Atomization device and electronic atomization equipment
The sliding cover assembly, composed of limiting and elastic components, solves the problem of large space occupation of the sliding cover assembly and realizes the miniaturization design of the atomizing device.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHENZHEN GEEKVAPE TECH CO LTD
- Filing Date
- 2025-03-27
- Publication Date
- 2026-05-12
AI Technical Summary
The sliding cover assembly of existing heated non-combustible smoke appliances occupies a large space, which affects the miniaturization design.
The sliding cover assembly, composed of limiting components and elastic components, is driven to slide through an elastic track, achieving stable stopping of the sliding cover in the fully open socket and reducing the space occupied by the elastic components.
This effectively reduces the size of the sliding cover assembly, enabling a miniaturized design of the atomizing device.
Smart Images

Figure CN224219460U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of electronic atomization technology, specifically to an atomization device and electronic atomization equipment. Background Technology
[0002] Heated non-burning (HNB) devices are one of the two main categories of electronic cigarettes. HNB devices have a socket for inserting a cigarette and a heating chamber. When in use, the cigarette is inserted into the heating chamber through the socket. The heating tube in the heating chamber heats the cigarette in the circumference to bake the cigarette and form an aerosol.
[0003] In existing technologies, to prevent foreign objects from entering the heating chamber through the socket when not in use, a sliding cover assembly is provided at the end of the heated tobacco appliance. The sliding cover assembly includes a sliding cover and a spring, and the sliding cover can be moved to open or close the socket. However, in existing technologies, the sliding cover assembly occupies a large volume of space, which affects the miniaturization design of heated tobacco appliances. Utility Model Content
[0004] This utility model provides an atomizing device and an electronic atomizing equipment to solve the problem of large space occupation of sliding cover components.
[0005] In one embodiment, an atomizing device is provided, comprising:
[0006] A housing, one end of which is provided with a socket and a sliding groove; the housing also contains a heating chamber; the socket is aligned and communicates with the heating chamber; the socket is used for inserting an atomizing matrix into the heating chamber; and
[0007] A sliding cover assembly includes a sliding cover, a limiting member, and an elastic member. The sliding cover is slidably mounted in a slide groove. One of the limiting member and the elastic member is disposed in the slide groove, and the other of the limiting member and the elastic member is disposed in the sliding cover. The elastic member forms an elastic slide channel, the length direction of which is parallel to the length direction of the slide groove, and a portion of the limiting member is located within the elastic slide channel.
[0008] In the uncompressed state, the width of the middle part of the elastic slide is smaller than the width of both ends, and the width of the middle part of the elastic slide is smaller than the outer diameter of the limiting member.
[0009] In one embodiment, the elastic element is a sheet-like structure, and the elastic element is parallel to the sliding surface of the sliding cover; and / or, the limiting element is perpendicular to the sliding surface of the sliding cover.
[0010] In one embodiment, the elastic element is disposed within the sliding cover, and the limiting element is disposed within the sliding groove.
[0011] In one embodiment, the elastic element includes an elastic portion and a supporting portion, the elastic portion forms the elastic slide in the middle, the supporting portion is connected to the elastic portion, and the supporting portion engages the elastic element in the sliding cover or the slide groove.
[0012] In one embodiment, the elastic portion is a U-shaped or annular structure, and the middle part of the elastic portion is narrowed.
[0013] In one embodiment, the support portion includes a first support portion and a second support portion. The first support portion is perpendicular to the sliding surface of the sliding cover. The sliding cover or the sliding groove is provided with a positioning groove. The end of the first support portion is inserted into the positioning groove. The second support portion is parallel to the sliding surface of the sliding cover and abuts against the inner sidewall of the sliding cover or the sliding groove.
[0014] In one embodiment, the elastic portion has symmetrical second support portions on both sides, one end of the second support portion is connected to the middle of the narrowed portion of the elastic portion, and the second support portion is inclined relative to the elastic portion.
[0015] In one embodiment, the inner wall of the sliding cover or the sliding groove is provided with a first slot, and the end of the second support portion away from the elastic portion is inserted into the first slot.
