Electronic cigarette atomization device

By introducing an oil storage device and a regulating device into the electronic cigarette atomizing device, and using push switches and seals to precisely control the flow of e-liquid, the problems of oil leakage and uncontrollable oil inlet speed in existing devices are solved, achieving a safer and more stable atomization effect and a personalized smoking experience.

CN223844968UActive Publication Date: 2026-01-30SHENZHEN SP2S TECH CO LTD
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Patent Information

Application Number
CN202422706869.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-06
Publication Date
2026-01-30
Estimated Expiration
2034-11-06

AI Technical Summary

Technical Problem

Existing e-cigarette atomizing devices with oil bottles allow e-liquid to flow in naturally through the oil passage between the oil bottle and the atomizing device, resulting in frequent oil leakage. This makes it impossible to effectively control the amount and speed of e-liquid entering the device, affecting the atomization effect and user experience.

Method used

Design an electronic cigarette atomizing device that includes an oil storage device, an adjustment device, and an atomizing device. The adjustment device precisely controls the amount and speed of e-liquid flowing from the oil storage device to the atomizing device, and a combination of push switch and sealing components is used to achieve precise control.

Benefits of technology

It effectively reduces oil leakage, improves equipment safety and reliability, ensures uniform and stable atomization, enhances user experience, and meets the personalized needs of different users.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223844968U_ABST
    Figure CN223844968U_ABST
Patent Text Reader

Abstract

The utility model belongs to the technical field of electronic cigarette equipment, and discloses electronic cigarette atomization equipment which comprises an oil storage device, an adjusting device and an atomization device. The oil storage device is arranged on the atomization device, the oil storage device is communicated with the atomization device, and the oil storage device is used for storing an atomization medium; the adjusting device is arranged on the atomization device and used for controlling the oil amount and / or speed of the atomization medium flowing from the oil storage device to the atomization device. The regulating device is arranged on the atomization device, so that the oil quantity and the flow speed can be more accurately controlled, the problem of oil leakage caused by natural flow is effectively reduced, the use safety and reliability of a product are improved, meanwhile, the atomization process can be more uniform and stable by controlling the oil quantity and the flow speed, the atomization efficiency is improved, and the product quality is improved. And user experience is enhanced.
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Description

TECHNICAL FIELD

[0001] The utility model relates to electronic cigarette equipment technical field, especially electronic cigarette atomization equipment. BACKGROUND

[0002] With the continuous development of electronic cigarette technology, electronic cigarette atomization equipment with oil bottle is increasingly popular in the market, however, the existing electronic cigarette atomization equipment with oil bottle mainly makes the tobacco tar flow into the atomization equipment through the oil passage between the oil bottle and the atomization equipment, but this way leads to many disadvantages, first, it is easy to leak oil, not only affecting the use experience, but also possibly damaging the equipment and surrounding articles. Second, it cannot effectively control the oil inflow and the oil inflow speed, and the unstable oil inflow will make the atomization effect uneven, affecting the consistency of smoke amount and taste, and the uncontrollable oil inflow speed may lead to insufficient atomization or excessive atomization, reducing the user experience. SUMMARY

[0003] The main purpose of the utility model is to provide an electronic cigarette atomization equipment, which aims to solve the technical problems that the existing electronic cigarette atomization equipment with oil bottle mainly makes the tobacco tar flow into the atomization equipment through the oil passage between the oil bottle and the atomization equipment, leading to oil leakage and the inability to control the oil inflow and the oil inflow speed of the atomization equipment.

[0004] In order to achieve the above-mentioned utility model purpose, the utility model provides an electronic cigarette atomization equipment, which comprises an oil storage device, an adjusting device and an atomization device.

[0005] The oil storage device is arranged on the atomization device, and the oil storage device is in communication with the atomization device, and the oil storage device is used for storing atomization medium.

[0006] The adjusting device is arranged on the atomization device, and the adjusting device is used for controlling the oil amount and / or speed of the atomization medium flowing from the oil storage device to the atomization device.

[0007] Further, the atomization device comprises an atomization main body assembly, and the oil storage device is detachably arranged on the atomization main body assembly.

[0008] Further, the adjusting device comprises a push switch and a first sealing element, the first sealing element is arranged in the atomization main body assembly, and the push switch is slidingly connected to the first sealing element.

[0009] Further, the first sealing element is provided with a first through hole in communication with the oil storage device and the atomization main body assembly, the push switch comprises a push part and an adjusting part connected to the push part, and the adjusting part is provided with a second through hole corresponding to the first through hole at the end away from the push part.

[0010] Further, the adjusting device further comprises an oil guide, the oil guide is arranged through the second through hole, and the oil guide extends towards the oil storage device and the atomization body assembly respectively, so that the oil guide is in contact with the oil storage device and the atomization body assembly respectively.

