Hairdressing device capable of automatically curling hair
By placing the fan motor on the side of the rotating motor close to the hairdressing part in the automatic curling iron and optimizing the fan motor structure, the problem of insufficient air volume is solved, better cold air styling effect and safety are achieved, and the user experience is improved.
Patent Information
- Application Number
- CN202511002054.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-18
- Publication Date
- 2025-10-21
AI Technical Summary
The layout of the fan motor and rotating motor of existing automatic curling irons causes blockage of the air flow channel, insufficient air volume, and inability to effectively reduce the hair temperature, affecting the cold air styling effect, increasing the risk of burns, and reducing the user experience.
The fan motor is set on the side of the rotating motor close to the hairdressing component. Through the design of multiple air inlet and outlet holes, the air flow channel is ensured to be unobstructed, the cold air output volume and uniformity are enhanced, and the fan motor structure is optimized in combination with the sleeve and blade assembly to reduce noise.
The cold air styling effect is significantly improved, providing a gentle contact experience, making the styling process faster and longer-lasting, and improving usage safety and overall performance.
Smart Images

Figure CN120814710A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of hairdressing, in particular to a hairdressing device capable of automatically curling hair. Background Art
[0002] In the prior art, automatic cold air curling products, as a hair styling tool, combine the functions of rotary curling and cold air styling. They can drive the hair to rotate when the user uses the product to curl the hair, reducing user operation, improving the stability and consistency of the curling effect and user experience, and improving the cold air styling effect of the hair after styling. This type of product generally consists of a curling unit and a handle unit. The handle unit is equipped with a rotary motor and a fan motor for driving the curling unit to rotate, and the fan motor is located at the end of the rotary motor away from the curling unit.
[0003] However, such a layout causes the air flow channel between the fan motor and the curling component to be partially or completely blocked by the rotating motor, seriously restricting the circulation of air driven by the fan motor. Although the fan motor is provided, the air volume on the outer surface of the curling component is extremely low, and the temperature of the hair on the outer surface of the curling component cannot be effectively reduced. This increases the risk of burns to the user during operation. At the same time, the effect of cold air styling the hair is greatly reduced, reducing the user experience of automatic cold air curling products. Summary of the Invention
[0004] The main purpose of the present invention is to provide a hair styling device capable of automatically curling hair, so as to solve the problem that the automatic hair curling devices in the prior art have a poor effect of cold air styling hair.
[0005] To achieve the above-mentioned objectives, the present invention provides a hairdressing device capable of automatically curling hair, comprising: a hairdressing component, the hairdressing component comprising a first housing, a processing module, and a fan motor, the first housing comprising a first accommodating chamber, at least a portion of the processing module being located within the first accommodating chamber, the fan motor being disposed within the first accommodating chamber to blow air toward the hair being treated; a handle component, the hairdressing component being rotatably disposed about a predetermined axis at a first end of the handle component, the handle component comprising a second housing and a rotary motor, a second accommodating chamber being provided within the handle component, the rotary motor being disposed within the second accommodating chamber and connected to the hairdressing component to drive the hairdressing component to rotate; wherein the fan motor is located at an end of the hairdressing component adjacent to the handle component.
[0006] Furthermore, air inlet holes and air outlet holes are arranged at intervals on the first shell. The air inlet hole is located at the end of the fan motor away from the processing module, and the air outlet hole is located on the outside of the processing module. The fan motor inhales air from outside the first shell through the air inlet hole and blows the air out of the first shell through the air outlet hole.
[0007] Furthermore, there are multiple air inlet holes, which are spaced apart around the circumference of the first shell; and / or there are multiple air outlet holes, which are spaced apart around the circumference of the first shell.
[0008] Furthermore, the fan motor includes: a sleeve, which is fixed in the first accommodating chamber; a blade assembly, at least a portion of which is rotatably arranged in the sleeve; and a blade drive part, which is arranged in the sleeve and is drivingly connected to at least a portion of the blade assembly to drive at least a portion of the blade assembly to rotate.
[0009] Furthermore, the sleeve includes a first sleeve portion and a second sleeve portion sleeved outside the first sleeve portion, and at least a portion of the blade assembly is rotatably arranged in the second sleeve portion; at least a portion of the driving body of the blade driving portion is arranged in the first sleeve portion, and the driving shaft of the blade driving portion extends out of the first sleeve portion to be driven and connected to at least a portion of the blade assembly.
[0010] Furthermore, the blade assembly includes moving blades and stationary blades, the blade driving part is drivingly connected to the moving blades, and the stationary blades are fixed on the inner wall surface of the sleeve; wherein, the greatest common divisor between the number of blades of the moving blades and the number of blades of the stationary blades is 1; and / or, there is no integer multiple relationship between the number of blades of the moving blades and the number of blades of the stationary blades.
[0011] Furthermore, the hair styling device capable of automatically curling hair also includes a rotating electrical connector, which includes a rotating part and a fixed part; the rotating part is arranged in the first accommodating cavity and is located at a first port of the first accommodating cavity near one end of the handle component, and the fixed part is arranged in the second accommodating cavity and is located at a second port of the second accommodating cavity near one end of the hair styling component, and the fixed part and the rotating part are electrically connected and can be relatively rotatably connected; the fixed part is electrically connected to the power cord connection end, and the rotating part is electrically connected to both the processing module and the fan motor; wherein a central avoidance hole for avoiding the rotating shaft of the rotating motor is provided on the fixed part, and the rotating shaft of the rotating motor passes through the fixed part and is fixedly connected to the rotating part to drive the rotating part to rotate relative to the fixed part.
[0012] Furthermore, the rotating part includes an annular groove isolation limiter and an annular conductive part, the annular groove isolation limiter is provided with an annular groove facing the side of the rotating part close to the fixed part, and the annular conductive part is arranged at the bottom of the annular groove; the fixed part includes a fixed body and an elastic conductive column, the first end of the elastic conductive column is fixedly connected to the fixed body, and the second end of the elastic conductive column abuts against the annular groove to slide along the annular groove and be electrically connected to the annular conductive part.
[0013] Furthermore, the first shell includes a first shell portion and a second shell portion arranged opposite to each other, the first end of the first shell portion is rotatably connected to the first end of the handle component, and the first end of the second shell portion is hinged to the first shell portion so that the second end of the second shell portion and the second end of the first shell portion can be arranged close to or away from each other; the processing module includes a first heating clamp and a second heating clamp arranged opposite to each other, the first heating clamp is arranged in the first shell portion and is located on a side of the first shell portion close to the second shell portion so as to move together with the first shell portion, and the second heating clamp is arranged in the second shell portion and is located on a side of the second shell portion close to the first shell portion so as to move together with the second shell portion to clamp or release hair; wherein, the outer surfaces of the first shell portion and the second shell portion are respectively provided with curved surfaces for curling hair.
