A system for performing operations on an electronic cigarette device

CN116982755BActive Publication Date: 2026-10-09SHENZHEN YOUWEIER TECH CO LTD
View PDF 2 Cites 0 Cited by

Patent Information

Application Number
CN202311032417.1
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-08-16
Publication Date
2026-10-09
Estimated Expiration
2043-08-16

AI Technical Summary

Technical Problem

[0003]相比较传统的燃烧型香烟,单支燃烧型香烟在燃烧时一般可供人吸烟10到15次,而电子烟则与其不同,在没有一些特定的干扰因素下,只依靠使用人员的感知抽取的次数和自我控制力选择抽与不抽,针对这一问题,现在有电子烟则是通过电子锁的方式对使用人员的电子烟进行特定时间内的锁止,从而限制使用人员的抽吸次数,但是这样的解决方式对于一些烟龄较大或烟瘾较大的人群而言,可能会迫使该人群重新点燃燃烧型香烟或者强制解锁电子烟

Benefits of technology

[0026]Compared to current electronic cigarettes, this invention uses an electronic lock to lock the user's electronic cigarette for a specific period of time, thereby limiting the number of puffs. The electronic cigarette operating system integrated into the power unit collects the user's current puffing duration and number of puffs. An analysis module analyzes the data and calculates multiple periods for gradually reducing the duration of regular atomization and increasing the duration of switching to nicotine atomization mode. The electronic cigarette operating system controls the switching of atomization modes, thus alleviating the problem of users puffing too frequently in a short period. This gradually guides users to extend the interval between consecutive puffs, reducing the frequency of puffing and effectively guiding users to quit smoking, achieving a better smoking cessation effect.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN116982755B_ABST
    Figure CN116982755B_ABST
Patent Text Reader

Abstract

The application discloses an electronic cigarette device operation system, which comprises a power assembly, an atomization assembly, a suction nozzle assembly and a warning assembly. Compared with the current electronic cigarette, the electronic cigarette is locked for a specific time through an electronic lock, so that the number of puffs of a user is limited. The electronic cigarette operation system carried in the power assembly collects the duration and number of puffs of the user, analyzes the data through an analysis module, and calculates the duration of gradually reducing the conventional atomization mode of the electronic cigarette and the duration of switching to the smoking cessation atomization mode. The electronic cigarette operation system controls the switching of the atomization mode of the electronic cigarette, so as to alleviate the problem that the user smokes more times in a short time, gradually guide the user to extend the interval between adjacent two puffs, reduce the frequency of smoking, better guide the user to quit smoking, and achieve a good smoking cessation effect.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This invention relates to the field of electronic cigarette operating system technology, and more specifically, to an operating system for executing electronic cigarette devices. Background Technology

[0002] As people become more aware of the harmfulness of traditional cigarettes, the call for tobacco control is growing louder. In addition, with the rapid advancement of electronic technology in recent years, e-cigarettes have emerged. E-cigarettes are mainly used for smoking cessation and as a substitute for cigarettes.

[0003] Compared to traditional cigarettes, a single cigarette typically allows for 10 to 15 puffs. E-cigarettes, however, are different. Without specific interfering factors, the user's choice to smoke or not depends solely on their perception of the number of puffs and their self-control. To address this issue, some e-cigarettes use electronic locks to temporarily disable the user's e-cigarette, thus limiting the number of puffs. However, this solution may force long-time smokers or heavy smokers to either relight a traditional cigarette or forcibly unlock their e-cigarette.

[0004] For people with a long smoking history or a strong addiction, frequent smoking in a short period is more likely due to smoking habits. Smoking habits and dependence are among the main factors influencing the frequency of smoking. Smokers often smoke at specific times, places, or situations, such as after meals, while drinking coffee, or when gathering with friends. These factors contribute to the formation of smoking habits. The discomfort of not smoking for a long time is due to the addictive nature of nicotine in tobacco. After a period of time, the body's dependence on nicotine increases, leading to withdrawal symptoms and causing discomfort. Since e-cigarettes are primarily used for smoking cessation, this locking method is not very effective in guiding users to quit smoking.

