Atomization device capable of adjusting ice degree and sweetness

By designing an independent liquid storage chamber and heating core, the device enables personalized adjustment of the icy and sweetness of the vapor, solving the problem that existing devices cannot adjust these properties and meeting users' individual needs.

CN224268299UActive Publication Date: 2026-05-26SHENZHEN LOST VAPE TECHNOLOGY LTD
View PDF 0 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHENZHEN LOST VAPE TECHNOLOGY LTD
Filing Date
2025-04-23
Publication Date
2026-05-26

AI Technical Summary

Technical Problem

Existing atomizing devices cannot adjust the coldness and sweetness of the vapor according to user preferences.

Method used

It adopts an independent liquid storage chamber and heating core design to store e-liquid, sweetener and cooling agent respectively, and the temperature of each heating core can be controlled by independent buttons to achieve the adjustment of the coldness and sweetness of the vapor.

Benefits of technology

Users can adjust the coldness and sweetness of the vapor according to their personal preferences to meet their individual needs.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224268299U_ABST
    Figure CN224268299U_ABST
Patent Text Reader

Abstract

The utility model discloses an atomization device capable of adjusting ice degree and sweetness, which comprises a main body, three liquid storage cavities used for storing tobacco juice, sweetening agent and cooling agent respectively are arranged in the main body, each liquid storage cavity is provided with an independent air passage, and the air passages are communicated with one another. A heating core for heating the tobacco juice, the sweetening agent and the cooling agent in the corresponding liquid storage cavity is arranged in each air channel, a power supply assembly and a microphone for controlling the power supply assembly to supply power to each heating core during smoking are further arranged in the main body, and a first key and a second key are arranged on the main body; the first key can enable the power supply assembly to control the temperature of the heating core for heating the sweetening agent by pressing outside the main body, and the second key can enable the power supply assembly to control the temperature of the heating core for heating the cooling agent by pressing outside the main body. By the adoption of the technical scheme, the problem that according to an existing atomization device, tobacco juice, sweetening agents and cooling agents are mixed in a liquid storage cavity to be heated and atomized, and consequently a user cannot adjust the ice degree and the sweetness of smoke according to personal preferences is solved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the field of atomization technology, and in particular to an atomization device with adjustable ice content and sweetness. Background Technology

[0002] Currently, existing atomizing devices add cooling and sweetening agents to the e-liquid to make the atomized vapor have a cooling and sweet taste. The cooling and sweetening agents are then mixed with the e-liquid and injected into the storage chamber of the cartridge. Finally, the heating element heats the mixture to a constant temperature to produce vapor for inhalation. The cooling and sweetening properties of the vapor produced by this mixed e-liquid through constant temperature heating do not change, which prevents users from adjusting the cooling and sweetness of the vapor to their liking. Utility Model Content

[0003] The purpose of this invention is to provide an atomizing device with adjustable ice and sweetness, which solves the problem in existing atomizing devices that prevent users from adjusting the ice and sweetness of the vapor to suit their preferences when inhaling.

[0004] The technical solution adopted by this utility model to solve the above-mentioned technical problems is as follows: an adjustable ice and sweetness atomizing device, comprising a main body, wherein the main body has three liquid storage chambers for storing e-liquid, sweetener, and cooling agent respectively, each of the liquid storage chambers has an independent air passage, each of the air passages is connected to each other, and each air passage has a heating core for heating the e-liquid, sweetener, and cooling agent in the corresponding liquid storage chamber, the main body also has a power supply component and a microphone for controlling the power supply component to supply power to each heating core when smoking, the main body is provided with a first button and a second button, the first button being outside the main body, which, when pressed, allows the power supply component to control the temperature of the heating core for heating the sweetener, and the second button being outside the main body, which, when pressed, allows the power supply component to control the temperature of the heating core for heating the cooling agent.

