Electronic cigarette
By using an atomizing liquid containing medical drugs in an electronic cigarette and utilizing an atomizing component to form an aerosol, the problem of the single function of existing electronic cigarettes is solved, the treatment or prevention of airway diseases is achieved, and the diversity and medical application value of electronic cigarettes are enhanced.
Patent Information
- Application Number
- CN202422255809.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-13
- Publication Date
- 2025-09-09
- Estimated Expiration
- 2034-09-13
AI Technical Summary
Existing e-cigarettes have a single function, mainly used to relieve smoking addiction, and lack diversity and medical applications.
An electronic cigarette is designed, wherein the atomized liquid contains at least medical drugs, and the atomized liquid is atomized by an atomizing component to form an aerosol for treating or preventing human airway diseases.
It realizes the diverse functions of electronic cigarettes and can treat or prevent airway diseases by atomizing medical drugs, providing additional medical application value.
Smart Images

Figure CN223310641U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the field of electronic cigarette technology, and in particular to electronic cigarettes. Background Art
[0002] Existing electronic cigarette atomizers typically consist of an oil reservoir containing tobacco oil and an atomizer assembly, which heats the oil and atomizes it to form smoke. The oil primarily contains nicotine propionate, glycol glycerol, and flavorings, and serves only to alleviate cravings. Its function is relatively limited. Utility Model Content
[0003] In view of this, in order to solve the above technical problems, the present application provides an electronic cigarette.
[0004] To achieve the above-mentioned purpose, the present application provides an electronic cigarette, which includes a shell, a mouthpiece and a lower shell, the lower shell is provided with an air inlet, and the mouthpiece is provided with an air outlet; an atomizer assembly is arranged in the shell, and an oil storage chamber is formed between the atomizer assembly and the shell, an air guide channel is provided on the side of the atomizer assembly away from the oil storage chamber, the oil storage chamber is connected to the air guide channel, and the air guide channel is connected to the air inlet and the air outlet; an atomizer liquid is arranged in the oil storage chamber, wherein the atomizer liquid at least includes medical drugs, and the atomizer assembly is used to atomize the atomizer liquid; oil cotton is arranged in the oil storage chamber; the atomizer assembly is partially wrapped by the oil cotton and partially located in the air guide channel, the atomizer assembly absorbs the atomizer liquid from the oil cotton, and heats and atomizes the atomizer liquid.
[0005] Beneficial Effects: Unlike existing technologies, the atomized liquid contains at least a medical drug, and the atomizing assembly is used to atomize the atomized liquid. Therefore, the atomizing assembly atomizes the atomized liquid, thereby forming an aerosol. This aerosol has the effect of smoke and can treat or prevent human airway diseases. Therefore, the electronic cigarette has multiple functions. BRIEF DESCRIPTION OF THE DRAWINGS
[0006] Figure 1 This is an exploded schematic diagram of a partial structure of an embodiment of the electronic cigarette of the present application;
[0007] Figure 2 is a schematic cross-sectional structural diagram of an embodiment of the electronic cigarette of the present application;
[0008] Figure 3 1 is a schematic cross-sectional view of the first embodiment of the electronic cigarette of the present application;
[0009] Figure 4 This is a schematic cross-sectional view of the second embodiment of the electronic cigarette of the present application;
[0010] Figure 5 It is a schematic cross-sectional structure diagram of the third embodiment of the electronic cigarette of the present application. DETAILED DESCRIPTION
[0011] To enable those skilled in the art to better understand the technical solutions of this application, the present application is further described below in conjunction with the accompanying drawings and specific embodiments. Obviously, the embodiments described are only part of the embodiments of this application, not all of them. Based on the embodiments of this application, all other embodiments obtained by those of ordinary skill in the art without creative work are within the scope of protection of this application.
[0012] See also Figure 1-Figure 2 , Figure 1 This is an exploded schematic diagram of a partial structure of an embodiment of the electronic cigarette of the present application; Figure 2 It is a schematic cross-sectional structure diagram of an embodiment of the electronic cigarette of the present application.
