An airway self-regulating nebulizer and its nebulizing device
By using an atomizer with automatic airway adjustment and the coordinated operation of the air conditioning mechanism and the heating mechanism, the problem of wicking in the atomizer heating element is solved, achieving full atomization of the atomized liquid and stable gas taste, and extending the service life of the heating element.
Patent Information
- Application Number
- CN202210771129.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-06-30
- Publication Date
- 2025-12-19
- Estimated Expiration
- 2042-06-30
AI Technical Summary
Existing atomizers are prone to wicking, leading to insufficient liquid supply, burnt taste, and burnt-out heating elements.
The atomizer with automatic airflow adjustment uses an air regulating mechanism to input gas as needed according to the working status of the heating element, and works alternately with the heating element to ensure that the atomizing liquid fully penetrates the oil guiding medium and supplies the heating element in a balanced and stable manner.
It achieves full atomization of the atomizing liquid and stable gas taste, extends the service life of the heating element, provides multiple working modes, and enhances the user experience.
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Figure CN115067551B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of atomization devices, in particular to an airway automatic adjustment atomizer and an atomization device thereof. BACKGROUND
[0002] The existing atomizer adopts a single heating body atomizing core. When the atomizing core works, all the atomizing liquid adsorbed on the atomizing core will be heated at the same time and then consumed, and the atomizing core is prone to liquid supply shortage, which leads to easy core paste, aerosol paste smell, and even burning of the heating body and damage to the atomizing core. SUMMARY
[0003] The present application aims to overcome the shortcomings of the prior art, and provides an airway automatic adjustment atomizer and an atomization device thereof to solve the technical problem of easy core paste of the heating body of the existing atomizer.
[0004] To achieve the above-mentioned purpose, the present application adopts the following technical scheme:
[0005] The embodiment of the present application provides an airway automatic adjustment atomizer, which comprises:
[0006] A liquid bin assembly is provided with a liquid storage cavity;
[0007] A base assembly comprises an air adjusting mechanism; and
[0008] An atomization assembly comprises at least two groups of heating mechanisms;
[0009] The liquid bin assembly is fixed to the base assembly, the atomization assembly is arranged in the base assembly, the liquid storage cavity is communicated with the atomization assembly, and the air adjusting mechanism is configured to deliver gas to the corresponding heating mechanism according to one or more groups of the heating mechanisms.
[0010] The base assembly comprises a base fixing member with a through cavity and a bottom cover, the bottom cover is connected to the lower end opening of the through cavity, and the air adjusting mechanism is arranged in the through cavity; the air adjusting mechanism comprises an air adjusting assembly and an electromagnetic assembly, the electromagnetic assembly is controlled to drive the air adjusting assembly to perform a preset action, so that the air adjusting assembly opens or closes the corresponding air inlet channel to deliver gas to the corresponding heating mechanism.
[0011] The air adjusting assembly comprises an airway switch and a bracket, the airway switch has at least two shielding surfaces, and the bracket is provided with a connecting lug and at least two air inlet holes; the airway switch is rotationally connected to the connecting lug, so that when the airway switch is controlled to rotate, the shielding surface shields or moves away from the air inlet hole.
[0012] The electromagnetic assembly comprises a first electromagnetic assembly and a second electromagnetic assembly, each of the first electromagnetic assembly and the second electromagnetic assembly comprises an electromagnetic column, and an electromagnetic coil sleeved on the electromagnetic column; the electromagnetic column is connected to the bottom cover, and one end of the electromagnetic coil is also electrically connected to the bottom cover.
[0013] The bottom cover is further fixed with at least two positive electrodes, the positive electrodes are arranged in insulation with the bottom cover, and the positive electrodes are further electrically connected to the other end of the electromagnetic coil; the bracket is further provided with a positive electrode contact and a negative electrode contact, the positive electrode contact is arranged in insulation with the bracket, and the bracket and the base fixing member are both made of conductive material; the bracket is connected to the base fixing member, the positive electrode contact is electrically connected to the positive electrode, and the negative electrode contact is electrically connected to the bracket.
