Hairdressing device
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- INTERTEC TECH LTD
- Filing Date
- 2026-02-09
- Publication Date
- 2026-05-12
AI Technical Summary
Existing hair styling steam generators lack intelligent control, leading to dry burning and damage.
Temperature sensing elements are used to detect the temperature of the steam generating structure, and control elements are used to intelligently control the water supply structure to ensure that the steam generator supplies water within a suitable temperature range and avoids dry burning.
This ensured the normal operation of the steam generator, extended its service life, and guaranteed a continuous supply of steam.
Smart Images

Figure CN122004584A_ABST
Abstract
Description
Technical Field
[0001] This invention belongs to the field of hair styling equipment technology, and specifically relates to a hair styling device. Background Technology
[0002] Hair styling tools, such as hair straighteners, straightening combs, or curling irons, generally use electric current to heat the heating element or heating wire of the hair straightener, which is then conducted to an aluminum or ceramic plate to heat the hair. This heat straightens or curls the hair, thus setting the style and making the hair straighter, smoother, or curlier. Therefore, hair styling tools have become a favorite hair styling device for many beauty enthusiasts. To avoid the high temperature of the hair styling tool damaging dry hair during the hair styling process, such as burning or pulling the hair, hair styling tools are usually equipped with a steam generator to moisten the hair and improve the styling effect.
[0003] Existing hair styling steam generators work by directly pumping water into the steam generation chamber. The water is heated and evaporates in the steam generation chamber to produce steam. Although this type of steam generator can produce steam, the heating element acts directly on the water in the steam generation chamber, causing it to evaporate quickly. Even after all the water in the steam generation chamber has evaporated, the heating element continues to work, leading to dry burning of the steam generation chamber and damage to the steam generator. Existing steam evaporators cannot be intelligently controlled. Summary of the Invention
[0004] In view of the problems existing in the prior art, the purpose of the present invention is to provide a hair styling device. The technical problem to be solved by the present invention is: how to realize intelligent control of the steam evaporator and ensure the normal operation of the steam generator.
[0005] To achieve the above objectives, the present invention adopts the following technical solution: A hair styling device, comprising: The body includes a main clamp and a secondary clamp that can clamp together with each other; A steam generator is disposed within the main clamp and / or the auxiliary clamp. The steam generator includes a steam generating structure and a water supply structure. The water supply structure is used to supply water to the steam generating structure. The steam generating structure can release steam in the direction in which the main clamp and the auxiliary clamp are clamped together. A control component includes a control element and a temperature measuring element disposed within the main body. The temperature measuring element is electrically connected to the control element and is used to detect the temperature of the steam generating structure. When the temperature detected by the temperature measuring element is higher than X, and / or the temperature detected by the temperature measuring element is lower than Y, the control element controls the water supply structure to supply water to the steam generating structure; wherein, 140℃≤X≤150℃, 100℃≤Y≤120℃.
[0006] In one of the aforementioned hair styling devices, the steam generating structure includes a heat conductor, a heating element, and a water-absorbing component; The heat conductor is provided with an installation space and an evaporation chamber; the heating element is installed in the installation space; the water-absorbing component is installed in the evaporation chamber; the water supply structure is used to supply water to the water-absorbing component; the water-absorbing component is at least partially in contact with the heat conductor so that the water in the water-absorbing component is heated and evaporated and sprayed out from the steam outlet of the heat conductor.
[0007] In one of the aforementioned hair styling devices, the water supply structure includes a water tank, a water pump, and a water supply component; The water tank is used for water storage and is connected to the water supply component. The water pump is installed on the water supply component and is used to pump water from the water tank to the water supply component, which in turn supplies water to the suction component. The water pump is electrically connected to the control element. The temperature measuring element is disposed on the heat conductor and is used to detect the temperature of the heat conductor. Specifically, when the temperature detected by the temperature measuring element is higher than X (140℃≤X≤150℃) and / or the temperature detected by the temperature measuring element is lower than Y (100℃≤Y≤120℃), the control element controls the water pump to pump water to the water supply component.
[0008] In one of the hair styling devices described above, the heat conductor is provided with at least one steam outlet, and the steam outlet is connected to the evaporation chamber.
[0009] In one of the hair styling devices described above, the heating element is electrically connected to the control element; When the temperature detected by the temperature sensing element is higher than Z (150℃≤Z≤170℃), the control element controls the heating element to stop working.
[0010] In the aforementioned hair styling device, a water absorption channel is provided inside the water absorption component; the water supply component includes a water supply pipe and a water spray pipe, the water spray pipe passes through the end of the heat conductor and extends into the evaporation chamber, the water supply pipe is connected to the water spray pipe, and the water spray pipe passes through the water absorption channel; The water spray pipe is provided with a plurality of water spray holes, which are arranged along the length of the water spray pipe.
