A sliding self-locking positioning double-suction electronic atomization device
The design of the sliding self-locking dual-suction electronic atomizer solves the problems of inconvenient replacement and easy loss of atomizer heads, and realizes rapid switching of atomizer heads and stable power supply, thereby improving user experience and space utilization efficiency.
Patent Information
- Application Number
- CN202211467260.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-11-22
- Publication Date
- 2026-01-06
- Estimated Expiration
- 2042-11-22
AI Technical Summary
Existing electronic atomizing devices have inconvenient atomizer heads that are difficult to replace, make it hard to switch between different flavors, and are easily lost, which affects the user experience.
Design a sliding self-locking dual-absorption electronic atomizing device. The device uses a sliding bracket to control a sliding touch switch, enabling quick switching and simultaneous carrying of two atomizing heads. The atomizing heads are secured with a sliding positioning lock and magnets, ensuring stable connection and easy replacement.
It enables quick switching of atomizer heads and stable power supply, allowing users to carry different flavor atomizer heads at the same time to avoid loss, thus improving ease of use and space utilization efficiency.
Smart Images

Figure CN115721050B_ABST
Abstract
Description
Technical Field
[0001] This invention belongs to the field of electronic atomization devices, specifically relating to a sliding self-locking dual-inhalation electronic atomization device. Background Technology
[0002] Electronic atomizing devices are electronic products that use atomizing components to heat and atomize an aerosol matrix into an aerosol form for user use. Currently, electronic atomizing devices typically have one atomizing head mounted on the main unit, which stores the aerosol matrix. When users need to change to different flavors of aerosol, they simply need to replace the corresponding atomizing head. However, to ensure a tight seal, current electronic atomizing devices often design atomizing heads that are difficult to replace, making them inconvenient for users to experience different flavors. Furthermore, spare atomizing heads usually need to be carried separately, leading to head loss and reducing the user experience. Summary of the Invention
[0003] The purpose of this invention is to provide a sliding self-locking dual-absorption electronic atomizing device that can quickly switch between different atomizing heads, and both atomizing heads can be carried simultaneously without the problem of atomizing heads being lost.
[0004] To achieve the above objectives, the present invention is implemented through the following technical solution: a sliding self-locking dual-inhalation electronic atomizing device is provided, comprising a shell with openings at both ends, a bracket slidably disposed inside the shell, a battery, a circuit board connected to the battery, and a sliding touch switch connected to the circuit board on the bracket, and a first atomizing head and a second atomizing head respectively disposed at both ends of the bracket inside the shell;
[0005] The bracket is slidable to control the connection between the sliding touch switch and the first atomizing head or the second atomizing head.
[0006] Furthermore, the inner wall of the outer casing is provided with a slide rail, and the bracket is provided with a sliding positioning lock that slides within the slide rail; the inner wall of the outer casing is provided with a first positioning groove and a second positioning groove at both ends of the slide rail, and the first positioning groove and the second positioning groove are used to engage the sliding positioning lock.
[0007] Furthermore, the housing is provided with a sliding groove for the sliding pressure switch to move. The length of the sliding groove is less than the length of the slide rail. The sliding pressure switch includes a contact and a first contact electrode and a second contact electrode respectively disposed on both sides of the contact.
[0008] Furthermore, the bracket has a first electrode group and a second electrode group at both ends, and both the first electrode group and the second electrode group are connected to the circuit board; the first atomizing head is connected to the first electrode group, and the second atomizing head is connected to the second electrode group.
[0009] Furthermore, the two ends of the side wall of the bracket are respectively provided with a first air inlet and a second air inlet, a first microphone is provided on the bracket inside the first air inlet, and a second microphone is provided on the bracket inside the second air inlet.
[0010] Furthermore, a first sealing ring and a third sealing ring are respectively provided on both sides of the first air inlet on the bracket, and a second sealing ring and a fourth sealing ring are respectively provided on both sides of the second air inlet on the bracket.
