A type of wrap-around hair curler

CN224612103UActive Publication Date: 2026-08-11杨家豪
View PDF 0 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-08-27
Publication Date
2026-08-11

AI Technical Summary

Technical Problem

同时卷发棒是将头发一圈一圈缠绕至加热棒上,但只是对头发内侧进行加热,而头发外侧并没有被加热,因而由于只有单侧受热,所以烫出来的效果并没有那么好,其次由于是手动缠绕所以操作较为繁琐,且过程中还可能会烫伤手的情况,即使后面出现了自动卷发棒,可通过电机完成缠绕从而避免烫伤的可能,但可能会因操作不当会引起头发与设备缠在一起而不易分开

Benefits of technology

[0024]本实用新型通过烫发件和烫发板的烫发面位于头发内外两侧从而可对头发内外两侧进行夹持并烫发,进而烫出来的效果较好,而且不是缠绕从而避免烫伤的可能,因而解决卷发棒的问题。同时通过环抱式替换上下夹持,具体为通过烫发件的烫发面为柱面以及烫发板的烫发面为弧面的设置,从而在两个转动板受驱动组件驱使下而转动至烫发件两侧的时候,进而让烫发件和烫发板对头发形成环抱式烫发,即接近360度烫发从而可形成较大的卷进而趋于卷发棒的卷发,因而造型上相对会好看一些并可避免滑动的可能,因而解决夹板的问题。

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224612103U_ABST
    Figure CN224612103U_ABST
Patent Text Reader

Abstract

This utility model relates to the field of hair perming equipment technology, specifically a wraparound hair perming equipment, including a fixed clamp plate with a rotating plate and a rotating clamp plate with a perming element, wherein the perming surface of the perming element is cylindrical; the rotating plate is provided with a perming plate with an arc-shaped perming surface, and the fixed clamp plate has a built-in drive component for driving the rotating plate to rotate, and the two rotating plates are located on both sides of the perming element after rotation, and the perming surface of the perming element is adapted to the arc surface formed by the combination of the perming surfaces of the two perming plates, and the perming surfaces of the perming element and the perming plates are located on the inner and outer sides of the hair, so the perming is a two-sided perm, resulting in a better perm effect, and avoiding tangling and the possibility of burns. At the same time, by wrapping and alternating the upper and lower clamps, specifically, the perming element and the perming plates form a wraparound perm on the hair, that is, a near 360-degree perm, which can form larger curls, similar to the curls of a curling iron, so the style is relatively better and the possibility of slippage is avoided.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the field of hair perming equipment technology, and specifically to a wraparound hair perming equipment. Background Technology

[0002] A hair curling iron is a styling tool used to reshape hair using heat, with the most common type being the curling iron. However, curling irons involve wrapping hair around a heating rod, but only the inner side of the hair is heated, while the outer side remains unheated. Therefore, because only one side is heated, the resulting curl is not as aesthetically pleasing. Furthermore, the manual wrapping process is tedious and carries the risk of burns. Even with the advent of automatic curling irons, which use a motor to wrap the hair and avoid burns, improper operation can still cause the hair to become tangled with the device and difficult to separate.

[0003] Meanwhile, with the development of technology, hair straighteners were also developed. These straighteners can clamp hair from both the top and bottom, i.e., clamping the hair on both the inside and outside, to curl it. However, because they clamp the hair from the top and bottom, the protruding part of the curling plate on the straightener is generally only rounded at the end, while the sides are sloping. Therefore, only the end part can be curled, resulting in a wavy, uneven style. But it is still somewhat different from the curls produced by a curling iron, so the style is not as attractive. Moreover, since it only clamps from the top and bottom, the clamping force is not very strong, so there is a possibility of slippage. Therefore, a new curling method is needed to avoid the problems of curling irons and straighteners. Summary of the Invention

[0004] The purpose of this invention is to provide a wraparound hair curler. By positioning the curling surfaces of the curling pieces and plates on both the inner and outer sides of the hair, it can clamp and curl both sides of the hair, resulting in a better curling effect. Furthermore, it avoids tangling and the possibility of burns. The wraparound design, with its alternating upper and lower clamps, is achieved by a drive assembly that rotates two plates to the sides of the curling pieces, allowing the pieces and plates to form a wraparound curl, nearly 360 degrees, creating larger curls similar to those of a curling iron. This results in a more aesthetically pleasing style and prevents slippage, thus solving the problems associated with curling irons and flat irons.

