Atomization device
By using glass storage silo and an atomization device designed with independent airways, the decomposition of substances caused by plastic oil silos is solved, the dual improvement of safety and cost is achieved, and the assembly process is simplified.
Patent Information
- Application Number
- CN202510911015.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-02
- Publication Date
- 2025-08-12
AI Technical Summary
The oil silos of existing electronic cigarettes are made of plastic, which may cause decomposed substances to enter the user's body due to the heating of the atomized core, affecting health, and at the same time, the cost is high.
The storage compartment is made of glass. The atomized core assembly is located at the bottom of the storage compartment. It is designed independently to avoid a shared transmission channel. The atomized core assembly is connected to the circuit board through pins, simplifying assembly.
It improves the safety and aesthetics of the atomization device, reduces costs, avoids the generation of impurities of atomized substances, extends the life of the storage compartment, and makes full use of the atomized substances to ensure the health of users.
Smart Images

Figure CN120458315A_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the field of electronic cigarette devices, and in particular to an atomization device. Background Art
[0002] An e-cigarette is a battery-powered atomizer that heats the atomized substance in the atomizer tank for inhalation. The atomizer relies on an airflow sensor to detect air flow and activate the atomizer core, ultimately achieving automatic inhalation. Therefore, the airway is an essential design element of the atomizer structure.
[0003] The working principle of an e-cigarette atomizer core is that when an electric current passes through a conductor, according to Joule's law, the electrical energy is converted into heat. This heat is then used to heat the atomized material in the atomizer core, causing it to rapidly evaporate and form vapor. When the user inhales, this vapor enters the lungs, simulating the feeling of traditional smoking.
[0004] Currently, the common airflow path of an e-cigarette is to have an air inlet on the base, a sealing device installed above the base, and a vent in the sealing device. Air passes through the vent and enters the atomizer core, carrying the atomized substance in the atomizer core out for the user to inhale. This results in the e-cigarette having a central stem. The oil tank of the current common atomizer device is made of plastic.
[0005] However, the oil tanks of common e-cigarettes are made of plastic. Users are worried that the oil tanks will decompose due to the heat of the atomizer core, and the decomposed substances will be inhaled into the user's body with the mist, causing harm to the user. Summary of the Invention
[0006] The present application aims to solve at least one of the above technical problems by providing an atomizing device to ensure convenient and improved safety of the atomizing device while also reducing costs.
[0007] The atomizing device provided in this application adopts the following technical solution:
[0008] An atomizing device, which atomizes an atomized substance, comprises: an atomizing device, a support device, a control device, and a housing device; the control device is connected to the support device, the support device is connected to the atomizing device, the atomizing device is connected to the housing device, and the atomizing device is connected to the control device;
[0009] The atomization generating device includes a generating housing, an atomization core assembly, a storage compartment, and a generating device seal. The storage compartment is located within the generating housing, the atomization core assembly is located at the bottom of the storage compartment, and the atomization core assembly is at least partially inserted into the storage compartment. The generating device seal is located at the top of the storage compartment, and is at least partially inserted into the storage compartment.
[0010] The storage bin is made of glass.
[0011] Optionally, the generating shell member includes a generating shell body, and the generating shell body is provided with a first air duct, a starting air duct, and a first oil tank hole; the storage tank member is located in the first oil tank hole, and the first air duct is independent of the storage tank member, and the first air duct is a transmission channel for the atomized substance after atomization; the starting air duct transmits the gas to the control device.
[0012] Furthermore, the bracket device includes a fixed bracket member, the fixed bracket member includes a fixed bracket body, the fixed bracket body is provided with a pin hole; the generator shell body is provided with an atomizing core exposure hole;
[0013] The atomizing core assembly is passed through the pin hole and connected to the control device.
[0014] Furthermore, the fixing bracket body is provided with an upper air hole, and the position of the upper air hole corresponds to the position of the atomizing core assembly.
[0015] Furthermore, the generating shell body is provided with a first observation hole; the shell device includes a shell body, and the shell body is provided with a second observation hole; the position of the first observation hole corresponds to the position of the second observation hole, and the first observation hole exposes at least part of the storage bin.
