A type of atomizing comb
By incorporating a locking structure and a plug-in connection method on the atomizing comb, the problem of easy detachment of the atomizing chamber is solved, enabling convenient replacement and fixation of the atomizing chamber, thereby improving user experience and device reliability.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHENZHEN NOEN MEDICAL EQUIP CO LTD
- Filing Date
- 2025-07-29
- Publication Date
- 2026-07-31
AI Technical Summary
The atomizing chamber of existing essential oil combs is prone to detaching due to misoperation when changing or refilling essential oils, resulting in inconvenience and waste.
A misting comb was designed, which uses a locking structure to detachably fix the misting chamber to the comb body. Electrical connection is achieved by plugging and unplugging. Locking and elastic parts are set to ensure that the misting chamber does not come off without external force, thus preventing accidental removal.
It enables convenient replacement and fixation of the atomizing chamber, avoiding detachment of the atomizing chamber due to accidental operation, thus improving the user experience and the reliability of the device.
Smart Images

Figure CN224572360U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of hair care devices, specifically to an atomizing comb. Background Technology
[0002] Combs, tools for combing hair, are increasingly becoming a focus of attention in the hair care and maintenance field. Users have higher and higher demands for related products, and some combs have emerged that can solve scalp problems or provide smoothing and conditioning effects for hair.
[0003] For example, some atomizing hair oil combs have appeared on the market. These combs spray small-molecule hair oil onto the hair or scalp to achieve hair care and health benefits. However, since the atomizing hair oil is a consumable, it needs to be replenished after a period of use. The atomizing chamber of existing hair oil combs can usually be replaced by plugging and unplugging it. However, the atomizing chamber lacks a locking mechanism. If the chamber is accidentally pulled out, it may detach from the main unit when it is no longer needed to replenish the atomizing hair oil or replace the chamber. Therefore, this feature needs improvement. Utility Model Content
[0004] The purpose of this utility model is to address the defects and shortcomings of the existing technology by providing an atomizing comb that allows the atomizing chamber to be easily inserted and removed from the comb body while locking the atomizing chamber with a locking structure to prevent it from being lost due to accidental operation or lack of external force.
[0005] To achieve the above objectives, the technical solution adopted by this utility model is as follows: an atomizing comb, comprising: an atomizing chamber having an air inlet and an air outlet; a comb body having multiple comb teeth and an atomizing outlet on one side, an atomizing channel communicating with the atomizing outlet within the comb body, and an insertion cavity for inserting the atomizing chamber into the comb body, the air outlet of the atomizing chamber communicating with the atomizing channel of the comb body; an atomizing core disposed within the atomizing chamber and connected to the air inlet and the air outlet; and a locking structure disposed on the comb body for detachably fixing the atomizing chamber inserted into the insertion cavity.
[0006] Optionally, the locking structure includes: a locking member hinged to the comb body and configured to lock and fix with the atomizing chamber in a locked position; a force-applying part disposed on the locking member and exposed on the outer surface of the comb body; and an elastic member disposed between the locking member and the comb body for providing a restoring force to the locking member; the force-applying part is used to drive the locking member to swing to the unlocked position against the restoring force of the elastic member, so that the locking member is disengaged from the atomizing chamber; the atomizing chamber is inserted into the insertion cavity, and one end of the locking member automatically swings to the locked position under the restoring force of the elastic member, so that the locking member is fixed with the atomizing chamber.
[0007] Optionally, the comb body is provided with a movable cavity, the locking member is hinged in the movable cavity, and the force-applying part is fixed on one end of the locking member and extends from the movable cavity to the outer surface of the comb body.
[0008] Optionally, the outer surface of the atomizing chamber is provided with a slot, and the other end of the locking member is provided with a locking part that can engage with the slot.
[0009] Optionally, the comb body includes an inner shell and an outer shell sleeved outside the inner shell. The locking member is hinged in the movable cavity formed by the inner shell and the outer shell. The insertion cavity is disposed in the inner shell. The outer surface of the outer shell is provided with a pressing hole for the force-applying part to extend out. The inner shell is provided with a movable hole communicating with the insertion cavity and the movable cavity. The locking part can pass through the movable hole and engage with the slot for fixation.
[0010] Optionally, a liquid replenishment hole is provided on the atomizing chamber and located inside the insertion cavity, and a sealing plug for sealing the liquid replenishment hole is provided on the atomizing chamber.
