Modeling assembly and hair curler
By designing a styling component with a wind support and guide ribs in the curling iron, the problem of poor diffusion of high-temperature airflow is solved, achieving uniform and stable airflow output and improving the curling effect.
Patent Information
- Application Number
- CN202422840570.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-20
- Publication Date
- 2025-12-12
- Estimated Expiration
- 2034-11-20
AI Technical Summary
In existing hair curlers, the diffusion effect of high-temperature airflow within the curling tube is poor, resulting in a large amount of airflow loss and affecting the curling effect.
Design a structural component including an air outlet bracket, guide ribs, and a housing. The guide ribs are arranged along the height of the air outlet bracket to guide the high-temperature airflow to the air outlet of the housing, ensuring the airflow diffusion effect and stable output through the air outlet on the housing.
It improves the diffusion effect of high-temperature airflow, reduces airflow loss, and ensures the curling effect.
Smart Images

Figure CN223653422U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of shaping equipment, more particularly to a shaping assembly, in addition, the utility model relates to a curler comprising the shaping assembly. BACKGROUND
[0002] The shaping assembly such as curler is a shaping equipment for curling operation and is loved by the majority of women. When the curling assembly is used, high-speed and high-temperature airflow is circulated to the outlet of the curling tube, and when the hair is on the arc surface of the curling tube, the hair is adsorbed on the outer wall of the curling tube by using the air pressure difference to achieve the effect of curling.
[0003] In the related art, the high-speed and high-temperature airflow enters the curling tube along the axial direction, and the outlet of the curling tube is located on the wall of the curling tube. After the airflow moves along the axial direction to the top of the curling tube, the airflow diffuses from the middle region to both sides, and then flows to the outlet position on the wall of the curling tube to perform the curling operation. In this way, the airflow only diffuses by itself during the movement along the axial direction to the top of the curling tube, and the diffusion effect of the airflow is poor, resulting in a large amount of airflow loss to the top of the curling tube and affecting the curling effect.
[0004] To sum up, how to improve the diffusion effect of the airflow is a problem to be solved by the technical personnel in the field. CONTENT OF THE UTILITY MODEL
[0005] Therefore, the utility model aims to provide a shaping assembly that can improve the diffusion effect of high-temperature airflow, reduce the amount of airflow loss, and ensure the curling effect. Another object of the utility model is to provide a curler comprising the shaping assembly.
[0006] To achieve the above object, the utility model provides the following technical scheme:
[0007] A shaping assembly comprises:
[0008] An air outlet support has an air inlet and is hollow inside, and the air inlet is used to deliver high-temperature airflow to the inside of the air outlet support;
[0009] A guide rib is arranged along the height direction of the air outlet support and is used to guide the high-temperature airflow to the outer periphery of the air outlet support;
[0010] An outer shell is sleeved on the outer periphery of the air outlet support, and the outer shell is provided with an air outlet, and the air outlet is close to the end of the guide rib.
[0011] Preferably, the shaping assembly comprises a base and support columns, and the support columns are arranged along the circumference of the base;
[0012] A plurality of said guide ribs are arranged between two adjacent said support columns, and the inclination degree of said guide ribs at the upper end of said support column is greater than the inclination degree of said guide ribs at the lower end of said support column.
[0013] Preferably, the bottom of said air outlet support is provided with said air inlet, and the top of said air outlet support is provided with a diffusion part for diffusing said high-temperature airflow reaching the top of said air outlet support.
[0014] Preferably, said guide ribs are spirally arranged for spirally guiding said high-temperature airflow to the outer periphery of said air outlet support.
[0015] Preferably, said guide ribs comprise a connecting part between two adjacent said support columns and a protruding part protruding relative to said connecting part, and said protruding part is arranged close to said air outlet.
[0016] Preferably, the inner side of said protruding part is connected to the outer periphery of said support column, and the outer side of said protruding part has an arc surface arranged close to the inner wall of said shell.
[0017] Preferably, the upper surface A of said guide rib and / or the lower surface B of said guide rib is provided with a guide surface for guiding said high-temperature airflow to the outer periphery of said air outlet support.
