Modeling appliance capable of switching multiple blowing modes
By setting multiple rows of ventilation holes and air outlets on the shaping tool, the airflow in different shaping areas can be guided and closed by the rotation of the movable cylinder, which solves the problems of single function and inconvenience of use in the existing technology, and improves the user experience and safety.
Patent Information
- Application Number
- CN202422301597.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-20
- Publication Date
- 2025-11-28
- Estimated Expiration
- 2034-09-20
AI Technical Summary
Existing hair care appliances have limited functionality, requiring users to configure multiple styling tools with different functions for hair styling, which leads to inconvenience in use and storage, as well as the risk of high-temperature burns.
Design a styling tool that can switch between multiple blowing modes. By setting multiple rows of ventilation holes and air outlets on the fixed cylinder and the movable cylinder, the airflow in different styling areas can be opened and closed by the rotation of the movable cylinder, and the styling mode can be flexibly switched.
It enables multi-functional switching of shaping tools, reduces the risk of storage and loss, improves safety and convenience of use, and avoids high-temperature burns caused by repeated tool replacement.
Smart Images

Figure CN223601002U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to hairdressing accessory technical field, especially a styling appliance with switchable multiple blowing modes. BACKGROUND
[0002] With the improvement of people's living standards, hair care appliances have become modern people's daily necessities. Hair care appliances include hair dryers, hair styling appliances and other products. Such products usually include a heating unit and a fan unit. The fan unit works to make external airflow enter the inside of the hair dryer, become hot air after being heated by the heating unit, and then be discharged. The hot air can dry hair and style hair.
[0003] However, the existing products have single functions, and it is difficult for a product to meet the needs of users. When users need to dry hair, they need to install a wind deflector on the outlet end of the hair dryer to gather airflow to the hair for drying. When users need to dry and straighten hair at the same time, they need to replace a flat hair dryer comb for use. When users need to dry and style hair at the same time, they need to replace a cylindrical hair dryer comb for use.
[0004] Therefore, when users style hair, they often need to configure multiple styling appliances with different functions for use. This operation may sometimes become tedious, which affects the convenience and ergonomics of the styling appliance. When handling the styling appliance, there is a risk of burns due to contact with high temperatures during use. When these styling appliances are not stored in a place that cannot be touched and the user cannot touch the accessories when the user wants to use them, there is a risk of losing the accessories.
[0005] Therefore, it is necessary to study a new technical solution to solve the above problems. CONTENT OF THE UTILITY MODEL
[0006] Therefore, the utility model mainly aims at providing a styling appliance with switchable multiple blowing modes to effectively solve the technical defects in the prior art that multiple styling appliances with different functions are needed to cooperate with hair styling during the hair styling process.
[0007] The utility model adopts the following technical solutions:
[0008] The application discloses a styling appliance capable of switching multiple blowing modes, which comprises a comb shell and a wind control component, the comb shell is externally provided with multiple styling areas with different wind outlet directions, the wind control component comprises a fixed cylinder fixedly installed on the comb shell and a movable cylinder movably installed on the fixed cylinder, the side surface of the fixed cylinder is provided with multiple rows of air vents, at least one row of air vents is arranged in each styling area, each row of air vents is arranged at an axial interval along the fixed cylinder, and at least one row of air vents is staggered along the axial direction of the fixed cylinder with the remaining rows of air vents; the movable cylinder is provided with multiple rows of air outlets, and when at least one row of air outlets is in conductive connection with one row of air vents, the fixed cylinder can close the remaining rows of air outlets to switch the wind outlet of different styling areas.
[0009] The styling appliance capable of switching multiple blowing modes has the beneficial effects that, compared with the prior art, multiple styling areas are arranged, at least one row of air vents is arranged on the fixed cylinder in the direction of each styling area, multiple rows of air vents are arranged on the movable cylinder, and at least one row of air vents is staggered along the axial direction of the fixed cylinder with the remaining rows of air vents; in this way, the position of the movable cylinder relative to the fixed cylinder can be changed to realize the conductive connection between the air outlet cylinder and different air vents, the air flow is blown out from different areas, the user can flexibly switch to different styling modes, the problem of inconvenient storage of multiple styling appliances in the prior art is solved, the risk of losing the styling appliance by the user is reduced, the use cost of the user is reduced, the user does not need to repeatedly replace different styling appliances during the hair styling process, the problem of the risk of burns caused by high temperature in the use process is solved, and the use safety of the user is improved.
