Pop-up device and atomization device
By designing an ejection device including support, elastic parts, material containers and limiting components, the problem of difficulty in cleaning material containers in electronic atomization equipment is solved, and the effect of simplifying the cleaning process and improving user experience is achieved.
Patent Information
- Application Number
- CN202421376089.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-17
- Publication Date
- 2025-05-13
- Estimated Expiration
- 2034-06-17
AI Technical Summary
In existing electronic atomization equipment, the material silo or liquid storage silo is installed inside the equipment, which makes it difficult to clean and have poor user experience.
An ejection device is designed, including a support member, an elastic member, a material container and a limiting assembly. The material container is ejected under the elastic force of the elastic member through the disengagement channel, simplifying the cleaning process.
It reduces the difficulty of cleaning the material container. Users do not need to repeatedly disassemble and assemble the entire atomization device, but simply pops up the material container to clean it.
Smart Images

Figure CN222853216U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of aerosol atomization, and in particular to a pop-up device and an atomization device. Background Art
[0002] Electronic atomization equipment can heat aerosol products or aerosol substrates to generate aerosols. Aerosol products are usually inserted into the silo of the Heat Not Burning (HNB) atomization equipment, and the aerosol substrate is usually stored in the liquid storage tank of the electronic atomization equipment. After long-term use of the atomization equipment, the aerosol products in the silo or the aerosol substrate in the liquid storage tank need to be cleaned. However, since the silo or liquid storage tank is installed inside the atomization equipment, the difficulty of cleaning increases, which brings a poor experience to users. Utility Model Content
[0003] The present application provides a pop-up device and an atomization device, aiming to solve the technical problem that existing electronic atomization equipment is difficult to clean.
[0004] According to a first aspect of the present application, an ejection device is provided in one embodiment, comprising:
[0005] Supports;
[0006] An elastic member, fixed to the supporting member;
[0007] a material container connected to the elastic member; and
[0008] A limiting assembly, fixed to the support member, the limiting assembly having a first limiting portion, the first limiting portion being used to limit the material container to a use position;
[0009] Wherein, the first limiting portion has a disengagement channel, and the material container can move along the disengagement channel to a position disengaged from the first limiting portion when driven, and can pop out under the elastic force of the elastic member.
[0010] In one embodiment, the limiting assembly includes a limiting member and a connecting member;
[0011] The first limiting portion is arranged on the limiting member, and the limiting member is further provided with a second limiting portion, and the second limiting portion is used to limit the material container at the pop-up position after the material container is popped out, and the connecting member is provided with a first end and a second end, and the first end is connected to the material container, and when the material container is located at the use position, the second end is limited and fixed to the first limiting portion; when the material container is located at the pop-up position, the second end is limited and fixed to the second limiting portion.
[0012] In one embodiment, the first limiting portion includes a first limiting groove provided on the limiting member, the second limiting portion includes a second limiting groove provided on the limiting member, and the second end of the connecting member can be respectively fixed in the first limiting groove and the second limiting groove;
[0013] A first slide groove and a second slide groove are connected between the first limiting groove and the second limiting groove, and the second end can move from the first limiting groove along the first slide groove to the second limiting groove to pop out the material container; and the second end can also move from the second limiting groove along the second slide groove to the first limiting groove to reset the material container.
[0014] In one embodiment, the first limiting groove, the second limiting groove, the first sliding groove and the second sliding groove are provided with different groove depths on the limiting member so that the second end of the connecting member can move in the first limiting groove, the second limiting groove, the first sliding groove and the second sliding groove in a clockwise or counterclockwise direction.
[0015] In one embodiment, the first limiting groove and the second limiting groove are both configured as V-shaped grooves, the first limiting groove outlet end is connected to the first slide groove inlet end, the first slide groove outlet end is connected to the second limiting groove inlet end, the second limiting groove outlet end is connected to the second slide groove inlet end, and the second slide groove outlet end is connected to the first limiting groove inlet end;
[0016] The first limiting groove has an entrance section and an exit section, the exit section forms the disengagement channel, the groove depth of the entrance section of the first limiting groove is less than the groove depth of the exit section of the first limiting groove, the groove depth of the exit end of the first limiting groove is less than the groove depth of the entrance end of the first slide groove, the groove depth of the entrance end of the second limiting groove is less than the groove depth of the exit end of the second limiting groove, and the groove depth of the exit end of the second slide groove is less than the groove depth of the entrance end of the first limiting groove.
