Nursing appliance

CN224698794UActive Publication Date: 2026-09-01DREAME TECH (SHANGHAI) CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202520870254.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-30
Publication Date
2026-09-01
Estimated Expiration
2035-04-30

AI Technical Summary

Technical Problem

[0003]但是,由于相关技术中护理器具的结构设置不合理,护理器具释放护理介质的控制精度较低,难以可靠地控制护理介质的释放量,进而会出现护理介质涂抹不足或者护理介质涂抹过多的问题,用户体检较差

Benefits of technology

[0031] Additional aspects and advantages of this invention will be set forth in part in the description which follows, and in part will be obvious from the description, or may be learned by practice of the invention.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224698794U_ABST
    Figure CN224698794U_ABST
Patent Text Reader

Abstract

The utility model discloses a nursing appliance, include: casing, nursing subassembly, including control mechanism, valve body, seat body and lid, seat body installs in casing and is structured with the storage bin of accommodating nursing medium, valve body movably connects in seat body and is defined with seat body together transit bin, the lid covers storage bin, control mechanism exposes from the lid and is transmission connection with valve body, contact piece, install in nursing subassembly and / or casing, and at least part contact piece exposes from casing, and contact piece is used for with user hair contact, and control mechanism selectively controls valve body and releases nursing medium to contact piece, and valve body selectively releases nursing medium from transit bin to contact piece or will transit bin and storage bin intercommunication, to supplement nursing medium from storage bin to transit bin. The utility model discloses a nursing appliance through control mechanism control valve body to control and release nursing medium to contact piece, and control precision can be higher, and then can more accurate regulation nursing medium's release amount, and user experience is better.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the field of hair care equipment technology, and in particular to a care device. Background Technology

[0002] Hair care devices in related technologies are typically used for hair care. These devices can release a care medium, such as essential oils, which can be applied to the user's hair for hair care.

[0003] However, due to the unreasonable structural design of the nursing devices in the relevant technologies, the control precision of the nursing devices in releasing the nursing medium is low, making it difficult to reliably control the release amount of the nursing medium. This can lead to problems such as insufficient or excessive application of the nursing medium, resulting in poor user experience. Utility Model Content

[0004] This invention aims to solve at least one of the technical problems existing in the prior art. Therefore, one objective of this invention is to provide a nursing device that controls a valve body via a control mechanism to control the release of a nursing medium to a contact element. This allows for higher control precision, enabling more accurate adjustment of the release amount of the nursing medium and resulting in a better user experience.

[0005] To achieve the above objectives, a care device is proposed according to an embodiment of the present invention. The care device includes: a housing; a care component, which is installed in the housing and is used to contain a care medium, the care component having a control mechanism and a valve body, and the control mechanism being throttlely connected to the valve body; and a contact element, which is installed in the care component and / or the housing, and at least a portion of the contact element is exposed from the housing, the contact element being used to contact the user's hair, and the control mechanism selectively controlling the valve body to release the care medium to the contact element.

[0006] Therefore, the nursing device according to the present invention controls the valve body through the control mechanism to control the release of nursing medium to the contact element, which can achieve higher control precision and thus more accurately adjust the release amount of nursing medium, resulting in a better user experience.

[0007] According to some embodiments of the present invention, the nursing component further includes: a seat, the seat being mounted on the housing and having a storage compartment for containing nursing media; a valve body movably connected to the seat and defining a transfer compartment together with the seat; the valve body selectively releasing the nursing media from the transfer compartment to the contact member or connecting the transfer compartment to the storage compartment to replenish the nursing media from the storage compartment to the transfer compartment; and a cover, the cover being connected to the seat and sealing the storage compartment, with the control mechanism exposed from the cover.

[0008] According to some embodiments of the present invention, the nursing component further includes: a sealing plug, wherein the cover body is provided with a fluid inlet communicating with the storage chamber, the sealing plug being installed on the fluid inlet to block the fluid inlet; and a flip cover, the flip cover being rotatably connected to the cover body, and the flip cover being used to cover the sealing plug.

[0009] According to some embodiments of the present invention, the control mechanism includes: a button, which is movably connected to the cover and protrudes from the cover; a guide post, one end of which abuts against the button, and the other end of which is fixedly connected to the valve body; and an elastic reset member, which is sleeved on the guide post, and both ends of which abut against the button and the seat respectively, to generate an elastic force that pushes the button to move away from the seat; wherein, when the button is pressed, the button pushes the valve body through the guide post to open the output end of the transfer chamber, so as to release the nursing medium to the contact member; and, after the button is released, the elastic reset member drives the valve body through the button and the guide post to close the output end of the transfer chamber and open the input end of the transfer chamber, the transfer chamber is connected to the storage chamber and the release of the nursing medium to the contact member is interrupted.

[0010] According to some embodiments of the present invention, the nursing device further includes: a flexible adsorption element, which is disposed between the nursing component and the contact element, the flexible adsorption element being used to adsorb the nursing medium, and the contact element contacting the flexible adsorption element to pick up the nursing medium.

[0011] According to some embodiments of the present invention, the contact element is constructed as a roller, and the two ends of the roller are rotatably connected to the care component and / or the housing via bearings.

[0012] According to some embodiments of the present invention, the roller includes: a main body extending along the axial direction of the roller, and the main body having a dipping portion extending in a ring along the circumference of the main body; and a friction portion disposed on the main body and extending in a ring along the circumference of the main body, the friction portion and the dipping portion being arranged along the axial direction of the main body, and the friction coefficient of the friction portion being greater than the friction coefficient of the dipping portion.

[0013] According to some embodiments of the present invention, there are multiple dipping portions and multiple friction portions, which are coaxially arranged and alternately arranged along the axial direction of the main body. The diameter of the dipping portion is larger than the diameter of the friction portion.

[0014] According to some embodiments of the present invention, the nursing device further includes: a plurality of air outlet columns, each air outlet column having an air guide channel, and an air outlet channel being provided inside the housing; the plurality of air outlet columns being connected to one side of the housing, and the air guide channel communicating with the air outlet channel; a plurality of toothed combs, the plurality of toothed combs being connected to one side of the housing, at least a portion of the toothed combs being adjacent to the outer edge of the housing relative to the air outlet columns, and at least a portion of the toothed combs and the air outlet columns being alternately arranged along the circumference of the housing; wherein, one side of the housing is further provided with a plurality of first air outlets communicating with the air outlet channel, and the plurality of first air outlets being located between two adjacent air outlet columns.

[0015] According to some embodiments of the present invention, an air inlet is provided at one end of the length direction of the housing, the air inlet is connected to the air outlet channel, and a plurality of air guide ribs are provided on opposite sides of the air outlet channel; wherein, along the length direction of the housing, each air guide rib is provided between two adjacent air outlet columns, and / or, each air guide rib is provided between two adjacent first air outlets; and, along the length direction of the housing away from the air inlet, the height of the plurality of air guide ribs increases so as to reduce the flow cross-sectional area of ​​the air outlet channel.

[0016] According to some embodiments of the present invention, the housing is provided with a mounting groove, the mounting groove is located in the middle of the width direction of the housing, and the nursing component is fixed in the mounting groove.

[0017] According to some embodiments of the present invention, the care component is detachably connected to the housing; and / or, the contact is detachably connected to the care component or the housing.

[0018] According to some embodiments of the present invention, the nursing component is provided with a first magnetic attraction part, and the housing is provided with a second magnetic attraction part, and the nursing component and the housing are magnetically connected through the first magnetic attraction part and the second magnetic attraction part.

[0019] The nursing device according to an embodiment of the present invention includes: a housing, wherein a plurality of first air outlets are provided on one side of the housing; a nursing component, wherein the nursing component is detachably installed on the housing and is used to contain a nursing medium; a contact member, wherein the contact member is detachably installed on the nursing component and / or the housing, and at least a portion of the contact member is exposed from the side of the housing, the contact member being used to contact the user's hair; a plurality of air outlet columns, wherein the plurality of air outlet columns are connected to the side of the housing, and each first air outlet is disposed between two adjacent air outlet columns, the air outlet columns are provided with air guide channels, and the housing is provided with an air outlet channel, the air guide channels communicating with the air outlet channel; and a plurality of combs, wherein the plurality of combs are connected to the side of the housing, at least a portion of the combs being adjacent to the outer edge of the housing relative to the air outlet columns, and at least a portion of the combs and the air outlet columns are alternately arranged along the circumference of the housing.