[0005] In one embodiment, the main body is further provided with an air inlet and a mist discharge channel communicating with each air passage, and the main body is also provided with an airflow sensing part communicating with the air inlet, and the microphone is disposed in the airflow sensing part.

[0006] In one embodiment, the air intake is formed by an air intake hole and / or an air intake channel; the airflow sensing part is formed by a through hole and / or a groove.

[0007] In one embodiment, the main body also has a first start button and a second start button. The first start button is used to start the power assembly to control the temperature of the heating core of the sweetener, and the second start button is used to start the power assembly to control the temperature of the heating core of the cooling agent. The first button abuts against the first start button, and the second button abuts against the second start button.

[0008] In one embodiment, the main body includes three cartridges. Each cartridge contains a storage chamber for storing e-liquid, sweetener, and cooling agent. Each storage chamber has a mist tube and a storage cotton wrapped around the outer wall of the mist tube. Each air passage is formed in the corresponding mist tube. Each heating element is disposed in the corresponding mist tube. The outer wall of each mist tube has multiple oil inlet holes. One end of each heating element extends from the oil inlet hole and abuts against the corresponding storage cotton.

[0009] In one embodiment, each of the e-cigarette cartridges is vertically stacked from bottom to top. The cartridge containing e-liquid in its storage chamber is located at the top, the cartridge containing sweetener in its storage chamber is located in the middle, and the cartridge containing cooling agent in its storage chamber is located at the bottom. One end of each vapor tube extends to the top of the corresponding cartridge, and the other end of each vapor tube extends to the bottom of the corresponding cartridge, so that each airway is interconnected.

[0010] In one embodiment, the main body further includes a housing and a mouthpiece. The power supply assembly and each of the e-liquid cartridges are disposed inside the housing. An opening is provided at the top of the housing, which corresponds to the top of the e-liquid cartridge in the liquid storage chamber. The lower end of the mouthpiece is inserted into the housing through the opening, and the bottom end of the mouthpiece abuts against the top of the e-liquid cartridge in the liquid storage chamber. A mist discharge channel communicating with each airway is provided inside the mouthpiece.

[0011] In one embodiment, the power supply assembly includes a control board and a button board, as well as battery cells. The battery cells are electrically connected to the control board, and the control board is electrically connected to the button board, the microphone, and each heating element. The button board is provided with a first start button and a second start button. The outer wall of the housing is provided with a first button hole corresponding to the first start button and a second button hole corresponding to the second start button. One end of the first button is inserted into the housing through the first button hole and abuts against the first start button, while the other end of the first button is exposed outside the housing. One end of the second button is inserted into the housing through the second button hole and abuts against the second start button, while the other end of the second button is exposed outside the housing.

[0012] In one embodiment, the main body also includes a bracket, which is also disposed inside the outer shell. The top of the bracket abuts against the bottom of the e-cigarette cartridge containing the cooling agent in the liquid storage cavity. The bottom of the bracket has a groove, and the top of the bracket has a through hole communicating with the groove. The groove and the through hole constitute an airflow sensing part, and the microphone is disposed in the groove.

[0013] In one embodiment, the main body further includes a bottom shell, which is disposed at the bottom end of the outer shell. An air inlet is provided at the bottom end of the bottom shell, and an air inlet channel extending through to the bottom end of the support is provided at the top end of the support. The air inlet corresponds to and communicates with the lower end of the air inlet channel. The air inlet and the air inlet channel constitute an air intake part. The upper end of the air inlet channel communicates with the air passage of the tobacco cartridge storing the cooling agent. The air inlet channel also communicates with the through hole.