[0017] In one embodiment, the limit assembly further includes a connecting frame;
[0018] The connecting frame is used for detachably connecting with the material container, and the first end of the connecting member is rotatably connected to the connecting frame.
[0019] In one embodiment, the connecting frame includes a frame body and a push member connected to each other;
[0020] The frame is detachably connected to the material container, the pushing member is arranged on a side of the connecting member close to the material container, and the pushing member pushes the second end of the connecting member against the limiting member.
[0021] In one embodiment, the connecting frame further comprises a restraining member;
[0022] One end of the restraint is connected to the frame, and an installation opening is provided between the other end of the restraint and the frame, so that the connecting member can be installed on the frame from the installation opening. The restraint is provided on a side of the connecting member away from the material container, and the connecting member is limitedly connected to the frame by the restraint.
[0023] In one embodiment, the support member includes a bottom plate and a side plate connected to each other;
[0024] The elastic member is arranged on the bottom plate, and the limiting assembly is detachably connected to the side plate.
[0025] According to the second aspect of the present application, an atomization device is provided in one embodiment, comprising:
[0026] a housing having a receiving cavity and an ejection port communicating with the receiving cavity; and
[0027] The ejection device described in any of the above embodiments is installed in the accommodating cavity, and the material container can be ejected from the ejection port under the elastic force of the elastic member when driven.
[0028] According to the pop-up device in the above embodiment, since the limiting assembly is fixed on the support member, and the first limiting part is arranged on the limiting assembly, when the atomizing device is in normal use, the material container can be fixed in the use position by the first limiting part, and the use position is the position where the material container is located when the atomizing device is in normal use, so that the material container can maintain a relatively fixed position with respect to the support member. When cleaning is required, since the first limiting part has a disengagement channel, the user can drive the material container to move along the disengagement channel to a position disengaged from the first limiting part. At this time, the material container can be popped out under the elastic force of the elastic member, so that the user can clean the material container, so that the user does not need to repeatedly disassemble and assemble the entire atomizing device, reducing the difficulty of cleaning the material container. BRIEF DESCRIPTION OF THE DRAWINGS
[0029] Figure 1 This is a schematic cross-sectional view of the atomizing device in one embodiment of the present application when the material container is not ejected;
[0030] Figure 2 This is a schematic cross-sectional view of the atomizing device ejecting a material container in one embodiment of the present application;
[0031] Figure 3 for Figure 1 A schematic diagram of the three-dimensional structure of the ejection device in the atomization device;
[0032] Figure 4 for Figure 3Schematic diagram of the exploded structure of the ejection device;
[0033] Figure 5 for Figure 4 A schematic diagram of the front view of an embodiment of a position-limiting member in a pop-up device;
[0034] Figure 6 for Figure 4 A schematic diagram of the front view of another embodiment of a stopper in a pop-up device;
[0035] Figure 7 for Figure 4 Schematic diagram of the three-dimensional structure of the connecting member and the connecting frame in the pop-up device.
[0036] in:
[0037] 1-pop-up device; 11-support member; 111-bottom plate; 112-side plate; 12-elastic member; 13-limiting assembly; 131-limiting member; 132-connecting member; 1321-first end; 1322-second end; 133-connecting frame; 1331-frame; 1332-pushing member; 1333-restraining member; 1334-installation opening; 1311-first limiting portion; 1312-second limiting portion; A-first limiting groove; B-second limiting groove; C-first slide groove; D-second slide groove; 2-material container; 3-shell; 31-accommodating chamber; 32-ejection outlet; 4-trigger button. DETAILED DESCRIPTION
[0038] The present application is further described in detail below by specific embodiments in conjunction with the accompanying drawings. Wherein similar elements in different embodiments adopt associated similar element numbers. In the following embodiments, many detailed descriptions are for making the present application better understood. However, those skilled in the art can effortlessly recognize that some features can be omitted in different situations, or can be replaced by other elements, materials, methods. In some cases, some operations related to the present application are not shown or described in the specification, and this is to avoid the core part of the present application being overwhelmed by too much description, and for those skilled in the art, it is not necessary to describe these related operations in detail, and they can fully understand the related operations according to the description in the specification and the general technical knowledge in the art.