[0020] Thus, the care device according to the present invention can simultaneously blow-dry the user's hair using the first air outlet and the air column, thereby achieving blow-drying of the user's hair from multiple directions, resulting in better blowing effect and better user experience.

[0021] According to some embodiments of the present invention, the nursing device further includes: a flexible adsorption element disposed between the nursing component and the contact element, wherein the nursing component selectively releases a nursing medium to the contact element, and the contact element contacts the flexible adsorption element to pick up the nursing medium.

[0022] According to some embodiments of the present invention, the nursing component includes: a base, the base being mounted on the housing and having a storage compartment; a valve body, the valve body being movably connected to the base and defining a transfer compartment together with the base, the valve body selectively releasing the nursing medium from the transfer compartment to the contact member or connecting the transfer compartment to the storage compartment to replenish the nursing medium from the storage compartment to the transfer compartment; a cover, the cover being connected to the base and sealing the storage compartment; a sealing plug, the cover having a replenishment port communicating with the storage compartment, the sealing plug being installed on the replenishment port to block the replenishment port; and a flip cover, the flip cover being rotatably connected to the cover and used to cover the sealing plug.

[0023] According to some embodiments of the present invention, the nursing component further includes a control mechanism connected to the valve body to selectively control the valve body to release the nursing medium to the contact element.

[0024] According to some embodiments of the present invention, the contact element is constructed as a roller, and the two ends of the roller are rotatably connected to the nursing component and / or the housing via bearings, and the roller includes: a main body extending along the axial direction of the roller, and the main body having a dipping portion extending in a ring shape along the circumference of the main body; and a plurality of friction portions disposed on the main body and extending in a ring shape along the circumference of the main body, the friction coefficient of the friction portions being greater than that of the dipping portion, the plurality of dipping portions and the plurality of friction portions being coaxially arranged and alternately arranged along the axial direction of the main body, and the diameter of the dipping portion being greater than the diameter of the friction portion.

[0025] A nursing device according to an embodiment of the present invention includes: a housing; a nursing component, the nursing component being mounted on the housing and used to contain a nursing medium; a contact member, the contact member being mounted on the nursing component and / or the housing, and at least a portion of the contact member being exposed from one side of the housing, the contact member being used to contact the user's hair, and the nursing component selectively releasing a nursing medium to the contact member; wherein the contact member is constructed as a roller, the two ends of the roller being rotatably connected to the nursing component and / or the housing respectively via bearings, and the roller includes: a main body, the main body extending axially along the roller, and the main body having a dipping portion extending in a ring shape circumferentially along the main body; a friction portion, the friction portion being disposed on the main body and extending in a ring shape circumferentially along the main body, the friction portion and the dipping portion being coaxially arranged and arranged axially along the main body, and the friction coefficient of the friction portion being greater than the friction coefficient of the dipping portion.

[0026] Thus, the care device according to the present invention can use the friction between the friction part and the hair to drive the contact part to rotate, and the contact part can rotate stably so that the care medium on the contact part can be fully and evenly applied to the hair.

[0027] According to some embodiments of the present invention, there are multiple dipping portions and multiple friction portions, which are arranged alternately along the axial direction of the main body, and the diameter of the dipping portion is larger than the diameter of the friction portion.

[0028] According to some embodiments of the present invention, the nursing device further includes: a plurality of air outlet columns, each air outlet column having an air guide channel, and an air outlet channel being provided inside the housing; the plurality of air outlet columns being connected to one side of the housing, and the air guide channel communicating with the air outlet channel; a plurality of toothed combs, the plurality of toothed combs being connected to one side of the housing, at least a portion of the toothed combs being adjacent to the outer edge of the housing relative to the air outlet columns, and at least a portion of the toothed combs and the plurality of air outlet columns being alternately arranged along the circumference of the housing; wherein, one side of the housing is further provided with a plurality of first air outlets communicating with the air outlet channel, and the plurality of first air outlets being located between two adjacent air outlet columns.

[0029] According to some embodiments of the present invention, the nursing device further includes: a flexible adsorption element disposed between the nursing component and the contact element, wherein the nursing component selectively releases a nursing medium to the contact element, and the contact element contacts the flexible adsorption element to pick up the nursing medium.

[0030] According to some embodiments of the present invention, the contact is detachably mounted on the care component and / or the housing, and the care component is detachably mounted on the housing, and the care component includes: a seat, the seat being mounted on the housing and having a storage compartment; a valve body, the valve body being movably connected to the seat and defining a transfer compartment together with the seat; a cover, the cover being connected to the seat and sealing the storage compartment; a sealing plug, the cover having a replenishment port communicating with the storage compartment, the sealing plug being mounted on the replenishment port to block the replenishment port; a flip cover, the flip cover being rotatably connected to the cover and used to cover the sealing plug; and a control mechanism, the control mechanism being connected to the valve body to selectively release the care medium from the transfer compartment to the contact or to connect the transfer compartment to the storage compartment to replenish the care medium from the storage compartment to the transfer compartment.

[0031] Additional aspects and advantages of this invention will be set forth in part in the description which follows, and in part will be obvious from the description, or may be learned by practice of the invention. Attached Figure Description

[0032] The above and / or additional aspects and advantages of this utility model will become apparent and readily understood from the description of the embodiments taken in conjunction with the following drawings, in which:

[0033] Figure 1 This is a structural schematic diagram of a nursing device according to an embodiment of the present utility model;

[0034] Figure 2This is a structural schematic diagram of the nursing device according to another perspective of an embodiment of the present utility model;

[0035] Figure 3 This is a cross-sectional view of a nursing device according to an embodiment of the present utility model;

[0036] Figure 4 This is an exploded view of the nursing device according to an embodiment of the present utility model;

[0037] Figure 5 This is an exploded view of the housing of the nursing device according to an embodiment of the present utility model;

[0038] Figure 6 This is a cross-sectional view of the housing of a nursing device according to an embodiment of the present utility model;

[0039] Figure 7 This is a schematic diagram of the structure of the nursing component according to an embodiment of the present utility model;

[0040] Figure 8 This is a cross-sectional view of the nursing component according to an embodiment of the present utility model;

[0041] Figure 9 This is an exploded view of the nursing component according to an embodiment of the present utility model;

[0042] Figure 10 This is a schematic diagram of the contact element according to an embodiment of the present utility model;

[0043] Figure 11 This is a schematic diagram of the valve body according to an embodiment of the present utility model;

[0044] Figure 12 This is a schematic diagram of the air outlet column according to an embodiment of the present utility model.

[0045] Figure label:

[0046] 1. Nursing equipment;

[0047] 100. Housing; 110. Air outlet duct; 120. First air outlet; 130. Air inlet; 140. Air guide rib; 141. Airflow guide surface; 142. Clearance surface; 150. Mounting groove; 160. Second magnetic suction part;

[0048] 200. Nursing component; 201. First magnetic suction part; 210. Control mechanism; 211. Button; 212. Guide post; 213. Limiting boss; 214. Elastic reset part; 220. Valve body; 221. Transfer compartment; 230. Seat; 231. Storage compartment; 233. Second limiting hole; 240. Cover; 241. First limiting hole; 242. Infusion port; 250. Sealing plug; 270. Flip cover;

[0049] 300. Contact element; 310. Metal shaft; 320. Main body; 330. Dipping part; 340. Friction part; 350. Bearing;

[0050] 400. Flexible adsorption components;

[0051] 500, Air outlet column; 510, Air guide channel; 511, Second air outlet; 600, Comb. Detailed Implementation

[0052] The embodiments of this utility model are described in detail below. Examples of these embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain this utility model, and should not be construed as limiting this utility model.