[0016] In one embodiment, the inner wall of the slide groove is provided with a second slot, and the outer wall of the slide cover is provided with a protruding snap-fit part, which is slidably snapped into the second slot.
[0017] In one embodiment, an electronic atomizing device is provided, including a circuit board and a battery, and also including the atomizing device described above, wherein the circuit board and the battery are installed inside the housing.
[0018] According to the atomizing device and electronic atomizing device of the above embodiments, since one end of the housing of the atomizing device is provided with a socket and a slide groove, the slide cover of the sliding cover assembly is slidably installed in the slide groove. The slide cover can slide to close or open the socket, so as to open the socket when the atomizing device is in use and close the socket when not in use. The sliding cover assembly also includes a limiting member and an elastic member, which are connected between the sliding cover and the slide groove. The elastic member forms an elastic slide channel, and the limiting member is installed in the elastic slide channel. The elastic slide channel is narrowed in the middle, so that the elastic slide channel can drive the sliding cover to slide in both directions through elastic force, so that the sliding cover can be stably stopped in the position of fully opening or fully closing the socket. At the same time, the elastic member drives the sliding cover to move through the elastic slide channel. Compared with other elastic structures, the elastic slide channel can be made thinner, effectively reducing the space occupied by the elastic member, thereby reducing the space occupied by the sliding cover assembly, which is conducive to realizing the miniaturization of the atomizing device. Attached Figure Description
[0019] Figure 1 This is a schematic diagram of the atomizing device in one embodiment;
[0020] Figure 2 A cross-sectional view of the atomizing device in one embodiment;
[0021] Figure 3 This is a top view of the atomizing device in one embodiment;
[0022] Figure 4 This is a partial structural diagram of the hidden sliding cover of the atomizing device in one embodiment;
[0023] Figure 5 This is a schematic diagram of the sliding cover and the elastic element in one embodiment;
[0024] Figure 6 A bottom view of the sliding cover in one embodiment;
[0025] Figure 7 This is a schematic diagram of the structure of the elastic element in one embodiment;
[0026] Figure 8 This is a schematic diagram of the structure of an electronic atomizing device in one embodiment;
[0027] The accompanying diagrams are labeled as follows:
[0028] 1-Housing shell, 11-Insert port, 12-Slide groove, 121-Second slot;
[0029] 2-Sliding cover assembly, 21-Sliding cover, 211-Positioning groove, 212-First slot, 213-Snap-fit part, 22-Limiting member, 23-Elastic member, 23a-Elastic slide, 231-Elastic part, 232-Supporting part, 2321-First support part, 2322-Second support part;
[0030] 3-Heating component, 31-Heating chamber;
[0031] 4-Circuit board, 5-Battery. Detailed Implementation
[0032] The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments. Similar elements in different embodiments are referred to by related similar element reference numerals. In the following embodiments, many details are described to facilitate a better understanding of the present application. However, those skilled in the art will readily recognize that some features may be omitted in different situations, or may be replaced by other elements, materials, or methods. In some cases, certain operations related to the present application are not shown or described in the specification. This is to avoid obscuring the core parts of the present application with excessive description. For those skilled in the art, detailed description of these related operations is not necessary; they can fully understand the related operations based on the description in the specification and general technical knowledge in the art.
[0033] Furthermore, the features, operations, or characteristics described in the specification can be combined in any suitable manner to form various embodiments. At the same time, the steps or actions in the method description can be rearranged or adjusted in a manner obvious to those skilled in the art. Therefore, the various orders in the specification and drawings are only for the clear description of a particular embodiment and do not imply a necessary order, unless otherwise stated that a particular order must be followed.
[0034] The component numbers used in this document, such as "first" and "second," are merely for distinguishing the described objects and have no sequential or technical meaning. Unless otherwise specified, the terms "connection" and "linkage" in this application include both direct and indirect connections (linkages). The up-down direction in this document refers to the direction in the user's operating state.
[0035] In one embodiment, a heating element is provided. This atomizing device is a heated non-combustible tobacco device. The atomizing device is used to insert an atomizing matrix (cigarette stick) and heat and bake the circumferential, end and / or interior of the atomizing matrix to form an aerosol.