[0011] In one of the steam generating structures described above, the water-absorbing element is one or more of water-absorbing ceramics, high-temperature resistant water-absorbing sponges, and high-temperature resistant quartz wool.
[0012] In the aforementioned hair styling device, the main clamp is provided with a first clamping block, and the auxiliary clamp is provided with a second clamping block opposite to the first clamping block. The steam release port is located on the front side of the first clamping block and / or the second clamping block, and the horizontal height of the plane where the steam release port is located is lower than the horizontal height of the plane where the first clamping block and / or the second clamping block is located.
[0013] In the hair styling device described above, the main clamp is provided with a first mounting port, and the first clamp block is installed in the first mounting port; The auxiliary clamp is provided with a second mounting port, and the second clamping block is installed in the second mounting port; Both the first clamping block and the second clamping block have heating surfaces. When the main clamping member and the auxiliary clamping member are clamped together, the heating surfaces of the first clamping block and the second clamping block together clamp the hair.
[0014] In the hair styling device described above, the first clamp and the second clamp have the same structure, and both the first clamp and the second clamp include a heater, a heat conductor and a heat insulation sleeve. The heater is installed inside the heat conductor, the heat insulation sleeve has an opening, the heat conductor is disposed inside the heat insulation sleeve, the heat conductor has the heating surface, the heating surface passes through the opening and extends to the outside of the heat insulation sleeve.
[0015] The beneficial effects of this invention are: The hair styling device of the present invention detects the real-time temperature of the steam generating structure through a temperature sensing element and intelligently controls the water supply structure through a control element, thereby ensuring the normal operation of the steam generating structure and improving its service life. Attached Figure Description
[0016] Figure 1 This is a schematic diagram of the structure of a hair styling tool; Figure 2 A structural diagram of a hair styling device from another perspective; Figure 3 This is a cross-sectional view of the hair styling tool; Figure 4 for Figure 3 Enlarged view of section A in the middle; Figure 5 This is a schematic diagram of the structure of the first clamping block or the second clamping block; Figure 6 This is an exploded view of either the first or second clamping block. Figure 7 This is a schematic diagram of the steam generator. Figure 8 This is an exploded view of a steam generator; Figure 9 A cross-sectional view of the heating element and water-absorbing component installed inside the heat conductor; Figure 10 This is a schematic diagram of the heat conductor.
[0017] In the diagram, 100 is the main body; 110 is the main clamping component; 111 is the first clamping block; 112 is the first mounting port; 120 is the auxiliary clamping component; 121 is the second clamping block; 122 is the second mounting port; 130 is the steam release port; 140 is the heater; 150 is the heat conductor; 151 is the heating surface; 160 is the heat insulation sleeve; 161 is the opening; 180 is the rotating assembly; 181 is the rotating plate; 182 is the rotating shaft; 183 is the return spring; 184 is the first guide post; 185 is the second guide post; 200 is the steam generator; 210 is the steam generating structure; 211 is the steam generating structure. 2111 Heat conductor; 2112 Installation space; 2112 Evaporation chamber; 2112a Sealing cap; 2113 Steam outlet; 212 Heating element; 213 Water suction component; 2131 Water suction channel; 220 Water supply structure; 221 Water tank; 222 Water pump; 223 Water supply component; 2231 Water supply pipe; 2232 Water spray pipe; 2232a Water spray hole; 230 Support frame; 231 Support leg; 232 Support part; 300 Control assembly; 310 Control element; 320 Temperature measuring element; 340 Third temperature measuring element. Detailed Implementation
[0018] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of the present invention.
[0019] In the description of the embodiments, it should be noted that all directional indications (such as up, down, left, right, front, back, etc.) in the embodiments of the present invention are only used to explain the relative positional relationship and movement of each component in a certain specific posture (as shown in the figure). If the specific posture changes, the directional indication will also change accordingly.
[0020] In the description of the embodiments, it should be noted that when a component / part is referred to as being "set on" another component / part, it can be directly set on the other component / part or there may be an intervening component / part. When a component / part is referred to as being "connected / joined" to another component / part, it can be directly connected / joined to the other component / part or there may be an intervening component / part. The term "connected / joined" as used herein can include mechanical physical connections / joinings. The term "comprising / including" as used herein refers to the presence of a feature, step, or component / part, but does not exclude the presence or addition of one or more other features, steps, or components / parts. The term "and / or" as used herein includes any and all combinations of one or more of the associated listed items.
