Atomization device
By installing a seal in the atomizing device to isolate the atomizing components from the power supply components, the short circuit problem caused by the diffusion of condensate and aerosol is solved, improving the sealing performance and service life of the device.
Patent Information
- Application Number
- CN202520015352.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-03
- Publication Date
- 2026-01-27
- Estimated Expiration
- 2035-01-03
AI Technical Summary
The condensate and aerosol produced by the atomizing equipment can easily diffuse to the power source, causing a short circuit and reducing the equipment's lifespan.
A first sealing element is installed in the atomizing device to isolate the connection between the atomizing component and the power supply element. The sealing fit between the first connecting part and the housing prevents condensate and aerosol from flowing to the power supply element.
It improves the connection sealing of the atomizing device, reduces the risk of condensate and aerosol flowing to the power supply components, and extends the service life of the device.
Smart Images

Figure CN223830380U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of electronic atomizer technology, and in particular to an atomizing device. Background Technology
[0002] In related technologies, atomizing equipment generates condensate and aerosol after atomization. The condensate and aerosol diffuse randomly, which can easily cause the condensate and aerosol to diffuse to the power source, causing a short circuit and thus reducing the service life of the atomizing equipment. Utility Model Content
[0003] In view of the above problems, embodiments of this application are proposed to provide an atomizing device that overcomes or at least partially solves the above problems.
[0004] To address the aforementioned problems, this application discloses an atomizing device, comprising:
[0005] The atomizing body includes a power supply element, a bracket, and an atomizing assembly. The bracket includes a first connecting part and a second connecting part connected to each other. The first connecting part includes a first end and a second end opposite to each other. The end of the first end is connected to the atomizing assembly, the end of the second end is connected to the second connecting part, and the second connecting part is connected to the power supply element.
[0006] A first sealing element, which is in sealing engagement with the first end;
[0007] The housing is fitted over the first connecting portion and is sealed to the first sealing element.
[0008] In some embodiments, the first seal is an annular structure circumferentially arranged along the first connection portion;
[0009] The first seal is integrally injection molded with the first end.
[0010] In some embodiments, the atomizing device further includes a button and a second sealing element, and a groove is provided on the side of the first connecting portion;
[0011] At least a portion of the button is located within the groove, and at least a portion passes through the diffuser and the housing and is exposed outside the housing; the button can slide within the groove to adjust the air resistance of the atomizing component;
[0012] The second seal is arranged circumferentially along the groove, and the second seal is in sealing fit with the first connecting part and the housing.
[0013] In some embodiments, the first seal and the second seal are integrally formed;
[0014] The second seal and the first connection part are integrally injection molded.
[0015] In some embodiments, the bracket is provided with an air passage, the bottom of the groove is injection molded with a third sealing element, and the third sealing element has a through hole at the position opposite to the air inlet of the air passage.
[0016] The air outlet of the air passage is connected to the atomization channel of the atomizing component;
[0017] The button is provided with an air adjustment hole, which corresponds to the air inlet of the air channel and is used to adjust the air resistance in the atomization channel.
[0018] In some embodiments, the third seal is provided with a first sealing rib on the side facing the button;
[0019] The first sealing rib is arranged around the through hole, and the first sealing rib is sealed and engaged with the button.
[0020] In some embodiments, the third seal is provided with a second sealing rib on the side facing the button;
[0021] The second sealing rib extends along the sliding direction of the button and is in a sealing fit with the button.
[0022] In some embodiments, the button includes a button body and a speed adjustment part, wherein the button body is located within the slide groove;
[0023] The adjustment part is connected to the side of the button body opposite to the slide groove, and the adjustment part passes through the housing and is exposed outside the housing;
[0024] The button body has two rows of protrusions that slide with the housing on one side facing the housing. The two rows of protrusions are symmetrically arranged on both sides of the adjustment part, and each row of protrusions is distributed along the sliding direction of the button body.
[0025] In some embodiments, the protrusion is a dot-like structure, or the protrusion is an elongated strip-like structure extending along the sliding direction of the button.