[0005] Therefore, in view of the above-mentioned technical problems, it is necessary to provide an operating system for executing electronic cigarette devices. Summary of the Invention

[0006] The purpose of this invention is to provide an operating system for executing electronic cigarette devices to solve the above-mentioned problems.

[0007] To achieve the above objectives, an embodiment of the present invention provides the following technical solution:

[0008] An operating system for an electronic cigarette device is disclosed, comprising an electronic cigarette device and an electronic cigarette operating system. The electronic cigarette device includes a power component, an atomizing component, a mouthpiece component, and a warning component. The power component houses the electronic cigarette operating system and includes a charging post. Multiple evenly distributed first magnetic posts are mounted on the inner wall of the charging post, with a first charging post positioned at the center of the first magnetic posts. The atomizing component is disposed above the power component and includes an atomizing block. Multiple second magnetic posts, matching the first magnetic posts, are mounted on the bottom inner wall of the atomizing block, with a first charging post positioned at the center of the first magnetic posts. A second charging post, matching the first charging post, is installed at the interval. The second and first magnetic posts are opposite magnetic poles. The nozzle assembly is located on the upper side of the atomizing component. The nozzle assembly includes a nozzle, and an observation ring and a magnetic disassembly ring are sequentially arranged below the nozzle. A pair of symmetrical third magnetic posts are fixedly connected to the bottom end of the observation ring. The bottom end of the magnetic disassembly ring is fixedly connected to the top end of the atomizing block. A third magnetic groove matching the pair of third magnetic posts is opened on the atomizing block. The warning component is located on the upper side of the atomizing component, and the atomizing component is located inside the observation ring. The warning component includes a movable connecting plate, which is movably connected to the top end of the atomizing block.

[0009] As a further improvement of the present invention, a fixing plate is fixedly connected to the top of the second charging column and located inside the atomizing block. The fixing plate and the inner cavity of the atomizing block form an e-liquid cavity and a drinking water cavity. An e-liquid sealing gasket and a drinking water sealing gasket are respectively installed on the e-liquid cavity and the drinking water cavity.

[0010] As a further improvement of the present invention, an atomizing cylinder is installed at the top of the second charging column and in both the e-liquid chamber and the drinking water chamber. The atomizing cylinder has multiple evenly distributed absorption holes, and the top of the atomizing cylinder is connected to a magnetic disassembly ring.

[0011] As a further improvement of the present invention, an atomizing column is provided inside the atomizing cylinder, the bottom end of the atomizing column is connected to the top end of the second charging column, and a pair of filter plates matching the atomizing column are embedded on the magnetic disassembly ring inside the atomizing cylinder, the bottom end of the filter plate is connected to the top end of the atomizing column.

[0012] As a further improvement of the present invention, the bottom end of the suction nozzle is provided with a pair of symmetrical arc-shaped switching grooves, the top end of the observation ring is fixedly connected with a pair of symmetrical magnetic T-shaped blocks, the magnetic T-shaped blocks are slidably connected to the arc-shaped switching grooves, and a pair of electromagnets matching the magnetic T-shaped blocks are installed on the inner wall of the arc-shaped switching grooves.

[0013] As a further improvement of the present invention, a comparison ring is embedded on the observation ring, the comparison ring is made of glass, and warning blocks and taste blocks are respectively installed at both ends of the movable connecting plate. The shapes of the warning blocks and taste blocks are both set to the shape of a human lung model.

[0014] As a further improvement of the present invention, the warning block is embedded with a plurality of display blocks, the display blocks are made of activated carbon material, and the taste block is made of edible volatile material.

[0015] As a further improvement of the present invention, the nozzle is provided with an atomization outlet, and a plurality of evenly distributed guide magnets are embedded in the inner wall of the atomization outlet. A plurality of evenly distributed sealing plates are installed at the top of the receiving ring, and magnetic powder is installed inside the sealing plates.