[0014] The adjustable ice and sweetness atomizing device of this utility model has the following beneficial effects: The adjustable ice and sweetness atomizing device of this utility model, by storing the e-liquid, sweetener and cooling agent separately and heating and atomizing them separately with individual temperature control, enables users to adjust the ice and sweetness of the vapor according to their own preferences. Attached Figure Description

[0015] The present invention will now be described in detail with reference to the accompanying drawings, so that the above-mentioned advantages of the present invention become clearer. Among them,

[0016] Figure 1 This is an exploded view of the main body of the atomizing device of this utility model;

[0017] Figure 2 This is a three-dimensional schematic diagram of the main body of the atomizing device of this utility model;

[0018] Figure 3 This is a front cross-sectional view of the main body of the atomizing device of this utility model;

[0019] Figure 4 This is a side sectional view of the main body of the atomizing device of this utility model;

[0020] Figure 5 This is a diagram showing the airflow and smoke direction when the atomizing device of this utility model is working. Detailed Implementation

[0021] The following detailed description of the embodiments of this utility model, in conjunction with the accompanying drawings, will provide a thorough understanding of how this utility model uses technical means to solve technical problems and achieve technical effects, enabling its implementation. It should be noted that, provided there is no conflict, the various embodiments and features within them can be combined with each other, and all resulting technical solutions are within the protection scope of this utility model.

[0022] It should be noted that the specification of this utility model contains a large number of technical features distributed across various technical solutions. Listing all possible combinations of technical features (i.e., technical solutions) would make the specification excessively lengthy. To avoid this problem, the various technical features of the utility model described above, the various technical features of the utility model in the following embodiments and examples, and the various technical features of the utility model in the accompanying drawings can be freely combined to form various new technical solutions (all of which are considered to have been described in this specification), unless such a combination of technical features is technically infeasible. For example, in one example, feature A+B+C is described, and in another example, feature A+B+D+E is described. Features C and D are equivalent technical means that serve the same function; technically, only one needs to be used, and they cannot be used simultaneously. Feature E can technically be combined with feature C. Therefore, the solution A+B+C+D should not be considered as described because it is technically infeasible, while the solution A+B+C+E should be considered as described.

[0023] In this utility model, the terms "upper", "middle", "lower", "top", "bottom", "inner", and "outer" are based on the orientation or positional relationship shown in the accompanying drawings. They are only used to facilitate the description and understanding of the technology of this utility model, and are not intended to limit the device or component to have a specific orientation or to be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.

[0024] like Figure 1-4As shown, this utility model provides an adjustable ice and sweetness atomizing device, including a main body 12. The main body 12 has three storage chambers 602 for storing e-liquid, sweetener, and cooling agent, respectively. Each storage chamber 602 has an independent air passage 601, and each air passage 601 is interconnected. Each air passage 601 has a heating element 605 for heating the e-liquid, sweetener, and cooling agent in the corresponding storage chamber 602. The main body 12 also has a power supply component 1201 and a microphone 9 for controlling the power supply component 1201 to supply power to each heating element 605 when smoking. The main body 12 has a first button 3 and a second button 4. The first button 3 is located outside the main body 12 and can be pressed to allow the power supply component 1201 to control the temperature of the heating element 605 for heating the sweetener. The second button 4 is located outside the main body 12 and can be pressed to allow the power supply component 1201 to control the temperature of the heating element 605 for heating the cooling agent. It should be noted that by storing the e-liquid, sweetener, and cooling agent separately and heating and atomizing them with individual temperature control, users can adjust the coldness and sweetness of the vapor according to their own preferences when vaping.

[0025] In some embodiments, the main body 12 is further provided with an air inlet 1202 communicating with each air passage 601 and a mist discharge channel 101. The main body 12 also has an airflow sensing part 1203 communicating with the air inlet 1202, and the microphone 9 is disposed in the airflow sensing part 1203. It should be noted that when smoking, the external airflow enters the airflow sensing part 1203 from the air inlet 1202. After the microphone 9 senses the airflow in the airflow sensing part 1203, it can activate the power supply component 1201 to power each heating element 605 to make it heat up. Each heating element 605 heats up the e-liquid, sweetener and cooling agent to produce smoke. When smoking, the external airflow can enter each air passage 601 from the air inlet 1202 at the same time, and then drive the smoke out from the mist discharge channel 101 for the user to inhale.

