Styling accessories and tools

By designing styling accessories with comb-like and adjustable features, the problem of frequent tool changes required by traditional styling tools has been solved, achieving simplified operation and diverse curling effects.

CN224268549UActive Publication Date: 2026-05-26LOVEUBEST TECHNOLOGY (SUZHOU) CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
LOVEUBEST TECHNOLOGY (SUZHOU) CO LTD
Filing Date
2025-06-10
Publication Date
2026-05-26

AI Technical Summary

Technical Problem

Traditional styling tools require frequent tool changes and repeated operations, making hair care a cumbersome process and difficult for users to operate.

Method used

Design a styling accessory, including a main housing, a comb structure, and an adjustment structure. The main housing is connected to the main body of the device, and the comb plate can be switched in different states. Combining the blow-drying and combing functions, it can achieve curling in different directions, and the curling direction can be adjusted by the adjustment structure.

Benefits of technology

It allows for hair combing and curling directly through the comb plate and teeth without the need for frequent tool changes. It is simple to operate, the curling direction is adjustable, and it is more convenient to use.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224268549U_ABST
    Figure CN224268549U_ABST
Patent Text Reader

Abstract

This utility model discloses a styling accessory and styling tool. The styling accessory includes a main shell, a comb structure, and an adjustment structure. The main shell is a cylindrical structure with one open end and a first air outlet communicating with its inner cavity on its periphery. The comb structure includes multiple comb plates movably mounted on the main shell and multiple comb teeth on each comb plate, with the multiple comb plates arranged sequentially along the circumference of the main shell. The adjustment structure is located at the other end of the main shell and connected to all the comb plates. The adjustment structure rotates under external force, driving the multiple comb plates to rotate together, allowing the multiple comb plates to switch between a first blowing state and a second blowing state. The styling accessory provided by this utility model can both curl hair and comb hair, eliminating the need to change styling tools frequently, making it more convenient to use and simpler for users.
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Description

Technical Field

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

[0002] Styling tools are used to style hair or other hair, giving it a specific shape, such as straight or curly. Traditional styling accessories, such as straighteners and curling irons, require combing the hair before styling and then sectioning it. However, these accessories inevitably tangle the hair again during the styling process. Therefore, it's necessary to comb the hair multiple times to prepare for straightening or curling. Users need to frequently change tools and repeat the process, making hair styling tedious and difficult to operate. Utility Model Content

[0003] In order to solve the above-mentioned technical problems, the main purpose of this utility model is to provide a styling accessory and styling tool, which aims to solve the problem that traditional styling tools require users to frequently change the tools and repeat the operation, making the hair styling process cumbersome and difficult for users to operate.

[0004] To achieve the above objectives, this utility model proposes a decorative accessory, comprising:

[0005] The main housing is cylindrical with one end open, and has a first air outlet on its periphery that communicates with its inner cavity;

[0006] The comb structure includes multiple comb plates movably disposed on the main housing, and multiple comb teeth disposed on each of the comb plates, wherein the multiple comb plates are arranged sequentially along the circumference of the main housing;

[0007] Each of the comb plates has a first side and a second side that are arranged opposite to each other along the circumference of the main housing. In each pair of adjacent comb plates, a second air outlet is formed between the first side of the preceding comb plate and the second side of the following comb plate. All of the second air outlets are connected to the first air outlet.

[0008] Each pair of adjacent comb plates has a first blowing state in which the first side of the preceding comb plate is outside the second side of the following comb plate, and a second blowing state in which the second side of the following comb plate is outside the first side of the preceding comb plate.

[0009] An adjustment structure is located at the other end of the main housing and is connected to multiple comb plates. The adjustment structure rotates under the action of an external force, causing multiple comb plates to rotate together, so that multiple comb plates switch between the first blowing state and the second blowing state.

[0010] Optionally, it also includes a connecting structure, which is located at the open end of the main housing, adapted to connect the inner cavity of the main housing and the device body, and adapted to be detachably connected to the device body.

[0011] Optionally, the open end of the main housing is provided with an axial locking portion, and the connection structure includes:

[0012] A connecting sleeve is fitted onto the outside of the main housing and disposed near the open end of the main housing, so that the axial locking part can extend from the end of the connecting sleeve;

[0013] The locking structure includes a circumferential locking portion and an unlocking member connected to the circumferential locking portion. At least a portion of the circumferential locking portion can extend from the end of the connecting sleeve and is located at the same end of the connecting sleeve as the axial locking portion. At least a portion of the unlocking member is exposed from the circumferential side of the connecting sleeve. The unlocking member is subjected to an external force and moves radially relative to the connecting sleeve, causing the circumferential locking portion to move or elastically deform to be suitable for separation from the mating part on the device body.

