Hair curler
Patent Information
- Application Number
- CN202522032772.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-19
- Publication Date
- 2026-09-08
- Estimated Expiration
- 2035-09-19
AI Technical Summary
[0004]本实用新型的主要目的在于提供一种卷发器,以解决现有技术中的卷发器出蒸汽后,头发上会残留水分,使头发不能有效定性,导致造型效果较差的问题
[0016] According to the technical solution of this utility model, the hair curler includes a handheld body and a clamping plate assembly. The handheld body is provided with a water tank and a blower component. The clamping plate assembly is disposed on the handheld body and is closable. The clamping plate assembly is provided with a steam generating part and an air blowing part. The water tank is connected to the steam generating part to supply water to the steam generating part so that the steam generating part generates steam. The blower component is connected to the air blowing part so that the airflow is blown out through the air blowing part.
Smart Images

Figure CN224722827U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of hair styling equipment technology, and more specifically, to a hair curler. Background Technology
[0002] Currently, hair styling products are mainly designed for types such as heated straighteners, steam straighteners, and cool-air curling irons. Heated straighteners achieve hair styling by heating the hair to a high temperature; however, this process often carries a high risk of heat damage, adversely affecting hair health. Furthermore, the outer surface temperature of heated straighteners is relatively high, easily leading to burns if used improperly. Therefore, steam straighteners attempt to reduce the temperature required for hair styling by spraying steam, thereby minimizing heat damage. The role of steam is to use its heat to temporarily open the hydrogen bonds in the hair, allowing styling to be performed at a lower temperature.
[0003] However, existing steam hair straighteners leave moisture on the hair after steaming, preventing the hair from drying in time and thus failing to effectively set the style, resulting in poor styling results. Utility Model Content
[0004] The main purpose of this invention is to provide a hair curler to solve the problem that in the prior art, after the hair curler produces steam, moisture remains on the hair, making it impossible to effectively shape the hair and resulting in poor styling results.
[0005] To achieve the above objectives, according to one aspect of the present invention, a hair curler is provided, comprising: a handheld body, on which a water tank and a fan are disposed; a clamping plate assembly disposed on the handheld body, the clamping plate assembly being closable, the clamping plate assembly having a steam generating section and an airflow blowing section disposed therein, the water tank being connected to the steam generating section to supply water to the steam generating section to generate steam; and the fan being connected to the airflow blowing section to allow airflow to be blown out through the airflow blowing section.
[0006] Furthermore, the clamping plate assembly includes: a clamping plate body, which is closable and includes a clamping end face and a winding end face, at least a portion of the steam generating part is disposed on the clamping end face, and at least a portion of the airflow blowing part is disposed on the winding end face.
[0007] Furthermore, the steam generating section includes a steam generating chamber and a steam outlet, the steam outlet being connected to the steam generating chamber and disposed on the clamping end face; and / or, the airflow blowing section includes a guiding air chamber, the guiding air chamber and the steam generating chamber being arranged side by side along the extension direction of the clamp body, the guiding air chamber being arranged opposite to the air-guiding component, and the airflow outlet of the guiding air chamber being disposed on the winding end face.
[0008] Furthermore, the clamping plate body includes a first body and a second body, the second body being rotatably disposed relative to the first body to allow the clamping plate body to open and close, the clamping end face including a first clamping surface disposed on the first body; the steam generating part includes: a steam generating chamber disposed within the first body, the steam generating chamber being connected to a water storage tank; a steam outflow channel being connected to the steam generating chamber, the steam outlet of the steam outflow channel being disposed on the first clamping surface.
[0009] Furthermore, the steam generating unit also includes: a partition plate disposed inside the steam generating chamber to divide the steam generating chamber into a first flow channel and a second flow channel. The first flow channel is connected to the water storage tank, and the second flow channel is connected to the steam outflow channel. The partition plate is provided with a connecting hole, the two ends of which are connected to the first flow channel and the second flow channel respectively. The steam in the first flow channel flows into the second flow channel through the connecting hole and then flows out through the steam outflow channel.
[0010] Furthermore, the partition plate includes a first partition plate and a second partition plate, which are spaced apart, and a second flow channel is located between the first partition plate and the second partition plate; the first partition plate and the second partition plate respectively form a second flow channel with the inner wall surface of the steam generating chamber, and the first partition plate and the second partition plate are respectively provided with connecting holes.
[0011] Furthermore, the first main body also includes: a first clamping plate covering the steam generating chamber, a first clamping surface disposed on the first clamping plate, a steam outlet channel disposed within the first clamping plate, and multiple steam outlet channels being spaced apart along the extension direction of the first clamping plate; a heating protrusion is disposed on the first clamping surface, the heating protrusion extending along the length direction of the first clamping plate, and at least two heating protrusions being disposed on both sides of the multiple steam outlet channels respectively.
