A multifunctional electronic atomization device
By incorporating a lens and a flexible start button in the electronic atomizing device, the increased cost and assembly expenses associated with buttons are resolved, enhancing usability and alleviating user anxiety.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHENZHEN LOST VAPE TECHNOLOGY LTD
- Filing Date
- 2025-07-11
- Publication Date
- 2026-07-24
AI Technical Summary
The addition of extra buttons on existing electronic atomizing devices increases manufacturing and assembly costs. At the same time, the lack of movable or extendable parts leaves users with nothing to play with while working or socializing, causing anxiety.
Design a multifunctional electronic atomizing device that uses an elastic element between a lens and a start button. The power supply system is activated by squeezing the lens by hand, eliminating the need for a button design. The extension and retraction of the lens provides playability and relieves pressure.
It reduces the cost of button design and assembly, while providing playability through the extension and retraction of the lens, thus relieving user stress.
Smart Images

Figure CN224539488U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of electronic atomization technology, and in particular to a multifunctional electronic atomization device. Background Technology
[0002] Currently, existing electronic atomizing devices not only have displays and lenses on the main unit to show battery level, power, voltage, and number of vapes, but also buttons on the main unit to activate the power board to power the atomizer and display. This results in additional costs for the buttons and assembly labor. Furthermore, the main unit lacks movable or extendable parts to add playability, leaving users with nothing to play with and relieve stress while vaping during work or social activities, which can cause anxiety. Utility Model Content
[0003] The purpose of this invention is to provide a multifunctional electronic atomizing device that solves the problems of existing electronic atomizing devices, such as the cost of buttons and assembly labor on the main unit, and the lack of movable or extendable parts on the main unit to add playability. This results in users having nothing to play with to relieve stress while vaping during work or social activities, which can cause anxiety for users.
[0004] The technical solution adopted by this utility model to solve the above-mentioned technical problems is: a multifunctional electronic atomizing device, including a main unit and an atomizer electrically connected to the main unit. A lens is provided on each side of the main unit. The main unit is provided with a power supply system for supplying power to the atomizer. The power supply system has two displays corresponding to each of the lenses and a start button. An elastic element is provided between each lens and each start button.
[0005] In one embodiment, the elastic element is made of silicone, rubber, or gel material; or, the elastic element is a spring.
[0006] In one embodiment, each lens has a slot on its inner wall, one end of each elastic element is inserted into the corresponding slot, and the other end of each elastic element abuts against the corresponding start button.
[0007] In one embodiment, the host has a receiving cavity, the atomizer is located in the receiving cavity, the receiving cavity is provided with a conductive structure for electrically connecting the atomizer, the atomizer is electrically connected to the host through the conductive structure, and the power supply system supplies power to the atomizer through the conductive structure.
[0008] In one embodiment, the host includes an inner shell, within which a battery cell is disposed. A first power board and a second power board are respectively disposed on the two side walls of the inner shell. The battery cell is electrically connected to the first power board and the second power board. Each start button and each display screen are respectively disposed on the first power board and the second power board. The first power board and the second power board are respectively electrically connected to the corresponding start button and the display screen. The battery cell, the first power board, and the second power board constitute the power supply system.
[0009] In one embodiment, the host further includes a first outer shell and a second outer shell. The first outer shell is fitted onto one side wall of the inner shell, and the second outer shell is fitted onto the other side wall of the inner shell and fastened to the first outer shell. The side wall of the first outer shell has a first opening corresponding to the first power board, and the side wall of the second outer shell has a second opening corresponding to the second power board. One end of each lens is inserted into the corresponding first outer shell and the corresponding second outer shell through the first opening and the second opening, respectively, so that each lens corresponds to each start button and each display screen, and the elastic element abuts against the corresponding start button. The other end of each lens is exposed outside the corresponding first outer shell and the corresponding second outer shell.
[0010] In one embodiment, the top of the first outer shell has a first notch, and the top of the second outer shell has a second notch corresponding to the first notch. The first notch and the second notch together form an insertion port. The top of the inner shell extends inward to form a receiving cavity corresponding to and communicating with the insertion port. The lower end of the atomizer is inserted into the receiving cavity through the insertion port. The bottom wall of the receiving cavity is provided with a first electrode post and a second electrode post. The second power board is electrically connected to the first electrode post and the second electrode post. The first electrode post and the second electrode post constitute a conductive structure.