[0005] The purpose of this utility model is achieved as follows:

[0006] A wraparound hair curler includes a fixed plate and a rotating plate, wherein a hair curling component is provided on the inner side of the rotating plate, and the hair curling surface of the hair curling component is cylindrical.

[0007] Two rotating plates are symmetrically arranged on the fixed clamp, and the ends of the two rotating plates that are rotatably connected to the fixed clamp are adjacent to each other. The inner side of the rotating plate is a perming plate, and the perming surface of the perming plate is an arc surface. The fixed clamp has a built-in drive component for driving the two rotating plates to rotate in opposite directions. After the two rotating plates rotate, they are located on both sides of the perming piece, and the perming surface of the perming piece is adapted to the arc surface formed by the combination of the perming surfaces of the two perming plates. The perming surfaces of the perming piece and the perming plates are located on the inner and outer sides of the hair for perming.

[0008] Preferably, the end of the rotating plate away from the fixed clamping plate is the movable end. When the rotating clamping plate rotates to a position between the movable ends of the two rotating plates, the driving assembly drives the two rotating plates to rotate towards each other.

[0009] Alternatively, the rotating clamping plate rotates until it comes close to the fixed clamping plate, at which point the driving assembly drives the two rotating plates to rotate in opposite directions.

[0010] Preferably, the driving assembly includes a driving plate and a driving component, and the driving component includes two driving rods and a connecting part for connecting the two driving rods. The driving rods correspond one-to-one with the rotating plate. One end of the rotating clamp is provided with a rotating part, and the rotating part is rotatably connected to the fixed clamp. The bottom of the rotating part is located inside the fixed clamp and is connected to the driving plate.

[0011] The end of the drive plate away from the rotating part is connected to the connecting part via a connecting rod, and the connection point between the drive plate and the connecting rod is the connection point. When the rotating clamp plate rotates towards the fixed clamp plate, it will drive the rotating part to rotate until the rotating clamp plate is located between the movable ends of the two rotating plates. At this time, the drive plate is pushed backward by the rotating part and moves backward, thereby driving the end of the connecting rod away from the drive plate to rotate around the connection point, and driving the connecting part to rotate around the connection point, which in turn drives the end of the drive rod near the rotating plate to move upward and drive the two rotating plates to rotate towards each other.

[0012] Preferably, the drive plate has a groove at one end near the rotating part, and a drive block is provided at the bottom of the rotating part, with the drive block located in the groove;

[0013] The two inner walls of the groove are respectively pushing surface one and pushing surface two, with pushing surface one being farther away from the rotating plate. When the rotating clamping plate rotates towards the fixed clamping plate, it will drive the rotating part to rotate, thereby driving the driving block to move in the groove until the rotating clamping plate is located between the movable ends of the two rotating plates. At this time, the driving block contacts pushing surface one and drives the driving plate to move.

[0014] Preferably, the drive plate is provided with a protrusion three at one end near the rotating part, and a sliding groove is provided at the bottom of the rotating part, with the protrusion three located in the sliding groove;

[0015] The two inner walls of the slide are respectively pushing surface three and pushing surface four, with pushing surface three being farther away from the rotating plate. When the rotating clamping plate rotates towards the fixed clamping plate, it will drive the rotating part to rotate, thereby causing the slide to move relative to the protrusion three until the rotating clamping plate is located between the movable ends of the two rotating plates. At this time, the protrusion three contacts the pushing surface four and drives the drive plate to move.

[0016] Preferably, one end of the connecting rod is rotatably connected to the drive plate, and the connecting rod, the connecting part and the two drive rods are integrally formed, and the drive rod has a protrusion at one end near the rotating plate.

[0017] Preferably, an elastic element is provided between the rotating plate and the fixed clamping plate, and the elastic element is used to reset the rotating plate after rotation.

[0018] Preferably, the drive assembly includes a gear and a motor, and one end of the rotating plate that is rotatably connected to the fixed clamping plate meshes with the gear. When the rotating clamping plate rotates to approach the fixed clamping plate, the motor drives the gear to rotate, thereby causing the rotating plate to rotate.