[0011] Further, the atomization body assembly is provided with a groove, the pushing part is arranged in the groove, and a third through hole is arranged at the bottom of the groove and used for allowing the adjusting part to pass through.

[0012] Further, the atomization body assembly is provided with a first oil guide part, the oil storage device is provided with a second oil guide part corresponding to the first oil guide part, and the oil storage device is connected to the atomization body assembly in communication through the second oil guide part.

[0013] Further, the atomization body assembly is provided with a clamping groove, the oil storage device is provided with a clamping buckle part corresponding to the clamping groove, and the oil storage device is detachably connected to the atomization body assembly in the clamping groove through the clamping buckle part.

[0014] Further, the atomization body assembly comprises a shell, an atomization assembly and a sealed condensation assembly, the atomization assembly is arranged in the shell and in contact with the adjusting device, and the sealed condensation assembly is arranged at the end of the atomization assembly.

[0015] Further, the atomization device further comprises a suction nozzle, the suction nozzle is detachably arranged on the shell, and the suction nozzle is in communication with the atomization assembly.

[0016] Beneficial effects:

[0017] The electronic cigarette atomization equipment disclosed by the utility model has the advantages that the adjusting device is arranged on the atomization device, the adjusting device is used for controlling the oil quantity and / or speed of the atomization medium flowing from the oil storage device to the atomization device, the oil quantity and flow speed can be more accurately controlled by arranging the adjusting device on the atomization device, the oil leakage problem caused by natural flow is effectively reduced, the use safety and reliability of the product are improved, the equipment damage or performance decline caused by excessive or insufficient oil quantity can be avoided, the safety and durability of the product are improved, the atomization process is more uniform and stable by controlling the oil quantity and flow speed, the atomization efficiency is improved, the user experience is enhanced, the user can also adjust the oil quantity and flow speed according to personal preference, the individualized smoking experience is realized, and the needs of different users are met. BRIEF DESCRIPTION OF DRAWINGS

[0018] Figure 1 It is the whole structure schematic view of the electronic cigarette atomization equipment of one embodiment of the utility model;

[0019] Figure 2 It is the adjustment device located first position schematic view of one embodiment of the utility model;

[0020] Figure 3 It is the adjustment device located second position schematic view of one embodiment of the utility model;

[0021] Figure 4 It is the explosion view of the atomization main part assembly of one embodiment of the utility model;

[0022] Figure 5 It is the explosion view of the adjustment device of one embodiment of the utility model;

[0023] Figure 6 It is the cross-sectional view of the electronic cigarette atomization equipment of one embodiment of the utility model.

[0024] Among them:

[0025] 1, oil storage device;2, adjustment device;3, atomization device;

[0026] 10, second oil guide part;11, buckle part;

[0027] 101, second oil guide column;102, second sealing piece;

[0028] 20, push switch;21, first sealing piece;22, first through hole;23, sliding groove;24, oil guide piece;

[0029] 201, push part;202, adjustment part;203, second through hole;204, sink groove;205, anti-skid rib;

[0030] 30, atomization main part assembly;31, recess;32, third through hole;33, first oil guide part;34, clamping groove;35, suction nozzle;

[0031] 301, shell;302, atomization assembly;303, sealed condensation assembly;304, base;305, magnet;306, cartridge electrode;

[0032] 3020, atomization core;3021, oil storage cotton;

[0033] 3030, first condensation cotton;3031, second condensation cotton;3032, third sealing piece;3033, fourth sealing piece;

[0034] 330, sealing groove;331, first oil guide column.

[0035] The purposes, functional features and advantages of the utility model will be further explained in combination with embodiments and with reference to the drawings. DETAILED DESCRIPTION

[0036] It should be understood that the specific embodiments described herein merely exemplify the utility model and are not intended to limit the utility model.

[0037] In the description of the utility model, it should be understood that the orientation or positional relationship indicated by the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise" and the like are based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the utility model and simplifying the description, and therefore cannot be understood as indicating or implying that the devices or elements indicated must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the utility model. In addition, the terms "first" and "second" are only for the purpose of description, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the technical features indicated. Therefore, the features limited by "first" and "second" can explicitly or implicitly include one or more of the features. In the description of the utility model, the meaning of "multiple" is two or more, unless otherwise specifically limited.

[0038] In the description of the utility model, it should be noted that, unless otherwise specifically specified and limited, the terms "mounting", "connection" and "connection" should be understood broadly, for example, it can be fixed connection, or detachable connection, or integrally connected; it can be mechanical connection, it can be directly connected, or indirectly connected through intermediate medium, it can be the communication between two elements or the interaction relationship between two elements. For ordinary skilled persons in the art, the specific meaning of the above terms in the utility model can be understood according to the specific circumstances.