[0014] The atomization assembly comprises an atomization seat, a heating body and a connecting piece; the connecting piece is fixed to the atomization seat, the heating body is fixed to the connecting piece, and the atomization seat, the heating body and the connecting piece are provided with a through atomization air duct; the heating body comprises a oil guide medium, a heating mechanism is fixed to the bottom of the oil guide medium, and the heating mechanism is controlled to work alternately.
[0015] The heating mechanism comprises a heating film, a positive electrode film and a negative electrode film electrically connected to the heating film; the positive electrode film is electrically connected to the positive electrode contact respectively, and the negative electrode film is electrically connected to the negative electrode contact.
[0016] The oil guide medium comprises a medium body, a slot with an opening towards one side of the liquid storage cavity and a connecting pipe connected to the bottom of the slot are arranged on the medium body, and the connecting pipe extends upward from the bottom of the slot.
[0017] The heating film is arranged around the lower end opening of the connecting pipe, and the slot is recessed towards the heating film.
[0018] The liquid tank assembly comprises a liquid tank, a gas guide pipe and a connecting seat; the liquid tank is connected to the connecting seat, and the gas guide pipe is arranged in the liquid tank; the liquid tank has a mist outlet, one end of the gas guide pipe is connected to the mist outlet, and the other end of the gas guide pipe is connected to the connecting seat; the gas guide pipe, the connecting seat and the liquid tank jointly enclose the liquid storage cavity, and the connecting seat is further provided with a liquid inlet hole communicating the liquid storage cavity and the atomization assembly.
[0019] The airway automatic adjustment atomizer and the atomizing device thereof have the advantages that the atomizing liquid is atomized more fully, and the atomizing gas taste is stable by inputting gas according to the working state of the heating mechanism through the air adjusting mechanism.
[0020] The above description is only a summary of the technical scheme of the present application, in order to more clearly understand the technical means of the present application, the content of the specification can be implemented, and in order to make the above and other purposes, characteristics and advantages of the present application more obvious and easy to understand, the following preferred embodiments are described in detail as follows. BRIEF DESCRIPTION OF DRAWINGS
[0021] Figure 1 It is a whole structure schematic diagram of the airway automatic adjustment atomizer of the embodiment of the present application.
[0022] Figure 2 It is a partial sectional view of the liquid bin assembly of the airway automatic adjustment atomizer of the embodiment of the present application.
[0023] Figure 3 It is an exploded view of the liquid bin assembly of the airway automatic adjustment atomizer of the embodiment of the present application.
[0024] Figure 4 It is a whole structure schematic diagram of the base assembly of the airway automatic adjustment atomizer of the embodiment of the present application.
[0025] Figure 5 It is a partial sectional view of the base assembly of the airway automatic adjustment atomizer of the embodiment of the present application.
[0026] Figure 6 It is an exploded view of the base assembly of the airway automatic adjustment atomizer of the embodiment of the present application.
[0027] Figure 7 It is a whole structure schematic diagram of the bottom cover of the airway automatic adjustment atomizer of the embodiment of the present application.
[0028] Figure 8 It is a whole structure schematic diagram of the bottom cover of the airway automatic adjustment atomizer of the embodiment of the present application.
[0029] Figure 9 It is an A-A sectional view of the airway automatic adjustment atomizer. Figure 8
[0030] Figure 10 It is a partial sectional view of the atomizing assembly of the airway automatic adjustment atomizer of the embodiment of the present application.
[0031] Figure 11 The exploded view of the atomization assembly part of the airway automatic adjustment nebulizer of the embodiment of the present application.
[0032] Figure 12 And Figure 13 The heating mechanism part of the airway automatic adjustment nebulizer of the embodiment of the present application is shown in different angle structure schematic diagram.
[0033] Figure 14 The bottom structure schematic diagram of the heating mechanism of the airway automatic adjustment nebulizer of the embodiment of the present application is shown.
[0034] Figure 15 The heating mechanism part of the airway automatic adjustment nebulizer of the embodiment of the present application is shown in cross-sectional view.
[0035] Figure 16 The bottom structure schematic diagram of the heating mechanism of another embodiment of the airway automatic adjustment nebulizer of the embodiment of the present application is shown.