[0026] In some embodiments, the air intake 1202 is formed by an air intake hole 1101 and / or an air intake channel 801; the airflow sensing part 1203 is formed by a through hole 803 and / or a groove 802. In this embodiment, the air intake 1202 is formed by an air intake hole 1101 and an air intake channel 801. The air intake hole 1101 is used to connect the outside atmosphere with the air intake channel 801, and the air intake channel 801 is used to guide airflow into each air passage 601 to drive the smoke out. In this embodiment, the airflow sensing part 1203 is formed by a through hole 803 and a groove 802. The groove 802 is used to accommodate the microphone 9, and the through hole 803 is used to guide the airflow through the air intake channel 801 into the groove 802 to activate the microphone 9.

[0027] In some embodiments, the main body 12 further includes a first start button 701 and a second start button 702. The first start button 701 is used to start the power supply assembly 1201 to control the temperature of the heating core 605 of the sweetener. The second start button 702 is used to start the power supply assembly 1201 to control the temperature of the heating core 605 of the cooling agent. The first button 3 abuts against the first start button 701, and the second button 4 abuts against the second start button 702. During normal inhalation, after the microphone 9 activates the power supply component 1201 to supply power to each heating element 605, the heating temperature of the heating element 605 is 250℃. At this time, the icy and sweetness of the smoke produced by heating is the lowest. Each time the first button 3 and the second button 4 are pressed, the temperature of the heating element 605 for heating the sweetener and the heating element 605 for heating the cooler can rise by 10℃, thereby increasing the icy and sweetness. If the first button 3 and the second button 4 are pressed more than three times, the temperature of the heating element 605 for heating the sweetener and the heating element 605 for heating the cooler will return to the starting point of 250℃.

[0028] In some embodiments, the main body 12 includes three cartridges 6. Each cartridge 6 has a storage chamber 602 for storing e-liquid, sweetener, and cooling agent. Each storage chamber 602 has a mist tube 604 and a storage cotton 603 wrapped around the outer wall of the mist tube 604. Each air passage 601 is formed in the corresponding mist tube 604. Each heating element 605 is disposed in the corresponding mist tube 604. Each mist tube 604 has a plurality of oil inlet holes 606 on its outer wall. One end of each heating element 605 extends out from the oil inlet hole 606 and abuts against the corresponding storage cotton 603. The mist tube 604 is used to isolate the e-liquid, sweetener, and cooling agent in the corresponding liquid storage chamber 602. The liquid storage cotton 603 is used to absorb the e-liquid, sweetener, and cooling agent in the corresponding liquid storage chamber 602. Each air passage 601 is used to circulate air and exhaust smoke. Each heating element 605 extends from the oil inlet 606 at one end and abuts against the corresponding liquid storage cotton 603, thereby absorbing the e-liquid, sweetener, and cooling agent in the corresponding liquid storage cotton 603.

[0029] In some embodiments, each cartridge 6 is vertically stacked from bottom to top. The cartridge 6 containing e-liquid in the reservoir 602 is located at the top, the cartridge 6 containing sweetener in the reservoir 602 is located in the middle, and the cartridge 6 containing cooling agent in the reservoir 602 is located at the bottom. One end of each atomizing tube 604 extends to the top of the corresponding cartridge 6, and the other end extends to the bottom of the corresponding cartridge 6, making each airway 601 interconnected. The vapor generated by the heating core 605 heating the cooling agent, the vapor generated by the heating core 605 heating the sweetener, and the vapor generated by the heating core 605 heating the e-liquid are mixed together by airflow within the corresponding airways 601 and then discharged for the user to inhale.