[0011] Furthermore, the outer casing is provided with a first through hole and a second through hole. The first through hole is located at the position corresponding to the first air inlet when the sliding positioning lock is engaged with the first positioning groove, and the second through hole is located at the position corresponding to the second air inlet when the sliding positioning lock is engaged with the second positioning groove.
[0012] Furthermore, the circuit board is provided with a charging plug, and the housing is provided with a charging interface, which is located at the position corresponding to the charging plug when the sliding positioning lock is engaged with the first positioning slot.
[0013] Furthermore, one end of the bracket is provided with at least one first magnet, and the other end of the bracket is provided with at least one second magnet; the lower end of the first atomizing head is provided with a first iron base, and the lower end of the second atomizing head is provided with a second iron base.
[0014] Furthermore, the first atomizing head includes a first liquid storage component and a first atomizing component disposed within the first liquid storage component and connected to the first electrode group, and the second atomizing head includes a second liquid storage component and a second atomizing component disposed within the second liquid storage component and connected to the second electrode group.
[0015] The present invention has the following beneficial effects:
[0016] In the sliding self-locking dual-absorption electronic atomizing device of this invention, when the bracket slides inside the housing, it can cause either the first atomizing head or the second atomizing head to extend outside the housing. Simultaneously, when the second atomizing head is pushed inward, causing the bracket to slide inside the housing and causing the first atomizing head to extend outside the housing, the bracket also connects to the first atomizing head via a sliding control sliding touch switch. At this time, the battery can provide power to the first atomizing head, which generates aerosol, allowing the user to use it. When the first atomizing head is pushed inward, causing the bracket to slide inside the housing and causing the second atomizing head to extend outside the housing, the bracket also... The device connects to the second atomizing head via a sliding touch switch, allowing the battery to power the second atomizing head. The second atomizing head generates aerosol, which the user can then use. The two atomizing heads (first and second) facilitate user operation. Different flavors can be selected for both, and they can be carried simultaneously without the problem of multiple atomizing heads having nowhere to go. This also prevents damage to temporarily unused atomizing heads. When switching flavors, the user simply pushes out the corresponding atomizing head. The device is convenient to use, has a reasonable layout, and saves space. Attached Figure Description
[0017] To more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings used in the following description of the embodiments will be briefly introduced. Obviously, the drawings described below are some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0018] Figure 1 This is a schematic diagram of a sliding self-locking dual-suction electronic atomizing device provided in an embodiment of the present invention;
[0019] Figure 2 This is a schematic diagram of the sliding self-locking dual-suction electronic atomizing device provided in an embodiment of the present invention when the first atomizing head is extended;
[0020] Figure 3 This is a schematic diagram of the sliding self-locking dual-suction electronic atomizing device provided in an embodiment of the present invention when the second atomizing head is extended;
[0021] Figure 4 An exploded view of the sliding self-locking dual-suction electronic atomizing device provided in an embodiment of the present invention;
[0022] Figure 5 This is a schematic diagram of a sliding contact switch provided in an embodiment of the present invention;
[0023] Figure 6 A cross-sectional view of the sliding self-locking dual-suction electronic atomizing device provided in an embodiment of the present invention when the first atomizing head is extended;
[0024] Figure 7 A cross-sectional view of the sliding self-locking dual-suction electronic atomizing device provided in an embodiment of the present invention when the second atomizing head is extended;
[0025] Figure 8 A cross-sectional view of the sliding self-locking dual-suction electronic atomizing device provided in an embodiment of the present invention when the first atomizing head extends to another angle;
[0026] Figure 9 for Figure 8 Enlarged view of part A in the middle.