[0011] In one embodiment, the outer wall of the inner shell is provided with a sliding groove, and the outer wall of the second outer shell is provided with an air inlet corresponding to and communicating with the sliding groove. A slider is provided in the sliding groove, and a sliding rod is provided on the slider. The sliding rod extends out of the air inlet and is exposed outside the second outer shell. The bottom wall of the receiving cavity is provided with an air guiding channel corresponding to and communicating with the sliding groove. The bottom end of the atomizer is provided with a first contact body that abuts against the first electrode post and a second contact body that abuts against the second electrode post. The atomizer is electrically connected to the main unit through the abutment of the first electrode post and the first contact body, and the abutment of the second electrode post and the second contact body. The bottom end of the atomizer is provided with an air inlet channel communicating with the air guiding channel.
[0012] In one embodiment, the atomizer has an oil storage chamber, the oil storage chamber is provided with a mist tube, the mist tube is provided with a mist channel communicating with the air inlet channel, the mist channel is provided with a heating element electrically connected to the first electrical contact and the second electrical contact, the outer wall of the mist tube is provided with an oil inlet hole corresponding to the heating element, and the top of the atomizer is provided with a mist outlet identical to the mist channel.
[0013] In one embodiment, the second power board is also provided with a charging socket, and the bottom of the second housing is provided with a socket corresponding to the charging socket.
[0014] The multifunctional electronic atomizing device of this utility model has the following beneficial effects: The multifunctional electronic atomizing device of this utility model activates the power supply system by squeezing each lens with the palm of the hand, which powers the atomizer and each display screen. This allows the user to smoke while simultaneously observing the main unit's battery level, power, voltage, and number of smokes displayed on each display screen through each lens. This not only saves the cost of designing buttons on the main unit and the labor cost of assembly, but also allows the elastic force of the elastic element during palm squeezing to extend and retract each lens, thereby relieving pressure on the user. Attached Figure Description
[0015] The present invention will now be described in detail with reference to the accompanying drawings, so that the above-mentioned advantages of the present invention become clearer. Among them,
[0016] Figure 1 This is an exploded view of the electronic atomizing device of this utility model;
[0017] Figure 2 This is a three-dimensional schematic diagram of the electronic atomizing device of this utility model;
[0018] Figure 3 This is a front cross-sectional view of the electronic atomizing device of this utility model;
[0019] Figure 4 This is a side sectional view of the electronic atomizing device of this utility model;
[0020] Figure 5 This is a schematic diagram showing the lens and atomizer of the electronic atomizing device of this utility model separated from the main unit;
[0021] Figure 6 This is a schematic diagram showing the lens and atomizer of the electronic atomizing device of this utility model separated from the main unit;
[0022] Figure 7 This is a schematic diagram of the top structure of the main unit of the electronic atomizing device of this utility model. Detailed Implementation
[0023] The following detailed description of the embodiments of this utility model, in conjunction with the accompanying drawings, will provide a thorough understanding of how this utility model uses technical means to solve technical problems and achieve technical effects, enabling its implementation. It should be noted that, provided there is no conflict, the various embodiments and features within them can be combined with each other, and all resulting technical solutions are within the protection scope of this utility model.
[0024] It should be noted that the specification of this application contains a large number of technical features distributed across various technical solutions. Listing all possible combinations of technical features (i.e., technical solutions) would make the specification excessively lengthy. To avoid this problem, the various technical features disclosed in the above-described utility model content, the various technical features disclosed in the following embodiments and examples, and the various technical features disclosed in the accompanying drawings can be freely combined to form various new technical solutions (all of which are considered to have been described in this specification), unless such a combination of technical features is technically infeasible. For example, one example discloses feature A+B+C, and another example discloses feature A+B+D+E. Features C and D are equivalent technical means that serve the same function, and technically only one needs to be used; they cannot be used simultaneously. Feature E can technically be combined with feature C. Therefore, the solution A+B+C+D should not be considered as described because it is technically infeasible, while the solution A+B+C+E should be considered as described.