[0010] As a preferred scheme, the movable cylinder is rotatably installed in the fixed cylinder, and the movable cylinder is provided with an air supply air duct capable of inputting air flow;
[0011] The multiple rows of air vents are arranged in a circumferential annular array along the fixed cylinder, and the multiple rows of air outlets are arranged in a circumferential annular array along the movable cylinder.
[0012] As a preferred scheme, the styling areas comprise a first styling area and a second styling area;
[0013] The multiple rows of air vents comprise A rows of air vents arranged in the direction of the first styling area and B rows of air vents arranged in the direction of the second styling area, and the multiple rows of air outlets comprise A rows of air outlets and B rows of air outlets;
[0014] When the movable cylinder is rotated to a first angle, the A rows of air outlets are in conductive connection with the A rows of air vents and the B rows of air vents are closed;
[0015] When the movable cylinder is rotated to a second angle, the A rows of air outlets and the B rows of air outlets are in conductive connection with the B rows of air vents and the A rows of air outlets are closed.
[0016] As a preferred scheme, the styling areas further comprise a third styling area;
[0017] The plurality of rows of air inlets includes an upper C row of air inlets facing the second molding area and a lower C row of air inlets facing the third molding area;
[0018] The plurality of rows of air outlets further includes a C row of air outlets;
[0019] When the movable cylinder is rotated to the third angle, the upper C row of air inlets and the lower C row of air inlets are in conductive connection with the B row of air outlets and the C row of air outlets, and the A row of air inlets and the B row of air inlets are closed.
[0020] As a preferred solution: the molding area further includes a fourth molding area, and the plurality of rows of air inlets includes a D row of air inlets facing the fourth molding area;
[0021] When the movable cylinder is rotated to the third angle, the A row of air outlets is in conductive connection with the D row of air inlets.
[0022] As a preferred solution: the B row of air inlets includes a first B row of air inlets, a second B row of air inlets and a third B row of air inlets arranged at an axial interval along the fixed cylinder;
[0023] The B row of air outlets includes a first B row of air outlets and a second B row of air outlets, and the first B row of air outlets, the A row of air outlets and the second B row of air outlets are arranged in a circumferential annular array along the movable cylinder;
[0024] When the movable cylinder is rotated to the second angle, the first B row of air outlets is in conductive connection with the first B row of air inlets, the A row of air outlets is in conductive connection with the second B row of air inlets, and the second B row of air outlets is in conductive connection with the third B row of air inlets.
[0025] As a preferred solution: at least the first B row of air inlets among the first B row of air inlets, the second B row of air inlets and the third B row of air inlets is arranged alternately with the second B row of air inlets and the third B row of air inlets;
[0026] The first B row of air outlets and the second B row of air outlets are arranged alternately along the axis of the movable cylinder.
[0027] As a preferred solution: the upper C row of air inlets includes a first upper C row of air inlets and a second upper C row of air inlets, and the lower C row of air inlets includes a first lower C row of air inlets and a second lower C row of air inlets;
[0028] The C row of air outlets includes a first C row of air outlets and a second C row of air outlets;
[0029] When the movable cylinder is rotated to the third angle, the first C row of air outlets and the first B row of air outlets are in corresponding conductive connection with the first upper C row of air inlets and the second upper C row of air inlets, and the second B row of air outlets and the second C row of air outlets are in corresponding conductive connection with the first lower C row of air inlets and the second lower C row of air inlets.
[0030] As a preferred solution: the first upper C-row air vent is located between the first B-row air vent and the second B-row air vent, the second upper C-row air vent is located between the second B-row air vent and the third B-row air vent, and the first B-row air vent, the first upper C-row air vent and the second upper C-row air vent are not staggered along the axial direction of the fixing cylinder.
[0031] As a preferred solution: the first lower C-row air vent and the second lower C-row air vent are spaced along the circumferential direction of the fixing cylinder and are located between the D-row air vent and the A-row air vent, and the second B-row air vent, the third B-row air vent, the first lower C-row air vent and the second lower C-row air vent are not staggered along the axial direction of the fixing cylinder. BRIEF DESCRIPTION OF DRAWINGS
[0032] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings needed to be used in the embodiments or prior art description will be briefly introduced as follows. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can also be obtained by those skilled in the art without any creative labor.