[0014] Furthermore, a first avoidance opening for extending the first heating plate is provided on one side of the first shell part close to the second shell part; and / or a second avoidance opening for extending the second heating plate is provided on one side of the second shell part close to the first shell part.
[0015] Furthermore, a pressing plate is provided at the first end of the second housing portion, so that the second housing portion is driven to rotate relative to the first housing portion by pressing the pressing plate, so that the second heating plate presses the hair onto the first heating plate or releases the hair from the first heating plate.
[0016] Furthermore, the first shell includes a rotatably connected shell portion and a third shell portion and a fourth shell portion arranged oppositely, the first end of the rotatably connected shell portion is rotatably connected to the first end of the handle portion, the first ends of the third shell portion and the fourth shell portion are respectively fixedly connected to the second end of the rotatably connected shell portion, the third shell portion and the fourth shell portion are parallel to each other and spaced apart to form an avoidance gap for hair to pass through; the processing module includes a first heating component and a second heating component arranged oppositely, the first heating component is arranged in the third shell portion, and the second heating component is arranged in the fourth shell portion; wherein the outer surfaces of the third shell portion and the fourth shell portion are respectively provided with curved surfaces for curling hair.
[0017] Furthermore, a first air outlet communicating with the fan motor is provided on the outer sides of the third housing portion and the fourth housing portion; and / or a second air outlet communicating with the fan motor is provided on the second end of the rotatably connected housing portion.
[0018] Furthermore, the first shell includes a protective cover and a rotating part, the protective cover is sleeved outside the rotating part, the first end of the protective cover is fixedly connected to the handle part, the second end of the protective cover is provided with a hair avoidance opening for hair to enter, the rotating part and the protective cover are rotatably connected, and the rotating motor is drivingly connected to the rotating part to drive the rotating part to drive the hair to rotate; the processing module includes a heating tube component, and the rotating part is sleeved outside the heating tube component to rotate synchronously with the heating tube component or rotate relative to the heating tube component.
[0019] Furthermore, the rotating member is a cylindrical structure with an open outer end; or the rotating member is a sheet structure half-covered outside the heating tube; or the rotating member is a columnar structure with a closed outer end.
[0020] Furthermore, a third air outlet connected to the fan motor is provided between the protective cover and the rotating member; and / or a fourth air outlet connected to the fan motor is provided on the protective cover.
[0021] Applying the technical solution of the present invention, the hairdressing device capable of automatically curling hair comprises: a hairdressing component, the hairdressing component comprising a first housing, a processing module, and a fan motor, the first housing comprising a first accommodating chamber, at least a portion of the processing module being located within the first accommodating chamber, and the fan motor being disposed within the first accommodating chamber to blow air toward the hair being treated; and a handle component, the hairdressing component being rotatably disposed at a first end of the handle component about a predetermined axis, the handle component comprising a second housing and a rotary motor, a second accommodating chamber being provided within the handle component, the rotary motor being disposed within the second accommodating chamber and connected to the hairdressing component to drive the hairdressing component to rotate; wherein the fan motor is located at one end of the hairdressing component adjacent to the handle component. In this way, the hairdresser with automatic curling function of the present invention effectively avoids obstruction of the flow channel of the air flow blown out by the fan motor by the rotating motor by arranging the fan motor on the side of the rotating motor close to the hairdressing component, significantly improves the cold air output of the hairdressing component, enhances the cold air styling effect of the hair after styling, and solves the problem that the automatic curling device in the prior art has a poor cold air styling effect on the hair. When the user uses the hairdresser with automatic curling function of the present invention, he can feel a gentler contact experience, and at the same time makes the styling process faster and the styling effect more lasting. This not only optimizes the structure of the hairdresser with automatic curling function, improves the safety of use of the hairdresser with automatic curling function, but also improves the overall performance of the hairdresser with automatic curling function. BRIEF DESCRIPTION OF THE DRAWINGS
[0022] The accompanying drawings, which constitute part of this application, are intended to provide a further understanding of the present invention. The exemplary embodiments of the present invention and their descriptions are intended to explain the present invention and do not constitute an undue limitation of the present invention. In the accompanying drawings:
[0023] Figure 1A schematic structural diagram of a first embodiment of a hairdressing device capable of automatically curling hair according to the present invention is shown in one direction;
[0024] Figure 2 Shown Figure 1 The schematic diagram of the structure of the hairdressing device capable of automatically curling hair in another direction is shown;
[0025] Figure 3 Shown Figure 1 A front view of the hairdressing device capable of automatically curling hair is shown;
[0026] Figure 4 Shown Figure 3 A cross-sectional view of the hairdressing appliance capable of automatically curling hair along the AA direction;
[0027] Figure 5 Shown Figure 1 The schematic diagram of the structure of the hairdressing device capable of automatically curling hair without including some structures;
[0028] Figure 6 Shown Figure 1 The internal structure diagram of the hairdressing device capable of automatically curling hair is shown;
[0029] Figure 7 Shown Figure 6 A partial enlarged view of position B of the hairdressing device capable of automatically curling hair;
[0030] Figure 8 Shown Figure 6 A front view of the hairdressing device capable of automatically curling hair is shown;
[0031] Figure 9 Shown Figure 8 A cross-sectional view of the hairdressing appliance capable of automatically curling hair taken along the CC direction;
[0032] Figure 10 Shown Figure 9 A partial enlarged view of a portion D of the hairdressing device capable of automatically curling hair;
[0033] Figure 11 Shown Figure 6 A cross-sectional view of a fan motor of a hair dresser capable of automatically curling hair;
[0034] Figure 12 A schematic structural diagram of a second embodiment of a hairdressing device capable of automatically curling hair according to the present invention is shown;
[0035] Figure 13 A schematic structural diagram of a third embodiment of a hairdressing device capable of automatically curling hair according to the present invention is shown;
[0036] Figure 14 Shown Figure 13 The structure diagram of the rotating part of the hairdressing device which can automatically curl hair is shown.
[0037] The above drawings include the following reference numerals:
[0038] 100. Hairdressing component; 10. First accommodating chamber; 11. First housing; 111. First housing portion; 112. Second housing portion; 113. Third housing portion; 114. Fourth housing portion; 115. Protective cover; 116. Rotating member; 117. Rotating connecting housing portion; 118. Pressing plate; 12. Processing module; 121. First heating clamp; 122. Second heating clamp; 123. Heating pipe; 13. Fan motor; 131. Sleeve; 132. Blade assembly; 133. Blades Driving part; 134, first sleeve part; 135, second sleeve part; 136, moving blades; 137, stationary blades; 14, air inlet; 15, air outlet; 200, handle part; 20, second accommodating chamber; 21, second shell; 22, rotating motor; 3, power cord connection end; 4, rotating electrical connector; 41, rotating part; 411, isolation limiter; 412, annular conductive part; 413, annular groove; 42, fixing part; 421, fixed body; 422, elastic conductive column; 5, power cord. DETAILED DESCRIPTION
[0039] It should be noted that, in the absence of conflict, the embodiments and features of the embodiments in this application can be combined with each other. The present invention will be described in detail below with reference to the accompanying drawings and in combination with the embodiments.
