protrusion structure cleverly protrudes from the surface of the space 23. While ensuring sufficient contact area, the extended design ensures that the cooling effect can cover the entire length of the hair, avoiding the uneven cooling problem that may be caused by traditional point cooling. Furthermore, when it is necessary to release the hair, the two cooling elements will smoothly separate as the clamping arms open. The separation process adopts a buffer design to ensure that the hair is not pulled.

[0068] It should be noted that the temperature field distribution of hair straighteners in related technologies has inherent defects. Thermal imaging analysis shows that when using a single air outlet, the temperature difference between the center and the edge of the straightener can reach 25-40°C. This uneven heat distribution easily leads to uneven heating of the hair. That is, the central area may overheat, causing keratin denaturation, while the edge area may be underheated, affecting the styling effect. In addition, the limitations of the mechanical structure result in uneven pressure distribution when the straightener is closed. Pressure sensor measurements show that the pressure at both ends of a traditional straightener is usually 15-20N lower than that in the central area. This directly leads to differences in contact resistance when the hair is heated, further exacerbating the uneven heating phenomenon.

[0069] Please see Figure 2 and Figure 4 In this embodiment, the air outlet 24 is a plurality of holes discretely arranged along the length of the arm 21.

[0070] In this way, the multiple air outlets 24 are arranged discretely in a straight line to effectively cover the entire space 23, ensuring that all the hair in the space 23 can be heated by hot air, and covering a longer section of hair. The discrete air outlets 24 can also disperse the airflow and avoid heat accumulation caused by concentrated jets from a single point.

[0071] Specifically, by distributing the total airflow to multiple air outlets 24, the flow velocity at each air outlet 24 can be reduced by 30-50%, effectively avoiding excessive impact of high-speed airflow on a single point area and preventing localized overheating. Secondly, the distributed airflow field formed by multiple air outlets 24 can create a uniform hot air envelope around the hair, which not only improves heat conduction efficiency but also ensures that each strand of hair receives a consistent heating effect.

[0072] Please see Figure 2 and Figure 4 In some embodiments, the air outlet 24 is in the form of a hole or a long slot, and the length of the air outlet 24 is less than or equal to the length of the cooling assembly 30.

[0073] Thus, the air outlet 24 can be in the shape of a hole or a long groove, and both are arranged along the length direction of the two arms 21 and the second arm 22. When the air outlet 24 is in the shape of a long groove, the long groove also extends along the length direction of the two arms 21. This allows the air outlet 24 to have a wider coverage area, the airflow to be gentler, and the heat in the space 23 to be evenly distributed.

[0074] Specifically, when the air outlet 24 is perforated, it can be a circular, polygonal, or irregularly shaped hole; when the air outlet 24 is elongated, the extension direction of the elongated groove is consistent with the length direction of the two arms 21. In this way, a high-speed airflow can be concentrated and controlled to the position of the space 23.

[0075] Furthermore, the length of the air outlet 24 is always less than the length of the corresponding cooling component. Specifically, the total length of the air outlet 24 is controlled within the length of the cooling component along the length of the two arms 21. This ensures that the cooling assembly 30 can completely cover the space 23, avoiding sudden changes in the temperature transition zone; secondly, it provides sufficient structural strength support areas at both ends of the cooling component to ensure mechanical stability during clamping.

[0076] Furthermore, in this embodiment, the number and specific size of the air outlets 24 on any one arm 21 are not limited, so as to meet different needs.

[0077] Please see Figures 1 to 5 In some embodiments, the hair styling device 100 further includes a conditioning component 40 disposed on at least one of the two arms 21, the conditioning component 40 being used to provide a conditioning medium to the user's hair.

[0078] In this way, the conditioning component 40 provides a conditioning medium for the hair, which can repair the hair in time, fill the gaps between the hair cuticles and strengthen the fiber structure, ensuring that the user's hair can have a smooth and soft feel after straightening and styling.

[0079] It should be noted that the maintenance component 40 in at least one of the two arms 21 refers to the following: in one embodiment, one of the two arms 21 is provided with a maintenance component 40, while the other of the two arms 21 is not provided with a maintenance component 40; in another embodiment, both arms 21 are provided with maintenance components 40, and the maintenance components 40 on both arms 21 release the maintenance medium synchronously to ensure that the user's hair receives the maintenance medium evenly. Furthermore, in the embodiments of this application, the placement of the maintenance component 40 on the two arms 21 is independent of the placement of the air outlet 24 and the cooling component 30.