[0013] like Figure 1 As shown, the electronic cigarette 10 may include a housing 100, an atomizer assembly 200, and an atomized liquid 300. The atomizer assembly 200 is disposed within the housing 100, with an oil storage chamber 101 formed between the atomizer assembly 200 and the housing 100. The atomized liquid 300 is disposed within the oil storage chamber 101, wherein the atomized liquid 300 includes at least medical drugs, and the atomizer assembly 200 is used to atomize the atomized liquid 300.
[0014] In some embodiments, the atomized liquid 300 includes at least medical drugs, and the atomizing assembly 200 is used to atomize the atomized liquid 300. Therefore, by atomizing the atomized liquid 300 through the atomizing assembly 200, the atomized liquid 300 can be atomized to form an aerosol. The aerosol has the effect of smoke and can treat or prevent human airway diseases. Among them, the medical drugs can be directly inhaled into the human airway in the form of aerosols to treat or prevent airway diseases. Such as treating or preventing diseases such as colds, pharyngitis, rhinitis, bronchitis, etc. The human airway refers to the part of the pipeline from the nose, pharynx, larynx, trachea, bronchi to the terminal bronchioles.
[0015] In one embodiment, the medicinal drug may be dandelion essential oil, and in another embodiment, the medicinal drug may be mugwort extract.
[0016] After the atomized liquid 300 is atomized, the locations it can reach after entering the human airway vary depending on the particle size of the atomized particles. For atomized particles with a size between 10 and 15 microns, upon entering the human airway, most of them adhere to the upper respiratory tract, i.e., the airways located in the nose, pharynx, and larynx. For atomized particles with a size between 5 and 10 microns, upon entering the human airway, most of them adhere to the upper airway located in the trachea. For atomized particles with a size between 2 and 5 microns, upon entering the human airway, they can reach the bronchi and alveoli.
[0017] Therefore, the particle size of the atomized particles after atomization can be set according to the different parts to be treated.
[0018] In one embodiment, to treat upper respiratory tract diseases, the atomized liquid 300 can be configured to have a particle size within the range of 10 microns to 15 microns after atomization, such as 10 microns, 12 microns, 12.5 microns, 13.4 microns, 15 microns, etc.
[0019] In another embodiment, to treat tracheal diseases, the atomized liquid 300 can be configured to have a particle size within the range of 5 microns to 10 microns after atomization, such as 5 microns, 6 microns, 7.5 microns, 8.6 microns, 10 microns, etc.
[0020] In another embodiment, to treat bronchial diseases and alveolar diseases, the atomized liquid 300 can be configured to have a particle size within the range of 2 microns to 5 microns after atomization, such as 2 microns, 3 microns, 3.5 microns, 5 microns, etc.
[0021] In other embodiments, tobacco oil may be added to the atomized liquid 300 for human inhalation to relieve the human body's smoking addiction. Therefore, the electronic cigarette 10 has diverse functions.
[0022] like Figure 1-Figure 2 As shown, an air guide channel 201 is provided on the side of the atomizer assembly 200 facing away from the oil storage chamber 101. The oil storage chamber 101 is connected to the air guide channel 201 so that the atomized liquid 300 can flow out of the electronic cigarette 10 through the air guide channel 201 after being atomized. Among them, the housing 100 can be provided with an air inlet 102 and an air outlet 103, and the air guide channel 201 is distributed to connect the air inlet 102 and the air outlet 103.
[0023] Furthermore, if Figure 1-Figure 2 As shown, the electronic cigarette 10 includes a battery 400 and a control assembly 500. The battery 400 is disposed within the housing 100 and is used to provide power to the atomizer assembly 200. The control assembly 500 is disposed within the housing 100 and is electrically connected to the atomizer assembly 200 and the battery 400 to control the atomizer assembly 200 to atomize the atomized liquid 300.