[0021] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this application belongs. The terminology used herein is for the purpose of describing particular embodiments only and is not intended to limit the scope of this application. Furthermore, in the description of this application, the terms "first," "second," etc., are used for descriptive purposes and to distinguish similar objects only; there is no order between them, nor should they be construed as indicating or implying relative importance. Additionally, in the description of this application, unless otherwise stated, "a plurality of" means two or more.
[0022] This embodiment provides a hair styling device, including a body 100, a steam generator 200, and a control component 300. The body 100 includes a main clamp 110 and a secondary clamp 120 that can clamp each other. The steam generator 200 is disposed within the main clamp 110 and / or the secondary clamp 120. The steam generator 200 includes a steam generating structure 210 and a water supply structure 220. The water supply structure 220 is used to supply water to the steam generating structure 210. The steam generating structure 210 can release steam in the direction in which the main clamp 110 and the secondary clamp 120 are clamped together. The control component 300 includes a control element 310 and a temperature measuring element 320 disposed within the main body 100. The temperature measuring element 320 is electrically connected to the control element 310. The temperature measuring element 320 is used to detect the temperature of the steam generating structure 210. When the temperature detected by the temperature measuring element 320 is higher than X, and / or the temperature detected by the temperature measuring element 320 is lower than Y, the control element 310 controls the water supply structure 220 to supply water to the steam generating structure 210. Wherein, 140℃≤X≤150℃, 100℃≤Y≤120℃.
[0023] It should be noted that, as Figure 1As shown in the illustration, this embodiment of the hair styling tool uses a hair straightener as an example. Of course, the hair styling tool can also be a straightening comb or a curling iron. The main body 100 is the core basic component of the hair styling tool, serving as the structure that carries and connects various functional components and enables overall operation control. In some embodiments, the main body 100 may include two clamps, such as a main clamp 110 and a secondary clamp 120. The main clamp 110 and the secondary clamp 120 are rotatably connected, allowing them to clamp each other to hold the hair. The main clamp 110 and the secondary clamp 120 are not primary and can be interchanged. The main clamp 110 and the secondary clamp 120 clamp the hair tightly, and the user can then pull to straighten the hair. The steam generating structure 210 releases steam in the direction where the main clamp 110 and the secondary clamp 120 are clamped, ensuring the hair remains moist during styling and preventing dehydration and dryness due to excessively high local temperatures.
[0024] In this embodiment, the temperature sensing element 320 is installed on the steam generating structure 210 to detect its temperature. The temperature sensing element 320 is electrically connected to the control element 310. The temperature sensing element 320 can monitor the temperature of the steam evaporation structure in real time. When the temperature detected by the temperature sensing element 320 is higher than X (40℃≤X≤150℃) and / or lower than Y (100℃≤Y≤120℃), the control element 310 controls the water supply structure 220 to supply water to the steam generating structure 210. This ensures sufficient water in the steam generating structure 210 to generate steam and prevents dry burning due to insufficient water, which could damage the steam generating structure 210. This hair styling device uses the temperature sensing element 320 to detect the real-time temperature of the steam generating structure 210 and the control element 310 to intelligently control the water supply structure 220, ensuring the normal operation of the steam generating structure 210 and extending its service life. As one embodiment, the temperature sensing element 320 can be an NTC temperature sensor, and the control element 310 can be a PCBA circuit board.
[0025] like Figure 3 and 4As shown in one embodiment, the main body 100 further includes a rotating assembly 180, which enables the rotational connection between the main clamping member 110 and the auxiliary clamping member 120. Specifically, the rotating assembly 180 includes a rotating plate 181, a rotating shaft 182, a return spring 183, a first guide post 184, and a second guide post 185. The rotating plate 181 is fixedly connected to the auxiliary clamping member 120, the rotating shaft 182 is disposed on the main clamping member 110, and the rotating plate 181 is rotatably connected to the rotating shaft to achieve the rotational connection between the main clamping member 110 and the auxiliary clamping member 120. The first guide post 184 is fixedly connected to the main clamping member 110, the second guide post 185 is fixedly connected to the auxiliary clamping member 120, and the lower end of the return spring 183 is sleeved... The upper end of the return spring 183 is sleeved on the second guide post 185 and mounted on the first guide post 184. In the initial state, the main clamp 110 and the auxiliary clamp 120 are in the open state, and the return spring 183 has no elasticity. When it is necessary to clamp the hair with the main clamp 110 and the auxiliary clamp 120, the user presses the main clamp 110 and the auxiliary clamp 120 with his / her hand to make the main clamp 110 and the auxiliary clamp 120 rotate until the main clamp 110 and the auxiliary clamp 120 clamp the hair. At this time, the return spring 183 is compressed and has elasticity. When the hair styling device completes the hair styling work, the user releases his / her hand, and the return spring 183 pushes the auxiliary clamp 120 open under the action of elasticity, thereby allowing the main clamp 110 and the auxiliary clamp 120 to return to the initial state.