[0016] As a further improvement of the present invention, the magnetic force of the second magnet post and the first magnet post is less than the magnetic force of the third magnet post and the magnetic disassembly ring.

[0017] As a further improvement of the present invention, the electronic cigarette operating system includes:

[0018] Power management module: Used to manage the power supply of the electronic cigarette device, control battery level, charging, and protection;

[0019] Control module: Used to control the heating and atomization of the electronic cigarette device;

[0020] Communication module: Used for communication and data transmission with other components of the electronic cigarette device or external devices;

[0021] User interface module: Used to display the status of the electronic cigarette device and provide a user interface;

[0022] Data storage module: Used to store data from the electronic cigarette device;

[0023] Lock-off switching module: used to record usage time and number of uses, as well as to switch atomization modes;

[0024] Analysis module: Used to analyze data in the data storage module.

[0025] Compared with the prior art, the advantages of this invention are:

[0026] Compared to current electronic cigarettes, this invention uses an electronic lock to lock the user's electronic cigarette for a specific period of time, thereby limiting the number of puffs. The electronic cigarette operating system integrated into the power unit collects the user's current puffing duration and number of puffs. An analysis module analyzes the data and calculates multiple periods for gradually reducing the duration of regular atomization and increasing the duration of switching to nicotine atomization mode. The electronic cigarette operating system controls the switching of atomization modes, thus alleviating the problem of users puffing too frequently in a short period. This gradually guides users to extend the interval between consecutive puffs, reducing the frequency of puffing and effectively guiding users to quit smoking, achieving a better smoking cessation effect. Attached Figure Description

[0027] Figure 1 This is a schematic diagram of the operating system process for executing an electronic cigarette device according to the present invention;

[0028] Figure 2 This is a three-dimensional structural diagram of the electronic cigarette device of the present invention;

[0029] Figure 3 This is a three-dimensional structural diagram of the charging column of the present invention;

[0030] Figure 4 This is a schematic diagram of the three-dimensional structure of the atomizing block of the present invention;

[0031] Figure 5 This is a schematic diagram of the front cross-sectional structure of the atomizing block of the present invention;

[0032] Figure 6 This is a partial frontal cross-sectional view of the atomizing block of the present invention;

[0033] Figure 7 This is a three-dimensional structural diagram of the warning component of the present invention.

[0034] Explanation of the labels in the diagram:

[0035] 1. Power assembly; 2. Atomizing assembly; 3. Mouthpiece assembly; 4. Warning assembly; 11. Charging column; 12. First magnet column; 13. First charging column; 21. Atomizing block; 22. Second charging column; 23. Second magnet column; 24. E-liquid sealing gasket; 25. E-liquid chamber; 26. Drinking water chamber; 27. Drinking water sealing gasket; 28. Fixing plate; 29. ​​Atomizing cylinder; 30. Atomizing column; 31. Mouthpiece; 32. Observation ring; 33. Magnetic disassembly ring; 34. Comparison ring; 35. Magnetic T-shaped block; 36. Arc-shaped switching groove; 37. Third magnet column; 38. Third magnetic groove; 39. Atomizing outlet; 41. Movable connecting plate; 42. Warning block; 43. Flavor block; 44. Receiving ring; 45. Sealing flexible plate. Detailed Implementation

[0036] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of the present invention without creative effort are within the scope of protection of the present invention.

[0037] Example 1:

[0038] Please see Figure 1-3 An operating system for an electronic cigarette device is disclosed, comprising an electronic cigarette device and an electronic cigarette operating system. The electronic cigarette device includes: a power component 1, an atomizing component 2, a mouthpiece component 3, and a warning component 4. The power component 1 houses the electronic cigarette operating system and includes a charging post 11. Multiple evenly distributed first magnet posts 12 are mounted on the inner wall of the charging post 11. A first charging post 13 is mounted on the inner wall of the charging post 11 at the center of the first magnet posts 12. The atomizing component 2 is disposed above the power component 1 and includes an atomizing block 21. Multiple second magnet posts 23, matching the first magnet posts 12, are mounted on the bottom inner wall of the atomizing block 21. A warning component 4 is mounted on the bottom inner wall of the atomizing block 21 at the center of the multiple second magnet posts 23. A second charging post 22 is matched with the first charging post 13, and a second magnet post 23 and a first magnet post 12 are opposite magnetic poles. The nozzle assembly 3 is disposed on the upper side of the atomizing assembly 2. The nozzle assembly 3 includes a nozzle 31. An observation ring 32 and a magnetic disassembly ring 33 are arranged sequentially on the lower side of the nozzle 31. A pair of mutually symmetrical third magnet posts 37 are fixedly connected to the bottom end of the observation ring 32. The bottom end of the magnetic disassembly ring 33 is fixedly connected to the top end of the atomizing block 21. A third magnetic groove 38 matching the pair of third magnet posts 37 is opened on the atomizing block 21. A warning assembly 4 is disposed on the upper side of the atomizing assembly 2, and the atomizing assembly 2 is located inside the observation ring 32. The warning assembly 4 includes a movable connecting plate 41, which is movably connected to the top end of the atomizing block 21.

[0039] This solution incorporates a warning component 4 within the e-cigarette. Compared to current e-cigarettes that use electronic locks to restrict the user's use for a specific period, this solution utilizes an e-cigarette operating system within the power component 1. This system analyzes data based on the user's current vaping duration and frequency, calculating multiple periods for gradually reducing the duration of regular atomization and increasing the duration for switching to nicotine-free atomization. The operating system then controls the e-cigarette to switch atomization modes, transforming the e-liquid in the atomizing chamber 25 into atomized food. By using the drinking water in the water chamber 26, and in conjunction with the taste block 43 in the warning component 4, the taste of the drinking water in the atomized water chamber 26 is enhanced, thereby alleviating the problem of users smoking too many times in a short period of time. At the same time, the warning component 4 can also play a certain warning role. By combining this with correcting the user's habit of smoking too many times in a short period of time, the user is gradually guided to increase the interval between smoking sessions and reduce the number of smoking sessions. This gradually diminishes the negative feelings caused by long-term withdrawal from smoking, and can effectively guide the user to quit smoking, achieving a better effect in guiding the user to quit smoking.

[0040] A fixing plate 28 is fixedly connected to the top of the second charging post 22 and inside the atomizing block 21. The fixing plate 28 and the inner cavity of the atomizing block 21 form an e-liquid cavity 25 and a drinking water cavity 26. An e-liquid sealing gasket 24 and a drinking water sealing gasket 27 are respectively installed on the e-liquid cavity 25 and the drinking water cavity 26.

[0041] The fixed plate 28 and the inner cavity of the atomizing block 21 form an e-liquid cavity 25 and a water cavity 26. When e-liquid needs to be injected, it can be injected into the e-liquid cavity 25 by opening the e-liquid sealing gasket 24. When water needs to be injected, it can be injected into the water cavity 25 by opening the water sealing gasket 27, thereby meeting the needs.

[0042] Please see Figure 4-7 Atomizing cylinders 29 are installed at the top of the second charging post 22 and inside both the e-liquid chamber 25 and the drinking water chamber 26. Multiple evenly distributed absorption holes are opened on the atomizing cylinder 29, and the top of the atomizing cylinder 29 is connected to the magnetic detachment ring 33. An atomizing column 30 is provided inside the atomizing cylinder 29, and the bottom end of the atomizing column 30 is connected to the top of the second charging post 22. A pair of filter plates matching the atomizing column 30 are embedded on the magnetic detachment ring 33 inside the atomizing cylinder 29, and the bottom end of the filter plates is connected to the top of the atomizing column 30.

[0043] In this system, the control module in the electronic cigarette operating system uses multiple evenly distributed absorption holes in the atomizing cylinder 29 to atomize e-liquid or drinking water. When the user inhales through the mouthpiece 31, the air in the corresponding cavity is circulated. Through the air switch installed inside, power is supplied to the corresponding atomizing column 30 via the second charging column 22. The atomizing column 30 is heated by multiple heating wires wound around it. The heating wires are surrounded by cotton cloth, which absorbs the corresponding liquid. When the heating wires are turned on, the liquid is atomized and passed through the filter plate for the user to inhale.