[0024] In this embodiment, the control component 500 can control the atomization of the atomized liquid 300 by the atomization component 200. For example, in one embodiment, the control component 500 can control the start and end of the atomization of the atomized liquid 300 by the atomization component 200. For example, in another embodiment, the control component 500 can increase or decrease the atomization rate of the atomization component 200 for the atomized liquid 300.
[0025] Alternatively, as Figure 1-Figure 2As shown, the housing 100 may include a suction nozzle 130 and a lower housing. The lower housing is provided with an air inlet 102 , and the suction nozzle 130 is provided with an air outlet 103 .
[0026] The nozzle 130 and the lower shell are detachably arranged, which can improve the convenience of loading and unloading internal components such as the atomizer assembly 200, the control assembly 500, and the battery 400.
[0027] Optionally, the lower housing includes a battery holder 110 and a battery housing 120, and the air inlet 102 can be disposed on the battery holder 110. Placing the air inlet 102 on the battery holder 110 can direct the air introduced from the air inlet 102 to the periphery of the battery 400, thereby improving the heat dissipation performance of the battery 400 and thus enhancing the reliability of the electronic cigarette.
[0028] Of course, in other embodiments (not shown), the air inlet 102 may also be provided in other places, such as the battery housing 120 , which will not be listed here one by one.
[0029] Optionally, the battery holder 110 and the suction nozzle 130 can be respectively arranged at both ends of the battery housing 120, the battery 400 can be arranged in the battery holder 110, and the atomizer assembly 200 can be arranged between the suction nozzle 130 and the battery holder 110 to form an oil storage chamber 101 between the battery housing 120.
[0030] An upper liquid-sealing silicone rubber 140 may be provided between the oil storage chamber 101 and the suction nozzle 130, and a lower liquid-sealing silicone rubber 150 may be provided between the oil storage chamber 101 and the battery fixing seat 110 to improve the sealing performance of the oil storage chamber 101. In this way, the atomized liquid 300 in the oil storage chamber 101 can be prevented from leaking out of the oil storage chamber 101, thereby avoiding or reducing the contamination of the suction nozzle 130 and the battery 400 by the atomized liquid 300.
[0031] The battery holder 110 and the suction nozzle 130 can be respectively arranged at the two ends of the battery housing 120, and the air inlet 102 and the air outlet 103 are respectively arranged on the battery holder 110 and the suction nozzle 130, so that the air inlet 102 and the air outlet 103 can form air convection, thereby increasing the circulation speed of the air flow in the air guide channel 201, thereby increasing the speed of the aerosol in the air guide channel 201 flowing to the suction nozzle 130, and thus improving the atomization efficiency of the electronic cigarette.
[0032] Among them, the electronic cigarette also includes oil cotton 900, which is arranged in the oil storage chamber 101; the atomizer component 200 is partially wrapped by the oil cotton 900 and partially located in the air guide channel 201. The atomizer component 200 absorbs atomized liquid from the oil cotton 900 and heats and atomizes the atomized liquid.
[0033] In this embodiment, the atomizer assembly 200 is wrapped with oil cotton 900, which can not only transfer the atomized liquid to the atomizer assembly 200, but also limit the atomizer assembly 200, thereby improving the structural stability of the electronic cigarette; further, the oil cotton 900 can slow down the flow speed of the atomized liquid, and can improve the problem that the atomized liquid is not absorbed and atomized by the atomizer assembly 200 but flows directly from the oil storage chamber 101 to the air guide channel 201 and is directly inhaled by the user.
[0034] Optionally, the atomizer assembly 200 includes an atomizer core and a heating element. The heating element is arranged around the outer circumference of the atomizer core. The two ends of the atomizer core are respectively wrapped by oil cotton 900 in the oil storage cavity 101 located on both sides of the air guide channel 201. The middle part of the atomizer core is located in the air guide channel 201, so that the two ends of the atomizer core absorb atomized liquid from the oil cotton 900, and after the atomized liquid is atomized by the heating element, it evaporates into the air guide channel 201 through the middle part of the atomizer core.