[0026] In the aforementioned hair styling device, the steam generating structure 210 includes a heat conductor 211, a heating element 212, and a water-absorbing component 213. The heat conductor 211 is provided with an installation space 2111 and an evaporation chamber 2112. The heating element 212 is installed in the installation space 2111. The water-absorbing component 213 is installed in the evaporation chamber 2112. The water supply structure 220 is used to supply water to the water-absorbing component 213. The water-absorbing component 213 is at least partially in contact with the heat conductor 211, so that the water in the water-absorbing component 213 is heated and evaporated and sprayed out from the steam outlet 2113 of the heat conductor 211.
[0027] In this embodiment, the heating element 212 is an electric heating element, such as an MCH, PTC, or heating wire. When the heating element 212 is energized, it generates heat, which is rapidly conducted to the periphery of the evaporation chamber 2112 via the heat conductor 211. When steam is needed, the water supply structure 220 supplies water to the water-absorbing component 213. The water-absorbing component 213 absorbs the water supplied by the water supply structure 220 and stores it inside. Since the water-absorbing component 213 is at least partially in contact with the heat conductor 211, the contact portion can quickly increase its temperature and vaporize to generate steam. After the water in the contact portion of the water-absorbing component 213 evaporates, the water stored inside continuously replenishes the water in the evaporation chamber 2112. The water-absorbing component 213 contacts the heat conductor 211 to continuously generate steam. Since at least a portion of the water-absorbing component 213 is in contact with the heat conductor 211, the amount of steam generated can be controlled by adjusting the contact area between the water-absorbing component 213 and the heat conductor 211. For example, if the contact area between the water-absorbing component 213 and the heat conductor 211 is larger, more steam will be generated by the steam generating structure 210; if the contact area between the water-absorbing component 213 and the heat conductor 211 is smaller, less steam will be generated by the steam generating structure 210. The contact area between the water-absorbing component 213 and the heat conductor 211 can be adjusted according to the steam volume requirements of different users to meet their steam volume needs.
[0028] Furthermore, the heat conductor 211 can be a one-piece molded aluminum structure, with an internally formed evaporation chamber 2112 and an installation space 2111. Aluminum has good thermal conductivity. The heating element 212 is installed in the installation space 2111 of the heat conductor 211. The installation space 2111 can be located inside the heat conductor 211 or on its surface. The location of the installation space 2111 is not limited, as long as it allows the heating element 212 to be installed on the surface of the heat conductor 211. The heating element 212 comes into contact with the heat conductor 211, and the heat generated by the heating element 212 is transferred to the heat conductor 211. The heat conductor 211 then conducts the heat to the absorbent 213. When the installation space 2111 is located inside the heat conductor 211, the heating element 212 is installed inside the installation space 2111. The heating element 212 can be in contact with the heat conductor 211, and the heat generated by the heating element 212 can be directly transferred to the heat conductor 211. Alternatively, the heating element 212 can not be in contact with the heat conductor 211, and the heat generated by the heating element 212 can be transferred to the heat conductor 211 through thermal radiation. In this embodiment, the installation space 2111 is located inside the heat conductor 211, and the heating element 212 is in contact with the heat conductor 211. Furthermore, the installation space 2111 and the evaporation chamber 2112 can be arranged side by side or vertically. When the heat conductor 211 is integrally formed, the installation space 2111 and the evaporation chamber 2112 are simultaneously formed inside or on the surface of the heat conductor 211. The positions of the two within the heat conductor 211 can be arranged according to the actual situation. When the outer side of the heating element 212 is at least partially in contact with the interior of the installation space 2111, the heat generated by the heating element 212 can be quickly conducted to the heat conductor 211 through the contact between the heating element 212 and the heat conductor 211, and then conducted to the water absorber 213 through the heat conductor 211, so that the water absorber 213 can quickly generate steam and reduce the steam generation time.
[0029] As one embodiment, the evaporation chamber 2112 has a sealing cover 2112a along its length. The sealing cover 2112a and the heat conductor 211 can be fixedly connected by bolts. Fixing the sealing cover 2112a and the heat conductor 211 with bolts ensures a secure connection between them, preventing loosening. Furthermore, when assembling the steam generating structure 210, it is only necessary to first install the water suction component 213 and the water supply component into the evaporation chamber 2112, and then fix the sealing cover 2112a to the heating element 211 with bolts, greatly facilitating the assembly and disassembly of the steam generating structure 210. Alternatively, the connection between the sealing cover 2112a and the heat conductor 211 can also be achieved through a snap-fit mechanism.