[0016] Optionally, the atomization generating device includes a storage bin clamping member, and the storage bin clamping member is located between the storage bin member and the generating shell member.
[0017] Furthermore, the sealing member of the generating device is provided with a first air hole, a first starting air hole, and an oil filling hole; the position of the first air hole corresponds to the position of the first air duct, the position of the first starting air hole corresponds to the position of the starting air duct, and the position of the oil filling hole corresponds to the position of the storage bin.
[0018] Optionally, the atomization device further includes a mouthpiece device, which includes a mouthpiece piece and a blocking piece; the blocking piece is connected to the mouthpiece piece; and the mouthpiece piece is provided with a mist discharge hole.
[0019] Furthermore, the bracket device also includes a first bracket sealing component and a second bracket sealing component, and the first bracket sealing component and the second bracket sealing component are connected to the fixed bracket component.
[0020] Furthermore, the atomizer core assembly includes an atomizer core and an atomizer core sleeve; the atomizer core sleeve is connected to the atomizer core; the atomizer core includes an atomizer core body and an atomizer core pin, and the atomizer core body is connected to the atomizer core pin.
[0021] In summary, the present application provides an atomizer device that uses glass as a storage bin to reduce the generation of impurities in the atomized atomized material, protect the health of the user, and make it more beautiful and elegant. It can also improve corrosion resistance, increase the life of the storage bin, and reduce the cost of the atomizer device. In addition, the atomizer core assembly is located at the bottom of the storage bin, which avoids the atomizer core assembly from burning dry before the atomized material is burned out. The atomized material can also be consumed and utilized more fully, and it is convenient for the user to visually observe the consumption of the atomized material. In addition, the first airway is independent of the storage bin, which avoids the storage bin and the atomized atomized material sharing the transmission channel, avoids direct contact between the un-atomized atomized material in the storage bin and the user, and ensures the safety and hygiene of the user. The design of the atomizer core assembly, the bracket device and the control device facilitates the production and assembly of the atomizer device, and the assembly method is quick and simple. At the same time, the method of connecting the atomizer core pins to the circuit board can also reduce costs. BRIEF DESCRIPTION OF THE DRAWINGS
[0022] Figure 1 This is a structural diagram of an atomizing device according to an embodiment of the present application;
[0023] Figure 2 yes Figure 1 An exploded schematic diagram of the atomization device is shown;
[0024] Figure 3 yes Figure 1 A schematic axial view of the cigarette holder device shown;
[0025] Figure 4 yes Figure 1 A schematic top view of the cigarette holder device shown;
[0026] Figure 5 yes Figure 1 Schematic diagram of explosion of atomization generating device shown;
[0027] Figure 6 yes Figure 1 A schematic axial view of a seal of a generator shown;
[0028] Figure 7 yes Figure 1 The schematic axial view of the atomizer core sleeve shown;
[0029] Figure 8 yes Figure 1 A schematic diagram of a first axis of the generating housing member shown;
[0030] Figure 9 yes Figure 1 A schematic diagram of a second axis of the generating housing member shown;
[0031] Figure 10 yes Figure 1 A schematic top view of the generating housing shown;
[0032] Figure 11 yes Figure 1 An exploded schematic diagram of the stent assembly is shown;
[0033] Figure 12 yes Figure 1 A rear view schematic diagram of the fixing bracket member shown;
[0034] Figure 13 yes Figure 1 A schematic diagram of a partial structural axis view of the fixed bracket member shown;
[0035] Figure 14 yes Figure 1 An exploded schematic diagram of the control device shown;
[0036] Figure 15 yes Figure 1 An exploded schematic diagram of the housing assembly is shown;
[0037] Figure 16 yes Figure 1 The cross-sectional working diagram of the atomizing device shown.
