Automatic curling iron modeling device

By incorporating guide posts and sensing elements into the automatic curling iron stylist, the position of the hair strands is automatically detected and the rotation of the fork is controlled. This solves the problems of loose hair strands and overheating caused by incorrect direction in existing technologies, enabling simple and efficient inward and outward curling and improving the user experience.

CN121369847APending Publication Date: 2026-01-23SHANGHAI RIWA ELECTRIC APPLIANCE CO LTD
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Patent Information

Application Number
CN202511590779.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-11-03
Publication Date
2026-01-23

AI Technical Summary

Technical Problem

The existing automatic curling iron styling tool's interactive design causes hair strands to become loose and messy due to incorrect direction, requiring repeated corrections that overheat and damage the hair, thus reducing the overall styling experience.

Method used

The hair guide post inside the hair-blocking component divides the hair receiving groove into at least two areas circumferentially, and a sensing element is set on the side where the hair guide post connects to the aluminum tube. The sensing element is electrically connected to the bidirectional drive mechanism to automatically detect the position of the hair bundle to control the rotation of the fork, thereby achieving inward and outward curling styles.

Benefits of technology

It reduces operational complexity, avoids accidental touches, improves styling efficiency and hair quality protection, and enhances the overall styling experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses an automatic curling iron modeling device which is applied to the field of hair bundle modeling. In the automatic curling iron modeling device, a hair blocking assembly is in a non-closed ring shape and is provided with a circumferential opening, and the hair blocking assembly is connected with a curling iron main body through an aluminum pipe; a hair guide column is arranged in the hair blocking assembly and used for dividing a hair containing groove formed by the hair blocking assembly into at least two areas in the circumferential direction, and the areas are communicated with the circumferential opening so as to contain hair bundles. The rotating fork sleeves the outer side of the aluminum tube, is fixed at the joint of the aluminum tube and the curling iron main body, and is used for rotating the hair bundle accommodated in the hair accommodating groove; the sensing element is arranged on the connecting side of the hair guiding column and / or the hair blocking assembly and the aluminum pipe and electrically connected with a bidirectional driving mechanism in the curling iron body, and all sensing faces of the sensing element correspond to all the areas. Therefore, the sensing element in the application determines the entering mode of the hair bundle according to the signal so as to determine the modeling design of the hair bundle, so that the modeling is more efficient and faster, and the use is simpler and more convenient.
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Description

TECHNICAL FIELD

[0001] The present application relates to the field of hair styling, in particular to an automatic curling iron styling device. BACKGROUND

[0002] The current automatic curling iron styling device on the market generally has only a single channel in the groove design. If a user wants to achieve two completely different styling effects of inward curling (inward curling) or outward flipping (outward curling), the user can only rely on continuously pressing the preset "left" or "right" direction keys on the handle to switch and drive.

[0003] In actual application, when the user is styling near the left cheek, if the user wants to converge the hair ends inward, the user needs to accurately press the left key on the handle; conversely, if the user wants to create a dynamic arc of outward flipping, the user needs to quickly switch and press the right key. However, when the user moves the curling iron to the right cheek to continue styling, the original operation habit forms a natural "cognitive trap", at this time, if the user wants to reproduce the inward curling effect on the left side, the user should continue to press the left key, but due to the mirror reversal of the visual angle and the spatial position, the user subconsciously presses the same key as on the left side, which triggers the outward curling mode; similarly, when trying to achieve outward curling on the right side, the user is also prone to mistakenly triggering inward curling. This "left-right reversal" interaction design not only requires the user to deliberately convert the logic every time the user changes sides, but also frequently induces mistaken triggering in the time-critical styling process. Ultimately, the hair strands are loose and messy due to the wrong direction, the carefully planned styling rhythm is interrupted, and even the hair quality is damaged due to repeated correction, thereby reducing the overall styling experience.

[0004] In view of the above-mentioned technology, it is a problem to be solved by those skilled in the art to seek an automatic curling iron styling device that is simple to operate. SUMMARY

[0005] The purpose of the present application is to provide an automatic curling iron styling device. The problem of loose and messy hair strands due to the wrong direction, repeated correction, and damaged hair quality caused by the "left-right reversal" interaction design in the prior art can be solved, thereby improving the overall styling experience.