[0080] In this application, the specific type of care medium is not limited to meet different needs. In one example, the care medium can be a hair serum.

[0081] Please see Figure 2 and Figure 3 In some embodiments, the conditioning component 40, the air outlet 24, and the cooling component 30 are arranged sequentially in the width direction of the inner sidewall of the arm 21. The hair first passes through the conditioning component 40, then through the air outlet 24, and finally through the cooling component 30. That is, the conditioning component 40 is located on the side of the space 23 away from the cooling component 30, and the conditioning component 40 is located on the side of the hair tip closer to the user's hair.

[0082] In this way, the hair styling device 100 moves relative to the hair towards the ends, and the user's hair can first be coated with a conditioning medium by the conditioning component to provide basic protection for the user's hair. Then, after the user's hair is heated and softened, it will enter the cooling component 30 to be cooled and styled. In this way, the straightening and styling action can be performed while protecting the hair.

[0083] Specifically, in this embodiment, the hair care component 40 may use a care medium that can effectively protect the hair, ensuring protection of the hair during subsequent heating and cooling.

[0084] For example, a user can move the device towards the hair tip at a standard speed of approximately 2 cm / s. The hair first passes through the treatment area of ​​the conditioning component 40. The hair is coated with a conditioning medium in this area, and then heated and softened after passing through space 23. Since the hair is already coated with a protective conditioning medium, a protective film is formed. This film has a dual function: firstly, its siloxane components evenly conduct heat, preventing localized overheating; secondly, its protein repair factors are activated at high temperatures, repairing damaged keratin structures in real time, thereby reducing the damage to the hair from high temperatures. Finally, the hair enters the cooling components 30 for cooling and styling. This not only perfectly fixes the hairstyle but also allows the nutrients in the conditioning medium to fully penetrate. This forms a sequential treatment chain of conditioning-heating-cooling, ensuring optimal protection for the hair throughout the styling process.

[0085] Please see Figure 4 and Figure 5 In some embodiments, the air outlet 24, the cooling assembly 30, and the conditioning assembly 40 are arranged sequentially in the width direction of the inner sidewall of the arm 21. The hair first passes through the air outlet 24, then through the cooling assembly 30, and finally through the conditioning assembly 40. That is, the conditioning assembly 40 is located on the side of the cooling assembly 30 away from the space 23, and the space 23 is located on the side of the hair tip close to the user's hair.

[0086] In this way, as the hair styling device 100 moves relative to the hair towards the hair tip, the user's hair can be heated and softened before entering the cooling components 30 for cooling and styling. After styling, the conditioning components 40 directly apply the conditioning medium, ensuring that the styled hair can be cared for immediately and avoiding the problem of the conditioning medium failing due to high-temperature airflow.

[0087] Specifically, in this embodiment, the hair care component 40 may use a care medium that can effectively repair hair, ensuring that the hair is repaired after heating and cooling.

[0088] For example, a user can move the device towards the hair ends at a standard speed of approximately 2 cm / s, where the hair first softens in space 23. The softened hair then immediately enters the cooling zone, which uses double-sided contact cooling to perfectly lock in the hairstyle structure. After styling, the hair then enters the conditioning stage. The most suitable conditioning formula can be adjusted according to the temperature profile of the previous treatments, such as focusing on repair after high-temperature treatment and moisturizing after low-temperature treatment. This forms a three-stage progressive treatment architecture of heating-cooling-conditioning, achieving a more scientific hair treatment process through precise spatial layout optimization. The conditioning component 40 is positioned downstream of the cooling component 30, forming a clear working zone with space 23. This design, based on in-depth hair care research, ensures optimal results at each stage of treatment.

[0089] Please see Figure 5 and Figure 6 In some embodiments, the care component 40 includes a storage compartment 41, a connection hole 42, and an adsorption element 43. The storage compartment 41 is provided with a care medium, and the connection hole 42 connects the storage compartment 41 and the adsorption element 43. When the clamping component 20 is in the closed position, the adsorption element 43 conforms to the user's hair.

[0090] In this way, the care medium in the storage compartment 41 can be slowly penetrated and coated onto the user's hair through the connection hole 42 and the suction member 43. When the two arms 21 are relatively close and in the closed position, the suction member 43 adheres to the user's hair and applies the care medium onto the user's hair, thus making it convenient for the user to care for their hair.