[0027] Explanation of the markings in the image:
[0028] 1. Outer shell; 2. Bracket; 3. Battery; 4. Circuit board; 5. Sliding touch switch; 6. First atomizing head; 7. Second atomizing head; 10. Slide rail; 11. First positioning groove; 12. Second positioning groove; 13. First through hole; 14. Second through hole; 15. Charging interface; 16. Sliding groove; 20. Sliding positioning lock; 21. First electrode group; 22. Second electrode group; 23. First air inlet; 24. Second air inlet; 25. First Microphone; 26, Second Microphone; 27, First Magnet; 28, Second Magnet; 231, First Sealing Ring; 233, Third Sealing Ring; 242, Second Sealing Ring; 244, Fourth Sealing Ring; 41, Charging Plug; 51, First Contact; 52, Second Contact; 53, Contact; 61, First Base; 62, First Liquid Storage Component; 63, First Atomizing Component; 71, Second Base; 72, Second Liquid Storage Component; 73, Second Atomizing Component. Detailed Implementation
[0029] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of the present invention. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0030] It should be understood that, when used in this specification and the appended claims, the terms "comprising" and "including" indicate the presence of the described features, integrals, steps, operations, elements and / or components, but do not exclude the presence or addition of one or more other features, integrals, steps, operations, elements, components and / or collections thereof.
[0031] It should also be understood that the terminology used in this specification is for the purpose of describing particular embodiments only and is not intended to limit the invention. As used in this specification and the appended claims, the singular forms “a,” “an,” and “the” are intended to include the plural forms unless the context clearly indicates otherwise.
[0032] It should also be further understood that the term "and / or" as used in this specification and the appended claims refers to any combination of one or more of the associated listed items and all possible combinations, and includes such combinations.
[0033] Example
[0034] Please see Figure 1-9 As shown, this embodiment provides a sliding self-locking dual-inhalation electronic atomizing device, including a housing 1 with openings at both ends, a bracket 2 slidably disposed inside the housing 1, a battery 3, a circuit board 4 connected to the battery 3, and a sliding touch switch 5 connected to the circuit board disposed on the bracket 2, and a first atomizing head 6 and a second atomizing head 7 respectively disposed at both ends of the bracket 2 inside the housing 1; wherein, the bracket 2 is slidable to control the sliding touch switch 5 to connect with the first atomizing head 6 or the second atomizing head 7.
[0035] With the above structure, in practical applications, the sliding self-locking dual-absorption electronic atomizing device of this embodiment can generate aerosol after the first atomizing head 6 and the second atomizing head 7 are powered on. The bracket 2 can slide inside the outer shell 1, thereby driving the battery 3, circuit board 4, and sliding contact switch 5 located thereon to move inside the outer shell 1. Simultaneously, since the first atomizing head 6 and the second atomizing head 7 are respectively located at both ends of the bracket 2, and both ends of the outer shell 1 have openings, when the bracket 2 slides inside the outer shell 1, it can drive the first atomizing head 6 or the second atomizing head 7 to extend outside the outer shell 1. Furthermore, since the bracket 2 can control the sliding contact switch 5 to connect with the first atomizing head 6 or the second atomizing head 7 by sliding, when the second atomizing head 7 is pushed inward, causing the bracket 2 to slide inside the outer shell 1 and causing the first atomizing head 6 to extend outside the outer shell 1, the bracket 2 also controls the sliding contact switch 5 to connect with the first atomizing head 6 by sliding. Battery 3 provides power to the first atomizing head 6, which generates aerosol, allowing the user to use it. When the first atomizing head 6 is pushed inward, the bracket 2 slides inside the outer shell 1, causing the second atomizing head 7 to extend outside the outer shell 1. At this time, the bracket 2 is also connected to the second atomizing head 7 via a sliding control sliding touch switch 5. Battery 3 then provides power to the second atomizing head 7, which generates aerosol, allowing the user to use it. By setting up two atomizing heads, the first atomizing head 6 and the second atomizing head 7, the user can easily use them. The first atomizing head 6 and the second atomizing head 7 can be selected for different flavors and can be carried simultaneously without the problem of having nowhere to put multiple atomizing heads. This also prevents damage to atomizing heads that are not currently in use. When the user needs to switch to a different flavor, they only need to push out the corresponding atomizing head. It is convenient to use, and the entire device has a reasonable layout that saves space.
[0036] Specifically, slide rails 10 are provided on the inner walls of both sides of the outer shell 1, and sliding positioning locks 20 that slide within the slide rails 10 are provided on both sides of the bracket 2. The sliding positioning locks 20 can slide within the slide rails 10, and the slide rails 10 can also provide a limiting function for the sliding positioning locks, which can prevent the bracket 2 from sliding excessively within the outer shell 1.