[0025] In this utility model, the terms "upper", "lower", "top", "bottom", "inner", "outer", etc., are based on the orientation or positional relationship shown in the accompanying drawings and are only for the convenience of describing and understanding the technology of this utility model, and are not intended to limit the device or component to have a specific orientation or to be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.
[0026] like Figure 1-7As shown, this utility model provides a multifunctional electronic atomizing device, including a main unit 15 and an atomizer 1 electrically connected to the main unit 15. A lens 7 is provided on each side of the main unit 15. The main unit 15 contains a power supply system 1501 for supplying power to the atomizer 1. The power supply system 1501 has two displays 12 corresponding to each lens 7 and a start button 13. An elastic element 14 is provided between each lens 7 and each start button 13. It should be noted that by squeezing each lens 7 with the palm of the hand, the start button 13 activates the power supply system 1501 to supply power to the atomizer 1 and each display 12, allowing for smoking. Simultaneously, the user can observe the battery level, power, voltage, and number of smokes displayed on each display 12 through each lens 7. Compared to existing electronic atomizing devices, this not only saves the cost of designing buttons on the main unit 15 and the assembly labor, but also allows the elastic force of the elastic element 14 during palm squeezing to extend and retract each lens 7, thereby relieving pressure on the user.
[0027] In some embodiments, the elastic element 14 is made of silicone, rubber, or gel material; or, the elastic element 14 is a spring. In this embodiment, the elastic element 14 is made of rubber material, which is soft, elastic, and will not break after being squeezed. It also reduces the pressure and force between the lens 7 and the start button 13, preventing the lens 7 from damaging the start button 13.
[0028] In some embodiments, a slot 701 is formed on the inner wall of each lens 7, one end of each elastic member 14 is inserted into the corresponding slot 701, and the other end of each elastic member 14 abuts against the corresponding start button 13. The slot 701 is integrally formed with the lens 7 and does not require machining. The slot 701 is used to fix the elastic member 14, and the elastic member 14 is used to reduce the pressure and force between the lens 7 and the start button 13, while also providing elasticity to allow the lens 7 to extend and retract.
[0029] In some embodiments, a receiving cavity 401 is formed within the main unit 15, and the atomizer 1 is located within the receiving cavity 401. The receiving cavity 401 is provided with a conductive structure 1502 for electrically connecting the atomizer 1. The atomizer 1 is electrically connected to the main unit 15 through the conductive structure 1502, and the power supply system 1501 supplies power to the atomizer 1 through the conductive structure 1502. The receiving cavity 401 is used to house the atomizer 1. After the power supply system 1501 supplies power to the atomizer 1 through the conductive structure 1502, the atomizer 1 can atomize e-liquid to produce vapor for the user to inhale.
[0030] In some embodiments, the main unit 15 includes an inner shell 4, within which a battery cell 9 is disposed. A first power board 10 and a second power board 11 are respectively disposed on the two side walls of the inner shell 4. The battery cell 9 is electrically connected to the first power board 10 and the second power board 11. Each start button 13 and each display screen 12 are respectively disposed on the first power board 10 and the second power board 11. The first power board 10 and the second power board 11 are respectively electrically connected to their corresponding start button 13 and display screen 12. The battery cell 9, the first power board 10, and the second power board 11 constitute a power supply system 1501. The inner shell 4 is used to accommodate the battery cell 9 and to mount the first power board 10 and the second power board 11. The battery cell 9 supplies power to the first power board 10 and the second power board 11 to enable them to activate the functions of controlling the display screen 12 and the atomizer 1.