[0036] In this embodiment, the upper end of the atomizing device is provided with a socket and a sliding groove, which are located at the same end of the atomizing device. A sliding cover is installed in the sliding groove, which can be slid to close or open the socket. When the user needs to use the atomizing device, the sliding cover can be slid away from the socket, opening the socket. The user can then insert the atomizing medium into the atomizing device through the socket for heating and inhalation. When the user is not using the atomizing device, the sliding cover can be slid close to the socket, covering the socket and closing it. This prevents foreign objects from entering the atomizing device through the socket, providing physical isolation and protection for the interior of the atomizing device.
[0037] The sliding cover is connected to the slide channel via a limiting member and an elastic member. The elastic member has an elastic slide path, and the limiting member engages within the elastic slide path. The length direction of the elastic slide path is parallel to the length direction of the slide channel, meaning the length direction of the elastic slide path is parallel to the sliding direction of the sliding cover. The width of the elastic slide path in the middle is smaller than the width at both ends, resulting in a narrowing structure in the middle of the elastic slide path. Furthermore, the width of the middle section of the elastic slide path is smaller than the outer diameter of the limiting member. This allows the limiting member to expand the middle section of the elastic slide path when it moves to the middle, and the elastic slide path applies a compressive force to the limiting member, driving it to move towards both ends of the elastic slide path. This design allows the sliding cover to remain stable in both the closed and open states, preventing the connector from being in a partially open or partially closed state.
[0038] The elastic element drives the sliding cover to slide by means of the elastic slide rail. The elastic slide rail can be set in a plane and has a relatively small thickness, which can effectively reduce the thickness of the elastic element and reduce the space occupied by the elastic element. There is no need to set a large installation slot in the sliding cover or slide groove to accommodate the elastic element, which is conducive to the miniaturization of the atomizing device.
[0039] Please refer to Figures 1 to 7 The atomizing device in this embodiment mainly includes a housing 1 and a sliding cover assembly 2, which is installed on the outer side of one end of the housing 1.
[0040] The upper end of the housing 1 is provided with a socket 11 and a slide groove 12. The socket 11 can be arranged side by side with the slide groove 12, or the socket 11 can be located at one end of the slide groove 12. In this embodiment, it is preferable to set the socket 11 at one end of the slide groove 12, which is more conducive to sealing the socket 11.
[0041] The atomizing device also includes a heating component 3, which includes a heating chamber 31. The heating component 3 is located inside the housing 1, and the heating chamber 31 is axially aligned and connected to the insertion port 11. The user can insert the atomizing substrate through the insertion port 11 into the heating chamber 31. The heating component 3 is used to convert electrical energy into heat energy to bake and heat the inserted atomizing substrate.
[0042] The housing 1 can be an integral structure, or it can be composed of multiple parts. For example, the housing 1 may include a top cover, an inlet 11 and a slide 12 disposed on the top cover.
[0043] The slide groove 12 is a long strip structure, and the insertion port 11 is located at one end of the slide groove 12. The length of the slide groove 12 can be parallel to one width direction of the housing 1.
[0044] Specifically, the slide 12 can be a racetrack-shaped structure, and the two ends of the slide 12 can be semi-circular or arc-shaped.
[0045] The sliding cover assembly 2 includes a sliding cover 21, a limiting member 22, and an elastic member 23. The size and shape of the sliding cover 21 are adapted to the slide groove 12. The sliding cover 21 can also be a racetrack-shaped structure so that the end of the sliding cover 21 can abut against the end of the slide groove 12. When the sliding cover 21 slides to one end close to the socket 11, the sliding cover 21 can completely cover and close the socket 11.
[0046] The length of the sliding cover 21 is less than the length of the slide groove 12, and the length of the sliding cover 21 is less than the length of the slide groove 12 minus the length of the socket 11, so that when the sliding cover 21 can slide to the end away from the socket 11, the sliding cover 21 can fully open the socket 11.
