Electronic atomizer
By using a modular design, the electronic atomizer is divided into a housing assembly, an integrated base, and a control assembly, which solves the problem of complex assembly in existing technologies and improves assembly efficiency and reduces maintenance costs.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- QINGDAO MEIZHONG LIANCHUANG NEW TECH CO LTD
- Filing Date
- 2025-03-28
- Publication Date
- 2026-04-28
AI Technical Summary
The assembly process of existing aerosol atomization equipment is complex, resulting in low assembly efficiency.
The modular assembly design divides the electronic atomizer into three modules: the shell assembly, the integrated base, and the control assembly, simplifying the assembly process and improving efficiency.
Modular design significantly improves assembly efficiency, simplifies assembly processes, and reduces maintenance costs and difficulty.
Smart Images

Figure CN224165698U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of aerosol electric heating atomization technology, specifically to an electronic atomizer. Background Technology
[0002] Aerosol atomizing equipment is an electronic device that uses electricity to heat a stored aerosol matrix by energizing a heating wire, causing it to evaporate and form a mist-like aerosol for user use. The assembly process for aerosol atomizing equipment involves first assembling and fixing the atomizing core and control components, followed by the assembly of the outer casing and other structures. The specific assembly process for the atomizing core and control components is as follows: after the materials are assembled before production, they are sent to the product assembly line, where control circuitry is soldered to connect different functional electronic components, and finally, the finished product is assembled. Because the assembly of the atomizing core and control components involves many parts and requires soldering different functional electronic components, the assembly process is numerous and complex, resulting in low assembly efficiency. This affects the subsequent assembly of the outer casing structure, leading to low overall assembly efficiency of the aerosol atomizing equipment. Utility Model Content
[0003] The purpose of this application is to overcome the shortcomings of the prior art and provide an electronic atomizer to solve the technical problem of low assembly efficiency of aerosol atomization equipment.
[0004] To solve the above-mentioned technical problems, this application adopts the following technical solution: an electronic atomizer for heating an aerosol generating matrix to generate an aerosol, the electronic atomizer comprising:
[0005] Housing assembly having a receiving cavity;
[0006] An integrated base is housed within the accommodating cavity, dividing the cavity into a liquid storage chamber and a material storage chamber. The liquid storage chamber is used to contain the aerosol generation matrix. An atomizing core is provided on the integrated base.
[0007] A control component is housed in the storage cavity and electrically connected to the atomizing core;
[0008] The integrated base includes a base and at least one fixed cylinder formed by a protrusion from the base toward the liquid storage cavity; the atomizing core is embedded in the fixed cylinder and communicates with the liquid storage cavity.
[0009] Optionally, the housing assembly further includes a liquid reservoir, the liquid reservoir comprising:
[0010] Top plate, wherein the top plate is provided with air vents;
[0011] A cup wall extending vertically from the periphery of the top plate; one end of the cup wall, away from the top plate, is fitted onto at least a portion of the integrated base; the liquid storage cavity is formed by the top plate, the cup wall, and the integrated base; and
[0012] A connecting pipe connects to the air outlet and is housed in the liquid storage chamber; one end of the connecting pipe away from the air outlet connects to the end of the fixed cylinder away from the base to form an atomization channel.
[0013] Optionally, the atomizing core includes:
[0014] A heating mesh, comprising a heating element and a first pin and a second pin connected to the heating element, the heating element being disposed around the inner wall of the fixed cylinder, the first pin and the second pin passing through the base and electrically connected to the control component; and
[0015] A liquid guiding component is disposed between the outer periphery of the heating element and the inner wall of the fixed cylinder; the liquid guiding component communicates with the liquid storage cavity;
[0016] The heating mesh heats the aerosol-generating matrix adsorbed by the liquid guiding component to generate aerosol in the atomization channel.
[0017] Optionally, the fixed cylinder has a first window at the end away from the base, and at least part of the liquid guiding element passes through the first window and communicates with the liquid storage cavity.
[0018] Optionally, the end of the connecting pipe away from the top plate passes through the fixed cylinder or is sleeved outside the fixed cylinder and abuts against the liquid guiding element.