[0031] In some embodiments, the host 15 further includes a first outer shell 5 and a second outer shell 6. The first outer shell 5 is fitted onto one side wall of the inner shell 4, and the second outer shell 6 is fitted onto the other side wall of the inner shell 4 and is fastened to the first outer shell 5. The side wall of the first outer shell 5 has a first opening 501 corresponding to the first power board 10, and the side wall of the second outer shell 6 has a second opening 601 corresponding to the second power board 11. One end of each lens 7 is inserted into the corresponding first outer shell 5 and the corresponding second outer shell 6 through the first opening 501 and the second opening 601, respectively, so that each lens 7 corresponds to each start button 13 and each display screen 12, and the elastic member 14 abuts against the corresponding start button 13. The other end of each lens 7 is exposed outside the corresponding first outer shell 5 and the corresponding second outer shell 6. The inner shell 4 can be wrapped inside the first outer shell 5 and the second outer shell 6 by the interlocking of the first outer shell 5 and the second outer shell 6. When held, the palm squeezes each lens 7 outside the first outer shell 5 and the second outer shell 6, and each lens 7 can retract into the corresponding first outer shell 5 and the second outer shell 6. Each elastic element 14 can squeeze the corresponding start button 13, so that the start button 13 activates the first power board 10 and the second power board 11 to power each display screen 12. At the same time, the second power board 11 can also power the atomizer 1, so that it displays the battery cell 9 charge, the voltage and power during operation, and the number of inhalations of the atomizer 1. When the palm releases the squeezing force, each lens 7 can extend out from the first outer shell 5 and the second outer shell 6 under the elastic force of the elastic element 14.
[0032] In some embodiments, the top of the first outer shell 5 is provided with a first notch 502, and the top of the second outer shell 6 is provided with a second notch 602 corresponding to the first notch 502. The first notch 502 and the second notch 602 surround to form an insertion port 1503. The top of the inner shell 4 extends inward to form a receiving cavity 401 corresponding to and communicating with the insertion port 1503. The lower end of the atomizer 1 is inserted into the receiving cavity 401 through the insertion port 1503. The bottom wall of the receiving cavity 401 is provided with a first electrode post 2 and a second electrode post 3. The second power board 11 is electrically connected to the first electrode post 2 and the second electrode post 3. The first electrode post 2 and the second electrode post 3 constitute a conductive structure 1502. The cavity 401 and the inner shell 4 are integrally formed by in-mold injection molding, which does not require machining. The insertion port 1503 is used so that the lower end of the atomizer 1 can be inserted into the cavity 401. The first electrode post 2 and the second electrode post 3 are made of conductive copper, which has good conductivity, high hardness and durability. The second power board 11 supplies power to the atomizer 1 through the first electrode post 2 and the second electrode post 3.
[0033] In some embodiments, the outer wall of the inner shell 4 is provided with a groove 402, and the outer wall of the second outer shell 6 is provided with an air inlet 603 corresponding to and communicating with the groove 402. A slider 8 is provided in the groove 402, and a sliding rod 801 is provided on the slider 8. The sliding rod 801 extends out of the air inlet 603 and is exposed outside the second outer shell 6. The bottom wall of the cavity 401 is provided with an air guide channel 403 corresponding to and communicating with the groove 402. The bottom end of the atomizer 1 is provided with a first contact 107 that abuts against the first electrode post 2 and a second contact 108 that abuts against the second electrode post 3. The atomizer 1 is electrically connected to the main unit 15 through the first electrode post 2 abutting against the first contact 107 and the second electrode post 3 abutting against the second contact 108. The bottom end of the atomizer 1 is provided with an air inlet channel 109 communicating with the air guide channel 403. The groove 402 is used to accommodate the slider 8, and the slider 8 can slide inside it. It can also allow air to pass through. The sliding rod 801 slides along the sliding trajectory of the air inlet 603 outside the second housing 6, which allows the slider 8 to slide inside the groove 402. This can change the amount of airflow entering the groove 402 from the air inlet 603. After the airflow enters the groove 402 from the air inlet 603, it can enter the air intake channel 109 through the air guide channel 403 to provide atomized airflow to the atomizer 1.