[0018] Preferably, said guide surface comprises a guide slope arranged on the upper surface of said protruding part and / or the lower surface of said protruding part, said guide slope is arranged to be inclined towards the direction close to said air outlet, and said guide slope is used for guiding part of said high-temperature airflow to the position corresponding to said air outlet and part of said high-temperature airflow to the airflow flow channel corresponding to the next said air outlet adjacent to said air outlet in the direction of said high-temperature airflow.
[0019] Preferably, at least one of the first side surface of said connecting part connected to said support column and the second side surface opposite to said first side surface is provided with a slope extending towards the direction of said air outlet.
[0020] Preferably, a plurality of said air outlets are uniformly arranged on the outer wall of said shell, each said air outlet corresponds to a plurality of said guide ribs, and a plurality of said guide ribs and said air outlet support form a plurality of spiral guide paths.
[0021] Preferably, the inner wall of said shell is provided with a transition arc, and the outer side of said support column and the outer side of said guide rib both have a flow passage gap with said transition arc to form an airflow passage.
[0022] The utility model also provides a curling iron, which comprises:
[0023] The molding assembly is the molding assembly described in any of the above.
[0024] The main body is connected to the bottom of the molding assembly and is used for transmitting the high-temperature airflow to the air inlet.
[0025] The molding assembly comprises an air outlet support, a guide rib and a shell, wherein the air outlet support is provided with an air inlet and is hollow inside, the high-temperature airflow is transmitted to the inside of the air outlet support through the air inlet, the guide rib is arranged along the height direction of the air outlet support, and the high-temperature airflow transmitted by the air inlet of the air outlet support is guided to the outer periphery of the air outlet support through the guide rib; further, the outer periphery of the air outlet support is sleeved with the shell, the air outlet is arranged on the shell, the position of the air outlet is close to the end of the guide rib, the high-temperature airflow entering the air inlet is dispersed to the position of the air outlet of the shell through the guide rib arranged along the height direction of the air outlet support, the diffusion effect of the high-temperature airflow is ensured, the stability of the airflow conducted to the position of the air outlet of the shell is further ensured, and the curling effect is ensured.
[0026] The molding assembly comprises an air outlet support, a guide rib and a shell, wherein the air outlet support is provided with an air inlet and is hollow inside, the high-temperature airflow is transmitted to the inside of the air outlet support through the air inlet, the guide rib is arranged along the height direction of the air outlet support, and the high-temperature airflow transmitted by the air inlet of the air outlet support is guided to the outer periphery of the air outlet support through the guide rib; further, the outer periphery of the air outlet support is sleeved with the shell, the air outlet is arranged on the shell, the position of the air outlet is close to the end of the guide rib, the high-temperature airflow entering the air inlet is dispersed to the position of the air outlet of the shell through the guide rib arranged along the height direction of the air outlet support, the diffusion effect of the high-temperature airflow is ensured, the stability of the airflow conducted to the position of the air outlet of the shell is further ensured, and the curling effect is ensured. BRIEF DESCRIPTION OF DRAWINGS
[0027] In order to more clearly illustrate the technical scheme in the embodiments of the present application or the prior art, the drawings needed to be used in the following embodiment or prior art description will be briefly introduced. Obviously, the drawings in the following description are only embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative labor on the basis of the provided drawings.
[0028] Figure 1 The structure diagram of the molding assembly provided by the present application is shown in the figure.
[0029] Figure 2 The sectional view of the molding assembly provided by the present application is shown in the figure.
[0030] Figure 3 The connection diagram of the air outlet support and the guide rib provided by the present application is shown in the figure.
[0031] Figure 4 The front view of Figure 3 is shown in the figure.
[0032] Figure 5 The structure diagram of the curling device provided by the present application is shown in the figure.
[0033] Figure 6 The explosion diagram of the curling device provided by the present application is shown in the figure.
[0034] Figures 1-6 In the drawings, reference numerals include:
[0035] 1 - air outlet support; 2 - shell; 3 - main body; 4 - guide rib; 5 - decorative piece; 6 - humidity detector; 7 - rotary cover; 21 - air outlet; 11 - base; 12 - support column; 121 - inclined surface; 411 - protruding part; 412 - connecting part; 4121 - guide surface. DETAILED DESCRIPTION
[0036] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.