[0030] In some embodiments, the main body 12 further includes a housing 2 and a mouthpiece 1. A power supply assembly 1201 and each tobacco cartridge 6 are disposed within the housing 2. An opening 203 is provided at the top of the housing 2, corresponding to the top of the tobacco cartridge 6 containing e-liquid in the liquid storage chamber 602. The lower end of the mouthpiece 1 is inserted into the housing 2 through the opening 203, and the bottom end of the mouthpiece 1 abuts against the top of the tobacco cartridge 6 containing e-liquid in the liquid storage chamber 602. A mist discharge channel 101 communicating with each airway 601 is provided inside the mouthpiece 1. The housing 2 is used to house each tobacco cartridge 6 and the power supply assembly 1201. The opening 203 allows the mouthpiece 1 to be inserted into the housing 2 and aligned with the top of the tobacco cartridge 6 containing e-liquid. The mouthpiece 1 is used to inhale smoke, and the mist discharge channel 101 is used to open the airway 601, allowing the smoke to be inhaled.

[0031] In some embodiments, the power supply assembly 1201 includes a control board 10 and a button board 7, as well as a battery cell 5. The battery cell 5 is electrically connected to the control board 10. The control board 10 is electrically connected to the button board 7, the microphone 9, and each heating element 605. The button board 7 is provided with a first start button 701 and a second start button 702. The outer wall of the housing 2 is provided with a first button hole 201 corresponding to the first start button 701 and a second button hole 202 corresponding to the second start button 702. One end of the first button 3 is inserted into the housing 2 through the first button hole 201 and abuts against the first start button 701. The other end of the first button 3 is exposed outside the housing 2. One end of the second button 4 is inserted into the housing 2 through the second button hole 202 and abuts against the second start button 702. The other end of the second button 4 is exposed outside the housing 2. Among them, the battery cell 5 is used to power the control board 10 to enable its electronic control function. The control board 10 powers the button board 7, so that the button board 7 and the boost circuit on the control board 10 form a closed loop. The control board 10 powers the microphone 9 to enable the microphone 9 to activate the airflow sensing control power supply function. The control board 10 powers each heating element 605 through the microphone 9 to make it heat up. The button board 7 is used to fix and electrically connect the first start button 701 and the second start button 702. The first button hole 201 is used for the first button 3 to be inserted into the housing 2 and dock with the first start button 701. The second button hole 202 is used for the second button 4 to be inserted into the housing 2 and dock with the second start button 702.

[0032] In some embodiments, the main body 12 further includes a support 8, which is also disposed within the outer casing 2. The top end of the support 8 abuts against the bottom end of the tobacco cartridge 6 containing the cooling agent in the liquid storage cavity 602. A groove 802 is formed at the bottom end of the support 8, and a through hole 803 communicating with the groove 802 is formed at the top end of the support 8. The groove 802 and the through hole 803 constitute the airflow sensing part 1203, and the microphone 9 is disposed within the groove 802. The support 8 is used to support each tobacco cartridge 6 and seal each tobacco cartridge 6 within the outer casing 2. The groove 802 and the through hole 803 are integrally formed with the support 8 using an in-mold injection molding process, without the need for machining.

[0033] In some embodiments, the main body 12 further includes a bottom shell 11, which is disposed at the bottom end of the outer shell 2. An air inlet 1101 is provided at the bottom end of the bottom shell 11. An air inlet channel 801 is provided at the top end of the support 8, extending through to the bottom end of the support 8. The air inlet 1101 corresponds to and communicates with the lower end of the air inlet channel 801. The air inlet 1101 and the air inlet channel 801 constitute an air intake part 1202. The upper end of the air inlet channel 801 communicates with the air passage 601 of the tobacco cartridge 6 storing the cooling agent. The air inlet channel 801 also communicates with the through hole 803. The bottom shell 11 is used to seal the bottom of the outer shell 2. The mouthpiece 1 is used for smoking. External airflow can enter the air intake channel 801 through the air intake hole 1101, and then enter the groove 802 through the through hole 803 through the air intake channel 801. This causes the microphone 9 to activate the control board 10 to heat each heating element 605, and then heat the cooling agent, sweetener and e-liquid to produce smoke. Then the airflow enters the air passage 601 and carries the smoke from the mist discharge channel 101 into the user's mouth to be inhaled.