[0044] The bottom of the suction nozzle 31 is provided with a pair of symmetrical arc-shaped switching grooves 36. The top of the observation ring 32 is fixedly connected with a pair of symmetrical magnetic T-shaped blocks 35. The magnetic T-shaped blocks 35 are slidably connected to the arc-shaped switching grooves 36. A pair of electromagnets matching the magnetic T-shaped blocks 35 are installed on the inner wall of the arc-shaped switching grooves 36.

[0045] The system uses a locking / switching module in the e-cigarette operating system to record the number of times and duration of smoking by the user within a short period. This data is stored in a data storage module. An analysis module analyzes the data to calculate the duration of gradually reducing the e-cigarette's regular atomization mode and increasing the duration of switching to the nicotine atomization mode. The calculated data is then stored in the data storage module. Subsequently, a control module executes the operation based on the calculated data. During execution, the control module controls a pair of electromagnets installed on the inner wall of the arc-shaped switching slot 36. By controlling the repulsive force of one electromagnet on the magnetic T-shaped block 35, the mouthpiece 31 can be rotated, switching to the regular atomization mode. By controlling the attractive force of the other electromagnet on the other magnetic T-shaped block 35, the mouthpiece 31 can be rotated in the opposite direction, thus switching the atomization mode from the atomization mode to the nicotine atomization mode.

[0046] The observation ring 32 is inlaid with a comparison ring 34, which is made of glass. The two ends of the movable connecting plate 41 are respectively equipped with a warning block 42 and a taste block 43. The shapes of the warning block 42 and the taste block 43 are both set to the shape of a human lung model. Multiple display blocks are inlaid on the warning block 42. The display blocks are made of activated carbon. The taste block 43 is made of edible and volatile material.

[0047] In the conventional vaping atomization mode, i.e., the e-liquid in the atomizing chamber 25 is atomized, the control module activates one of the electromagnets to repel the magnetic T-shaped block 35, thereby driving the mouthpiece 31 to rotate. This causes the atomization outlet 39 on the mouthpiece 31 to rotate to the upper side of the e-liquid chamber 25. The atomizing column 30 in the atomizing cylinder 29 in the e-liquid chamber 25 is activated to atomize the e-liquid. The user is in a smoking state during the vaping process.

[0048] When the first time period of the conventional smoking atomization mode recorded by the data storage module is reached, the control module activates another electromagnet to attract another magnetic T-shaped block 35, thereby causing the mouthpiece 31 to rotate in the opposite direction. This causes the atomization outlet 39 on the mouthpiece 31 to rotate to the upper side of the drinking water chamber 26. The drinking water is then atomized by the activation of the atomizing column 30 in the atomizing cylinder 29 inside the drinking water chamber 26, thus switching to the smoking cessation mode. After atomization, when the user inhales, the atomized drinking water mixes with the aroma emitted by the taste block 43, thereby enhancing the taste. Subsequently, after the first time period of the smoking cessation mode recorded by the data storage module is reached, the control module switches back to the second time period of the conventional smoking atomization mode.

[0049] After switching to the second period of regular smoking mode, the countdown begins when the user starts smoking the e-liquid atomized in the 25mm cavity again. This process is repeated, gradually reducing the duration of regular smoking mode and increasing the duration of atomized drinking water, which in turn increases the duration of nicotine ...

[0050] Meanwhile, during the smoking process, multiple display blocks made of activated carbon embedded in the warning block 42 can absorb harmful substances in the smoke. The initial color of the warning block 42 can be set to red, and its shape is the shape of a human lung model. During long-term smoking, the color of its display blocks turns black, while the color of the taste block 43 remains unaffected. Users can observe and compare the color changes of the warning block 42 and the taste block 43 through the comparison ring 34, thereby creating a certain visual impact and psychological feeling for the users, thus serving as a warning.