[0026] In some embodiments, the housing includes a light-diffusing element and an outer shell;
[0027] The diffuser is sleeved outside the first connecting part and is sealed to the first sealing element.
[0028] The outer shell is fitted over the diffuser and the diffuser is integrally injection molded.
[0029] The embodiments of this application have the following advantages:
[0030] In this embodiment, the first sealing member is disposed between the first end of the first connecting part and the housing, which can improve the connection sealing between the first end of the first connecting part and the housing. Since the end of the first end of the first connecting part is connected to the atomizing component and the end of the second end of the first connecting part is connected to the power supply element, the first sealing member can isolate the aerosol and condensate generated by the atomizing component, which can prevent the condensate and aerosol from flowing to the power supply element and reduce the risk of short circuit. Attached Figure Description
[0031] Figure 1 This is an exploded view of an atomizing device according to this application;
[0032] Figure 2 This is an assembly diagram of a light-diffusing element and a housing according to this application;
[0033] Figure 3 This is an external view of an atomizing device according to this application;
[0034] Figure 4 This is a partially exploded view of an atomizing device according to this application;
[0035] Figure 5 This is a schematic diagram of the structure of a button according to this application.
[0036] Explanation of reference numerals in the attached figures:
[0037] 1. Atomizer body; 11. Support; 111. First connecting part; 1111. First end; 1112. Second end; 112. Second connecting part; 113. Air passage; 114. Slide groove; 115. First groove; 116. Second groove; 12. Power supply element; 13. Atomizing assembly; 131. Atomizing core; 132. Adapter frame; 133. Atomizing channel; 2. Housing; 21. Diffuser; 211. First through hole; 22. Outer shell; 221. Second through hole; 41. First sealing element; 42. Second sealing element; 5. Third sealing element; 51. First sealing rib; 52. Second sealing rib; 53. Through hole; 6. Button; 61. Button body; 611. Protrusion; 612. Air adjustment hole; 62. Adjustment part; 71. Upper housing; 72. Lower housing; 73. Nozzle. Detailed Implementation
[0038] To make the above-mentioned objectives, features and advantages of this application more apparent and understandable, the application will be further described in detail below with reference to the accompanying drawings and specific embodiments.
[0039] The terms "first" and "second" in the specification and claims of this application may explicitly or implicitly include one or more of the features. In the description of this application, unless otherwise stated, "multiple" means two or more. Furthermore, "and / or" in the specification and claims indicates at least one of the connected objects, and the character " / " generally indicates that the preceding and following objects are in an "or" relationship.
[0040] In the description of this application, it should be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential", etc., indicating the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this application.
[0041] In the description of this application, it should be noted that, unless otherwise expressly specified and limited, the terms "installation," "connection," and "linking" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection between two components. Those skilled in the art can understand the specific meaning of the above terms in this application based on the specific circumstances.
[0042] The core concept of this application's embodiments lies in disclosing an atomizing device, such as... Figures 1 to 3 As shown, the atomizing device includes: an atomizing body 1, which includes a power supply element 12, a bracket 11, and an atomizing assembly 13. The bracket 11 includes a first connecting portion 111 and a second connecting portion 112 connected to each other. The first connecting portion 111 includes a first end 1111 and a second end 1112 opposite to each other. The end of the first end 1111 is connected to the atomizing assembly 13, and the end of the second end 1112 is connected to the second connecting portion 112. The second connecting portion 112 is connected to the power supply element 12. A first sealing member 41 is sealed and fitted with the first end 1111. A housing 2 is fitted over the first connecting portion 111 and sealed and fitted with the first sealing member 41.
[0043] In this embodiment, the first sealing member 41 is disposed between the first end 1111 of the first connecting part 111 and the housing 2, which can improve the connection sealing between the first end 1111 of the first connecting part 111 and the housing 2. Since the end of the first end 1111 of the first connecting part 111 is connected to the atomizing component 13 and the end of the second end 1112 of the first connecting part 111 is connected to the power supply component 12, the first sealing member 41 can isolate the aerosol and condensate generated by the atomizing component 13, which can prevent the condensate and aerosol from flowing to the power supply component 12 and reduce the risk of short circuit.