[0014] Optionally, the locking structure includes a circumferential locking plate, which extends radially along the main housing. One end of the circumferential locking plate is provided with a rotating shaft that is rotatably connected to the main housing. The circumferential locking part is located at the other end of the circumferential locking plate, and the unlocking member is connected to the middle of the circumferential locking plate.

[0015] Optionally, the circumferential locking portion includes a locking protrusion protruding from the circumferential locking plate, the locking protrusion protruding outward along the radial direction of the main housing; the unlocking member and the locking protrusion are located on the same side of the circumferential locking plate, the circumferential locking plate is provided with multiple mounting portions, the unlocking member is provided with multiple mating portions, and the multiple mounting portions and the multiple mating portions are matched one-to-one to detachably install the unlocking member onto the circumferential locking plate.

[0016] Optionally, the plurality of mounting portions include two snap-fit ​​protrusions respectively provided on both sides of the circumferential locking plate along the circumferential direction of the main housing;

[0017] The unlocking component includes an unlocking button, and the plurality of mating parts include two latching holes protruding from the unlocking button, with two latching protrusions corresponding to and latching into the two latching holes.

[0018] Optionally, the first air outlet is provided with multiple outlets, each of the first air outlets extending along the axial direction of the main housing, and the multiple air outlets are arranged at intervals along the circumference of the main housing.

[0019] The design accessory also includes a diversion ring, which is located at the open end of the main housing and inside the main housing. The diversion ring has a diversion section inside, and the airflow flowing out from the main body of the equipment can enter the inner cavity of the main housing under the diversion and guidance of the diversion section, so that the airflow can flow to multiple first air outlets.

[0020] Optionally, the diversion section includes a plurality of diversion grid plates disposed on the inner ring side of the diversion ring. The plurality of diversion grid plates are arranged in a cross pattern and intersect at the same point. An airflow channel is formed between each two adjacent diversion grid plates. The plurality of airflow channels are arranged sequentially along the circumference of the main housing. The plurality of airflow channels are arranged in a one-to-one correspondence with the plurality of first air outlets.

[0021] Optionally, each of the comb plates is provided with a plurality of first comb tooth groups and a plurality of second comb tooth groups, wherein the plurality of first comb tooth groups are respectively located on both sides of the plurality of second comb tooth groups along the periphery of the main housing;

[0022] Each first comb tooth group includes a plurality of first comb teeth spaced apart along the axial direction of the main housing, and each second comb tooth group includes a plurality of second comb teeth spaced apart along the axial direction of the main housing, wherein the protrusion height of each first comb tooth located on the same comb plate is less than the protrusion height of each second comb tooth; and / or,

[0023] The materials of the first comb teeth and the second comb teeth are set to be different.

[0024] This utility model also provides a shaping tool, including the above-mentioned shaping accessories.

[0025] The technical solution provided by this utility model has the following beneficial effects:

[0026] The styling accessory provided by this utility model includes a main housing, a comb structure, and an adjustment structure. The main housing is adapted to be connected to the main body of the device. Airflow blown from the main body of the device can enter the main housing through the open end of the main housing and flow to the first air outlet on the circumferential side of the main housing. Specifically, each of the comb plates has a first side and a second side arranged opposite to each other along the circumference of the main housing. In each pair of adjacent comb plates, a second air outlet is formed between the first side of the preceding comb plate and the second side of the following comb plate. Airflow flowing out from the first air outlet can be blown out through multiple second air outlets to blow onto hair or for other purposes.

[0027] Furthermore, multiple comb plates are movably mounted on the main housing. In a first blowing state, where the first side of the preceding comb plate is outside the second side of the following comb plate, the airflow from the second air outlet can flow towards the outer surface of the following comb plate under the guidance of the preceding comb plate. Thus, the airflow from the multiple second air outlets can flow along the outer surface of their respective comb plates, forming a circumferential airflow in a first direction around the main housing. When the styling accessory approaches the hair, the airflow in this first direction causes the hair to be attracted by the airflow and wrapped around the outside of the multiple comb plates in the first direction, thereby curling the hair. When the second airflow state is outside the first side of the first comb plate, on the second side of the second comb plate, based on the same principle, the airflow blown out from the second air outlet can flow towards the outer surface of the first comb plate under the guidance of the second comb plate. In this way, the airflow blown out from multiple second air outlets can form a second circumferential airflow around the main housing. When the styling accessory is close to the hair, under the action of the second directional airflow, the hair can be attracted by the airflow and wrapped around the outside of multiple comb plates in the second direction, achieving curling of the hair in another direction.

[0028] The first and second directions are opposite, allowing for curls in two different directions. Furthermore, an adjustable structure is included; external force drives the structure to rotate, changing the working state of multiple comb plates and thus adjusting the curling direction of the styling attachments. This makes the styling attachments more versatile and convenient to use. Moreover, the comb plates have teeth that allow the styling attachments to directly smooth hair during operation, eliminating the need for frequent tool changes and simplifying user operation. Attached Figure Description

[0029] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on the structures shown in these drawings without creative effort.