[0038] Explanation of reference numerals: 10, mouthpiece device; 11, mouthpiece member; 111, mist discharge hole; 112, mouthpiece slot; 12, blocking member; 20, atomization generating device; 21, generating shell member; 211, generating shell body; 2111, first air channel; 2112, starting air channel; 2113, second air channel; 2114, first oil tank hole; 2115, second oil tank hole; 2116, atomization core limiting groove; 2117, generating shell slot; 2118, first observation hole; 2119, mist Core exposure hole; 212, first protrusion of the generating shell; 213, second protrusion of the generating shell; 214, third protrusion of the generating shell; 215, fourth protrusion of the generating shell; 22, atomizer core assembly; 221, atomizer core; 2211, atomizer core body; 2212, atomizer core pin; 222, atomizer core sleeve; 2221, core sleeve body; 22211, atomizer core slot; 2222, core sleeve protrusion; 23, storage compartment; 24, storage compartment clamp; 25, generating device seal Components; 251, first air hole; 252, first start-up air hole; 253, second air hole; 254, oil filling hole; 30, bracket assembly; 31, fixed bracket component; 311, fixed bracket body; 3111, pin hole; 3112, second start-up air hole; 3113, upper air hole; 3114, bracket positioning groove; 3115, sealing mounting groove; 3116, air flow supplement hole; 312, bracket block; 313, bracket protrusion; 32, bracket first sealing component; 33, bracket second sealing component ;40. Control device;41. Circuit board;42. Display panel;43. Airflow sensor;44. Battery;45. Button;46. Charging socket;47. Sensor cover;50. Shell device;51. Shell body;511. Transparent mounting slot;512. Display exposure hole;513. Transparent card hole;514. Key hole;515. Shell card slot;516. Second observation hole;517. Socket hole;52. Transparent part;521. Transparent body;522. Connecting card block;53. Key cover. DETAILED DESCRIPTION
[0039] The following will be combined with the drawings in the embodiments of this application to clearly and completely describe the technical solutions in the embodiments of this application. Obviously, the embodiments described are only part of the embodiments of this application, not all of the embodiments. Based on the embodiments in this application, all other embodiments obtained by those skilled in the art without making creative efforts are within the scope of protection of this application.
[0040] In the description of the present application, it should be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside" and the like indicate orientations or positional relationships based on the orientations or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as limiting the present application. In addition, the terms "first" and "second" are used for descriptive purposes only and cannot be understood as indicating or implying relative importance or implicitly indicating the number of technical features indicated. Therefore, the features defined as "first" and "second" may explicitly or implicitly include one or more features. In the description of the present application, "multiple" means two or more, unless otherwise clearly and specifically defined.
[0041] In this application, the word "exemplary" is used to mean "serving as an example, illustration, or illustration." Any embodiment described in this application as "exemplary" is not necessarily to be construed as preferred or advantageous over other embodiments. The following description is given to enable any person skilled in the art to implement and use the present application. In the following description, details are listed for the purpose of explanation. It should be understood that one of ordinary skill in the art can recognize that the present application can be implemented without using these specific details. In other instances, well-known structures and processes are not elaborated in detail to avoid obscuring the description of the present application with unnecessary details. Therefore, the present application is not intended to be limited to the embodiments shown, but is consistent with the widest scope consistent with the principles and features disclosed in this application.
[0042] The present application discloses an atomizing device. Figure 1-16 An atomizing device may include a mouthpiece device 10, an atomizing device 20, a bracket device 30, a control device 40, and a housing device 50. The control device 40 is connected to the bracket device 30, the bracket device 30 is connected to the atomizing device 20, the atomizing device 20 is connected to the housing device 50, the mouthpiece device 10 is connected to the atomizing device 20, and the atomizing device 20 is connected to the control device 40. The control device 40 controls the atomizing device 20 to atomize the atomized substance, and the atomized atomized substance enters the user's body from the mouthpiece device 10.
[0043] Please see further Figure 3-4 The mouthpiece device 10 may include a mouthpiece 11 and a blocking member 12. The blocking member 12 is connected to the mouthpiece 11. The mouthpiece 11 may be provided with a mist discharge hole 111 and a mouthpiece slot 112. Atomized atomized material is discharged from the mist discharge hole 111 and enters the user's body.