[0030] In the aforementioned hair styling device, the water supply structure 220 includes a water tank 221, a water pump 222, and a water supply component 223. The water tank 221 is used for storing water and is connected to the water supply component 223. The water pump 222 is installed on the water supply component 223 and is used to pump water from the water tank 221 to the water supply component 223. The water supply component 223 is used to supply water to the suction component 213. The water pump 222 is connected to the water supply component 223. The control element 310 is electrically connected; the temperature sensing element 320 is disposed on the heat conductor 211, and the temperature sensing element 320 is used to detect the temperature of the heat conductor 211; wherein, when the temperature detected by the temperature sensing element 320 is higher than X, 140℃≤X≤150℃, and / or the temperature detected by the temperature sensing element 320 is lower than Y, 100℃≤Y≤120℃, the control element 310 controls the water pump 222 to pump water to the water supply component 223.
[0031] In this embodiment, when steam needs to be generated, the water pump 222 is started. The water pump 222 pumps the water in the water tank 221 to the water supply component 223. The water supply component 223 supplies water to the water suction component 213. The water suction component 213 can absorb the water supplied by the water supply component 223 and store it inside. The heating element 212 generates heat after being powered on. The heat is quickly conducted to the periphery of the evaporation chamber 2112 through the heat conductor 211. The water suction component 213 generates steam when heated. Specifically, when the temperature sensing element 320 detects that the temperature of the heat conductor 211 is higher than X (140℃≤X≤150℃), and / or the temperature detected by the temperature sensing element 320 is lower than Y (100℃≤Y≤120℃), the control element 310 controls the water pump 222 to start. The water pump 222 pumps water from the water tank 221 to the water supply component 223, which supplies water to the suction component 213 so that the steam generating structure 210 can generate steam smoothly and avoid damage to the suction component 213 due to lack of water.
[0032] In the hair styling device described above, the heat conductor 211 is provided with at least one steam outlet 2113, and the steam outlet 2113 is connected to the evaporation chamber 2112.
[0033] In this embodiment, the heat conductor 211 is provided with at least one steam outlet 2113. Steam generated by the heating of the contact portion between the water absorber 213 and the heat conductor 211 can be ejected through the steam outlet 2113. The steam outlet 2113 is connected to the evaporation chamber 2112. As one embodiment, the steam outlet 2113 can be connected to the evaporation chamber 2112 through a steam outlet channel; of course, if... Figure 1As shown, the steam outlet 2113 is located on the contact surface between the heat conductor 211 and the water absorber 213. That is, the steam outlet 2113 is connected to the water absorber 213. When it is necessary to adjust the contact area between the water absorber 213 and the heat conductor 211, the contact area between the water absorber 213 and the heat conductor 211 can be adjusted by adjusting the size or number of the steam outlet 2113, thereby controlling the amount of steam in the steam generating structure 210. As another embodiment, the steam outlet 2113 can also be located on the non-contact surface between the heat conductor 211 and the water absorber 213, as long as the steam outlet 2113 is connected to the evaporation chamber 2112.
[0034] In the hair styling device described above, the heating element 212 is electrically connected to the control element 310; wherein, when the temperature detected by the temperature sensing element 320 is higher than Z, 150℃≤Z≤160℃, the control element 310 controls the heating element 212 to stop working.
[0035] In this embodiment, the temperature of the heat conductor 211 is detected by the temperature sensing element 320. When the detected temperature is higher than Z (150℃≤Z≤160℃), the control element 310 controls the heating element 212 to stop working, preventing the heat conductor 211 from overheating and damaging the steam generating structure 210, thus ensuring the normal operation of the steam generating structure 210 and improving its service life. As one embodiment, the temperature sensing element 320 is an NTC temperature sensor.
[0036] In the aforementioned hair styling device, the water-absorbing component 213 is provided with a water-absorbing channel 2131; the water-supply component 223 includes a water-supply pipe 2231 and a water-spraying pipe 2232, the water-spraying pipe 2232 passes through the end of the heat conductor 211 and extends into the evaporation chamber 2112, the water-supply pipe 2231 is connected to the water-spraying pipe 2232, and the water-spraying pipe 2232 passes through the water-absorbing channel 2131; the water-spraying pipe 2232 is provided with a plurality of water-spraying holes 2232a, and the plurality of water-spraying holes 2232a are arranged along the length direction of the water-spraying pipe 2232.