[0053] In the description of this utility model, it should be understood that the terms "center", "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "axial", "radial", "circumferential", etc., indicating the orientation or positional relationship are based on the orientation or positional relationship shown in the accompanying drawings, and are only for the convenience of describing this utility model and simplifying the description, and are not intended to indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this utility model.

[0054] In the description of this utility model, "first feature" and "second feature" may include one or more of the features.

[0055] In the description of this utility model, "multiple" means two or more, and "several" means one or more.

[0056] The nursing device 1 according to an embodiment of the present invention is described below with reference to the accompanying drawings.

[0057] like Figures 1-12 As shown in the attached figure, the up and down direction is the up and down direction of the housing 100 (wherein, the side of the nursing device 1 facing the user's body when in use is the lower side), the length direction is the length direction of the housing 100, and the width direction is the width direction of the housing 100.

[0058] According to an embodiment of the present invention, the nursing device 1 includes a housing 100, a nursing component 200, and a contact element 300.

[0059] The care component 200 is mounted on the housing 100 and is used to contain care media. The care component 200 is provided with a control mechanism 210 and a valve body 220, and the control mechanism 210 is kinetically connected to the valve body 220. A contact 300 is mounted on the care component 200 and / or the housing 100, and at least a portion of the contact 300 is exposed from the housing 100. The exposed portion of the contact 300 is used to contact the user's hair. The control mechanism 210 selectively controls the valve body 220 to release care media to the contact 300.

[0060] The contact 300 being mounted on the care component 200 and / or the housing 100 means that the contact 300 can be connected to the care component 200, or the contact 300 can be connected to the housing 100, or the contact 300 can be connected to both the care component 200 and the housing 100 simultaneously. Furthermore, the contact 300 can be located on the underside of the care component 200, that is, on the side of the care component 200 facing the user's body. This allows the contact 300 to be close to the user's hair when using the care device 1, enabling the contact 300 to contact the hair and evenly apply the care medium to the user's hair.

[0061] Additionally, the care component 200 can be located above the contact 300 along the vertical direction of the housing 100, which facilitates the release of the care medium in the care component 200 to the contact 300 and the application of the care medium to the user's hair through the contact 300.

[0062] The control mechanism 210 selectively controls the valve body 220 to release the nursing medium to the contact element 300, which means that the control mechanism 210 can control the valve body 220 to release the nursing medium to the contact element 300, or the control mechanism 210 can control the valve body 220 to interrupt the release of the nursing medium to the contact element 300.

[0063] According to the embodiment of this utility model, the care device 1 is driven by a control mechanism 210 and a valve body 220. The control mechanism 210 selectively controls the valve body 220 to release the care medium to the contact member 300. The control mechanism 210 can drive the valve body 220 to move, for example, by pushing the valve body 220 open or close. This controls the flow of the care medium from the care component 200 to the contact member 300, allowing the care medium to be applied to the hair for care. Furthermore, by directly driving the valve body 220 with the control mechanism 210, the release amount of the care medium can be more precisely controlled, resulting in higher control accuracy. This avoids releasing too much or too little care medium, allowing the care device 1 to apply the care medium more evenly to the user's hair, thereby improving the user experience.

[0064] Thus, according to the present invention, the nursing device 1 controls the valve body 220 through the control mechanism 210 to control the release of nursing medium to the contact element, which can achieve higher control precision and thus more accurately adjust the release amount of nursing medium, resulting in a better user experience.

[0065] In some embodiments of this utility model, such as Figure 3 and Figure 4 As shown, the nursing component 200 also includes a base 230 and a cover 240.

[0066] The seat 230 is mounted on the housing 100 and has a storage chamber 231 for containing nursing media. The valve body 220 is movably connected to the seat 230 and together with the seat 230 defines a transfer chamber 221. The valve body 220 selectively releases nursing media from the transfer chamber 221 to the contact member 300 or connects the transfer chamber 221 to the storage chamber 231 to replenish nursing media from the storage chamber 231 to the transfer chamber 221. The cover 240 is connected to the seat 230 and covers the storage chamber 231. The control mechanism 210 is exposed from the cover 240.

[0067] The cover 240 can be connected to the upper side of the base 230, thus shielding the base 230 from impurities and preventing them from entering the storage chamber 231, ensuring the cleanliness of the storage chamber 231 and preventing dust and impurities from mixing into the care medium. Furthermore, the control mechanism 210 protrudes from the cover 240, making it easy for the user to touch and operate the control mechanism 210, thereby controlling the care component 200 to release the care medium to the contact member 300.

[0068] In addition, the valve body 220 can be located on the lower side of the storage compartment 231, and the valve body 220 is connected to the control mechanism 210. In this way, the user can drive the valve body 220 to move relative to the seat 230 in the height direction by operating the control mechanism 210, thereby controlling the valve body 220 to open or close the transfer compartment 221, so as to selectively release the nursing medium to the contact member 300.

[0069] Furthermore, the valve body 220 selectively releases the nursing medium to the contact member 300 or connects the transfer chamber 221 to the storage chamber 231. Specifically, when the valve body 220 is in its initial state, the transfer chamber 221 can be connected to the storage chamber 231 to replenish the nursing medium into the transfer chamber 221 through the storage chamber 231, and the transfer chamber 221 is closed, thus interrupting the release of the nursing medium from the nursing component 200 to the contact member 300. When the valve body 220 moves downward to open the transfer chamber 221, the nursing medium in the transfer chamber 221 can flow to the contact member 300, at which point the transfer chamber 221 is disconnected from the storage chamber 231. With this configuration, each time the control mechanism 210 drives the valve body 220 to open the transfer chamber 221, a fixed amount of nursing medium can flow to the contact member 300. For example, the volume of the transfer chamber 221 can be 0.1 mL, but is not limited to 0.1 mL. This prevents excessive application of the care medium onto the user's hair through the contact element 300, allowing for precise control of the care medium flow and a better user experience.

[0070] Furthermore, such as Figure 4 and Figure 9 As shown, the nursing component 200 also includes a sealing plug 250 and a flip cover 270.

[0071] The cover 240 is provided with a liquid replenishment port 242 communicating with the storage compartment 231. A sealing plug 250 is installed on the liquid replenishment port 242 to block the liquid replenishment port 242. A flip cover 270 is rotatably connected to the cover 240 and is used to cover the sealing plug 250.

[0072] By setting a sealing plug 250, the replenishment port 242 can be sealed, which can prevent dust and impurities from flowing into the storage chamber 231 from the replenishment port 242 to ensure the cleanliness of the care medium, and also prevent the care medium from flowing out from the replenishment port 242.

[0073] Furthermore, by providing a flip cover 270, the sealing plug 250 can be covered and protected, and the appearance of the care assembly 200 can be improved, making the care device 1 more aesthetically pleasing. Moreover, the flip cover 270 is rotatably connected to the cover body 240, and can be opened or closed simply by flipping it, making operation simpler and more convenient.

[0074] In some embodiments of this utility model, such as Figure 3 and Figure 8 As shown, the control mechanism 210 includes a button 211, a guide post 212, and a resilient reset member 214.

[0075] Button 211 is movably connected to cover 240 and protrudes from cover 240. One end of guide post 212 abuts against button 211, and the other end of guide post 212 is fixedly connected to valve body 220. Elastic reset member 214 is sleeved on guide post 212, and both ends of elastic reset member 214 abut against button 211 and seat 230 respectively, so as to generate an elastic force that pushes button 211 to move away from seat 230.

[0076] Specifically, when button 211 is pressed, button 211 pushes valve body 220 to open the output end of transfer chamber 221 through guide post 212, so as to release nursing medium to contact member 300.

[0077] Furthermore, after releasing button 211, the elastic reset member 214 drives the valve body 220 to close the output end of the transfer chamber 221 and open the input end of the transfer chamber 221 through button 211 and guide post 212. The transfer chamber 221 is connected to the storage chamber 231 and the release of nursing medium to the contact member 300 is interrupted.