[0034] In some embodiments, an oil storage chamber 102 is formed inside the atomizer 1, and an atomizing tube 103 is provided inside the oil storage chamber 102. An atomizing channel 104 communicating with the air inlet channel 109 is formed inside the atomizer 103. A heating element 105 electrically connected to the first electrical contact 107 and the second electrical contact 108 is provided inside the atomizer 104. An oil inlet hole 106 corresponding to the heating element 105 is opened on the outer wall of the atomizer 103. An atomizing outlet 101 identical to the atomizing channel 104 is opened at the top of the atomizer 1. The oil storage chamber 102 is used to store e-liquid, the mist tube 103 is used to isolate the e-liquid in the oil storage chamber 102, the mist channel 104 is used to circulate air and exhaust smoke, the heating core 105 is used to heat the e-liquid in the oil storage chamber 102 to produce smoke, the oil inlet 106 is used to guide the e-liquid in the oil storage chamber 102 into the heating core 105, the second power board 11 is connected to the first electrical contact 107 through the first electrode post 2, and to the second electrical contact 108 through the second electrode post 3 to provide power to the heating core 105 to make it heat up, the airflow drawn at the mist outlet 101 can enter the mist channel 104 from the air inlet channel 109, and then bring the smoke from the mist outlet 101 into the user's mouth to be inhaled.
[0035] In some embodiments, the second power board 11 is further provided with a charging socket 1101, and the bottom end of the second housing 6 is provided with a socket 604 corresponding to the charging socket 1101. The charging device can be inserted into the charging socket 1101 through the socket 604, and then the battery cell 9 can be charged through the second power board 11, thereby extending the service life of the main unit 15.
[0036] The following detailed description uses preferred embodiments.
[0037] like Figure 1-7As shown, the electronic atomizing device of this utility model includes: an atomizer 1 and a main unit 15. The main unit 15 includes: a first electrode post 2, a second electrode post 3, an inner shell 4, a first outer shell 5, a second outer shell 6, a lens 7, a slider 8, a battery cell 9, a first power board 10, a second power board 11, a display screen 12, a start button 13, and an elastic element 14. The battery cell 9 is installed inside the inner shell 4. The first power board 10 and the second power board 11 are respectively installed on the side walls of the inner shell 4. The battery cell 9 is electrically connected to the first power board 10 and the second power board 11 to supply power to the first power board 10 and the second power board 11, enabling them to activate the functions of controlling the display screen 12 and the atomizer 1. There are two display screens 12 and four start buttons 13, arranged in pairs. Each start button 13 and each display screen 12 are respectively mounted on the first power board 10 and the second power board 11. The first power board 10 and the second power board 11 are electrically connected to the corresponding start button 13 and display screen 12, respectively, to power the start button 13 and the display screen 12 so that they can work. The first outer shell 5 is fitted onto one side wall of the inner shell 4, and the second outer shell 6 is fitted onto the other side wall of the inner shell 4 and is fastened to the first outer shell 5. The fastening of the first outer shell 5 and the second outer shell 6 can enclose the inner shell 4 inside the two. The side wall of the first outer shell 5 has a first opening 501 corresponding to the first power board 10 for inserting one end of the lens 7, and the side wall of the second outer shell 6 has a second opening 601 corresponding to the second power board 11, which is also for inserting one end of the lens 7. There are two lenses 7. One end of each lens 7 is inserted into the corresponding first housing 5 and second housing 6 through the first opening 501 and the second opening 601, respectively, so that each lens 7 corresponds to each start button 13 and each display screen 12. The other end of each lens 7 is exposed outside the corresponding first housing 5 and second housing 6. It is used to observe the battery level of the cell 9, the voltage and power during operation, and the number of inhalations of the atomizer 1 displayed on the corresponding display screen 12 through each lens 7. Each lens 7 has two slots 701 on its inner wall for holding the elastic members 14. There are four elastic members 14. One end of each elastic member 14 is inserted into the corresponding slot 701, and the other end of each elastic member 14 abuts against the corresponding start button 13 to reduce the pressure on each lens 7. The pressure and force between the inner shell 4 and the corresponding start button 13, along with the elasticity to allow the lens 7 to extend and retract, are provided. The top of the inner shell 4 is recessed inward to form a receiving cavity 401 for accommodating the atomizer 1. The top of the first outer shell 5 has a first notch 502, and the top of the second outer shell 6 has a second notch 602 corresponding to the first notch 502. The first notch 502 and the second notch 602 together form an insertion port 1503 corresponding to and communicating with the receiving cavity 401 for inserting the atomizer 1 into the receiving cavity 401. The first electrode post 2 and the second electrode post 3 are installed on the bottom wall of the receiving cavity 401 for conductive connection of the atomizer 1. The second power board 11 is electrically connected to the first electrode post 2 and the second electrode. The outer wall of the inner shell 4 has a sliding groove 402 for accommodating the slider 8.The outer wall of the second outer casing 6 has an air inlet 603 corresponding to and communicating with the slide groove 402 for air intake. A slider 8 is installed in the slide groove 402, and a sliding rod 801 is provided on the slider 8. The sliding rod 801 extends from the air inlet 603 and is exposed outside the second outer casing 6. The sliding rod 801 slides along the sliding trajectory of the air inlet 603 outside the second outer casing 6, allowing the slider 8 to slide within the slide groove 402. This changes the airflow volume entering the slide groove 402 from the air inlet 603. The bottom wall of the receiving cavity 401 has an air guiding channel 403 corresponding to and communicating with the slide groove 402 for airflow guidance. The second power board 11 also has a charging socket 1101. The bottom end of the second outer casing 6 has a corresponding insertion hole 604. The charging device can be inserted into the charging socket 1101 through the insertion hole 604, and then the battery cell 9 is charged through the second power board 11, thereby extending the service life of the main unit 15. All components work together to form the main unit 15.