[0047] The width of the sliding cover 21 is equal to or approximately equal to the width of the sliding groove 12, so that a portion of the sliding cover 21 is installed in the sliding groove 12, reducing the volume of the sliding cover 21 protruding outward, which is beneficial to reducing the volume of the entire atomizing device; wherein, a portion of the sliding cover 21 protrudes out of the sliding groove 12, making it convenient for the user to control the sliding cover 21 to slide by operating the protruding portion of the sliding cover 21.
[0048] In other embodiments, the sliding cover 21 can also be completely hidden in the slide groove 12. For example, the upper surface of the sliding cover 21 is flush with the upper end surface of the housing 1. The upper surface of the sliding cover 21 is provided with anti-slip texture and other anti-slip structures, which can further reduce the volume of the entire atomizing device. At the same time, the user can also operate the sliding cover 21 to move.
[0049] In this embodiment, one of the limiting member 22 and the elastic member 23 is disposed within the slide groove 12, and the other of the limiting member 22 and the elastic member 23 is disposed within the slide cover 21. For example, the limiting member 22 is disposed within the slide groove 12. The limiting member 22 can be an integral structure with the housing 1. The limiting member 22 can also be fixed within the slide groove 12 by means of plug-in, threaded connection, etc. The limiting member 22 is perpendicular to the bottom surface of the slide groove 12, that is, the limiting member 22 is perpendicular to the sliding surface of the slide cover 21, wherein the sliding surface of the slide cover 21 is parallel to the bottom surface of the slide groove 12. The elastic member 23 is disposed within the slide cover 21. Specifically, the slide cover 21 has a cap-shaped structure, and the side of the slide cover 21 facing the bottom surface of the slide groove 12 has a groove. The elastic member 23 is located within the groove of the slide cover 21.
[0050] The elastic element 23 has an elastic slide 23a, which is parallel to the sliding surface of the slide cover 21, and the length direction of the elastic slide 23a is parallel to the length direction of the slide groove 12. The upper end of the limiting element 22 is inserted into the elastic slide 23a, and the limiting element 22 can move along the length direction of the elastic slide 23a.
[0051] The elastic slide 23a is narrowed in the middle, with the width of the middle section being smaller than the width of both ends. Preferably, the width of the elastic slide 23a gradually decreases and then gradually increases from one end to the other. The width (minimum width) of the middle section of the elastic slide 23a is smaller than the outer diameter of the limiting member 22. The elastic member 23 is an elastic structure, and the elastic slide 23a can extend and retract along its width direction, allowing the elastic slide 23a to provide a compressive force in the width direction to the limiting member 22.
[0052] When the sliding cover 21 slides, the end of the limiting member 22 will move along the length direction of the elastic slide 23a. The limiting member 22 moves to the middle position of the elastic slide 23a, and the elastic slide 23a is squeezed open by the limiting member 22 to form a wider channel. At this time, the deformation of the elastic slide 23a causes the elastic member 23 to apply a width-direction squeezing force to the limiting member 22. At this time, the user does not need to apply a pushing force or applies a small pushing force. The squeezing force formed in the middle of the elastic slide 23a will actively drive the limiting member 22 to move to one end of the elastic slide 23a, that is, push the sliding cover 21 to the two extreme positions of opening the socket 11 or closing the socket 11, so that the socket 11 is in a fully open state or the socket 11 is in a fully closed state. The narrowing of the middle section of the elastic slide 23a can effectively prevent the limiting member 22 from being located in the middle of the elastic slide 23a, thus preventing the socket 11 from being in a partially open state. This can prevent the atomizing matrix from being unable to be inserted during use, or prevent the socket 11 from being in a partially closed state, thus preventing foreign objects from entering the socket 11 when not in use.
[0053] In other embodiments, the limiting member 22 and the elastic member 23 can also be installed in interchangeable positions. The limiting member 22 is disposed in the sliding cover 21 and the elastic member 23 is disposed in the sliding groove 12, which can also form a sliding connection between the sliding cover 21 and the sliding groove 12, and the elastic member 23 can drive the sliding cover 21 to move to both ends of the sliding groove 12 by elastic force.
[0054] In this embodiment, the limiting member 22 can be a cylindrical structure with rounded edges, which is more conducive to the sliding of the limiting member 22. The limiting member 22 can also be an elliptical cylinder or other structures with rounded edges.