[0078] The input end of the transfer chamber 221 refers to the location where the transfer chamber 221 is used to communicate with the storage chamber 231 to replenish the nursing medium, and the output end of the transfer chamber 221 refers to the location where the transfer chamber 221 is used to release the nursing medium.

[0079] For example, the lower end of the guide post 212 can be connected to the valve body 220 by bolts, so that the valve body 220 can move synchronously with the guide post 212.

[0080] The guide post 212 can be configured with a limiting boss 213, which extends circumferentially along the guide post 212 and protrudes from its outer circumferential surface. Furthermore, a first limiting hole 241 can be constructed within the cover 240, and a second limiting hole 233 can be constructed inside the seat 230. The central axis of the first limiting hole 241 and the central axis of the second limiting hole 233 can be collinear, facilitating the passage of the guide post 212 through the first limiting hole 241 and the second limiting hole 233. The first limiting hole 241 and the second limiting hole 233 can radially limit the guide post 212 to prevent it from wobbling and ensure stable axial movement.

[0081] Furthermore, the lower end of the first limiting hole 241 can abut against the limiting boss 213 to limit the upward movement limit of the guide post 212, and the upper end of the second limiting hole 233 can abut against the limiting boss 213 to limit the downward movement limit of the guide post 212, thereby limiting the upper and lower limit positions of the valve body 220.

[0082] In addition, the elastic reset member 214 is sleeved on the guide post 212, and the lower end of the elastic reset member 214 can abut against the upper end face of the second limiting hole 233, and the upper end of the elastic reset member 214 can abut against the lower end of the button 211. In this way, when the button 211 is pressed, the button 211 and the housing 100 can squeeze the elastic reset member 214, so that the elastic reset member 214 generates an elastic force to drive the button 211 to move upward. Thus, when the button 211 is released, the elastic reset member 214 can drive the button 211 to move upward and reset.

[0083] In some embodiments of this utility model, such as Figure 3 and Figure 8 As shown, the nursing device 1 also includes a flexible suction element 400.

[0084] The flexible adsorption member 400 is disposed between the nursing component 200 and the contact member 300. The flexible adsorption member 400 is used to adsorb the nursing medium, and the contact member 300 contacts the flexible adsorption member 400 to pick up the nursing medium.

[0085] For example, the flexible adsorption element 400 can be a sponge, but is not limited to a sponge.

[0086] Specifically, when the transfer chamber 221 is opened, the care medium can flow from the transfer chamber 221 to the flexible adsorption member 400. The flexible adsorption member 400 can absorb and spread the care medium to all parts of the flexible adsorption member 400, so that multiple parts of the contact member 300 can be evenly dipped in the care medium. Thus, when the care device 1 comes into contact with the user's hair through the contact member 300, the contact member 300 can make the care medium more evenly applied to the user's hair. The structural design is more reasonable and helps to improve the user experience.

[0087] In some embodiments of this utility model, such as Figure 3 and Figure 8 As shown, the contact 300 is constructed as a roller, and the two ends of the roller are rotatably connected to the care assembly 200 and / or the housing 100 via bearings, respectively.

[0088] The contact 300 may be rotatably connected to the care assembly 200; or, the contact 300 may be rotatably connected to the housing 100; or, the contact 300 may be rotatably connected to both the care assembly 200 and the housing 100.

[0089] Furthermore, by setting bearings 350 at both ends of the roller, the roller can rotate more easily relative to the care component 200. In this way, during the rolling process, multiple positions of the roller can contact the flexible adsorption component 400 and the user's hair respectively. The roller can continuously pick up the care medium on the flexible adsorption component 400, so that the care medium picked up by the multiple positions of the roller can be applied to the user's hair in sequence, resulting in a better care effect.

[0090] Furthermore, such as Figure 10 As shown, the roller includes a main body 320, a dipping part 330, and a friction part 340.

[0091] The main body 320 extends along the axial direction of the roller, and the main body 320 is provided with a dipping part 330. The dipping part 330 extends in a ring along the circumference of the main body 320. The friction part 340 is provided on the main body 320 and extends in a ring along the circumference of the main body 320. The friction part 340 and the dipping part 330 are arranged along the axial direction of the main body 320, and the friction coefficient of the friction part 340 is greater than the friction coefficient of the dipping part 330.

[0092] The main body 320 may contain a metal shaft 310, which passes through the main body 320, and bearings 350 are respectively provided at both ends of the metal shaft 310. It should be noted that both the dipping part 330 and the friction part 340 can pick up the nursing medium from the flexible adsorption member 400.

[0093] For example, the main body 320 can be made of hard plastic, that is, the dipping part 330 can be made of hard plastic, and the friction part 340 can be made of soft plastic. The main body 320 can be integrally injection molded, meaning that the dipping part 330 and the rest of the main body 320 form a single integrated structure, which helps to improve the structural strength of the roller.

[0094] Furthermore, the friction coefficient of the friction part 340 is greater than that of the dipping part 330. This means that when the friction part 340 comes into contact with the hair, a greater frictional force can be generated between the friction part 340 and the hair, which can drive the roller to rotate so that the care medium on the roller can be fully and evenly applied to the hair.

[0095] In some embodiments of this utility model, such as Figure 10 As shown, there are multiple dip-taking portions 330 and multiple friction portions 340. The multiple dip-taking portions 330 and multiple friction portions 340 are coaxially arranged and alternately arranged along the axial direction of the main body 320, and the diameter of the dip-taking portion 330 is larger than the diameter of the friction portion 340.

[0096] With this configuration, multiple friction parts 340 can be distributed at multiple positions along the axial direction of the main body 320, thereby increasing the friction between multiple positions of the roller and the user's hair. That is, the friction generated between the hair and the multiple friction parts 340 can drive the roller to rotate from multiple positions of the roller, avoiding the roller being deflected by force, and further making the rotation of the roller easier, so that the care medium can be applied to the user's hair more easily.

[0097] Furthermore, the diameter of the dipping part 330 is larger than the diameter of the friction part 340, so that the dipping part 330 can protrude outward from the friction part 340 along the radial direction of the main body 320, so as to facilitate contact between the dipping part 330 and the flexible adsorption member 400 and to pick up the care medium from the flexible adsorption member 400. At the same time, it is convenient for the dipping part 330 to contact the user's hair, so that the care medium can be applied to the user's hair.

[0098] In some embodiments of this utility model, such as Figure 2 , Figure 5 and Figure 12 As shown, the nursing device 1 also includes multiple air outlet columns 500 and multiple toothed combs 600.

[0099] The air outlet column 500 is provided with an air guide channel 510, and the housing 100 is provided with an air outlet channel 110. Multiple air outlet columns 500 are connected to one side of the housing 100, and the air guide channel 510 is connected to the air outlet channel 110. Multiple combs 600 are connected to one side of the housing 100. At least some of the combs 600 are adjacent to the outer edge of the housing 100 relative to the air outlet column 500, and at least some of the combs 600 and multiple air outlet columns 500 are arranged alternately along the circumference of the housing 100.

[0100] The housing 100 is provided with a plurality of first air outlets 120 connected to the air outlet channel 110 on one side, and the plurality of first air outlets 120 are located between two adjacent air outlet columns 500.

[0101] Among them, the air outlet column 500, the toothed comb 600 and the first air outlet 120 can be located on the lower side of the housing 100, that is, on the side of the housing 100 facing the user's body. Multiple first air outlets 120, multiple air outlet columns 500 and multiple toothed combs 600 can all be arranged around the contact member 300.

[0102] Furthermore, a connecting hole can be constructed on the lower side of the housing 100, which is connected to the air outlet channel 110. The air outlet column 500 can be located at the connecting hole, and the air outlet end of the air outlet channel 110 is constructed as a second air outlet 511. In this way, the air guide channel 510 can be connected to the air outlet channel 110 through the connecting hole, so that the airflow can flow from the air outlet channel 110 through the connecting hole to the air guide channel 510, and be blown out through the second air outlet 511.