[0091] Specifically, the storage chamber 41, the connecting hole 42, and the adsorption element 43 cooperate to form a micro-permeable drug delivery system. The storage chamber 41 is used to store the care medium, and the connecting hole 42 can be a micropore, allowing the care medium to pass through the micropore from the storage chamber 41 at a certain speed into the adsorption element 43. After absorbing the care medium, the adsorption element 43 adsorbs the user's hair and coats the user's hair with the care medium, thereby achieving hair care.

[0092] In other embodiments, the care component 40 may also include a micro-flow pump, an atomizing nozzle, and an intelligent control system, which can precisely release a variety of care media. In this way, the care technology that releases the care media in the first instance can improve the efficiency of hair keratin repair.

[0093] Please see Figure 4 and Figure 6 In some embodiments, the hair styling device 100 includes a heating component 50 disposed within the clamping assembly 20, the heating component 50 being used to heat the airflow from the air inlet 11.

[0094] In this way, the heating component 50 can heat the airflow at the air inlet 11 so that the heat of the hot air discharged from the air outlet 24 is sufficient to soften the user's hair.

[0095] In some embodiments, the heating assembly 50 includes a heating wire and a heating frame (not shown in the figure), with the heating wire wound in a wavy shape around the heating frame. This wavy shape increases the contact area between the heating wire and the airflow for better heating. The heating frame supports the heating wire, preventing direct contact between the heating wire and the main housing 10, and thus preventing damage to other components.

[0096] Furthermore, the specific material of the heating component 50 is not limited in this embodiment to meet different needs. For example, the heating component 50 can be a heating module such as an electric heating wire or a ceramic heating element, installed inside the air duct to directly heat the passing air and provide stable hot air.

[0097] In this embodiment, the temperature of the heating component 50 can be intelligently adjusted to avoid overheating and damaging the hair. Users can also adjust the temperature of the air outlet 24 to achieve rapid heating and shaping.

[0098] Please see Figure 5 In some embodiments, the hair styling device 100 includes an airflow generator 60 disposed within the main housing 10, the airflow generator 60 being used to generate airflow between the air inlet 11 and the air outlet 24.

[0099] In this way, the airflow generator 60 can work with the heating component 50 to generate airflow at the air outlet 24 to heat and soften the user's hair.

[0100] In this embodiment, the specific form of the airflow generator 60 is not limited, in order to meet different needs. For example, the airflow generator 60 can be a fan.

[0101] Please see Figure 7 This application also provides another embodiment, providing a hair styling device 100, which includes a heating component 50, a clamping component 20, and a straightening component 70.

[0102] The clamping assembly 20 includes two arms 21 arranged opposite to each other, at least one of the arms 21 being rotatable relative to the other arm 21, and a space 23 for accommodating hair is formed between the two arms 21; the heating assembly 50 is used to heat the hair in the space 23; the hair straightening assembly 70 is disposed on at least one of the two arms 21, the hair straightening assembly 70 extends along the length direction of the arm 21, and the hair straightening assembly 70 clamps the hair disposed in the heating space 23.

[0103] The air outlet 24 can be configured in the same way as in the above embodiment.

[0104] The hair straightening assembly 70 includes a first straightening member 71 and a second straightening member 72. The first straightening member 71 and the second straightening member 72 are respectively disposed on two arms 21 and protrude from the inner sidewalls of the two arms 21. The hair straightening assembly 70 includes an open position and a closed position. When the hair straightening assembly 70 is in the closed position, the first straightening member 71 and the second straightening member 72 abut against each other.

[0105] The first straightener 71 and the second straightener 72 are in direct contact with the user's hair, allowing for rapid cooling and straightening of the clamped hair under mechanical force. Both the first straightener 71 and the second straightener 72 are strip-shaped.

[0106] In this embodiment, the surfaces of the first straightener 71 and / or the second straightener 72 are coated with keratin. Keratin can repair damage; coating at high temperatures helps fill gaps in the hair cuticles, temporarily repairing split ends or breakage. It can also reduce heat damage, forming a protective film to reduce direct damage to the hair from high temperatures. Furthermore, it makes the hair easier to comb, reduces static electricity and frizz, and provides a longer-lasting effect.