[0039] In the utility model, unless otherwise specifically specified and limited, the "upper" or "lower" of the first feature to the second feature can include the direct contact of the first and second features, or the indirect contact of the first and second features through another feature between them. Moreover, the "upper", "upper" and "upper" of the first feature to the second feature include the vertical direction of the first feature above and oblique above the second feature, or only indicate that the horizontal height of the first feature is higher than that of the second feature. The "below", "below" and "below" of the first feature to the second feature include the vertical direction of the first feature below and oblique below the second feature, or only indicate that the horizontal height of the first feature is less than that of the second feature.

[0040] REFERENCE Figures 1-6The embodiment provides an electronic cigarette atomization device, which comprises an oil storage device 1, an adjusting device 2 and an atomization device 3.

[0041] The oil storage device 1 is arranged on the atomization device 3 and is connected with the atomization device 3, and the oil storage device 1 is used for storing atomization medium.

[0042] The adjusting device 2 is arranged on the atomization device 3, and the adjusting device 2 is used for controlling the oil amount and / or speed of the atomization medium flowing from the oil storage device 1 to the atomization device 3.

[0043] In the above embodiment, the electronic cigarette atomization device comprises the oil storage device 1, the adjusting device 2 and the atomization device 3, wherein the oil storage device 1 is a component for storing atomization medium (usually tobacco tar), preferably an oil bottle, the oil storage device 1 is arranged on the atomization device 3 and is connected with the atomization device 3, thereby providing continuous tobacco tar supply for the atomization process, the adjusting device 2 is arranged on the atomization device 3 and plays a key control role, the adjusting device 2 can accurately adjust the oil amount and / or speed of the atomization medium flowing from the oil storage device 1 to the atomization device 3, and is a core component for realizing accurate atomization, and the atomization device 3 is a core part of the whole device and comprises multiple components, wherein the atomization main body component 30 is an important component, and the oil storage device 1 is detachably connected with the atomization main body component 30, this connection mode not only facilitates the installation and disassembly of the oil storage device 1, but also enables a user to easily disassemble the oil storage device 1 from the atomization main body component 30 when the user needs to add tobacco tar to the oil storage device 1, thereby facilitating the cleaning of the oil storage device 1 and the atomization main body component 30 respectively, adapting to different user demands and ensuring that the tobacco tar can smoothly enter the atomization device 3 from the oil storage device 1 for atomization. In use, the oil storage device 1 is correctly installed on the atomization main body component 30 of the atomization device 3, the connection is ensured to be tight and the communication is ensured to be good, and it is checked whether the adjusting device 2 is in an initial state (usually a closed or minimum flow state), when a user needs to use the electronic cigarette, the oil inflow amount and speed of the tobacco tar are controlled through the adjusting device 2 according to personal preference, if a user wants to have more dense smoke and taste, the oil inflow amount can be appropriately increased and the oil inflow speed can be adjusted to be appropriate, and if a user prefers a light experience, the oil inflow amount can be reduced and the oil inflow speed can be increased. Through the accurate control of the oil flow and speed of the tobacco tar by the adjusting device 2, the oil leakage phenomenon caused by natural flow is effectively avoided, the cleanliness of the device is maintained, the safety in use is improved, the damage of tobacco tar leakage to the surrounding environment and objects is prevented, the oil inflow amount and speed can be flexibly adjusted according to user demands, the atomization process is more uniform and stable, stable oil inflow can ensure that the atomization core 3020 continuously and stably works, the amount of generated smoke and the taste are more consistent, the user experience is greatly enhanced, the user can adjust the oil amount and speed according to personal preference, the individualized demands of different users for smoke density and taste are met, and a more diversified smoking experience is provided for the user.

[0044] Referring to Figures 1-5 In an embodiment, the adjusting device 2 comprises a push switch 20 and a first sealing member 21, the first sealing member 21 is arranged in the atomization body assembly 30, and the push switch 20 is slidingly connected to the first sealing member 21.