[0103] In addition, the second air outlet 511 can penetrate the air outlet column 500 along the thickness direction of the air outlet column 500. In this way, the central axis of the second air outlet 511 can be perpendicular to the central axis of the first air outlet 120. By simultaneously venting air through the first air outlet 120 and the second air outlet 511, the airflow can flow in multiple directions, thereby enabling the user's hair to be blown from multiple directions, resulting in a better blowing effect.

[0104] Furthermore, each first air outlet 120 is positioned between two adjacent air outlet columns 500. This arrangement prevents the air outlet columns 500 from obstructing the first air outlet 120, ensuring smoother airflow at the first air outlet 120. Additionally, the comb 600 is located adjacent to the outer edge of the housing 100 relative to the air outlet columns 500, and multiple combs 600 and multiple air outlet columns 500 are arranged alternately along the circumference of the housing 100. This arrangement prevents positional interference between the combs 600 and the air outlet columns 500, and also prevents the combs 600 from obstructing the first air outlet 120 and the second air outlet 511, ensuring smooth airflow at both the first air outlet 120 and the second air outlet 511.

[0105] In some embodiments of this utility model, such as Figure 5 and Figure 6 As shown, one end of the housing 100 along its length is provided with an air inlet 130, which is connected to the air outlet 110. The air outlet 130 is provided with multiple air guide ribs 140 on opposite sides of the air outlet 110.

[0106] Along the length of the housing 100, each air guide rib 140 is disposed between two adjacent air outlet columns 500, and / or, each air guide rib 140 is disposed between two adjacent first air outlets 120. Furthermore, along the length of the housing 100 away from the air inlet 130, the height of the plurality of air guide ribs 140 increases, thereby reducing the flow cross-sectional area of ​​the air outlet channel 110.

[0107] For example, the air inlet 130 can be connected to a hair dryer, so that the airflow from the hair dryer can enter the air outlet 110 through the air inlet 130 and flow out through the first air outlet 120 and the second air outlet 511, so as to realize the process of caring for the user's hair with the hair care device 1 while blowing the user's hair.

[0108] The height of the air guide rib 140 refers to the extension dimension of the air guide rib 140 along the width direction of the shell.

[0109] By setting multiple air guide ribs 140 to gradually reduce the flow area of ​​the air outlet channel 110, the airflow velocity at the positions of the air outlet channel 110 near the air inlet 130 and far from the air inlet 130 can be made similar. This makes the air outlet effect of the multiple first air outlets 120 and multiple second air outlets 511 similar, avoiding the air volume and air velocity at the end of the air outlet channel 110 being too small. The air outlet can be more uniform, resulting in a better user experience.

[0110] In addition, along the length of the housing 100, by placing each air guide rib 140 between two adjacent air outlet columns 500, or by placing each air guide rib 140 between two adjacent first air outlets 120, the airflow can be more effectively directed to multiple first air outlets 120 or air outlet columns 500 through the air guide rib 140, so as to ensure that the airflow of different first air outlets 120 or air outlet columns 500 is large.

[0111] The air guide rib 140 can be provided with a flow guide surface 141 at the end away from the housing 100. The flow guide surface 141 is located on the side of the air guide rib 140 facing the air inlet 130 and is away from the housing 100 along the width direction of the housing 100. The flow guide surface 141 can extend obliquely away from the air inlet 130. In this way, the flow guide surface 141 can be used to guide the airflow of the air outlet 110, so as to guide the airflow to the first air outlet 120 and the air outlet column 500, making the air outlet smoother.

[0112] In addition, the end of the air guide rib 140 facing the first air outlet 120 can be provided with a relief surface 142, that is, the end of the air guide rib 140 facing the first air outlet 120 can be provided with a notch-shaped structure. This can prevent the air guide rib 140 from blocking the first air outlet 120 and can also prevent the air guide rib 140 from interfering with the structure of the air outlet column 500, making the structural setting more reasonable.

[0113] In some embodiments of this utility model, such as Figure 4 and Figure 6 As shown, the housing 100 is provided with a mounting groove 150, which is located in the middle of the width direction of the housing 100, and the care component 200 is fixed in the mounting groove 150.

[0114] By providing a mounting groove 150 in the middle of the width direction of the housing 100, the care component 200 is fixed in the mounting groove 150. In this way, the care component 200 can be fixed inside the housing 100 and the care component 200 can be located in the center of the housing 100. This can prevent the care component 200 from being biased to one side of the housing 100, so as to release the care medium to the contact member 300 through the care component 200.

[0115] Furthermore, by setting the mounting groove 150, the nursing component 200 can be pre-positioned, which helps to simplify the assembly steps of the nursing component 200 and the housing 100, making assembly more convenient. Moreover, the inner wall of the mounting groove 150 can stop and limit the nursing component 200, preventing the nursing component 200 from shaking.

[0116] In some embodiments of this utility model, such as Figure 4 and Figure 9 As shown, the care component 200 is detachably connected to the housing 100; and / or, the contact 300 is detachably connected to the care component 200 or the housing 100.

[0117] In other words, the care component 200 can be detachably connected to the housing 100. Also, the contact 300 can be detachably connected to the care component 200, or the contact 300 can be detachably connected to the housing 100.

[0118] This configuration allows the care component 200 to be separated from the housing 100, and the contact 300 to be separated from the care component 200 or the housing 100. When the care component 200 or the contact 300 malfunctions, the care component 200 or the contact 300 can be removed separately for repair or replacement. This not only makes disassembly and assembly convenient and quick, but also saves on maintenance costs.

[0119] Furthermore, such as Figure 4 As shown, the nursing component 200 is provided with a first magnetic attraction part 201, and the housing 100 is provided with a second magnetic attraction part 160. The nursing component 200 and the housing 100 are magnetically connected through the first magnetic attraction part 201 and the second magnetic attraction part 160.

[0120] In this configuration, one of the first magnetic attraction part 201 and the second magnetic attraction part 160 can be a magnet, and the other can be a ferromagnetic material such as iron.

[0121] The nursing component 200 and the housing 100 are magnetically connected by the first magnetic part 201 and the second magnetic part 160. This can fix the nursing component 200 and the housing 100 in the vertical direction to prevent the nursing component 200 from falling out of the mounting groove 150. Moreover, the magnetic connection structure is simple, which makes it easier to assemble and disassemble the nursing component 200 and the housing 100, making the assembly and disassembly more convenient and quick.

[0122] The nursing device 1 according to another embodiment of the present invention is described below with reference to the accompanying drawings.

[0123] like Figures 1-11 As shown, the nursing device 1 according to an embodiment of the present invention includes a housing 100, a plurality of air outlet columns 500 and a plurality of toothed combs 600.

[0124] The housing 100 has a plurality of first air outlets 120 on one side, and a plurality of air outlet columns 500 connected to one side of the housing 100. Each first air outlet 120 is located between two adjacent air outlet columns 500. The air outlet column 500 is provided with an air guide channel 510, and the housing 100 is provided with an air outlet channel 110. The air guide channel 510 is connected to the air outlet channel 110. A plurality of combs 600 are connected to one side of the housing 100. At least a portion of the combs 600 are adjacent to the outer edge of the housing 100 relative to the air outlet columns 500, and at least a portion of the combs 600 and the plurality of air outlet columns 500 are arranged alternately along the circumference of the housing 100.

[0125] The air outlet column 500, the toothed comb 600, and the first air outlet 120 can be located on the lower side of the housing 100, that is, on the side of the housing 100 facing the user's body. Multiple first air outlets 120, multiple air outlet columns 500, and multiple toothed combs 600 can all be arranged around the contact member 300.

[0126] Furthermore, a connecting hole can be constructed on the lower side of the housing 100, which is connected to the air outlet channel 110. The air outlet column 500 can be located at the connecting hole, and the air outlet end of the air outlet channel 110 is constructed as a second air outlet 511. In this way, the air guide channel 510 can be connected to the air outlet channel 110 through the connecting hole, so that the airflow can flow from the air outlet channel 110 through the connecting hole to the air guide channel 510, and be blown out through the second air outlet 511.