[0030] Figure 1 A schematic diagram of the structure of an embodiment of a styling accessory provided by this utility model;

[0031] Figure 2 for Figure 1 An exploded structural diagram of the styling accessories described herein;

[0032] Figure 3 for Figure 1A cross-sectional structural diagram of the styling accessory described in the image (when there is no airflow channel inside the main shell);

[0033] Figure 4 for Figure 1 A cross-sectional structural diagram of the shaped accessory described herein (when forming airflow along the first direction);

[0034] Figure 5 for Figure 1 A cross-sectional structural diagram of the shaped accessory described herein (when forming airflow along the second direction);

[0035] Figure 6 for Figure 1 A schematic diagram of the locking structure described herein;

[0036] Figure 7 for Figure 1 A schematic diagram of the structure of the diversion ring described in the figure;

[0037] Figure 8 An exploded view of the main body of the device and the locking structure provided by this utility model.

[0038] Explanation of icon numbers:

[0039] 100 - Styling accessories; 1 - Main housing; 11 - First mounting section; 12 - Second mounting section; 121 - First air outlet; 13 - Axial locking part; 2 - Comb structure; 21 - Comb plate; 221 - First comb tooth; 222 - Second comb tooth; 23 - Second air outlet; 3 - Adjustment structure; 31 - Adjustment plate; 32 - Adjustment knob; 4 - Connection structure; 41 - Connecting sleeve; 42 - Locking structure; 421 - Circumferential locking plate; 422 - Circumferential locking part; 4221 - Locking protrusion; 423 - Rotating shaft; 424 - Snap-fit ​​protrusion; 425 - Unlocking part; 4251 - Unlocking button; 4252 - Snap hole; 5 - Diverting ring; 6 - Diverting part; 61 - Diverting grid plate; 200 - Equipment body; 201 - Fitting part.

[0040] The realization of the purpose, functional characteristics and excellent effects of this utility model will be further explained below in conjunction with specific embodiments and accompanying drawings. Detailed Implementation

[0041] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0042] It should be noted that if the embodiments of this utility model involve directional indication, the directional indication is only used to explain the relative positional relationship and movement of each component in a specific posture. If the specific posture changes, the directional indication will also change accordingly.

[0043] Furthermore, if the embodiments of this utility model involve descriptions such as "first" or "second," these descriptions are for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated. Therefore, a feature defined with "first" or "second" may explicitly or implicitly include at least one of those features. Additionally, the meaning of "and / or" throughout the text includes three parallel solutions; for example, "A and / or B" includes solution A, solution B, or a solution where both A and B are satisfied simultaneously. Furthermore, the technical solutions of the various embodiments can be combined with each other, but this must be based on the ability of those skilled in the art to implement them. When the combination of technical solutions is contradictory or impossible to implement, it should be considered that such a combination of technical solutions does not exist and is not within the scope of protection claimed by this utility model.

[0044] This utility model provides a styling accessory 100, which is adapted to be connected to the main body 200 of the styling device, so that the airflow generated from the main body 200 can flow to the styling accessory 100, and the hair can be styled through the styling accessory 100.

[0045] Specifically, please refer to Figures 1 to 2 In this embodiment, the styling accessory 100 includes a main housing 1, a comb structure 2, and an adjustment structure 3.

[0046] The main housing 1 is a cylindrical shape with one end open, and a first air outlet 121 connected to its inner cavity is provided on its periphery.

[0047] The comb structure 2 includes a plurality of comb plates 21 movably disposed on the main housing 1, and a plurality of comb teeth disposed on each of the comb plates 21, wherein the plurality of comb plates 21 are arranged sequentially along the circumference of the main housing 1.

[0048] Each of the comb plates 21 has a first side and a second side that are arranged opposite to each other along the circumference of the main housing 1. In each pair of adjacent comb plates 21, a second air outlet 23 is formed between the first side of the preceding comb plate 21 and the second side of the following comb plate 21. All of the second air outlets 23 are connected to the first air outlet 121.

[0049] Each pair of adjacent comb plates 21 has a first blowing state in which the first side of the preceding comb plate 21 is outside the second side of the following comb plate 21, and a second blowing state in which the second side of the following comb plate 21 is outside the first side of the preceding comb plate 21.

[0050] The adjustment structure 3 is located at the other end of the main housing 1 and is connected to the multiple comb plates 21. The adjustment structure 3 rotates under the action of external force, driving the multiple comb plates 21 to rotate together, so that the multiple comb plates 21 switch between the first blowing state and the second blowing state.