[0044] Please see further Figure 5-10 The atomization generating device 20 may include a generating housing 21, an atomizer core assembly 22, a storage bin 23, a storage bin clamp 24, and a generating device seal 25. The storage bin 23 is located within the generating housing 21, the atomizer core assembly 22 is located at the bottom of the storage bin 23, and the atomizer core assembly 22 is at least partially inserted into the storage bin 23. The storage bin clamp 24 is located between the storage bin 23 and the generating housing 21 and is used to secure the storage bin 23 within the generating housing 21. The generating device seal 25 is located at the top of the storage bin 23 and is at least partially inserted into the storage bin 23.
[0045] The storage bin 23 stores the atomized material, the atomizer core assembly 22 atomizes the atomized material, and the atomizer core assembly 22 seals the storage bin 23. The generator seal 25 seals the top of the storage bin 23.
[0046] The storage bin 23 is made of glass. As you can see, using a glass storage bin 23 improves the safety of the atomizer. When heated by the atomizer core, the glass storage bin 23 prevents decomposition, reducing impurities in the atomized material and protecting the user's health. The glass storage bin 23 also offers a more aesthetically pleasing design. It improves corrosion resistance, extending the lifespan of the bin 23 and, consequently, the overall lifespan of the atomizer. Compared to food-grade plastic materials used in atomizers, using a glass storage bin 23 is less expensive, thus reducing the cost of the atomizer. Furthermore, because the glass is transparent and the atomizer core assembly 22 is located at the bottom of the storage bin 23, it prevents the atomizer core assembly 22 from drying out before the atomizer is completely burned. This ensures more efficient consumption of the atomized material and allows the user to visually monitor the consumption of the atomized material.
[0047] Specifically, the generator housing 21 may include a generator housing body 211, a first protruding portion 212, a second protruding portion 213, a third protruding portion 214, and a fourth protruding portion 215. The first protruding portion 212, the second protruding portion 213, the third protruding portion 214, and the fourth protruding portion 215 are fixedly connected to the generator housing body 211. The generator housing body 211 may be provided with a first air channel 2111, a starting air channel 2112, a second air channel 2113, a first oil tank hole 2114, a second oil tank hole 2115, an atomizer core retaining groove 2116, a generator housing retaining groove 2117, a first observation hole 2118, and an atomizer core exposure hole 2119.
[0048] The atomizer core assembly 22 may include an atomizer core 221 and an atomizer core sleeve 222. The atomizer core sleeve 222 is connected to the atomizer core 221. The atomizer core 221 may include an atomizer core body 2211 and an atomizer core pin 2212, with the atomizer core body 2211 connected to the atomizer core pin 2212. The atomizer core sleeve 222 may include a core sleeve body 2221 and a core sleeve protrusion 2222, with the core sleeve body 2221 fixedly connected to the core sleeve protrusion 2222. The core sleeve body 2221 is provided with an atomizer core retaining slot 22211, and the atomizer core 221 is inserted into the atomizer core retaining slot 22211.
[0049] The generator seal 25 may be provided with a first air hole 251, a first starting air hole 252, a second air hole 253, and an oil injection hole 254. The first air hole 251 corresponds to the first air channel 2111, the second air hole 253 corresponds to the second air channel 2113, and the first starting air hole 252 corresponds to the starting air channel 2112.
[0050] The mouthpiece device 10 is connected to the atomization generating device 20 and is inserted into the atomization generating device 20 through the mouthpiece device 10. Specifically, when the mouthpiece device 10 is inserted into the atomization generating device 20, the generating shell body 211 at least partially extends into the mouthpiece part 11, the first protrusion 212 of the generating shell is inserted into the mouthpiece slot 112, and the third protrusion 214 of the generating shell abuts the mouthpiece part 11. At this time, the blocking part 12 blocks the oil filling hole 254. Such a design can facilitate the disassembly of the mouthpiece device 10. When the atomized material in the storage bin 23 needs to be replenished, the mouthpiece device 10 is disassembled and the atomized material is replenished from the oil filling hole 254. The blocking part 12 blocks the oil filling hole 254, which can conveniently prevent the atomized material in the storage bin 23 from overflowing when the atomizing device is moved, thereby polluting the internal and external environment of the atomizing device.