[0055] The limiting member 22 is perpendicular to the sliding surface of the sliding cover 21 and is also perpendicular to the elastic slide 23a, such that one end of the limiting member 22 is connected to the bottom of the slide groove 12, and the other end of the limiting member 22 is engaged in the elastic slide 23a. The limiting member 22 can also be set slightly inclined relative to the sliding surface of the sliding cover 21, which can also achieve a sliding connection with the elastic slide 23a.
[0056] In other embodiments, the end of the limiting member 22 used for sliding connection is a cylindrical structure, an elliptical cylinder, or a structure with a rounded perimeter, which also facilitates the sliding of the limiting member 22.
[0057] In this embodiment, the elastic element 23 is a sheet-like structure, parallel to the sliding surface of the slide cover 21, and arranged parallel to the slide cover 21. The elastic element 23 is a sheet-like structure, and the groove on the bottom surface of the slide cover 21 facing the slide groove 12 can accommodate the elastic element 23. Compared to installing a traditional helical spring structure, this significantly reduces the space required.
[0058] In other embodiments, the elastic element 23 may also be approximately sheet-like, for example, the elastic element 23 may have a thin plate structure, which is also beneficial to reduce the space occupied by the elastic element 23.
[0059] In this embodiment, the elastic element 23 can be made of a metal sheet or metal strip with elastic properties. The elastic element 23 can be integrally formed or fixed into an integral structure by welding or other methods.
[0060] The elastic member 23 may include an elastic portion 231 and a support portion 232. The elastic portion 231 is the main structure of the elastic member 23 and forms an elastic slide 23a. The elastic portion 231 may be a strip-shaped structure, or it may be bent to form a long U-shaped or ring-shaped structure. For example, in this embodiment, the elastic portion 231 is bent to form a U-shaped structure with an opening at one end. This structure has an opening, which facilitates the insertion of the end of the limiting member 22 into the elastic slide 23a.
[0061] The elastic section 231 is narrowed in the middle, making the middle of the elastic slide 23a narrower than the two ends. The width of the elastic slide 23a gradually increases or decreases, allowing the limiting member 22 to smoothly pass through the middle position of the elastic slide 23a.
[0062] The support part 232 is a fixing structure for the elastic member 23. The support part 232 is used to snap the elastic member 23 into the sliding cover 21. When the elastic member 23 is installed in the sliding groove 12, the support part 232 is used to snap the elastic member 23 into the sliding groove 12.
[0063] The support portion 232 may include a first support portion 2321 and a second support portion 2322. The first support portion 2321 may include one or more, and is connected to one end of the elastic portion 231. The first support portion 2321 is perpendicular to the slide surface of the sliding cover 21, and protrudes relative to the elastic portion 231. The sliding cover 21 has a positioning groove 211, and one end of the first support portion 2321 is engaged in the positioning groove 211. The first support portion 2321 is used to position the elastic member 23 relative to the sliding cover 21 in the sliding direction, preventing the elastic member 23 from sliding relative to the sliding cover 21 during the sliding process.
[0064] The second support portion 2322 may include one or more. Preferably, in this embodiment, there are two second support portions 2322, which are disposed on both sides of the elastic portion 231. The second support portions 2322 are perpendicular to the slide surface of the sliding cover 21. The two second support portions 2322 are inclined relative to the elastic portion 231, and the two second support portions 2322 are inclined in opposite directions. The two second support portions 2322 have a figure-eight structure. The two figure-eight-shaped second support portions 2322 are engaged with the inner sidewall of the sliding cover 21. The two figure-eight-shaped second support portions 2322 provide outward tension to fix the elastic element 23 inside the sliding cover 21.
[0065] Preferably, one end of the second support portion 2322 is connected to the middle of the elastic portion 231, and the other end of the second support portion 2322 abuts against the inner wall of the sliding cover 21. This arrangement ensures that while the two second support portions 2322 abut against the inner wall of the sliding cover 21, they also apply a compressive force to the middle of the elastic portion 231, thereby increasing the driving force of the sliding track of the driving limit member 22 in the middle of the elastic portion 231.