[0037] The core of the utility model is to provide a styling assembly, which guides the high-temperature airflow to the air outlet of the shell through the guide rib arranged along the height direction of the air outlet support, so that the high-temperature airflow can diffuse to the outer periphery of the air outlet support, reduces the loss of airflow, and ensures the curling effect. Another core of the utility model is to provide a curling iron comprising the above styling assembly.
[0038] The styling assembly provided by the utility model comprises an air outlet support 1, a guide rib 4 and a shell 2, please refer to Figure 1 、 Figure 2 .
[0039] The styling assembly can be connected to a hair dryer or a hot air comb or other components that can provide high-temperature airflow for use. By sending the high-temperature airflow to the styling assembly, the air pressure difference is formed through the Coanda effect to adsorb the hair on the styling assembly to form the curling effect.
[0040] The air outlet support 1 is provided with an air inlet and is hollow inside. The high-temperature airflow is sent to the hollow area inside the air outlet support 1 through the air inlet, and then the high-temperature airflow is diffused to the outer periphery of the air outlet support 1 through the guide rib 4 arranged on the outer periphery of the air outlet support 1. Further, the high-temperature airflow is sent to the air outlet 21 on the outer wall of the shell 2 to ensure the stability of the airflow at the position of the air outlet 21.
[0041] The guide rib 4 is arranged along the height direction of the air outlet support 1, and can be arranged in one group, two groups or multiple groups, and is adaptively arranged according to the position and number of the specific air outlet 21.
[0042] As a specific embodiment, the guide ribs 4 can be uniformly arranged along the height direction of the air outlet support 1 to diffuse the high-temperature airflow in the middle region of the air outlet support 1 to the periphery of the air outlet support 1. The uniformity of the diffusion is ensured by the uniformly arranged guide ribs 4, and the uniformity of the temperature and speed of the airflow flowing to each position of the air outlet 21 is ensured, thereby ensuring the curling effect.
[0043] The shell 2 is sleeved on the periphery of the air outlet support 1, and a gap is formed between the shell 2 and the air outlet support 1 for the circulation of the high-temperature airflow. The shell 2 is provided with an air outlet 21, and the specific position of the air outlet 21 is located at the end of the guide flow path of the guide rib 4. The airflow guided by the guide rib 4 can smoothly reach the position of the air outlet 21. The guide rib 4 adjusts the flow of the airflow after entering the interior of the air outlet support 1, so that the airflow can be diffused in the circumferential direction, the airflow entering the air outlet 21 is increased, the loss of the high-temperature airflow is reduced, and the curling effect is ensured.
[0044] In a specific embodiment, to improve the effect of guiding the airflow to the air outlet 21, a guide surface can be arranged at the end of the guide rib 4 close to the air outlet 21 or at a position on the air outlet 21 close to the end of the guide rib 4, so that the high-temperature airflow after being guided can be better transmitted to the air outlet 21, and the air outlet effect is ensured.
[0045] In a specific embodiment, the guide rib 4 can be provided with an arc to provide a guide effect and ensure the diffusion effect of the high-temperature airflow in the hollow region of the air outlet support 1.
[0046] In another specific embodiment, the guide rib 4 can be provided with an inclination to provide a guide effect and ensure the diffusion effect of the high-temperature airflow in the hollow region of the air outlet support 1.
[0047] On the basis of the above-mentioned embodiments, the styling assembly comprises a base 11 and a support column 12, as shown in Figure 3 , Figure 4 .
[0048] A plurality of support columns 12 are arranged along the circumference of the base 11, and are preferably uniformly arranged. A plurality of guide ribs 4 are arranged between two adjacent support columns 12. The number of guide ribs 4 can be set according to actual conditions.
[0049] Specifically, two adjacent guide ribs 4 are connected to the support column 12 to form a grid structure, as shown in Figure 4 . Here, the adjacent guide ribs 4 refer to two guide ribs 4 located between two adjacent support columns 12. The specific shape of the grid structure can be square or parallelogram, which can form a guide effect to guide the high-temperature airflow to the periphery of the air outlet support 1, so as to realize the uniform diffusion effect of the airflow.