[0037] In this embodiment, the water absorption channel 2131 can be disposed inside the water absorption component 213. Of course, the water absorption channel 2131 can also be disposed on the surface of the water absorption component 213. The water supply component 223 is disposed in the water absorption channel 2131. The water supply component 223 can penetrate the water absorption channel 2131 or not, depending on the actual situation. In this embodiment, the water absorption channel 2131 is disposed inside the water absorption component 213, and the water supply component 223 can penetrate the water absorption channel. When the water supply component 223 supplies water to the water absorption component 213, the water is sprayed into the water absorption channel 2131. When the water absorption channel 2131 in the water absorption component 213 penetrates the length direction of the water absorption component 213, the water supply component 223 can supply water to a larger area of the water absorption component 213. In this way, the water absorption component 213 can quickly absorb water and store it inside the water absorption component 213. The water supply component 223 includes a water supply pipe 2231 and a spray pipe 2232 that are interconnected. The water supply pipe 2231 can be connected to a water tank 221 or other water supply equipment. The water tank 221 or other water supply equipment supplies water to the water supply pipe 2231. Since the spray pipe 2232 passes through the water intake channel 2131, the water supply pipe 2231 then sprays water onto the water intake component 213, so that the water intake component 213 can absorb and store water. The spray hole 2232a is arranged along the length of the spray pipe 2232, and the spray pipe 2232 passes through the water intake channel 2131, which in turn passes through the length of the water intake component 213. In this way, the spray pipe 2232 can quickly spray water into the water intake channel 2131 through the spray hole 2232a, so that the water intake component 213 can quickly absorb and store water.
[0038] In the steam generating structure 210 described above, the water-absorbing element 213 is one or more of water-absorbing ceramics, high-temperature resistant water-absorbing sponges, and high-temperature resistant quartz wool.
[0039] In this embodiment, the water-absorbing component 213 can be water-absorbing ceramic, high-temperature resistant water-absorbing sponge, or high-temperature resistant quartz wool, etc., as long as it can withstand high temperatures and absorb water. It can be a single material or a combination of multiple materials, and is not limited here. The water-absorbing ceramic, high-temperature resistant water-absorbing sponge, or high-temperature resistant quartz wool contains a large number of micron-sized (0.1-100μm) or submicron-sized pores inside or on its surface, which is beneficial to the internal water conduction and steam generation.
[0040] In one embodiment, the steam generator 200 further includes a support frame 230 disposed within the evaporation chamber 2112. The support frame 230 has a leg portion 231 and a support portion 232. The leg portion 231 abuts against the inner wall of the evaporation chamber 2112, and the support portion 232 abuts against the water-absorbing member 213, so that at least a portion of the outer surface of the water-absorbing member 213 contacts the heat conductor 211. The support frame 230 has a leg portion 231 and a support portion 232. The leg portion 231 abuts against the inner wall of the evaporation chamber 2112, and the support portion 232 abuts against the water-absorbing member 213, so that the support frame 230 presses firmly against the water-absorbing member 213, ensuring that at least a portion of the outer surface of the water-absorbing member 213 contacts the heat conductor 211. This ensures that the contact portion between the water-absorbing member 213 and the heat conductor 211 can receive heat, thereby enabling the steam generator 200 to smoothly generate steam. Of course, the heat conductor 211 has a support protrusion protruding inside the evaporation chamber 2112. The water absorption component 213 is supported by the support protrusion. The support protrusion can be formed by stamping when the heat conductor 211 is integrally formed. The support protrusion supports the water absorption component 213 without the need for an additional support frame 230, which reduces the use of accessories.
[0041] In the aforementioned hair styling device, the main clamp 110 is provided with a first clamping block 111, and the auxiliary clamp 120 is provided with a second clamping block 121 opposite to the first clamping block 111; the steam release port 130 is located on the front side of the first clamping block 111 and / or the second clamping block 121, and the horizontal height of the plane where the steam release port 130 is located is lower than the horizontal height of the plane where the first clamping block 111 and / or the second clamping block 121 is located.
[0042] In this embodiment, the first clamping block 111 on the main clamping member 110 and the second clamping block 121 on the auxiliary clamping member 120 are arranged opposite to each other. When the main clamping member 110 and the auxiliary clamping member 120 are clamped together, the first clamping block 111 and the second clamping block 121 clamp the hair, thereby straightening or curling the hair. Since the steam release port 130 is located on the front side of the first clamping block 111 and / or the second clamping block 121, that is, the steam release port 130 is offset from the first clamping block 111 or the second clamping block 121, and the horizontal height of the plane where the steam release port 130 is located is lower than that of the first clamping block 111 and / or the second clamping block 121. The horizontal height of the plane where the first clamp 111 and / or the second clamp 121 are located forms a step between the first clamp 111 and / or the second clamp 121 and the steam release port 130. When the first clamp 111 and the second clamp 121 clamp the hair, a gap is formed in front of the steam release port 130. The steam generated by the steam generator 200 can be released into the gap through the steam release port 130. The steam can fully contact the hair in the gap, thereby avoiding the hair from dehydration and dryness caused by close-range and small-area heating, and ensuring that the hair is moist and smooth.