[0051] The nozzle 31 has an atomization outlet 39, and multiple evenly distributed guide magnets are embedded in the inner wall of the atomization outlet 39. Multiple evenly distributed sealing plates 45 are installed at the top of the receiving ring 44, and magnetic powder is installed inside the sealing plates 45.

[0052] The atomizing outlet 39 has multiple evenly distributed guide magnets installed on its inner wall. Because the mouthpiece 43 has a certain degree of volatility and the mouthpiece 31 is open, contaminants can easily enter during long-term use. The guide magnets installed in the atomizing outlet 39 and the magnetic powder installed in the sealing plate 45 can generate a certain attraction to the corresponding sealing plates 45 when the mouthpiece 31 is rotated. When not in use, the multiple sealing plates 45 can provide a certain degree of sealing under the action of gravity. When in use, the guide magnets can attract the multiple sealing plates 45, making it convenient for the user to inhale.

[0053] The magnetic force of the second magnet post 23 and the first magnet post 12 is less than the magnetic force of the third magnet post 37 and the magnetic disassembly ring 33.

[0054] By setting the magnetic force of the second magnet post 23 and the first magnet post 12 to be less than that of the third magnet post 37 and the magnetic disassembly ring 33, it is easier to separate the atomizing block 21 from the charging post 11 when disassembling the electronic cigarette device. This allows for replenishment of the liquid in the e-liquid chamber 25 and the water chamber 26. When replacing the warning block 42 and flavor block 43 in the movable connecting plate 41, the third magnet post 37 is separated from the magnetic disassembly ring 33, making it easier to clean the warning block 42. It is also more convenient when the flavor block 43 is used up or when a different flavor is needed.

[0055] The electronic cigarette operating system includes:

[0056] Power management module: Used to manage the power supply of the electronic cigarette device, control battery level, charging, and protection;

[0057] Control module: Used to control the heating and atomization of the electronic cigarette device;

[0058] Communication module: Used for communication and data transmission with other components of the electronic cigarette device or external devices;

[0059] User interface module: Used to display the status of the electronic cigarette device and provide a user interface;

[0060] Data storage module: Used to store data from the electronic cigarette device;

[0061] Lock-off switching module: used to record usage time and number of uses, as well as to switch atomization modes;

[0062] Analysis module: Used to analyze data in the data storage module.

[0063] The power management module manages the power supply of the electronic cigarette device, controls battery power, charging and protection, and typically includes the battery, charging circuit, protection circuit, etc.

[0064] Communication module: Used for communication and data transmission with other components or external devices of the electronic cigarette device, typically including communication modules such as Bluetooth and Wi-Fi;

[0065] User interface module: Used to display the status of the electronic cigarette device and provide a user interface, typically including a display screen, buttons, etc.;

[0066] Control module: Controls the heating and atomization of the electronic cigarette device. It typically includes the heating element and control circuitry.

[0067] Lock-off switching module: Used to record usage time and number of uses, as well as to switch atomization modes; typically includes timers, counters, etc.

[0068] Analysis module: Used to analyze data in the data storage module.

[0069] Working principle:

[0070] The locking / switching module in the e-cigarette operating system records the number of times and duration of smoking by the current user within a short period. This recording can be monitored by timers and counters and stored in the data storage module. The analysis module analyzes the data to calculate multiple durations for gradually reducing the e-cigarette's regular vaporization mode and multiple durations for increasing the switching to the nicotine vaporization mode. After the calculation is completed, the calculated data is recorded in the data storage module, and the control module then executes the actions based on the calculated data.