[0044] In this embodiment, the housing 2 serves as the external component of the atomizing device, protecting the internal components. The housing 2 also serves as the inner shell of the atomizing device, such as... Figure 1 and Figure 3 As shown, the atomizing device also includes an upper housing 71 and a lower housing 72. One end of the housing 71 can be connected to the upper housing 71, and the other end of the housing 72 can be connected to the lower housing 72. The upper housing 71, housing 71, and lower housing 72 are combined to form the protective shell of the atomizing device. The nozzle 73 can be integrated into the end of the upper housing 71 away from the housing 2.
[0045] In some embodiments, such as Figures 1 to 3 As shown, the housing 2 includes a light-diffusing element 21 and an outer shell 22. The light-diffusing element 21 is sleeved on the outside of the first connecting part 111 and is sealed with the first sealing element 41. The outer shell 22 is sleeved on the outside of the light-diffusing element 21, and the outer shell 22 and the light-diffusing element 21 are integrally injection molded.
[0046] In this embodiment, the outer shell 22 is fitted over the diffuser 21 and integrally formed with it, which improves the tightness of the fit between the outer shell 22 and the diffuser 21, achieving a zero-gap fit. Since the diffuser 21 is fitted over the first connecting portion 111, the aerosol and condensate generated after atomization by the atomizing component 13 cannot enter between the outer shell 22 and the diffuser 21, thereby improving the lighting effect and aesthetics of the atomizing device.
[0047] In this embodiment, the light diffuser 21 is a component used to adjust and diffuse the light, making the light distribution more uniform, thereby improving the visual effect and user experience of the atomizing device. The light diffuser 21 can be made of transparent or translucent materials, such as PC (polycarbonate) or PMMA (polymethyl methacrylate), which have good light transmittance and impact resistance.
[0048] In some embodiments, the diffuser 21 is used to improve the lighting effect of the atomizing device, making the light softer, more uniform, and more aesthetically pleasing, thereby enhancing the user experience of the atomizing device. For example, an indicator light for displaying information such as battery level and operating status can be arranged inside the atomizing device. The diffuser 21 can work in conjunction with the indicator light to make the light softer and more uniform, avoiding glaring bright spots. Alternatively, an adjustable color and brightness decorative light can be arranged inside the atomizing device to enhance its attractiveness. The diffuser 21, in conjunction with the decorative light, can achieve various combinations of colors and brightness to create different visual effects. Or, a functional light for illuminating the mouthpiece 73 can be arranged inside the atomizing device to facilitate use in low-light environments. The diffuser 21, in conjunction with the functional light, can make the light cover the required area more evenly, improving the user experience.
[0049] In this embodiment, since the outer shell 22 and the light diffuser 21 can be integrally injection molded, there is no gap between the outer shell 22 and the light diffuser 21, which can improve the lighting effect of the atomizing device.
[0050] In some embodiments, the outer shell 22 and the diffuser 21 can be manufactured by a two-shot injection molding process in one step or by a two-stage molding process, etc. The embodiments of this application do not specifically limit this.
[0051] In some embodiments, such as Figure 2 As shown, the diffuser 21 can be a cylindrical structure with open ends, which can improve the convenience of fitting the diffuser 21 outside the first connecting part 111; the outer shell 22 can be a cylindrical structure with open ends, and the shape of the outer shell 22 is adapted to the diffuser 21.
[0052] In some embodiments, the bracket 11 can provide support strength for the atomizing device. The bracket 11 is connected to the atomizing component 13 and the power supply component 12 respectively, and can provide support for the atomizing component 13 and the power supply component 12. The bracket 11 can be a rigid component. The bracket 11 may include a first connecting portion 111 and a second connecting portion 112. The first connecting portion 111 and the second connecting portion 112 can be integrally formed, or they can be spliced and fixed, etc. The first connecting portion 111 can be assembled with the diffuser 21 and the atomizing component 13, and the second connecting portion 112 can be assembled with the power supply component 12, so that the bracket 11 can assemble the atomizing component 13, the diffuser 21 and the power supply component 12 into a whole.