[0006] To solve the above-mentioned technical problems, the present application provides an automatic curling iron styling device, comprising: a hair blocking assembly (1), a sensing element (2), an aluminum pipe (3), a rotating fork (4), and a curling iron main body (5);

[0007] The hair blocking assembly (1) is in a non-closed ring shape and is provided with a circumferential opening. The hair blocking assembly (1) is connected to the curling iron main body (5) through the aluminum pipe (3);

[0008] The hair blocking assembly (1) is provided with a hair guiding column (11) for dividing the hair accommodating groove formed by the hair blocking assembly (1) into at least two regions in the circumferential direction, and each region is in communication with the circumferential opening to accommodate a hair bundle;

[0009] The rotating fork (4) is sleeved outside the aluminum pipe (3) and is fixed at the connection between the aluminum pipe (3) and the curling iron main body (5) to rotate the hair bundle accommodated in the hair accommodating groove.

[0010] The induction element (2) is arranged at the connection side of the hair guiding column (11) and / or the hair blocking assembly (1) and the aluminum pipe (3) and is electrically connected with the bidirectional driving mechanism (51) in the curling iron main body (5), and each induction surface of the induction element (2) corresponds to each region to detect the styling design of the hair bundle.

[0011] Preferably, the hair blocking assembly (1) is a concave-shaped hair blocking assembly, and the concave part is located at the opposite side of the circumferential opening.

[0012] Preferably, the structure of the junction of the hair guiding column (11) and the hair blocking assembly (1) is a slope structure.

[0013] Preferably, the lowest point of the slope structure is lower than the top end of the rotating fork (4), and the highest point of the slope structure is higher than the top end of the rotating fork (4).

[0014] Preferably, when the induction element (2) is a double-signal induction element, each signal transmitting component in the double-signal induction element is arranged at the connection side of the hair guiding column (11) and the aluminum pipe (3) and in the hair guiding column (11), each signal receiving component in the double-signal induction element is arranged at the connection side of the hair blocking assembly (1) and the aluminum pipe (3) around different regions in the hair accommodating groove and in the hair blocking assembly (1), and the position height of each signal transmitting component arranged in the hair guiding column (11) is the same as the position height of each signal receiving component arranged in the hair blocking assembly (1).

[0015] Preferably, it further comprises a receiving isolation cover and a transmitting isolation cover.

[0016] The receiving isolation cover covers the signal receiving component.

[0017] The transmitting isolation cover covers the signal transmitting component.

[0018] Preferably, when the induction element (2) is a single-signal induction element, the single-signal induction element is arranged in the slope structure of the junction of the hair guiding column (11) and the hair blocking assembly (1).

[0019] Preferably, the hair blocking assembly (1) and the aluminum pipe (3) are connected through the circumferentially fixed hair guiding device fixing frame (6).

[0020] Preferably, the hair guide device fixing frame (6) is detachably connected with the hair blocking assembly (1) and the aluminum pipe (3).

[0021] Preferably, the detachable connection is a bayonet-slot connection or a screw connection.

[0022] Therefore, the application sets an inductive element that operates automatically in the connection side of the hair guide column and / or the hair blocking assembly and the aluminum pipe. When the hair strand is placed into the hair accommodating groove, the inductive element controls the bidirectional driving mechanism to start so as to drive the rotating fork to rotate automatically, so that the styling is more efficient and fast. Due to the structure of the hair blocking assembly and the hair guide column, when the hair strand enters the hair accommodating groove, there are two area selections, which correspond to clockwise and counterclockwise two ways respectively. The inductive element determines the hair strand in which area according to the obtained signal, and further determines the styling design of the hair strand. The unnecessary operation is reduced, and it is not necessary to distinguish the left and right buttons, so that the use is more simple and convenient. BRIEF DESCRIPTION OF DRAWINGS

[0023] In order to more clearly illustrate the embodiments of the application, the drawings needed in the embodiments will be briefly introduced below. Obviously, the drawings in the following description are only some embodiments of the application, and other drawings can be obtained by those skilled in the art without creative labor.