[0034] The following detailed description uses preferred embodiments.

[0035] like Figure 1-4As shown, the atomizing device of this utility model includes: a main body 12, which includes: a mouthpiece 1, a shell 2, a first button 3, a second button 4, a battery 5, a cartridge 6, a button plate 7, a bracket 8, a microphone 9, a control board 10, and a bottom shell 11. There are three cartridges 6, each stacked vertically from bottom to top. Each cartridge 6 is installed inside the shell 2, and each cartridge 6 has a liquid storage cavity 602 for storing e-liquid, sweetener, and cooling agent. Each liquid storage cavity 602 is equipped with an atomizing tube 604 to isolate the e-liquid, sweetener, and cooling agent within the corresponding liquid storage cavity 602. Each liquid storage cavity 602 also has a liquid storage cotton 603 wrapped around the outer wall of the corresponding atomizing tube 604 to absorb the e-liquid, sweetener, and cooling agent within the corresponding liquid storage cavity 602. Each mist tube 604 has an airway 601 for airflow and smoke exhaust. Each airway 601 contains a heating element 605 for heating the e-liquid, sweetener, and cooling agent in the corresponding liquid storage cotton 603. Each mist tube 604 has four oil inlet holes 606 on its outer wall. One end of each heating element 605 extends from the oil inlet hole 606 and abuts against the corresponding liquid storage cotton 603 to absorb the e-liquid, sweetener, and cooling agent. One end of each mist tube 604 extends to the top of the corresponding cartridge 6, and the other end extends to the bottom of the corresponding cartridge 6, allowing each airway 601 to communicate with each other. The top of the outer shell 2 has an opening 203 corresponding to the top of the cartridge 6 containing e-liquid in the liquid storage cavity 602, for inserting the mouthpiece 1 into the outer shell 2. The mouthpiece 1, with its lower end inserted into the outer casing 2 through the opening 203, aligns with the top of the e-liquid cartridge 6. The upper end of the mouthpiece 1 is exposed outside the outer casing 2 for inhalation. The bottom end of the mouthpiece 1 abuts against the top of the e-liquid cartridge 6 in the liquid storage chamber 602. The mouthpiece 1 has a mist exhaust channel 101 communicating with each airway 601 for extracting smoke. The control board 10, button board 7, and battery cell 5 are also installed inside the outer casing 2. The battery cell 5 is electrically connected to the control board 10 to power it and activate its electronic control function. The control board 10 is electrically connected to each heating element 605 to power it and generate heat. The control board 10 is electrically connected to the button board 7 to power it, enabling the boost circuit on the button board 7 to connect with the control board 10. A closed circuit is formed. The button panel 7 is equipped with a first start button 701 and a second start button 702. The outer wall of the housing 2 has a first button hole 201 corresponding to the first start button 701 and a second button hole 202 corresponding to the second start button 702. One end of the first button 3 is inserted into the housing 2 through the first button hole 201 and abuts against the first start button 701, while the other end of the first button 3 is exposed outside the housing 2. One end of the second button 4 is inserted into the housing 2 through the second button hole 202 and abuts against the second start button 702, while the other end of the second button 4 is exposed outside the housing 2. Each time the first button 3 and the second button 4 are pressed, the first start button 701 and the second start button 702 can respectively activate the control board 10 to control the temperature of the heating core 605 for heating the sweetener.The heating element 605, which heats the cooling agent, increases the iciness and sweetness of the vapor. A bracket 8 is also installed inside the outer casing 2 to support each cartridge 6 and seal it within the casing 2. The top of the bracket 8 abuts against the bottom of the cartridge 6 containing the cooling agent in the storage chamber 602. A groove 802 is provided at the bottom of the bracket 8 to accommodate the microphone 9. A through hole 803 communicating with the groove 802 is provided at the top of the bracket 8 to allow airflow into the groove 802. The microphone 9, located within the groove 802, senses the airflow and activates the control board 10 to power each heating element 605. The control board 10 is electrically connected to the microphone 9 to power it and activate its airflow sensing function. The bottom shell 11, which controls the power supply function, is installed at the bottom of the outer shell 2 to seal the bottom of the bottom shell 11. An air inlet 1101 is provided at the bottom of the bottom shell 11 for air intake. An air intake channel 801, extending from the top of the support 8 to the bottom of the support 8, is provided. The lower end of the air inlet 1101 corresponds to and communicates with the air intake channel 801. The upper end of the air intake channel 801 communicates with the air passage 601 of the tobacco cartridge 6 containing the cooling agent, guiding the airflow entering through the air inlet 1101 into the air passage 601. The air intake channel 801 also communicates with a through hole 803, guiding the airflow entering through the air inlet 1101 from the through hole 803 into the groove 802. All components are combined and work together to form the main body 12.