[0033] Figure 1 is a schematic diagram of the three-dimensional structure of the styling appliance capable of switching multiple blowing modes provided by the embodiments of the present application installed on a wind cylinder;
[0034] Figure 2 is Figure 1 a schematic diagram of the three-dimensional structure of the styling appliance capable of switching multiple blowing modes shown in the figure;
[0035] Figure 3 is Figure 2 an exploded view of the styling appliance capable of switching multiple blowing modes shown in the figure;
[0036] Figure 4 is Figure 2 an axial cross-sectional view of the styling appliance capable of switching multiple blowing modes shown in the figure;
[0037] Figure 5 is Figure 2 a radial cross-sectional view of the styling appliance capable of switching multiple blowing modes shown in the figure when the appliance is rotated to a first angle;
[0038] Figure 6 is Figure 5 a schematic diagram of the three-dimensional structure of the styling appliance capable of switching multiple blowing modes shown in the figure when the movable cylinder is rotated to a first angle relative to the fixing cylinder;
[0039] Figure 7 is Figure 6 an axial cross-sectional view of the styling appliance capable of switching multiple blowing modes shown in the figure when the movable cylinder is rotated to a first angle relative to the fixing cylinder;
[0040] Figure 8 is Figure 6 a radial cross-sectional view of the active barrel relative to the fixed barrel of the styling appliance shown in FIG. 1 rotated to a first angle;
[0041] Figure 9 is Figure 2 a partial perspective view of the active barrel relative to the fixed barrel of the styling appliance shown in FIG. 1 rotated to a second angle;
[0042] Figure 10 is Figure 9 a radial cross-sectional view of the active barrel relative to the fixed barrel of the styling appliance shown in FIG. 1 rotated to a second angle;
[0043] Figure 11 is Figure 2 a radial cross-sectional view of the active barrel relative to the fixed barrel of the styling appliance shown in FIG. 1 rotated to a second angle;
[0044] Figure 12 is Figure 2 a radial cross-sectional view of the active barrel relative to the fixed barrel of the styling appliance shown in FIG. 1 rotated to a third angle;
[0045] Figure 13 is Figure 12 a perspective view of the active barrel relative to the fixed barrel of the styling appliance shown in FIG. 1 rotated to a third angle;
[0046] Figure 14 is Figure 13 a radial cross-sectional view of the active barrel relative to the fixed barrel of the styling appliance shown in FIG. 1 rotated to a third angle;
[0047] Figure 15 is Figure 12 a radial cross-sectional view of the active barrel relative to the fixed barrel of the styling appliance shown in FIG. 1 rotated to a third angle;
[0048] Figure 16 is Figure 1 an expanded plan view of the active barrel relative to the fixed barrel of the styling appliance shown in FIG. 1 rotated to a first angle;
[0049] Figure 17 is Figure 1 an expanded plan view of the active barrel relative to the fixed barrel of the styling appliance shown in FIG. 1 rotated to a second angle;
[0050] Figure 18 is Figure 1 an expanded plan view of the active barrel relative to the fixed barrel of the styling appliance shown in FIG. 1 rotated to a third angle.
[0051] In the drawings:
[0052] 100, styling appliance;
[0053] 10, comb housing; 101, first styling zone; 102, second styling zone; 103, third styling zone; 104, fourth styling zone; 11, first housing; 12, first plug-in part; 13, snap-in recess;
[0054] 20, air control part; 201, fixed cylinder; 202, movable cylinder; 203, air supply air duct; 204, knob; 21, A-row air vent; 22, B-row air vent; 221, first B-row air vent; 222, second B-row air vent; 223, third B-row air vent; 23, upper C-row air vent; 231, first upper C-row air vent; 232, second upper C-row air vent; 24, D-row air vent; 25, lower C-row air vent; 251, first lower C-row air vent; 252, second lower C-row air vent; 26, A-row air outlet; 27, B-row air outlet; 271, first B-row air outlet; 272, second B-row air outlet; 28, C-row air outlet; 281, first C-row air outlet; 282, second C-row air outlet. DETAILED DESCRIPTION
[0055] In order to make the technical problems to be solved, technical solutions and beneficial effects of the present application clearer, the present application will be further described in detail below in combination with the drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present application and not intended to limit the present application.
[0056] It should be noted that when an element is referred to as being "fixed to" or "set to" another element, it can be directly on the other element or indirectly on the other element. When an element is referred to as being "connected to" another element, it can be directly connected to the other element or indirectly connected to the other element.