[0051] The atomizer core assembly 22 is connected to the control device 40. When the atomizer core assembly 22 is located in the first oil tank hole 2114, or in the second oil tank hole 2115, or in the first oil tank hole 2114 and the second oil tank hole 2115, the core sleeve protrusion 2222 cooperates with the atomizer core limiting groove 2116 to limit the installation position of the atomizer core assembly 22. At the same time, it can also facilitate the installation direction of the atomizer core assembly 22. The atomizer core exposure hole 2119 can expose the atomizer core pin 2212 and at least part of the atomizer core body 2211. The atomizer core sleeve 222 can seal the bottom of the storage bin 23. The atomizer core assembly 22 can atomize the atomized substance in the storage bin 23, and make the atomized atomized substance appear at the bottom of the atomizer core assembly 22.
[0052] In this application, two storage bins 23 are provided. Each storage bin 23 is located within the first oil reservoir hole 2114 and the second oil reservoir hole 2115. The storage bin clamp 24 engages between the storage bin 23 and the first oil reservoir hole 2114, and between the storage bin 23 and the second oil reservoir hole 2115, securing the storage bin 23. The control device 40 can independently control the storage of the atomizer core assemblies 22 within the dual storage bins 23. This dual storage bin design allows the control device 40 to switch between different flavors based on user needs.
[0053] The starting airway 2112 is a transmission channel for human exhaled air. The exhaled air of the user passes through the mist discharge hole 111 and the first starting air hole 252 in sequence and enters the starting airway 2112. The control device 40 detects the exhaled air signal of the user and controls the atomizing core assembly 22 to atomize the atomized substance.
[0054] The first air channel 2111 and the second air channel 2113 are transmission channels for the atomized substance. The atomized substance is transmitted from the first air channel 2111 or the second air channel 2113, passes through the generating device seal 25, and is finally discharged from the mist discharge hole 111 and inhaled into the body by the user.
[0055] The first observation hole 2118 can expose at least a portion of the storage bin 23 , and the user can observe the remaining atomized material in the storage bin 23 through the exposed storage bin 23 .
[0056] It can be understood that the present application makes the first air channel 2111 and the second air channel 2113 independent of the storage bin 23, thereby avoiding the storage bin 23 and the transmission channel of the atomized atomized material being shared, avoiding the un-atomized atomized material in the storage bin 23 from direct contact with the user, and ensuring the safety and hygiene of the user.
[0057] It is understood that the two storage bins 23 provided in this application are preferred embodiments of this application. This application does not impose any restrictions on the number, shape, or size of the storage bins 23, the corresponding storage bin clamps 24, the first oil bin hole 2114, the second oil bin hole 2115, and the atomizer core assembly 22. All that is required is to ensure that the storage bin 23 functions properly.
[0058] It is understood that the first airway 2111 and the second airway 2113 in the present application are preferred embodiments of the present application. The present application does not impose any restrictions on the number of the first airway 2111 and the second airway 2113. Only the first airway 2111 or the second airway 2113 can be retained, or the number of the first airway 2111 and the second airway 2113 can be increased. The present application does not impose any restrictions on this, as long as the first airway 2111 or the second airway 2113 is a transmission channel for the atomized atomized substance.
[0059] Please see further Figure 11-13 The bracket device 30 may include a fixed bracket member 31, a first bracket seal 32, and a second bracket seal 33. The first bracket seal 32 and the second bracket seal 33 are connected to the fixed bracket member 31. The fixed bracket member 31 may include a fixed bracket body 311, a bracket block 312, and a bracket protrusion 313. The bracket block 312 and the bracket protrusion 313 are fixedly connected to the fixed bracket body 311. The fixed bracket body 311 may be provided with a pin hole 3111, a second starting air hole 3112, an upper air hole 3113, a bracket positioning groove 3114, a seal installation groove 3115, and an airflow supplementary hole 3116.