[0071] The control module controls a pair of electromagnets installed on the inner wall of the arc-shaped switching slot 36. By controlling the repulsive force of one electromagnet on the magnetic T-shaped block 35, the mouthpiece 31 is rotated, switching to the conventional vaping atomization mode. This causes the atomization outlet 39 on the mouthpiece 31 to rotate to the upper side of the e-liquid chamber 25. The atomizing column 30 in the atomizing cylinder 29 within the e-liquid chamber 25 atomizes the e-liquid. During the vaping process, the user is in a smoking state. When the first time period of the conventional vaping atomization mode recorded by the data storage module is reached, the control module activates the attraction force of the other electromagnet on the other magnetic T-shaped block 35, causing the mouthpiece 31 to rotate in the opposite direction. This causes the atomization outlet 39 on the mouthpiece 31 to rotate to the upper side of the drinking water chamber 26. The atomizing column 30 in the atomizing cylinder 29 within the drinking water chamber 26 atomizes the drinking water, thus switching to the vaping atomization mode. After atomization, the user... When a person inhales, the atomized drinking water mixes with the aroma emitted by the flavor block 43, thus enhancing the taste. The flavor block 43 can be citric acid, vanilla extract, etc. After the first time period of the nicotine aspiration mode recorded by the data storage module is reached, the control module switches to the second time period of the regular nicotine aspiration mode. At the same time, multiple evenly distributed guide magnets installed on the inner wall of the atomization outlet 39 attract the corresponding multiple sealing plates 45 when the mouthpiece 31 is rotated, because the flavor block 43 has a certain degree of volatility and the opening inside the mouthpiece 31 is prone to contaminants entering during long-term use. The guide magnets installed in the atomization outlet 39 and the magnetic powder installed in the sealing plate 45 can attract the corresponding multiple sealing plates 45 when the mouthpiece 31 is rotated. When not in use, the multiple sealing plates 45 provide a certain degree of sealing under the action of gravity. When in use, the guide magnets attract the multiple sealing plates 45, making it convenient for the user to inhale.

[0072] The warning block 42 is inlaid with multiple display blocks made of activated carbon material, which can adsorb harmful substances in the smoke. The initial color of the warning block 42 can be set to red, and its shape is the shape of a human lung model. During long-term smoking, the color of its display blocks turns black, while the color of the taste block 43 remains unaffected. Users can observe and compare the color changes of the warning block 42 and the taste block 43 through the comparison ring 34, thereby creating a certain visual impact and psychological feeling for the users, thus serving as a warning to the users.

[0073] By repeatedly and gradually reducing the duration of regular smoking vaping and increasing the duration of vaping water, the duration of nicotine vaping is increased. This method guides users to correct the duration and frequency of smoking in a short period of time, laying the groundwork for subsequent smoking cessation and achieving better smoking cessation results.

[0074] It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above, and that the invention can be implemented in other specific forms without departing from its spirit or essential characteristics. Therefore, the embodiments should be considered in all respects as exemplary and non-limiting, and the scope of the invention is defined by the appended claims rather than the foregoing description. Thus, all variations falling within the meaning and scope of equivalents of the claims are intended to be included within the present invention. No reference numerals in the claims should be construed as limiting the scope of the claims.

[0075] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style of the specification is merely for clarity. Those skilled in the art should regard the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other implementation methods that can be understood by those skilled in the art.