[0011] Optionally, a first magnetic element is provided on the inner wall of the insertion cavity, and a second magnetic element is provided on the atomizing chamber that can be magnetically attracted and fixed to the first magnetic element.
[0012] Optionally, the atomizing comb further includes: a control circuit board, a pair of conductive electrodes electrically connected to the atomizing core are provided on the outer wall of the atomizing chamber, a pair of metal electrodes corresponding to the conductive electrodes are provided on the inner wall of the insertion cavity, the control circuit board is electrically connected to the metal electrodes, the atomizing chamber is inserted into the insertion cavity, and the conductive electrodes and the metal electrodes are in contact and connected.
[0013] Optionally, the comb body is provided with an air intake channel, the air inlet is connected to the air intake channel, and the atomizing comb also includes an air pump, which is connected to the end of the air intake channel away from the insertion cavity via a conduit.
[0014] Optionally, the atomizing comb further includes a handle, a battery, a button switch, and a control circuit board. One end of the handle is fixed to the outer wall of the comb body. The air pump, the control circuit board, and the battery are all disposed inside the handle. The button switch is disposed on the outer wall of the handle. The atomizing core, the battery, the button switch, and the air pump are all electrically connected to the control circuit board.
[0015] After adopting the above technical solution, the beneficial effects of this utility model are as follows: 1. The atomizing chamber is electrically and pneumatically connected to the comb body through a plug-in method, which makes it convenient for users to replace atomizing chambers with different effects or to disassemble and add essential oils. In the working state, the essential oil that has penetrated into the atomizing core is heated and atomized. The atomized essential oil mist is sprayed onto the user's hair and scalp through the air outlet, mist outlet channel and mist outlet. Since the atomizing core atomizes the essential oil by heating, the essential oil mist sprayed onto the user's hair or scalp will not be too cold and affect the user's experience.
[0016] 2. A locking structure is set on the comb body so that the atomizing chamber cannot be pulled out of the comb body without the user operating the locking structure. The locking structure locks the atomizing chamber to prevent it from coming out of the insertion cavity without external force or by accidental pulling action, thus preventing the atomizing chamber from being lost or the atomization from stopping during use and affecting the user experience. Attached Figure Description
[0017] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0018] Figure 1 This is a schematic diagram of the structure of this utility model;
[0019] Figure 2 This is a structural schematic diagram of another aspect of this utility model;
[0020] Figure 3 This is a cross-sectional view of the present invention;
[0021] Figure 4 yes Figure 3 Enlarged diagram of A in the middle;
[0022] Figure 5 yes Figure 3 Enlarged diagram of B in the middle;
[0023] Figure 6This is a schematic diagram of the structure of the atomizing comb with the atomizing chamber removed, according to this utility model.
[0024] Figure 7 This is an exploded view of the present invention;
[0025] Figure 8 This is an exploded view of the present invention from another direction;
[0026] Figure 9 This is a schematic diagram showing the state in which the outer shell of this utility model is removed from the inner shell and the locking structure is removed from the inner shell.
[0027] Figure 10 This is a schematic diagram showing the state of the atomizing comb with the light-transmitting plate and the second comb tooth assembly open.
[0028] Figure 11 This is a schematic diagram of the atomizing chamber;
[0029] Figure 12 This is a schematic diagram of the atomizing chamber from another direction;
[0030] Figure 13 This is a cross-sectional view of the atomizing chamber.
[0031] Explanation of reference numerals in the attached drawings: 1. Atomizing chamber; 12. Air inlet; 13. Air outlet; 14. Slot; 15. Second magnetic component; 16. Sealing ring; 17. Sealing plug; 18. Oil reservoir; 100. Guide section; 2. Comb body; 20. Air inlet channel; 21. Comb teeth; 211. First electrode plate; 212. Second electrode plate; 22. Atomizing channel; 23. Insertion cavity; 24. Atomizing outlet; 25. Movable cavity; 26. Movable hole; 27. First magnetic component; 28. Inner shell; 29. Outer shell 200. Guide groove; 3. Atomizing core; 31. Core tube; 32. Oil-guiding cotton; 33. Heating element; 4. Locking structure; 41. Locking component; 410. Force-applying part; 411. Locking part; 42. Elastic component; 43. Hinge shaft; 5. Control circuit board; 51. Conductive electrode; 52. Metal electrode; 6. Air pump; 7. Handle; 70. Battery; 71. Push-button switch; 72. Charging interface; 8. Phototherapy component; 81. Light-transmitting cover; 82. Lamp panel; 83. Light-transmitting plate; 9. Sealing cover.