[0019] Optionally, the housing assembly includes:
[0020] The housing includes a bottom cover and side shells extending from the edge of the bottom cover; the receiving cavity is formed by the bottom cover and the side shells; and
[0021] The nozzle is connected to the end of the side shell away from the bottom cover; the nozzle is in communication with the atomizing channel.
[0022] Optionally, the integrated base further includes:
[0023] A limiting plate is connected to the side of the base away from the fixed cylinder, and the end of the limiting plate away from the base abuts against the bottom cover;
[0024] The storage cavity is formed by the base, the bottom cover, and the side shell.
[0025] Optionally, the control component includes a first control element, the first control element comprising:
[0026] The first circuit board is embedded in the base;
[0027] The first pin is electrically connected to the first circuit board and is configured corresponding to the first pin; and
[0028] The second pin is electrically connected to the first circuit board and is configured corresponding to the second pin;
[0029] The base has a first slot and a second slot on the side facing the first circuit board; the first pin and the corresponding first plug are inserted into the first slot; the second pin and the corresponding second plug are inserted into the second slot.
[0030] Optionally, the first control element further includes:
[0031] The microphone is electrically connected to the first circuit board;
[0032] The base has a mounting groove on its surface facing the first circuit board; the mounting groove connects the liquid storage chamber and the atomizing channel; the microphone is embedded in the mounting groove.
[0033] Optionally, the control component further includes:
[0034] A second control component is disposed near the bottom cover and is electrically connected to the first circuit board; and
[0035] A battery is disposed between the first circuit board and the second control component; the battery is electrically connected to the second control component, and the electrical connection between the battery and the second control component is detachable.
[0036] The electronic atomizer provided in this application adopts a modular assembly, dividing the electronic atomizer into three modules: a shell assembly, an integrated base, and a control assembly. This reduces the number of parts on the overall electronic atomizer assembly line, simplifies the assembly process, and effectively improves the overall assembly efficiency of the electronic atomizer. Specifically, the electronic atomizer includes a shell assembly, an integrated base, and a control assembly. Attached Figure Description
[0037] Figure 1 This is a three-dimensional structural diagram of the electronic atomizer provided in this application;
[0038] Figure 2 This is a cross-sectional schematic diagram of the electronic atomizer provided in this application;
[0039] Figure 3This is a three-dimensional exploded structural diagram of the electronic atomizer provided in this application;
[0040] Figure 4 This is a three-dimensional cross-sectional schematic diagram of a portion of the electronic atomizer structure provided in this application;
[0041] Figure 5 This is an assembly diagram of the atomizing core and integrated base in the electronic atomizer provided in this application;
[0042] Figure 6 This is a three-dimensional structural diagram of the liquid reservoir in the electronic atomizer provided in this application;
[0043] Figure 7 This is a three-dimensional structural diagram of a portion of the electronic atomizer provided in this application;
[0044] Figure 8 This is a three-dimensional structural diagram (unassembled state) of the control component in the electronic atomizer provided in this application;
[0045] Figure 9 This is a three-dimensional exploded structural diagram of the control component in the electronic atomizer provided in this application (unassembled state);
[0046] Figure 10 This is a three-dimensional structural diagram of the silicone base in the electronic atomizer provided in this application.
[0047] Figure label:
[0048] 1000. Electronic atomizer;
[0049] 1. Integrated base; 10. Sealing ring; 101. Air groove; 11. Fixing cylinder; 111. First window; 12. First slot; 13. Second slot; 14. Mounting groove; 15. Limiting plate; 151. Bayonet; 16. Guide groove; 17. Inverted buckle;
[0050] 2. Atomizing core; 21. Liquid guiding component; 22. Heating mesh;
[0051] 300. Housing assembly;
[0052] 3. Liquid reservoir; 31. Oil reservoir cotton; 32. Connecting pipe; 321. Protrusion; 33. Protrusion plate; 331. First locking position; 34. Limiting groove;
[0053] 400, Control component; 401, First pin; 402, Second pin;
[0054] 4. Second control component; 41. Connector; 42. Locking protrusion; 43. Wire;
[0055] 5. First control component; 51. Microphone;
[0056] 6. Battery; 61. Electrical connection terminal; 62. Insulating sleeve;
[0057] 7. Silicone base; 71. Receiving groove; 72. Hole position; 73. First through hole; 74. Second through hole;
[0058] 8. Outer casing;
[0059] 9. Suction nozzle; 90. Rubber stopper; 91. Inlay ring; 92. Oil-absorbing cotton. Detailed Implementation
[0060] The present application will be further described below with reference to specific embodiments and accompanying drawings.