[0050] When the high-temperature airflow enters the air outlet support 1 through the air inlet, the hollow area in the air outlet support 1 makes the airflow conduction more smooth. Part of the high-temperature airflow entering the hollow area moves upward, and the other part diffuses in the circumferential direction under the guidance of the guide ribs 4. The circumferential diffusion here corresponds to the diffusion to the outer periphery of the air outlet support 1. By diffusing the high-temperature airflow, the airflow is uniformly and stably conducted to the air outlet 21, thereby improving the uniformity and stability of the airflow of the air outlet 21 and improving the curling effect.
[0051] On the basis of any of the above embodiments, the inclination degree of the guide rib 4 at the upper end of the support column 12 is greater than the inclination degree of the guide rib 4 at the lower end of the support column 12. Please refer to Figure 1 The lower end of the support column 12 is relatively close to the base 11, and the upper end of the support column 12 is relatively far away from the base 11. It should be noted that the upper end and the lower end of the support column 12 are not limited to the same height, but are only a relative position relationship.
[0052] For example, in a specific implementation manner, as Figure 1 The guide rib 4 at the lower end of the support column 12 is horizontally arranged, and the guide rib 4 at the upper end of the support column 12 gradually inclines from bottom to top.
[0053] For example, in another specific implementation manner, the guide rib 4 at the lower end of the support column 12 gradually inclines from bottom to top, and the guide rib 4 at the upper end of the support column 12 is more inclined than the guide rib 4 at the lower end of the support column 12, and the guide rib 4 at the upper end of the support column 12 gradually inclines from bottom to top.
[0054] For example, in another specific implementation manner, the inclination degree of the guide rib 4 at the lower end of the support column 12 is consistent, the inclination degree of the guide rib 4 at the upper end of the support column 12 is consistent, and the inclination degree of the guide rib 4 at the upper end of the support column 12 is greater than the inclination degree of the guide rib 4 at the lower end of the support column 12.
[0055] In the above several specific implementation manners, the upper end or the lower end of the support column 12 can include a plurality of groups of guide ribs 4. Each group corresponds to two or more guide ribs 4. The inclination degree of the two or more guide ribs 4 in each group can be consistent or inconsistent.
[0056] On the basis of any of the above embodiments, the bottom of the air outlet support 1 is provided with an air inlet, and the top of the air outlet support 1 is provided with a diffusion part for diffusing the high-temperature airflow reaching the top of the air outlet support 1.
[0057] Please refer to Figure 1High-temperature airflow enters the hollow area of the air outlet bracket 1 through the bottom air inlet. Part of the airflow moves upward and comes into contact with the diffuser, while the other part diffuses directly to the circumference of the air outlet bracket 1 under the action of the guide ribs 4. Whether it is the high-temperature airflow that comes into contact with the diffuser or the high-temperature airflow that enters the air outlet bracket 1 through the air inlet but does not reach the diffuser, the airflow can be further guided to the air outlet 21 by the guide ribs 4. This reduces the amount of airflow lost from flowing directly upward from the diffuser, making the wind speed and temperature loss at the air outlet 21 smaller, ensuring the curling effect of the hair on the outer shell 2, and improving the user experience.
[0058] Specifically, the airflow entering the hollow area of the air outlet bracket 1 from bottom to top through the air inlet is guided to the outer periphery of the air outlet bracket 1 by the guide ribs 4 before reaching the diffuser. After reaching the diffuser, the high-temperature airflow diffuses and flows from top to bottom, further guided to the outer periphery of the air outlet bracket 1 by the guide ribs 4. The guide ribs 4 reliably and effectively guide the airflow inside the air outlet bracket 1, ensuring the diffusion effect of the airflow to the outer periphery of the air outlet bracket 1, ensuring the air volume and wind speed at the air outlet 21, and ensuring the curling effect.
[0059] Based on any of the above embodiments, the guide rib 4 is spirally arranged to guide the high-temperature airflow to the outer periphery of the air outlet bracket 1, ensuring the uniformity of the airflow at the air outlet 21, ensuring the uniformity of the airflow delivered from the entire air outlet bracket 1 to the air outlet 21 of the outer shell 2, and ensuring the uniformity of the airflow velocity and temperature, so as to ensure that a better curling effect can be formed when the hair is placed on the outer shell 2.