[0066] In other embodiments, the first support portion 2321 and the second support portion 2322 can both be other structures. For example, the first support portion 2321 can be a snap-fit or slot structure, and the sliding cover 21 is provided with a corresponding slot or snap-fit structure. The first support portion 2321 is connected to the sliding cover 21 by snap-fit, or the elastic member 23 can be positioned inside the sliding cover 21. The second support portion 2322 can also be an arc-shaped or curved structure, which can also provide support force to the middle part of the elastic portion 231 while installing the elastic member 23.
[0067] In this embodiment, the inner sidewall of the sliding cover 21 may also be provided with a first slot 212. The first slot 212 may be an annular structure, or the inner sidewall of the sliding cover 21 may be provided with two symmetrical first slots 212. The end of the second support portion 2322 away from the elastic portion 231 is inserted into the first slot 212. This arrangement allows the elastic member 23 to be embedded and fixed inside the sliding cover 21 as a whole, which can prevent the elastic member 23 from coming out of the opening of the sliding cover 21 and improve the stability of the installation of the elastic member 23.
[0068] In other embodiments, the elastic element 23 can also be installed in the slide cover 21 in other ways, such as by fixing the elastic element 23 with screws or other fixing methods.
[0069] In other embodiments, when the elastic member 23 is installed in the slide groove 12, the first slot 212 is provided on the inner sidewall of the slide groove 12, and the elastic member 23 is embedded and fixed in the slide groove 12 to prevent the elastic member 23 from coming out of the opening of the slide groove 12.
[0070] In this embodiment, the inner sidewall of the slide groove 12 is provided with a second slot 121, and the outer sidewall of the slide cover 21 is provided with a protruding snap-fit part 213. Preferably, symmetrical snap-fit parts 213 are provided on the two elongated outer sidewalls of the slide cover 21. Correspondingly, the second slot 121 is set as two corresponding parallel slots. All or part of the snap-fit part 213 is snapped into the second slot 121. The slide cover 21 can achieve a sliding connection relative to the slide groove 12 through the snap-fit part 213 and the second slot 121, thus confining the slide cover 21 within the slide groove 12 and preventing the slide cover 21 from coming out of the slide groove 12.
[0071] In this embodiment, the atomizing device has a socket 11 and a sliding groove 12 at one end of the housing 1. The sliding cover 21 of the sliding cover assembly 2 is slidably installed in the sliding groove 12. The sliding cover 21 can slide to close or open the socket 11 to satisfy the need to open the socket when the atomizing device is in use and close the socket 11 when not in use. The sliding cover assembly 2 also includes a limiting member 22 and an elastic member 23. The limiting member 22 and the elastic member 23 are connected between the sliding cover 21 and the sliding groove 12. The elastic member 23 forms an elastic slide 23a, and the limiting member 22 is installed on the elastic slide 23a. Within the channel 23a, the elastic slide 23a is narrowed in the middle, allowing the elastic slide 23a to drive the sliding cover 21 to slide towards both ends through elastic force, so that the sliding cover 21 can be stably stopped at the position of fully opening or fully closing the socket 11; at the same time, the elastic element 23 drives the sliding cover 21 to move through the elastic slide 23a. Compared with other elastic structures, the elastic slide 23a can be made thinner, effectively reducing the space occupied by the elastic element, thereby reducing the space occupied by the sliding cover assembly 2, which is conducive to the miniaturization of the atomizing device.
[0072] In one embodiment, an electronic atomizing device is provided, which includes the atomizing device of any of the above-mentioned methods, and further includes a circuit board and a battery.
[0073] Please refer to Figure 8 Circuit board 4 is electrically connected to battery 5 and heating element of heating component 3 respectively. Battery 5 provides power for the operation of circuit board 4 and heating element of heating component 3. Circuit board 4 is used to control the heating power and heating time of heating element of heating component 3.
[0074] The housing 1 may also be equipped with a bottom cover, a charging port, and other structures to facilitate the disassembly, assembly, and charging of the electronic atomizing device.