[0060] The second seal 33 of the bracket is located in the sealing installation groove 3115, and the first seal 32 of the bracket is located in the fixed bracket part 31. The bracket device 30 is snapped into the atomization generating device 20 to complete the connection. Specifically, the fixed bracket part 31 is snapped into the generating shell part 21, at this time the bracket block 312 is snapped into the generating shell card groove 2117, the bottom of the generating shell part 21 abuts the bracket protrusion 313, and the fourth protrusion 215 of the generating shell is snapped into the bracket positioning groove 3114. In addition, the second seal 33 of the bracket can increase the connection strength between the bracket device 30 and the atomization generating device 20, and can also enhance the sealing to prevent leaked atomized material from entering the interior of the bracket device 30. The position of the first seal 32 of the bracket in the fixed bracket part 31 corresponds to the position of the storage bin part 23, which further prevents leaked atomized material from entering the interior of the bracket device 30.
[0061] The position of the upper air hole 3113 corresponds to the position of the atomizer core assembly 22. The upper air hole 3113 facilitates the replenishment of air at the bottom of the atomizer core assembly 22, supporting the user's prolonged inhalation of atomized substances. The position of the airflow replenishment hole 3116 corresponds to the position of the upper air hole 3113. The provision of the airflow replenishment hole 3116 further facilitates the replenishment of air at the bottom of the atomizer core assembly 22 from the upper air hole 3113, reducing the difficulty of quickly replenishing air from the upper air hole 3113.
[0062] Please see further Figure 14 It is understood that the control device 40 may include a circuit board 41 , a display panel 42 , an airflow sensor 43 , a battery 44 , a button 45 , a charging socket 46 , and a sensor cover 47 . The control device 40 is connected to the bracket device 30 .
[0063] The display panel 42, the airflow sensor 43, the battery 44, the button 45, and the charging socket 46 are connected to the circuit board 41. The battery 44 supplies power to the atomizer device. The charging socket 46 is connected to an external power source to charge the battery 44. The display panel 42 can display the working status of the atomizer device. The button 45 can facilitate the user to control the working status of the atomizer device. The airflow sensor 43 can detect the airflow state of the starting airway 2112 and transmit the detected signal to the circuit board 41. The sensor cover 47 is provided with the airflow sensor 43, and the sensor cover 47 is passed through the second starting air hole 3112 and seals the second starting air hole 3112. The sensor cover 47 is connected to the starting airway 2112.
[0064] The atomizer core assembly 22 is connected to the control device 40. Specifically, the atomizer core pin 2212 is provided in the pin hole 3111 and is connected to the circuit board 41. The connection between the atomizer core pin 2212 and the circuit board 41 can be welding.
[0065] Specifically, the exhaled air of the user passes through the mist discharge hole 111, the first starting air hole 252, the starting air channel 2112, the sensor sleeve 47, and is detected by the airflow sensor 43. After receiving the signal from the airflow sensor 43, the circuit board 41 controls the operation of the atomizing core assembly 22.
[0066] It is understandable that the sensor cover 47 can further seal the bracket device 30 to prevent the leakage of atomized material, polluting the internal environment of the bracket device 30 and interfering with the normal operation of the bracket device 30. It can also protect the airflow sensor 43 and improve the detection accuracy of the airflow sensor 43.
[0067] The design of the atomizer core pin 2212 extending through the pin hole 3111 and connecting to the circuit board 41 facilitates the production and assembly of the atomizer device. Connecting the atomizer core assembly 22 to the control device 40 simply requires installing the atomizer core assembly 22 on the atomizer generating device 20. Then, when the atomizer generating device 20 is connected to the bracket device 30, the atomizer core pin 2212 is inserted through the pin hole 3111. Finally, the atomizer core pin 2212 is soldered to the circuit board 41. The entire assembly method is quick and simple. Using the atomizer core pin 2212 to connect to the circuit board 41 also reduces costs.