[0019] Preferably, the hair perming component includes a protrusion and extension sections disposed on both sides of the protrusion, wherein the outer surface of the protrusion is the perming surface of the hair perming component, and the outer side of the extension section is recessed inward, and the recessed surface is an arc surface, and the hair perming plate is provided with a protrusion section corresponding to the recessed section.

[0020] Preferably, the perming component is a hollow, integrally formed column, and the outer surface of the column is the perming surface of the perming component;

[0021] Alternatively, the perming component is integrally formed, and the perming component includes a protrusion and extension sections disposed on both sides of the protrusion, and the outer surface of the protrusion is the perming surface of the perming component, and the protrusion is hollow;

[0022] Alternatively, the perming component is composed of perming component one and perming component two, and both perming component one and perming component two include a hollow half-cylinder and an extension section, and the outer surfaces of the half-cylinders of perming component one and perming component two are combined to form the perming surface of the perming component.

[0023] The outstanding and beneficial technical effects of this utility model compared to the prior art are:

[0024] This invention utilizes the fact that the perming surfaces of the perming components and perming plates are located on both the inner and outer sides of the hair, allowing for clamping and perming of both sides. This results in a better perm effect and avoids tangling, thus preventing burns and solving the problems associated with curling irons. Furthermore, the invention employs a wraparound, alternating clamping mechanism. Specifically, the perming surfaces of the perming components are cylindrical, while those of the perming plates are curved. When the two rotating plates are driven by the drive assembly to the sides of the perming components, the components and plates create a wraparound perm, nearly 360 degrees, resulting in larger curls similar to those of a curling iron. This leads to a more aesthetically pleasing style and prevents slippage, thus solving the problem of the flat iron. Attached Figure Description

[0025] Figure 1 This is a structural diagram showing the disassembled parts of this utility model.

[0026] Figure 2 This is a cross-sectional structural diagram of the present invention.

[0027] Figure 3 This is a schematic diagram of a structure with hair in an open position.

[0028] Figure 4 This is a schematic diagram of a structure with hair in a closed state.

[0029] Figure 5 This is a structural diagram of the first type of hair perming component.

[0030] Figure 6 This is a schematic diagram of the structure of a hair curling board.

[0031] Figure 7 This is a schematic diagram of the structure of the raised three-way sliding groove.

[0032] Figure 8 This is a schematic diagram of the second structure of the hair perming component.

[0033] Figure 9 This is a structural diagram of the third type of hair perming component.

[0034] Reference numerals: 1-Fixing clamp; 11-Mounting plate; 12-Base; 13-Top cover; 2-Fixing clamp;

[0035] 21-Rotating part; 211-Drive block; 212-Slide groove; 3-Hair curling part; 31-Protrusion; 32-Extension section;

[0036] 33-Hair perming part one; 34-Hair perming part two; 4-Rotating plate; 41-Hair perming plate; 411-Protruding section;

[0037] 412-Protrusion; 413-Slot; 42-Shaft; 43-Mounting base; 44-Moving end; 5-Drive board;

[0038] 51-Protrusion 1; 52-Groove; 53-Through hole; 54-Protrusion 2; 55-Protrusion 3; 6-Drive component;

[0039] 61-Drive rod; 611-Protrusion; 62-Connecting part; 63-Linking rod; 64-Roller; 7-Elastic element;

[0040] 8. Hair. Detailed Implementation

[0041] The specific embodiments of this utility model will be further described in detail below with reference to the accompanying drawings.

[0042] like Figures 1-9 As shown, a wraparound hair curler includes a fixed clamp plate 1 and a rotating clamp plate 2. A hair curling component 3 is disposed on the inner side of the rotating clamp plate 2, and the hair curling surface of the hair curling component 3 is a cylindrical surface. The cylindrical surface is a curved surface formed by a straight line moving parallel to a fixed curve, and the cylindrical surface in this application tends to be a cylindrical surface.

[0043] Meanwhile, two rotating plates 4 are symmetrically arranged on the fixed clamp plate 1, and the two rotating plates 4 are rotatably connected to the fixed clamp plate 1 at one end and are adjacent to each other. The inner side of the rotating plate 4 is a perming plate 41, and the perming surface of the perming plate 41 is an arc surface. The fixed clamp plate 1 has a built-in drive component for driving the two rotating plates 4 to rotate in opposite directions. After the two rotating plates 4 are rotated, they are located on both sides of the perming component 3. The perming surface of the perming component 3 is adapted to the arc surface formed by the combination of the perming surfaces of the two perming plates 41. The perming surfaces of the perming component 3 and the perming surfaces of the perming plates 41 are located on the inner and outer sides of the hair to perm the hair.