[0127] In addition, the second air outlet 511 can penetrate the air outlet column 500 along the thickness direction of the air outlet column 500. In this way, the central axis of the second air outlet 511 can be perpendicular to the central axis of the first air outlet 120. By simultaneously venting air through the first air outlet 120 and the second air outlet 511, the airflow can flow in multiple directions, thereby enabling the user's hair to be blown from multiple directions, resulting in a better blowing effect.

[0128] Furthermore, each first air outlet 120 is positioned between two adjacent air outlet columns 500. This arrangement prevents the air outlet columns 500 from obstructing the first air outlet 120, ensuring smoother airflow at the first air outlet 120. Additionally, the comb 600 is located adjacent to the outer edge of the housing 100 relative to the air outlet columns 500, and multiple combs 600 and multiple air outlet columns 500 are arranged alternately along the circumference of the housing 100. This arrangement prevents positional interference between the combs 600 and the air outlet columns 500, and also prevents the combs 600 from obstructing the first air outlet 120 and the second air outlet 511, ensuring smooth airflow at both the first air outlet 120 and the second air outlet 511.

[0129] Thus, the nursing device 1 according to the present invention can simultaneously use the first air outlet 120 and the air column 500 to blow-dry the user's hair, thereby achieving blow-drying of the user's hair from multiple directions, resulting in better blowing effect and better user experience.

[0130] Furthermore, such as Figure 3 As shown, the nursing appliance 1 also includes a nursing component 200, a contact element 300, and a flexible adsorption element 400.

[0131] The care component 200 is detachably mounted to the housing 100 and is used to contain care medium. The contact 300 is detachably mounted to the care component 200 and / or the housing 100, and at least a portion of the contact 300 is exposed from one side of the housing 100. The exposed portion of the contact 300 is used to contact the user's hair. The flexible adsorption member 400 is disposed between the care component 200 and the contact 300, and the care component 200 selectively releases care medium to the contact 300. The contact 300 contacts the flexible adsorption member 400 to pick up the care medium.

[0132] For example, the flexible adsorption element 400 can be a sponge, but is not limited to a sponge.

[0133] Specifically, when the transfer chamber 221 is opened, the care medium can flow from the transfer chamber 221 to the flexible adsorption member 400. The flexible adsorption member 400 can absorb and spread the care medium to all parts of the flexible adsorption member 400, so that multiple parts of the contact member 300 can be evenly dipped in the care medium. Thus, when the care device 1 comes into contact with the user's hair through the contact member 300, the contact member 300 can make the care medium more evenly applied to the user's hair. The structural design is more reasonable and helps to improve the user experience.

[0134] In some embodiments of this utility model, such as Figure 4 As shown, the nursing component 200 includes a seat 230, a valve body 220, a cover 240, a sealing plug 250, and a flip cover 270.

[0135] The seat 230 is mounted on the housing 100 and has a storage chamber 231. The valve body 220 is movably connected to the seat 230 and together with the seat 230 defines the transfer chamber 221. The valve body 220 selectively releases nursing media from the transfer chamber 221 to the contact member 300 or connects the transfer chamber 221 to the storage chamber 231 to replenish nursing media from the storage chamber 231 to the transfer chamber 221.

[0136] The cover 240 is connected to the base 230 and covers the storage chamber 231. The cover 240 is provided with a liquid replenishment port 242 communicating with the storage chamber 231. The sealing plug 250 is installed on the liquid replenishment port 242 to block the liquid replenishment port 242. The flip cover 270 is rotatably connected to the cover 240 and is used to cover the sealing plug 250.

[0137] By providing a cover 240, the base 230 can be shielded to prevent impurities from entering the storage chamber 231, thus ensuring the cleanliness of the storage chamber 231 and preventing the care medium from being mixed with dust and impurities.

[0138] Furthermore, the valve body 220 selectively releases the nursing medium to the contact member 300 or connects the transfer chamber 221 to the storage chamber 231. Specifically, when the valve body 220 is in its initial state, the transfer chamber 221 can be connected to the storage chamber 231 to replenish the nursing medium into the transfer chamber 221 through the storage chamber 231, and the transfer chamber 221 is closed, thus interrupting the release of the nursing medium from the nursing component 200 to the contact member 300. When the valve body 220 moves downward to open the transfer chamber 221, the nursing medium in the transfer chamber 221 can flow to the contact member 300, at which point the transfer chamber 221 is disconnected from the storage chamber 231. With this configuration, each time the control mechanism 210 drives the valve body 220 to open the transfer chamber 221, a fixed amount of nursing medium can flow to the contact member 300. For example, the volume of the transfer chamber 221 can be 0.1 mL, but is not limited to 0.1 mL. This prevents excessive application of the care medium onto the user's hair through the contact element 300, allowing for precise control of the care medium flow and a better user experience.

[0139] By setting a sealing plug 250, the replenishment port 242 can be sealed, which can prevent dust and impurities from flowing into the storage chamber 231 from the replenishment port 242 to ensure the cleanliness of the care medium, and also prevent the care medium from flowing out from the replenishment port 242.

[0140] Furthermore, by providing a flip cover 270, the sealing plug 250 can be covered and protected, and the appearance of the care assembly 200 can be improved, making the care device 1 more aesthetically pleasing. Moreover, the flip cover 270 is rotatably connected to the cover body 240, and can be opened or closed simply by flipping it, making operation simpler and more convenient.

[0141] In some embodiments of this utility model, such as Figure 8 As shown, the nursing component 200 also includes a control mechanism 210, which is connected to the valve body 220 to selectively control the valve body 220 to release nursing media to the contact 300.

[0142] The control mechanism 210 includes a button 211, a guide post 212, and a resilient reset member 214.

[0143] Button 211 is movably connected to cover 240 and protrudes from cover 240. One end of guide post 212 abuts against button 211, and the other end of guide post 212 is fixedly connected to valve body 220. Elastic reset member 214 is sleeved on guide post 212, and both ends of elastic reset member 214 abut against button 211 and seat 230 respectively, so as to generate an elastic force that pushes button 211 to move away from seat 230.

[0144] Specifically, when button 211 is pressed, button 211 pushes valve body 220 to open transfer chamber 221 via guide post 212, thereby releasing nursing medium to contact member 300. Upon releasing button 211, elastic reset member 214 drives valve body 220 to close transfer chamber 221 via button 211 and guide post 212, connecting transfer chamber 221 to storage chamber 231 and interrupting the release of nursing medium to contact member 300.

[0145] In some embodiments of this utility model, such as Figure 3 and Figure 10 As shown, the contact element 300 is constructed as a roller, with both ends of the roller rotatably connected to the care assembly 200 and / or the housing 100 via bearings, and the roller includes a body 320 and a plurality of friction parts 340.

[0146] The contact 300 may be rotatably connected to the care assembly 200; or, the contact 300 may be rotatably connected to the housing 100; or, the contact 300 may be rotatably connected to both the care assembly 200 and the housing 100.

[0147] Furthermore, by setting bearings 350 at both ends of the roller, the roller can rotate more easily relative to the care component 200. With this setting, during the rolling process, multiple positions of the roller can contact the flexible adsorption component 400 and the user's hair respectively. The roller can continuously pick up the care medium on the flexible adsorption component 400, so that the care medium picked up by the multiple positions of the roller can be applied to the user's hair in sequence, resulting in a better care effect.

[0148] Specifically, the main body 320 extends along the axial direction of the roller and is provided with a plurality of dipping portions 330. The dipping portions 330 extend in a ring shape along the circumference of the main body 320. The friction portion 340 is provided on the main body 320 and extends in a ring shape along the circumference of the main body 320. The friction coefficient of the friction portion 340 is greater than that of the dipping portions 330. In this way, when the friction portion 340 comes into contact with the hair, a large friction force can be generated between the friction portion 340 and the hair, which can drive the roller to rotate so that the care medium on the roller can be fully and evenly applied to the hair.