[0036] like Figure 5 As shown, the working principle of the atomizing device and the specific implementation of airflow and smoke direction during smoking in this embodiment are explained. Before use, the e-liquid, sweetener, and cooling agent stored in the liquid storage chamber 602 of each cartridge 6 can be absorbed by the corresponding liquid storage cotton 603. The e-liquid, sweetener, and cooling agent absorbed in the corresponding liquid storage cotton 603 can enter the heating core 605 through one end of the corresponding heating core 605. Smoking is performed through the mouthpiece 1, and the external airflow can enter the air intake channel through the air inlet 1101. 801, and then through the air intake channel 801, it enters the groove 802 through the through hole 803. After the microphone 9 senses the change in airflow in the groove 802, it can activate the control board 10 to power each heating element 605. After each heating element 605 is powered on, it can heat up the e-liquid, sweetener and cooling agent to produce smoke. After the airflow enters the air intake channel 801 through the air intake hole 1101, it can also enter the air passage 601 at the same time, and then carry the smoke from the mist discharge channel 101 into the user's mouth to be inhaled.

[0037] During normal inhalation, after the microphone 9 activates the control board 10 to supply power to each heating element 605, the heating temperature of the heating element 605 is 250℃. At this temperature, the coldness and sweetness of the smoke produced by heating are at their lowest. Each time the first button 3 and the second button 4 on the outer casing 2 are pressed, the first start button 701 and the second start button 702 can respectively activate the control board 10 to control the temperature of the heating element 605 for heating the sweetener and the heating element 605 for heating the coolener to rise by 10℃, thereby increasing the coldness and sweetness of the smoke. If the first button 3 and the second button 4 are pressed more than three times, the temperature of the heating element 605 for heating the sweetener and the heating element 605 for heating the coolener will return to the starting point of 250℃, so that the user can adjust the coldness and sweetness of the smoke according to their own preferences.

[0038] Finally, it should be noted that the above are merely preferred embodiments of this utility model and are not intended to limit the utility model. Although the utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the protection scope of this utility model.

Claims

1. An atomizing device with adjustable ice content and sweetness, characterized in that, The device includes a main body containing three storage chambers for storing e-liquid, sweetener, and cooling agent, respectively. Each storage chamber has an independent air passage, and each air passage is interconnected. Each air passage contains a heating element for heating the corresponding e-liquid, sweetener, and cooling agent in the storage chamber. The main body also includes a power supply assembly and a microphone that controls the power supply assembly to power each heating element when smoking. The main body has a first button and a second button. Pressing the first button on the outside of the main body allows the power supply assembly to control the temperature of the heating element for heating the sweetener. Pressing the second button on the outside of the main body allows the power supply assembly to control the temperature of the heating element for heating the cooling agent.