[0061] Please refer to the following: Figures 1 to 5 The first embodiment of this application provides an electronic atomizer 1000 for heating an aerosol generating matrix to generate an aerosol. It employs modular assembly, dividing the electronic atomizer 1000 into three modules: a housing assembly 300, an integrated base 1, and a control assembly 400. This reduces the number of parts on the overall assembly line, simplifies the assembly process, and effectively improves the overall assembly efficiency of the electronic atomizer 1000. Specifically, the electronic atomizer 1000 includes a housing assembly 300, an integrated base 1, and a control assembly 400. The housing assembly 300 forms the external frame of the device, creating a cavity to accommodate other components, providing support and protection. The integrated base 1 is placed within the cavity and divides it into a liquid storage cavity and a storage cavity. The liquid storage cavity stores the aerosol generating matrix, and the atomizing core 2 mounted thereon heats and atomizes the aerosol generating matrix to generate an aerosol.
[0062] The integrated base 1 includes a base that cooperates with the housing assembly 300 to separate the accommodating cavity and ensure the normal functioning of each component. The integrated base 1 also includes at least one fixing cylinder 11 protruding from the surface of the base facing the liquid storage cavity. The fixing cylinder 11 serves to install and fix the atomizing core 2. The atomizing core 2 is tightly embedded in the fixing cylinder 11 and communicates with the liquid storage cavity, ensuring that the liquid aerosol generation matrix in the liquid storage cavity can be delivered to the atomizing core 2, heated and atomized to generate aerosol for user use.
[0063] The control component 400 is located in the storage chamber and is electrically connected to the atomizing core 2 to regulate its operating state. When the electronic atomizer 1000 is running, the aerosol generation matrix in the storage chamber is delivered to the atomizing core 2. At this time, the control component 400 supplies power to the atomizing core 2, causing it to heat and atomize the matrix into an aerosol. The modular design of the electronic atomizer 1000 offers significant advantages: during production, each component can be manufactured independently and then assembled as a whole. For example, on the assembly line, only the pre-assembled integrated base 1 needs to be placed into the receiving cavity of the housing component 300, followed by the installation of the control component 400. This process significantly reduces the number of parts on the assembly line, simplifies the assembly process, and thus significantly improves assembly efficiency. Furthermore, in later maintenance, if a module malfunctions, the corresponding module can be directly replaced, effectively reducing maintenance costs and difficulty.
[0064] Please refer to the following: Figures 1 to 7 In one embodiment, the liquid storage cup 3 consists of a top plate, a cup wall, and a connecting pipe 32. The top plate has an vent for discharging the atomized aerosol. The cup wall extends vertically downwards from the periphery of the top plate, with its end away from the top plate fitting onto at least a portion of the integrated base 1. The top plate, cup wall, and integrated base 1 together form a liquid storage cavity for storing the aerosol generation matrix. One end of the connecting pipe 32 is connected to the vent, and the other end extends into the liquid storage cavity and communicates with the end of the fixed cylinder 11 away from the base, thus constructing a complete atomization channel. During assembly, simply fitting the cup wall onto the integrated base 1 and connecting the connecting pipe 32 completes the assembly with the integrated base 1, making the operation simple.
[0065] In operation, the aerosol generation matrix in the storage chamber is heated by the atomizing core 2. The aerosol generated by atomization flows through the atomization channel formed by the connecting pipe 32 and the fixed cylinder 11, and is finally discharged from the air outlet. The independent atomization channel makes the aerosol discharge path clearer and smoother, simplifies the assembly process, and improves assembly efficiency.
[0066] The integrated base 1 can be snapped and fixed to the liquid storage cup 3; the integrated base 1 and the liquid storage cup 3 are also sealed together by a sealing ring 10. The integrated base 1 has a guide groove 16 on its outer side and an inverted buckle 17 located within the guide groove 16. The lower end of the liquid storage cup 3 has a protrusion 33 with a first locking position 331. After the integrated base 1 and the liquid storage cup 3 are inserted, the protrusion 33 is embedded in the guide groove 16, thus achieving guiding and anti-foolproof functions. At the same time, the inverted buckle 17 engages and fixes with the first locking position 331, thus fixing the integrated base 1 and the liquid storage cup 3 together. The assembly structure is simple and stable.