[0044] Therefore, in actual use, the hair-curling surfaces of the curling piece 3 and the curling plate 41 are located on the inner and outer sides of the hair, allowing for clamping and curling of both sides. This results in a better curling effect and avoids tangling, thus preventing burns and solving the problem associated with curling irons. Furthermore, the circumferential clamping mechanism, specifically the cylindrical surface of the curling piece 3 and the curved surface of the curling plate 41, allows the two rotating plates 4 to rotate to the sides of the curling piece 3 under the drive of the drive assembly. This creates a circumferential curling effect, nearly 360 degrees, resulting in larger curls similar to those of a curling iron. This leads to a more aesthetically pleasing style and avoids slippage, thus solving the problem associated with the flat iron.

[0045] The term "opposite rotation" can also be interpreted as "moving closer to each other," specifically, the ends of the two rotating plates 4 that are away from the fixed clamping plate 1, i.e., the movable ends 44, move closer to each other. Furthermore, the rotating plates 4 are connected by a shaft hole, i.e., a rotating shaft 42 is provided, and the fixed clamping plate 1 is correspondingly slotted.

[0046] Meanwhile, other structures are as follows: First, heating plates are provided inside the perming component 3 and between the rotating plate 4 and the perming plate 41, so that the perming component 3 and the perming plate 41 can be heated by the heating plates to perm the hair. Furthermore, the fixing plate 1 includes a base 12 and a top cover 13, and a driving assembly is provided between the base 12 and the top cover 13, and the rotating plate 4 is rotatably mounted on the base 12. Secondly, other structures such as the circuit board and power supply can adopt existing structures, and since these structures are not the focus of this utility model, they will not be described in detail here.

[0047] like Figures 1-4 As shown, the drive component should lag behind the rotation of the rotating clamp 2 to avoid interference. Specifically, the end of the rotating plate 4 away from the fixed clamp 1 is the movable end 44. When the rotating clamp 2 rotates to the position between the movable ends 44 of the two rotating plates 4, the drive component drives the two rotating plates 4 to rotate towards each other.

[0048] Alternatively, after the rotating clamp 2 is rotated to be close to the fixed clamp 1, the drive assembly will then drive the two rotating plates 4 to rotate in opposite directions.

[0049] Corresponding to the different driving times mentioned above, different structures also apply. Firstly, the drive is activated only after the rotating clamp 2 rotates close to the fixed clamp 1. This can be achieved using a motor drive. Specifically: the drive assembly includes gears and a motor, and one end of the rotating plate 4 rotatably connected to the fixed clamp 1 meshes with the gear. When the rotating clamp 2 rotates close to the fixed clamp 1, the motor drives the gear to rotate, thereby causing the rotating plate 4 to rotate. For structural details, please refer to the invention with patent number 2022103726255.

[0050] Secondly, the drive is activated when the corresponding rotating clamp 2 rotates to the position between the movable ends 44 of the two rotating plates 4. It can be manually driven. The specific structure is as follows: First, the drive assembly includes a drive plate 5 and a drive component 6. The drive component 6 includes two drive rods 61 and a connecting part 62 for connecting the two drive rods 61. The drive rods 61 correspond one-to-one with the rotating plates 4. One end of the rotating clamp 2 is provided with a rotating part 21, and the rotating part 21 is rotatably connected to the fixed clamp 1. The bottom of the rotating part 21 is located inside the fixed clamp 1 and connected to the drive plate 5.

[0051] Meanwhile, the end of the drive plate 5 away from the rotating part 21 is connected to the connecting part 62 via the connecting rod 63, and the connection point between the drive plate 5 and the connecting rod 63 is the connection point. Therefore, in actual use, when the rotating clamp 2 rotates towards the fixed clamp 1, it will drive the rotating part 21 to rotate until the rotating clamp 2 is located between the movable ends 44 of the two rotating plates 4. At this time, the drive plate 5 is pushed backward by the rotating part 21 and moves backward, thereby driving the end of the connecting rod 63 away from the drive plate 5 to rotate around the connection point, and driving the connecting part 62 to rotate around the connection point, thereby driving the end of the drive rod 61 near the rotating plate 4 to move upward and driving the two rotating plates 4 to rotate towards each other.