[0036] Figure 17 And Figure 18 The two working state schematic diagrams of the airway automatic adjustment nebulizer of the embodiment of the present application are shown. DETAILED DESCRIPTION
[0037] In order to make the purpose, technical scheme and advantages of the present application more clear, the present application will be further described in detail below in combination with the drawings and specific embodiments.
[0038] The technical scheme of the embodiment of the present application will be described clearly and completely below in combination with the drawings of the embodiment of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, not all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor are within the scope of protection of the present application.
[0039] Please refer to Figures 1 to 16 The present embodiment provides an airway automatic adjustment nebulizer 001, which comprises:
[0040] The liquid tank assembly 100 is provided with a liquid storage cavity;
[0041] The base assembly 200 comprises an air adjusting mechanism; and
[0042] The atomization assembly 300 comprises at least two groups of heating mechanisms;
[0043] The liquid cartridge assembly 100 is fixed to the base assembly 200, and the atomization assembly 300 is arranged in the base assembly 200. The liquid storage cavity is communicated with the atomization assembly 300. The gas adjusting mechanism is configured to deliver gas to the activated heating mechanism according to one or more groups of the activated heating mechanism. The gas adjusting mechanism controls the input of a corresponding amount of gas into the corresponding air inlet channel according to the number of groups of the activated heating mechanism. The amount of air in coordination with the number of groups of the activated heating mechanism achieves the effect of sufficient atomization and stable taste of atomized gas.
[0044] Please refer again to Figure 2 and Figure 3 The liquid cartridge assembly 100 includes a liquid cartridge 11, an air guide pipe 12, and a connecting seat 14. The liquid cartridge 11 is connected to the connecting seat 14, and the air guide pipe 12 is arranged in the liquid cartridge 11. The liquid cartridge 11 has a mist outlet, one end of the air guide pipe 12 is connected to the mist outlet, and the other end is connected to the connecting seat 14. The air guide pipe 12, the connecting seat 14, and the liquid cartridge 11 together enclose the liquid storage cavity 10. The connecting seat 14 is also provided with a liquid inlet hole 145 that communicates the liquid storage cavity 10 and the atomization assembly 200. Specifically, the liquid cartridge 11 includes a liquid cartridge pipe 111 and an air outlet pipe 112 extending from the upper end of the liquid cartridge pipe 111. The air outlet pipe 112 has the mist outlet, and the radius of the air outlet pipe 112 is smaller than that of the liquid cartridge pipe 111. The upper end of the air guide pipe 12 is inserted into the lower end of the air outlet pipe 112, and a sealing ring 15 is arranged at the joint. It can be understood that in another embodiment, the air guide pipe 12 can be integrally formed with the liquid cartridge 11. The connecting seat 14 includes a seat body 141, and an axial cavity 144 is arranged in the middle of the seat body 141. The lower end of the air guide pipe 12 is inserted into the cavity 144. In another embodiment, the air guide pipe 12 can also be connected to the cavity 144 in other ways. An annular groove 142 is arranged on the top surface of the seat body 141, and a sealing element 13 is arranged in the annular groove 142. The sealing element 13 is clamped between the liquid cartridge 11 and the connecting seat 14, so that the liquid cartridge 11 and the connecting seat 14 are sealingly connected. The sealing element can also be arranged on the top or side wall of the connecting seat 14. The liquid inlet hole 145 is arranged on the side wall of the cavity 144, and there are multiple liquid inlet holes 145. The atomized liquid stored in the liquid storage cavity 10 is delivered to the cavity below the cavity 144 through the liquid inlet hole 145, and then flows to the atomization assembly 300 to be heated and atomized. In this embodiment, the lower end of the air guide pipe 12 and the cavity 144 on the connecting seat 14 are fixed by the threaded structure 143.
[0045] Please refer again to Figures 4 to 9The base assembly 200 comprises a base fixing member 21 with a through cavity and a bottom cover 26 connected to the lower end opening of the through cavity, and a gas adjusting mechanism arranged in the through cavity. The gas adjusting mechanism comprises a gas adjusting assembly and an electromagnetic assembly. The electromagnetic assembly is controlled to drive the gas adjusting assembly to perform a preset action, so that the gas adjusting assembly opens or closes the corresponding air inlet channel to deliver gas to the corresponding heat generating mechanism.