[0012] Furthermore, the curling iron also includes a water supply pipe, one end of which is connected to a water storage tank and the other end of which is connected to a first flow channel; and / or, the steam generating unit also includes: a water-absorbing pad disposed within the first flow channel, the water-absorbing pad extending along the length of the first flow channel, the water-absorbing pad being used to absorb water flow within the first flow channel and to allow water flow to permeate along the extension direction of the water-absorbing pad; and an electric heating component disposed within the first flow channel for heating the water flow within the first flow channel.
[0013] Furthermore, the winding end face also includes a first winding end face, which is disposed on the first main body. The airflow blowing part includes: a first air cavity, which is disposed on the side of the steam generating cavity, and a heat insulation layer is disposed between the first air cavity and the steam generating cavity. The first air cavity is disposed opposite to and connected to the air duct component; and a first air outlet channel, which is disposed on the first main body and connected to the first air cavity. The air outlet of the first air outlet channel is disposed on the first winding end face.
[0014] Furthermore, the clamp body includes a first body and a second body, the second body being rotatably mounted on the handheld body relative to the first body about a predetermined axis; the winding end face includes a second winding end face, the second winding end face being mounted on the second body; the airflow outlet includes: a second air cavity, disposed within the second body, the second air cavity being disposed opposite to and communicating with the air-guiding component; a second air outlet channel, disposed on the second body and communicating with the second air cavity, the air outlet of the second air outlet channel being disposed on the second winding end face.
[0015] Furthermore, the curling iron also includes a drive motor, and the handheld body includes: a first handheld body and a second handheld body. The drive motor is disposed in the second handheld body and is drivenly connected to the first handheld body so that the first handheld body is rotatably disposed relative to the second handheld body. The clamping plate assembly is connected to the first handheld body and is driven to rotate by the first handheld body. The air-guiding component is disposed in the first handheld body.
[0016] According to the technical solution of this utility model, the hair curler includes a handheld body and a clamping plate assembly. The handheld body is provided with a water tank and a blower component. The clamping plate assembly is disposed on the handheld body and is closable. The clamping plate assembly is provided with a steam generating part and an air blowing part. The water tank is connected to the steam generating part to supply water to the steam generating part so that the steam generating part generates steam. The blower component is connected to the air blowing part so that the airflow is blown out through the air blowing part.
[0017] In this application, the airflow blowing section works in conjunction with the steam generating section. The steam is used to quickly change the shape of the hair, while the cold air is used to quickly cool the hair, helping the hair to set quickly and avoiding the problem of poor curling effect caused by the hair not being completely dried after using a traditional steam straightener.
[0018] Specifically, by incorporating a steam generator within the hair straightener assembly, the steam acts directly on the hair, making it easier to break the hydrogen bonds within the hair. This allows styling to be completed at a lower temperature than traditional heated hair straighteners. This not only reduces damage to the hair caused by high temperatures but also improves the safety of styling, lowering the risk of burns. Simultaneously, the airflow outlet blows air onto the hair, drying any remaining moisture and allowing for better styling. Attached Figure Description
[0019] The accompanying drawings, which form part of this application, are used to provide a further understanding of the present invention. The illustrative embodiments of the present invention and their descriptions are used to explain the present invention and do not constitute an undue limitation of the present invention. In the drawings:
[0020] Figure 1 A structural schematic diagram of the hair curler according to the present invention in its open state is shown from a first perspective.
[0021] Figure 2 A second-view structural schematic diagram of the hair curler according to the present invention in its open state is shown;
[0022] Figure 3 A schematic diagram of the closed state of the hair curler according to the present invention is shown;
[0023] Figure 4 A schematic diagram of the steam generating section in the curling iron according to the present invention is shown;
[0024] Figure 5 A schematic diagram of the steam generating chamber in the curling iron according to the present invention is shown;
[0025] Figure 6 A cross-sectional view of the steam generating section in a curling iron according to the present invention is shown;
[0026] Figure 7 A cross-sectional view of the clamp body in the hair curler according to the present invention is shown.