[0057] It should be understood that the terms "length", "width", "upper", "lower", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only used to facilitate the description of the present application and simplify the description, and therefore cannot be understood as indicating or implying that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the present application.
[0058] In addition, the terms "first", "second", etc. are used only for descriptive purposes and should not be construed as implying or suggesting relative importance or an indicated number of the technical features. Therefore, the features defined as "first", "second", etc. can explicitly or implicitly include one or more of the features. In the description of the present application, the meaning of "a plurality of" is two or more, unless otherwise explicitly and specifically limited.
[0059] In order to make the purpose, technical scheme and advantages of the utility model more clear, the utility model will be further described in detail below in combination with the drawings and examples.
[0060] Please refer to Figures 1 to 18 The styling appliance 100 provided by the embodiments of the present application can switch multiple blowing modes. The styling appliance 100 capable of switching multiple blowing modes comprises a comb shell 10 and a wind control component 20.
[0061] The comb shell 10 is provided with multiple styling areas with different air outlet directions. The wind control component 20 comprises a fixed cylinder 201 fixedly installed on the comb shell 10 and a movable cylinder 202 movably installed on the fixed cylinder 201. The side surface of the fixed cylinder 201 is provided with multiple rows of ventilation holes. At least one row of ventilation holes is arranged in each styling area. Each row of ventilation holes is arranged at an axial distance along the fixed cylinder 201. At least one row of ventilation holes is arranged at an axial distance along the fixed cylinder 201 from the remaining rows of ventilation holes. The movable cylinder 202 is provided with multiple rows of air outlet holes. When at least one row of air outlet holes is in conductive connection with one row of ventilation holes, the fixed cylinder 201 can close the remaining rows of air outlet holes to switch the air outlet of different styling areas.
[0062] Specifically, by arranging multiple styling areas, at least one row of ventilation holes is arranged on the fixed cylinder 201 facing each styling area. Multiple rows of ventilation holes are arranged on the movable cylinder 202. At least one row of ventilation holes is arranged at an axial distance along the fixed cylinder 201 from the remaining rows of ventilation holes. In this structure, the position of the movable cylinder 202 relative to the fixed cylinder 201 can be changed to change the conductive connection between the exhaust cylinder and different ventilation holes, so that the air flow is blown out from different areas, and the user can flexibly switch to different styling modes. Moreover, the problem of inconvenience in storing multiple styling appliances 100 in the prior art is solved. The risk of the user losing the styling appliance 100 is reduced, and the use cost of the user is reduced. In the process of hair styling, the user does not need to repeatedly replace different styling appliances 100. The problem of the risk of burns caused by contact with high temperature in the use process cannot be ignored is solved, and the use safety of the user is improved.
[0063] More specifically, the movable cylinder 202 is rotatably installed in the fixed cylinder 201, and the movable cylinder 202 is provided with a blowing air duct 203 capable of inputting air flow; a plurality of rows of air vents are arranged in a circumferential annular array along the fixed cylinder 201, and a plurality of rows of air outlets are arranged in a circumferential annular array along the movable cylinder 202.
[0064] When the styling appliance 100 of the present application is used, the styling appliance 100 is installed at the air outlet of the air cylinder, the air outlet is connected in communication with the blowing air duct 203, the air flow generated by the air cylinder is input into the blowing air duct 203, and the air flow is blown out through different rows of air outlets to different rows of air vents to different styling areas, so as to realize different blowing modes.
[0065] Preferably, one end of the movable cylinder 202 is provided with a pivot shaft, one end of the fixed cylinder 201 is provided with a pivot hole for inserting the pivot shaft, the pivot shaft is inserted into the pivot hole and extends outward, and a knob 204 is installed at the end of the pivot shaft, and the movable cylinder 202 is rotated relative to the fixed cylinder 201 by rotating the knob 204.
[0066] Please refer to Figures 4 to 18 In some embodiments of the present application, the comb shell 10 is provided with a first styling area 101 and a second styling area 102; the first styling area 101 is located on the left side of the comb shell 10, so that the air flow can be blown out from the left side of the comb shell 10; the second styling area 102 is located on the upper side of the comb shell 10, so that the air flow is blown out from the upper side; when the air flow is blown out from the first styling area 101, the air cylinder can be switched to a direct blowing mode, and the air flow blown out from the second styling area 102 is blocked at this time; when the air flow is blown out from the second styling area 102, the air cylinder can be switched to a flat comb blowing mode, and the air flow blown out from the first styling area 101 is blocked at this time.