[0051] In this embodiment, the main housing 1 is adapted to be connected to the device body 200. The airflow blown out from the device body 200 can enter the main housing 1 through the open end of the main housing 1 and flow to the first air outlet 121 on the peripheral side of the main housing 1. Specifically, each of the comb plates 21 has a first side and a second side arranged opposite to each other along the circumference of the main housing 1. In each pair of adjacent comb plates 21, a second air outlet 23 is formed between the first side of the preceding comb plate 21 and the second side of the following comb plate 21. The airflow flowing out from the first air outlet 121 can be blown out through multiple second air outlets 23 to blow onto the hair or for other purposes.

[0052] Furthermore, multiple comb plates 21 are movably mounted on the main housing 1. When the first side of the preceding comb plate 21 is outside the second side of the following comb plate 21 in a first blowing state, the airflow blown from the second air outlet 23 can flow towards the outer surface of the following comb plate 21 under the guidance of the preceding comb plate 21. In this way, the airflow blown from the multiple second air outlets 23 can flow along the outer surface of the corresponding comb plates 21 to form a circumferential airflow in the first direction around the main housing 1. Here, "the first side of the preceding comb plate 21 is outside the second side of the following comb plate 21" means that the distance from the first side of the preceding comb plate 21 to the main housing 1 is greater than the distance from the second side of the following comb plate 21 to the main housing 1. When the styling accessory 100 is close to the hair, under the action of the airflow in the first direction, the hair can be attracted by the airflow and wrapped around the outside of the multiple comb plates 21 in the first direction, thereby curling the hair. When the second airflow state is outside the first side of the first comb plate 21 on the second side of the second comb plate 21, based on the same principle, the airflow blown out from the second air outlet 23 can flow towards the outer surface of the first comb plate 21 under the guidance of the second comb plate 21. In this way, the airflow blown out from the multiple second air outlets 23 can form a second direction of airflow around the main housing 1. When the styling accessory 100 is close to the hair, under the action of the second direction of airflow, the hair can be attracted by the airflow and wrapped around the outside of the multiple comb plates 21 in the second direction, realizing the curling of the hair in another direction.

[0053] Among them, combined Figure 4 and Figure 5 As shown, the dashed arrows indicate the airflow direction. The first and second directions are opposite; the first direction can be counter-clockwise, and the second direction can be clockwise, allowing for curls in two different directions. Furthermore, by incorporating an adjustment structure 3, external force can be used to rotate the adjustment structure 3, thereby changing the working state of the multiple comb plates 21 and adjusting the curling direction of the styling accessory 100. This makes the styling accessory 100 more versatile and convenient to use. Moreover, because the comb plates 21 have comb teeth, the styling accessory 100 can directly smooth the hair during operation, eliminating the need for frequent changes of styling tools, making it more convenient and simpler for users.

[0054] The main housing 1 is generally cylindrical, with one end open for connection to the equipment body 200 and the other end closed. Airflow from the equipment body 200 enters the inner cavity of the main housing 1 through the open end and exits through the first air outlet 121 on the circumferential side of the main housing 1, flowing towards the comb plate 21. Preferably, combined with… Figure 2As shown, multiple first air outlets 121 are provided, each extending axially along the main housing 1, and the multiple first air outlets 121 are evenly spaced along the circumference of the main housing 1. The number of first air outlets 121 corresponds to the number of comb plates 21, so that each comb plate 21 is provided with a corresponding first air outlet 121, thereby making the airflow from each second air outlet 23 more consistent, and the airflow formed around the multiple comb plates 21 more consistent, so that the curl of the hair is more consistent when the user curls their hair.

[0055] Each comb plate 21 is generally plate-shaped and extends axially along the main housing 1. Along the circumference of the main housing 1, each comb plate 21 is arranged in an outwardly convex arc shape, matching the outer peripheral side of the main housing 1. Multiple comb teeth are located on the side of each comb plate 21 facing away from the main housing 1, towards the side of the hair, facilitating hair combing.

[0056] Combination Figure 1 , Figures 3 to 5 As shown, each of the comb plates 21 is provided with a plurality of first comb teeth 221 groups and a plurality of second comb teeth 222 groups. The plurality of first comb teeth 221 groups are respectively located on both sides of the plurality of second comb teeth 222 groups along the periphery of the main housing 1. Each first comb tooth 221 group includes a plurality of first comb teeth 221 arranged at intervals along the axial direction of the main housing 1, and each second comb tooth 222 group includes a plurality of second comb teeth 222 arranged at intervals along the axial direction of the main housing 1. The protrusion height of each first comb tooth 221 located on the same comb plate 21 is less than the protrusion height of each second comb tooth 222.