[0039] In addition, the features, operations or characteristics described in the specification can be combined in any appropriate manner to form various embodiments, and the operation steps involved in each embodiment can also be replaced or adjusted in order in a manner that is obvious to those skilled in the art. Therefore, the specification and drawings are only for the purpose of clearly describing a certain embodiment, and do not mean that the composition and / or order are necessary.
[0040] The serial numbers of the components in this document, such as "first", "second", etc., are only used to distinguish the objects described and do not have any order or technical meaning. The "connection" and "coupling" mentioned in this application, unless otherwise specified, include direct and indirect connections (couplings).
[0041] Depending on the structural type of the electronic atomization device, the electronic atomization device can heat solid aerosol products or liquid aerosol substrates and atomize them to produce aerosols. However, whether it is an aerosol product or an aerosol substrate, after long-term use, the material bin or liquid storage bin of the electronic atomization device needs to be cleaned. Since the material bin or liquid storage bin is usually installed inside the electronic atomization device, the electronic atomization device needs to be repeatedly disassembled and assembled during cleaning, which makes cleaning more difficult.
[0042] In order to reduce the difficulty of cleaning electronic atomization equipment and improve user experience, the present application provides an atomization device, such as Figure 1 and Figure 2 As shown, the atomizing device may include a pop-up device 1 and a shell 3. The pop-up device 1 may include a material container 2 and an elastic member 12. The shell 3 may include a accommodating chamber 31 and an ejection outlet 32 connected to the accommodating chamber 31. The ejection outlet 32 may be arranged along the aa axis. The pop-up device 1 is installed in the accommodating chamber 31. When the material container 2 is driven, it can be ejected from the ejection outlet 32 along the aa axis direction under the elastic force of the elastic member 12.
[0043] In this way, when the material container 2 needs to be cleaned, the elastic member 12 can be used to eject the material container 2 from the accommodating cavity 31 of the shell 3 to the outside of the ejection port 32, so that the user can directly clean the material container 2 without repeatedly disassembling and assembling the entire atomization device, thereby reducing the difficulty of cleaning the material container 2.
[0044] The material container 2 may be a liquid storage bin for storing liquid aerosol matrix, or a material bin for inserting solid aerosol products. The shell 3 may be a columnar, strip-shaped or box-shaped structure. The present application does not impose any special restrictions on the type of material filled in the material container 2 and the specific shape of the shell 3.
[0045] In addition, if Figure 1 and Figure 2 As shown, the atomizing device may further include a trigger key 4, which may be connected to the material container 2 or to the ejection device 1. When the material container 2 needs to be cleaned, the ejection device 1 may eject the material container 2 by pressing the trigger key 4. Of course, in other embodiments, the material container 2 may also be directly used as the trigger key 4, so that the user may control the ejection device 1 to eject the material container 2 by pressing the material container 2. The present application does not impose any special restrictions on whether the atomizing device is provided with a trigger key 4.
[0046] The above embodiment is an introduction to the overall structure of the atomizing device. In order to enable the material container 2 to pop out of the housing 3, the present application also provides an ejection device 1. The following embodiment will introduce the specific structure of the ejection device 1 in detail. Figure 1 and Figure 2 As shown, in the drawings, hollow parts such as cavities, openings, holes, etc. are marked with arrows, and other parts are marked with arrows. For example, the marking lines shown in the accommodating cavity 31 and the ejection opening 32 will not be repeated in the following embodiments.
[0047] The present application provides a pop-up device 1, such as Figure 3 and Figure 4 As shown, the ejection device 1 may include a support member 11, an elastic member 12, a material container 2, and a limiting assembly 13. The elastic member 12 may be fixed to the support member 11, the material container 2 may be connected to the elastic member 12, the limiting assembly 13 may be fixed to the support member 11, and the limiting assembly 13 may have a first limiting portion 1311, which may be used to limit the material container 2 to a use position. The first limiting portion 1311 may have a disengagement channel, and the material container 2 may move along the disengagement channel to a position disengaged from the first limiting portion 1311 when driven, and may be ejected under the elastic force of the elastic member 12.
[0048] In this way, since the limiting assembly 13 is fixed on the support member 11 and the first limiting portion 1311 is arranged on the limiting assembly 13, when the atomizing device is in normal use, the material container 2 can be limited and fixed in the use position by the first limiting portion 1311, and the use position is the position where the material container 2 is located when the atomizing device is in normal use, so that the material container 2 can maintain a relatively fixed position with respect to the support member 11. When cleaning is required, since the first limiting portion 1311 has a disengagement channel, the user can drive the material container 2 to move along the disengagement channel to a position disengaged from the first limiting portion 1311, and at this time, the material container 2 can be ejected under the elastic force of the elastic member 12, so that the user can clean the material container 2, so that the user does not need to repeatedly disassemble and assemble the entire atomizing device, thereby reducing the difficulty of cleaning the material container 2.