[0067] It should be noted that the comb shell 10 can be provided with comb teeth at the position of the first styling area 101 to assist in blowing; the comb shell 10 can be provided with comb needles at the position of the second styling area 102 to assist in blowing.
[0068] In some embodiments of the present application, the styling area includes a first styling area 101 and a second styling area 102; the plurality of rows of air vents include an A row of air vents 21 facing the first styling area 101 and a B row of air vents 22 facing the second styling area 102, and the plurality of rows of air outlets include an A row of air outlets 26 and a B row of air outlets 27; when the movable cylinder 202 is rotated to a first angle, the A row of air outlets 26 is connected in communication with the A row of air vents 21 and blocks the B row of air vents 22; when the movable cylinder 202 is rotated to a second angle, the A row of air outlets 26 and the B row of air outlets 27 are connected in communication with the B row of air vents 22 and block the A row of air outlets 26.
[0069] It can be understood that, in some embodiments of the present application, the first styling area 101 is arranged on the left side of the comb shell 10, and the second styling area 102 is arranged on the upper side of the comb shell 10; therefore, when the first angle is 0 degrees and the second angle is 90 degrees, after the action of rotating the movable cylinder 202 to the first angle, the A row of air outlet holes 26 are connected in communication with the A row of air vent holes 21, and the B row of air vent holes are closed, so that the air flow is blown out from the first styling area 101 to realize the air cylinder direct blowing mode; after the action of rotating the movable cylinder 202 to the second angle, the A row of air outlet holes 26 and the B row of air outlet holes are connected in communication with the B row of air vent holes and the A row of air vent holes 21 are closed, so that the air flow is blown out from the second styling area 102 to realize the flat comb blowing mode.
[0070] Preferably, the B row of air vent holes comprises a first B row of air vent holes 221, a second B row of air vent holes 222 and a third B row of air vent holes 223 arranged at an axial distance along the fixed cylinder 201; the B row of air outlet holes comprises a first B row of air outlet holes 271 and a second B row of air outlet holes 272, the first B row of air outlet holes 271, the A row of air outlet holes 26 and the second B row of air outlet holes 272 are arranged in a circumferential annular array along the movable cylinder 202; when the movable cylinder 202 is rotated to the second angle, the first B row of air outlet holes 271 is connected in communication with the first B row of air vent holes 221, the A row of air outlet holes 26 is connected in communication with the second B row of air vent holes 222, and the second B row of air outlet holes 272 is connected in communication with the third B row of air vent holes 223.
[0071] Preferably, at least the first B row of air vent holes 221 is arranged staggered with the second B row of air vent holes 222 and the third B row of air vent holes 223 among the first B row of air vent holes 221, the second B row of air vent holes 222 and the third B row of air vent holes 223; the first B row of air outlet holes 271 and the second B row of air outlet holes 272 are arranged axially staggered along the movable cylinder 202; when the first B row of air vent holes 221 is arranged staggered with the second B row of air vent holes 222, the second B row of air vent holes 222 is not arranged staggered with the third B row of air vent holes 223.
[0072] Therefore, by changing the positions of the holes between different rows of air vent holes and different rows of air outlet holes, the blowing of one side of the styling area can be closed, and the blowing of the other side of the styling area can be connected in communication.
[0073] Please refer to Figures 4 to 18 In some embodiments of the present application, the styling area further comprises a third styling area 103 arranged on the lower side of the comb shell 10, so that the air flow is blown from the lower side.
[0074] Specifically, the plurality of rows of air vents include an upper C row of air vents 23 facing the second styling area 102 and a lower C row of air vents 25 facing the third styling area 103, and the plurality of rows of air vents further include a C row of air outlets 28; when the movable cylinder 202 is rotated to the third angle, the upper C row of air vents 23 and the lower C row of air vents 25 are in conductive connection with the B row of air outlets 27 and the C row of air outlets 28 and seal the A row of air vents 21 and the B row of air vents 22.
[0075] More specifically, the upper C row of air vents 23 includes a first upper C row of air vents 231 and a second upper C row of air vents 232, and the lower C row of air vents 25 includes a first lower C row of air vents 251 and a second lower C row of air vents 252; the C row of air outlets 28 includes a first C row of air outlets 281 and a second C row of air outlets 282.