[0043] As one embodiment, the control component 300 further includes a third temperature sensing element disposed within the heat conductor 150. Both the third temperature sensing element and the heater 140 are electrically connected to the control component 310. When the temperature detected by the third temperature sensing element is higher than 200°C, the control component 310 controls the heater 140 to stop working, so as to avoid excessive temperature when the first clamp 111 and the second clamp 121 clamp the hair, causing the hair to dry out. The third temperature sensing element can be an NTC temperature sensor.
[0044] In the aforementioned hair styling device, the main clamp 110 is provided with a first mounting port 112, and the first clamping block 111 is installed in the first mounting port 112; the auxiliary clamp 120 is provided with a second mounting port 122, and the second clamping block 121 is installed in the second mounting port 122; both the first clamping block 111 and the second clamping block 121 have a heating surface 151, and when the main clamp 110 and the auxiliary clamp 120 are clamped together, the heating surfaces 151 of the first clamping block 111 and the second clamping block 121 jointly clamp the hair.
[0045] In this embodiment, the first clamping block 111 is installed in the first mounting port 112, and the second clamping block 121 is installed in the second mounting port 122. The heating surfaces 151 of the first clamping block 111 and the second clamping block 121 together clamp the hair. After the hair is subjected to the heat released by the heating surfaces 151 of the first clamping block 111 and the second clamping block 121, the hair can be straightened or curled.
[0046] In the hair styling device described above, the first clamp 111 and the second clamp 121 have the same structure. Both the first clamp 111 and the second clamp 121 include a heater 140, a heat conductor 150, and a heat insulation sleeve 160. The heater 140 is installed inside the heat conductor 150. The heat insulation sleeve 160 has an opening 161. The heat conductor 150 is disposed inside the heat insulation sleeve 160. The heat conductor 150 has a heating surface 151, which passes through the opening 161 and extends to the outside of the heat insulation sleeve 160.
[0047] In this embodiment, the heat conductor 150 can be an integrally formed aluminum or ceramic structure, and the heater 140 can be an MCH heating element 212, a PTC heating element 212, or a heating wire. The heat conductor 150 has an internal cavity, and the heater 140 can be installed inside the cavity. The aluminum or ceramic structure has good thermal conductivity, and the heat generated by the heater 140 can be quickly conducted to the heat conductor 150 when it is working. The heat conductor 150 is disposed inside the heat insulation sleeve 160. The heat insulation sleeve 160 can be made of glass fiber, asbestos, rock wool, silicate, etc., and has good thermal insulation performance. It has a heating surface 151 that passes through the opening 161 of the heat insulation sleeve 160 and extends to the outside of the heat insulation sleeve 160. That is, after the heat generated by the heater 140 is conducted to the heat conductor 150, due to the heat insulation effect of the heat insulation sleeve 160, the part of the heat conductor 150 surrounded by the heat insulation sleeve 160 cannot conduct the heat out, effectively preventing the heat conductor 150 from being damaged by the high temperature. The heating surface 151 can conduct the heat out. The heating surface 151 of the first clamp 111 and the second clamp 121 causes the hair to heat up when clamping the hair, so that the hair can be straightened or curled.
[0048] The above embodiments are only used to illustrate the technical solutions of the present invention and are not intended to limit it. Although the present invention has been described in detail with reference to preferred embodiments, those skilled in the art should understand that modifications or equivalent substitutions can be made to the technical solutions of the present invention without departing from the spirit and scope of the present invention, and all such modifications and substitutions should be covered within the scope of the claims of the present invention.
Claims
1. A hair styling tool, characterized in that, include: The body (100) includes a main clamp (110) and a secondary clamp (120) that can clamp each other. A steam generator (200) is disposed within the main clamp (110) and / or the auxiliary clamp (120). The steam generator (200) includes a steam generating structure (210) and a water supply structure (220). The water supply structure (220) is used to supply water to the steam generating structure (210). The steam generating structure (210) can release steam in the direction in which the main clamp (110) and the auxiliary clamp (120) are clamped together. A control component (300) includes a control element (310) and a temperature measuring element (320) disposed within the main body (100). The temperature measuring element (320) is electrically connected to the control element (310). The temperature measuring element (320) is used to detect the temperature of the steam generating structure (210). When the temperature detected by the temperature measuring element (320) is higher than X, and / or the temperature detected by the temperature measuring element (320) is lower than Y, the control element (310) controls the water supply structure (220) to supply water to the steam generating structure (210). Wherein, 140℃≤X≤150℃, 100℃≤Y≤120℃.