[0038] The atomizer 1 has a lower insertion port 1503 that is inserted into the receiving cavity 401 and connected to the main unit 15. The atomizer 1 has an oil storage cavity 102 for storing e-liquid. An atomizing tube 103 is provided within the oil storage cavity 102 to isolate the e-liquid. An atomizing channel 104 is formed within the atomizing tube 103 for airflow and smoke extraction. A heating element 105 is provided within the atomizing channel 104 to heat the e-liquid in the oil storage cavity 102 to produce smoke. An oil inlet hole 106 corresponding to the heating element 105 is opened on the outer wall of the atomizing tube 103 to guide the e-liquid from the oil storage cavity 102 into the heating element 105. The top of the atomizer 1 has a similar structure to the atomizing channel 104. The atomizer 1 has a mist outlet 101 for discharging smoke. The bottom of the atomizer 1 is provided with a first electrical contact 107 that abuts against the first electrode post 2 and a second electrical contact 108 that abuts against the second electrode post 3. The heating element 105 is electrically connected to the first electrical contact 107 and the second electrical contact 108. The second power board 11 provides power to the heating element 105 by abutting against the first electrical contact 107 through the first electrode post 2 and against the second electrical contact 108 through the second electrode post 3, so that it heats up. The bottom of the atomizer 1 has an air inlet channel 109 that communicates with the air guide channel 403. The air inlet channel 109 also communicates with the mist channel 104 for introducing air into the mist channel 104.
[0039] When the user holds the main unit 15, pressing the palm against the outside of the first outer shell 5 and the second outer shell 6 causes each lens 7 to retract into its corresponding first outer shell 5 and second outer shell 6. Each elastic element 14 can press the corresponding start button 13, thereby activating the first power board 10 and the second power board 11 to power each display screen 12, displaying the battery level of the battery 9, the voltage and power during operation, and the number of puffs of the atomizer 1. At the same time, the second power board 11 can also power the heating element 105 of the atomizer 1 to heat it, thereby heating the e-liquid in the oil storage chamber 102 to produce vapor. When the palm releases the pressure, under the elastic force of the elastic element 14, each lens 7 can extend from the first outer shell 5 and the second outer shell 6. The ability of each lens 7 to extend and retract inside and outside the main unit 15 can relieve pressure on the user.
[0040] In this device, smoke is emitted from the mist outlet 101 at the top of the mouth-to-mouth atomizer 1. External airflow can enter the slide groove 402 through the air inlet 603, and then enter the atomization channel through the air guide channel 403 from the air inlet channel 109. This airflow then drives the heating core 105 to heat the e-liquid, and the resulting smoke enters the user's mouth from the mist outlet 101 to be inhaled.
[0041] Finally, it should be noted that the above are merely preferred embodiments of this utility model and are not intended to limit the utility model. Although the utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the protection scope of this utility model.