[0024] Figure 1 A schematic view of an automatic curling iron styler provided by an embodiment of the application;

[0025] Fig. 2(a) is a left inside curl schematic view provided by an embodiment of the application;

[0026] Fig. 2(b) is a right inside curl schematic view provided by an embodiment of the application;

[0027] Fig. 3(a) is a left outside curl schematic view provided by an embodiment of the application;

[0028] Fig. 3(b) is a right outside curl schematic view provided by an embodiment of the application;

[0029] Figure 4 A detail view of the inductive element provided by the application;

[0030] Figure 5 A circuit schematic view of the inductive element provided by an embodiment of the application;

[0031] Figure 6 A specific schematic view of the automatic curling iron styler provided by an embodiment of the application;

[0032] Figure 7 An appearance view of the automatic curling iron styler provided by an embodiment of the application;

[0033] Figure 8 The exploded view of the automatic curling iron styler provided by the embodiments of the present application.

[0034] Reference signs: hair blocking assembly (1), hair guiding column (11), sensing element (2), aluminum tube (3), rotating fork (4), curling iron body (5), hair guiding device fixing frame (6), power cord (7), first photoelectric signal receiving assembly (U1), second photoelectric signal receiving assembly (U2), photoelectric signal emitting assembly (D1), crystal (Q1), first resistor (R1), second resistor (R2), first capacitor (C1), second capacitor (C2), connector (J1), first receiving isolation cover (21), second receiving isolation cover (22), emitting isolation cover (23), PTC heating sheet (31), temperature sensing device (32), heating sheet support (33), negative ion support upper cover (34), negative ion support right side plate (35), negative ion needle (36), negative ion support left side plate (37), negative ion support lower cover (38), external gear (39), rear shell (40), internal gear (41), wire pressing cover (42), bidirectional driving mechanism (51), motor support (52), circuit board (53), tail ring (54), front shell (55), emergency stop switch (56), light guiding column (57), and power switch (58). DETAILED DESCRIPTION

[0035] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, but not all the embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work fall within the protection scope of the present application.

[0036] The core of the present application is to provide an automatic curling iron styler.

[0037] In order for those skilled in the art to better understand the present application, the present application will be further described in detail below with reference to the drawings and specific embodiments.

[0038] Figure 1 The schematic diagram of the automatic curling iron styler provided by the embodiments of the present application includes: hair blocking assembly (1), sensing element (2), aluminum tube (3), rotating fork (4), and curling iron body (5). The handheld end of the curling iron body (5) includes bidirectional driving mechanism (51) inside.

[0039] The structure of one automatic curling iron styling device is that the hair blocking component (1) is in the form of a non-closed ring and is provided with a circumferential opening, the hair blocking component (1) is connected with the curling iron body (5) through an aluminum pipe (3); the hair blocking component (1) is provided with a hair guiding column (11) and is used to divide the hair accommodating groove formed by the hair blocking component (1) into at least two regions along the circumference, each region is communicated with the circumferential opening to accommodate the hair bundle; the rotating fork (4) is sleeved outside the aluminum pipe (3) and is fixed at the connection between the aluminum pipe (3) and the curling iron body (5) and is used to rotate the hair bundle accommodated in the hair accommodating groove; the sensing element (2) is arranged at the connection side of the hair guiding column (11) and / or the hair blocking component (1) and the aluminum pipe (3) and is electrically connected with the bidirectional driving mechanism (51) in the curling iron body (5), and each sensing surface of the sensing element (2) corresponds to each region and is used to detect the styling design of the hair bundle.

[0040] In a specific embodiment, the sensing element (2) is arranged at the connection side of the hair guiding column (11) and / or the hair blocking component (1) and the aluminum pipe (3). In this way, when the hair bundle enters the hair accommodating groove formed by the hair guiding column (11) and the hair blocking component (1) along the hair guiding column (11), it will block the original light signal in the hair accommodating groove or generate a pressure signal / temperature signal / microwave signal / hair recognition signal to the current sensing element (2). Since the sensing element (2) judges the state in the hair accommodating groove according to the received signal, when the hair bundle enters the hair accommodating groove and affects the sensing element (2), the sensing element (2) will first detect that there is a hair bundle in the current hair accommodating groove.