[0032] The realization of the purpose, functional features and advantages of this utility model will be further explained in conjunction with the embodiments and with reference to the accompanying drawings. Detailed Implementation
[0033] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0034] It should be noted that if the embodiments of this utility model involve directional indicators (such as up, down, left, right, front, back, etc.), the directional indicators are only used to explain the relative positional relationship and movement of the components in a certain specific posture (as shown in the figure). If the specific posture changes, the directional indicators will also change accordingly.
[0035] Furthermore, if the embodiments of this utility model involve descriptions such as "first" or "second," these descriptions are for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated. Therefore, a feature defined with "first" or "second" may explicitly or implicitly include at least one of those features. Additionally, the meaning of "and / or" throughout the text is to include three parallel solutions; for example, "A and / or B" includes solution A, solution B, or a solution that simultaneously satisfies A and B. Furthermore, the technical solutions of the various embodiments can be combined with each other, but this must be based on the ability of those skilled in the art to implement them. When the combination of technical solutions is contradictory or impossible to implement, it should be considered that such a combination of technical solutions does not exist and is not within the scope of protection claimed by this utility model.
[0036] This embodiment relates to an atomizing comb, such as Figure 1-13 As shown, the device includes an atomizing chamber 1, a comb body 2, an atomizing core 3, and a locking structure 4. The atomizing chamber 1 is used to hold hair care essential oils or liquids, and has an air inlet 12 and an air outlet 13. The comb body 2 has multiple comb teeth 21 and a mist outlet 24 on one side. Specifically, the comb teeth 21 and the mist outlet 24 are located on the same side of the comb body 2. The comb body 2 has a mist outlet channel 22 inside, and a insertion cavity 23 for inserting the atomizing chamber 1 is provided on the comb body 2. The mist outlet channel 22 connects the insertion cavity 23 and the mist outlet 24. When the atomizing chamber 1 is inserted into the comb body 2, the air outlet 13 of the atomizing chamber 1 is connected to the mist outlet channel 22 of the comb body 2. The atomizing core 3 is located inside the atomizing chamber 1 and connected to the air inlet 12 and the air outlet 13, and is used to heat and atomize the guided essential oils or liquids. A locking structure 4 is provided on the comb body 2 to detachably fix the atomizing chamber 1 inserted into the insertion cavity 23. The user can operate the locking structure 4 to separate it from the atomizing chamber 1 to release the fixation of the atomizing chamber 1.
[0037] It should be noted that the atomizer core 3 can be a cotton wick atomizer or a ceramic wick atomizer using existing technology, for example, Figure 3 , 10 As shown, the cotton wick atomizing core 3 includes: a core tube 31, an oil-guiding cotton 32, and a heating element 33. The oil-guiding cotton 32 is disposed inside the core tube 31, and the heating element 33 is disposed inside the core tube 31. The oil-guiding cotton 32 is wrapped around the heating element 33 and partially extends outward from the inside of the core tube 31, used to guide the essential oil or liquid medicine in the atomization chamber 1 to the heating element 33 for heating and atomization. Since the cotton wick atomizing core 3 and the ceramic wick atomizing core 3 are existing technologies, their specific structures can be referred to the atomizing core 3 in the e-cigarette cartridge. Therefore, the detailed structures of various types of atomizing cores 3 will not be described in detail.
[0038] Specifically, in some embodiments, to reduce the risk of oil leakage in the atomizing chamber 1, the atomizing chamber 1 is provided with an oil-retaining cotton 18. The oil-retaining cotton 18 is used to store hair care essential oils or liquids. The oil-guiding cotton 32 of the atomizing core 3 extends from the inside out into the oil-retaining cotton 18 to guide the essential oils or liquids on the oil-retaining cotton 18 to the heating element of the atomizing core 3. The oil-retaining cotton 18 has good oil absorption and retention properties, and can absorb and store hair care essential oils or liquids, avoiding direct contact between the atomizing core 3 and a large amount of hair care essential oils or liquids, thereby reducing the risk of oil leakage caused by poor sealing or pressure changes in the atomizing core 3. In other embodiments, the atomizing core 3 penetrates through the oil-retaining cotton 18 and is connected at both ends to the air inlet 12 and the air outlet 13. The core tube 31 has a through hole connecting the oil-guiding cotton 32 and the oil-retaining cotton 18. The essential oils or liquids on the oil-retaining cotton 18 permeate into the oil-retaining cotton 18 through the through hole for heating and atomization by the heating wire.