[0076] When the movable cylinder 202 is rotated to the third angle, the first C row of air outlets 281 and the first B row of air outlets 271 are in conductive connection with the first upper C row of air vents 231 and the second upper C row of air vents 232, and the second B row of air outlets 272 and the second C row of air outlets 282 are in conductive connection with the first lower C row of air vents 251 and the second lower C row of air vents 252.
[0077] Further, the styling area further includes a fourth styling area 104 located on the right side of the comb shell 10, and the plurality of rows of air vents include a D row of air vents 24 facing the fourth styling area 104; when the movable cylinder 202 is rotated to the third angle, the A row of air outlets 26 is in conductive connection with the D row of air vents 24.
[0078] It can be understood that when the movable cylinder 202 is rotated to the third angle, air flow can be blown outwards from the second styling area 102, the third styling area 103 and the fourth styling area 104 at the same time to realize the round comb blow-drying mode.
[0079] Preferably, the first upper C row of air vents 231 is located between the first B row of air vents 221 and the second B row of air vents 222, the second upper C row of air vents 232 is located between the second B row of air vents 222 and the third B row of air vents 223, and the first B row of air vents 221, the first upper C row of air vents 231 and the second upper C row of air vents 232 are arranged without staggering along the axial direction of the fixed cylinder 201. The first lower C row of air vents 251 and the second lower C row of air vents 252 are arranged with a spacing along the circumferential direction of the fixed cylinder 201 and are located between the D row of air vents 24 and the A row of air vents 21, and the second B row of air vents 222, the third B row of air vents 223, the first lower C row of air vents 251 and the second lower C row of air vents 252 are arranged without staggering along the axial direction of the fixed cylinder 201.
[0080] In addition, the first B exhaust air hole 271 and the second B exhaust air hole 272 are staggered along the axial direction of the movable cylinder 202, and the first C exhaust air hole 281 and the second C exhaust air hole 282 are staggered along the axial direction of the movable cylinder 202. In this way, after the movable cylinder 202 is rotated to the second angle, the first B exhaust air hole 271 and the second B exhaust air hole 272 can be connected to the first B exhaust air hole 221 and the third B exhaust air hole 223 in correspondence with the first B exhaust air hole 221 and the third B exhaust air hole 223; and after the movable cylinder 202 is rotated to the third angle, the first B exhaust air hole 271 and the second B exhaust air hole 272 can be connected to the first upper C exhaust air hole 231 and the second upper C exhaust air hole 232 in correspondence with the first upper C exhaust air hole 231 and the second upper C exhaust air hole 232.
[0081] It should be noted that the third angle is 180 degrees. When the movable cylinder 202 is rotated to 180 degrees, the first B exhaust air hole 271 is connected to the first upper C exhaust air hole 231, the second B exhaust air hole 272 is connected to the second upper C exhaust air hole 232, the first C exhaust air hole 281 is connected to the first lower C exhaust air hole 251, and the second C exhaust air hole 282 is connected to the second lower C exhaust air hole 252; and at the same time, the A exhaust air hole 21, the first B exhaust air hole 221, the second B exhaust air hole 222 and the third B exhaust air hole 223 are closed, the first upper C exhaust air hole 231 and the second upper C exhaust air hole 232 are used to blow air flow to the second styling area 102, the first lower C exhaust air hole 251 and the second lower C exhaust air hole 252 are used to blow air flow to the third styling area 103; the D exhaust air hole is used to blow air flow to the fourth styling area 104, so as to realize the circular comb blowing mode.
[0082] It should be noted that the cross sections of the fixed cylinder 201 and the movable cylinder 202 are circularly arranged; in the fixed cylinder 201, the A exhaust air hole 21 is arranged as the initial position, and the first B exhaust air hole 221, the first upper C exhaust air hole 231, the second B exhaust air hole 222, the second upper C exhaust air hole 232, the third B exhaust air hole 223, the D exhaust air hole 24, the first lower C exhaust air hole 251 and the second lower C exhaust air hole 252 are arranged along the circumferential direction of the fixed cylinder 201 at intervals, and the positions of the first B exhaust air hole 221, the first upper C exhaust air hole 231, the second upper C exhaust air hole 232 and the D exhaust air hole 24 are arranged in parallel without staggering, and the positions of the second B exhaust air hole 222, the third B exhaust air hole 223, the first lower C exhaust air hole 251 and the second lower C exhaust air hole 252 are arranged in parallel without staggering; the positions of the first B exhaust air hole 221 and the second B exhaust air hole 222 are staggered along the axial direction of the fixed cylinder 201.