[0045] In the above embodiment, the adjusting device 2 comprises a push switch 20 and a first sealing member 21, wherein the push switch 20 is a manual operating part in the adjusting device 2 for controlling the flow of tobacco tar, and the user changes the tobacco tar inflow state by pushing or sliding the switch, the first sealing member 21 is made of silica gel material and has good sealing performance, it is arranged in the atomization body assembly 30 and mainly functions to prevent tobacco tar leakage and provide a sliding connection basis for the push switch 20, the push switch 20 is slidingly connected to the first sealing member 21 and located inside the atomization body assembly 30, so that the push switch 20 can move smoothly on the first sealing member 21, and at the same time, the first sealing member 21 is tightly fitted in the atomization body assembly 30, ensuring the sealing performance of the overall structure. When the device is not in use, the push switch 20 is usually in the closed position, i.e., preventing tobacco tar from entering the atomization device 3, at this time, the first sealing member 21 ensures that there is no tobacco tar leakage, when the user wants to use the electronic cigarette, according to personal preference, the push switch 20 is pushed by the finger, the push switch 20 slides on the first sealing member 21, gradually opening the channel for tobacco tar to enter the atomization device 3, and with the movement of the push switch 20, the tobacco tar inflow amount and speed can be controlled. For example, gently pushing the switch 20 may cause the tobacco tar to enter slowly, producing a relatively light smoke; further pushing the switch 20 will increase the amount and speed of tobacco tar entering, producing a denser smoke, after use, the push switch 20 is pushed back to the closed position, preventing tobacco tar from entering the atomization device 3 again, ensuring that there is no oil leakage when the device is not in use. By sliding the push switch 20 on the first sealing member 21, the amount and speed of tobacco tar entering the atomization device 3 can be accurately adjusted, and the user can flexibly adjust the smoking experience according to his own needs, such as obtaining denser or lighter smoke, effectively preventing tobacco tar from leaking from the connection between the push switch 20 and the atomization body assembly 30.

[0046] Referring to Figures 1-6 In an embodiment, the first sealing member 21 is provided with a first through hole 22 communicating between the oil storage device 1 and the atomization body assembly 30, the push switch 20 comprises a push part 201 and an adjusting part 202 connected to the push part 201, and the adjusting part 202 is provided at one end away from the push part 201 with a second through hole 203 corresponding to the first through hole 22.

[0047] In the above embodiment, the first through hole 22 provided on the first seal 21 is used to communicate the oil storage device 1 and the atomization body assembly 30, which is one of the passages for the flow of tobacco tar. The push switch 20 includes a pushing part 201 and an adjusting part 202 connected to the pushing part 201. The pushing part 201 is an upper structure of the push switch 20, located at the top of the adjusting part 202, and is an integral part of the adjusting part 202. A plurality of anti-slip ribs 205 arranged in an array are provided on the pushing part 201, which can increase the friction between the fingers and the pushing part 201, facilitating user operation. The adjusting part 202 is connected to the pushing part 201 and located in the sliding groove 23 in the first seal 21. The sliding groove 23 provides a sliding space for the adjusting part 202, and the length of the sliding groove 23 in the sliding direction is greater than the length of the adjusting part 202 in the sliding direction, so that the adjusting part 202 can smoothly slide in the sliding groove 23. A sink 204 consistent with the sliding direction is provided at the end of the adjusting part 202 away from the pushing part 201. A second through hole 203 is located at one end of the sink 204. The second through hole 203 corresponds to the first through hole 22 on the first seal 21 and controls the flow of tobacco tar together.

[0048] When the device is not in use, the push switch 20 is usually in the second position, that is, the second through hole 203 on the adjusting part 202 is in a completely disconnected state with the first through hole 22, at this time, the tobacco tar cannot flow from the oil storage device 1 to the atomization body assembly 30, effectively preventing oil leakage. When the user wants to use the electronic cigarette and needs to adjust the amount of smoke, the user holds the pushing part 201 of the push switch 20 with the fingers, and the anti-slip ribs 205 can provide a good grip. According to the size of the required amount of smoke, the push switch 20 is pushed upwards or downwards. If it is pushed upwards, the adjusting part 202 slides upwards in the sliding groove 23, the second through hole 203 gradually approaches and finally completely or partially communicates with the first through hole 22, the tobacco tar begins to flow from the oil storage device 1 to the atomization body assembly 30, and as the degree of communication increases, the amount of oil inflow also increases, thereby generating denser smoke. When the push switch 20 is in the first position, the second through hole 203 on the adjusting part 202 is in a completely connected state with the first through hole 22. If it is pushed downwards, the adjusting part 202 slides downwards, the degree of communication between the second through hole 203 and the first through hole 22 decreases until they are completely disconnected, the amount of oil inflow decreases until it stops, and the amount of smoke also decreases accordingly until no smoke is produced. When the push switch 20 is adjusted to the second position, the second through hole 203 on the adjusting part 202 is in a completely disconnected state with the first through hole 22. After use, the push switch 20 is adjusted to the second position to ensure that the second through hole 203 is completely disconnected from the first through hole 22, preventing the tobacco tar from continuing to flow, maintaining the sealing of the device when not in use, and preventing oil leakage.

[0049] By pushing the up and down adjustment of the switch 20, the degree of communication of the first through hole 22 and the second through hole 203 is changed, thereby accurately controlling the amount of oil flowing from the oil storage device 1 to the atomization main body assembly 30. When a larger amount of smoke is needed, the push switch 20 can be adjusted upwards to make the two through holes fully connected or nearly fully connected, allowing more tobacco tar to enter the atomization device 3. When a smaller amount of smoke is needed or use is stopped, the push switch 20 is adjusted downwards to make the two through holes fully disconnected, preventing the flow of tobacco tar. This precise control can meet the individual needs of different users for the amount of smoke and improve user experience.