[0149] Furthermore, multiple applicator portions 330 and multiple friction portions 340 are coaxially arranged and alternately distributed along the axial direction of the main body 320, with the diameter of the applicator portion 330 being larger than the diameter of the friction portion 340. This allows the multiple friction portions 340 to be distributed at multiple positions along the axial direction of the main body 320. The frictional force generated between the hair and the multiple friction portions 340 can drive the roller to rotate from multiple positions, preventing the roller from shifting due to force and further making the rotation of the roller easier. Moreover, the larger diameter of the applicator portion 330 allows it to protrude radially outward from the friction portion 340 along the radial direction of the main body 320, facilitating the application of the care medium from the flexible absorbent member 400 and ensuring easy contact between the applicator portion 330 and the user's hair, thereby applying the care medium to the user's hair.

[0150] The following description, with reference to the accompanying drawings, describes a nursing device 1 according to yet another embodiment of the present invention.

[0151] like Figures 1-11 As shown, the nursing device 1 according to an embodiment of the present invention includes a housing 100, a nursing component 200, and a contact element 300.

[0152] The care component 200 is mounted on the housing 100 and is used to contain care media. The contact 300 is mounted on the care component 200 and / or the housing 100, and at least a portion of the contact 300 is exposed from one side of the housing 100. The exposed portion of the contact 300 is used to contact the user's hair, and the care component 200 selectively releases care media to the contact 300.

[0153] The contact element 300 is constructed as a roller, with its two ends rotatably connected to the care assembly 200 and / or the housing 100 via bearings, and the roller includes a body 320 and a friction part 340.

[0154] The main body 320 extends along the axial direction of the roller and is provided with a dipping part 330. The dipping part 330 extends in a ring shape along the circumference of the main body 320. The friction part 340 is provided on the main body 320 and extends in a ring shape along the circumference of the main body 320. The friction part 340 and the dipping part 330 are coaxially arranged and arranged along the axial direction of the main body 320. The friction coefficient of the friction part 340 is greater than the friction coefficient of the dipping part 330.

[0155] It should be noted that both the dipping part 330 and the friction part 340 can pick up the nursing medium from the flexible adsorption member 400. A metal shaft 310 may be provided inside the main body 320, passing through the main body 320, and bearings 350 are respectively provided at both ends of the metal shaft 310.

[0156] Furthermore, the main body 320 can be made of hard plastic, meaning the dipping part 330 can be made of hard plastic, while the friction part 340 can be made of soft plastic. The main body 320 can be integrally injection molded, meaning the dipping part 330 and the rest of the main body 320 form a single integrated structure, which helps improve the structural strength of the roller.

[0157] By providing a friction part 340 on the contact member 300, and making the friction coefficient of the friction part 340 greater than the friction coefficient of the dipping part 330, a large frictional force can be generated between the friction part 340 and the hair when the friction part 340 comes into contact with the hair, thereby driving the roller to rotate so that the care medium on the roller can be fully and evenly applied to the hair.

[0158] Thus, the nursing device 1 according to the present invention can use the friction between the friction part 340 and the hair to drive the contact member 300 to rotate, and the contact member 300 can rotate stably so that the nursing medium on the contact member 300 can be fully and evenly applied to the hair.

[0159] In some embodiments of this utility model, such as Figure 10 As shown, there are multiple dip-taking portions 330 and multiple friction portions 340. The multiple dip-taking portions 330 and multiple friction portions 340 are arranged alternately along the axial direction of the main body 320, and the diameter of the dip-taking portion 330 is larger than the diameter of the friction portion 340.

[0160] In this way, multiple friction parts 340 can be distributed at multiple positions along the axial direction of the main body 320. The friction force generated between the hair and the multiple friction parts 340 can drive the roller to rotate from multiple positions, preventing the roller from being deflected by force and making the rotation of the roller easier. Furthermore, the diameter of the dipping part 330 is larger than the diameter of the friction part 340, so that the dipping part 330 can protrude outward from the friction part 340 along the radial direction of the main body 320, so as to facilitate the dipping part 330 to pick up the care medium from the flexible adsorption member 400, and at the same time facilitate the dipping part 330 to come into contact with the user's hair, thereby applying the care medium to the user's hair.

[0161] In some embodiments of this utility model, the nursing device 1 also includes a plurality of air outlet columns 500 and a plurality of toothed combs 600.

[0162] The air outlet column 500 is provided with an air guide channel, and the housing 100 is provided with an air outlet channel 110. Multiple air outlet columns 500 are connected to one side of the housing 100, and the air guide channel is connected to the air outlet channel 110. Multiple combs 600 are connected to one side of the housing 100. At least some of the combs 600 are adjacent to the outer edge of the housing 100 relative to the air outlet column 500, and at least some of the combs 600 and the air outlet column 500 are arranged alternately along the circumference of the housing 100.

[0163] The housing 100 is provided with a plurality of first air outlets 120 connected to the air outlet channel 110 on one side, and the plurality of first air outlets 120 are located between two adjacent air outlet columns 500.

[0164] Among them, the air outlet column 500, the toothed comb 600 and the first air outlet 120 can be located on the lower side of the housing 100, that is, on the side of the housing 100 facing the user's body. Multiple first air outlets 120, multiple air outlet columns 500 and multiple toothed combs 600 can all be arranged around the contact member 300.

[0165] Furthermore, a connecting hole can be constructed on the lower side of the housing 100, which is connected to the air outlet channel 110. The air outlet column 500 can be located at the connecting hole, and the air outlet end of the air outlet channel 110 is constructed as a second air outlet 511. In this way, the air guide channel 510 can be connected to the air outlet channel 110 through the connecting hole, so that the airflow can flow from the air outlet channel 110 through the connecting hole to the air guide channel 510, and be blown out through the second air outlet 511.

[0166] In addition, the second air outlet 511 can penetrate the air outlet column 500 along the thickness direction of the air outlet column 500. In this way, the central axis of the second air outlet 511 can be perpendicular to the central axis of the first air outlet 120. By simultaneously venting air through the first air outlet 120 and the second air outlet 511, the airflow can flow in multiple directions, thereby enabling the user's hair to be blown from multiple directions, resulting in a better blowing effect.

[0167] Furthermore, each first air outlet 120 is positioned between two adjacent air outlet columns 500. This arrangement prevents the air outlet columns 500 from obstructing the first air outlet 120, ensuring smoother airflow at the first air outlet 120. Additionally, the comb 600 is positioned near the outer edge of the housing 100 relative to the air outlet columns 500, and multiple combs 600 and multiple air outlet columns 500 are alternately arranged along the circumference of the housing 100. This avoids positional interference between the combs 600 and the air outlet columns 500, and also prevents the combs 600 from obstructing the first air outlet 120 and the second air outlet 511, ensuring smooth airflow at both the first air outlet 120 and the second air outlet 511.

[0168] In some embodiments of this utility model, such as Figure 3 and Figure 8 As shown, the nursing device 1 also includes a flexible adsorption member 400, which is disposed between the nursing component 200 and the contact member 300. The nursing component 200 selectively releases a nursing medium to the contact member 300, and the contact member 300 contacts the flexible adsorption member 400 to pick up the nursing medium.

[0169] For example, the flexible adsorption element 400 can be a sponge, but is not limited to a sponge.

[0170] Specifically, when the transfer chamber 221 is opened, the care medium can flow from the transfer chamber 221 to the flexible adsorption member 400. The flexible adsorption member 400 can absorb and spread the care medium to all parts of the flexible adsorption member 400, so that multiple parts of the contact member 300 can be evenly dipped in the care medium. Thus, when the care device 1 comes into contact with the user's hair through the contact member 300, the contact member 300 can make the care medium more evenly applied to the user's hair. The structural design is more reasonable and helps to improve the user experience.

[0171] In some embodiments of this utility model, such as Figure 3 and Figure 9 As shown, the contact 300 is detachably mounted to the care assembly 200 and / or the housing 100, and the care assembly 200 is detachably mounted to the housing 100, and the care assembly 200 includes the valve body 220, the cover 240, the sealing plug 250, the flip cover 270 and the control mechanism 210.