Claims

1. An operating system for executing an electronic cigarette device, comprising an electronic cigarette device and an electronic cigarette operating system, characterized in that: The electronic cigarette device includes: The power component (1) is equipped with an electronic cigarette operating system. The power component (1) includes a charging column (11). Multiple uniformly distributed first magnet columns (12) are installed on the inner wall of the charging column (11). A first charging column (13) is installed on the inner wall of the charging column (11) and in the middle of the first magnet columns (12). Atomizing component (2) is disposed on the upper side of power component (1). The atomizing component (2) includes atomizing block (21). Multiple second magnet posts (23) matching the first magnet post (12) are installed on the bottom inner wall of the atomizing block (21). A second charging post (22) matching the first charging post (13) is installed on the bottom inner wall of the atomizing block (21) and in the middle of the multiple second magnet posts (23). The second magnet post (23) and the first magnet post (12) are opposite magnetic poles. The nozzle assembly (3) is located on the upper side of the atomizing assembly (2). The nozzle assembly (3) includes a nozzle (31). An observation ring (32) and a magnetic disassembly ring (33) are arranged sequentially on the lower side of the nozzle (31). A pair of mutually symmetrical third magnet pillars (37) are fixedly connected to the bottom end of the observation ring (32). The bottom end of the magnetic disassembly ring (33) is fixedly connected to the top end of the atomizing block (21). A third magnetic groove (38) matching the pair of third magnet pillars (37) is opened on the atomizing block (21). Warning component (4), the warning component (4) is disposed on the upper side of the atomizing component (2), and the atomizing component (2) is located inside the observation ring (32). The warning component (4) includes a movable connecting plate (41), the movable connecting plate (41) is movably connected to the top of the atomizing block (21); The bottom end of the suction nozzle (31) is provided with a pair of symmetrical arc-shaped switching grooves (36), and the top end of the observation ring (32) is fixedly connected with a pair of symmetrical magnetic T-shaped blocks (35). The magnetic T-shaped blocks (35) are slidably connected to the arc-shaped switching grooves (36), and a pair of electromagnets matching the magnetic T-shaped blocks (35) are installed on the inner wall of the arc-shaped switching grooves (36). The observation ring (32) is inlaid with a comparison ring (34), the comparison ring (34) is made of glass, and the two ends of the movable connecting plate (41) are respectively equipped with a warning block (42) and a taste block (43), the shapes of the warning block (42) and the taste block (43) are both set to the shape of a human lung model; The warning block (42) is inlaid with multiple display blocks, the display blocks are made of activated carbon material, and the taste block (43) is made of edible volatile material.

2. The operating system for executing an electronic cigarette device according to claim 1, characterized in that: A fixing plate (28) is fixedly connected to the top of the second charging column (22) and inside the atomizing block (21). The fixing plate (28) and the inner cavity of the atomizing block (21) form an e-liquid cavity (25) and a drinking water cavity (26). An e-liquid sealing gasket (24) and a drinking water sealing gasket (27) are respectively installed on the e-liquid cavity (25) and the drinking water cavity (26).

3. The operating system for executing an electronic cigarette device according to claim 2, characterized in that: The second charging column (22) is equipped with an atomizing cylinder (29) at its top and in both the e-liquid chamber (25) and the drinking water chamber (26). The atomizing cylinder (29) has multiple evenly distributed absorption holes, and the top of the atomizing cylinder (29) is connected to a magnetic disassembly ring (33).

4. The operating system for executing an electronic cigarette device according to claim 3, characterized in that: The atomizing cylinder (29) is provided with an atomizing column (30), the bottom end of the atomizing column (30) is connected to the top end of the second charging column (22), and a pair of filter plates matching the atomizing column (30) are embedded on the magnetic disassembly ring (33) and inside the atomizing cylinder (29), the bottom end of the filter plate is connected to the top end of the atomizing column (30).

5. An operating system for executing an electronic cigarette device according to claim 1, characterized in that: The nozzle (31) is provided with an atomization outlet (39), and a plurality of evenly distributed guide magnets are embedded in the inner wall of the atomization outlet (39).

6. The operating system for executing an electronic cigarette device according to claim 1, characterized in that: The magnetic force of the second magnet post (23) and the first magnet post (12) is less than the magnetic force of the third magnet post (37) and the magnetic disassembly ring (33).

7. The operating system for executing an electronic cigarette device according to claim 1, characterized in that: The electronic cigarette operating system includes: Power management module: Used to manage the power supply of the electronic cigarette device, control battery level, charging, and protection; Control module: Used to control the heating and atomization of the electronic cigarette device; Communication module: Used for communication and data transmission with other components of the electronic cigarette device or external devices; User interface module: Used to display the status of the electronic cigarette device and provide a user interface; Data storage module: Used to store data from the electronic cigarette device; Lock-off switching module: used to record usage time and number of uses, as well as to switch atomization modes; Analysis module: Used to analyze data in the data storage module.

Citation Information

Patent Citations

  • Electronic cigarette based on magnetic attraction charging structure

    CN217117513U

  • Non-combustion type flavor inhaler, flavor source unit, and method for manufacturing member used in a non-combustion type flavor inhaler

    US20170319799A1