[0050] Referring to Figures 1-6 In an embodiment, the adjustment device 2 further comprises an oil guide 24, which is disposed through the second through hole 203, and the oil guide 24 extends towards the oil storage device 1 and the atomization main body assembly 30 respectively, so that the oil guide 24 is in contact with the oil storage device 1 and the atomization main body assembly 30 respectively.

[0051] In the above embodiment, the adjustment device 2 further comprises an oil guide 24, which is a component made of a flexible cotton swab and plays a key role in the adjustment device 2. The oil guide 24 is disposed through the second through hole 203, which is located on the adjustment part 202 of the push switch 20. The two ends of the oil guide 24 extend towards the oil storage device 1 and the atomization main body assembly 30 respectively and are in contact with them respectively, so that the oil guide 24 can transfer tobacco tar between the oil storage device 1 and the atomization main body assembly 30. When the device is not in use, the push switch 20 is in the second position, at which time the oil guide 24 is V-shaped. In this shape, the flow rate of tobacco tar is slow, and it may even be in a state of basically not flowing, effectively preventing the excessive flow of tobacco tar into the atomization device 3 when the device is not in use. When the user starts to use the electronic cigarette and wants to adjust the speed of smoke generation, if the speed of smoke generation needs to be accelerated, the push switch 20 can be adjusted to the first position, and the oil guide 24 changes to a straight shape. The tobacco tar can flow from the oil storage device 1 to the atomization main body assembly 30 at a faster speed, thereby quickly generating a large amount of smoke.

[0052] If the user wants to reduce the speed of smoke generation, the push switch 20 is kept in the second position or adjusted according to the actual situation, the oil guide 24 is kept in the V shape or close to the V shape, the flow speed of the smoke oil is slowed down, the smoke is softer and slower, and after use, the push switch 20 can be restored to the initial second position, and the oil guide 24 becomes V-shaped again to prevent the smoke oil from continuing to flow quickly into the atomization device 3, thereby ensuring the sealing and safety of the equipment when not in use. The shape change of the oil guide 24 can effectively control the speed of the atomization medium flowing from the oil storage device 1 to the atomization device 3. When it is in the shape of a straight line, the resistance of the smoke oil flow is relatively small, and the speed may be fast, which is suitable for situations that require fast smoke generation. When it is in the shape of a V, the smoke oil flow path changes, the resistance increases, and the speed slows down, which can meet the needs of users who have different requirements for the speed of smoke generation, and realize precise control of the oil speed. At the same time, the flexible cotton stick material of the oil guide 24 can stably absorb and conduct the smoke oil, ensuring that the smoke oil does not interrupt or become uneven during the transfer process between the oil storage device 1 and the atomization main assembly 30, thereby ensuring the stability of the atomization effect.

[0053] With reference to Figures 1-5 In an embodiment, a groove 31 is arranged on the atomization main assembly 30, the push part 201 is arranged in the groove 31, and a third through hole 32 is arranged at the bottom of the groove 31 for the adjustment part 202 to pass through.

[0054] In the above embodiment, the groove 31 is arranged on the atomization main assembly 30, which is suitable for accommodating the push part 201 in shape and size, and provides a space for the push part 201 to be placed. The groove 31 is arranged along the sliding direction of the push switch 20, and the third through hole 32 is located at the bottom of the groove 31, which is used for the adjustment part 202 to pass through. The third through hole 32 is also arranged along the sliding direction of the push switch 20, and its length in the sliding direction is greater than the length of the adjustment part 202, and is equal to the length of the first through hole 22 in the first sealing part 21 in the sliding direction. When the equipment is not in use, the push part 201 is in the initial position of the groove 31, which is usually close to the end of the smoke oil flow. At this time, the adjustment part 202 passes through the third through hole 32 and is in the corresponding initial position, and the smoke oil flow channel is in a closed or minimum flow state. When the user needs to use the electronic cigarette and adjust the smoke oil flow, the push part 201 is pushed by the finger to slide in the groove 31, and the push part 201 drives the adjustment part 202 to move in the third through hole 32, according to the direction and distance of the push, the connection degree of the smoke oil flow channel is changed. For example, pushing the push part 201 forward, the adjustment part 202 moves forward, which may gradually open the smoke oil flow channel and increase the smoke oil flow; pushing it backward may close or reduce the smoke oil flow. After use, the push part 201 is pushed back to the initial position of the groove 31, and the adjustment part 202 also returns to the corresponding position, ensuring that the smoke oil flow channel returns to the closed or minimum flow state, preventing the smoke oil from leaking when the equipment is not in use.