[0039] The atomizing chamber 1 is electrically and pneumatically connected to the comb body 2 via a plug-in method, allowing users to easily replace the atomizing chamber 1 with different effects or add essential oils. In operation, the atomizing core 3 heats and atomizes the essential oil that has permeated into it. The atomized essential oil mist is then sprayed onto the user's hair and scalp through the air outlet 13, the mist outlet channel 22, and the mist outlet 24. Since the atomizing core 3 atomizes the essential oil by heating, the essential oil mist sprayed onto the user's hair or scalp will not be too cold and will not affect the user's experience.
[0040] A locking structure 4 is provided on the comb body 2 so that the atomizing chamber 1 cannot be pulled out of the comb body 2 without the user operating the locking structure 4. By locking the atomizing chamber 1 with the locking structure 4, the atomizing chamber 1 is prevented from coming out of the insertion cavity 23 without external force or by the user's accidental pulling action, thus avoiding the loss of the atomizing chamber 1 or the atomization stopping during use, which would affect the user's experience.
[0041] In some embodiments, to achieve rapid locking and unlocking of the atomizing chamber 1 by the locking structure 4, such as... Figure 2 , 4As shown in Figure 9, the locking structure 4 includes a locking member 41, a force-applying part 410, and an elastic member 42. The locking member 41 is hinged to the comb body 2 and configured to be locked and fixed to the atomizing chamber 1 in the locked position. The force-applying part is disposed on the locking member 41 and exposed on the outer surface of the comb body 2 for user force application. The elastic member 42 is disposed between the locking member 41 and the comb body 2 to provide a restoring force to the locking member 41. In the unlocked state, the force-applying part 410 is operated to drive the locking member 41 to swing to the unlocked position against the restoring force of the elastic member 42, so that the locking member 41 is released from the fixation of the atomizing chamber 1. Figure 3 , 4 As shown, the locking member 41 is positioned in the locked position at the end away from the force-applying part 410. In the locked state, the atomizing chamber 1 is inserted into the insertion cavity 23, and one end of the locking member 41 automatically swings to the locked position under the restoring force of the elastic member 42, thereby fixing the locking member 41 to the atomizing chamber 1. In this embodiment, the elastic member 42 is a spring, torsion spring, spring sheet, or spring block, preferably a spring or torsion spring. In other embodiments, the elastic member 42 can be elastic silicone.
[0042] Furthermore, such as Figure 3-4 As shown in Figure 8-13, the comb body 2 is provided with a movable cavity 25, and the locking member 41 is hinged in the movable cavity 25. The force-applying part 410 is fixed on one end of the locking member 41 and extends from the movable cavity 25 to the outer surface of the comb body 2. The outer surface of the atomizing chamber 1 is provided with a slot 14, and the other end of the locking member 41 is provided with a locking part 411 that can engage with the slot 14. Specifically, the locking part 411 is located on the side of the locking member 41 away from the force-applying part 410 and opposite to the force-applying part 410. When the atomizing chamber 1 is inserted into the insertion cavity 23, one end of the locking member 41 automatically swings to the locking position under the restoring force of the elastic member 42, so that the locking part 411 engages with the slot 14. The user presses the locking part 41 to overcome the restoring force of the elastic part 42 and swing it to the unlocked position, so that the locking part 41 is released from the fixation of the atomizing chamber 1, so that the user can pull the atomizing chamber 1 out of the comb body 2. It has the functions of simple operation and quick locking and unlocking. In this embodiment, the locking part 411 is triangular or wedge-shaped.
[0043] In some embodiments, such as Figure 7 , 8 As shown in Figures 11 and 12, a guide portion 100 is protruding from the outer wall of the atomizing chamber 1, and a guide groove 200 adapted to the guide portion 100 is provided on the inner wall of the insertion cavity 23. When the atomizing chamber 1 is inserted into the insertion cavity 23, the guide portion 100 is inserted along the guide groove 200 to guide and position the insertion of the atomizing chamber 1, so as to avoid the position of the atomizing chamber 1 shifting during the insertion process and affecting the locking of the locking portion 411 and the slot 14.