[0083] In the activity cylinder 202, the second B exhaust air hole 272, the second C exhaust air hole 282, the first C exhaust air hole 281 and the first B exhaust air hole 271 are sequentially arranged along the circumferential spacing of the activity cylinder 202, with the first B exhaust air hole 271 and the first C exhaust air hole 281 each parallelly arranged without staggering; the second B exhaust air hole and the second C exhaust air hole 282 each parallelly arranged without staggering; and the first B exhaust air hole 271 and the first C exhaust air hole 281 staggered along the axial direction of the activity cylinder 202.
[0084] Specifically, by reasonably arranging the positions of the holes of each row of air inlet holes and each row of exhaust air holes, the activity cylinder 202 can be rotated by different angles relative to the fixed cylinder 201, and the corresponding molding area can be closed or not closed as needed, so that the air flow can be blown out from different molding areas, and different blowing modes can be switched.
[0085] It should be noted that the outer surface of the comb shell 10 is provided with perforations at least at the positions of the first molding area 101, the second molding area 102, the third molding area 103 and the fourth molding area 104, which can be connected in communication with the corresponding air inlet holes to blow air outward.
[0086] In addition, the hole structures of the A row of air inlet holes 21, the B row of air inlet holes, the upper C row of air inlet holes, the D row of air inlet holes 24, the lower C row of air inlet holes, the A row of exhaust air holes 26, the B row of exhaust air holes and the C row of exhaust air holes can be square, rectangular, oval, circular, triangular, etc. As long as the rotating activity cylinder 202 can switch different air inlet holes and exhaust air holes in communication to blow air flow, and close the remaining air inlet holes and exhaust air holes in communication, it can be used.
[0087] In other embodiments of the present application, the outer surface of the comb shell 10 is provided with a first shell 11, and the end of the first shell 11 is provided with a first plug-in part 12 for inserting the air cylinder exhaust port, and the outer surface of the first plug-in part 12 is provided with a plurality of buckling notches 13 for buckling the buckling protrusions of the air cylinder exhaust port to fix the entire molding appliance 100.
[0088] It can be understood that the molding appliance can also be integrally formed with the air cylinder, as long as it can switch different directions of blowing, and is not limited to the form of detachable setting in the present application.
[0089] The above are only preferred embodiments of the present application, and only the technical principles of the present application are specifically described, and these descriptions are only for explaining the principles of the present application, and cannot be interpreted as limiting the protection scope of the present application in any way. Based on the explanation herein, any modification, equivalent replacement and improvement made within the spirit and principles of the present application, and other specific embodiments of the present application that can be conceived by those skilled in the art without creative labor, should be included in the protection scope of the present application.
Claims
1. A styling appliance capable of switching between multiple blow modes, comprising a comb shell (10) and a wind control component (20), the comb shell (10) is provided with multiple styling areas with different wind directions, characterized in that: the wind control component (20) comprises a fixed cylinder (201) fixedly installed on the comb shell (10) and a movable cylinder (202) movably installed on the fixed cylinder (201), the side surface of the fixed cylinder (201) is provided with multiple rows of ventilation holes, at least one row of ventilation holes is arranged for each styling area, and each row of ventilation holes is arranged at an axial interval along the fixed cylinder (201), and at least one row of ventilation holes is arranged at an axial interval along the fixed cylinder (201) and staggered with the remaining rows of ventilation holes; the movable cylinder (202) is provided with multiple rows of air outlet holes, and when at least one row of air outlet holes is in conductive connection with one row of ventilation holes, the fixed cylinder (201) can close the remaining rows of air outlet holes to switch between different styling areas. the movable cylinder (202) is rotatably installed in the fixed cylinder (201), and the movable cylinder (202) is provided with an air supply air duct capable of inputting air flow; the multiple rows of ventilation holes are arranged in a circumferential annular array along the fixed cylinder (201), and the multiple rows of air outlet holes are arranged in a circumferential annular array along the movable cylinder (202).