[0035] Optionally, the atomizing core is arranged perpendicular to the extension direction of the air guide channel 201, which can improve the volatilization effect of the airflow on the aerosol formed by atomization.
[0036] Optionally, the axial direction of the air inlet 102, the axial direction of the air outlet 103 and the axial direction of the air guide channel are arranged in parallel, which can improve the gas flow efficiency and thus improve the atomization efficiency.
[0037] Optionally, the opening of the battery holder 110 communicating with the air channel 201 , the air channel 201 and the air outlet 103 are coaxially arranged, which can not only simplify the structure of the air channel 201 but also improve the circulation efficiency of the gas in the conductor channel 201 .
[0038] Alternatively, as Figure 2 As shown, the control assembly 500 can be disposed at the end of the battery holder 110 facing away from the battery 400. For example, a receiving cavity (not shown) can be formed at the end of the battery holder 110 facing away from the battery 400, and the control assembly 500 can be disposed in the receiving cavity. Furthermore, to enhance the cushioning effect on the control assembly 500, an upper fixing silicone rubber 160 and a lower fixing silicone rubber 170 are disposed at the end of the receiving cavity closer to the battery and further away from the battery, respectively. The upper fixing silicone rubber 160 and the lower fixing silicone rubber 170 secure the control assembly 500, providing a cushioning effect for the control assembly 500.
[0039] Further, if Figure 1-Figure 2As shown, the control assembly 500 may include a control panel 510, an atomization switch 520, and a toggle 530. The control panel 510 is electrically connected to the atomization switch 520, the atomization assembly 200, and the battery 400. The atomization switch 520 can be used to control the start and end of atomization of the electronic cigarette 10. The toggle 530 can be slidably disposed on the air inlet 102 to control the size of the opening of the air inlet 102 based on the sliding movement of the toggle 530 on the air inlet 102, thereby reducing interference of the toggle 530 with the operation of the mouthpiece 130.
[0040] In this embodiment, the battery 400, the control board 510, the atomizer switch 520 and the toggle member 530 are arranged on the side of the oil storage chamber 101 and the atomizer assembly 200 away from the suction nozzle 103. This not only reduces the interference between the suction nozzle 103 and the battery 400, the control board 510, the atomizer switch 520 and the toggle member 530, but also allows the air entering from the air inlet 102 to flow through the atomizer assembly 200 to fully volatilize the aerosol to the air outlet 103.
[0041] Unlike oral administration or subcutaneous injection, which simply delivers the drug into the body, nebulization therapy requires a controlled atomization rate. This is especially true for young children, whose throat tissue is not fully developed and whose throat and nasal hairs provide little cushioning. If the atomization rate is too fast, it can irritate the child's respiratory tract, causing a choking sensation and coughing. Furthermore, a too-fast atomization rate can be inconsistent with the child's respiratory rate, leading to drug waste.
[0042] The control of the atomization rate is described below through specific examples.
[0043] Example 1
[0044] exist Figure 1-Figure 2 Compare with Figure 3 , Figure 3 It is a schematic cross-sectional structure diagram of the first embodiment of the electronic cigarette of the present application.
[0045] The electronic cigarette 10 of the first embodiment of the present application is modified based on the electronic cigarette 10 of the first embodiment described above. The difference between the electronic cigarette 10 of the first embodiment described above is that, in the first embodiment, the electronic cigarette 10 further includes a temperature control component 600. The temperature control component 600 is disposed in the housing 100 and electrically connected to the battery 400 for detecting the temperature of the atomizer assembly 200 and adjusting the output power of the battery 400 based on the temperature of the atomizer assembly 200.
[0046] like Figure 3As shown, the atomization rate of the atomized liquid 300 is not only affected by the output power of the battery 400, but also by the ambient temperature. When the battery 400 has the same output power, different ambient temperatures will also lead to different atomization rates of the atomized liquid 300. Whether it is the effect of the output power of the battery 400 on the atomization rate of the atomized liquid 300 or the effect of the ambient temperature on the atomization rate of the atomized liquid 300, they ultimately affect the temperature of the atomizing assembly 200.