[0044] In this embodiment, to ensure that the locking part 411 remains locked to the slot 14 of the atomizing chamber 1 under the restoring force of the elastic member 42, such as Figure 3 , 4 As shown in Figure 9, the elastic element 42 is disposed within the movable cavity 25, with one end connected to the comb body 2 and the other end connected to the locking element 41 near the force-applying part 410. In some embodiments, the elastic element 42 is disposed within the movable cavity 25, with one end connected to the locking element 41 near the locking part 411 and the other end connected to the comb body 2. In some embodiments, two elastic elements 42 are provided: one elastic element 42 is disposed within the movable cavity 25, with one end connected to the comb body 2 and the other end connected to the locking element 41 near the force-applying part 410; the other elastic element 42 has one end connected to the locking element 41 near the locking part 411 and the other end connected to the comb body 2.
[0045] In some embodiments, such as Figure 3 , 4 As shown in Figure 9, the comb body 2 includes a shell, which includes an inner shell 28 and an outer shell 29 fitted over the inner shell 28. A locking member 41 is hinged within the movable cavity 25 formed by the inner shell 28 and the outer shell 29. The outer surface of the outer shell 29 has a pressing hole for a force-applying part 410 to extend from the movable cavity 25 through the pressing hole, allowing for user operation. The inner shell 28 has a movable hole 26 connecting the insertion cavity 23 and the movable cavity 25. An elastic member 42 is disposed between the locking member 41 and the inner shell 28. The locking part 411 can pass through the movable hole 26 and engage with the slot 14 for fixation. In this embodiment, the outer surface of the inner shell 28 has a movable groove, and the cavity between the movable groove and the outer shell 29 forms the movable cavity 25. The movable hole 26 connects the movable groove and the insertion cavity 23. The two ends of the elastic member 42 are respectively fixed to the locking member 41 and the bottom of the movable groove. In this embodiment, the locking part 411 has a slope or curved surface on the side near the insertion cavity 23, and the cross-section of the locking part 411 gradually decreases towards the opening of the insertion cavity 23. The middle part of the locking member 41 is rotatably assembled in the movable cavity 25 via a hinge shaft 43. Specifically, a rotating hole is provided on the locking member 41 between the force-applying part 410 and the locking part 411, and the hinge shaft 43 passes through the rotating hole and is connected to the two side walls of the outer casing 29 at both ends. In other embodiments, a rotating post protrudes from the side wall of the locking member 41 between the force-applying part and the locking part 411, and a rotating groove is provided on the inner side wall of the movable cavity 25 for the rotating post to be inserted, and the rotating post is rotatably assembled in the rotating groove.
[0046] It should be noted that when unlocking is required, the operating force unit 410 drives the locking member 41 to swing to the unlock position against the restoring force of the elastic member 42, so that the locking member 41 retracts into the movable cavity 25 and drives the locking part 411 to retract into the movable hole 26 and disengage from the atomizing chamber 1. When locking the comb body 2 and the atomizing chamber 1 is required, the atomizing chamber 1 is inserted into the insertion cavity 23, and one end of the locking member 41 automatically swings to the locking position under the restoring force of the elastic member 42, so that the locking part 411 passes through the movable hole 26 and engages with the slot 14 of the atomizing chamber 1.
[0047] In other embodiments, the outer surface of the atomizing chamber 1 is provided with a protruding snap-fit portion, and the locking member 41 is provided with a snap-fit hole that engages with the snap-fit portion. In this embodiment, the inner sidewall of the insertion cavity 23 is provided with a guide rail groove that engages with the snap-fit portion and is connected at one end to the movable hole 26, and the other end of the locking member 41 is provided with a snap-fit groove on the side opposite to the force-applying portion 410. When the atomizing chamber 1 is inserted into the insertion cavity 23, the snap-fit portion slides along the guide rail groove to engage with the snap-fit groove, thereby achieving the locking state of the locking structure 4 on the atomizing oil chamber.
[0048] In this embodiment, as Figure 3 , 5 As shown in Figures 11-13, the comb teeth 21 protrude from one side of the outer shell 29, and the insertion cavity 23 is disposed on the inner shell 28, extending inward from the side of the inner shell 28 away from the comb teeth 21. A sealing ring 16 is fitted on the outer wall of the atomizing chamber 1 near the opening of the insertion cavity 23. The sealing ring 16 reduces gas leakage from the gap between the opening of the insertion cavity 23 and the atomizing chamber 1, while increasing the friction between the atomizing chamber 1 and the inner wall of the insertion cavity 23, further ensuring that the atomizing chamber 1 is stably inserted into the insertion cavity 23, and reducing the risk of the atomizing chamber 1 detaching from the comb body 2.