[0027] The above figures include the following reference numerals:
[0028] 100. Handheld main body; 101. First handheld main body; 102. Second handheld main body; 110. Water storage tank; 120. Air intake component;
[0029] 200. Clamping plate assembly; 210. Steam generating section; 211. Steam generating chamber; 212. Steam outlet; 213. Steam outflow channel; 214. Partition plate; 2140. First partition plate; 2141. Second partition plate; 215. First flow channel; 216. Second flow channel; 217. Connecting hole; 218. Water-absorbing pad; 219. Insulation layer;
[0030] 220. Airflow outlet; 221. Drainage chamber; 222. First air chamber; 223. First air outlet channel; 224. Second air chamber; 225. Second air outlet channel;
[0031] 230. Main body of the clamping plate; 231. First main body; 2310. First clamping plate; 232. Second main body; 2320. Second clamping plate;
[0032] 240. Clamping end face; 241. First clamping surface; 250. Winding end face; 251. First winding end face; 252. Second winding end face; 260. Heating protrusion;
[0033] 300. Water supply pipe. Detailed Implementation
[0034] It should be noted that, unless otherwise specified, the embodiments and features described in this application can be combined with each other. The present invention will now be described in detail with reference to the accompanying drawings and embodiments.
[0035] Please refer to Figures 1 to 7 This application provides a hair curler, including: a handheld body 100, on which a water tank 110 and a fan 120 are disposed; a clamp assembly 200, disposed on the handheld body 100, the clamp assembly 200 being closable, the clamp assembly 200 having a steam generating section 210 and an airflow blowing section 220 disposed therein, the water tank 110 being connected to the steam generating section 210 to supply water to the steam generating section 210 to generate steam; and the fan 120 being connected to the airflow blowing section 220 to allow airflow to be blown out through the airflow blowing section 220.
[0036] The curling iron provided in this application includes a handheld body 100 and a clamp assembly 200. The handheld body 100 is provided with a water tank 110 and a blower component 120. The clamp assembly 200 is disposed on the handheld body 100 and is closable. The clamp assembly 200 is provided with a steam generating part 210 and an air blowing part 220. The water tank 110 is connected to the steam generating part 210 to supply water to the steam generating part 210 so that the steam generating part 210 generates steam. The blower component 120 is connected to the air blowing part 220 so that airflow is blown out through the air blowing part 220.
[0037] In this application, the airflow outlet 220 works in conjunction with the steam generator 210. The steam is used to quickly change the shape of the hair, while the cold air is used to quickly cool the hair, helping the hair to be styled quickly and avoiding the problem of poor curling effect caused by the hair not being completely dried after using a traditional steam straightener.
[0038] Specifically, by incorporating a steam generator 210 within the hair straightener assembly 200, steam acts directly on the hair, making it easier to open the hydrogen bonds within the hair. This allows styling to be completed at a lower temperature than with traditional electric straighteners. This not only reduces damage to the hair caused by high temperatures but also improves the safety of styling, lowering the risk of burns. Simultaneously, the airflow outlet 220 blows air onto the hair, drying any remaining water vapor and allowing for better styling.
[0039] In a specific implementation, the clamp assembly 200 includes: a clamp body 230, which is closable and includes a clamping end face 240 and a winding end face 250. At least a portion of the steam generating part 210 is disposed on the clamping end face 240, and at least a portion of the airflow blowing part 220 is disposed on the winding end face 250.
[0040] By providing a steam generator 210 on the clamping end face 240, superheated steam can be added instantly during the hair styling process. The humidity of the steam lowers the styling temperature required for hair, thereby reducing damage caused by high temperatures. The addition of steam also replenishes the moisture needed by the hair, further reducing the impact of dry heat on hair quality.
[0041] The airflow outlet 220 is positioned on the winding end face 250, effectively drying the moisture left on the hair by steam and promoting quick styling. The airflow temperature is low, preventing additional heat damage to the hair while ensuring the hair maintains its shape after curling.
[0042] The combination of steam and cool air not only lowers the temperature for hair styling but also makes hair easier to style and longer-lasting after curling or straightening through the moisturizing effect of steam and the rapid drying effect of cool air. This precise control of temperature and humidity can meet the needs of different hair types and styling requirements.
[0043] The 230mm openable design of the clamp body, along with the separate release of steam and cool air from different ends, significantly reduces the risk of burns during operation. The directional release of steam and cool air also prevents the disorderly diffusion of heat, making the entire shaping process safer and more controllable.
[0044] The steam generating section 210 includes a steam generating chamber 211 and a steam outlet 212, which communicates with the steam generating chamber 211 and is disposed on the clamping end face 240; and / or, the airflow blowing section 220 includes a guiding air chamber 221, which is arranged side by side with the steam generating chamber 211 along the extension direction of the clamping body 230, and is arranged opposite to the air-guiding component 120, with the airflow outlet of the guiding air chamber 221 disposed on the winding end face 250.