[0047] In this embodiment 1, the temperature control component 600 can control the atomization rate of the atomized liquid 300 within a preset range. Figure 3 As shown, the temperature control assembly 600 may include a temperature sensing element 610 and a temperature control element 620. The temperature sensing element 610 is disposed in contact with the atomizer assembly 200 for detecting the temperature of the atomizer assembly 200; the temperature control element 620 is electrically connected to the temperature sensing element 610 and the control assembly 500, respectively, for adjusting the output power of the battery 400 based on the temperature of the atomizer assembly 200.
[0048] The temperature control element 620 may have a preset temperature, and the temperature sensing element 610 may detect the temperature of the atomizer assembly 200. The temperature control element 620 compares the detected temperature with the preset temperature. If the detected temperature is greater than the preset temperature, the temperature control element 620 reduces the output power of the battery 400. If the detected temperature is equal to the preset temperature, the temperature control element 620 returns to the step of detecting the temperature of the atomizer assembly 200 and comparing the detected temperature with the preset temperature. If the detected temperature is less than the preset temperature, the temperature control element 620 increases the output power of the battery 400.
[0049] The preset temperature can be a specific temperature or a temperature range. When the preset temperature is a specific temperature, the temperature detected by the temperature sensing element 610 is greater than the preset temperature, that is, the temperature detected by the temperature sensing element 610 is greater than the specific temperature; the temperature detected by the temperature sensing element 610 is equal to the preset temperature, that is, the temperature detected by the temperature sensing element 610 is equal to the specific temperature; the temperature detected by the temperature sensing element 610 is less than the preset temperature, that is, the temperature detected by the temperature sensing element 610 is less than the specific temperature. When the preset temperature is a temperature range, the temperature detected by the temperature sensing element 610 is greater than the preset temperature, that is, the temperature detected by the temperature sensing element 610 is greater than the maximum temperature in the temperature range; the temperature detected by the temperature sensing element 610 is equal to the preset temperature, that is, the temperature detected by the temperature sensing element 610 is equal to a temperature in the temperature range; the temperature detected by the temperature sensing element 610 is less than the preset temperature, that is, the temperature detected by the temperature sensing element 610 is less than the minimum temperature in the temperature range.
[0050] Thus, in this embodiment one, through the mutual cooperation of the temperature sensing element 610 and the temperature control element 620, the output power of the battery 400 can be negatively feedback regulated based on the temperature of the atomizing assembly 200, so that the temperature of the atomizing assembly 200 is maintained within the preset temperature, so that the atomization rate of the atomizing liquid 300 by the atomizing assembly 200 remains stable.
[0051] In this embodiment one, the function of maintaining the stability of the atomization rate of the atomizing component 200 for the atomized liquid 300 can be performed under the action of the temperature control element 620, so that the regulation of this part of the function can be separated from the control component 500, so as to reduce the computing power of the control component 500.
[0052] Optionally, the atomizing assembly 200 includes an atomizing core (not shown), and the temperature sensing element is attached to the outer wall or inner wall of the atomizing core. The temperature sensing element 610 includes a thermistor (not shown).
[0053] Alternatively, as Figure 3 As shown, the oil storage chamber 101 is provided with oil cotton 900, the atomizing core is wrapped by the oil cotton 900, and the temperature sensing element 610 is disposed within the oil cotton 900. For example, the electronic cigarette 10 may include an oil cotton sleeve 180, which is housed within the battery housing 120. The oil cotton 900 is wrapped within the oil cotton sleeve 180, and the temperature sensing element 610 is disposed within the oil cotton 900. The atomized liquid 300 can infiltrate the oil cotton 900.
[0054] Example 2
[0055] exist Figure 1-Figure 2 Compare with Figure 4 , Figure 4 It is a schematic cross-sectional structure diagram of the second embodiment of the electronic cigarette of the present application.