[0046] The gas adjusting assembly comprises an airway switch 23 with at least two shielding surfaces 231 and 232 and a bracket 22 provided with a connecting lug 223 and at least two air inlet holes 221 and 222. The airway switch 23 is rotationally connected to the connecting lug 223, so that when the airway switch 23 is controlled to rotate, the shielding surfaces shield or expose the air inlet holes. In this embodiment, two air inlet holes 221 and 222 and two shielding surfaces 231 and 232 are taken as examples for description. The shielding surface 231 is used to shield the air inlet hole 221, and the shielding surface 232 is used to shield the air inlet hole 222. The airway switch 23 is connected to the connecting lug 223 through a rotating shaft, and a lever structure is formed between the airway switch 23 and the bracket 22. When the airway switch 23 is controlled to rotate around the rotating shaft, the shielding surface 231 can shield or expose the air inlet hole 221, and at the same time, the shielding surface 232 exposes or shields the air inlet hole 222. In other embodiments, according to the number of series or parallel heat generating mechanisms, a corresponding plurality of air inlet holes can be arranged on the bracket 22, and a corresponding number of shielding surfaces can be arranged on the airway switch 23.
[0047] The electromagnetic assembly comprises a first electromagnetic assembly 27 and a second electromagnetic assembly 20. The first electromagnetic assembly 27 and the second electromagnetic assembly 20 are the same in structure. Taking the first electromagnetic assembly 27 as an example, it comprises an electromagnetic column 271 and an electromagnetic coil 282 sleeved on the electromagnetic column 271. The electromagnetic column 271 is connected to the bottom cover 26, and one end of the electromagnetic coil 282 is electrically connected to the bottom cover 26 through a wire tap. The electromagnetic column 271 is a core. In this embodiment, one end of the electromagnetic coil 282 is fixed to the bottom cover 26 through a screw 273. The bottom cover 26 is made of an electrically conductive material. When the bottom cover 26 is made of a non-conductive material, the wire tap of the electromagnetic coil 282 can be directly or indirectly connected to a power source in other ways. Specifically, the electromagnetic column 271 is vertically arranged and faces the airway switch 23 and is located directly below the corresponding shielding surface of the airway switch 23. It can be understood that the airway switch 23 is made of a magnetic material. When the electromagnetic coil 282 is powered, it generates a magnetic force to magnetically attract one end of the corresponding shielding surface, so that the shielding surface moves away from the corresponding air inlet hole. At the same time, the other end of the shielding surface will synchronously rise to shield the corresponding air inlet hole.
[0048] In another embodiment, the airway switch 23 may also be a magnet with N and S poles. The first electromagnetic component 27 and the second electromagnetic component 20 may be energized simultaneously to generate different magnetic poles, so that the airway switch 23 is subjected to forces in opposite directions at the same time, making the airway switch 23 open or close faster and more sensitive.
[0049] Furthermore, at least two positive electrodes 29 are fixedly connected to the bottom cover 26. The positive electrodes 29 are insulated from the bottom cover 26 by an insulating sleeve 291. The positive electrodes 29 are also electrically connected to the other end of the lead wire tap of the electromagnetic coil 272. The positive electrodes 29 also serve as the positive power source for the atomizing assembly 300, thus possessing multiple functions. The bracket 22 is also provided with a positive electrode contact 24 and a negative electrode contact 25. The positive electrode contact 24 is insulated from the bracket 22 by an insulating sleeve 28. Both the bracket 22 and the base fixing member 21 are made of conductive material. The bracket 22 is connected to the base fixing member 21, such that the bracket 22, the base fixing member 21, and the bottom cover 26 form a negative circuit for supplying power to the atomizing assembly 300. The positive electrode contact 24 is electrically connected to the positive electrode 29, and the negative electrode contact 25 is electrically connected to the bracket 22. Figure 9 As shown, the positive electrode contact 24 and the positive electrode 29 are electrically connected via coil electrode 292. Since the positive electrode 29 is insulated from the bottom cover 26, and the positive electrode contact 24 is insulated from the bracket 22, the negative electrode contact 25 is electrically connected to the bracket 22. The bracket 22 is electrically connected to the bottom cover 26 via a base fixing member 21, and the bottom cover 26 serves as the negative terminal of the power supply. The bottom cover 26 and the positive electrode 29 are electrically connected to the positive and negative terminals of an external power supply, respectively, forming a power supply path for the atomizing assembly 300 and the electromagnetic assembly.