[0045] The steam outlet 212 is directly located on the clamping end face 240, which means that steam can be delivered very precisely to the hair section being clamped by the clamp assembly 200. This not only ensures maximum steam utilization but also guarantees even steam coverage of the hair, thereby improving the uniformity and consistency of the styling effect.
[0046] The airflow outlet 220 has its airflow chamber 221 and steam generation chamber 211 arranged side by side, with the airflow outlet located on the winding end face 250. This design ensures that cool air can efficiently blow over the steamed hair. The cool air can quickly remove excess moisture and heat from the hair, helping to fix the style and reducing the time spent waiting for the hair to dry naturally, thus improving the speed and efficiency of styling.
[0047] The steam generating chamber 211 and the air duct 221 are arranged side by side along the extension direction of the clamp body 230, making full use of the limited space and effectively integrating the two functions of steam and cold air. This layout design avoids the device being too large, making the curling iron portable and lightweight, easy for users to hold and operate. The steam generating chamber and the air duct are structurally independent, reducing mutual influence and making the entire device more stable during use.
[0048] In the embodiments provided in this application, the clamping plate body 230 includes a first body 231 and a second body 232. The second body 232 is rotatably disposed relative to the first body 231 so that the clamping plate body 230 can be opened and closed. The clamping end face 240 includes a first clamping surface 241, which is disposed on the first body 231. The steam generating part 210 includes a steam generating chamber 211 disposed in the first body 231 and communicating with the water storage tank 110. The steam outlet channel 213 communicates with the steam generating chamber 211, and the steam outlet 212 of the steam outlet channel 213 is disposed on the first clamping surface 241.
[0049] The second body 232 is rotatably set relative to the first body 231, allowing users to adjust the opening and closing angle of the clamp as needed. This not only adapts to different hairstyles and hair volumes, but also makes the styling of curly or straight hair more flexible and diverse, meeting personalized needs.
[0050] The steam generating chamber 211 is connected to the water storage tank 110 and can efficiently generate steam inside the first main body 231. The steam outlet 212 of the steam outlet channel 213 is directly set on the first clamping surface 241, which means that the steam can directly act on the clamped hair area, achieving precise steam distribution, improving styling efficiency, and reducing unnecessary steam loss.
[0051] By releasing steam at a specific point on the straightener, namely the first clamping surface 241, the local temperature during styling can be reduced in a targeted manner, protecting the hair from excessive heat damage. At the same time, the instant evaporation properties of the steam help maintain the hair's natural moisture balance, preventing the hair from becoming dry and brittle due to excessive temperature.
[0052] In the specific implementation process, such as Figures 4 to 6As shown, the steam generating unit 210 further includes: a partition plate 214 disposed in the steam generating chamber 211 to divide the steam generating chamber 211 into a first flow channel 215 and a second flow channel 216. The first flow channel 215 is connected to the water storage tank 110, and the second flow channel 216 is connected to the steam outflow channel 213. The partition plate 214 is provided with a connecting hole 217, and the two ends of the connecting hole 217 are connected to the first flow channel 215 and the second flow channel 216 respectively. The steam in the first flow channel 215 flows into the second flow channel 216 through the connecting hole 217 and then flows out through the steam outflow channel 213.
[0053] The first flow channel 215 serves as the initial steam generation zone. After the water supplied by the water tank 110 vaporizes, the steam undergoes preliminary heating here. Subsequently, the steam enters the second flow channel 216 through the connecting hole 217, where it is reheated to form superheated steam with higher temperature and lower humidity. This process improves the dryness and penetrability of the steam, allowing it to more efficiently open hydrogen bonds upon contact with the hair, thereby reducing the temperature required for hair styling and minimizing heat loss.
[0054] In addition, by setting up a first flow channel 215 and a second flow channel 216, which are separated by a partition plate 214, and with the first flow channel 215 connected to the water storage tank 110, it is possible to prevent water in the first flow channel 215 from flowing directly into the second flow channel 216. This would prevent water residue from forming in the second flow channel 216 after prolonged use, and also prevent the residual water from flowing out directly through the steam outlet channel 213, thus avoiding water dripping.
[0055] The above configuration allows the water vapor formed after heating in the first flow channel 215 to overflow into the second flow channel 216 through the connecting hole 217, where it is reheated. This secondary heating process makes the steam drier and at a higher temperature, thereby improving the steam's penetration into the hair and styling efficiency.
[0056] Specifically, the partition plate 214 includes a first partition plate 2140 and a second partition plate 2141, which are spaced apart. A second flow channel 216 is located between the first partition plate 2140 and the second partition plate 2141. The first partition plate 2140 and the second partition plate 2141 form a second flow channel 216 with the inner wall surface of the steam generating chamber 211, respectively. A connecting hole 217 is provided on the first partition plate 2140 and the second partition plate 2141.