[0040] like Figures 1 to 14 As shown, the present invention provides a hairdressing device capable of automatically curling hair, comprising: a hairdressing component 100, the hairdressing component 100 including a first housing 11, a processing module 12, and a fan motor 13, the first housing 11 including a first accommodating chamber 10, at least a portion of the processing module 12 being located in the first accommodating chamber 10, and the fan motor 13 being disposed in the first accommodating chamber 10 to blow air toward the hair being processed; a handle component 200, the hairdressing component 100 being rotatably disposed at a first end of the handle component 200 about a predetermined axis, the handle component 200 including a second housing 21 and a rotary motor 22, a second accommodating chamber 20 being provided in the handle component 200, the rotary motor 22 being disposed in the second accommodating chamber 20 and connected to the hairdressing component 100 to drive the hairdressing component 100 to rotate; wherein the fan motor 13 is located at an end of the hairdressing component 100 near the handle component 200.
[0041] In this way, the hairdresser capable of automatically curling hair of the present invention effectively avoids obstruction of the flow channel of the air flow blown out by the fan motor 13 by the rotating motor 22 by arranging the fan motor 13 on the side of the rotating motor 22 close to the hairdressing component 100, significantly improves the cold air output of the hairdressing component 100, enhances the cold air styling effect of the hair after styling, and solves the problem that the cold air styling effect of the automatic hair curling device in the prior art is poor. When the user uses the hairdresser capable of automatically curling hair of the present invention, he or she can feel a gentler touch experience, and at the same time makes the styling process faster and the styling effect more lasting. This not only optimizes the structure of the hairdresser capable of automatically curling hair, improves the use safety of the hairdresser capable of automatically curling hair, but also improves the overall performance of the hairdresser capable of automatically curling hair.
[0042] The application scenarios of the hair styling device capable of automatically curling hair of the present invention include daily hairdressing at home and hair salons in barber shops, etc. It is particularly suitable for users who want to quickly complete styling and maintain the hairstyle. When using the hair styling device capable of automatically curling hair of the present invention, the user needs to hold the handle component 200 by hand and bring the hair styling component 100 into contact with the hair. First, the hair styling component 100 is driven to rotate at least partially by the rotating motor 22 to curl the hair, and then cool air is blown out by the fan motor 13 to style the hair.
[0043] like Figure 3 As shown, air inlet holes 14 and air outlet holes 15 are spaced apart on the first shell 11. The air inlet hole 14 is located at the end of the fan motor 13 away from the processing module 12, and the air outlet hole 15 is located on the outside of the processing module 12. The fan motor 13 inhales air from outside the first shell 11 through the air inlet hole 14 and blows the air out of the first shell 11 through the air outlet hole 15.
[0044] The hair styling component 100 of the hair styling device capable of automatically curling hair of the present invention utilizes the drive generated by the fan motor 13 to form an effective air flow through the air inlet 14 and the air outlet 15, thereby enhancing the fluidity and coverage area of the cold air blown out by the fan motor 13, ensuring that the hair is evenly cooled during the curling process, thereby improving the cooling efficiency of the hair after the curling process, and achieving faster hair styling speed and more stable results. The hair styling device is suitable for situations where quick hair styling is required, such as quick preparation before going out, and hair styling in a hurry.
[0045] When a user starts the hairdresser capable of automatically curling hair according to the present invention, the fan motor 13 starts to rotate, and external air is sucked into the first accommodating chamber 10 through the air inlet 14. After being accelerated by the rotation of the fan motor 13, the air is finally blown out through the air outlet 15, forming a continuous flow of cold air to shape the curled hair.
[0046] Optionally, the air inlet hole 14 is arranged on the outer peripheral surface of the first shell 11; and / or the air inlet hole 14 is a first port arranged at the end of the first shell 11 for communicating with the second shell 21, and the first port is connected to the gap between the first shell 11 and the second shell 21; and / or the air inlet hole 14 is a first port arranged at the end of the first shell 11 for communicating with the second shell 21, and the first port is connected to the first vent on the second shell 21; wherein the first vent is located on the outer peripheral surface of the second shell 21; and / or the air inlet hole 14 is a first port arranged at the end of the first shell 11 for communicating with the second shell 21, and the first port is connected to the second vent on the second shell 21; wherein the second vent is located at the end of the second shell 21 away from the first shell 11.
[0047] In the present invention Figure 3 In the illustrated embodiment, the air inlet holes 14 are provided on the outer circumferential surface of the first housing 11. Specifically, there are a plurality of air inlet holes 14, which are spaced apart around the circumference of the first housing 11; and / or there are a plurality of air outlet holes 15, which are spaced apart around the circumference of the first housing 11.
[0048] The hair styling component 100 of the hair styling device capable of automatically curling hair of the present invention is provided with a plurality of air inlet holes 14 and a plurality of air outlet holes 15, thereby expanding the circulation area of the cold air flow, thereby increasing the circulation volume of the cold air flow and improving the cooling efficiency of the fan motor 13. As a result, the cold air coverage area of the hair styling device capable of automatically curling hair is wider during use, and the hair styling effect is better. The hair styling device is suitable for users who need to handle a large amount of hair or long hair, and can ensure that a good cooling effect can be maintained even when handling a large amount of hair.
[0049] When the user starts the automatic hair curling device of the present invention, the fan motor 13 draws air through the multiple air inlet holes 14 and then blows out cool air evenly through the multiple air outlet holes 15 to cover the entire curling area, thereby speeding up the hair styling process.
[0050] In an embodiment of the present invention not shown, the air inlet 14 is a first port provided at the end of the first shell 11 for communicating with the second shell 21 , and the first port communicates with the gap between the first shell 11 and the second shell 21 .
[0051] In an embodiment not shown in the figures of the present invention, the air inlet 14 is a first port arranged at the end of the first shell 11 for communicating with the second shell 21, and the first port is connected to the first vent on the second shell 21; wherein, the first vent is located on the outer peripheral surface of the second shell 21; specifically, the first vent can be arranged at a position on the outer peripheral surface of the second shell 21 away from the first shell 11, or at a position on the outer peripheral surface of the second shell 21 close to the first shell 11, or in the middle of the outer peripheral surface of the second shell 21.
[0052] In an embodiment not shown in the figures of the present invention, the air inlet 14 is a first port arranged at the end of the first shell 11 for communicating with the second shell 21, and the first port is connected to the second ventilation port on the second shell 21; wherein, the second ventilation port is located at an end of the second shell 21 away from the first shell 11.