[0050] Since the electromagnetic component and the gas regulating component need to be aligned and assembled, the edge of the bottom cover 26 is also provided with positioning holes 262, and the corresponding base fixing component 21 is provided with corresponding positioning protrusions.
[0051] Please refer to it again. Figures 10 to 16The atomizing assembly 300 includes an atomizing base 33, a heating element 31, and a connector 32. The connector 32 is fixedly connected to the atomizing base 33, and the heating element 31 is fixedly connected to the connector 32, that is, the heating element 31 is sealed to the atomizing base 33 through the connector 32. A through atomizing air passage 35 is provided within the atomizing base 33, the heating element 31, and the connector 32. The heating element 31 includes an oil-guiding medium 311, and a heating mechanism is fixedly connected to the bottom of the oil-guiding medium 311, and the heating mechanism operates alternately under control. The connector 32 has a connecting cavity and a connecting hole. The heating element 31 is disposed within the connecting cavity, and the lower end of the air-guiding tube 12 extends to the connecting hole. A sealing ring 34 is also provided on the side wall of the atomizing base 33, through which the atomizing base 33 can be sealed and fixedly connected to the connector 14. The atomizing liquid stored in the storage chamber 10 first flows to the connector 32 through the inlet hole 145 on the connector 14. The connector 32 is provided with a delivery hole that communicates with the heating element 31, and the atomizing liquid is then supplied to the heating element 31 through the delivery hole.
[0052] The heating mechanism includes heating films 316 and 317, and a positive electrode film 319 and a negative electrode film 315 electrically connected to the heating film 316, and a positive electrode film 318 and a negative electrode film 315 electrically connected to the heating film 317. In this embodiment, the heating films 316 and 317 share the same negative electrode film 315. The positive electrode films 318 and 319 are respectively electrically connected to one of the positive electrode contacts 24, and the negative electrode film 315 is electrically connected to the negative electrode contact 25. The heating films, positive electrode films, and negative electrode films can be fixed to the bottom of the oil-conducting medium by printing. It is understood that in this embodiment, there are two air inlets (referring to air inlets 221 and 222), and therefore two corresponding heating films (referring to heating films 316 and 317). In other embodiments, the number of heating films and the number of positive and negative electrode films electrically connected to the heating films can be adjusted according to the number of air inlets. The corresponding heating film can be started or stopped by controlling the on / off state of the corresponding positive electrode and the power supply.
[0053] like Figure 16 As shown, in another embodiment, heating film 316 and heating film 317 are each provided with electrode films. Heating film 316 is provided with a positive electrode film 3151 and a negative electrode film 319, while heating film 317 is electrically connected to positive electrode film 3152 and negative electrode film 318, respectively. Heating film 316 and heating film 317 can be provided with the same resistance value or different resistance values, thereby achieving different atomization powers.
[0054] The oil guide medium 311 comprises a medium body 310, a slot 313 with an opening facing the liquid storage cavity 10, and a connecting pipe 312 connected to the bottom of the slot 313, the connecting pipe 312 extends upward from the bottom of the slot 313, and a pipe cavity 314 is arranged in the connecting pipe 312. The atomized liquid delivered from the liquid storage cavity 10 enters the slot 313, and is then permeated to the heating film at the bottom of the slot 313 and heated and atomized.
[0055] Specifically, the heating films 316 and 317 are arranged around the lower end opening of the connecting pipe 312, the slot 313 is recessed towards the heating films 316 and 317, the distance of the atomized liquid permeating to the heating film is reduced as much as possible in the limited size of the oil guide medium 311, the supply speed of the atomized liquid is improved, the heating film is arranged around, the atomization area is increased, and the atomization efficiency is improved.