[0041] Since the hair guiding column (11) is arranged in the hair blocking component (1), the hair accommodating groove formed by the hair blocking component (1) is divided into at least two regions along the circumference, each region is communicated with the circumferential opening to accommodate the hair bundle, and each sensing surface of the sensing element (2) corresponds to each region. That is, when the hair accommodating groove is divided into two regions, A region and B region, two sensing surfaces of the sensing element (2) correspond to A region and B region respectively. At this time, there are two ways for the hair bundle to enter the hair accommodating groove, the first way is to fall into the groove bottom of A region from above A region through the hair guiding column (11); the second way is to fall into the groove bottom of B region from above B region through the hair guiding column (11), which can be understood as two hair entering grooves, that is, the process of the hair bundle falling into A region and the process of the hair bundle falling into B region are independent of each other and do not interfere with each other. The sensing element (2) judges which region the hair bundle enters according to the change of the corresponding signal in A region and B region.

[0042] When the sensing element (2) receives the shielding signal or the pressure signal / temperature signal / microwave signal / hair recognition signal related to the A area, it indicates that the current hair strand enters the A area; if the sensing element (2) receives the shielding signal or the pressure signal / temperature signal / microwave signal / hair recognition signal related to the B area, it indicates that the current hair strand enters the B area. Generally, the hair strand design corresponding to the A area is designed as an inside roll, as shown in FIG. 2(a) and FIG. 2(b), wherein FIG. 2(a) represents the inside roll design on the left side, and FIG. 2(b) represents the inside roll design on the right side; the hair strand design corresponding to the B area is designed as an outside roll, as shown in FIG. 3(a) and FIG. 3(b), wherein FIG. 3(a) represents the outside roll design on the left side, and FIG. 3(b) represents the outside roll design on the right side.

[0043] In the use process of the automatic curling iron styler, first, turn on the power, and then the user selects the appropriate temperature to heat the aluminum pipe (3); after the sensing element (2) determines the hair strand design, it sends a signal representing the design to the bidirectional driving mechanism (51); then the bidirectional driving mechanism (51) receives the signal and controls the rotating fork (4) to rotate clockwise or counterclockwise, so as to wrap the hair strand around the aluminum pipe (3), thereby realizing the design of the heated aluminum pipe (3) on the hair strand.

[0044] The implementation of the automatic curling iron styler in actual application is as follows: after the power is turned on, the power switch is pressed for 2 seconds to turn on, and after turning on, the temperature is adjusted by pressing the key; the inside of the hair strand entry channel of the product presents a slope, one side is high and the other side is low, the higher side is against the user and the hair root direction, and the lower side is against the outside and the hair tip direction when in use; when the user holds the product as required above, the sensing element (2) drives the bidirectional driving mechanism (51) to control the rotating fork (4) to rotate clockwise or counterclockwise when the hair strand enters the hair accommodating groove through the hair guide column (11), so as to wrap the hair strand around the aluminum pipe (3), and then take out the hair strand after styling.

[0045] In actual application, the sensing element (2) can be a photoelectric sensing element, a pressure sensing element, a microwave sensing element, a hair recognition sensing element, etc. It should be noted that the specific type of sensing element (2) is selected by the user according to the user's needs, and the present application is not limited.

[0046] The automatic curling iron styling device provided by the application comprises a hair blocking component, an induction element, an aluminum pipe, a rotating fork and a curling iron body. The hair blocking component is in a non-closed ring shape and is provided with a circumferential opening. The hair blocking component is connected with the curling iron body through the aluminum pipe. A hair guiding column is arranged in the hair blocking component, and the hair guiding column is used to divide a hair accommodating groove formed by the hair blocking component into at least two regions in the circumferential direction. Each region is in communication with the circumferential opening to accommodate a hair bundle. The rotating fork is sleeved outside the aluminum pipe and is fixed at the connection between the aluminum pipe and the curling iron body, and is used to rotate the hair bundle accommodated in the hair accommodating groove. The induction element is arranged at the connection side of the hair guiding column and / or the hair blocking component and the aluminum pipe, and is electrically connected with a bidirectional driving mechanism in the curling iron body. Each induction surface of the induction element corresponds to each region, and is used to detect the styling design of the hair bundle. As can be seen, the induction element arranged at the connection side of the hair guiding column and / or the hair blocking component and the aluminum pipe is automatically operated. When the hair bundle is placed in the hair accommodating groove, the induction element controls the bidirectional driving mechanism to start, so as to drive the rotating fork to rotate automatically, so that the styling is more efficient and fast. In addition, due to the structure of the hair blocking component and the hair guiding column, when the hair bundle enters the hair accommodating groove, two regions are selected, which correspond to clockwise and counterclockwise two ways respectively. The induction element determines the styling design of the hair bundle according to the obtained signal. The unnecessary operation is reduced, and it is not necessary to distinguish the left and right buttons, so that the use is more simple and convenient.