[0037] In this embodiment, a first positioning groove 11 and a second positioning groove 12 are respectively provided on the inner wall of the outer shell 1 at both ends of the slide rail 10. The first positioning groove 11 and the second positioning groove 12 are used to engage the sliding positioning lock 20. When the bracket 2 slides to the end of the slide rail 10 near the first positioning groove 11, pushing it further will engage the sliding positioning lock 20 in the first positioning groove 11, thereby fixing the positions of the bracket 2, the first atomizing head 6 and the second atomizing head 7 relative to the outer shell 1. At this time, the sliding touch switch 5 controls the battery 3 to perform the first atomization. The first atomizing head 6 is powered, and the first atomizing head 6 generates aerosol, making it more stable for the user when using it. When the bracket 2 slides to the end of the slide 10 near the second positioning groove 12, pushing it further will engage the sliding positioning lock 20 in the second positioning groove 12, thereby fixing the positions of the bracket 2, the first atomizing head 6, and the second atomizing head 7 relative to the outer shell 1. At this time, the sliding touch switch 5 controls the battery 3 to power the second atomizing head 7, and the second atomizing head 7 generates aerosol, making it more stable for the user when using it.
[0038] In some embodiments, the first positioning groove 11 and the second positioning groove 12 are each provided with multiple sets of positioning points (not shown in the figure), and the multiple sets of positioning points are all connected to the circuit board 4. When the sliding positioning lock 20 is engaged at different positioning points, it can send different signals to the circuit board 4, thereby enabling the circuit board 4 to control the battery 3 to output different power, thereby enabling the first atomizing head 6 or the second atomizing head 7 to generate different amounts of aerosol, providing users with a variety of different usage modes for use.
[0039] Specifically, a first electrode group 21 and a second electrode group 22 are respectively provided at both ends of the bracket 2. Both the first electrode group 21 and the second electrode group 22 are connected to the circuit board 4. The first atomizing head 6 is connected to the first electrode group 21, and the second atomizing head 7 is connected to the second electrode group 22. When the sliding positioning lock 20 is engaged in the first positioning groove 11 by pushing, the sliding touch switch 5 controls the battery 3 to supply power to the first atomizing head 6 through the first electrode group 21. When the sliding positioning lock 20 is engaged in the second positioning groove 12 by pushing, the sliding touch switch 5 controls the battery 3 to supply power to the second atomizing head 7 through the second electrode group 22.
[0040] Specifically, a first air inlet 23 and a second air inlet 24 are respectively provided at both ends of the side wall of the bracket 2. A first microphone 25 is provided in the first air inlet 23 on the bracket 2, and a second microphone 26 is provided in the second air inlet 24 on the bracket 2. When the sliding positioning lock 20 is engaged in the first positioning groove 11 by pushing, the sliding touch switch 5 controls the battery 3 to supply power to the first atomizing head 6 through the first electrode group 21. When the user inhales at the first atomizing head 6, the first atomizing head 6 works when the airflow passes through the first microphone 25, which can prevent the electronic atomizing device from malfunctioning and automatically restarting when not in use. When the sliding positioning lock 20 is engaged in the second positioning groove 12 by pushing, the sliding touch switch 5 controls the battery 3 to supply power to the second atomizing head 7 through the second electrode group 22. When the user inhales at the second atomizing head 7, the second atomizing head 7 works when the airflow passes through the second microphone 26, which can prevent the electronic atomizing device from malfunctioning and automatically restarting when not in use.
[0041] In a preferred embodiment, a first sealing ring 231 and a third sealing ring 233 are respectively provided on both sides of the first air inlet 23 on the bracket 2, and a second sealing ring 242 and a fourth sealing ring 244 are respectively provided on both sides of the second air inlet 24 on the bracket 2; the first sealing ring 231 and the third sealing ring 233 seal both sides of the first air inlet 23, and the second sealing ring 242 and the fourth sealing ring 244 seal both sides of the second air inlet 24.