[0049] In some embodiments, such as Figure 3 , 7 As shown in Figures 11 and 13, to ensure that the atomizing chamber 1 is more stably fixed within the insertion cavity 23, a first magnetic element 27 is provided on the inner wall of the insertion cavity 23, and a second magnetic element 15 is provided on the atomizing chamber 1, which can be magnetically attracted and fixed to the first magnetic element 27. At least one of the first magnetic element 27 and the second magnetic element 15 is a magnet, and the other may be a metal or a magnet that can be attracted by a magnet.
[0050] In some embodiments, to make it easier for the atomizing chamber 1 to be pulled out of the insertion cavity 23 when the locking part 411 is in the unlocked position, a first magnet is embedded in the insertion cavity 23 on the side opposite to the opening of the insertion cavity 23, and a second magnet corresponding to the first magnet is provided on the insertion side of the atomizing chamber 1. The first magnets repel each other magnetically. When the locking part 411 is in the unlocked position, the atomizing chamber 1 moves outward and partially exits the insertion cavity 23 under the action of the repulsive force of the magnets. In other embodiments, an elastic member 42 is fixed in the insertion cavity 23 on the side opposite to the opening of the insertion cavity 23. When the atomizing chamber 1 is inserted into the insertion cavity 23, the atomizing chamber 1 compresses the elastic member 42. When the locking part 411 is in the unlocked position, the atomizing chamber 1 partially exits the insertion cavity 23 under the restoring force of the elastic member 42.
[0051] In some embodiments, such as Figure 3 , 13As shown, a liquid replenishment hole is provided on the atomizing chamber 1 and located within the insertion cavity 23. A sealing plug 17 is provided on the atomizing chamber 1 to seal the liquid replenishment hole. If the atomizing medium, such as essential oil or liquid medicine, is insufficient in the atomizing chamber 1, the user can pull out the sealing plug 17 to open the liquid replenishment hole and then inject essential oil or liquid medicine into the atomizing chamber 1 through the liquid replenishment hole. After replenishment, the sealing plug 17 is used to seal the liquid replenishment hole again, allowing the atomizing chamber 1 and the atomizing core 3 to be reused and avoiding waste. When the atomizing chamber 1 is inserted into the insertion cavity 23, the sealing plug 17 is located within the insertion cavity 23, and the sealing plug 17 is not exposed to prevent it from detaching from the liquid replenishment hole and causing leakage from the atomizing chamber 1. The sealing plug 17 is made of silicone or rubber.
[0052] In some embodiments, such as Figure 3 , 6 As shown in Figures 7 and 11, to achieve electrical connection between the atomizing chamber 1 and the comb body 2 via a plug-in method, the atomizing comb further includes: a control circuit board 5; a pair of conductive electrodes 51 electrically connected to the atomizing core 3 are provided on the outer wall of the atomizing chamber 1; a pair of metal electrodes 52 corresponding to the conductive electrodes 51 are provided on the inner wall of the insertion cavity 23; the control circuit board is electrically connected to the metal electrodes 52; when the atomizing chamber 1 is inserted into the insertion cavity 23, the conductive electrodes 51 and the metal electrodes 52 abut against each other and conduct electricity. Optionally, the conductive electrodes 51 and the metal electrodes 52 can be metal sheets. In other embodiments, one of the conductive electrodes 51 and the metal electrodes 52 is a metal probe, and the other is a metal sheet or a metal sheet with a groove.
[0053] In some embodiments, to ensure that the essential oil mist from the atomizing chamber 1 is fully sprayed onto the user's hair or scalp, and to reduce the risk of the essential oil mist clogging the mist outlet 24, mist outlet channel 22, and / or air outlet 13 due to cooling, such as... Figure 3 As shown, the comb body 2 is provided with an air intake channel 20. One end of the air intake channel 20 is connected to the insertion cavity 23. When the atomizing chamber 1 is inserted into the insertion cavity 23, the air inlet 12 is connected to the air intake channel 20. The atomizing comb also includes an air pump 6. The air pump 6 is connected to the end of the air intake channel 20 away from the insertion cavity 23 through a conduit. The air pump 6 increases the flow rate of gas in the atomizing core 3 and the mist outlet channel 22, thereby allowing the atomized essential oil to pass through the mist outlet channel 22 quickly, thereby reducing the risk of the mist outlet channel 22 and the mist outlet 24 being blocked.