[0060] In one embodiment, the guide rib 4 is spirally upward and extends towards the top of the air outlet bracket 1, as shown below. Figure 4 As shown, the structure formed by the guide rib 4 and the support column 12 is a parallelogram. The guide rib 4 has a certain slope, and this slope is set upwards. Specifically, "up and down" refers to the vertical direction of the air outlet bracket 1. With the guide rib 4 spiraling upwards, when the high-temperature airflow enters the air outlet bracket 1, the guide rib 4 can guide the airflow upwards and diffuse it to the air outlet 21 of the outer shell 2. After the high-temperature airflow contacts the diffuser, the guide rib 4 can guide the airflow downwards and diffuse it to the air outlet 21 of the outer shell 2, ensuring the uniformity of airflow in the hollow area inside the air outlet bracket 1 to the air outlet 21, and ensuring the uniformity of airflow volume and temperature at the air outlet 21, thereby further ensuring the curling effect. In this process, the spiral upward setting of the guide rib 4 fully ensures the circumferential guiding effect of the airflow after entering the air outlet bracket 1.
[0061] For another specific embodiment, the guide ribs 4 are spirally arranged downward and extend to the bottom of the air outlet support 1. The guide ribs 4 are spirally arranged downward, and when the high-temperature air flow enters the air outlet support 1, the air flow can be spirally diffused upward to the air outlet 21 of the shell 2 through the guide ribs 4; after the high-temperature air flow contacts the diffusion part, the air flow can also be spirally diffused downward to the air outlet 21 of the shell 2 through the guide ribs 4, which ensures the uniformity of the air flow in the hollow area of the air outlet support 1 during the process of flowing to the air outlet 21, guarantees the air outlet effect, and further guarantees the curling effect. In this process, the guide ribs 4 are spirally arranged downward, which fully guarantees the flow guiding effect of the air flow diffused from the diffusion part.
[0062] On the basis of any of the above embodiments, the guide rib 4 comprises a connecting part 412 and a protruding part 411 connected thereto, please refer to Figure 3 , Figure 4 .
[0063] The protruding part 411 is arranged protruding relative to the connecting part 412, the connecting part 412 is located between two adjacent support columns 12, and the protruding part 411 is connected to one of the support columns 12. If the inside and outside of the air outlet support 1 are taken into account, the protruding part 411 is arranged protruding on the outside of the air outlet support 1, and the protruding part 411 is arranged closer to the inside of the shell 2 and closer to the air outlet 21.
[0064] By limiting the specific structure of the guide rib 4, the air flow guided by the protruding part 411 can be reliably sent to the position of the air outlet 21 when the diffusion and uniform flow effect is specifically implemented, which guarantees the uniformity and stability of the air flow delivered to the air outlet 21.
[0065] On the basis of any of the above embodiments, the inside of the protruding part 411 is connected to the outer periphery of the support column 12, and the outside of the protruding part 411 has an arc surface, which is arranged close to the inner wall of the shell 2. By the transition arrangement of the arc surface, the air flow is guided to the position of the air outlet 21 through the arc surface, a high-speed air flow is formed through the narrow outlet of the air outlet 21, and the hair can be adsorbed on the outer wall of the shell 2 when the hair is outside the shell 2, thereby realizing the curling effect.
[0066] By the arrangement of the arc surface on the outside of the protruding part 411, the resistance of the air flow is reduced, the air flow guided by the guide rib 4 to the periphery of the air outlet support 1 is smoothly and reliably delivered to the position of the air outlet 21, the uniformly diffused air flow is delivered to the position of the air outlet 21, the uniformity and consistency of the air flow volume and temperature at each position of the air outlet 21 are guaranteed, and the curling effect is guaranteed.
[0067] In the above process, the air flow guided by the guide rib 4 to the periphery of the air outlet support 1 includes not only the high-temperature air flow entering the air outlet support 1 from the air inlet and diffused upward through the guide rib 4, but also the high-temperature air flow diffused downward through the guide rib 4 after being diffused by the diffusion part.
[0068] On the basis of any of the above embodiments, the upper surface A of the guide rib 4 and / or the lower surface B of the guide rib 4 is provided with a guide surface for guiding the high-temperature airflow to the outer periphery of the air outlet support 1.