[0057] The spacing between the first and second partition plates, and the location of the second flow channel 216 between them, effectively creates a dual-heating environment. After steam is generated in the first flow channel 215, it must pass through the connecting holes 217 on the first partition plate 2140 and the second partition plate 2141 before entering the second flow channel 216. This process not only extends the steam transport path but also achieves secondary heating, ensuring that the steam reaches a superheated state before finally flowing out, thereby improving the dryness and penetration of the steam, reducing heat damage during hair styling, and improving styling efficiency.
[0058] As steam flows through the first partition plate 2140 and the second partition plate 2141, its transmission path is optimized, reducing turbulence and energy loss, and improving the stability and efficiency of steam transmission. Simultaneously, the connection hole 217 allows for precise control of steam flow and pressure, enabling steam to concentrate and overflow into the second flow channel 216.
[0059] Furthermore, the first main body 231 also includes: a first clamping plate 2310 covering the steam generating chamber 211; a first clamping surface 241 disposed on the first clamping plate 2310; a plurality of steam outlet channels 213 disposed within the first clamping plate 2310; the plurality of steam outlet channels 213 being spaced apart along the extending direction of the first clamping plate 2310; a heating protrusion 260 disposed on the first clamping surface 241; the heating protrusion 260 extending along the length direction of the first clamping plate 2310; at least two heating protrusions 260 being disposed on both sides of the plurality of steam outlet channels 213.
[0060] The placement of the heating convex plate 260 and its extension along the length of the first clamping plate 2310 ensures uniform heating of the hair under the action of the clamping plate. At the same time, multiple steam outlet channels 213 are distributed at intervals along the extension direction of the first clamping plate 2310, allowing steam to evenly cover the entire clamping surface, thereby ensuring that the hair receives the moisturizing and styling effect of steam from root to tip, improving the overall uniformity and quality of the styling.
[0061] The presence of the heating plate 260 not only provides the necessary heat to help the steam take effect quickly, but also maintains the appropriate temperature of the hair after steaming, promoting the setting of the style. This design combines the rapid styling capability of steam with the long-lasting heat retention effect of the heating plate, significantly enhancing the durability and aesthetics of curled or straightened hairstyles.
[0062] The curling iron also includes a water supply pipe 300, one end of which is connected to a water storage tank 110 and the other end of which is connected to a first flow channel 215; and / or, the steam generating unit 210 also includes: a water-absorbing pad 218 disposed in the first flow channel 215, the water-absorbing pad 218 extending along the length of the first flow channel 215, the water-absorbing pad 218 being used to absorb the water flow in the first flow channel 215 and to allow the water flow to permeate along the extension direction of the water-absorbing pad 218; and an electric heating component disposed in the first flow channel 215 for heating the water flow in the first flow channel 215.
[0063] The water supply pipe 300 ensures a stable water flow from the water storage tank 110 to the steam generator 210, avoiding unstable steam generation caused by insufficient or excessive water supply.
[0064] The absorbent pad 218 not only absorbs water evenly, but also ensures that the water penetrates evenly along the length of the first channel 215. When the electric heating element heats the water in the first channel 215, the absorbent pad 218 promotes even heating of the water, avoiding local overheating or uneven heating, thereby forming more uniform and higher quality steam.
[0065] The absorbent pad 218 absorbs and evenly distributes water flow, while the electric heating element heats the water efficiently. This design reduces the direct impact of water flow on the heating element and ensures that the water flow is evenly distributed before heating, making the energy utilization of the electric heating element more efficient.
[0066] In this application, the winding end face 250 further includes a first winding end face 251, which is disposed on the first main body 231. The airflow blowing part 220 includes: a first air cavity 222, which is disposed on the side of the steam generating cavity 211, and a heat insulation layer 219 is disposed between the first air cavity 222 and the steam generating cavity 211. The first air cavity 222 is disposed opposite to and in communication with the air duct component 120; and a first air outlet channel 223, which is disposed on the first main body 231 and in communication with the first air cavity 222. The air outlet of the first air outlet channel 223 is disposed on the first winding end face 251.
[0067] The heat insulation layer 219 installed between the first air chamber 222 and the steam generating chamber 211 effectively prevents the heat generated by the steam from being conducted to the cold air chamber. This ensures that the cold air can maintain its original low temperature characteristics before reaching the first winding end face 251, thus playing a role in rapid shaping during molding without being affected by the high temperature of the steam, thereby improving the efficiency and effect of molding.