[0055] The design of the groove 31 and the third through hole 32 provides a stable sliding path for the push switch 20, the pushing part 201 slides in the groove 31, and the adjusting part 202 passes through the third through hole 32, so that the movement of the push switch 20 is more stable, and the problem of inaccurate operation caused by shaking or deviation is reduced, thereby being able to more accurately control the flow of tobacco tar, the length of the groove 31 in the sliding direction is greater than the length of the pushing part 201, and the length of the third through hole 32 in the sliding direction is greater than the length of the adjusting part 202 and equal to the length of the first through hole 22 in the first sealing member 21 in the sliding direction, which ensures that the push switch 20 has enough space during sliding and will not be hindered, and also ensures the connectivity and accuracy of cooperation between the components, which is beneficial to the smooth flow and accurate control of the tobacco tar.

[0056] Referring to Figures 1-6 In an embodiment, the atomization main body assembly 30 is provided with a first oil guide part 33, and the oil storage device 1 is provided with a second oil guide part 10 corresponding to the first oil guide part 33, and the oil storage device 1 is connected in communication with the atomization main body assembly 30 through the second oil guide part 10 in the first oil guide part 33.

[0057] In the above embodiment, the atomization main body assembly 30 is provided with a first oil guide part 33, and the oil storage device 1 is provided with a second oil guide part 10 corresponding to the first oil guide part 33, wherein the first oil guide part 33 includes a sealing groove 330 and a hollow first oil guide column 331, the sealing groove 330 is provided on the atomization main body assembly 30 and is a groove structure with a certain depth and shape, used for accommodating and fixing related components, and also plays a certain sealing role to prevent tobacco tar leakage, the first oil guide column 331 is a hollow structure fixedly connected to the middle of the sealing groove 330, and it is one of the important channels for tobacco tar flowing from the oil storage device 1 to the atomization main body assembly 30, and the tobacco tar can flow in it, the second oil guide part 10 includes a second oil guide column 101 and a second sealing member 102, the second oil guide column 101 is provided on the oil storage device 1 and extends to a specified height in the direction close to the atomization main body assembly 30, and the inner diameter thereof is greater than or equal to the outer diameter of the first oil guide column 331, so that the first oil guide column 331 can be inserted therein to form a continuous channel for tobacco tar, and the second sealing member 102 is sleeved on the second oil guide column 101, and the outer diameter thereof is greater than or equal to the inner diameter of the sealing groove 330, so that the second sealing member 102 can be embedded in the sealing groove 330, mainly playing a sealing role to prevent tobacco tar leakage from the gap between the second oil guide column 101 and the sealing groove 330.

[0058] In the device assembly, the second oil guide column 101 on the oil storage device 1 is aligned with the first oil guide column 331 on the atomization main body assembly 30, the first oil guide column 331 is inserted into the second oil guide column 101, and the second sealing piece 102 is embedded in the sealing groove 330 to ensure good sealing. When the device is in normal use, the tobacco tar from the oil storage device 1 first enters the second oil guide column 101, then passes through the nested first oil guide column 331 and the second oil guide column 101, and flows into the inside of the atomization main body assembly 30 to provide tobacco tar for the atomization process. The embedding of the second sealing piece 102 in the sealing groove 330 and the nested cooperation of the first oil guide column 331 and the second oil guide column 101 ensure the sealing of the tobacco tar flowing between the oil storage device 1 and the atomization main body assembly 30, thereby effectively preventing tobacco tar leakage, maintaining the cleanliness and normal operation of the device, and improving the reliability and safety of the device.

[0059] With reference to Figures 1-6 In an embodiment, the atomization main body assembly 30 is provided with a clamping groove 34, and the oil storage device 1 is provided with a buckle part 11 corresponding to the clamping groove 34. The oil storage device 1 is detachably connected to the atomization main body assembly 30 through the buckle part 11 buckled in the clamping groove 34.

[0060] In the above embodiment, the clamping groove 34 is provided on the atomization main body assembly 30, which is a groove 31 structure with a specific shape and size, used to cooperate with the buckle part 11 to achieve connection, and is located at the end of the atomization main body assembly 30 away from the first oil guide part 33, and on the same side as the first oil guide part 33. The buckle part 11 is located on the oil storage device 1, corresponding to the clamping groove 34, and is designed in shape and size to tightly fit into the clamping groove 34. The position of the buckle part 11 on the oil storage device 1 is at the end away from the second oil guide part 10, and on the same side as the second oil guide part 10. The oil storage device 1 is buckled and connected in the clamping groove 34 through the buckle part 11, so as to achieve detachable connection with the atomization main body assembly 30. Align the buckle part 11 on the oil storage device 1 with the clamping groove 34 on the atomization main body assembly 30, then press the oil storage device 1 gently, make the buckle part 11 completely fit into the clamping groove 34, until you hear a "click" sound, indicating that the connection is successful. At this time, the oil storage device 1 and the atomization main body assembly 30 are stably connected, and the tobacco tar can normally flow between them. When you need to disassemble the oil storage device 1, press the side of the oil storage device 1 opposite to the buckle part 11 with your fingers, then pull it outwards gently, so that the buckle part 11 comes out of the clamping groove 34, and then you can take off the oil storage device 1. During disassembly, avoid using too much force to avoid damaging the clamping groove 34 or the buckle part 11. Through the buckle connection mode, the oil storage device 1 can be easily disassembled or installed on the atomization main body assembly 30. When the user needs to add tobacco tar or clean and maintain the oil storage device 1 and the atomization main body assembly 30, the operation can be quickly completed without the use of tools, improving the convenience of use, providing sufficient connection strength, ensuring that the oil storage device 1 will not accidentally fall off during normal use, and ensuring the integrity and stability of the equipment.