[0052] Furthermore, an elastic element 7 is provided between the rotating plate 4 and the fixed clamping plate 1, and the elastic element 7 is used to reset the rotating plate 4 after rotation. Therefore, in actual use, when the rotating clamping plate 2 rotates away from the fixed clamping plate 1, it will drive the rotating part 21 to rotate. The reason why the rotating clamping plate 2 rotates away from the fixed clamping plate 1 is because there is a spring between the fixed clamping plate 1 and the rotating clamping plate 2, so the rotating clamping plate 2 is reset without external force.

[0053] At this time, the drive plate 5 is pushed forward by the rotating part 21 and moves forward, thereby causing the end of the connecting rod 63 away from the drive plate 5 to rotate around the connection point, and causing the connecting part 62 to rotate around the connection point, thereby causing the drive rod 61 to move downward near the rotating plate 4. At this time, the rotating plate 4 is reset due to gravity and the elastic element 7.

[0054] The elastic element 7 is a spring, and the rotating plate 4 is provided with a mounting base 43 to facilitate the installation of the spring.

[0055] Furthermore, the structure of the rotating part 21 is as follows: First, the fixed clamping plate 1 is provided with a mounting plate 11, and the mounting plate 11 and the rotating part 21 are rotatably connected, i.e., connected by a shaft hole. Moreover, there are two mounting plates 11 and two rotating parts 21, which makes the connection more stable.

[0056] like Figures 1-4 As shown, the structure between the drive plate 5 and the rotating part 21 is varied. It can be that: firstly, a groove 52 is provided at one end of the drive plate 5 near the rotating part 21, and a drive block 211 is provided at the bottom of the rotating part 21, and the drive block 211 is located in the groove 52.

[0057] Meanwhile, the two inner sidewalls of the groove 52 are respectively pushing surface one and pushing surface two, with pushing surface one being farther away from the rotating plate 4. Therefore, in actual use, when the rotating clamp 2 rotates towards the fixed clamp 1, it will drive the rotating part 21 to rotate, thereby driving the driving block 211 to move within the groove 52 until the rotating clamp 2 is located between the movable ends 44 of the two rotating plates 4. At this time, the driving block 211 contacts the pushing surface one and drives the driving plate 5 to move.

[0058] In order to increase the contact area and make the transmission more stable, a protrusion 51 and a protrusion 54 are provided at one end of the drive plate 5 near the rotating part 21, and a groove 52 is provided between the protrusion 51 and the protrusion 54. The protrusion 51 is farther away from the rotating plate 4, and the protrusion 51 is connected to the first pushing surface, while the protrusion 54 is connected to the second pushing surface.

[0059] Therefore, in actual use, when the rotating clamp 2 rotates toward the fixed clamp 1, it will drive the rotating part 21 to rotate, thereby driving the driving block 211 to move in the groove 52 until the rotating clamp 2 is located between the movable ends 44 of the two rotating plates 4. At this time, the driving block 211 contacts the protrusion 51 and drives the driving plate 5 to move.

[0060] Or such as Figure 7 As shown, the drive plate 5 has a protrusion 55 at one end near the rotating part 21, and the bottom of the rotating part 21 has a groove 212, with the protrusion 55 located inside the groove 212.

[0061] Meanwhile, the two inner sidewalls of the slide groove 212 respectively have pushing surfaces three and four, with pushing surface three being farther from the rotating plate 4. Therefore, in actual use, when the rotating clamping plate 2 rotates towards the fixed clamping plate 1, it will drive the rotating part 21 to rotate, thereby causing the slide groove 212 to move relative to the protrusion three 55 until the rotating clamping plate 2 is located between the movable ends 44 of the two rotating plates 4. At this time, the protrusion three 55 contacts the pushing surface four and drives the drive plate 5 to move.

[0062] like Figures 1-4 As shown, the relevant structure of the connecting rod 63 is as follows: First, one end of the connecting rod 63 is rotatably connected to the drive plate 5, and the connecting rod 63, the connecting part 62 and the two drive rods 61 are integrally formed, and the drive rod 61 has a protrusion 611 at one end near the rotating plate 4.