[0068] The first air chamber 222 is positioned to the side of the steam generating chamber 211, and the cold air is directly guided onto the first winding end face 251 through the first air outlet channel 223, achieving precise positioning and guidance of the airflow. This design ensures that the cold air can directly blow on the steam-treated hair area, effectively accelerating the evaporation of residual moisture on the hair and improving the styling setting speed.
[0069] Since the steam outlet and the first air outlet are respectively located on different end faces, namely the first clamping surface 241 and the first winding end face 251, this arrangement reduces the mixing of steam and cold air, avoids the cold air being heated during transmission, thereby maintaining the low temperature characteristics of the cold air, reducing the risk of burns during user operation, and improving safety.
[0070] In a specific implementation, the clamp body 230 includes a first body 231 and a second body 232, the second body 232 being rotatably mounted on the handheld body 100 relative to the first body 231 about a predetermined axis; the winding end face 250 includes a second winding end face 252, the second winding end face 252 being mounted on the second body 232; the airflow blowing part 220 includes: a second air cavity 224, disposed within the second body 232, the second air cavity 224 being disposed opposite to and communicating with the air-guiding component 120; a second air outlet channel 225, disposed on the second body 232 and communicating with the second air cavity 224, the air outlet of the second air outlet channel 225 being disposed on the second winding end face 252.
[0071] The rotating design of the second main body 232 relative to the first main body 231 gives the clamp main body 230 better operational flexibility. Users can easily adjust the opening and closing angle of the clamp according to different styling needs and the actual condition of the hair. Whether it is curling, straightening or fine-tuning the style, it can be done more accurately and conveniently, improving the diversity and precision of styling.
[0072] The steam outlet 212 on the first clamping surface 241 and the air outlet of the second air outlet channel 225 on the second winding end face 252 work together to form a three-dimensional styling environment. Steam first acts on the hair, softening the hair texture and assisting in styling; then, cool air is blown out from the second winding end face 252 through the second air outlet channel 225, quickly removing excess steam and heat from the hair surface and helping the hair to set quickly.
[0073] By incorporating a first flow channel 215 and a second flow channel 216 in the steam generator and adding a steam outlet 212 to the side of the clamp, we achieve efficient steam generation and uniform steam transmission. The secondary heating structure of the steam generator 210 ensures high-quality steam, while the design of the steam outlet ensures that the steam can directly act on the hair, softening the hair texture, reducing styling temperature, and minimizing heat damage, thereby improving hair health and styling results.
[0074] A cool air outlet is located on the winding end face, which works in conjunction with the steam outlet to achieve an alternating hot and cold effect. The cool air can quickly remove the moisture and heat from the steam, helping the hair to set quickly while avoiding hair damage caused by high temperatures.
[0075] The second main body 232 extends along an arc-shaped trajectory, and a second clamping plate 2320 is provided on the second main body 232. The second clamping plate 2320 and the second main body 232 form a second air cavity 224.
[0076] In this application, the curling iron also includes a drive motor. The handheld body 100 includes a first handheld body 101 and a second handheld body 102. The drive motor is disposed in the second handheld body 102 and is drivenly connected to the first handheld body 101 so that the first handheld body 101 is rotatably disposed relative to the second handheld body 102. The clamping plate assembly 200 is connected to the first handheld body 101 and is driven to rotate by the first handheld body 101. The air-guiding component 120 is disposed in the first handheld body 101.
[0077] By placing the air-guiding component 120 on the side of the drive motor close to the clamp assembly 200, the obstruction of the airflow channel blown out by the air-guiding component 120 by the drive motor is effectively avoided, significantly increasing the air volume of the clamp assembly 200 and enhancing the cool air setting effect of the hair after styling.
[0078] As can be seen from the above description, the embodiments of this utility model achieve the following technical effects:
[0079] The curling iron provided in this application includes a handheld body 100 and a clamp assembly 200. The handheld body 100 is provided with a water tank 110 and a blower component 120. The clamp assembly 200 is disposed on the handheld body 100 and is closable. The clamp assembly 200 is provided with a steam generating part 210 and an air blowing part 220. The water tank 110 is connected to the steam generating part 210 to supply water to the steam generating part 210 so that the steam generating part 210 generates steam. The blower component 120 is connected to the air blowing part 220 so that airflow is blown out through the air blowing part 220.
[0080] In this application, the airflow outlet 220 works in conjunction with the steam generator 210. The steam is used to quickly change the shape of the hair, while the cold air is used to quickly cool the hair, helping the hair to be styled quickly and avoiding the problem of poor curling effect caused by the hair not being completely dried after using a traditional steam straightener.