[0049] Among them, the escape channel can be a hollow area such as a slide groove or a notch arranged at the position of the first limit portion 1311, so that the material container 2 can escape the restriction of the first limit portion 1311. In order to enable the material container 2 to pop out along the aa axis direction, a guide structure in which a guide bar and a guide groove cooperate can be provided between the material container 2 and the shell 3. Alternatively, in other embodiments, the accommodating cavity 31 of the shell 3 can also be provided as a guide structure so that the material container 2 can pop out along the aa axis direction. Of course, the size of the ejection port 32 provided on the shell 3 can also be larger than the size of the material container 2, so that the material container 2 can still pop out of the shell 3 without providing a guide structure. The present application does not impose any special restrictions on the guide structure for the ejection of the material container 2.
[0050] It should be noted that the connection between the elastic member 12 and the support member 11, and between the elastic member 12 and the material container 2, can be bonding, welding, abutment or the like. The present application does not impose any special restrictions on the connection method between the elastic member 12 and the support member 11 and the material container 2.
[0051] In more embodiments, Figure 4 As shown, the limiting assembly 13 may include a limiting member 131 and a connecting member 132, a first limiting portion 1311 is provided on the limiting member 131, and the limiting member 131 may also be provided with a second limiting portion 1312, and the second limiting portion 1312 may be used to limit the material container 2 at the pop-up position after the material container 2 pops up. The connecting member 132 may be provided with a first end 1321 and a second end 1322, the first end 1321 is connected to the material container 2, and when the material container 2 is in the use position, the second end 1322 may be fixed to the first limiting portion 1311; when the material container 2 is in the pop-up position, the second end 1322 may be fixed to the second limiting portion 1312.
[0052] Thus, by setting the second limiting portion 1312 on the limiting member 131, the second limiting portion 1312 can prevent the material container 2 from continuing to move after being ejected, so that the material container 2 can be limitedly moved between the use position and the ejection position to prevent the material container 2 from falling out of the shell 3. Of course, according to the actual needs of the user, the setting of the second limiting portion 1312 can also be cancelled, so that the material container 2 can be taken out from the shell 3 for cleaning, and the present application does not impose any special restrictions on this. In addition, the material container 2 can be fixed to the first limiting portion 1311 or the second limiting portion 1312 by the second end 1322 of the connecting member 132. Of course, in other embodiments, a limiting structure that can cooperate with the first limiting portion 1311 and the second limiting portion 1312 respectively can also be directly set on the material container 2, and the present application does not impose any special restrictions on the limiting structure of the material container 2.
[0053] Specifically, if Figure 4 and Figure 5 As shown, the first limiting portion 1311 may include a first limiting groove A provided on the limiting member 131, the second limiting portion 1312 may include a second limiting groove B provided on the limiting member 131, and the second end 1322 of the connecting member 132 may be respectively fixed in the first limiting groove A and the second limiting groove B. A first slide groove C and a second slide groove D are connected between the first limiting groove A and the second limiting groove B, and the second end 1322 may move from the first limiting groove A along the first slide groove C to the second limiting groove B to eject the material container 2; and the second end 1322 may also move from the second limiting groove B along the second slide groove D to the first limiting groove A to reset the material container 2.
[0054] When the second end 1322 of the connecting member 132 is fixed in the first limiting groove A, the material container 2 can be fixed in the use position; when the second end 1322 of the connecting member 132 is fixed in the second limiting groove B, the material container 2 can be fixed in the ejection position. The first limiting groove A and the second limiting groove B can both be configured as V-shaped grooves with an angle. Of course, the first limiting groove A and the second limiting groove B can also be configured as arc grooves. Figure 5 As shown, the angle of the first limiting groove A can be greater than the angle of the second limiting groove B. At this time, the first sliding groove C and the second sliding groove D can be set to a straight groove shape. Figure 6 As shown, the angle of the first limiting groove A can also be equal to the angle of the second limiting groove B. At this time, the first chute C and the second chute D can be set to a broken line groove shape or a curved groove shape. The present application does not impose any special restrictions on the specific shapes of the first limiting groove A, the second limiting groove B, the first chute C and the second chute D.