[0067] Please continue to refer to the following: Figures 2 to 5In one embodiment, the atomizing core 2 consists of a heating mesh 22 and a liquid guiding component 21. The heating part of the heating mesh 22 is fixed around the inner wall of the fixing cylinder 11, and its first and second leads pass through the base and are electrically connected to the control component 400. The liquid guiding component 21 is located between the outer periphery of the heating part and the inner wall of the fixing cylinder 11 and communicates with the liquid storage cavity. An oil-collecting cotton 31 can be provided in the liquid storage cup 3 for contact with the liquid guiding component 21. The heating mesh 22 and the liquid guiding component 21 can be pre-assembled into a whole and then embedded into the fixing cylinder 11, which greatly reduces the assembly time.
[0068] When the electronic atomizer 1000 is in use, the liquid guide 21 adsorbs aerosol from the liquid storage chamber to generate a matrix. The control component 400 supplies power to the heating mesh 22 through the first and second pins. The heating element heats and atomizes the matrix adsorbed by the liquid guide 21 into an aerosol. The heating mesh 22 and the liquid guide 21 fit tightly together to ensure uniform heating and atomization of the matrix. Modular assembly reduces assembly difficulty and improves assembly efficiency. It also facilitates the replacement of the atomizing core 2 and extends the service life of the electronic atomizer 1000. The atomizing core 2 consists of the heating mesh 22 and the liquid guide 21 and is fixed by the fixing cylinder 11. Compared with the existing atomizing core 2, it eliminates the need for metal steel pipes and the problem of fixing and assembling metal steel pipes, effectively reducing assembly parts, reducing assembly steps, reducing production costs, and effectively increasing assembly efficiency.
[0069] Please continue to refer to the following: Figures 2 to 5 Furthermore, the fixed cylinder 11 has a first window 111 at the end away from the base, through which part of the liquid guiding component 21 communicates with the liquid storage chamber. The liquid guiding component 21 can be directly installed and aligned through the first window 111, ensuring accurate positioning and convenient operation. Simultaneously, the liquid guiding component 21 can absorb liquid aerosol from the liquid storage chamber through the first window 111 to generate a matrix, achieving smooth liquid supply to the heating mesh 22. The first window 111 optimizes the communication method between the liquid guiding component 21 and the liquid storage chamber, ensuring the stability of the matrix supply, simplifying the installation steps of the liquid guiding component 21, improving assembly efficiency, and further enhancing the overall reliability of the electronic atomizer 1000. Specifically, the liquid guiding component 21 can contact the liquid storage cotton in the liquid storage chamber. The density of the liquid guiding component 21 is greater than the density of the oil storage cotton 31, forming a siphon effect: the aerosol generating matrix is transferred from the low-density liquid storage cotton to the high-density liquid guiding component 21, achieving rapid liquid supply.
[0070] Please continue to refer to the following: Figures 2 to 6In another embodiment, the end of the connecting pipe 32 furthest from the top plate can be inserted into or sleeved on the fixed cylinder 11 and abut against the liquid guiding component 21. This simplifies the connection between the connecting pipe 32 and the fixed cylinder 11, facilitates assembly and operation, and helps ensure the stable installation of the liquid guiding component 21. The connecting pipe 32 can be integrally connected to the top plate, ensuring high reliability. The direct connection between the connecting pipe 32 and the fixed cylinder 11 forms an atomization channel, which can better guide the atomized aerosol through the atomization channel for discharge, and ensures the sealing and smoothness of the atomization channel, reducing the possibility of aerosol leakage.
[0071] The lower end of the connecting tube 32 is formed with a protrusion 321. When the lower end of the connecting tube 32 is inserted into the upper end of the fixing cylinder 11, the protrusion 321 is embedded in the upper end of the first window 111, so that the connecting tube 32 and the fixing cylinder 11 are positioned and installed, thereby ensuring that the assembly of the connecting tube 32 and the fixing cylinder 11 is more stable. The protrusion 321 also presses against the upper end face of the atomizing core 2, thereby ensuring the stability of the assembly of the atomizing core 2. Moreover, the assembly structure of the connecting tube 32 and the fixing cylinder 11 is extremely simple.