[0057] The protrusion height of the first comb tooth 221 is the height by which it protrudes from the comb plate 21. Similarly, the protrusion height of the second comb tooth 222 is the height by which it protrudes from the comb plate 21. By setting the first and second comb teeth 221 at different heights, during combing, the second comb tooth 222 can contact the hair first and comb it. As the second comb tooth 222 penetrates deeper into the hair, the first comb tooth 221 can also contact the hair. Since the outer layer of hair is more prone to tangling than the deeper hair, the second comb tooth 222 can comb the outer layer of hair once, while the first comb tooth 221 can comb it a second time, thus better detangling the hair. Furthermore, the first comb tooth 221 does not need to penetrate deep into the hair, resulting in less resistance during combing and less effort for the user.

[0058] In one embodiment, the first comb teeth 221 groups and the second comb teeth 222 groups can be staggered along the circumference of the main housing 1. That is, along the circumference of the main housing 1, each first comb tooth 221 of each first comb tooth 221 group is positioned in the middle interval area between two second comb teeth 222 in each second comb tooth 222 group. This results in a higher density of the first comb teeth 221 and second comb teeth 222 along the axial direction of the main housing 1. Since the styling accessory 100 moves in the direction of hair movement in the axial direction during combing, by arranging more comb teeth in the axial direction, more comb teeth can participate in combing the hair, resulting in higher hair straightening efficiency and better straightening effect.

[0059] Furthermore, the materials of the first comb teeth 221 and the second comb teeth 222 are different. Specifically, the first comb teeth 221 can be made of plastic, while the second comb teeth 222 can be made of bristles or other soft materials. Since the second comb teeth 222 penetrate deep into the hair and may even contact the scalp, they are made of soft materials to better protect the scalp. The plastic first comb teeth 221 are harder than the second comb teeth 222, which can better resist the resistance provided by the hair during combing and better straighten the hair.

[0060] Among them, combined Figure 4 and Figure 5 As shown, a transmission part is provided on the inner side of each comb plate 21, and multiple limiting parts that cooperate with the multiple transmission parts are provided on the outer periphery of the main housing 1. The adjustment structure 3 is configured as an adjustment plate 31 and an adjustment knob 32 protruding from the side of the adjustment plate 31 facing away from the main housing 1. When the adjustment knob 32 is subjected to external force, for example, when manually rotated, the adjustment structure 3 can rotate relative to the main housing 1. One axial end of each comb plate 21 is rotatably connected to the adjustment structure 3, and the other axial end of each comb plate 21 is rotatably connected to the main housing 1. When the adjustment plate 31 rotates, it drives the multiple comb plates 21 to rotate together. However, under the cooperation of the transmission part and the limiting part, each comb plate 21 will not be displaced relative to the main housing 1 in the circumferential direction, but will rotate on its own, thereby causing the first side and the second side of each comb plate 21 to move relative to each other.

[0061] Specifically, each transmission part includes multiple transmission protrusions, which are spaced apart on the inner side of each comb plate 21. Each limiting part includes a limiting groove on the outer periphery of the main housing 1, which extends along the axial direction of the main housing 1. Each first air outlet 121 is correspondingly located at the bottom of each limiting groove. Multiple transmission protrusions on each comb plate 21 are engaged in the corresponding limiting grooves, so that the airflow from the first air outlet 121 can flow from the intervals between the multiple transmission protrusions toward the first or second side of each comb plate 21.

[0062] Moreover, when there is no airflow passing through the main housing 1, that is, when there is no airflow blowing towards the comb plate 21, the multiple comb plates 21 are arranged in succession along the circumference of the main housing 1 to form a closed ring structure to cover the outside of the main housing 1, thereby sealing the first air inlet and preventing external dirt from entering the main housing 1.

[0063] In one embodiment, combined with Figure 1 and Figure 2 As shown, the styling accessory 100 also includes a connecting structure 4, which is located at the open end of the main housing 1. The connecting structure 4 is adapted to connect the inner cavity of the main housing 1 and the equipment body 200, and is also adapted to be detachably connected to the equipment body 200. The connecting structure 4 allows the styling accessory 100 to be detachably connected to the equipment body 200, and enables communication between the equipment body 200 and the main housing 1, thereby allowing the airflow generated by the equipment body 200 to better enter the main housing 1.

[0064] Furthermore, an axial locking part 13 is provided at the open end of the main housing 1, and the connecting structure 4 includes a connecting sleeve 41 and a locking structure 42.