2. A styling appliance according to claim 1, wherein: the styling areas include a first styling area (101) and a second styling area (102); the multiple rows of ventilation holes include an A row of ventilation holes (21) facing the first styling area (101) and a B row of ventilation holes (22) facing the second styling area (102), and the multiple rows of air outlet holes include an A row of air outlet holes and a B row of air outlet holes; 3. A styling appliance according to claim 1, wherein: when the movable cylinder (202) is rotated to a first angle, the A row of air outlet holes (26) is in conductive connection with the A row of ventilation holes (21) and closes the B row of ventilation holes (22); when the movable cylinder (202) is rotated to a second angle, the A row of air outlet holes (26) and the B row of air outlet holes (27) are in conductive connection with the B row of ventilation holes (22) and close the A row of air outlet holes (26). the styling areas further include a third styling area (103); the multiple rows of ventilation holes include an upper C row of ventilation holes (23) facing the second styling area (102) and a lower C row of ventilation holes (25) facing the third styling area (103); 4. A styling appliance according to claim 3, wherein: the multiple rows of air outlet holes further include a C row of air outlet holes (28); when the movable cylinder (202) is rotated to a third angle, the upper C row of ventilation holes (23) and the lower C row of ventilation holes (25) are in conductive connection with the B row of air outlet holes (27) and the C row of air outlet holes (28) and close the A row of ventilation holes (21) and the B row of ventilation holes (22). the styling areas further include a fourth styling area (104), and the multiple rows of ventilation holes include a D row of ventilation holes (24) facing the fourth styling area (104); when the movable cylinder (202) is rotated to a third angle, the A row of air outlet holes (26) is in conductive connection with the D row of ventilation holes (24).
5. A styling appliance according to claim 4, wherein: the B row of ventilation holes includes a first B row of ventilation holes, a second B row of ventilation holes, and a third B row of ventilation holes arranged at an axial interval along the fixed cylinder; 6. Styling appliance switchable among multiple blow modes according to claim 4 or 5, characterized in that: The B exhaust air hole comprises a first B exhaust air hole and a second B exhaust air hole, the first B exhaust air hole (271), the A exhaust air hole (26) and the second B exhaust air hole (272) are arranged in a circumferential annular array along the movable cylinder (202); When the movable cylinder (202) rotates to the second angle, the first B exhaust air hole (271) is in conductive connection with the first B exhaust air hole (221), the A exhaust air hole (26) is in conductive connection with the second B exhaust air hole (222), and the second B exhaust air hole (272) is in conductive connection with the third B exhaust air hole (223).
7. A styling appliance according to claim 6, wherein: At least the first B exhaust air hole (221) is arranged in an alternating manner with the second B exhaust air hole (222) and the third B exhaust air hole (223) among the first B exhaust air hole, the second B exhaust air hole and the third B exhaust air hole. The first B exhaust air hole (271) and the second B exhaust air hole (272) are arranged in an alternating manner along the axis of the movable cylinder (202).
8. A styling appliance according to claim 6, wherein: The upper C exhaust air hole (23) comprises a first upper C exhaust air hole (231) and a second upper C exhaust air hole (232), and the lower C exhaust air hole (25) comprises a first lower C exhaust air hole (251) and a second lower C exhaust air hole (252); It also comprises a C exhaust air hole (28), the C exhaust air hole (28) comprises a first C exhaust air hole (281) and a second C exhaust air hole (282); When the movable cylinder (202) rotates to the third angle, the first C exhaust air hole (281) and the first B exhaust air hole (271) are in corresponding conductive connection with the first upper C exhaust air hole (231) and the second upper C exhaust air hole (232), and the second B exhaust air hole (272) and the second C exhaust air hole (282) are in corresponding conductive connection with the first lower C exhaust air hole (251) and the second lower C exhaust air hole (252).
9. A styling appliance according to claim 8, wherein: The first upper C exhaust air hole (231) is located between the first B exhaust air hole (221) and the second B exhaust air hole (222), the second upper C exhaust air hole (232) is located between the second B exhaust air hole (222) and the third B exhaust air hole (223), and the first B exhaust air hole (221), the first upper C exhaust air hole (231) and the second upper C exhaust air hole (232) are not arranged in an alternating manner along the axis of the fixed cylinder (201).
10. A styling appliance according to claim 7 or 8, wherein: The first lower C exhaust air hole (251) and the second lower C exhaust air hole (252) are arranged in a circumferential spacing along the fixed cylinder (201) and are located between the D exhaust air hole (24) and the A exhaust air hole (21), the second B exhaust air hole (222), the third B exhaust air hole (223), the first lower C exhaust air hole (251) and the second lower C exhaust air hole (252) are not arranged in an alternating manner along the axis of the fixed cylinder (201).