[0069] Please refer to Figure 3 , Figure 4 By providing the guide surface on the upper surface A of the guide rib 4, or the upper surface A and the lower surface B of the guide rib 4, or the lower surface B of the guide rib 4, the high-temperature airflow is guided from the inside of the air outlet support 1 to the outer periphery of the air outlet support 1, more specifically, to the space between the outer periphery of the air outlet support 1 and the inner wall of the shell 2, ensuring the guiding effect of the high-temperature airflow, the stability and uniformity of the airflow at the position of the air outlet 21, and the curling effect.
[0070] In the present embodiment, the upper surface A and the lower surface B of the guide rib 4, specifically the upper and lower surfaces of at least one of the connecting portion 412 and the protruding portion 411.
[0071] On the basis of any of the above embodiments, please refer to Figure 2 The guide surface includes a guide slope 4121 provided on the upper surface of the protruding portion 411 and / or the lower surface of the protruding portion 411, and the guide surface is specifically provided on the protruding portion 411 near the air outlet 21. The guide slope 4121 is inclined towards the direction of the air outlet 21, and the airflow is guided by the slope, so that the high-temperature airflow is fully guided, and the air outlet effect is ensured.
[0072] The guide slope 4121 can guide part of the high-temperature airflow to the position of the corresponding air outlet 21, and can also guide part of the high-temperature airflow to the airflow channel corresponding to the next air outlet 21 adjacent to the air outlet 21 in the direction of the high-temperature airflow. That is, the high-temperature airflow can be guided to two positions by the guide slope 4121, one is the position of the corresponding air outlet 21, and the airflow is directly guided to the air outlet 21 at this position; the other is the airflow channel corresponding to the next air outlet 21 adjacent to the air outlet 21 and located in the direction of the high-temperature airflow.
[0073] On the basis of any of the above embodiments, please refer to Figure 2 , Figure 3 The slope 121 is provided on at least one of the first side surface of the connecting portion 412 and the second side surface opposite to the first side surface, and extends towards the direction of the air outlet 21. The provision of the slope 121 can guide the high-temperature airflow to the air outlet 21 when the airflow flows between the two support columns 12, reduce the loss of air volume, and ensure the air outlet effect of the air outlet 21.
[0074] The support column 12 is provided with an inclined surface 121, and the cross-sectional structure of the inclined surface 121 can be a parallelogram.
[0075] On the basis of any of the above embodiments, a plurality of air outlets 21 are uniformly arranged on the outer wall of the shell 2, each air outlet 21 corresponds to a plurality of guide ribs 4, and the plurality of guide ribs 4 and the air outlet support 1 form a plurality of spiral guide paths. Figure 4 As shown by the dashed line, the spiral direction is upward, and when the high-temperature airflow flows upward through the air inlet, the airflow can be spirally sent upward to the position of each corresponding air outlet 21 through the spiral guide path; when the high-temperature airflow is diffused downward after passing through the diffusion part at the top of the air outlet support 1, the airflow can be spirally transported downward to the position of each corresponding air outlet 21 through the spiral guide path.
[0076] On the basis of any of the above embodiments, please refer to Figure 2 , the inner wall of the shell 2 is provided with a transition arc, and the outer side of the support column 12 and the outer side of the guide rib 4 have a flow gap with the transition arc to form an airflow channel. Through the arrangement of the transition arc, the effect of flow guiding is further improved, the airflow to the position of the air outlet 21 is ensured, the air outlet effect at the air outlet 21 is ensured, and the curling effect is improved.
[0077] In addition to the above molding assembly, the utility model also provides a curling device comprising the molding assembly disclosed in the above embodiments, and the curling device further comprises a main body 3 connected to the bottom of the molding assembly for transmitting high-temperature airflow to the air inlet, please refer to Figure 5 、 Figure 6 . The main body 3 is substantially connected to the base 11 of the molding assembly, and the connection between the molding assembly and the main body 3 is formed through the base 11.