[0053] like Figure 11 As shown, the fan motor 13 includes: a sleeve 131, which is fixed in the first accommodating chamber 10; a blade assembly 132, at least a portion of the blade assembly 132 is rotatably arranged in the sleeve 131; and a blade driving part 133, which is arranged in the sleeve 131 and is drivingly connected to at least a portion of the blade assembly 132 to drive at least a portion of the blade assembly 132 to rotate.
[0054] Specifically, the sleeve 131 includes a first sleeve portion 134 and a second sleeve portion 135 sleeved outside the first sleeve portion 134, and at least part of the blade assembly 132 is rotatably arranged in the second sleeve portion 135; at least part of the driving body of the blade driving portion 133 is arranged in the first sleeve portion 134, and the driving shaft of the blade driving portion 133 extends outside the first sleeve portion 134 to be driven and connected to at least part of the blade assembly 132.
[0055] The hairdressing component 100 of the hairdressing device capable of automatically curling hair of the present invention is provided with a specific structure of a sleeve 131 to achieve fixation and connection between the blade assembly 132 and the blade driving unit 133, so that the fan motor 13 can operate efficiently without interfering with other components. At the same time, the operating stability of the fan motor 13 is ensured, the operating efficiency of the fan motor 13 is improved, the airflow blown by the fan motor 13 is made more stable, the noise generated by the fan motor 13 is reduced, and the user's comfort is improved. The hairdressing component 100 is suitable for noise-sensitive environments, such as quiet offices or homes, and for professional hairdressers who need to use the hairdressing device for long periods of time.
[0056] When the user starts the hairdressing device capable of automatically curling hair of the present invention, the blade driving part 133 of the fan motor 13 drives the blade assembly 132 to rotate and drive the cold air flow to move. The user can feel the low-noise and high-efficiency cold air flow output, thereby improving the user experience.
[0057] Furthermore, the blade assembly 132 includes moving blades 136 and stationary blades 137, the blade drive unit 133 is drivingly connected to the moving blades 136, and the stationary blades 137 are fixed on the inner wall surface of the sleeve 131; wherein, the greatest common divisor between the number of blades of the moving blades 136 and the number of blades of the stationary blades 137 is 1; and / or, there is no integer multiple relationship between the number of blades of the moving blades 136 and the number of blades of the stationary blades 137.
[0058] Specifically, the relationship between the number of blades of the moving blades 136 and the number of blades of the stationary blades 137 includes three situations: the greatest common divisor between the number of blades of the moving blades 136 and the number of blades of the stationary blades 137 is 1, and there is no integer multiple relationship between the number of blades of the moving blades 136 and the number of blades of the stationary blades 137, for example, the number of blades of the moving blades 136 is 2, and the number of blades of the stationary blades 137 is 3; or, the greatest common divisor between the number of blades of the moving blades 136 and the number of blades of the stationary blades 137 is 1, and there is an integer multiple relationship between the number of blades of the moving blades 136 and the number of blades of the stationary blades 137, for example, the number of blades of the moving blades 136 or the number of blades of the stationary blades 137 is equal to 1; or, the greatest common divisor between the number of blades of the moving blades 136 and the number of blades of the stationary blades 137 is greater than 1, and there is no integer multiple relationship between the number of blades of the moving blades 136 and the number of blades of the stationary blades 137, for example, the number of blades of the moving blades 136 is 6, and the number of blades of the stationary blades 137 is 10.
[0059] The "greatest common divisor" here refers to the largest common divisor (also called a factor) between two or more integers. For example, the integers 8 and 12 have 1, 2, and 4 as common divisors, with 4 being the largest of these. Therefore, the greatest common divisor of 8 and 12 is 4. An "integer multiple relationship" refers to the relationship between two numbers when one number is divisible by the other, meaning that one number is an integer multiple of the other. For example, 10 is an integer multiple of 2 because 10 divided by 2 equals 5, and 5 is an integer. Similarly, 15 is an integer multiple of 3 because 15 divided by 3 equals 5.
[0060] The first sleeve portion 134 and the second sleeve portion 135 are connected via stationary blades 137 .
[0061] On the one hand, when the greatest common divisor of the number of blades of the moving blades 136 and the number of blades of the stationary blades 137 is 1, there is never any overlapping / aligned position between the moving blades 136 and the stationary blades 137. Instead, the moving blades 136 are "offset" by an angle each time they rotate, and the phase difference is never zero (each time the moving blades 136 rotate past the stationary blades 137, an aerodynamic excitation is generated, and the intensity of the aerodynamic excitation depends on the phase difference. If there is an overlapping / aligned position between the moving blades 136 and the stationary blades 137, the phase difference will periodically return to zero, the aerodynamic excitation will be periodically superimposed, the pulsation amplitude will increase, and a high-intensity periodic pressure wave will be formed). The aerodynamic excitation cannot be coherently superimposed, the pulsation amplitude is reduced, and the total energy is dispersed, thereby reducing the interaction between the moving blades 136 and the stationary blades 137 and avoiding repeated collisions or The strong vibration and sound wave resonance generated by frequency matching reduce the generation of noise; on the other hand, when the number of blades of the moving blades 136 and the number of blades of the static blades 137 are in an integer multiple relationship, all the moving blades 136 are aligned with the corresponding static blades 137 at the same phase of each circle, which will lead to the enhancement of the pressure wave superposition effect between the moving blades 136 and the static blades 137, thereby forming a periodic pressure wave superposition effect, and the energy is concentrated to low frequency and high amplitude. This effect will enhance the resonance of the sound wave, thereby increasing the noise level during the operation of the equipment. When the number of blades of the moving blades 136 and the number of blades of the static blades 137 are not in an integer multiple relationship, the two will not be completely aligned or overlapped at any rotation angle, the starting pulsation cannot be stably superimposed, and the energy is dispersed, so that the vibration and noise are reduced.
[0062] Therefore, the present invention sets the above-mentioned quantitative relationship between the moving blades 136 and the static blades 137: "the greatest common divisor of the number of blades of the moving blades 136 and the number of blades of the static blades 137 is 1; and / or, there is no integer multiple relationship between the number of blades of the moving blades 136 and the number of blades of the static blades 137", and makes the least common multiple of the number of blades of the moving blades 136 and the number of blades of the static blades 137 as large as possible, because in this way, the resonance between the moving blades 136 and the static blades 137 is reduced, and the noise reduction effect is better; for example, the noise generated by 9 moving blades 136 and 11 static blades 137 is less than 1. The noise is lower than the noise generated by the 7 moving blades 136 and the 8 stationary blades 137, the least common multiples of which are 99 and 56 respectively. The core principle is to avoid the coincidence of excitation and the natural frequency of the structure. When the fan motor 13 is running, each time the moving blades 136 rotate over the stationary blades 137, an aerodynamic excitation will be generated. If the least common multiple of the number of blades of the moving blades 136 and the number of blades of the stationary blades 137 is large, it means that the number of excitations per revolution of the moving blades 136 is large, the energy of the excitation is dispersed, the pulsation amplitude is reduced, and the high-frequency and low-amplitude excitation is not easy to coincide with the natural frequency of the structure, and thus is not easy to cause resonance.