[0053] In some embodiments, the power supply element 12 may be a disposable battery or a rechargeable battery, etc., for power supply. For example, the atomizing assembly 13 includes a heating element, a liquid guiding element, and a liquid storage element. The liquid guiding element can guide the aerosol matrix in the liquid storage element to the heating element. The heating element is electrically connected to the power supply element 12, and heating the heating element when energized can atomize the aerosol matrix. Alternatively, an indicator light, decorative light, or function light can be electrically connected to the power supply element 12, so that the indicator light, decorative light, or function light can be illuminated when energized.
[0054] In some embodiments, the first seal 41 may be a silicone component or a plastic component. The first seal 41 may be integrally injection molded with the first end 1111 of the first connecting portion 111. For example, the first seal 41 may be integrally molded with the first connecting portion 111 by in-mold injection molding of liquid silicone film, so that the bracket 11 can be directly and sealingly connected with the diffuser 21. During assembly, this also reduces the problem of poor sealing caused by the first seal 41 being stretched.
[0055] In some embodiments, the first seal 41 may protrude circumferentially from the first connection portion 111, so that the first connection portion 111 can be in sealed contact with the diffuser 21 through the first seal 41.
[0056] In some embodiments, the first seal 41 is an annular structure circumferentially arranged along the first connection portion 111, such that the bracket 11 is sealed and connected to the light diffuser 21 around its circumference, which can improve the reliability of blocking condensate and aerosol through the first seal 41.
[0057] In some embodiments, the first sealing member 41 may be in the form of a regular ring such as an elliptical ring, a circular ring, a rectangular ring, or a racetrack shape, or it may be in other irregular ring shapes. This application does not specifically limit this. A first groove 115 may be provided on the first connecting portion 111, and at least a portion of the first sealing member 41 may be embedded in the first groove 115, which can further reduce the probability of the first sealing member 41 disengaging from the first connecting portion 111 and improve the connection reliability between the first sealing member 41 and the first connecting portion 111.
[0058] In some embodiments, the atomizing device further includes a button 6 and a second sealing member 42. A groove 114 is provided on the side of the first connecting portion 111. At least a portion of the button 6 is located in the groove 114 and at least a portion passes through the housing 2 and is exposed outside the housing 2. The button 6 can slide in the groove 114 to adjust the air resistance of the atomizing component 13. The second sealing member 42 is arranged circumferentially along the groove 114. The second sealing member 42 is sealed and engaged with the first connecting portion 111 and the housing 2.
[0059] In this embodiment, the second seal 42 is sealed to the first connection 111, thereby preventing aerosols and condensates from leaking from the groove 114 and improving the user experience. Furthermore, the second seal 42 is circumferentially arranged along the groove 114, which enhances the reliability of preventing aerosol and condensate leakage.
[0060] In some embodiments, the second seal 42 is integrally injection molded with the first connecting portion 111, and the second seal 42 is sealed to the diffuser 21.
[0061] In some embodiments, the material of the second seal 42 can be set with reference to the first seal 41. The materials of the second seal 42 and the first seal 41 can be the same or different, and this application embodiment does not specifically limit this. For example, the second seal 42 and the first connecting part 111 can be integrally formed by liquid silicone film injection molding process.
[0062] In some embodiments, such as Figure 4 As shown, both the first seal 41 and the second seal 42 can be annular structures, and their center lines intersect. The second seal 42 can be a regular annular shape such as an elliptical ring, circular ring, rectangular ring, or racetrack shape, or it can be other irregular annular shapes; this embodiment does not specifically limit its shape.
[0063] In some embodiments, a second groove 116 may be provided on the first connecting portion 111, and at least a portion of the second sealing member 42 may be embedded in the second groove 116, which can further reduce the probability of the second sealing member 42 disengaging from the first connecting portion 111 and improve the connection reliability between the second sealing member 42 and the first connecting portion 111.