[0055] In addition, the first limiting portion 1311 and the second limiting portion 1312 can also be set as a raised portion such as a stopper or a limiting step on the limiting member 131, so that the second end 1322 of the connecting member 132 can respectively abut against the first limiting portion 1311 or the second limiting portion 1312 for limiting fixation. The present application does not impose any special restrictions on the specific structure of the first limiting portion 1311 and the second limiting portion 1312.
[0056] Among them, Figure 5 As shown, the first limiting groove A, the second limiting groove B, the first slide groove C and the second slide groove D can be arranged with different groove depths on the limiting member 131, so that the second end 1322 of the connecting member 132 can move in the first limiting groove A, the second limiting groove B, the first slide groove C and the second slide groove D in a clockwise (indicated by the hollow arrow in the figure) or counterclockwise (not shown in the figure) direction.
[0057] For example, when the second end 1322 of the connecting member 132 moves in the first limiting groove A, the second limiting groove B, the first sliding groove C, and the second sliding groove D in the clockwise direction, the second end 1322 of the connecting member 132 can move along the first sliding groove C to the second limiting groove B for limiting fixation after being separated from the first limiting groove A, so that the material container 2 can be ejected out of the housing 3. And the second end 1322 of the connecting member 132 can also move along the second sliding groove D to the first limiting groove A for limiting fixation after being separated from the second limiting groove B, so that the material container 2 can be reset.
[0058] On this basis, if Figure 5 As shown, the first limiting groove A and the second limiting groove B can both be set as V-shaped grooves, the outlet end c of the first limiting groove A can be connected to the inlet end d of the first chute C, the outlet end of the first chute C can be connected to the inlet end e of the second limiting groove B, the outlet end f of the second limiting groove B can be connected to the inlet end of the second chute D, and the outlet end g of the second chute D can be connected to the inlet end h of the first limiting groove A. The first limiting groove A has an inlet section a and an outlet section b, and the outlet section b can form the above-mentioned disengagement channel, the groove depth of the inlet section a of the first limiting groove A can be less than the groove depth of the outlet section b of the first limiting groove A, the groove depth of the outlet end c of the first limiting groove A can be less than the groove depth of the inlet end d of the first chute C, the groove depth of the inlet end e of the second limiting groove B can be less than the groove depth of the outlet end f of the second limiting groove B, and the groove depth of the outlet end g of the second chute D can be less than the groove depth of the inlet end h of the first limiting groove A.
[0059] Thus, the second end 1322 of the connecting member 132 can move in the first limiting groove A, the second limiting groove B, the first chute C and the second chute D in the clockwise direction. That is, when the groove depth of the inlet section a of the first limiting groove A is less than the groove depth of the outlet section b of the first limiting groove A, the second end 1322 of the connecting member 132 can move unidirectionally from the inlet section a of the first limiting groove A to the outlet section b of the first limiting groove A. When the groove depth of the outlet end c of the first limiting groove A is less than the groove depth of the inlet end d of the first chute C, the second end 1322 of the connecting member 132 can move unidirectionally from the outlet end c of the first limiting groove A to the inlet end d of the first chute C. When the groove depth of the inlet end e of the second limiting groove B (i.e. the outlet end of the first chute C) is less than the groove depth of the outlet end f of the second limiting groove B (i.e. the inlet end of the second chute D), the second end 1322 of the connecting member 132 can move unidirectionally from the inlet end e of the second limiting groove B to the outlet end f of the second limiting groove B. When the groove depth of the second slide groove D outlet end g is less than the groove depth of the first limiting groove A inlet end h, the second end 1322 of the connecting member 132 can move unidirectionally from the second slide groove D outlet end g to the first limiting groove A inlet end h.
[0060] Among them, the depth of the bottom of the first limiting groove A, the second limiting groove B, the first slide groove C and the second slide groove D can be a stepped depth or a sloped depth to ensure that the second end 1322 of the connecting member 132 can move unidirectionally in the first limiting groove A, the second limiting groove B, the first slide groove C and the second slide groove D. Of course, in other embodiments, the second end 1322 of the connecting member 132 can also be ensured to move unidirectionally by providing a non-return protrusion on the groove wall of the first limiting groove A, the second limiting groove B, the first slide groove C and the second slide groove D or the limiting member 131. For example, the non-return protrusion can be set in the shape of a wedge-shaped protrusion. The present application does not impose any special restrictions on the limiting structure for realizing the unidirectional movement of the second end 1322 of the connecting member 132.