[0081] Specifically, by incorporating a steam generator 210 within the hair straightener assembly 200, steam acts directly on the hair, making it easier to open the hydrogen bonds within the hair. This allows styling to be completed at a lower temperature than with traditional electric straighteners. This not only reduces damage to the hair caused by high temperatures but also improves the safety of styling, lowering the risk of burns. Simultaneously, the airflow outlet 220 blows air onto the hair, drying any remaining water vapor and allowing for better styling.
[0082] It should be noted that the terminology used herein is for the purpose of describing particular embodiments only and is not intended to limit the exemplary embodiments according to this application. As used herein, the singular form is intended to include the plural form as well, unless the context clearly indicates otherwise. Furthermore, it should be understood that when the terms "comprising" and / or "including" are used in this specification, they indicate the presence of features, steps, operations, devices, components, and / or combinations thereof.
[0083] Unless otherwise specifically stated, the relative arrangement, numerical expressions, and values of the components and steps described in these embodiments do not limit the scope of this application. It should also be understood that, for ease of description, the dimensions of the various parts shown in the drawings are not drawn to actual scale. Techniques, methods, and devices known to those skilled in the art may not be discussed in detail, but where appropriate, such techniques, methods, and devices should be considered part of the specification. In all examples shown and discussed herein, any specific values should be interpreted as merely exemplary and not as limitations. Therefore, other examples of exemplary embodiments may have different values. It should be noted that similar reference numerals and letters in the following drawings denote similar items; therefore, once an item is defined in one drawing, it need not be further discussed in subsequent drawings.
[0084] For ease of description, spatial relative terms such as "above," "on top of," "on the upper surface of," "above," etc., are used herein to describe the spatial positional relationship of a device or feature as shown in the figures to other devices or features. It should be understood that spatial relative terms are intended to encompass different orientations in use or operation beyond the orientation of the device as described in the figures. For example, if the device in the figures were inverted, a device described as "above" or "on top of" other devices or structures would subsequently be positioned as "below" or "under" other devices or structures. Thus, the exemplary term "above" can include both "above" and "below." The device may also be positioned in other different ways (rotated 90 degrees or in other orientations), and the spatial relative descriptions used herein will be interpreted accordingly.
[0085] It should be noted that the terminology used herein is for the purpose of describing particular embodiments only and is not intended to limit the exemplary embodiments according to this application. As used herein, the singular form is intended to include the plural form as well, unless the context clearly indicates otherwise. Furthermore, it should be understood that when the terms "comprising" and / or "including" are used in this specification, they indicate the presence of features, steps, operations, devices, components, and / or combinations thereof.
[0086] It should be noted that the terms "first," "second," etc., used in the specification, claims, and accompanying drawings of this application are used to distinguish similar objects and are not necessarily used to describe a specific order or sequence. It should be understood that such data can be interchanged where appropriate so that the embodiments of this application described herein can be implemented in sequences other than those illustrated or described herein.
[0087] The above are merely preferred embodiments of this utility model and are not intended to limit the scope of this utility model. Various modifications and variations can be made to this utility model by those skilled in the art. Any modifications, equivalent substitutions, or improvements made within the spirit and principles of this utility model should be included within the protection scope of this utility model.
Claims
1. A hair curler, characterized in that, include: A handheld main body (100) is provided with a water storage tank (110) and a fan (120); A clamp assembly (200) is disposed on the handheld body (100). The clamp assembly (200) is closable. A steam generator (210) and an airflow outlet (220) are disposed inside the clamp assembly (200). The water tank (110) is connected to the steam generator (210) to supply water to the steam generator (210) so that the steam generator (210) generates steam. The air intake component (120) is connected to the airflow outlet (220) so that airflow is blown out through the airflow outlet (220).
2. The curling iron according to claim 1, characterized in that, The clamping plate assembly (200) includes: The clamping plate body (230) is closable and includes a clamping end face (240) and a winding end face (250). At least a portion of the steam generating part (210) is disposed on the clamping end face (240), and at least a portion of the airflow blowing part (220) is disposed on the winding end face (250).
3. The hair curler according to claim 2, characterized in that, The steam generating unit (210) includes a steam generating chamber (211) and a steam outlet (212), the steam outlet (212) communicating with the steam generating chamber (211), and the steam outlet (212) being disposed on the clamping end face (240); and / or, The airflow outlet (220) includes a ducting air chamber (221), which is arranged side by side with the steam generating chamber (211) along the extension direction of the clamp body (230). The ducting air chamber (221) is arranged opposite to the air-guiding component (120), and the airflow outlet of the ducting air chamber (221) is located on the winding end face (250).