[0063] The structure between the connecting rod 63 and the drive plate 5 is as follows: First, the drive plate 5 has a through hole 53, and there are two connecting rods 63, with a roller 64 located between the two connecting rods 63. The connecting rods 63, the roller 64 and the drive plate 5 are connected by a shaft.

[0064] like Figures 1-9As shown, the structure of the hair perming component 3 is as follows: First, the hair perming component 3 includes a protrusion 31 and an extension section 32 provided on both sides of the protrusion 31. The outer surface of the protrusion 31 is the perming surface of the hair perming component 3, and the outer side of the extension section 32 is recessed inward, and the recessed surface is an arc surface. The hair perming plate 41 is provided with a protrusion section 411 corresponding to the recessed section.

[0065] Therefore, in actual use, the extension section 32 and the protruding section 411 are used to perm the transition section between the curls, thereby making the curls more continuous.

[0066] Furthermore, the inner side of the perming plate 41 is provided with a protrusion 412 to connect with the rotating plate 4, and a slot 413 is provided for placing the heating plate.

[0067] Meanwhile, the hair perming component 3 has a variety of structures. It can be a hollow cylinder that is molded as a whole, and the outer surface of the cylinder is the perming surface of the hair perming component 3.

[0068] Alternatively, the hair perming component 3 is integrally formed, and the hair perming component 3 includes a protrusion 31 and extension sections 32 provided on both sides of the protrusion 31, and the outer surface of the protrusion 31 is the perming surface of the hair perming component 3, and the protrusion 31 is hollow.

[0069] Alternatively, the perming component 3 can be composed of perming component one 33 and perming component two 34, both of which include a hollow half-cylinder and an extension segment 32. The outer surfaces of the half-cylinders of perming component one 33 and perming component two 34 combine to form the perming surface of the perming component 3. Therefore, in actual use, one component can be split into two, allowing for partial replacement during the replacement process. Furthermore, if there are changes in size requirements later, a component can be placed between perming component one 33 and perming component two 34 to change the size of the perming component 3.

[0070] Furthermore, the hollow area can be fitted with connecting rods or other structures to accommodate the heating plate.

[0071] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. However, this utility model is not limited to the above embodiments; therefore, various changes and modifications can be made without departing from the principles and scope of this utility model, and all such changes and modifications fall within the scope of the claimed utility model.

Claims

1. A wraparound hair curling iron, characterized in that, It includes a fixed clamp (1) and a rotating clamp (2), wherein a hair perming component (3) is provided on the inner side of the rotating clamp (2), and the perming surface of the hair perming component (3) is a cylindrical surface; Two rotating plates (4) are symmetrically arranged on the fixed clamp (1), and the two rotating plates (4) are adjacent to one end of the fixed clamp (1) and the inner side of the rotating plate (4) is a perming plate (41), and the perming surface of the perming plate (41) is an arc surface. The fixed clamp (1) has a built-in drive component for driving the two rotating plates (4) to rotate in opposite directions. After the two rotating plates (4) rotate, they are located on both sides of the perming piece (3), and the perming surface of the perming piece (3) is adapted to the arc surface formed by the combination of the perming surfaces of the two perming plates (41). The perming surfaces of the perming piece (3) and the perming surfaces of the perming plates (41) are located on the inner and outer sides of the hair to perm the hair.

2. The wraparound hair curler according to claim 1, characterized in that: The end of the rotating plate (4) away from the fixed clamping plate (1) is the movable end (44). When the rotating clamping plate (2) rotates to the position between the movable ends (44) of the two rotating plates (4), the driving assembly drives the two rotating plates (4) to rotate towards each other. Alternatively, the rotating clamp (2) rotates until it comes close to the fixed clamp (1), at which point the driving assembly drives the two rotating plates (4) to rotate in opposite directions.