Claims
1. A multifunctional electronic atomizing device, comprising a main unit and an atomizer electrically connected to the main unit, characterized in that, A lens is provided on each side of the main body. A power supply system for powering the atomizer is provided inside the main body. The power supply system has two display screens and start buttons respectively corresponding to each lens. An elastic member is provided between each lens and each start button.
2. The electronic atomizing device according to claim 1, characterized in that, The elastic member is an elastic member made of silica gel, rubber or gel material; or the elastic member is a spring.
3. The electronic atomizing device according to claim 1, characterized in that, A card slot is provided on the inner wall of each lens. One end of each elastic member is inserted into the corresponding card slot, and the other end of each elastic member abuts against the corresponding start button.
4. The electronic atomizing device according to claim 1, characterized in that, An accommodation cavity is formed inside the main body. The atomizer is located inside the accommodation cavity. The accommodation cavity is provided with a conductive structure for electrically connecting the atomizer. The atomizer is electrically connected to the main body through the conductive structure, and the power supply system powers the atomizer through the conductive structure.
5. The electronic atomizing device according to any one of claims 1 to 4, characterized in that, The main body includes an inner shell. A battery cell is provided inside the inner shell. A first power board and a second power board are respectively provided on the two side walls of the inner shell. The battery cell is electrically connected to the first power board and the second power board. Each start button and each display screen are respectively provided on the first power board and the second power board. The first power board and the second power board are respectively electrically connected to the corresponding start button and display screen. The battery cell, the first power board and the second power board constitute the power supply system.
6. The electronic atomizing device according to claim 5, characterized in that, The main body further includes a first outer shell and a second outer shell. The first outer shell is sleeved on one side wall of the inner shell. The second outer shell is sleeved on the other side wall of the inner shell and is buckled with the first outer shell. A first opening corresponding to the first power board is provided on the side wall of the first outer shell. A second opening corresponding to the second power board is provided on the side wall of the second outer shell. One end of each lens is respectively inserted into the corresponding first outer shell and second outer shell from the first opening and the second opening, so that each lens corresponds to each start button and each display screen, and the elastic member abuts against the corresponding start button. The other end of each lens is exposed outside the corresponding first outer shell and second outer shell.
7. The electronic atomization device according to claim 6, wherein A first notch is provided at the top of the first outer shell. A second notch corresponding to the first notch is provided at the top of the second outer shell. The first notch and the second notch enclose an insertion port. The top end of the inner shell is recessed inward to form an accommodation cavity corresponding to and communicating with the insertion port. The lower end of the atomizer is inserted into the accommodation cavity from the insertion port. The bottom wall of the accommodation cavity is provided with a first electrode post and a second electrode post. The second power board is electrically connected to the first electrode post and the second electrode post. The first electrode post and the second electrode post constitute the conductive structure.
8. The electronic atomization device according to claim 7, wherein, A chute is provided on the outer wall of the inner shell, and an air inlet hole corresponding to and communicating with the chute is provided on the outer wall of the second outer shell. A slider is provided in the chute, and a sliding rod is provided on the slider. The sliding rod extends out of the air inlet hole and is exposed outside the second outer shell. A gas guiding channel corresponding to and communicating with the chute is provided on the bottom wall of the accommodating cavity. The bottom end of the atomizer is provided with a first electrical contact body abutting against the first electrode column and a second electrical contact body abutting against the second electrode column. The atomizer is electrically connected to the main body through the abutting connection between the first electrode column and the first electrical contact body and the abutting connection between the second electrode column and the second electrical contact body. An air inlet channel communicating with the gas guiding channel is provided at the bottom end of the atomizer.
9. The electronic atomization device according to claim 8, wherein, An oil storage cavity is formed in the atomizer. A mist pipe is provided in the oil storage cavity. A mist channel communicating with the air inlet channel is formed in the mist pipe. A heating core electrically connected to the first electrical contact body and the second electrical contact body is provided in the mist channel. An oil inlet hole corresponding to the heating core is provided on the outer wall of the mist pipe. An air outlet corresponding to the mist channel is provided at the top end of the atomizer.
10. The electronic atomization device according to claim 7, characterized in that, A charging socket is further provided on the second power supply board, and a jack corresponding to the charging socket is provided at the bottom end of the second outer shell.