[0061] The above embodiment is a detailed introduction to the specific structure of the first limiting portion 1311 and the second limiting portion 1312 provided on the limiting member 131. In order to make the ejection device 1 more convenient to connect with the material container 2, as shown in FIG. Figure 7 As shown, the limiting assembly 13 may further include a connecting frame 133 , which may be used to be detachably connected to the material container 2 , and the first end 1321 of the connecting member 132 may be rotatably connected to the connecting frame 133 .
[0062] Thus, the material container 2 can be installed on the connecting frame 133, and the material container 2 and the connecting frame 133 can be detachably connected by means of snap-fit or screw connection, and the present application does not impose any special restrictions on the connection method between the material container 2 and the connecting frame 133. The first end 1321 of the connecting member 132 is rotatably connected to the connecting frame 133, so that the connecting member 132 can have a swinging amplitude relative to the connecting frame 133, so that the second end 1322 of the connecting member 132 can move in the above-mentioned first limiting groove A, second limiting groove B, first slide groove C and second slide groove D. Of course, the first end 1321 of the connecting member 132 can also be directly connected to the outer wall of the material container 2, and the present application does not impose any special restrictions on the specific position of the connecting member 132.
[0063] In some embodiments, Figure 7 As shown, the connecting frame 133 may include a frame body 1331 and a pushing member 1332 connected to each other, the frame body 1331 is detachably connected to the material container 2, the pushing member 1332 is arranged on a side of the connecting member 132 close to the material container 2, and the pushing member 1332 pushes the second end 1322 of the connecting member 132 against the limiting member 131.
[0064] The connecting member 132 can be installed on the frame 1331. Since the pushing member 1332 is arranged on the side of the connecting member 132 close to the material container 2, the connecting member 132 can be pushed against the first limiting groove A, the second limiting groove B, the first slide groove C and the second slide groove D under the pushing action of the pushing member 1332, thereby preventing the second end 1322 of the connecting member 132 from being separated from the limiting member 131. The pushing member 1332 can be set in the form of a spring sheet structure or a protrusion structure. The present application does not impose any special restrictions on the specific structure of the pushing member 1332.
[0065] In addition, if Figure 7 As shown, the connecting frame 133 may also include a restraining member 1333, one end of the restraining member 1333 is connected to the frame 1331, and an installation port 1334 may be provided between the other end of the restraining member 1333 and the frame 1331, so that the connecting member 132 can be installed on the frame 1331 from the installation port 1334, and the restraining member 1333 is provided on the side of the connecting member 132 away from the material container 2, and the connecting member 132 is limitedly connected to the frame 1331 by the restraining member 1333.
[0066] Since the restraining member 1333 is disposed on the side of the connecting member 132 away from the material container 2, the restraining member 1333 can prevent the connecting member 132 from being separated from the frame 1331. During installation, the connecting member 132 can be installed on the frame 1331 through the installation opening 1334, thereby facilitating the assembly between the connecting member 132 and the frame 1331. In addition, a barb can be provided at one end of the restraining member 1333 located at the installation opening 1334 to prevent the connecting member 132 from falling off from the installation opening 1334 during the swinging process.
[0067] In more embodiments, Figures 1 to 4 As shown, the support member 11 may include a bottom plate 111 and a side plate 112 connected to each other, the elastic member 12 may be disposed on the bottom plate 111 , and the limiting assembly 13 may be detachably connected to the side plate 112 .
[0068] In this way, the pop-up device 1 can form a modular device integrating a support member 11, an elastic member 12, a material container 2 and a limiting assembly 13. Among them, the support member 11 can be set as an L-shaped plate structure, or the inner side wall of the shell 3 can be directly set as the support member 11, so that the elastic member 12 and the limiting assembly 13 are directly connected to the inner side wall of the shell 3. The elastic member 12 can be set at the bottom of the material container 2, or at the side wall or top of the material container 2. The elastic member 12 can be a spring or a spring sheet, and the elastic member 12 can be connected to the bottom plate 111 or to the material container 2. The limiting assembly 13 can be a limiting block detachably connected to the side plate 112 by snap-fit or screw connection, or it can be a limiting part integrally formed with the side plate 112. The present application does not impose any special restrictions on the specific structure and setting method of the support member 11, the elastic member 12 and the limiting assembly 13.