[0064] In some embodiments, the second seal 42 may protrude from the first connecting portion 111, so that the first connecting portion 111 can be sealed with the light-diffusing element 21 through the second seal 42.
[0065] In some embodiments, the first seal 41 and the second seal 42 are integrally formed, and the first seal 41 and the second seal 42 can be prepared simultaneously in one process, which can simplify the manufacturing process of the atomizing device and reduce costs.
[0066] In some embodiments, the bracket 11 is provided with an air passage 113, and the bottom of the groove 114 is injection molded with a third sealing member 5. The third sealing member 5 is provided with a through hole 53 at a position opposite to the air inlet of the air passage 113. The air outlet of the air passage 113 is connected to the atomization channel 133 of the atomizing component 13. The button 6 is provided with an air adjustment hole 612, which corresponds to the air inlet of the air passage 113 and is used to adjust the air resistance in the atomization channel 133.
[0067] In this embodiment, a third sealing element 5 is injection molded at the bottom of the groove 114, so that the third sealing element 5 can be integrally formed with the first connecting part 111, and the button 6 can be sealed with the third sealing element 5. In this way, during the sliding of the button 6, the third sealing element 5 can be prevented from shaking and causing air leakage, thereby improving the reliability of adjusting the air resistance in the atomizing channel 133.
[0068] In this embodiment, the third seal 5 and the second seal 42 cooperate to form a secondary seal, which further improves the sealing effect at the location of the slide groove 114 and reduces the probability of leakage of condenser and aerosol at the slide groove 114.
[0069] In some embodiments, the button 6 may be provided with a plurality of air regulating holes 612 with different opening sizes. By adjusting the different air regulating holes 612 relative to the air inlet of the air passage 113, the air intake into the air passage 113 can be adjusted to suit the usage needs of different users. The number of air regulating holes 612 may be greater than or equal to two, for example, three, four, or five. The opening sizes of the plurality of air regulating holes 612 may decrease or increase sequentially along the sliding direction of the button 6, in a regular distribution, or they may be irregularly distributed; this embodiment does not specifically limit this. Figure 5 As shown, this illustrates a case where three air holes 612 are arranged on the button 6. The opening size of the three air holes 612 decreases or increases sequentially along the sliding direction of the button 6. Other cases can be set with reference, and will not be described in detail in this embodiment.
[0070] like Figure 4 As shown, the diffuser 21 may be provided with a first through hole 211 opposite to the slide groove 114, and the housing 22 may be provided with a second through hole 221 aligned with the first through hole 211. The opening shape and size of the second through hole 221 and the first through hole 211 may be set with reference to the groove shape and size of the slide groove 114, so that the air regulating hole 612 and the air inlet of the air passage 113 can be observed through the first through hole 211 and the second through hole 221.
[0071] In some embodiments, such as Figure 1 As shown, the atomizing assembly 13 may include an atomizing core 131 and an adapter 132. The adapter 132 is connected to the atomizing core 131 and the end of the first end 1111 of the first connecting part 111 respectively. The atomizing core 131 is provided with an atomizing channel 133, and a heating element may be disposed in the atomizing channel 133.
[0072] In some embodiments, the third sealing member 5 is provided with a first sealing rib 51 on the side facing the button 6; the first sealing rib 51 is provided around the through hole 53, and the first sealing rib 51 is sealed and engaged with the button 6.
[0073] In this embodiment, the first sealing rib 51 is arranged around the through hole 53. The first sealing rib 51 is sealed and cooperates with the button 6, which can improve the reliability of the sealing cooperation between the third sealing member 5 and the button 6, so that the air passage 113 can only enter through the air adjustment hole 612, thereby improving the reliability and sensitivity of adjusting the air resistance of the atomization channel 133. Moreover, the first sealing rib 51 can also prevent aerosol and condensate from flowing from the through hole 53 to the button 6, improving the user experience.
[0074] In some embodiments, the first sealing rib 51 may be in the form of a regular ring such as an elliptical ring, a circular ring, a rectangular ring, or a racetrack shape, or it may be in other irregular ring shapes. This application does not specifically limit this.