[0056] The electronic cigarette 10 of the second embodiment of the present application is modified based on the electronic cigarette 10 of the first embodiment. The difference between the electronic cigarette 10 of the first embodiment and the electronic cigarette 10 of the first embodiment is that, in the second embodiment, Figure 4 As shown, the electronic cigarette 10 further includes a temperature sensing element 700, which is arranged in contact with the atomizer assembly 200 and electrically connected to the control assembly 500, and is used to detect the temperature of the atomizer assembly 200. The control assembly 500 is further used to adjust the output power of the battery 400 based on the temperature of the atomizer assembly 200.
[0057] The control component 500 can control the atomization rate of the atomized liquid 300 within a preset range. For example, the control component 500 can have a preset temperature, and the temperature sensing element 700 can detect the temperature of the atomizing component 200. The control component 500 compares the detected temperature with the preset temperature. If the detected temperature is greater than the preset temperature, the control component 500 reduces the output power of the battery 400; if the detected temperature is equal to the preset temperature, the control component 500 returns to the step of detecting the temperature of the atomizing component 200 and comparing the detected temperature with the preset temperature; if the detected temperature is less than the preset temperature, the control component 500 increases the output power of the battery 400.
[0058] In this second embodiment, the temperature sensing element 700 has the same structure and function as the temperature sensing element 610 in the first embodiment, and will not be described in detail here. In this second embodiment, the function of maintaining the stability of the atomization rate of the atomized liquid 300 by the atomizing assembly 200 can be integrated into the control assembly 500, so that the control of this function can be completed by the control assembly 500, eliminating the need for a separate temperature control element 620 as in the first embodiment, thereby reducing the size of the electronic cigarette 10.
[0059] Optionally, the atomizing assembly 200 includes an atomizing core (not shown), and the temperature sensing element is attached to the outer wall or inner wall of the atomizing core. The temperature sensing element 700 includes a thermistor (not shown). Figure 4 As shown, the oil storage chamber 101 is provided with oil cotton 900, the atomizing core is wrapped by the oil cotton 900, and the temperature sensing element 700 is disposed within the oil cotton 900. For example, the electronic cigarette 10 may include an oil cotton sleeve 180, which is housed within the battery housing 120, the oil cotton 900 is wrapped within the oil cotton sleeve 180, and the temperature sensing element 700 is disposed within the oil cotton 900. The atomized liquid 300 can infiltrate the oil cotton 900.
[0060] Example 3
[0061] exist Figure 1-Figure 2 Compare with Figure 5 , Figure 5 It is a schematic cross-sectional structure diagram of the third embodiment of the electronic cigarette of the present application.
[0062] The electronic cigarette 10 of the third embodiment of the present application is modified based on the electronic cigarette 10 of the first embodiment. The difference between the electronic cigarette 10 of the first embodiment and the electronic cigarette 10 of the first embodiment is that, in the third embodiment, Figure 5As shown, the electronic cigarette 10 further includes a temperature sensing element 800, which is arranged in contact with the atomizer assembly 200 and electrically connected to the battery 400, for sensing the temperature of the atomizer assembly 200 and adjusting its own power based on the temperature of the atomizer assembly 200 to adjust the output power of the battery 400 to the atomizer assembly 200.
[0063] In this third embodiment, the temperature sensing element 800 may be a thermistor (not shown). In one embodiment, the thermistor may be connected in series with the atomizer assembly 200, and the thermistor may be, for example, a thermistor with a positive temperature coefficient. The resistance of the thermistor increases based on the increase in the temperature of the atomizer assembly 200, and decreases based on the decrease in the temperature of the atomizer assembly 200. In this way, when the ambient temperature rises, the output power of the battery 400 decreases based on the increase in the resistance of the thermistor, and when the ambient temperature decreases, the output power of the battery 400 increases based on the decrease in the resistance of the thermistor. In this way, the relative stability of the output power of the battery 400 can be maintained to maintain the stability of the atomization rate of the atomized liquid 300 by the atomizer assembly 200.