[0042] Specifically, the outer casing 1 is provided with a first through hole 13 and a second through hole 14. The first through hole 13 is located at the position corresponding to the first air inlet 23 when the sliding positioning lock 20 is engaged with the first positioning groove 11, and the second through hole 14 is located at the position corresponding to the second air inlet 24 when the sliding positioning lock 20 is engaged with the second positioning groove 12. Only when the sliding positioning lock 20 is engaged in the first positioning groove 11 can the first air inlet 23 communicate with the first through hole 13, and only then can the first atomizing head 6 function normally. When the second air inlet 24 is in the second positioning groove 12, it can communicate with the second through hole 14, and the second atomizing head 7 can be used normally. At the same time, since the first through hole 13 and the second through hole 14 are both located on the side wall of the outer shell 1, the airflow flows in from the side of the outer shell 1 and then flows out from the end of the first atomizing head 6 or the second atomizing head 7, forming an airflow channel with a 90° bend in the electronic atomizing device. This can effectively prevent the air from liquefying into water and flowing to the battery 3 and the circuit board 4, greatly reducing the probability of damage to the electronic atomizing device.
[0043] In some embodiments, the first positioning groove 11 and the second positioning groove 12 are each provided with multiple sets of positioning points (not shown in the figure). When the sliding positioning lock 20 is engaged at different positioning points, the positions where the first through hole 13 and the first air inlet 23 are connected are different, or the positions where the second through hole 14 and the second air inlet 24 are connected are also different. This results in different air passage sizes at the first through hole 13 and the first air inlet 23, or different air passage sizes at the second through hole 14 and the second air inlet 24, forming different air intake volumes. This causes the first atomizing head 6 or the second atomizing head 7 to produce different amounts of aerosol, providing users with a variety of different usage modes for their use.
[0044] Specifically, a charging plug 41 is provided on the circuit board 4, and a charging interface 15 is provided on the outer casing 1. The charging interface 15 is located at the position corresponding to the charging plug 41 when the sliding positioning lock 20 is engaged with the first positioning groove 11. The charging plug 41 is used to connect an external charger. When the sliding positioning lock 20 is engaged in the first positioning groove 11, the charging plug 41 corresponds to the charging interface 15, and at this time an external charger can be connected to charge the battery 3.
[0045] In this embodiment, the sliding contact switch 5 is disposed on the circuit board 4 and located on one side of the charging plug 41. The sliding contact switch 5 includes a contact 53 and a first contact electrode 51 and a second contact electrode 52 disposed on both sides of the contact 53. A sliding groove 16 is provided on the housing 1 for the sliding contact switch 5 to move. The length of the sliding groove 16 is less than the length of the slide rail 10. When the bracket 2 moves, it can drive the sliding contact switch 5 to move. When the bracket 2 moves and causes the first contact electrode 51 to move to one end of the sliding groove 16, the bracket 2 continues to move. When the sliding positioning lock 20 is engaged with the first positioning lock, the sliding contact switch 5 moves. When the first contact is in the groove 11, one end of the sliding groove 16 presses against the first contact 51 and bends it, so that the first contact 51 and the contact 53 come into contact, thereby controlling the battery 3 to supply power to the first atomizing head 6 through the first electrode group 21; when the bracket 2 moves and causes the second contact 52 to move to the other end of the sliding groove 16, the bracket 2 continues to move. When the sliding positioning lock 20 is engaged in the second positioning groove 12, one end of the sliding groove 16 presses against the second contact 52 and bends it, so that the second contact 52 and the contact 53 come into contact, thereby controlling the battery 3 to supply power to the second atomizing head 7 through the second electrode group 22.
[0046] Specifically, two first magnets 27 are provided at one end of the bracket 2 near the first atomizing head 6, and two second magnets 28 are provided at the other end of the bracket 2 near the second atomizing head 7. An iron first base 61 is provided at the lower end of the first atomizing head 6, and an iron second base 71 is provided at the lower end of the second atomizing head 7. The first atomizing head 6 is fixed to one end of the bracket 2 by the magnetic attraction of the first magnets 27 to the first base 61, and the second atomizing head 7 is fixed to the other end of the bracket 2 by the magnetic attraction of the second magnets 28 to the second base 71. The magnetic attraction is used to fix the first atomizing head 6 and the second atomizing head 7, which is relatively stable and easy to disassemble and replace, making it convenient to use.