[0047] On the basis of the above-mentioned embodiments, as a preferred embodiment, the hair blocking component (1) is a concave-shaped hair blocking component, and the concave part is located at the opposite side of the circumferential opening.

[0048] The structure of the connection between the hair guiding column (11) and the hair blocking component (1) is a slope structure, and the lowest point of the slope structure is lower than the top end of the rotating fork (4), and the highest point of the slope structure is higher than the top end of the rotating fork (4).

[0049] In specific embodiments, according to the specific structure shape of the hair blocking component (1) and the height of the hair guiding column (11), the shape of the hair inlet of the automatic curling iron styling device can be understood as a "mountain" shape. According to the above-mentioned limitation, the user can send the hair bundle from the concave part into the hair accommodating groove.

[0050] In actual application, the induction element (2) can be a double-signal induction element or a single-signal induction element.

[0051] When the inductive element (2) is a double signal inductive element, each signal transmitting assembly in the double signal inductive element is arranged on the connecting side of the hair guiding column (11) and the aluminum pipe (3) and in the hair guiding column (11), each signal receiving assembly in the double signal inductive element is arranged on the connecting side of the hair blocking assembly (1) and the aluminum pipe (3) around the different regions in the hair accommodating groove and in the hair blocking assembly (1), wherein the position height of each signal transmitting assembly arranged in the hair guiding column (11) is the same as the position height of each signal receiving assembly arranged in the hair blocking assembly (1).

[0052] For example, as shown in Figure 4 When the double signal inductive element is a photoelectric inductive element, the photoelectric signal transmitting assembly D1 is arranged on the connecting side of the hair guiding column (11) and the aluminum pipe (3); each photoelectric signal receiving assembly U1 and U2 is arranged on the connecting side of the hair blocking assembly (1) and the aluminum pipe (3) around the different regions in the hair accommodating groove and in the hair blocking assembly (1), wherein the position height of the signal transmitting assembly D1 arranged in the hair guiding column (11) is the same as the position height of each signal receiving assembly U1 and U2 arranged in the hair blocking assembly (1) for receiving and transmitting signals.

[0053] In this embodiment, in order to avoid signal interference, the device further comprises a receiving isolation cover and a transmitting isolation cover, wherein the receiving isolation cover covers the signal receiving assembly, and the transmitting isolation cover covers the signal transmitting assembly.

[0054] It should be noted that, in order to realize the functions of receiving signals and the like, the inductive element (2) needs to be connected with corresponding circuit elements to realize specific functions. Figure 5As shown, it comprises: a first photoelectric signal receiving component (U1) (for example: a sensor), a second photoelectric signal receiving component (U2) (for example: a sensor), a photoelectric signal emitting component (D1) (for example: a diode), a transistor (Q1), a first resistor (R1), a second resistor (R2), a first capacitor (C1) and a second capacitor (C2). The specific connection relationship is: the first end of the first photoelectric signal receiving component (U1) is connected with the first end of the first resistor (R1), the first end of the first capacitor (C1) and the first end of the second photoelectric signal receiving component (U2), and is connected with the first lead of the connector (J1); the second end of the first photoelectric signal receiving component (U1) is connected with the second lead of the connector (J1); the second end of the second photoelectric signal receiving component (U2) is connected with the third lead of the connector (J1); the third end of the first photoelectric signal receiving component (U1) is connected with the third end of the second photoelectric signal receiving component (U2), the emitter of the transistor (Q1), the second end of the first capacitor (C1), the second end of the second resistor (R2) and the second end of the second capacitor (C2), and is connected with the fourth lead of the connector (J1) together; the base of the transistor (Q1) is connected with the first end of the second resistor (R2), and is connected with the fifth lead of the connector (J1); the second end of the first resistor (R1) is connected with the first end of the photoelectric signal emitting component (D1); the collector of the transistor (Q1) is connected with the second end of the photoelectric signal emitting component (D1), and the connector (J1) is used to be connected with the bidirectional driving mechanism (51).