[0056] Please refer to Figure 17 and Figure 18 , Figure 17 is the first working state, at this time, the second electromagnetic assembly 20 is powered on to lower the end of the shielding surface 232 and away from the air inlet hole 221, the air passage switch 23 is rotated so that the end of the shielding surface 231 is raised upward, so that the shielding surface 231 shields the air inlet hole 222, only the air inlet hole 221 is inhaled, the cavity of the air passage switch 23 is in communication with the air inlet passage 261 arranged in the middle of the bottom cover 26, therefore, as shown by the upward arrow in the figure, the gas flows to the air inlet hole 221 on the bracket 22 from the outside through the air inlet passage 261, and finally enters the atomization passage 35, carries the atomized gas, and is output to the user from the air guide pipe 12, at the same time, the heating film 316 located above the air inlet hole 221 is powered on and heated. The downward arrow in the figure shows the flow direction of the atomized liquid.
[0057] Figure 18 is the second working state, at this time, the first electromagnetic assembly 27 is powered on, and the second electromagnetic assembly 20 is powered off, for the same reason, the end of the shielding surface 232 is lowered, the end of the shielding surface 231 is raised, only the air inlet hole 222 is inhaled, and the heating film 317 located above the air inlet hole 222 is powered on and heated synchronously. It can be understood that when four or more heating structures are arranged, two of the heating structures can be arranged to work simultaneously.
[0058] The airway self-adjusting atomizer of the embodiment alternately works between the first working state and the second working state, can give the oil guide medium sufficient intermittent time to absorb and store the atomized liquid, makes the oil supply of the oil guide medium sufficient, greatly reduces the probability of the paste core, changes the working time of the previous heating body (such as 3 seconds of suction and 8 seconds of stop, the atomizer is 3 seconds of suction and 19 seconds of stop, that is, 8+3+8), the actual suction time does not change, but sufficient heat dissipation and oil return time is provided for the heating body, the service life of the heating body is increased, and the service life of the atomizer of the embodiment can be prolonged by more than twice compared with the original structure design.
[0059] In addition, the airway self-adjusting atomizer of the embodiment can provide users with multiple working mode experiences, the heating film can be provided with different resistance values, and multiple power values can be selected and combined.
[0060] In addition, the embodiment also provides an atomization device, which comprises an atomization host and the airway self-adjusting atomizer as described in the above embodiment, and the atomization host is used for powering the airway self-adjusting atomizer. The atomization host comprises a battery, a control circuit board and a host shell, an air inlet channel is arranged in or on the host shell, a microphone and a charging interface are arranged on the control circuit board, the microphone communicates with the air inlet channel and is used for closing a loop for powering the heating body according to the user's inhaling action. The atomization host and the airway self-adjusting atomizer can be connected in a magnetic attraction mode or a screw connection mode or a clamping connection mode.
[0061] It can be understood that the microphone can not be arranged on the atomization host, and a switch structure such as a button or a touch switch can be arranged on the atomization host to control the power supply of the atomization host to the atomizer.
[0062] The airway self-adjusting atomizer of the embodiment inputs gas as required according to the working state of the heating mechanism through the air adjusting mechanism, so that the atomized liquid is atomized more fully, and the taste of the atomized gas is stable. In addition, the air adjusting mechanism cooperates with the heating mechanism to alternately work, gives the atomized liquid sufficient penetration time, so that the atomized liquid fully penetrates the oil guide medium, stably supplies the heating mechanism, reduces the loss of the heating mechanism, and continuously outputs the atomized gas with stable quality to the user.
[0063] The above only further illustrates the technical content of the application by means of the embodiments, so that the reader can more easily understand, but does not represent that the embodiments of the application are limited to this, any technical extension or re-creation made according to the application is protected by the application. The protection scope of the application is subject to the claims.