[0065] The axial locking portion 13 is configured with multiple notches and grooves, which are spaced apart circumferentially along the main housing 1 to engage with multiple protrusions on the equipment body 200. The connecting sleeve 41 is sleeved on the outside of the main housing 1 and is located near the open end of the main housing, so that the axial locking portion 13 can extend from the end of the connecting sleeve 41. The locking structure 42 includes a circumferential locking portion 422 and an unlocking member 425 connected to the circumferential locking portion 422. At least a portion of the circumferential locking portion 422 can extend from the end of the connecting sleeve 41 and is located at the same end of the connecting sleeve 41 as the axial locking portion 13. At least a portion of the unlocking member 425 is exposed from the circumference of the connecting sleeve 41. When the unlocking member 425 is subjected to external force, it moves radially relative to the connecting sleeve 41, causing the circumferential locking portion 422 to move or elastically deform to facilitate separation from the mating portion 201 on the equipment body 200.

[0066] The connecting sleeve 41 is generally annular in shape and is fitted onto the outside of the main housing 1, located at one end of a plurality of comb plates 21. The connecting sleeve 41 has a first end and a second end arranged opposite each other along its axial direction. Both the axial locking portion 13 and the circumferential locking portion 422 protrude from the first end of the connecting sleeve 41. An inwardly extending flange is provided at the opening of the second end of the connecting sleeve 41. The main housing 1 has a first mounting section 11 and a second mounting section 12. The connecting sleeve 41 is fitted onto the outside of the first mounting section 11, and the plurality of comb plates 21 are located on the outside of the second mounting section 12. The outer diameter of the first mounting section 11 is slightly larger than the outer diameter of the second mounting section 12, forming a stepped portion at the connection between the first mounting section 11 and the second mounting section 12. The connecting sleeve 41 can be fitted onto the outside of the main housing 1 from one end of the second mounting section 12, with the flange of the second end of the connecting sleeve 41 abutting against the stepped portion. Furthermore, multiple first buckles are provided on the inner ring side of the connecting sleeve 41, and multiple first latches are provided on the outer periphery of the first mounting section 11. The multiple first latches are locked onto the multiple first buckles one by one. The connecting sleeve 41 is restricted from moving axially toward the open end of the main housing 1 by the cooperation of the edge of the connecting sleeve 41 and the stepped portion. The connecting sleeve 41 is also restricted from moving axially toward the other end of the main housing 1 by the cooperation of the multiple first latches and the multiple first buckles, so as to completely limit the connecting sleeve 41 and the main housing 1 in the axial direction.

[0067] It is understood that the circumferential locking part 422 can be separated from the mating part 201 by moving, or it can be separated from the mating part 201 by its own elastic deformation.

[0068] Preferably, combined with Figure 2 and Figure 6 As shown, the locking structure 42 includes a circumferential locking plate 421, which is rotatably mounted on the main housing 1. The rotation of the circumferential locking plate 421 drives the circumferential locking part 422 to move, allowing the circumferential locking part 422 to move closer to or further away from the mating part 201 on the main body 200. Specifically, the circumferential locking plate 421 extends radially along the main housing 1. One end of the circumferential locking plate 421 is provided with a rotating shaft 423 rotatably connected to the main housing 1. The circumferential locking part 422 is located at the other end of the circumferential locking plate 421, and the unlocking member 425 is connected to the middle of the circumferential locking plate 421.

[0069] The main housing 1 has a clearance notch on its first mounting section 11. One end of the circumferential locking plate 421 is rotatably connected to the main housing 1, and the other end is located at the clearance notch and on the same circumferential surface as the first mounting section 11. The connecting sleeve 41 has a mounting hole, through which the unlocking member 425 passes and extends into the main housing 1 to connect with the circumferential locking plate 421. The unlocking member 425 is inserted into the connecting sleeve 41 to connect with the circumferential locking part 422, thereby limiting the relative position of the connecting sleeve 41 and the main housing 1 in the circumferential direction. The unlocking component 425 is detachably connected to the circumferential locking plate 421, located in the middle of the circumferential locking plate 421 or slightly offset to one side of the circumferential locking part 422. Under the action of external force, such as manual pressing of the unlocking component 425, the circumferential locking plate 421 is driven to rotate about its rotation axis 423 relative to the main housing 1, so that the circumferential locking part 422 moves in a direction away from the mating part 201 on the main body 200, so as to unlock with the mating part 201.

[0070] Preferably, combined with Figure 6 and Figure 8 As shown, the circumferential locking part 422 includes a locking protrusion 4221 protruding from the circumferential locking plate 421. The locking protrusion 4221 protrudes radially outward from the main housing 1. Here, "outward" refers to the direction relative to the main housing 1 itself, with the center of the main housing 1 being the inside and the outer wall surface of the main housing 1 being the outside. The direction from the center of the main housing 1 towards its outer wall is the direction from the inside to the outside. The unlocking member 425 and the locking protrusion 4221 are located on the same side of the circumferential locking plate 421. The circumferential locking plate 421 has multiple mounting parts, and the unlocking member 425 has multiple mating parts 201. The multiple mounting parts and the multiple mating parts 201 are matched one-to-one to detachably install the unlocking member 425 onto the circumferential locking plate 421, making assembly more convenient and facilitating maintenance of the unlocking member 425 and the circumferential locking plate 421.