[0055] When the photoelectric signal emitting component (D1) is used to emit photoelectric signal, and the first photoelectric signal receiving component (U1) and the second photoelectric signal receiving component (U2) are used to detect the signal of the corresponding A area or B area after the photoelectric signal emitting component (D1) emits photoelectric signal, so as to judge which area the hair bundle enters.

[0056] When the sensing element (2) is a single signal sensing element, the single signal sensing element is arranged in the slope structure where the hair guiding column (11) and the hair blocking component (1) are connected, so that the sensing element (2) can detect in any area. The single signal sensing element can be a pressure sensing element, a temperature sensing element, a microwave sensing element and a hair recognition sensing element, etc.

[0057] It should be noted that which type of sensing element (2) is used is selected by the user according to the user's needs, and the present application is not limited.

[0058] On the basis of the above embodiment, as shown in Figure 6 As a preferred embodiment, the hair blocking component (1) is connected with the aluminum pipe (3) through the circumferentially fixed hair guiding device fixing frame (6).

[0059] The hair guide device fixing frame (6) is detachably connected with the hair blocking assembly (1) and the aluminum pipe (3).

[0060] The detachable connection is a bayonet-slot connection or a screw connection.

[0061] In specific embodiments, the hair blocking assembly (1), the hair guide device fixing frame (6), and the aluminum pipe (3) are connected by a detachable connection of a bayonet-slot connection or a screw connection, which is convenient for the user to store and replace.

[0062] In actual application, as shown in Figure 7 and Figure 8 , the complete automatic curling iron styling device includes a hair blocking assembly (1), a hair guide column (11), a sensing element (2) (for example, a photoelectric sensing element), an aluminum pipe (3), a rotating fork (4), a curling iron main body (5), a hair guide device fixing frame (6), and a power cord (7). In addition, it also includes a first receiving isolation cover (21), a second receiving isolation cover (22), and a transmitting isolation cover (23).

[0063] Further, the specific structure of the automatic curling iron styling device is as follows: a PTC heating sheet (31), a temperature sensing device (32), a heating sheet support (33), a negative ion support upper cover (34), a negative ion support right side plate (35), a negative ion needle (36), a negative ion support left side plate (37), a negative ion support lower cover (38), an external gear (39), a rear shell (40), an internal gear (41), a wire pressing cover (42), a bidirectional driving mechanism (51) (for example, a motor), a motor support (52), a circuit board (53), a tail ring (54), a front shell (55), an emergency stop switch (56), a light guide column (57), and a power switch (58).

[0064] In summary, the implementation of the automatic curling iron styling device is as follows: after the power cord (7) is powered on, the power switch (58) is pressed for 2 seconds to turn on, after starting, the power switch (58) is pressed to adjust the temperature, and the PTC heating sheet (31) is heated; the inner side of the hair strand entry channel presents a slope, one side is high and the other side is low, the higher side is against the user and the hair root direction, and the lower side is against the outside and the hair tip direction; when the user holds the product according to the above requirements, the hair strand enters the A area through the first mode through the hair guide column (11), blocks the sensing element (2), the sensing element (2) drives the bidirectional driving mechanism (51) to start, the internal gear (41) at the front end of the bidirectional driving mechanism (51) drives the external gear (39) to rotate, the external gear (39) is fixedly connected with the rotating fork (4) and rotates to the left, the hair strand is twisted and wound on the aluminum pipe (3), and after shaping, the hair strand is taken out, which is a left-handed curl; conversely, the hair strand enters the B area through the second mode through the hair guide column (11), the rotating fork (4) rotates to the right, and the hair strand made is a right-handed curl.

[0065] In summary, the application sets an inductive element in the connection side of the guide column and / or the hair blocking assembly and the aluminum tube. When the hair strand is put into the hair accommodating groove, the inductive element controls the bidirectional driving mechanism to start, so as to drive the rotating fork to rotate automatically, so that the styling is more efficient and fast. Due to the structure of the hair blocking assembly and the guide column, when the hair strand enters the hair accommodating groove, there are two area selections, which correspond to clockwise and counterclockwise two ways respectively. The inductive element determines the hair strand in which area according to the obtained signal, and further determines the styling design of the hair strand. The unnecessary operation is reduced, and it is not necessary to distinguish the left and right keys, so that the use is more simple and convenient.