[0063] Here, a "common multiple" is the smallest common multiple of two or more integers. For example, consider the integers 4 and 6. Their common multiples include 12, 24, 36, and so on, of which the least common multiple is 12.
[0064] like Figure 4 As shown, the hairdressing device capable of automatically curling hair further includes: a power cord connection terminal 3, a portion of which is disposed within the second accommodating cavity 20 and electrically connected to the rotating motor 22, and another portion of which extends outside the second housing 21; and a power cord 5, which is disposed outside the second housing 21 and connected to the power cord connection terminal 3.
[0065] The connection between the power cord connection end 3 and the power cord 5 of the hair styling device capable of automatically curling hair of the present invention ensures that the hair styling device can be stably powered during operation, making the hair styling device more flexible in use and improving the diversity, flexibility and stability of styling.
[0066] like Figure 7 and Figure 10 As shown, the hairdressing device capable of automatically curling hair further includes a rotating electrical connector 4, which includes a rotating portion 41 and a fixed portion 42. The rotating portion 41 is disposed within the first accommodating chamber 10 and is located at a first port of the first accommodating chamber 10 at one end near the handle component 200. The fixed portion 42 is disposed within the second accommodating chamber 20 and is located at a second port of the second accommodating chamber 20 at one end near the hairdressing component 100. The fixed portion 42 and the rotating portion 41 are electrically connected and can rotate relative to each other. The fixed portion 42 is electrically connected to the power cord connection terminal 3, and the rotating portion 41 is electrically connected to both the processing module 12 and the fan motor 13. The fixed portion 42 is provided with a central avoidance hole for avoiding the rotating shaft of the rotating motor 22. The rotating shaft of the rotating motor 22 passes through the fixed portion 42 and is fixedly connected to the rotating portion 41 to drive the rotating portion 41 to rotate relative to the fixed portion 42.
[0067] The electrical connection between the rotating portion 41 and the fixed portion 42 of the rotating electrical connector 4 of the automatic hair curling device of the present invention ensures power supply to various electrical components during the rotation of the hair styling unit 100. The central relief hole also prevents interference with the rotating shaft of the rotary motor 22, allowing at least partial rotation of the hair styling unit 100 without affecting the power supply to the processing module 12 and the fan motor 13, thus ensuring smooth rotation of the hair styling unit 100. This makes the hair styling device more convenient to use and improves operational fluidity, allowing users to easily create various hair curling styles with greater freedom and aesthetic appeal.
[0068] like Figure 10As shown, the rotating part 41 includes a ring groove isolation limiter 411 and an annular conductive member 412. The ring groove isolation limiter 411 is provided with a ring groove 413 on the side facing the rotating part 41 close to the fixed part 42, and the annular conductive member 412 is arranged at the bottom of the ring groove 413; the fixed part 42 includes a fixed body 421 and an elastic conductive column 422. The first end of the elastic conductive column 422 is fixedly connected to the fixed body 421, and the second end of the elastic conductive column 422 abuts against the ring groove 413 to slide along the ring groove 413 and be electrically connected to the annular conductive member 412.
[0069] In this way, the arrangement of the annular groove isolation limiter 411 and the annular conductive member 412 not only limits the rotation range of the rotating part 41, but more importantly, increases the safe distance between live parts by means of physical isolation, increases the creepage distance of the rotating electrical connector 4 in the vertical direction, effectively prevents the risks of short circuit and leakage, and improves the safety of the use of the rotating electrical connector 4; and the elastic conductive column 422 can adapt to the slight movement of the rotating part 41, closely abuts against the annular conductive member 412, and always maintains effective contact with the annular conductive member 412 to ensure the stability of the electrical connection, even in high-speed rotation or slight vibration of the equipment. In this case, it can also ensure the continuous transmission of electric energy, avoid equipment failure caused by power outages or poor contact, and slow down the impact of the rotating part 41 on the various components during rotation, reducing the wear rate between the contact points with the annular conductive member 412, thereby extending the overall service life of the rotating electrical connector 4 and reducing the cost of equipment maintenance and replacement; wherein, the elastic conductive column 422 includes a spring and a columnar conductive structure, so that the columnar conductive structure is pressed against the annular conductive member 412 by the spring; or, the elastic conductive column 422 itself is made of elastic metal material, which can be pressed against the annular conductive member 412.
[0070] like Figures 1 to 11 In the illustrated embodiment 1, the first shell 11 includes a first shell portion 111 and a second shell portion 112 arranged opposite to each other, the first end of the first shell portion 111 is rotatably connected to the first end of the handle component 200, and the first end of the second shell portion 112 is hinged to the first shell portion 111 so that the second end of the second shell portion 112 can be arranged close to or away from the second end of the first shell portion 111; the processing module 12 includes a first heating clamp 121 and a second heating clamp 122 arranged opposite to each other, the first heating clamp 121 is arranged on the first shell portion 111 and is located on a side of the first shell portion 111 close to the second shell portion 112 so as to move together with the first shell portion 111, and the second heating clamp 122 is arranged on the second shell portion 112 and is located on a side of the second shell portion 112 close to the first shell portion 111 so as to move together with the second shell portion 112 to clamp or release hair; wherein, the outer surfaces of the first shell portion 111 and the second shell portion 112 are respectively provided with curved surfaces for curling hair.
[0071] The hairdressing component 100 of the hairdressing device capable of automatically curling hair in the first embodiment of the present invention realizes automatic curling and styling of hair through the relative movement of the first housing portion 111 and the second housing portion 112 in cooperation with the first heating clamping plate 121 and the second heating clamping plate 122. This allows the user to easily achieve automatic curling of hair when using the hairdressing device, greatly saving time and energy. The hairdressing device is suitable for daily hairdressing at home, quick styling during travel, and is particularly suitable for users who pursue an efficient hairdressing experience.
[0072] After the user starts the hairdressing device capable of automatically curling hair according to the first embodiment of the present invention, the user places the hair between the first heating plate 121 and the second heating plate 122. The rotation of the rotary motor 22 in the handle component 200 causes the first housing portion 111 and the second housing portion 112 to rotate synchronously to curl the hair. Then, the fan motor 13 rotates to perform cold air shaping on the curled hair. In this way, the user can easily complete the curling styling, thereby improving the efficiency and convenience of styling.
[0073] Preferably, the curved surfaces of the outer surfaces of the first housing portion 111 and the second housing portion 112 for curling hair are jointly formed into a cylindrical curved surface or a shape close to a cylindrical curved surface.
[0074] The hairdressing device capable of automatically curling hair in the first embodiment can also be used for straightening hair. During the straightening process, it is only necessary to clamp the hair with the first heating clamping plate 121 and the second heating clamping plate 122 and heat the hair, and ensure that the rotating motor 22 is not working.