[0072] Please continue to refer to the following: Figures 1 to 3 In one embodiment, the housing assembly 300 includes a bottom cover and a side shell extending from the edge of the bottom cover, the bottom cover and the side shell forming a receiving cavity; the housing assembly 300 also includes a mouthpiece 9 connected to the end of the side shell away from the bottom cover and communicating with the atomization channel. During assembly, the integrated base 1 and the control component 400 are first placed into the receiving cavity formed by the housing 8, and then the mouthpiece 9 is connected to form a complete aerosol discharge path. The user inhales the atomized aerosol through the mouthpiece 9. By disassembling the housing assembly 300 into the housing 8 and the mouthpiece 9, the overall assembly of the electronic atomizer 1000 is more orderly, the connection method of each component is simple and direct, the operation steps on the assembly line are reduced, and the assembly efficiency is improved.
[0073] The lower end of the mouthpiece 9 is also provided with an insert ring 91, and the upper periphery of the liquid reservoir 3 is provided with a limiting groove 34. The insert ring 91 is embedded and installed in the limiting groove 34 from top to bottom, thereby positioning the mouthpiece 9 and the liquid reservoir 3 to ensure the stability of the assembly of the electronic atomizer 1000. An oil-absorbing cotton 92 is also provided between the lower end of the mouthpiece 9 and the upper end of the liquid reservoir 3, which can filter and purify impurities generated by the aerosol atomization device. A removable rubber stopper 90 is also provided at the upper opening of the mouthpiece 9 to protect the mouthpiece 9 and prevent foreign objects from entering the mouthpiece 9; when the electronic atomizer 1000 is used, the rubber stopper 90 can be removed relative to the mouthpiece 9.
[0074] Please continue to refer to the following: Figure 3 , Figure 4 , Figure 5 and Figure 7Furthermore, the integrated base 1 is also equipped with a limiting plate 15, which is connected to the side of the base away from the fixed cylinder 11, and the end away from the base abuts against the bottom cover. The base, bottom cover, and side shells together form a storage cavity. During assembly, after the integrated base 1 is placed into the receiving cavity of the outer shell 8, the limiting plate 15 abuts against the bottom cover to determine the position of the integrated base 1, ensuring proper assembly. The limiting plate 15 plays a positioning and supporting role, and together with other components, it forms a storage cavity, providing installation space for the control component 400. The setting of the limiting plate 15 improves the positioning accuracy of the integrated base 1 during the assembly process, reduces assembly adjustment time, improves assembly efficiency, and is conducive to a more compact and reasonable internal structure of the electronic atomizer 1000, which helps to improve the overall performance of the device.
[0075] Please refer to the following: Figures 2 to 4 , Figures 7 to 10 In one embodiment, the control component 400 has a first control element 5, which includes a first circuit board embedded in the base, and a first pin 401 and a second pin 402 electrically connected to the first circuit board and respectively provided with the first pin and the second pin of the heating mesh 22. The base is provided with a first slot 12 and a second slot 13 for respectively plugging the first pin and the first pin 401, and the second pin and the second pin 402.
[0076] During assembly, the first and second pins of the heating element 22 are connected to the first pin 401 and second pin 402 of the first control component 5 via corresponding slots to achieve circuit connection. This simple and quick operation eliminates the need for soldering, thus improving assembly efficiency. The control component 400 supplies power to the heating element 22 through the first circuit board to control its operating state. The slot and pin connection method greatly simplifies the circuit connection process between the control component 400 and the atomizing core 2, improving assembly efficiency. Furthermore, if any pins or pins malfunction later, they can be directly plugged in and replaced, reducing maintenance costs.
[0077] Please continue to refer to the following: Figures 2 to 4 , Figures 7 to 10 In one embodiment, the first control element 5 further includes a microphone 51 electrically connected to the first circuit board. The base is provided with a mounting groove 14 on the surface of the first circuit board that connects the liquid storage chamber and the atomization channel, and the microphone 51 is embedded in the mounting groove 14.