Claims
1. A nebulizer with automatic airway adjustment, characterized in that, The airway-automatic nebulizer includes: Liquid reservoir assembly, wherein the liquid reservoir assembly is provided with a liquid storage chamber; A base assembly, the base assembly including an air regulating mechanism; and An atomizing assembly, the atomizing assembly comprising at least two sets of heating mechanisms; The liquid tank assembly is fixedly connected to the base assembly, the atomizing assembly is disposed within the base assembly, the liquid storage chamber is connected to the atomizing assembly, and the gas regulating mechanism is configured to supply gas to the corresponding heating mechanism upon activation of one or more sets of heating mechanisms. The base assembly includes a base fixing member with a through cavity and a bottom cover. The bottom cover is connected to the lower opening of the through cavity, and the gas regulating mechanism is disposed within the through cavity. The gas regulating mechanism includes a gas regulating component and an electromagnetic component. The electromagnetic component is controlled to drive the gas regulating component to perform a preset action, such that the gas regulating component opens or closes the corresponding air inlet channel to supply gas to the corresponding heating mechanism. The gas regulating component includes an airway switch and a bracket. The airway switch has at least two shielding surfaces, and the bracket has connecting ears and at least two air inlets. The airway switch is rotatably connected to the connecting ears, such that when the airway switch is rotated in control, the shielding surfaces correspondingly shield or move away from the air inlets. The gas regulating mechanism works alternately in conjunction with the heating mechanisms.
2. The nebulizer with automatic airway adjustment according to claim 1, characterized in that, The electromagnetic components include: a first electromagnetic component and a second electromagnetic component. Both the first electromagnetic component and the second electromagnetic component include: an electromagnetic column and an electromagnetic coil mounted on the electromagnetic column. The electromagnetic column is connected to the bottom cover, and one end of the electromagnetic coil is electrically connected to the bottom cover.
3. The nebulizer with automatic airway adjustment according to claim 2, characterized in that, At least two positive electrodes are fixedly connected to the bottom cover. The positive electrodes are insulated from the bottom cover and are electrically connected to the other end of the lead wire tap of the electromagnetic coil. The bracket is also provided with a positive electrode contact and a negative electrode contact. The positive electrode contact is insulated from the bracket. Both the bracket and the base fixing member are made of conductive material. The bracket is connected to the base fixing member. The positive electrode contact is electrically connected to the positive electrode and the negative electrode contact is electrically connected to the bracket.
4. The atomizer with automatic airway adjustment according to claim 3, characterized in that, The atomizing assembly includes: an atomizing base, a heating element, and a connector; the connector is fixedly connected to the atomizing base, the heating element is fixedly connected to the connector, and a through atomizing air passage is provided in the atomizing base, the heating element, and the connector; wherein, the heating element includes: an oil guiding medium, the heating mechanism is fixedly connected to the bottom of the oil guiding medium, and the heating mechanism is controlled to work alternately.
5. The atomizer with automatic airway adjustment according to claim 4, characterized in that, The heating mechanism includes a heating film and a positive electrode film and a negative electrode film electrically connected to the heating film. The positive electrode film is electrically connected to the positive electrode contact, and the negative electrode film is electrically connected to the negative electrode contact.
6. The atomizer with automatic airway adjustment according to claim 5, characterized in that, The oil guiding medium includes: a medium body, on which a groove is opened facing the liquid storage cavity and a connecting pipe connected to the bottom of the groove, the connecting pipe extending upward from the bottom of the groove.
7. The atomizer with automatic airway adjustment according to claim 6, characterized in that, The heating film is arranged around the periphery of the lower opening of the connecting tube, and the groove is recessed towards the side of the heating film.
8. The nebulizer with automatic airway adjustment according to any one of claims 1 to 7, characterized in that, The liquid tank assembly includes a liquid tank, an air guide pipe, and a connecting seat. The liquid tank is connected to the connecting seat, and the air guide pipe is disposed inside the liquid tank. The liquid tank has a mist outlet, one end of the air guide pipe is connected to the mist outlet, and the other end is connected to the connecting seat. The air guide pipe, the connecting seat, and the liquid tank together form the liquid storage cavity. The connecting seat is also provided with a liquid inlet hole that communicates with the liquid storage cavity and the atomizing component.
9. An atomizing device, characterized in that, The atomizing device includes: an atomizing host and an atomizer with automatic airway adjustment as described in any one of claims 1 to 8, wherein the atomizing host is used to supply power to the atomizer with automatic airway adjustment.
Citation Information
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Multi-taste atomization device
CN214629883U
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