[0054] In some embodiments, for ease of user operation and portability, the atomizing comb can be used without being connected to mains power, such as... Figure 1-3As shown in Figures 6-9, the atomizing comb also includes a handle 7, a battery 70, a push-button switch 71, and a control circuit board 5. One end of the handle 7 is fixed to the outer wall of the comb body 2. The air pump 6, the control circuit board 5, and the battery 70 are all disposed inside the handle 7. The push-button switch 71 is disposed on the outer wall of the handle 7. The atomizing core 3, the battery 70, the push-button switch 71, and the air pump 6 are all electrically connected to the control circuit board 5. In this embodiment, a charging interface 72 electrically connected to the control circuit board 5 is embedded in the handle 7. The charging interface 72 can be a USB Type-A interface, a USB Type-B interface, a Type-C interface, or a Lightning interface. Furthermore, a charging slot is provided on the handle 7, and the charging interface 72 is embedded in the bottom of the charging slot. The opening of the charging slot is covered with a sealing cap 9 to prevent dust or liquid from entering the charging interface 72, which would affect the service life of the atomizing comb. In this embodiment, the handle 7 is designed at an angle to the comb body 2. Specifically, the handle 7 is set perpendicular to the comb body 2.
[0055] In some embodiments, such as Figure 3 , 7 As shown in Figure 8, the atomizing comb also includes a phototherapy component 8. The phototherapy component 8 is disposed inside the comb body 2 near the comb teeth 21, and the light emitted by the phototherapy component 8 is emitted outward toward the comb teeth 21. Specifically, the phototherapy component 8 includes a light-transmitting cover 81 and a lamp plate 82. The light-transmitting cover 81 is disposed on the outer casing 29 near the comb teeth 21, and the comb teeth 21 protrude from the light-transmitting cover 81. The lamp plate 82 is disposed inside the outer casing 29 and is disposed opposite to the light-transmitting cover 81. The lamp plate 82 is electrically connected to the control circuit board 5, and the lamp beads on the lamp plate 82 are disposed toward the light-transmitting cover 81.
[0056] It should be noted that the light emitted by the LED beads is projected outwards through the light-transmitting part to irradiate the skin for a cosmetic effect. The light panel 82 can emit one or more of the following: red, blue, purple, or other colors. Different types of LED beads can be configured as needed. The LED beads are either LED beads or nano LED beads. By incorporating the phototherapy component 8 onto the atomizing comb, it acquires phototherapy functionality, enhancing the comb's functionality and improving the user experience.
[0057] In some embodiments, such as Figure 7-10As shown, at least two comb teeth 21 are made of conductive material, and the two conductive comb teeth 21 are electrically connected to the control circuit board 5 to form a pair of micro-current electrodes. In other embodiments, a fixing groove is provided on the light-transmitting cover 81, and a light-transmitting plate 83 is provided on the fixing groove. Multiple comb teeth 21 are arranged in a circular array. The multiple comb teeth 21 are divided into a first comb tooth group 21 and a second comb tooth group 21. Both the first comb tooth group 21 and the second comb tooth group 21 are made of conductive material. The first comb tooth group 21 includes a first electrode plate 211 disposed between the light-transmitting cover 81 and the light-transmitting plate 83, and multiple conductive comb teeth 21 with one end disposed on the first electrode plate 211 and the other end extending outward through the light-transmitting plate 83. The second comb teeth 21 are arranged between the lamp plate 82 and the light-transmitting plate 83 and spaced apart from the first electrode plate 211. Multiple conductive comb teeth 21 are also present, with one end mounted on the second electrode plate 212 and the other extending outward through the light-transmitting plate 83. The first electrode plate 211 and the second electrode plate 212 are electrically connected to the control circuit board 5, forming a pair of microcurrent electrodes. It should be noted that the control circuit board 5 has an electric pulse massage circuit, and the pair of microcurrent electrodes are connected to this circuit. This allows the microcurrent electrodes to contact the skin and utilize pulsed current for physiotherapy / massage, further enhancing the functionality of the atomizing comb.