[0078] During assembly, the microphone 51 is directly embedded in the mounting slot 14 and electrically connected to the first circuit board, simplifying the installation process. During operation, the microphone 51 detects the user's inhalation. When the user inhales, the air pressure between the liquid reservoir and the atomization channel changes, and the microphone 51 transmits a signal to the first circuit board, controlling the heating element 22 to activate. The microphone 51 enables the electronic atomizer 1000 to operate intelligently, activating the heating element 22 only when the user inhales, saving energy and extending the battery 6's lifespan. The mounting slot 14 design facilitates microphone 51 installation, improves assembly efficiency, ensures accurate air pressure detection by the microphone 51, and enhances the reliability of the electronic atomizer 1000.
[0079] The microphone 51 is positioned below the air groove 101 located at the lower end of the integrated base 1 and passing through the fixing cylinder 11. The first control component 5 can be fixed in the mounting groove 14 by being embedded in the silicone seat 7, which has excellent sealing performance. The silicone seat 7 is provided with a receiving groove 71 and a hole 72 communicating with the receiving groove 71 and used to mate with the air groove 101. The microphone 51 is embedded in the receiving groove 71 and mates with the hole 72, so that the microphone 51 is stably installed in the silicone seat 7. At the same time, the first pin 401 and the second pin 402 pass through the first through hole 73 and the second through hole 74 of the silicone seat 7 respectively and form a sealed assembly, ensuring that the sealing performance of its assembly structure is high, achieving good waterproof effect, and enabling the first control component 5 and the silicone seat 7 to form a stable assembly without the need for additional structural support. Its assembly structure is simple, easy to install, and has high assembly efficiency.
[0080] Please continue to refer to the following: Figures 2 to 4 , Figures 7 to 10 Furthermore, the control assembly 400 also includes a second control element 4 disposed near the bottom cover and electrically connected to the first circuit board, and a battery 6 located between the first circuit board and the second control element 4, electrically connected to the second control element 4, and with a removable electrical connection terminal 61. During assembly, the battery 6 is first installed between the first circuit board and the second control element 4, and the electrical connection terminal 61 is connected. Then, the second control element 4 is installed near the bottom cover and electrically connected to the first circuit board. The battery 6 provides power to the entire electronic atomizer 1000, and the second control element 4 is used to control and manage the power supply of the battery 6. The battery 6 can be a rechargeable battery.
[0081] The second control component 4 is equipped with a connector 41. The electrical connection end 61 of the battery 6 is inserted into and fixed to the connector 41, and is electrically connected. There are two electrical connection ends 61 with opposite polarities. Correspondingly, there can be two connectors 41, each inserted into one of the two electrical connection ends 61, and thus electrically connected. Alternatively, there can be one connector 41 with two slots for connecting to conductive terminals. After the two electrical connection ends 61 are inserted into the two slots, they are each connected to one conductive terminal. Since the electrical connection ends 61 of the battery 6 are detachable and do not require welding, it simplifies assembly and facilitates battery replacement when the battery 6 is depleted or malfunctions.
[0082] The above-described structural design of the control component 400 makes battery 6 installation and replacement more convenient, improving the usability of the electronic atomizer 1000. The second control component 4 works in conjunction with the first circuit board to better manage the power supply to the battery 6, ensuring stable operation of the electronic atomizer 1000. During assembly, the installation sequence and connection method of each component are clear and explicit, which helps to improve assembly efficiency. An insulating sleeve 62 can be fitted over the battery 6, which presses and positions between the first control component 5 and the second control component 4, effectively protecting the battery 6. The second control component 4 and the first control component 5 are connected and conductive through several wires 43 or FPC boards, and these wires 43 or FPC boards are bent on the outer side of the battery 6.
[0083] The second control component 4 has a latching protrusion 42 on both sides; the integrated base 1 has a downwardly protruding limiting plate 15 on both sides. The latch 151 at the end of the limiting plate 15 is fixed to the latching protrusion 42, so that the second control component 4 is fixed to the lower end of the integrated base 1, thus forming a whole. This makes it easier to install into the outer shell 8 later, which can improve the assembly efficiency to a certain extent. At the same time, the second control component 4 can form a stable and firm assembly with the integrated base 1, ensuring the stability of the assembly structure.