2. The atomizing device according to claim 1, characterized in that, The main body is also provided with an air intake and a mist discharge channel communicating with each air passage. The main body is also provided with an airflow sensing part communicating with the air intake, and the microphone is located in the airflow sensing part.

3. The atomizing device according to claim 2, characterized in that, The air intake is formed by an air intake hole and / or an air intake channel; the airflow sensing part is formed by a through hole and / or a groove.

4. The atomizing device according to claim 1, characterized in that, The main body also has a first start button and a second start button. The first start button is used to start the power assembly to control the temperature of the heating core of the sweetener. The second start button is used to start the power assembly to control the temperature of the heating core of the cooling agent. The first button abuts against the first start button, and the second button abuts against the second start button.

5. The atomizing device according to any one of claims 1 to 4, characterized in that, The main body includes three cartridges. Each cartridge contains a storage chamber for storing e-liquid, sweetener, and cooling agent. Each storage chamber has a mist tube and a storage cotton wrapped around the outer wall of the mist tube. Each air passage is formed in the corresponding mist tube. Each heating element is disposed in the corresponding mist tube. Each mist tube has multiple oil inlet holes on its outer wall. One end of each heating element extends from the oil inlet hole and abuts against the corresponding storage cotton.

6. The atomizing device according to claim 5, characterized in that, Each of the aforementioned cartridges is vertically stacked from bottom to top. The cartridge containing e-liquid in its reservoir is located at the top, the cartridge containing sweetener in its reservoir is located in the middle, and the cartridge containing cooling agent in its reservoir is located at the bottom. One end of each vapor tube extends to the top of the corresponding cartridge, and the other end of each vapor tube extends to the bottom of the corresponding cartridge, so that each airway is interconnected.

7. The atomizing device according to claim 5, characterized in that, The main body also includes a shell and a mouthpiece. The power supply component and each of the e-liquid cartridges are disposed inside the shell. The top of the shell has an opening that corresponds to the top of the e-liquid cartridge in the liquid storage chamber. The lower end of the mouthpiece is inserted into the shell through the opening, and the bottom end of the mouthpiece abuts against the top of the e-liquid cartridge in the liquid storage chamber. The mouthpiece has a mist discharge channel that communicates with each of the air passages.

8. The atomizing device according to claim 7, characterized in that, The power supply assembly includes a control board and a button board, as well as battery cells. The battery cells are electrically connected to the control board. The control board is electrically connected to the button board, the microphone, and each heating element. The button board has a first start button and a second start button. The outer wall of the housing has a first button hole corresponding to the first start button and a second button hole corresponding to the second start button. One end of the first button is inserted into the housing through the first button hole and abuts against the first start button, while the other end of the first button is exposed outside the housing. One end of the second button is inserted into the housing through the second button hole and abuts against the second start button, while the other end of the second button is exposed outside the housing.

9. The atomizing device according to claim 7, characterized in that, The main body also includes a bracket, which is also located inside the outer shell. The top of the bracket abuts against the bottom of the e-cigarette cartridge containing the cooling agent in the liquid storage chamber. The bottom of the bracket has a groove, and the top of the bracket has a through hole communicating with the groove. The groove and the through hole constitute an airflow sensing part, and the microphone is located in the groove.

10. The atomizing device according to claim 9, characterized in that, The main body also includes a bottom shell, which is located at the bottom end of the outer shell. An air inlet is provided at the bottom end of the bottom shell. An air inlet channel is provided at the top end of the bracket, extending through to the bottom end of the bracket. The air inlet corresponds to and communicates with the lower end of the air inlet channel. The air inlet and the air inlet channel constitute an air intake part. The upper end of the air inlet channel communicates with the air passage of the e-cigarette cartridge containing the cooling agent. The air inlet channel also communicates with the through hole.