[0068] Please see further Figure 14As will be understood, the housing device 50 may include a housing body 51, a transparent member 52, and a key cover 53. The transparent member 52 and the key cover 53 are connected to the housing body 51. The housing body 51 may be provided with a transparent mounting slot 511, a display exposure hole 512, a transparent latch hole 513, a key hole 514, a housing latch slot 515, a second observation hole 516, and a socket hole 517. The transparent member 52 may include a transparent body 521 and a connecting block 522. The connecting block 522 is fixedly connected to the transparent body 521.
[0069] The transparent member 52 is positioned in the transparent mounting slot 511, and the connecting block 522 engages the transparent engagement hole 513, thereby snapping the transparent member 52 into the housing body 51. The display exposure hole 512 is located within the transparent mounting slot 511 and corresponds to the display panel 42. This protects the interior of the bracket assembly 30, preventing foreign matter from entering and interfering with the operation of its components. The user can also observe the operating status of the atomizer displayed on the display panel 42 through the transparent member 52.
[0070] The key cover 53 is inserted into the key hole 514, and the position of the key hole 514 corresponds to the position of the key 45. Thus, the key cover 53 can protect the key 45 and also facilitate the user to press the key 45.
[0071] The position of the socket hole 517 corresponds to the position of the charging socket 46 , and the socket hole 517 exposes at least a portion of the charging socket 46 to facilitate the charging socket 46 to receive external power.
[0072] When the atomizing device 20 is connected to the housing 50, the second protrusion 213 of the generating housing engages with the housing slot 515, and the third protrusion 214 of the generating housing abuts the housing body 51. At this point, the second observation hole 516 corresponds to the first observation hole 2118, allowing the user to observe the amount of oil smoke in the storage bin 23 through the second observation hole 516 and the first observation hole 2118.
[0073] Please see further Figure 16 , the way this application works is:
[0074] The user touches the mouthpiece device 10 and blows on the mouthpiece device 10;
[0075] The gas passes through the mist discharge hole 111 and the first starting air hole 252, enters the starting air channel 2112, and finally passes through the sensor sleeve 47 to be detected and identified by the airflow sensor 43;
[0076] The airflow sensor 43 transmits the detection signal to the circuit board 41, which controls the atomizer core assembly 22 to atomize the atomized material in the storage compartment 23. The atomized atomized material is located at the bottom of the atomizer core assembly 22.
[0077] When the user inhales, the airflow passes through the upper air hole 3113 and enters the bottom of the atomizer core assembly 22. The airflow carries the atomized atomized substance. As the airflow moves further, the airflow passes through the first air channel 2111 and the second air channel 2113, and then passes through the first air hole 251 and the second air hole 253, and finally enters the user's body through the mist discharge hole 111.
[0078] or
[0079] When the user presses the button 45, the signal from the button 45 is transmitted to the circuit board 41. The circuit board 41 controls the atomizer core assembly 22 to atomize the atomized material in the storage compartment 23. The atomized atomized material is located at the bottom of the atomizer core assembly 22.
[0080] As the atomizer core assembly 22 continues to work, the atomized substance naturally flows into the first air channel 2111 and the second air channel 2113 , then passes through the first air hole 251 and the second air hole 253 , and finally enters the user's body through the mist discharge hole 111 .
[0081] After the user has finished enjoying the vape, he or she no longer presses the button 45 and the atomizer core assembly 22 stops working.