[0069] The above specific examples are used to illustrate the present invention, which are only used to help understand the present invention and are not intended to limit the present invention. For those skilled in the art of the present invention, some simple deductions, deformations or substitutions can be made based on the idea of the present invention.
Claims
1. A pop-up device, characterized in that: include: Supports; An elastic member, fixed to the supporting member; a material container connected to the elastic member; and A limiting assembly, fixed to the support member, the limiting assembly having a first limiting portion, the first limiting portion being used to limit the material container to a use position; Wherein, the first limiting portion has a disengagement channel, and the material container can move along the disengagement channel to a position disengaged from the first limiting portion when driven, and can pop out under the elastic force of the elastic member.
2. The ejection device according to claim 1, characterized in that The limiting assembly includes a limiting member and a connecting member; The first limiting portion is arranged on the limiting member, and the limiting member is further provided with a second limiting portion, and the second limiting portion is used to limit the material container at the pop-up position after the material container is popped out, and the connecting member is provided with a first end and a second end, and the first end is connected to the material container, and when the material container is located at the use position, the second end is limited and fixed to the first limiting portion; when the material container is located at the pop-up position, the second end is limited and fixed to the second limiting portion.
3. The ejection device according to claim 2, characterized in that The first limiting portion includes a first limiting groove provided on the limiting member, the second limiting portion includes a second limiting groove provided on the limiting member, and the second end of the connecting member can be fixed in the first limiting groove and the second limiting groove respectively; A first slide groove and a second slide groove are connected between the first limiting groove and the second limiting groove, and the second end can move from the first limiting groove along the first slide groove to the second limiting groove to pop out the material container; and the second end can also move from the second limiting groove along the second slide groove to the first limiting groove to reset the material container.
4. The ejection device according to claim 3, characterized in that: The first limiting groove, the second limiting groove, the first sliding groove and the second sliding groove are provided with different groove depths on the limiting member so that the second end of the connecting member can move in the first limiting groove, the second limiting groove, the first sliding groove and the second sliding groove in a clockwise or counterclockwise direction.
5. The ejection device according to claim 4, characterized in that The first limiting groove and the second limiting groove are both configured as V-shaped grooves, the first limiting groove outlet end is connected to the first chute inlet end, the first chute outlet end is connected to the second limiting groove inlet end, the second limiting groove outlet end is connected to the second chute inlet end, and the second chute outlet end is connected to the first limiting groove inlet end; The first limiting groove has an entrance section and an exit section, the exit section forms the disengagement channel, the groove depth of the entrance section of the first limiting groove is less than the groove depth of the exit section of the first limiting groove, the groove depth of the exit end of the first limiting groove is less than the groove depth of the entrance end of the first slide groove, the groove depth of the entrance end of the second limiting groove is less than the groove depth of the exit end of the second limiting groove, and the groove depth of the exit end of the second slide groove is less than the groove depth of the entrance end of the first limiting groove.
6. The ejection device according to claim 2, characterized in that: The limiting assembly also includes a connecting frame; The connecting frame is used for detachably connecting with the material container, and the first end of the connecting member is rotatably connected to the connecting frame.
7. The ejection device according to claim 6, characterized in that The connecting frame comprises a frame body and a push piece connected to each other; The frame is detachably connected to the material container, the pushing member is arranged on a side of the connecting member close to the material container, and the pushing member pushes the second end of the connecting member against the limiting member.
8. The ejection device according to claim 7, characterized in that: The connecting frame also includes a restraining member; One end of the restraint is connected to the frame, and an installation opening is provided between the other end of the restraint and the frame, so that the connecting member can be installed on the frame from the installation opening. The restraint is provided on a side of the connecting member away from the material container, and the connecting member is limitedly connected to the frame by the restraint.
9. The ejection device according to any one of claims 1 to 8, characterized in that: The support member includes a bottom plate and side plates connected to each other; The elastic member is arranged on the bottom plate, and the limiting assembly is detachably connected to the side plate.
10. An atomizing device, characterized in that: include: A shell body having a receiving cavity and an ejection port communicated with the receiving cavity; as well as, The ejection device according to any one of claims 1 to 9 is installed in the accommodating chamber, and the material container can be ejected from the ejection outlet under the elastic force of the elastic member when driven.