4. The hair curler according to claim 2, characterized in that, The clamp body (230) includes a first body (231) and a second body (232), the second body (232) being rotatably disposed relative to the first body (231) to allow the clamp body (230) to open and close, and the clamping end face (240) including a first clamping surface (241) disposed on the first body (231); The steam generating unit (210) includes: A steam generating chamber (211) is disposed inside the first main body (231), and the steam generating chamber (211) is connected to the water storage tank (110); A steam outlet channel (213) is connected to the steam generating chamber (211), and the steam outlet (212) of the steam outlet channel (213) is located on the first clamping surface (241).
5. The hair curler according to claim 4, characterized in that, The steam generating unit (210) also includes: A partition plate (214) is disposed in the steam generating chamber (211) to divide the steam generating chamber (211) into a first flow channel (215) and a second flow channel (216). The first flow channel (215) is connected to the water storage tank (110), and the second flow channel (216) is connected to the steam outflow channel (213). The partition plate (214) is provided with a connecting hole (217), and the two ends of the connecting hole (217) are respectively connected to the first flow channel (215) and the second flow channel (216). The steam in the first flow channel (215) flows into the second flow channel (216) through the connecting hole (217) and then flows out through the steam outlet channel (213). The partition plate (214) includes a first partition plate (2140) and a second partition plate (2141), the first partition plate (2140) and the second partition plate (2141) are spaced apart, and the second flow channel (216) is located between the first partition plate (2140) and the second partition plate (2141). The first partition plate (2140) and the second partition plate (2141) respectively form the second flow channel (216) between the inner wall surface of the steam generating chamber (211), and the first partition plate (2140) and the second partition plate (2141) are respectively provided with the connecting hole (217).
6. The hair curler according to claim 5, characterized in that, The first body (231) also includes: A first clamping plate (2310) is installed on the steam generating chamber (211), a first clamping surface (241) is installed on the first clamping plate (2310), and a steam outlet channel (213) is installed inside the first clamping plate (2310). There are multiple steam outlet channels (213), and the multiple steam outlet channels (213) are spaced apart along the extension direction of the first clamping plate (2310). A heating protrusion (260) is provided on the first clamping surface (241). The heating protrusion (260) extends along the length direction of the first clamping plate (2310). There are at least two heating protrusions (260), and the at least two heating protrusions (260) are respectively provided on both sides of the plurality of steam outflow channels (213).
7. The hair curler according to claim 5, characterized in that, The curling iron also includes a water supply pipe (300), one end of which is connected to the water storage tank (110), and the other end is connected to the first flow channel (215); and / or, The steam generating unit (210) also includes: A water-absorbing pad (218) is disposed in the first flow channel (215). The water-absorbing pad (218) extends along the length direction of the first flow channel (215). The water-absorbing pad (218) is used to absorb the water flow in the first flow channel (215) and allow the water flow to permeate along the extension direction of the water-absorbing pad (218). An electric heating element is disposed in the first flow channel (215) for heating the water flow in the first flow channel (215).
8. The hair curler according to claim 4, characterized in that, The winding end face (250) further includes a first winding end face (251), which is disposed on the first body (231). The airflow outlet (220) includes: A first air chamber (222) is disposed on the side of the steam generating chamber (211). A heat insulation layer (219) is disposed between the first air chamber (222) and the steam generating chamber (211). The first air chamber (222) is disposed opposite to and in communication with the air duct component (120). The first air outlet channel (223) is disposed on the first main body (231) and communicates with the first air cavity (222). The air outlet of the first air outlet channel (223) is disposed on the first winding end face (251).
9. The curling iron according to claim 2, characterized in that, The clamp body (230) includes a first body (231) and a second body (232), the second body (232) being rotatably disposed on the handheld body (100) relative to the first body (231) about a predetermined axis; the winding end face (250) includes a second winding end face (252), the second winding end face (252) being disposed on the second body (232); The airflow outlet (220) includes: The second air cavity (224) is disposed inside the second main body (232), and the second air cavity (224) is disposed opposite to and in communication with the air-guiding component (120); The second air outlet channel (225) is disposed on the second main body (232) and communicates with the second air cavity (224). The air outlet of the second air outlet channel (225) is disposed on the second winding end face (252).
10. The curling iron according to claim 1, characterized in that, The curling iron also includes a drive motor, and the handheld body (100) includes: A first handheld body (101) and a second handheld body (102) are provided. The drive motor is disposed in the second handheld body (102) and is drivenly connected to the first handheld body (101) so that the first handheld body (101) is rotatably disposed relative to the second handheld body (102). The clamping plate assembly (200) is connected to the first handheld body (101) and is driven to rotate by the first handheld body (101). The air-guiding component (120) is disposed in the first handheld body (101).