[0071] In addition, an elastic element, which can be a torsion spring, is provided inside the main housing 1. When the unlocking member 425 is subjected to external force and moves radially toward the inside of the main housing 1, it pushes the circumferential locking plate 421 to move around its rotation axis 423 toward the inside of the main housing 1, thereby causing the locking protrusion 4221 to separate from the mating part 201, and the shaping accessory 100 to unlock axially from the equipment body 200. At this time, the torsion spring is in an elastic energy storage state. When the external force on the unlocking member 425 is removed, under the action of the elastic restoring force of the torsion spring, the circumferential locking plate 421 can return to the position where it is engaged with the mating part 201, thereby avoiding the need for manual reset of the circumferential locking plate 421 and making the operation more convenient.

[0072] Specifically, the plurality of mounting portions include two snap-fit ​​protrusions 424 respectively disposed on both sides of the circumferential locking plate 421 along the circumference of the main housing 1. The unlocking member 425 includes an unlocking button 4251, and the plurality of mating portions 201 include two hooks protruding from the unlocking button 4251. The two snap-fit ​​protrusions 424 are correspondingly engaged in the two locking holes 4252 to form relative limiting of the unlocking member 425 and the locking plate in the axial, circumferential and radial directions, so that the unlocking button 4251 and the circumferential locking plate 421 are stably and reliably connected.

[0073] In one embodiment, the styling accessory 100 further includes a diversion ring 5, which is disposed at the open end of the main housing 1 and located inside the main housing 1. The diversion ring 5 has a diversion section 6 inside, allowing the airflow from the device body 200 to enter the inner cavity of the main housing 1 under the diversion and guidance of the diversion section 6, and enabling the airflow to flow to the multiple first air outlets 121 accordingly. Under the diversion and guidance of the diversion ring 5, the airflow can be guided to the direction of the first air outlets 121 better and more evenly, thus better ensuring uniform airflow from the multiple first air outlets 121.

[0074] Among them, combined Figure 2 and Figure 7 As shown, the diversion ring 5 is circular and is disposed inside the first mounting section 11 of the main housing 1, and is connected to the main housing 1 by screws or bolts. Preferably, the diversion ring 5 and the main housing 1 are coaxially arranged. The airflow blown out from the main body 200 directly enters the inner side of the diversion ring 5, and then is guided by the diversion part 6 into the second mounting section 12 of the main housing 1. The diversion part 6 includes a plurality of diversion grid plates 61 disposed on the inner ring side of the diversion ring 5. The plurality of diversion grid plates 61 are arranged crosswise and intersect at the same point. Each diversion grid plate 61 is arranged radially along the diversion ring 5, so that each diversion grid plate 61 is radially arranged from the center of the diversion ring 5 toward the inner ring wall of the diversion ring 5, so that an airflow channel is formed between each two adjacent diversion grid plates 61. The plurality of airflow channels are arranged sequentially along the circumference of the main housing 1, and the plurality of airflow channels are arranged one-to-one with the plurality of first air outlets 121. The airflow in each airflow channel can flow toward the corresponding first air outlet 121. The airflow in multiple airflow channels is consistent, which makes the airflow blown to multiple first air outlets 121 consistent, thereby making the airflow formed on the outside of multiple comb plates 21 more consistent.

[0075] The styling accessory 100 provided by this utility model allows for adjustment of the positions of multiple comb plates 21 via the adjustment structure 3, enabling airflow to flow along the first or second direction of the comb plates 21, thus achieving better curling in different directions. Furthermore, each comb plate 21 is equipped with comb teeth, which can also comb the hair. This allows for combing of the hair before or during curling, eliminating the need for frequent tool changes and making hair styling simpler and more convenient. Moreover, the connecting structure 4 allows the styling accessory 100 to be quickly attached to or detached from the device body 200, making replacement of the styling accessory 100 more convenient.

[0076] Combination Figure 8 As shown, this utility model also provides a styling tool, including a main body 200 and the aforementioned styling accessory 100. The styling accessory 100 is detachably installed on the main body 200, making its use more convenient. Furthermore, the styling accessory 100 can not only perform bidirectional curling but also combing, offering more diverse functions and making its operation more convenient.

[0077] The above description is only a preferred embodiment of the present utility model and does not limit the patent scope of the present utility model. Any equivalent structure made using the contents of the present utility model specification and drawings, or directly or indirectly applied to other related technical fields, are similarly included within the patent protection scope of the present utility model.