2. The hair styling tool according to claim 1, characterized in that, The steam generating structure (210) includes a heat conductor (211), a heating element (212), and a water absorption element (213). The heat conductor (211) is provided with an installation space (2111) and an evaporation chamber (2112); the heating element (212) is installed in the installation space (2111); the water absorber (213) is installed in the evaporation chamber (2112), and the water supply structure (220) is used to supply water to the water absorber (213). The water absorber (213) is at least partially in contact with the heat conductor (211) so that the water in the water absorber (213) is heated and evaporated and sprayed out from the steam outlet (2113) of the heat conductor (211).
3. The hair styling device according to claim 2, characterized in that, The water supply structure (220) includes a water tank (221), a water pump (222), and a water supply component (223); The water tank (221) is used for water storage. The water tank (221) is connected to the water supply component (223). The water pump (222) is installed on the water supply component (223). The water pump (222) is used to pump the water from the water tank (221) to the water supply component (223). The water supply component (223) is used to supply water to the suction component (213). The water pump (222) is electrically connected to the control element (310). The measuring... A temperature sensing element (320) is disposed on the heat conductor (211), and the temperature sensing element (320) is used to detect the temperature of the heat conductor (211); wherein, when the temperature detected by the temperature sensing element (320) is higher than X, 140℃≤X≤150℃, and / or the temperature detected by the temperature sensing element (320) is lower than Y, 100℃≤Y≤120℃, the control element (310) controls the water pump (222) to pump water to the water supply component (223).
4. The hair styling tool according to claim 2, characterized in that, The heat conductor (211) is provided with at least one steam outlet (2113), and the steam outlet (2113) is connected to the evaporation chamber (2112).
5. The hair styling device according to claim 2, characterized in that, The heating element (212) is electrically connected to the control element (310); When the temperature detected by the temperature measuring element (320) is higher than Z, 150℃≤Z≤170℃, the control element (310) controls the heating element (212) to stop working.
6. The hair styling device according to claim 3, characterized in that, The water-absorbing component (213) is provided with a water-absorbing channel (2131); the water-supply component (223) includes a water supply pipe (2231) and a water spray pipe (2232). The water spray pipe (2232) passes through the end of the heat conductor (211) and extends into the evaporation chamber (2112). The water supply pipe (2231) is connected to the water spray pipe (2232). The water spray pipe (2232) passes through the water-absorbing channel (2131). The water spray pipe (2232) is provided with a plurality of water spray holes (2232a), and the plurality of water spray holes (2232a) are arranged along the length direction of the water spray pipe (2232).
7. The hair styling tool according to claim 2, characterized in that, The absorbent component (213) is one or more of the following: absorbent ceramic, high-temperature absorbent sponge, and high-temperature resistant quartz wool.
8. The hair styling device according to any one of claims 1-7, characterized in that, Steam release ports (130) are provided on the opposite surfaces of the main clamp (110) and / or the auxiliary clamp (120), and the steam generator (200) has a steam outlet (2113) which is disposed opposite to the steam release port (130); The main clamp (110) is provided with a first clamping block (111), and the auxiliary clamp (120) is provided with a second clamping block (121) opposite to the first clamping block (111). The steam release port (130) is located on the front side of the first clamping block (111) and / or the second clamping block (121), and the horizontal height of the plane where the steam release port (130) is located is lower than the horizontal height of the plane where the first clamping block (111) and / or the second clamping block (121) is located.
9. The hair styling device according to claim 8, characterized in that, The main clamp (110) is provided with a first mounting port (112), and the first clamping block (111) is installed in the first mounting port (112); The secondary clamp (120) is provided with a second mounting port (122), and the second clamp (121) is installed in the second mounting port (122); Both the first clamping block (111) and the second clamping block (121) have a heating surface (151). When the main clamping member (110) and the auxiliary clamping member (120) are clamped together, the heating surfaces (151) of the first clamping block (111) and the second clamping block (121) clamp the hair together.
10. The hair styling device according to claim 8, characterized in that, The first clamping block (111) and the second clamping block (121) have the same structure. Both the first clamping block (111) and the second clamping block (121) include a heater (140), a heat conductor (150) and a heat insulation sleeve (160). The heater (140) is installed inside the heat conductor (150), the heat insulation sleeve (160) has an opening (161), the heat conductor (150) is disposed inside the heat insulation sleeve (160), the heat conductor (150) has a heating surface (151), the heating surface (151) passes through the opening (161) and extends to the outside of the heat insulation sleeve (160).