[0075] Specifically, a first avoidance opening for extending the first heating clamp 121 is provided on one side of the first shell part 111 close to the second shell part 112; and / or a second avoidance opening for extending the second heating clamp 122 is provided on one side of the second shell part 112 close to the first shell part 111.
[0076] The hair styling component 100 of the hair styling device capable of automatically curling hair in the first embodiment realizes direct contact between the first heating clamping plate 121 and the second heating clamping plate 122 and the hair by providing the first avoidance opening and the second avoidance opening.
[0077] Furthermore, a pressing plate 118 is provided at the first end of the second shell portion 112, so that the second shell portion 112 can be driven to rotate relative to the first shell portion 111 by pressing the pressing plate 118, so that the second heating plate 122 presses the hair onto the first heating plate 121 or releases the hair from the first heating plate 121; wherein, the first end of the second shell portion 112 is hinged to the first shell portion 111 through a pin shaft, and a torsion spring is sleeved on the pin shaft; in the initial state, the second shell portion 112 will be tightly attached to the first shell portion 111 under the action of the torsion spring, and after pressing the pressing plate 118, the second shell portion 112 will overcome the elastic force of the torsion spring and separate from the first shell portion 111.
[0078] The hair styling component 100 of the automatic hair curling device of the first embodiment is provided with a pressing plate 118, which allows the user to control the opening and closing of the clamping plate through simple operation to clamp and release the hair. This makes the operation of the hair styling device simpler and more intuitive, and the user can easily control the process of straightening or curling the hair. It is suitable for occasions that require frequent styling adjustments, such as creating wavy hairstyles, or when it is necessary to quickly switch between curling and straightening hair.
[0079] like Figure 12 In the second embodiment shown, the first shell 11 includes a rotatably connected shell portion 117 and a third shell portion 113 and a fourth shell portion 114 arranged opposite to each other. The first end of the rotatably connected shell portion 117 is rotatably connected to the first end of the handle component 200, and the first ends of the third shell portion 113 and the fourth shell portion 114 are respectively fixedly connected to the second end of the rotatably connected shell portion 117. The third shell portion 113 and the fourth shell portion 114 are parallel to each other and spaced apart to form an avoidance gap for hair to pass through; the processing module 12 includes a first heating component and a second heating component arranged opposite to each other, the first heating component is arranged in the third shell portion 113, and the second heating component is arranged in the fourth shell portion 114; wherein, the outer surfaces of the third shell portion 113 and the fourth shell portion 114 are respectively provided with curved surfaces for curling hair.
[0080] Preferably, the curved surfaces of the outer surfaces of the third housing portion 113 and the fourth housing portion 114 for curling hair are jointly formed into a cylindrical curved surface or a shape close to a cylindrical curved surface.
[0081] The hair styling component 100 of the automatic hair curling device of the second embodiment of the present invention forms a stable curling space by rotatably connecting the housing portion 117 and the third housing portion 113 and the fourth housing portion 114. The relative arrangement of the first heating component and the second heating component ensures uniform heating and cooling of the hair during the curling process. This allows the automatic hair curling device to provide a more precise and controllable curling effect while avoiding hair damage. The device is suitable for use in situations requiring fine curling.
[0082] When a user uses the hair styling device capable of automatically curling hair according to the second embodiment, the user places the hair in the avoidance gap formed by the third housing portion 113 and the fourth housing portion 114. The motor 22 is used to drive the hair styling component 100 to rotate, so that the first heating component and the second heating component jointly perform curling on the hair. Finally, the fan motor 13 rotates to perform cold air styling on the curled hair.
[0083] Specifically, in the hair styling device capable of automatically curling hair of the second embodiment of the present invention, the third shell portion 113 and the fourth shell portion 114 are both made of heat-conductive materials, and the heat emitted by the first heating component and the second heating component is transferred to the hair through the third shell portion 113 and the fourth shell portion 114 respectively.
[0084] Optionally, in the hair styling device capable of automatically curling hair of embodiment 2 of the present invention, a first air outlet communicating with the fan motor 13 is provided on the outer side of the third housing portion 113 and the fourth housing portion 114; and / or a second air outlet communicating with the fan motor 13 is provided on the second end of the rotatably connected housing portion 117.
[0085] like Figure 13 and Figure 14 In the third embodiment shown, the first shell 11 includes a protective cover 115 and a rotating member 116. The protective cover 115 is sleeved on the outside of the rotating member 116. The first end of the protective cover 115 is fixedly connected to the handle component 200. The second end of the protective cover 115 is provided with a hair avoidance opening for allowing hair to enter. The rotating member 116 is rotatably connected to the protective cover 115. The rotating motor 22 is driven and connected to the rotating member 116 to drive the rotating member 116 to drive the hair to rotate; the processing module 12 includes a heating tube 123. The rotating member 116 is sleeved on the outside of the heating tube 123 to rotate synchronously with the heating tube 123 or rotate relative to the heating tube 123.
[0086] The hair styling component 100 of the hair styling device capable of automatically curling hair in the third embodiment of the present invention forms a safe and efficient curling mechanism through the combination of the protective cover 115 and the rotating member 116. The fluctuation of the rotating member 116 can guide the hair into the curling area. At the same time, the heating tube 123 ensures rapid heating of the hair during the curling process. The protective cover 115 can provide a safer and faster curling experience when curling hair, while preventing the heated hair from scalding the user. It is suitable for occasions where rapid curling is required.
[0087] When a user uses the hair styling device capable of automatically curling hair according to the third embodiment, the user places the hair into the hair avoidance opening. The rotating motor 22 drives the rotating member 116 to fluctuate, guiding the hair into the curling area. At the same time, the heating tube 123 quickly heats the hair to perform curling. Finally, the fan motor 13 rotates to perform cold air shaping on the curled hair, thereby ensuring the speed of curling.
[0088] The rotating member 116 in the hair styling device capable of automatically curling hair of the third embodiment is a structure that can fix a portion of hair and then rotate. It can drive the heating tube 123 to rotate synchronously or relative to the heating tube 123 to coil the hair around the outer wall of the rotating member 116 to heat the hair.
[0089] Optionally, in the hair styling device capable of automatically curling hair according to the third embodiment of the present invention, the rotating member 116 is a cylindrical structure with an open outer end; or the rotating member 116 is a sheet structure half-covered outside the heating tube 123; or the rotating member 116 is a columnar structure with a closed outer end.
[0090] like Figure 13 In the illustrated embodiment, the rotating member 116 is a sheet-like structure that half covers the heating tube 123 .
[0091] Optionally, in the hair styling device capable of automatically curling hair of embodiment three of the present invention, a third air outlet connected to the fan motor 13 is provided between the protective cover 115 and the rotating member 116; and / or a fourth air outlet connected to the fan motor 13 is provided on the protective cover 115.