3. The wraparound hair curler according to claim 2, characterized in that: The drive assembly includes a drive plate (5) and a drive component (6), and the drive component (6) includes two drive rods (61) and a connecting part (62) for connecting the two drive rods (61). The drive rods (61) correspond one-to-one with the rotating plate (4). One end of the rotating clamp (2) is provided with a rotating part (21), and the rotating part (21) is rotatably connected to the fixed clamp (1). The bottom of the rotating part (21) is located inside the fixed clamp (1) and connected to the drive plate (5). The end of the drive plate (5) away from the rotating part (21) is connected to the connecting part (62) via the connecting rod (63), and the connection point between the drive plate (5) and the connecting rod (63) is the connection point. When the rotating clamp (2) rotates towards the fixed clamp (1), it will drive the rotating part (21) to rotate until the rotating clamp (2) is located between the movable ends (44) of the two rotating plates (4). At this time, the drive plate (5) is pushed backward by the rotating part (21) and moves backward, thereby driving the end of the connecting rod (63) away from the drive plate (5) to rotate around the connection point, and driving the connecting part (62) to rotate around the connection point, thereby driving the end of the drive rod (61) near the rotating plate (4) to move upward and driving the two rotating plates (4) to rotate towards each other.

4. The wraparound hair curler according to claim 3, characterized in that: The drive plate (5) has a groove (52) at one end near the rotating part (21), and a drive block (211) is provided at the bottom of the rotating part (21), and the drive block (211) is located in the groove (52); The two inner walls of the groove (52) are respectively pushing surface one and pushing surface two, and the pushing surface one is farther away from the rotating plate (4). When the rotating clamp (2) rotates towards the fixed clamp (1), it will drive the rotating part (21) to rotate, thereby driving the driving block (211) to move in the groove (52) until the rotating clamp (2) is located between the movable ends (44) of the two rotating plates (4). At this time, the driving block (211) contacts the pushing surface one and drives the driving plate (5) to move.

5. A wraparound hair curler according to claim 3, characterized in that: The drive plate (5) has a protrusion (55) at one end near the rotating part (21), and the bottom of the rotating part (21) has a groove (212), and the protrusion (55) is located in the groove (212); The inner walls of the slide (212) are respectively the third and the fourth pushing surfaces, and the third pushing surface is farther away from the rotating plate (4). When the rotating clamp (2) rotates towards the fixed clamp (1), it will drive the rotating part (21) to rotate, thereby driving the slide (212) to move relative to the protrusion (55) until the rotating clamp (2) is located between the movable ends (44) of the two rotating plates (4). At this time, the protrusion (55) contacts the fourth pushing surface and drives the drive plate (5) to move.

6. A wraparound hair curler according to claim 3, characterized in that: One end of the connecting rod (63) is rotatably connected to the drive plate (5), and the connecting rod (63), the connecting part (62) and the two drive rods (61) are integrally formed, and the drive rod (61) has a protrusion (611) at one end near the rotating plate (4).

7. A wraparound hair curler according to claim 3, characterized in that: An elastic element (7) is provided between the rotating plate (4) and the fixed clamping plate (1), and the elastic element (7) is used to reset the rotating plate (4) after rotation.

8. A wraparound hair curler according to claim 2, characterized in that: The drive assembly includes a gear and a motor, and one end of the rotating plate (4) that is rotatably connected to the fixed clamping plate (1) meshes with the gear. When the rotating clamping plate (2) rotates to be close to the fixed clamping plate (1), the motor will drive the gear to rotate, thereby driving the rotating plate (4) to rotate.

9. A wraparound hair curler according to any one of claims 1-8, characterized in that: The hair perming component (3) includes a protrusion (31) and extension sections (32) provided on both sides of the protrusion (31). The outer surface of the protrusion (31) is the perming surface of the hair perming component (3), and the outer side of the extension section (32) is recessed inward, and the recessed surface is an arc surface. The hair perming plate (41) is provided with a protrusion section (411) corresponding to the recessed section.

10. A wraparound hair curler according to any one of claims 1-8, characterized in that: The perming component (3) is a hollow cylinder formed in one piece, and the outer surface of the cylinder is the perming surface of the perming component (3); Alternatively, the perming part (3) is integrally formed, and the perming part (3) includes a protrusion (31) and extensions (32) provided on both sides of the protrusion (31), and the outer surface of the protrusion (31) is the perming surface of the perming part (3), and the protrusion (31) is hollow; Alternatively, the perming component (3) is composed of a first perming component (33) and a second perming component (34), and both the first perming component (33) and the second perming component (34) include a hollow half-cylinder and an extension section (32), and the outer surfaces of the half-cylinders of the first perming component (33) and the second perming component (34) are combined to form the perming surface of the perming component (3).