[0061] With reference to Figures 1-6 In an embodiment, the atomization main body assembly 30 comprises a shell 301, an atomization assembly 302 and a sealed condensation assembly 303, the atomization assembly 302 is located in the shell 301 and contacts the regulating device 2, and the sealed condensation assembly 303 is arranged at the end of the atomization assembly 302.

[0062] In the above embodiment, the atomization main body assembly 30 comprises an outer shell 301, an atomization assembly 302 and a sealed condensation assembly 303, wherein the outer shell 301 is the external protective structure of the entire atomization main body assembly 30, which provides support and protection for the internal components, and is internally provided with two chambers of large and small sizes, the first sealing member 21 and the adjusting part 202 are located in the small chamber, and the atomization assembly 302 is located in the large chamber, the atomization assembly 302 comprises an atomization core 3020 and an oil storage cotton 3021, the atomization core 3020 is the core component for realizing the atomization function of the electronic cigarette, which is usually composed of a heating wire, etc., which generates heat to atomize the tobacco tar when the current passes through, and it is located at the center position of the oil storage cotton 3021, the oil storage cotton 3021 is used for storing tobacco tar and delivering the tobacco tar to the atomization core 3020, it is sleeved on the atomization core 3020 and in contact with the oil guide member 24, so that the tobacco tar can be smoothly delivered from the oil storage device 1 to the atomization core 3020, the sealed condensation assembly 303 comprises a first condensation cotton 3030, a second condensation cotton 3031, a third sealing member 3032 and a fourth sealing member 3033, the first condensation cotton 3030 is located between the third sealing member 3032 and the atomization assembly 302, and mainly functions to collect the condensate generated in the atomization process, preventing the condensate from entering the atomization core 3020 and affecting the atomization effect, the second condensation cotton 3031 is located between the base 304 and the fourth sealing member 3033, and also functions to collect the condensate, the third sealing member 3032 is arranged inside the outer shell 301 and located outside the chamber where the atomization assembly 302 is placed, and functions to seal, preventing the tobacco tar and the condensate from leaking to the outside of the outer shell 301, the fourth sealing member 3033 is located in the chamber where the atomization assembly 302 is arranged, and also functions to seal, ensuring the sealing property of the chamber, the first sealing member 21 and the adjusting part 202 are located in the small chamber of the outer shell 301, and are in contact with the atomization assembly 302 in the large chamber through the oil guide member 24 passing through the aperture between the two chambers, the oil storage device 1 is arranged on the outer shell 301, the outer shell 301 is fixedly connected with the base 304 at the bottom, and the magnet 305 and the cartridge electrode 306 are further arranged on the base 304, the first oil inlet channel is formed in the first oil guide part 33, which is used for the initial delivery of the tobacco tar from the oil storage device 1 to the atomization main body assembly 30, the first through hole 22 and the second through hole 203 of the adjusting device 2 form the second oil inlet channel, which further controls the flow of the tobacco tar, and the aperture between the two chambers for the oil guide member 24 to pass through forms the third oil inlet channel, which ensures that the tobacco tar can be accurately delivered from the adjusting device 2 to the atomization assembly 302.