Claims

1. A decorative accessory, characterized in that, include: The main housing is cylindrical with one end open, and has a first air outlet on its periphery that communicates with its inner cavity; The comb structure includes multiple comb plates movably disposed on the main housing, and multiple comb teeth disposed on each of the comb plates, wherein the multiple comb plates are arranged sequentially along the circumference of the main housing; Each of the comb plates has a first side and a second side that are arranged opposite to each other along the circumference of the main housing. In each pair of adjacent comb plates, a second air outlet is formed between the first side of the preceding comb plate and the second side of the following comb plate. All of the second air outlets are connected to the first air outlet. Each pair of adjacent comb plates has a first blowing state in which the first side of the preceding comb plate is outside the second side of the following comb plate, and a second blowing state in which the second side of the following comb plate is outside the first side of the preceding comb plate. An adjustment structure is located at the other end of the main housing and is connected to multiple comb plates. The adjustment structure rotates under the action of an external force, causing multiple comb plates to rotate together, so that multiple comb plates switch between the first blowing state and the second blowing state.

2. The styling accessory as described in claim 1, characterized in that, It also includes a connecting structure located at the open end of the main housing, adapted to connect the inner cavity of the main housing and the equipment body, and adapted to be detachably connected to the equipment body.

3. The styling accessory as described in claim 2, characterized in that, The open end of the main housing is provided with an axial locking part, and the connection structure includes: A connecting sleeve is fitted onto the outside of the main housing and disposed near the open end of the main housing, so that the axial locking part can extend from the end of the connecting sleeve; The locking structure includes a circumferential locking portion and an unlocking member connected to the circumferential locking portion. At least a portion of the circumferential locking portion can extend from the end of the connecting sleeve and is located at the same end of the connecting sleeve as the axial locking portion. At least a portion of the unlocking member is exposed from the circumferential side of the connecting sleeve. The unlocking member is subjected to an external force and moves radially relative to the connecting sleeve, causing the circumferential locking portion to move or elastically deform to be suitable for separation from the mating part on the device body.

4. The styling accessory as described in claim 3, characterized in that, The locking structure includes a circumferential locking plate that extends radially along the main housing. One end of the circumferential locking plate is provided with a rotating shaft that is rotatably connected to the main housing. The circumferential locking part is located at the other end of the circumferential locking plate, and the unlocking element is connected to the middle of the circumferential locking plate.

5. The styling accessory as described in claim 4, characterized in that, The circumferential locking portion includes a locking protrusion protruding from the circumferential locking plate, the locking protrusion protruding outward along the radial direction of the main housing; the unlocking member and the locking protrusion are located on the same side of the circumferential locking plate, the circumferential locking plate is provided with multiple mounting portions, the unlocking member is provided with multiple mating portions, the multiple mounting portions and the multiple mating portions are matched one-to-one to detachably install the unlocking member onto the circumferential locking plate.

6. The styling accessory as described in claim 5, characterized in that, The plurality of mounting portions include two snap-fit ​​protrusions respectively provided on both sides of the circumferential locking plate along the circumferential direction of the main housing; The unlocking component includes an unlocking button, and the plurality of mating parts include two latching holes protruding from the unlocking button, with two latching protrusions corresponding to and latching into the two latching holes.

7. The styling accessory as described in claim 1, characterized in that, The first air outlet is provided with multiple outlets, each of which extends along the axial direction of the main housing, and the multiple outlets are arranged at intervals along the circumference of the main housing. The design accessory also includes a diversion ring, which is located at the open end of the main housing and inside the main housing. The diversion ring has a diversion section inside, and the airflow flowing out from the main body of the equipment can enter the inner cavity of the main housing under the diversion and guidance of the diversion section, so that the airflow can flow to multiple first air outlets.

8. The styling accessory as described in claim 7, characterized in that, The diversion section includes multiple diversion grid plates disposed on the inner ring side of the diversion ring. The multiple diversion grid plates are arranged in a cross pattern and intersect at the same point. An airflow channel is formed between each two adjacent diversion grid plates. The multiple airflow channels are arranged sequentially along the circumference of the main housing. The multiple airflow channels are arranged in a one-to-one correspondence with the multiple first air outlets.

9. The styling accessory as described in claim 1, characterized in that, Each of the comb plates is provided with a plurality of first comb tooth groups and a plurality of second comb tooth groups, with the plurality of first comb tooth groups located on both sides of the plurality of second comb tooth groups along the periphery of the main housing; Each first comb tooth group includes a plurality of first comb teeth spaced apart along the axial direction of the main housing, and each second comb tooth group includes a plurality of second comb teeth spaced apart along the axial direction of the main housing, wherein the protrusion height of each first comb tooth located on the same comb plate is less than the protrusion height of each second comb tooth; and / or, The materials of the first comb teeth and the second comb teeth are set to be different.

10. A shaping tool, characterized in that, Includes the styling accessories as described in any one of claims 1 to 9.