[0066] The automatic curling iron styler provided by the application is described in detail above. The embodiments in the specification are described in a progressive manner, and each embodiment focuses on the differences from other embodiments. The same or similar parts of each embodiment can be referred to. For the device disclosed in the embodiments, since it corresponds to the method disclosed in the embodiments, the description is relatively simple, and the related parts can be referred to the method part. It should be pointed out that for ordinary skilled in the art, without departing from the principles of the application, the application can be improved and modified in several ways, and these improvements and modifications also fall within the protection scope of the claims of the application.

[0067] It should also be noted that in this specification, the relationship terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any such actual relationship or order between the entities or operations. Moreover, the terms "include", "contain" or any other variants thereof are intended to cover non-exclusive inclusion, so that the process, method, article or equipment including a series of elements not only includes those elements, but also includes other elements not explicitly listed or inherent to such process, method, article or equipment. Without more limitations, the element defined by the statement "including a" does not exclude the presence of other identical elements in the process, method, article or equipment including the element.

Claims

1. An automatic curling iron styler, characterized in that, The utility model relates to a curling iron, including: Hair blocking assembly (1), sensing element (2), aluminium pipe (3), rotating fork (4) and curling iron body (5); Wherein, the hair blocking assembly (1) is non-closed annular and is equipped with circumferential opening, the hair blocking assembly (1) is connected with the curling iron body (5) through the aluminium pipe (3); The hair blocking assembly (1) is equipped with hair guide column (11) in, and is used for dividing the hair accommodating groove formed by the hair blocking assembly (1) into at least two regions along the circumference, each region is communicated with the circumferential opening to accommodate the hair bundle; The rotating fork (4) is sleeved on the outside of the aluminium pipe (3), and is fixed at the connecting place of the aluminium pipe (3) and the curling iron body (5), for rotating the hair bundle accommodated in the hair accommodating groove; The sensing element (2) is arranged on the connecting side of the hair guide column (11) and / or the hair blocking assembly (1) and the aluminium pipe (3), and is electrically connected with the bidirectional drive mechanism (51) in the curling iron body (5), and each sensing surface of the sensing element (2) corresponds to each region, for detecting the styling design of the hair bundle.

2. The automatic curling iron styler according to claim 1, wherein, The hair blocking assembly (1) is concave-shaped hair blocking assembly, and the concave part is located at the opposite side of the circumferential opening.

3. The automatic curling iron styler of claim 1, wherein, The structure of the hair guide column (11) and the connecting place of the hair blocking assembly (1) is slope structure.

4. The automatic curling iron styler of claim 3, wherein, The lowest point of the slope structure is lower than the top end of the rotating fork (4), and the highest point of the slope structure is higher than the top end of the rotating fork (4).

5. The automatic curling iron styler of claim 1, wherein, When the sensing element (2) is double-signal sensing element, each signal transmitting component in the double-signal sensing element is arranged on the connecting side of the hair guide column (11) and the aluminium pipe (3), and is arranged in the hair guide column (11), each signal receiving component in the double-signal sensing element is arranged on the connecting side of the hair blocking assembly (1) and the aluminium pipe (3) around different regions in the hair accommodating groove, and is arranged in the hair blocking assembly (1), wherein the position height of each signal transmitting component arranged in the hair guide column (11) is same with the position height of each signal receiving component arranged in the hair blocking assembly (1).

6. The automatic curling iron styler according to claim 5, wherein, Further including: Receiving isolation cover and sending isolation cover; Wherein, the receiving isolation cover covers on the signal receiving component; The sending isolation cover covers on the signal transmitting component.

7. The automatic curling iron styler of claim 3, wherein, When the sensing element (2) is single-signal sensing element, the single-signal sensing element is arranged in the slope structure of the hair guide column (11) and the hair blocking assembly (1) connection.

8. The automatic curling iron styler according to any of claims 1-7, wherein, The hair blocking assembly (1) and the aluminium pipe (3) are connected through circumferential fixed hair guide device fixing frame (6).

9. The automatic curling iron styler according to claim 8, wherein, The hair guide device fixing frame (6) is detachably connected with the hair blocking assembly (1) and the aluminium pipe (3).

10. The automatic curling iron styler of claim 8, wherein, The connection mode of detachable connection is bayonet-slot connection or screw connection.