[0092] From the above description, it can be seen that the above embodiments of the present invention achieve the following technical effects:
[0093] The hairdressing device capable of automatically curling hair of the present invention comprises: a hairdressing component 100, comprising a first housing 11, a processing module 12, and a fan motor 13. The first housing 11 includes a first accommodating chamber 10, the processing module 12 is partially located in the first accommodating chamber 10, and the fan motor 13 is disposed in the first accommodating chamber 10 to blow air toward the hair being treated; a handle component 200, the hairdressing component 100 being rotatably disposed about a predetermined axis at a first end of the handle component 200, the handle component 200 including a second housing 21 and a rotary motor 22. The handle component 200 is provided with a second accommodating chamber 20. The rotary motor 22 is disposed in the second accommodating chamber 20 and connected to the hairdressing component 100 to drive the hairdressing component 100 to rotate. The fan motor 13 is located at an end of the hairdressing component 100 near the handle component 200. In this way, the hairdresser capable of automatically curling hair of the present invention effectively avoids obstruction of the flow channel of the air flow blown out by the fan motor 13 by the rotating motor 22 by arranging the fan motor 13 on the side of the rotating motor 22 close to the hairdressing component 100, significantly improves the cold air output of the hairdressing component 100, enhances the cold air styling effect of the hair after styling, and solves the problem that the cold air styling effect of the automatic hair curling device in the prior art is poor. When the user uses the hairdresser capable of automatically curling hair of the present invention, he or she can feel a gentler touch experience, and at the same time makes the styling process faster and the styling effect more lasting. This not only optimizes the structure of the hairdresser capable of automatically curling hair, improves the use safety of the hairdresser capable of automatically curling hair, but also improves the overall performance of the hairdresser capable of automatically curling hair.
[0094] It should be noted that the terms used herein are only for describing specific embodiments and are not intended to limit the exemplary embodiments according to the present application. As used herein, unless the context clearly indicates otherwise, the singular form is also intended to include the plural form. In addition, it should be understood that when the terms "comprise" and / or "include" are used in this specification, they indicate the presence of features, steps, operations, devices, components and / or combinations thereof.
[0095] Unless otherwise specifically stated, the relative arrangement of the parts and steps, numerical expressions and numerical values set forth in these embodiments do not limit the scope of the present application. At the same time, it should be understood that, for ease of description, the sizes of the various parts shown in the drawings are not drawn according to actual proportional relationships. The techniques, methods and equipment known to those of ordinary skill in the relevant art may not be discussed in detail, but where appropriate, the techniques, methods and equipment should be considered as part of the authorization specification. In all examples shown and discussed here, any specific values should be interpreted as being merely exemplary and not as limitations. Therefore, other examples of the exemplary embodiments may have different values. It should be noted that similar numbers and letters represent similar items in the following figures, and therefore, once an item is defined in one figure, it does not need to be further discussed in subsequent figures.
[0096] In the description of this application, it should be understood that the directions or positional relationships indicated by directional words such as "front, back, up, down, left, right", "horizontal, vertical, vertical, horizontal" and "top, bottom" are usually based on the directions or positional relationships shown in the accompanying drawings. They are only for the convenience of describing this application and simplifying the description. Unless otherwise specified, these directional words do not indicate or imply that the device or element referred to must have a specific direction or be constructed and operated in a specific direction. Therefore, they cannot be understood as limiting the scope of protection of this application; the directional words "inside and outside" refer to the inside and outside relative to the outline of each component itself.
[0097] For ease of description, spatially relative terms such as "above", "above", "on the upper surface of", "above", etc. may be used herein to describe the spatial positional relationship of a device or feature to other devices or features as shown in the figures. It should be understood that spatially relative terms are intended to include different orientations of the device in use or operation in addition to the orientation described in the figures. For example, if the device in the drawings is inverted, the device described as "above other devices or structures" or "above other devices or structures" will be positioned as "below other devices or structures" or "below other devices or structures". Thus, the exemplary term "above" can include both "above" and "below". The device can also be positioned in other different ways (rotated 90 degrees or in other orientations), and the spatially relative descriptions used here are interpreted accordingly.
[0098] In addition, it should be noted that the use of terms such as "first" and "second" to limit components is only for the convenience of distinguishing the corresponding components. Unless otherwise stated, the above terms have no special meaning and therefore cannot be understood as limiting the scope of protection of this application.
[0099] The foregoing description is merely a preferred embodiment of the present invention and is not intended to limit the present invention. Those skilled in the art will readily appreciate that various modifications and variations of the present invention are possible. Any modifications, equivalent substitutions, or improvements made within the spirit and principles of the present invention shall be included within the scope of protection of the present invention.
Claims
1. A hairdressing device capable of automatically curling hair, characterized in that: include: A hairdressing component (100), the hairdressing component (100) comprising a first housing (11), a processing module (12) and a fan motor (13), the first housing (11) comprising a first accommodating chamber (10), at least a portion of the processing module (12) being located in the first accommodating chamber (10), and the fan motor (13) being arranged in the first accommodating chamber (10) to blow air toward the treated hair; A handle component (200), wherein the hairdressing component (100) is rotatably arranged at a first end of the handle component (200) around a predetermined axis, the handle component (200) comprises a second housing (21) and a rotating motor (22), a second accommodating cavity (20) is provided in the handle component (200), and the rotating motor (22) is provided in the second accommodating cavity (20) and connected to the hairdressing component (100) to drive the hairdressing component (100) to rotate; Wherein, the fan motor (13) is located at one end of the hairdressing component (100) close to the handle component (200).
2. The hairdressing device capable of automatically curling hair according to claim 1, characterized in that: An air inlet (14) and an air outlet (15) are arranged at intervals on the first shell (11); the air inlet (14) is located at an end of the fan motor (13) away from the processing module (12); the air outlet (15) is located outside the processing module (12); the fan motor (13) inhales air from outside the first shell (11) through the air inlet (14) and blows the air out of the first shell (11) through the air outlet (15).
3. The hairdressing device capable of automatically curling hair according to claim 2, characterized in that: The number of the air inlet holes (14) is plural, and the plural air inlet holes (14) are arranged at intervals around the circumference of the first shell (11); and / or There are a plurality of air outlet holes (15), and the plurality of air outlet holes (15) are arranged at intervals around the circumference of the first shell (11).
4. The hairdressing device capable of automatically curling hair according to claim 1, characterized in that: The fan motor (13) comprises: a sleeve (131), the sleeve (131) being fixed in the first accommodating cavity (10); a blade assembly (132), at least a portion of the blade assembly (132) being rotatably disposed within the sleeve (131); A blade driving portion (133) is provided on the sleeve (131) and is drivingly connected to at least a portion of the blade assembly (132) to drive at least a portion of the blade assembly (132) to rotate.