[0082] By using glass for the storage compartment 23, this application reduces impurities in the atomized material, protecting the user's health, and making it more aesthetically pleasing. It also improves corrosion resistance, extends the lifespan of the storage compartment 23, and reduces the cost of the atomizer device. Furthermore, the transparent glass material and the location of the atomizer core assembly 22 at the bottom of the storage compartment 23 prevent the atomizer core assembly 22 from drying out before the atomized material is completely burned. This allows for more efficient consumption of the atomized material and facilitates user monitoring of atomized material consumption. Furthermore, by separating the first airway 2111 and the second airway 2113 from the storage compartment 23, the storage compartment 23 and the atomized material transmission channel are prevented from sharing a common path, preventing direct contact between un-atomized atomized material in the storage compartment 23 and the user, thus ensuring user safety and hygiene. The design of the atomizer core assembly 22, the bracket assembly 30, and the control device 40 facilitates the production and assembly of the atomizer device, making assembly quick and simple. Furthermore, the use of the atomizer core pin 2212 for connection to the circuit board 41 also reduces costs. The control device 40 can independently control the storage of the atomizer core assembly 22 in the dual storage bin 23. Through the design of the dual storage bin 23, the control device 40 can switch different flavors according to the needs of the user.
[0083] The above is only an implementation method of the present application and does not limit the patent scope of the present application. Any equivalent structure or equivalent process transformation made using the contents of the description and drawings of this application, or directly or indirectly applied in other related technical fields, are also included in the patent protection scope of the present application.
Claims
1. An atomizing device, characterized in that: The atomizing device atomizes the atomized substance, and the atomizing device includes: an atomizing generating device, a support device, a control device, and a shell device; the control device is connected to the support device, the support device is connected to the atomizing generating device, the atomizing generating device is connected to the shell device, and the atomizing generating device is connected to the control device; The atomization generating device includes a generating housing, an atomization core assembly, a storage compartment, and a generating device seal. The storage compartment is located within the generating housing, the atomization core assembly is located at the bottom of the storage compartment, and the atomization core assembly is at least partially inserted into the storage compartment. The generating device seal is located at the top of the storage compartment, and is at least partially inserted into the storage compartment. The storage bin is made of glass.
2. The atomizing device according to claim 1, characterized in that The generating shell component includes a generating shell body, and the generating shell body is provided with a first air duct, a starting air duct, and a first oil tank hole; the storage tank component is located in the first oil tank hole, and the first air duct is independent of the storage tank component, and the first air duct is the transmission channel of the atomized substance after atomization; the starting air duct transmits the gas to the control device.
3. The atomizing device according to claim 2, characterized in that: The bracket device includes a fixed bracket member, the fixed bracket member includes a fixed bracket body, the fixed bracket body is provided with a pin hole; the generator shell body is provided with an atomizer core exposure hole; The atomizing core assembly is passed through the pin hole and connected to the control device.
4. The atomizing device according to claim 3, characterized in that: The fixing bracket body is provided with an upper air hole, and the position of the upper air hole corresponds to the position of the atomizing core assembly.
5. The atomizing device according to claim 3, characterized in that: The generating shell body is provided with a first observation hole; the housing device includes a housing body, and the housing body is provided with a second observation hole; the position of the first observation hole corresponds to the position of the second observation hole, and the first observation hole exposes at least part of the storage bin.
6. The atomizing device according to claim 1, characterized in that: The atomization generating device includes a storage bin clamping component, and the storage bin clamping component is located between the storage bin component and the generating shell component.
7. The atomizing device according to claim 2, characterized in that: The generating device seal is provided with a first air hole, a first starting air hole, and an oil filling hole; the position of the first air hole corresponds to the position of the first air duct, the position of the first starting air hole corresponds to the position of the starting air duct, and the position of the oil filling hole corresponds to the position of the storage bin.
8. The atomizing device according to claim 1, characterized in that: The atomizing device further comprises a cigarette holder device, which comprises a cigarette holder piece and a blocking piece; the blocking piece is connected to the cigarette holder piece; and the cigarette holder piece is provided with a mist discharge hole.
9. The atomizing device according to claim 3, characterized in that: The bracket device further includes a first bracket sealing component and a second bracket sealing component, and the first bracket sealing component and the second bracket sealing component are connected to the fixed bracket component.
10. The atomizing device according to claim 3, characterized in that: The atomizer core assembly includes an atomizer core and an atomizer core sleeve; the atomizer core sleeve is connected to the atomizer core; the atomizer core includes an atomizer core body and an atomizer core pin, and the atomizer core body is connected to the atomizer core pin.