[0075] In some embodiments, the third seal 5 is provided with a second sealing rib 52 on the side facing the button 6; the second sealing rib 52 extends along the sliding direction of the button 6 and is sealed to the button 6.
[0076] In this embodiment, the second sealing rib 52 extends along the sliding direction of the button 6, so that the button 6 can slide and engage with the second sealing member 42, which can reduce the contact area between the third sealing member 5 and the button 6, thereby reducing sliding friction.
[0077] In some embodiments, the second sealing rib 52 may be in the form of a rectangular ring or a racetrack-shaped ring, or the number of the second sealing ribs 52 may be two, with the two second sealing ribs 52 arranged side by side on both sides of the through hole 53.
[0078] In some embodiments, the first sealing rib 51 and the second sealing rib 52 can be independently provided, the first sealing rib 51 can be disposed within the second sealing rib 52, or portions of the first sealing rib 51 and the second sealing rib 52 can overlap, such as... Figure 4 As shown, the portion of the first sealing rib 51 extending along the sliding direction of the button 6 coincides with the second sealing rib 52.
[0079] In some embodiments, such as Figure 5 As shown, button 6 includes button body 61 and adjustment part 62. Button body 61 is located in slide groove 114. Adjustment part 62 is connected to the side of button body 61 away from slide groove 114, and adjustment part 62 passes through housing 2 and is exposed outside housing 2. Two rows of protrusions 611 that slide with housing 2 are provided on the side of button body 61 facing light diffuser 21. The two rows of protrusions 611 are symmetrically arranged on both sides of adjustment part 62. The single row of protrusions 611 is distributed along the sliding direction of button body 61.
[0080] In this embodiment, the button body 61 can slide with the housing 2 through the protrusions 611, which can reduce the contact area between the button body 61 and the housing 2, thereby reducing the sliding friction between the button body 61 and the housing 2. Moreover, the two rows of protrusions 611 are symmetrically arranged on both sides of the adjustment part 62, so that the force between the button body 61 and the housing 2 is uniform, which helps to improve the stability of the button body 61 sliding in the slide groove 114.
[0081] In some embodiments, the button body 61 can slide with the light diffuser 21 via the protrusion 611.
[0082] In some embodiments, the number of protrusions 611 in a single row may be one or more, and this application embodiment does not specifically limit this.
[0083] In some embodiments, the side surface of the button body 61 that mates with the third sealing member 5 is a plane, which facilitates ensuring the sealing effect between the button body 61 and the third sealing member 5.
[0084] In some embodiments, the adjustment part 62 can extend out of the outer casing 22 through the first through hole 211 and the second through hole 221, so that the user can adjust the position of the button 6 through the adjustment part 62, thereby switching the air resistance of the atomization channel 133.
[0085] In some embodiments, the protrusion 611 is a dot-like structure, or the protrusion 611 is an elongated strip-like structure extending along the sliding direction of the button 6.
[0086] In the embodiments of this application, the protrusion 611 can be a dot-like structure or a strip-shaped structure, making the structure of the protrusion 611 more diverse.
[0087] The atomizing device described in this application embodiment has at least the following advantages:
[0088] In this embodiment, the first sealing member is disposed between the first end of the first connecting part and the housing, which can improve the connection sealing between the first end of the first connecting part and the housing. Since the end of the first end of the first connecting part is connected to the atomizing component and the end of the second end of the first connecting part is connected to the power supply element, the first sealing member can isolate the aerosol and condensate generated by the atomizing component, which can prevent the condensate and aerosol from flowing to the power supply element and reduce the risk of short circuit.
[0089] Although preferred embodiments of the present application have been described, those skilled in the art, upon learning the basic inventive concept, can make other changes and modifications to these embodiments. Therefore, the appended claims are intended to be interpreted as including the preferred embodiments as well as all changes and modifications falling within the scope of the embodiments of the present application.
[0090] Finally, it should be noted that in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or terminal device that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or terminal device. Without further limitations, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the process, method, article, or terminal device that includes said element.