[0172] The seat 230 is mounted on the housing 100 and has a storage chamber 231. The valve body 220 is movably connected to the seat 230 and together with the seat 230 defines the transfer chamber 221. The control mechanism 210 is connected to the valve body 220 to selectively release the nursing medium from the transfer chamber 221 to the contact member 300 or to connect the transfer chamber 221 to the storage chamber 231 to replenish the nursing medium from the storage chamber 231 to the transfer chamber 221.

[0173] The control mechanism 210 includes a button 211, a guide post 212, and a resilient reset member 214.

[0174] Button 211 is movably connected to cover 240 and protrudes from cover 240. One end of guide post 212 abuts against button 211, and the other end of guide post 212 is fixedly connected to valve body 220. Elastic reset member 214 is sleeved on guide post 212, and both ends of elastic reset member 214 abut against button 211 and seat 230 respectively, so as to generate an elastic force that pushes button 211 to move away from seat 230.

[0175] Specifically, when button 211 is pressed, button 211 pushes valve body 220 to open transfer chamber 221 via guide post 212, thereby releasing nursing medium to contact member 300. Upon releasing button 211, elastic reset member 214 drives valve body 220 to close transfer chamber 221 via button 211 and guide post 212, connecting transfer chamber 221 to storage chamber 231 and interrupting the release of nursing medium to contact member 300.

[0176] Therefore, by setting the control mechanism 210 and the valve body 220 to be connected in a transmission manner, the control mechanism 210 directly drives the valve body 220 to move, which can more accurately control the release amount of the care medium and achieve higher control precision. This can prevent the release of too much or too little care medium, so that the care device 1 can more evenly apply the care medium to the user's hair, thereby improving the user experience.

[0177] Additionally, the cover 240 is connected to the base 230 and covers the storage chamber 231. The cover 240 is provided with a liquid replenishment port 242 communicating with the storage chamber 231. A sealing plug 250 is installed on the liquid replenishment port 242 to block the liquid replenishment port 242. The flip cover 270 is rotatably connected to the cover 240 and is used to cover the sealing plug 250.

[0178] By providing a cover 240, the base 230 can be shielded to prevent impurities from entering the storage chamber 231, thus ensuring the cleanliness of the storage chamber 231 and preventing the care medium from being mixed with dust and impurities.

[0179] By setting a sealing plug 250, the replenishment port 242 can be sealed, which can prevent dust and impurities from flowing into the storage chamber 231 from the replenishment port 242 to ensure the cleanliness of the care medium, and also prevent the care medium from flowing out from the replenishment port 242.

[0180] Furthermore, by providing a flip cover 270, the sealing plug 250 can be covered and protected, and the appearance of the care assembly 200 can be improved, making the care device 1 more aesthetically pleasing. Additionally, the flip cover 270 is rotatably connected to the cover body 240, and can be opened or closed simply by flipping it, making operation simpler and more convenient.

[0181] Other components and operations of the nursing device 1 according to the embodiments of this utility model are known to those skilled in the art and will not be described in detail here.

[0182] In the description of this specification, references to terms such as "specific embodiment" and "specific example" refer to a specific feature, structure, material, or characteristic described in connection with that embodiment or example that is included in at least one embodiment or example of the present invention. In this specification, illustrative expressions of the above terms do not necessarily refer to the same embodiment or example.

[0183] Although embodiments of the present invention have been shown and described, those skilled in the art will understand that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the claims and their equivalents.

Claims

1. A care appliance, characterized in that include: case; A nursing component is mounted on the housing and is used to contain nursing media. The nursing component includes a control mechanism, a valve body, a seat, and a cover. The seat is mounted on the housing and has a storage compartment for containing nursing media. The valve body is movably connected to the seat and together with the seat defines a transfer compartment. The cover is connected to the seat and covers the storage compartment. The control mechanism protrudes from the cover and is drively connected to the valve body. A contact element, the contact element being mounted on the care assembly and / or the housing, and at least a portion of the contact element being exposed from the housing, the contact element being for contacting the user's hair; The control mechanism selectively controls the valve body to release the nursing medium to the contact element, and the valve body selectively releases the nursing medium from the transfer chamber to the contact element, or connects the transfer chamber to the storage chamber to replenish the nursing medium from the storage chamber to the transfer chamber.

2. The care appliance of claim 1, wherein, The nursing component also includes: A sealing plug is provided on the cover body, which has a liquid replenishment port communicating with the storage chamber, and the sealing plug is installed on the liquid replenishment port to block the liquid replenishment port; A flip cover, rotatably connected to the cover body, and used to cover the sealing plug.

3. The care appliance of claim 2, wherein, The control mechanism includes: A button, which is movably connected to the cover and protrudes from the cover; A guide post, one end of which abuts against the button, and the other end of which is fixedly connected to the valve body; An elastic reset member is sleeved on the guide post, and both ends of the elastic reset member abut against the button and the base respectively, so as to generate an elastic force that pushes the button to move away from the base. When the button is pressed, the button pushes the valve body through the guide post to open the output end of the transfer chamber, thereby releasing the nursing medium to the contact element; and, After the button is released, the elastic reset member drives the valve body to close the output end of the transfer chamber and open the input end of the transfer chamber through the button and the guide post. The transfer chamber is connected to the storage chamber and the release of the nursing medium to the contact member is interrupted.

4. The care appliance of claim 1, wherein, Also includes: A flexible adsorption element is disposed between the care component and the contact element. The flexible adsorption element is used to adsorb the care medium, and the contact element contacts the flexible adsorption element to pick up the care medium.

5. The care appliance of claim 1, wherein, The contact element is constructed as a roller, and both ends of the roller are rotatably connected to the care assembly and / or the housing via bearings.

6. A care appliance according to claim 5, characterised in that, The roller includes: The main body extends along the axial direction of the roller and is provided with a dipping portion that extends in a ring shape along the circumference of the main body; The friction part is disposed on the main body and extends in a ring shape along the circumference of the main body. The friction part and the dipping part are arranged along the axial direction of the main body, and the friction coefficient of the friction part is greater than the friction coefficient of the dipping part.

7. A care appliance according to claim 6, characterised in that There are multiple dip-taking parts and multiple friction parts, which are coaxially arranged and alternately arranged along the axial direction of the main body. The diameter of the dip-taking part is larger than the diameter of the friction part.

8. The care appliance of claim 1, wherein, Also includes: Multiple air outlet columns are provided, each air outlet column is provided with an air guide channel, and an air outlet channel is provided inside the housing. The multiple air outlet columns are connected to one side of the housing, and the air guide channel is connected to the air outlet channel. Multiple toothed combs are connected to one side of the housing, at least a portion of the toothed combs are adjacent to the outer edge of the housing relative to the air outlet column, and at least a portion of the toothed combs and the air outlet column are arranged alternately along the circumference of the housing; The housing is provided with a plurality of first air outlets on one side, which are connected to the air outlet channel, and the plurality of first air outlets are located between two adjacent air outlet columns.

9. A care appliance according to claim 8, characterised in that, An air inlet is provided at one end of the shell along its length. The air inlet is connected to the air outlet channel, and multiple air guide ribs are provided on opposite sides of the air outlet channel. Wherein, along the length direction of the housing, each of the air guide ribs is disposed between two adjacent air outlet columns, and / or, each of the air guide ribs is disposed between two adjacent first air outlets; and, Along the length of the housing, away from the air inlet, the height of the plurality of air guide ribs increases, thereby reducing the flow cross-sectional area of ​​the air outlet channel.

10. The care appliance of claim 1, wherein, The housing is provided with a mounting groove located in the middle of the width direction of the housing, and the care component is fixed in the mounting groove.

11. The care appliance of claim 1, wherein, The care component is detachably connected to the housing; and / or, The contact element is detachably connected to the care component or the housing.

12. The care appliance of claim 11, wherein, The nursing component is provided with a first magnetic attraction part, and the housing is provided with a second magnetic attraction part. The nursing component and the housing are magnetically connected through the first magnetic attraction part and the second magnetic attraction part.