[0047] In this embodiment, the first atomizing head 6 includes a first liquid storage component 62 and a first atomizing component 63 disposed within the first liquid storage component 62 and connected to the first electrode group 21. The first liquid storage component 62 is used to store the aerosol matrix, and the first atomizing component 63 is used to heat and atomize the aerosol matrix to form an aerosol for user use. The second atomizing head 7 includes a second liquid storage component 72 and a second atomizing component 73 disposed within the second liquid storage component 72 and connected to the second electrode group 22. The second liquid storage component 72 is used to store the aerosol matrix, and the second atomizing component 73 is used to heat and atomize the aerosol matrix to form an aerosol for user use. The first liquid storage component 62 and the second liquid storage component 72 can store aerosol matrices of different flavors, increasing the user's choice.
[0048] The above description is merely a specific embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any person skilled in the art can easily conceive of various equivalent modifications or substitutions within the technical scope disclosed in the present invention, and these modifications or substitutions should all be covered within the scope of protection of the present invention. Therefore, the scope of protection of the present invention should be determined by the scope of the claims.
Claims
1. A sliding self-locking positioning double-suction electronic atomization device, characterized in that, The utility model provides an atomizer, which comprises a shell with openings at both ends, a support slidingly arranged in the shell, a battery, a circuit board connected with the battery and a sliding touch switch connected with the circuit board, and first and second atomizing heads respectively arranged at both ends of the support in the shell. An inner wall of the shell is provided with a sliding channel, and the support is provided with a sliding positioning lock sliding in the sliding channel. The shell is provided with a sliding groove for the sliding touch switch to move, and the length of the sliding groove is less than the length of the sliding channel. When the support moves, the sliding touch switch moves, and when the support moves and the first contact point moves to one end of the sliding groove, the first contact point is bent by the one end of the sliding groove when the sliding positioning lock is clamped in the first positioning groove, so that the first contact point and the contact are in contact, thereby controlling the battery to supply power to the first atomizing head.
2. The sliding self-locking positioning double- suction electronic atomization device according to claim 1, wherein, The support is provided with first and second electrode groups at both ends, and the first and second electrode groups are connected with the circuit board.
3. The sliding self-locking positioning double- suction electronic atomization device according to claim 2, wherein, The support is provided with first and second gas inlets at both ends, and the support is provided with a first microphone in the first gas inlet and a second microphone in the second gas inlet.
4. The sliding self-locking positioning double- suction electronic atomization device according to claim 3, characterized in that, The support is provided with first, second, third and fourth sealing rings on both sides of the first and second gas inlets.
5. The sliding self-locking positioning double- suction electronic atomization device according to claim 4, wherein, The shell is provided with first and second through holes, and the first through hole is located at a position corresponding to the first gas inlet when the sliding positioning lock is clamped in the first positioning groove, and the second through hole is located at a position corresponding to the second gas inlet when the sliding positioning lock is clamped in the second positioning groove.
6. The sliding self-locking positioning double- suction electronic atomization device according to claim 5, wherein, The circuit board is provided with a charging plug, and the shell is provided with a charging interface corresponding to the charging plug when the sliding positioning lock is clamped in the first positioning groove.
7. The sliding self-locking positioning double- suction electronic atomization device according to any one of claims 2-6, characterized in that, One end of the support is provided with at least one first magnet, and the other end of the support is provided with at least one second magnet. The lower end of the first atomizing head is provided with a first iron base, and the lower end of the second atomizing head is provided with a second iron base.
8. The sliding self-locking positioning double- suction electronic atomization device according to claim 7, wherein, The first atomization head comprises a first liquid storage assembly and a first atomization assembly arranged in the first liquid storage assembly and connected with the first electrode group; and the second atomization head comprises a second liquid storage assembly and a second atomization assembly arranged in the second liquid storage assembly and connected with the second electrode group.
Citation Information
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