[0063] When the user starts using the electronic cigarette, the tobacco tar first enters the atomization main body assembly 30 through the first section oil inlet channel of the oil storage device 1. Then, according to the user's demand for the amount of smoke, the degree of communication of the second section oil inlet channel is controlled by adjusting the push switch 20 of the adjusting device 2 to adjust the flow of tobacco tar. At the same time, the oil guide 24 in the third section oil inlet channel ensures that the tobacco tar is accurately delivered from the adjusting device 2 to the atomization core 3020 and the oil storage cotton 3021 of the atomization assembly 302. The tobacco tar entering the oil storage cotton 3021 is transferred to the atomization core 3020, and the heating wire of the atomization core 3020 heats to atomize the tobacco tar. The condensate generated in the atomization process is collected by the first condensing cotton 3030 and the second condensing cotton 3031 to prevent it from affecting the atomization effect. The preliminary oil inlet is realized through the first section oil inlet channel, the flow is accurately controlled through the second section oil inlet channel, and the accurate delivery is realized through the third section oil inlet channel. This multi-stage oil inlet channel design can more accurately control the amount and speed of tobacco tar entering the atomization assembly 302, meet the different users' demand for the amount of smoke and taste, and avoid the interference of the condensate on the atomization process by sealing the condensing assembly 303, which guarantees the stability and continuity of the atomization effect. The reasonable design of the third sealing member 3032 and the fourth sealing member 3033 and the whole structure effectively prevents the leakage of tobacco tar and condensate, maintains the cleanliness and stability of the inside of the equipment, and improves the reliability and service life of the equipment.

[0064] With reference to Figures 1-6 In an embodiment, the atomization device 3 further comprises a mouthpiece 35 which is detachably arranged on the shell 301 and is in communication with the atomization assembly 302.

[0065] In the above embodiment, the atomization device 3 further comprises a suction nozzle 35, which is the part where the user sucks the electronic cigarette smoke, usually adopting an ergonomic design to provide a comfortable smoking experience, the suction nozzle 35 is detachably mounted on the shell 301, located at one end of the shell 301 provided with the third sealing piece 3032, the suction pipe inside the suction nozzle 35 penetrates through the third sealing piece 3032 and is in contact with the atomization core 3020 penetrating through the first condensation cotton 3030, thereby realizing communication with the atomization assembly 302, ensuring that the atomized smoke can smoothly enter the suction nozzle 35 for the user to smoke. Align the suction nozzle 35 with the corresponding position on the shell 301, press or rotate gently, so that it is firmly mounted on the shell 301, ensuring that the suction pipe inside the suction nozzle 35 is correctly connected with the third sealing piece 3032 and the atomization core 3020, when the user normally uses the electronic cigarette, the smoke generated by the atomization assembly 302 enters the suction nozzle 35 through the suction pipe, the user smokes the smoke from the suction nozzle 35, when it is necessary to clean or replace the suction nozzle 35, operate in the opposite direction of the installation, gently take down the suction nozzle 35, and then re-install the suction nozzle 35 after the corresponding cleaning or replacement operation, the detachable design of the suction nozzle 35 facilitates the user to clean the suction nozzle 35 regularly, and keeps it clean. If the suction nozzle 35 is damaged, it can also be easily replaced without affecting the use of the entire device.

[0066] The above is only the preferred embodiment of the present application, and does not limit the patent range of the present application, any equivalent structure or equivalent process transformation using the content of the present application specification and drawings, or direct or indirect application in other related technical fields, are also included in the patent protection range of the present application.

Claims

1. An electronic cigarette atomization device, characterized in that, The oil storage device, the adjusting device and the atomization device are provided. The oil storage device is arranged on the atomization device and communicates with the atomization device. The adjusting device is arranged on the atomization device and is used for controlling the oil amount and / or speed of the atomization medium flowing from the oil storage device to the atomization device.

2. The electronic cigarette atomizing device of claim 1, wherein, The adjusting device comprises a push switch and a first sealing member.

3. The electronic cigarette atomizing device of claim 2, wherein, The first sealing member is arranged in the atomization body assembly.

4. The electronic cigarette atomizing device of claim 3, wherein, The first sealing member is provided with a first through hole communicating the oil storage device and the atomization body assembly.

5. The electronic cigarette atomizing device of claim 4, wherein, The push switch comprises a push part and an adjusting part connected with the push part.

6. The electronic cigarette atomizing device of claim 4, wherein, The adjusting part is provided with a second through hole corresponding to the first through hole at an end away from the push part.

7. The electronic cigarette atomizing device of claim 2, wherein, The oil guide member is arranged in the second through hole and extends towards the oil storage device and the atomization body assembly respectively.

8. The electronic cigarette atomizing device of claim 2, wherein, The atomization body assembly is provided with a groove.

9. The electronic cigarette atomizing device of claim 2, wherein, The push part is arranged in the groove.

10. The electronic cigarette atomizing device of claim 9, wherein, The atomization body assembly is provided with a first oil guide part. The oil storage device is provided with a second oil guide part corresponding to the first oil guide part. The oil storage device is connected with the first oil guide part through the second oil guide part. The atomization body assembly is provided with a clamping groove. The oil storage device is provided with a clamping buckle corresponding to the clamping groove. The atomization body assembly comprises a shell, an atomization assembly and a sealed condensation assembly. The atomization assembly is arranged in the shell and contacts the adjusting device. The sealed condensation assembly is arranged at an end of the atomization assembly. The atomization device further comprises a suction nozzle. The suction nozzle is arranged on the shell and communicates with the atomization assembly.