[0064] In this third embodiment, the structure and function of the temperature sensing element 800 are the same as those of the temperature sensing element 610 in the first embodiment, and are not described in detail here. Optionally, the atomizing assembly 200 includes an atomizing core (not shown), and the temperature sensing element 800 is attached to the outer wall or inner wall of the atomizing core. Figure 4 As shown, a cotton ball 900 is provided within the oil storage chamber 101, the atomizing core is wrapped by the cotton ball 900, and the temperature sensing element 800 is disposed within the cotton ball 900. For example, the electronic cigarette 10 may include a cotton ball sleeve 180, which is housed within the battery housing 120. The cotton ball 900 is wrapped within the sleeve 180, and the temperature sensing element 800 is disposed within the cotton ball 900. The atomized liquid 300 can infiltrate the cotton ball 900.
[0065] The above is only an implementation method of the present application and does not limit the patent scope of the present application. Any equivalent structure or equivalent process transformation made using the contents of the description and drawings of this application, or directly or indirectly applied in other related technical fields, are also included in the patent protection scope of the present application.
Claims
1. An electronic cigarette, characterized in that: include: The housing comprises a nozzle and a lower housing, wherein the lower housing is provided with an air inlet, and the nozzle is provided with an air outlet; an atomizing assembly disposed within the housing and forming an oil storage chamber between the atomizing assembly and the housing; an air guide channel being provided on a side of the atomizing assembly facing away from the oil storage chamber, the oil storage chamber being in communication with the air guide channel, and the air guide channel being in communication with the air inlet and the air outlet; Atomized liquid is provided in the oil storage chamber, wherein the atomized liquid includes at least a medical drug, and the atomizing assembly is used to atomize the atomized liquid; Oil cotton is arranged in the oil storage chamber; the atomizing component is partially wrapped by the oil cotton and partially located in the air guide channel, and the atomizing component absorbs the atomized liquid from the oil cotton and heats and atomizes the atomized liquid.
2. The electronic cigarette according to claim 1, characterized in that The medical drugs include: dandelion essential oil.
3. The electronic cigarette according to claim 1, characterized in that Further including: a battery, disposed in the lower housing, for providing electrical energy to the atomizer assembly; The control component is arranged in the lower shell and is electrically connected to the atomizing component and the battery, and is used to control the atomizing component to atomize the atomized liquid.
4. The electronic cigarette according to claim 3, characterized in that Further including: The temperature control component is arranged in the lower shell and is electrically connected to the battery, and is used to detect the temperature of the atomizer component and adjust the output power of the battery based on the temperature of the atomizer component.
5. The electronic cigarette according to claim 4, characterized in that The temperature control component includes: a temperature sensing element, arranged in contact with the atomizing assembly and used to detect the temperature of the atomizing assembly; A temperature control element is electrically connected to the temperature sensing element and the control component, and is used to adjust the output power of the battery based on the temperature of the atomizing component.
6. The electronic cigarette according to claim 3, characterized in that It further includes a temperature sensing element, which is arranged in contact with the atomizer assembly and electrically connected to the battery, and is used to sense the temperature of the atomizer assembly and adjust its own power based on the temperature of the atomizer assembly to adjust the output power of the battery to the atomizer assembly.
7. The electronic cigarette according to claim 3, characterized in that It further includes a temperature sensing element, which is arranged in contact with the atomizer assembly and electrically connected to the control assembly, and is used to detect the temperature of the atomizer assembly. The control assembly is further used to adjust the output power of the battery based on the temperature of the atomizer assembly.
8. The electronic cigarette according to claim 5 or 6, characterized in that: The atomization assembly includes an atomization core, and the temperature sensing element is attached to the outer wall or the inner wall of the atomization core.
9. The electronic cigarette according to claim 6, characterized in that The temperature sensing element includes a thermistor.
10. The electronic cigarette according to claim 8, characterized in that The temperature sensing element is arranged in the oil cotton.