[0091] The above provides a detailed description of the atomizing device provided in this application. Specific examples have been used to illustrate the principles and implementation methods of this application. The description of the above embodiments is only for the purpose of helping to understand the method and core ideas of this application. At the same time, for those skilled in the art, there will be changes in the specific implementation methods and application scope based on the ideas of this application. Therefore, the content of this specification should not be construed as a limitation of this application.
Claims
1. An atomizing device, characterized in that, The atomizing device includes: The atomizing body (1) includes a power supply element (12), a bracket (11), and an atomizing assembly (13). The bracket (11) includes a first connecting part (111) and a second connecting part (112) connected to each other. The first connecting part (111) includes a first end (1111) and a second end (1112) opposite to each other. The end of the first end (1111) is connected to the atomizing assembly (13), and the end of the second end (1112) is connected to the second connecting part (112). The second connecting part (112) is connected to the power supply element (12). The first sealing element (41) is in sealing engagement with the first end (1111); The housing (2) is fitted over the first connecting part (111) and is sealed in conjunction with the first sealing member (41).
2. The atomizing device according to claim 1, characterized in that, The first sealing element (41) is an annular structure circumferentially arranged along the first connecting portion (111); The first seal (41) and the first end (1111) are integrally injection molded.
3. The atomizing device according to claim 1, characterized in that, The atomizing device also includes a button (6) and a second sealing member (42), and a groove (114) is provided on the side of the first connecting part (111); At least a portion of the button (6) is located within the groove (114), and at least a portion passes through the housing (2) and is exposed outside the housing (2); the button (6) can slide within the groove (114) to adjust the air resistance of the atomizing component (13); The second seal (42) is circumferentially arranged along the groove (114), and the second seal (42) is sealed to the first connecting part (111) and the housing (2).
4. The atomizing device according to claim 3, characterized in that, The first seal (41) and the second seal (42) are integrally formed; The second seal (42) and the first connecting part (111) are integrally injection molded.
5. The atomizing device according to claim 3, characterized in that, The bracket (11) is provided with an air passage (113), and the bottom of the groove (114) is injection molded with a third sealing element (5). The third sealing element (5) is provided with a through hole (53) at the position opposite to the air inlet of the air passage (113). The air outlet of the air passage (113) is connected to the atomization channel (133) of the atomization component (13); The button (6) is provided with an air regulating hole (612), which corresponds to the air inlet of the air passage (113) and is used to adjust the air resistance in the atomizing channel (133).
6. The atomizing device according to claim 5, characterized in that, The third sealing member (5) is provided with a first sealing rib (51) on the side facing the button (6); The first sealing rib (51) is arranged around the through hole (53), and the first sealing rib (51) is sealed to the button (6).
7. The atomizing device according to claim 5, characterized in that, The third sealing member (5) is provided with a second sealing rib (52) on the side facing the button (6); The second sealing rib (52) extends along the sliding direction of the button (6) and the second sealing rib (52) is sealed to the button (6).
8. The atomizing device according to claim 3, characterized in that, The button (6) includes a button body (61) and a gear adjustment part (62), and the button body (61) is located in the slide groove (114); The adjustment part (62) is connected to the side of the button body (61) away from the slide groove (114), and the adjustment part (62) passes through the housing (2) and is exposed outside the housing (2); The button body (61) has two rows of protrusions (611) that slide with the housing (2) on the side facing the housing (2). The two rows of protrusions (611) are symmetrically arranged on both sides of the adjustment part (62). Each row of protrusions (611) is distributed along the sliding direction of the button body (61).
9. The atomizing device according to claim 8, characterized in that, The protrusion (611) is a dot-shaped structure, or the protrusion (611) is a long strip-shaped structure extending along the sliding direction of the button (6).
10. The atomizing device according to any one of claims 1-9, characterized in that, The housing (2) includes a light-diffusing element (21) and an outer shell (22); The diffuser (21) is sleeved outside the first connecting part (111) and is sealed with the first sealing part (41); The outer shell (22) is fitted over the diffuser (21), and the outer shell (22) and the diffuser (21) are integrally injection molded.