[0078] In addition, the curling device provided by the utility model further comprises a rotating cap 7, a humidity detector 6 and a decoration piece 5, wherein the rotating cap 7 is connected to the top of the shell 2, the decoration piece 5 is connected to the bottom of the main body 3 and the shell 2 to form a fixation, the main body 3 can have a driving part, a fan blade and other components, and can achieve the effect of providing high-temperature airflow. The humidity detector 6 is a component for detecting the humidity of the airflow, and can be arranged on or in the shell 2 at any position that does not affect other components and does not interfere with the flow of the airflow.
[0079] In the specification, each embodiment is described in a progressive manner, and each embodiment focuses on the difference from other embodiments. The same or similar parts of each embodiment can be referred to each other.
[0080] The modeling assembly and the curler provided by the utility model are described in detail. The principle and implementation mode of the utility model are described by applying specific examples. The description of the above examples is only used for helping to understand the method and the core idea of the utility model. It should be pointed out that the ordinary skilled in the art can make some improvements and modifications to the utility model without departing from the principle of the utility model, and these improvements and modifications also fall within the protection scope of the utility model claim.
Claims
1. A styling assembly, characterized by, The application relates to a high-temperature air flow guiding device. The device comprises an air outlet support (1) with an air inlet for conveying high-temperature air flow into the air outlet support (1) and a hollow interior; a guide rib (4) arranged along the height direction of the air outlet support (1) for guiding the high-temperature air flow to the outer periphery of the air outlet support (1); and a shell (2) sleeved on the outer periphery of the air outlet support (1), wherein the shell (2) is provided with an air outlet (21) close to the end of the guide rib (4). The molding assembly comprises a base (11) and support columns (12) arranged along the circumference of the base (11). The guide ribs (4) are arranged between two adjacent support columns (12), and the inclination of the guide rib (4) at the upper end of the support column (12) is greater than the inclination of the guide rib (4) at the lower end of the support column (12).
2. A styling assembly according to claim 1, wherein, The bottom of the air outlet support (1) is provided with the air inlet, and the top of the air outlet support (1) is provided with a diffusion part for diffusing the high-temperature air flow reaching the top of the air outlet support (1). The guide rib (4) is spirally arranged for spirally guiding the high-temperature air flow to the outer periphery of the air outlet support (1).
3. A styling assembly according to claim 2, wherein, The guide rib (4) comprises a connecting part (412) between two adjacent support columns (12) and a protruding part (411) protruding relative to the connecting part (412) and arranged close to the air outlet (21).
4. A styling assembly according to claim 3, wherein, The inner side of the protruding part (411) is connected to the outer periphery of the support column (12), and the outer side of the protruding part (411) has an arc surface arranged close to the inner wall of the shell (2).
5. A styling assembly according to claim 4, wherein, The upper surface A of the guide rib (4) and / or the lower surface B of the guide rib (4) is provided with a guide surface for guiding the high-temperature air flow to the outer periphery of the air outlet support (1).
6. A styling assembly according to claim 5, wherein, The guide surface comprises a guide inclined surface (4121) arranged on the upper surface of the protruding part (411) and / or the lower surface of the protruding part (411), which is arranged to be inclined towards the air outlet (21), and is used for guiding part of the high-temperature air flow to the position of the corresponding air outlet (21) and part of the high-temperature air flow to the air flow channel corresponding to the next air outlet (21) adjacent to the air outlet (21) in the flow direction of the high-temperature air flow.
7. A styling assembly according to claim 6, wherein, At least one of the first side and the second side of the connecting part (412) connected to the support column (12) is provided with an inclined surface (121) extending towards the air outlet (21).
8. A styling assembly according to claim 7, wherein, The outer wall of the shell (2) is uniformly provided with a plurality of air outlets (21), each air outlet (21) corresponds to a plurality of guide ribs (4), and the plurality of guide ribs (4) and the air outlet support (1) form a plurality of spiral guide paths.
9. A styling assembly according to claim 8, wherein, 10. A styling assembly according to any one of claims 1 to 9, wherein, 11. A styling assembly according to claim 10, wherein, The inner wall of the shell (2) is provided with a transition arc, and the outer side of the supporting column (12) and the outer side of the guide rib (4) have flow circulation gaps with the transition arc to form an air flow channel.
12. A curling iron, characterized in that Comprising: a molding assembly according to any one of claims 1 to 11; a main body (3) connected to the bottom of the molding assembly for transmitting the high-temperature air flow to the air inlet.