[0075] In this embodiment of the electronic atomizing device, since one end of the housing 1 is provided with a socket 11 and a sliding groove 12, the sliding cover 21 of the sliding cover assembly 2 is slidably installed in the sliding groove 12. The sliding cover 21 can slide to close or open the socket 11, so as to open the socket when the atomizing device is in use and close the socket 11 when not in use. The sliding cover assembly 2 also includes a limiting member 22 and an elastic member 23, which are connected between the sliding cover 21 and the sliding groove 12. The elastic member 23 forms an elastic slide 23a, and the limiting member 22 is installed on the elastic slide 23a. Within the channel 23a, the elastic slide 23a is narrowed in the middle, allowing the elastic slide 23a to drive the sliding cover 21 to slide towards both ends through elastic force, so that the sliding cover 21 can be stably stopped at the position of fully opening or fully closing the socket 11; at the same time, the elastic element 23 drives the sliding cover 21 to move through the elastic slide 23a. Compared with other elastic structures, the elastic slide 23a can be made thinner, effectively reducing the space occupied by the elastic element, thereby reducing the space occupied by the sliding cover assembly 2, which is conducive to the miniaturization of the atomizing device.
[0076] The above-described specific examples are for illustrative purposes only and are not intended to limit the scope of this invention. Those skilled in the art to which this invention pertains can make various simple deductions, modifications, or substitutions based on the concept of this invention.
Claims
1. An atomizing device, characterized in that, include: The housing has a socket and a sliding groove at one end, and a heating chamber inside the housing. The socket is aligned and communicates with the heating chamber, and the socket is used to allow the atomizing matrix to be inserted into the heating chamber. as well as A sliding cover assembly includes a sliding cover, a limiting member, and an elastic member. The sliding cover is slidably mounted in a slide groove. One of the limiting member and the elastic member is disposed in the slide groove, and the other of the limiting member and the elastic member is disposed in the sliding cover. The elastic member forms an elastic slide channel, the length direction of which is parallel to the length direction of the slide groove, and a portion of the limiting member is located within the elastic slide channel. In the uncompressed state, the width of the middle part of the elastic slide is smaller than the width of both ends, and the width of the middle part of the elastic slide is smaller than the outer diameter of the limiting member.
2. The atomizing device as described in claim 1, characterized in that, The elastic element is a sheet-like structure, and the elastic element is parallel to the sliding surface of the sliding cover; and / or, the limiting element is perpendicular to the sliding surface of the sliding cover.
3. The atomizing device as described in claim 2, characterized in that, The elastic element is disposed within the sliding cover, and the limiting element is disposed within the sliding groove.
4. The atomizing device as described in claim 2, characterized in that, The elastic element includes an elastic part and a supporting part. The elastic part forms the elastic slide in the middle. The supporting part is connected to the elastic part and engages the elastic element in the sliding cover or the slide groove.
5. The atomizing device as described in claim 4, characterized in that, The elastic part has a U-shaped or ring-shaped structure, and the middle part of the elastic part is narrowed.
6. The atomizing device as described in claim 4, characterized in that, The support portion includes a first support portion and a second support portion. The first support portion is perpendicular to the sliding surface of the sliding cover. The sliding cover or the sliding groove is provided with a positioning groove. The end of the first support portion is inserted into the positioning groove. The second support portion is parallel to the sliding surface of the sliding cover and abuts against the inner sidewall of the sliding cover or the sliding groove.
7. The atomizing device as described in claim 6, characterized in that, The elastic part is provided with symmetrical second support parts on both sides. One end of the second support part is connected to the middle of the narrowing part of the elastic part. The second support part is inclined relative to the elastic part.
8. The atomizing device as described in claim 6, characterized in that, The inner wall of the sliding cover or the sliding groove is provided with a first slot, and the end of the second support portion away from the elastic portion is inserted into the first slot.
9. The atomizing device as described in claim 1, characterized in that, The inner wall of the slide groove is provided with a second slot, and the outer wall of the slide cover is provided with a protruding snap-fit part, which is slidably snapped into the second slot.
10. An electronic atomizing device, comprising a circuit board and a battery, characterized in that, It also includes the atomizing device as described in any one of claims 1 to 9, wherein the circuit board and the battery are mounted within the housing.