[0058] In other embodiments, the atomizing comb also includes a vibration motor (not shown in the figure), which is disposed inside the housing 29 near the comb teeth 21 and is electrically connected to the control circuit board 5. It should be noted that the push-button switch is used to control the working mode of the atomizing comb, such as atomization mode, light therapy mode, vibration massage mode, or microcurrent stimulation mode.
[0059] The above description is only used to illustrate the technical solution of this utility model and is not intended to limit it. Any other modifications or equivalent substitutions made by those skilled in the art to the technical solution of this utility model, as long as they do not depart from the spirit and scope of the technical solution of this utility model, should be covered within the scope of the claims of this utility model.
Claims
1. An atomising comb characterised in that, include: An atomizing chamber, wherein an air inlet and an air outlet are provided; The comb body has multiple comb teeth and a mist outlet on one side. The comb body has a mist outlet channel communicating with the mist outlet. The comb body has a plug-in cavity for inserting the atomizing chamber. The air outlet of the atomizing chamber is connected to the mist outlet channel of the comb body. An atomizing core, wherein the atomizing core is disposed within the atomizing chamber and connected to the air inlet and the air outlet; and... A locking structure is provided on the comb body for detachably fixing the atomizing chamber inserted into the insertion cavity.
2. The atomizing comb of claim 1, wherein, The locking structure includes: A locking member, which is hinged to the comb body and configured to lock and fix to the atomizing chamber in a locked position; The force-applying part is disposed on the locking member and exposed on the outer surface of the comb body; and, An elastic element is disposed between the locking element and the comb body, and is used to provide a restoring force to the locking element; The force-applying part is used to drive the locking member to swing to the unlocked position against the restoring force of the elastic member, so that the locking member is disengaged from the atomizing chamber; The atomizing chamber is inserted into the insertion cavity, and one end of the locking member automatically swings to the locking position under the restoring force of the elastic member, so as to fix the locking member to the atomizing chamber.
3. The atomizing comb of claim 2, wherein, The comb body is provided with a movable cavity, the locking member is hinged in the movable cavity, and the force-applying part is fixed on one end of the locking member and extends from the movable cavity to the outer surface of the comb body.
4. The atomizing comb of claim 3, wherein, The outer surface of the atomizing chamber is provided with a slot, and the other end of the locking member is provided with a locking part that can engage with the slot.
5. The atomizing comb of claim 4, wherein, The comb body includes an inner shell and an outer shell sleeved outside the inner shell. The locking member is hinged in the movable cavity formed by the inner shell and the outer shell. The outer surface of the outer shell has a pressing hole for the force-applying part to extend out. The insertion cavity is disposed in the inner shell. The inner shell has a movable hole that connects the insertion cavity and the movable cavity. The locking part passes through the movable hole and is engaged and fixed with the slot.
6. The atomizing comb of claim 1, wherein, A liquid replenishment hole is provided on the atomizing chamber and located inside the insertion cavity, and a sealing plug for sealing the liquid replenishment hole is provided on the atomizing chamber.
7. The atomizing comb of claim 1, wherein, A first magnetic element is provided on the inner wall of the insertion cavity, and a second magnetic element is provided on the atomizing chamber that can be magnetically attracted and fixed to the first magnetic element.
8. The atomizing comb of claim 1, wherein, The atomizing comb further includes: a control circuit board; a pair of conductive electrodes electrically connected to the atomizing core are provided on the outer wall of the atomizing chamber; a pair of metal electrodes corresponding to the conductive electrodes are provided on the inner wall of the insertion cavity; the control circuit board is electrically connected to the metal electrodes; the atomizing chamber is inserted into the insertion cavity; and the conductive electrodes and the metal electrodes are in contact and connected.
9. The atomizing comb of claim 1, wherein, The comb body is provided with an air intake channel, and the air inlet is connected to the air intake channel. The atomizing comb also includes an air pump, which is connected to the end of the air intake channel away from the insertion cavity via a conduit.
10. The atomizing comb of claim 9, wherein, The atomizing comb also includes a handle, a battery, a button switch, and a control circuit board. One end of the handle is fixed to the outer wall of the comb body. The air pump, the control circuit board, and the battery are all located inside the handle. The button switch is located on the outer wall of the handle. The atomizing core, the battery, the button switch, and the air pump are all electrically connected to the control circuit board.