[0084] This application provides an electronic atomizer that adopts modular assembly, dividing the electronic atomizer into three modules: a shell assembly, an integrated base, and a control assembly. This reduces the number of parts on the overall electronic atomizer assembly line, simplifies the assembly process, and effectively improves the overall assembly efficiency of the electronic atomizer.
[0085] Of course, the above description is only a specific embodiment of this application and is not intended to limit the scope of this application. All equivalent changes or modifications made to the structure, features and principles described in the patent claims of this application should be included in the scope of this patent application.
Claims
1. An electronic atomizer for heating an aerosol-generating matrix to generate an aerosol, characterized in that, include: Housing assembly having a receiving cavity; An integrated base is housed within the accommodating cavity, dividing the cavity into a liquid storage chamber and a material storage chamber. The liquid storage chamber is used to contain the aerosol generation matrix. An atomizing core is provided on the integrated base. A control component is housed in the storage cavity and electrically connected to the atomizing core; The integrated base includes a base and at least one fixed cylinder formed by a protrusion from the base toward the liquid storage cavity; the atomizing core is embedded in the fixed cylinder and communicates with the liquid storage cavity.
2. The electronic atomizer according to claim 1, characterized in that, The housing assembly also includes a liquid reservoir, which comprises: Top plate, wherein the top plate is provided with air vents; A cup wall extending vertically from the periphery of the top plate; one end of the cup wall, away from the top plate, is fitted onto at least a portion of the integrated base; the liquid storage cavity is formed by the top plate, the cup wall, and the integrated base; and A connecting pipe connects to the air outlet and is housed in the liquid storage chamber; one end of the connecting pipe away from the air outlet connects to the end of the fixed cylinder away from the base to form an atomization channel.
3. The electronic atomizer according to claim 2, characterized in that, The atomizing core includes: A heating mesh, comprising a heating element and a first pin and a second pin connected to the heating element, the heating element being disposed around the inner wall of the fixed cylinder, the first pin and the second pin passing through the base and electrically connected to the control component; and A liquid guiding component is disposed between the outer periphery of the heating element and the inner wall of the fixed cylinder; the liquid guiding component communicates with the liquid storage cavity; The heating mesh heats the aerosol-generating matrix adsorbed by the liquid guiding component to generate aerosol in the atomization channel.
4. The electronic atomizer according to claim 3, characterized in that, The fixed cylinder has a first window at the end away from the base, and at least part of the liquid guiding element passes through the first window and communicates with the liquid storage cavity.
5. The electronic atomizer according to claim 3, characterized in that, The end of the connecting pipe away from the top plate passes through the fixed cylinder or is sleeved outside the fixed cylinder and abuts against the liquid guiding component.
6. The electronic atomizer according to any one of claims 3-5, characterized in that, The housing assembly includes: The housing includes a bottom cover and side shells extending from the edge of the bottom cover; the receiving cavity is formed by the bottom cover and the side shells; and The nozzle is connected to the end of the side shell away from the bottom cover; the nozzle is in communication with the atomizing channel.
7. The electronic atomizer according to claim 6, characterized in that, The integrated base also includes: A limiting plate is connected to the side of the base away from the fixed cylinder, and the end of the limiting plate away from the base abuts against the bottom cover; The storage cavity is formed by the base, the bottom cover, and the side shell.
8. The electronic atomizer according to claim 6, characterized in that, The control component includes a first control element, the first control element comprising: The first circuit board is embedded in the base; The first pin is electrically connected to the first circuit board and is configured corresponding to the first pin; and The second pin is electrically connected to the first circuit board and is configured corresponding to the second pin; The base has a first slot and a second slot on the side facing the first circuit board; the first pin and the corresponding first plug are inserted into the first slot; the second pin and the corresponding second plug are inserted into the second slot.
9. The electronic atomizer according to claim 8, characterized in that, The first control element further includes: The microphone is electrically connected to the first circuit board; The base has a mounting groove on its surface facing the first circuit board; the mounting groove connects the liquid storage chamber and the atomizing channel; the microphone is embedded in the mounting groove.
10. The electronic atomizer according to claim 8, characterized in that, The control component also includes: A second control component is disposed near the bottom cover and is electrically connected to the first circuit board; and A battery is disposed between the first circuit board and the second control component; the battery is electrically connected to the second control component, and the electrical connection between the battery and the second control component is detachable.