5. The hairdressing device capable of automatically curling hair according to claim 4, characterized in that: The sleeve (131) includes a first sleeve portion (134) and a second sleeve portion (135) sleeved outside the first sleeve portion (134), and at least a portion of the blade assembly (132) is rotatably arranged in the second sleeve portion (135); at least a portion of the driving body of the blade driving portion (133) is arranged in the first sleeve portion (134), and the driving shaft of the blade driving portion (133) extends out of the first sleeve portion (134) to be drivingly connected to at least a portion of the blade assembly (132).
6. The hairdressing device capable of automatically curling hair according to claim 4, characterized in that: The blade assembly (132) includes a moving blade (136) and a stationary blade (137), the blade driving portion (133) is drivingly connected to the moving blade (136), and the stationary blade (137) is fixed on the inner wall surface of the sleeve (131); wherein, The greatest common divisor between the number of blades of the moving blades (136) and the number of blades of the stationary blades (137) is 1; and / or, There is no integer multiple relationship between the number of blades of the moving blades (136) and the number of blades of the stationary blades (137).
7. The hairdressing device capable of automatically curling hair according to claim 1, characterized in that: The hairdressing device capable of automatically curling hair further comprises a rotating electrical connector (4), wherein the rotating electrical connector (4) comprises a rotating portion (41) and a fixing portion (42); The rotating portion (41) is arranged in the first accommodating cavity (10) and is located at a first port of the first accommodating cavity (10) close to one end of the handle component (200); the fixing portion (42) is arranged in the second accommodating cavity (20) and is located at a second port of the second accommodating cavity (20) close to one end of the hairdressing component (100); the fixing portion (42) and the rotating portion (41) are electrically connected and are relatively rotatable. The fixing portion (42) is electrically connected to the power line connection end (3), and the rotating portion (41) is electrically connected to both the processing module (12) and the fan motor (13); The fixing portion (42) is provided with a central avoidance hole for avoiding the rotating shaft of the rotating motor (22); the rotating shaft of the rotating motor (22) passes through the fixing portion (42) and is fixedly connected to the rotating portion (41) to drive the rotating portion (41) to rotate relative to the fixing portion (42).
8. The hairdressing device capable of automatically curling hair according to claim 7, characterized in that: The rotating part (41) comprises an annular groove isolating and limiting member (411) and an annular conductive member (412); the annular groove isolating and limiting member (411) is provided with an annular groove (413) facing the side of the rotating part (41) close to the fixed part (42); and the annular conductive member (412) is provided at the bottom of the annular groove (413); The fixing portion (42) comprises a fixing body (421) and an elastic conductive column (422), wherein a first end of the elastic conductive column (422) is fixedly connected to the fixing body (421), and a second end of the elastic conductive column (422) abuts against the annular groove (413) to slide along the annular groove (413) and be electrically connected to the annular conductive member (412).
9. The hairdressing device capable of automatically curling hair according to any one of claims 1 to 8, characterized in that: The first housing (11) comprises a first housing portion (111) and a second housing portion (112) which are arranged opposite to each other, wherein the first end of the first housing portion (111) is rotatably connected to the first end of the handle component (200), and the first end of the second housing portion (112) is hinged to the first housing portion (111), so that the second end of the second housing portion (112) and the second end of the first housing portion (111) can be arranged to be close to or away from each other; The processing module (12) comprises a first heating clamp (121) and a second heating clamp (122) which are arranged opposite to each other, wherein the first heating clamp (121) is arranged on the first housing portion (111) and is located on a side of the first housing portion (111) close to the second housing portion (112) so as to move together with the first housing portion (111), and the second heating clamp (122) is arranged on the second housing portion (112) and is located on a side of the second housing portion (112) close to the first housing portion (111) so as to move together with the second housing portion (112) so as to clamp or release the hair; The outer surfaces of the first shell part (111) and the second shell part (112) are respectively provided with curved surfaces for curling hair.
10. The hairdressing device capable of automatically curling hair according to claim 9, characterized in that: A first avoidance opening for allowing the first heating clamp (121) to extend is provided on one side of the first shell portion (111) close to the second shell portion (112); and / or A second avoidance opening for allowing the second heating clamping plate (122) to extend is provided on one side of the second shell portion (112) close to the first shell portion (111).
11. The hairdressing device capable of automatically curling hair according to claim 9, characterized in that: A pressing plate (118) is provided at the first end of the second housing portion (112), so that the second housing portion (112) is driven to rotate relative to the first housing portion (111) by pressing the pressing plate (118), so that the second heating plate (122) presses the hair onto the first heating plate (121) or releases the hair from the first heating plate (121).
12. The hairdressing device capable of automatically curling hair according to claim 1, characterized in that: The first housing (11) comprises a rotatably connected housing portion (117) and a third housing portion (113) and a fourth housing portion (114) arranged opposite to each other, wherein the first end of the rotatably connected housing portion (117) is rotatably connected to the first end of the handle component (200), the first ends of the third housing portion (113) and the fourth housing portion (114) are respectively fixedly connected to the second end of the rotatably connected housing portion (117), and the third housing portion (113) and the fourth housing portion (114) are parallel to each other and spaced apart to form an avoidance gap for hair to pass through; The processing module (12) comprises a first heating component and a second heating component that are arranged opposite to each other, the first heating component is arranged in the third housing portion (113), and the second heating component is arranged in the fourth housing portion (114); The outer surfaces of the third housing portion (113) and the fourth housing portion (114) are respectively provided with curved surfaces for curling hair.
13. The hairdressing device capable of automatically curling hair according to claim 12, characterized in that: The outer sides of the third housing portion (113) and the fourth housing portion (114) are provided with a first air outlet communicating with the fan motor (13); and / or The second end of the rotating connection housing portion (117) is provided with a second air outlet connected to the fan motor (13).
14. The hairdressing device capable of automatically curling hair according to claim 1, characterized in that: The first housing (11) comprises a protective cover (115) and a rotating member (116), wherein the protective cover (115) is sleeved on the rotating member (116), a first end of the protective cover (115) is fixedly connected to the handle member (200), a second end of the protective cover (115) is provided with a hair avoidance opening for allowing hair to enter, the rotating member (116) is rotatably connected to the protective cover (115), and the rotating motor (22) is drivingly connected to the rotating member (116) to drive the rotating member (116) to rotate the hair; The processing module (12) comprises a heating pipe (123), and the rotating member (116) is sleeved outside the heating pipe (123) to rotate synchronously with the heating pipe (123) or rotate relative to the heating pipe (123).
15. The hairdressing device capable of automatically curling hair according to claim 14, characterized in that: The rotating member (116) is a cylindrical structure with an open outer end; or The rotating member (116) is a sheet-like structure that half covers the heating tube (123); or The rotating member (116) is a columnar structure with a closed outer end.
16. The hairdressing device capable of automatically curling hair according to claim 14, characterized in that: A third air outlet is provided between the protective cover (115) and the rotating member (116), the third air outlet being in communication with the fan motor (13); and / or The protective cover (115) is provided with a fourth air outlet connected to the fan motor (13).