[0107] In this embodiment, the surfaces of the first straightener 71 and / or the second straightener 72 may also be coated with berry oil, or further coated on top of keratin. The berry oil helps to moisturize and lock in moisture; the natural oils can penetrate the hair strands, preventing moisture loss caused by high temperatures. It also has antioxidant properties, being rich in vitamin E and other ingredients, neutralizing free radicals generated by heat damage. Furthermore, it enhances shine, giving the hair a natural luster and reducing dryness.

[0108] In the above embodiments, the descriptions of each embodiment have different focuses. Parts not described in detail in a particular embodiment can be found in the relevant descriptions of other embodiments. Features between the above embodiments can be referenced and borrowed from each other.

[0109] The functions and effects of this embodiment can be explained by referring to the foregoing implementation methods, and will not be repeated here.

[0110] It is understood that in the various embodiments of this specification, the sequence number of each process does not imply the order of execution. The execution order of each process should be determined by its function and internal logic, and should not constitute any limitation on the implementation process of the embodiments of this specification.

[0111] It is understood that the various implementation methods described in this specification can be implemented individually or in combination, and the embodiments in this specification are not limited in this respect.

[0112] Those skilled in the art will clearly understand that, for the sake of convenience and brevity, the specific working processes of the systems, devices, and units described above can be referred to the corresponding processes in the aforementioned method implementations, and will not be repeated here.

[0113] The above are merely specific embodiments of this specification, but the scope of protection of this application is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the scope of the technology disclosed in this specification should be included within the scope of protection of this application. Therefore, the scope of protection of this application should be determined by the scope of the claims.

Claims

1. A hair styling device, characterized in that, include: The clamping assembly includes two arms arranged opposite each other, at least one of the arms being rotatable relative to the other arm, and a space for receiving hair is formed between the two arms. A heating element for heating the hair within the space; A cooling assembly is disposed on at least one of the two arms, the cooling assembly extending along the length of the arm, the cooling assembly clamping and cooling the hair.

2. The hair styling device according to claim 1, characterized in that, The hair styling device further includes a main housing, at least one of the two arms is rotatably connected to the main housing, the main housing includes an air inlet, at least one of the two arms includes an air outlet, the air outlet extends along the length of the arm, and the air outlet emits airflow toward the space.

3. The hair styling device according to claim 2, characterized in that, The cooling assembly includes a first cooling element and a second cooling element, which are respectively disposed on the two arms. The clamping assembly includes an open position and a closed position, wherein when the clamping assembly is in the closed position, the first cooling element and the second cooling element abut against each other.

4. The hair styling device according to any one of claims 1-3, characterized in that, The cooling component utilizes the Peltier effect for cooling.

5. The hair styling device according to claim 3, characterized in that, Both the first cooling element and the second cooling element are strip-shaped protrusions from the inner side of the arm.

6. The hair styling device according to claim 2, characterized in that, The air outlet consists of multiple holes arranged discretely along the length of the arm.

7. The hair styling device according to claim 2, characterized in that, The air outlet is in the shape of a hole or a long groove, and the length of the air outlet is less than or equal to the length of the cooling component.

8. The hair styling device according to claim 2, characterized in that, The hair styling device also includes a conditioning component disposed on at least one of the two arms, the conditioning component being used to provide a conditioning medium for the hair.

9. The hair styling device according to claim 8, characterized in that, In the width direction of the inner sidewall of the arm, the air outlet, the cooling component, and the maintenance component are arranged in sequence. The hair first passes through the air outlet, then through the cooling component, and finally through the maintenance component.

10. The hair styling device according to claim 2, characterized in that, The hair styling device further includes a heating component disposed within the clamping assembly and an airflow generator disposed within the main housing. The airflow generator is used to generate airflow between the air inlet and the air outlet, and the heating component is used to heat the airflow at the air inlet.

11. A hair styling device, characterized in that, include: The clamping assembly includes two arms arranged opposite each other, at least one of the arms being rotatable relative to the other arm, and a space for receiving hair is formed between the two arms. A heating element for heating the hair within the space; A hair straightening assembly includes a first hair straightener and a second hair straightener respectively disposed on two arms, the hair straightening assembly extending along the length direction of the arms, and the surfaces of the first hair straightener and / or the second hair straightener are coated with keratin and / or berry oil.

12. The hair styling device according to claim 11, characterized in that, At least one of the two arms includes an air outlet that extends along the length of the arm and emits airflow toward the space. When the hair straightening component is in the closed position, the first hair straightener and the second hair straightener abut against each other. Both the first straightener and the second straightener are strip-shaped protrusions from the inner side of the arm.