Electronic atomization device
By designing automatic switching atomization components and disinfection components in the electronic atomization device, the problem of bacteria prone to breeding from the nozzle is solved, automatic disinfection and limiting are achieved, and user health and safety is improved.
Patent Information
- Application Number
- CN202510927710.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-04
- Publication Date
- 2025-08-29
AI Technical Summary
The existing electronic atomization device lacks automatic disinfection function, which causes bacteria to grow on the inside and outside of the nozzle, affecting user health.
An electronic atomization device is designed, including a housing assembly, an atomization assembly and a disinfection assembly. Through the drive of the elastic drive member, the atomization assembly and the disinfection assembly are switched between different states, realizing automatic disinfection and limiting, and disinfecting the nozzle using the disinfection assembly.
It simplifies user operations, effectively prevents bacteria from growing in the suction nozzle, and improves user health and safety.
Smart Images

Figure CN120549282A_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the field of aerosol generation technology, and in particular, to an electronic atomization device. Background Art
[0002] An electronic atomization device is an appliance that heats an aerosol matrix through an atomization component, thereby atomizing the heated aerosol matrix to generate an aerosol for the user to inhale.
[0003] The nozzle of the electronic atomizer device is the contact point for the user to inhale the aerosol. The cleanliness of the nozzle will affect the user's physical health. Existing electronic atomizer devices usually do not have a structure to automatically disinfect the nozzle, which leads to bacterial growth on the inner and outer surfaces of the nozzle. Long-term use by users poses health risks. Therefore, existing electronic atomizer devices need to be improved. Summary of the Invention
[0004] The main purpose of this application is to provide an electronic atomization device to solve the problem in the prior art that the electronic atomization device cannot automatically disinfect the nozzle.
[0005] The present application provides an electronic atomization device, which includes:
[0006] A housing assembly, wherein the housing assembly is structured to form a first cavity and a second cavity, wherein the first cavity has a first opening penetrating the housing assembly along a first direction, and the second cavity has a second opening communicating with the first cavity along a second direction, and the second opening is adjacent to the first opening;
[0007] an atomizing assembly and a disinfecting assembly, wherein the atomizing assembly has a storage state and a use state, wherein the atomizing assembly in the storage state is stored in the first cavity, and wherein the mouthpiece of the atomizing assembly in the use state extends out of the housing assembly at the first opening, and wherein the disinfecting assembly has a waiting state and a disinfecting state, wherein the disinfecting assembly in the waiting state is stored in the second cavity, and wherein the disinfecting assembly in the disinfecting state is located in the first cavity and disinfects the mouthpiece; and
[0008] a first elastic driving member and a second elastic driving member, the first elastic driving member being used to drive the atomizing assembly to move from the storage state to the use state along the first direction, and the second elastic driving member being used to drive the disinfecting assembly to move from the waiting state to the disinfecting state along the second direction;
[0009] Wherein, when the atomizing assembly is in the use state, the atomizing assembly restricts the disinfection assembly to remain in the waiting state; when the disinfection assembly is in the disinfection state, the disinfection assembly restricts the atomizing assembly to be in the storage state.
[0010] Furthermore, the housing assembly is further structured to form a third cavity, the third cavity being separated from the first cavity and the second cavity, and adjacent to the first cavity and the second cavity, respectively;
[0011] The electronic atomization device further includes an electronic control component, which is disposed in the third cavity and is electrically connected to at least the atomization component in the use state and at least the disinfection component in the disinfection state.
[0012] Further, the shell assembly includes a first shell, a second shell, a third shell and a fourth shell, the first shell and the second shell are respectively connected to opposite sides of the third shell along the first direction, and the first shell, the second shell and the third shell define the first cavity, the first shell structure forms the first opening, the fourth shell is connected to the second shell along the first direction and is close to the first shell, and the first shell, the third shell and the fourth shell define the second cavity, the first shell and the third shell structure form the second opening, and the second shell and the fourth shell define the third cavity.
[0013] Furthermore, the first direction and the second direction are two directions perpendicular to each other, the third cavity is arranged side by side with the first cavity along the second direction, and is located on the same side of the first cavity as the second cavity, and the third cavity is located below the second cavity along the first direction.
[0014] Furthermore, the atomizer assembly further includes a liquid storage member, an atomizer core, a first mounting member, and a position-limiting connector. The first mounting member and the mouthpiece are respectively sealedly connected to opposite ends of the liquid storage member along the first direction. The atomizer core is sealedly connected between the liquid storage member and the first mounting member along the first direction. The position-limiting connector is connected to a side of the liquid storage member facing away from the mouthpiece and is located outside the first mounting member.
[0015] In which, the side of the limiting connection member facing away from the liquid storage member is constructed with a first limiting connection part, the second shell is constructed along the first direction with a second limiting connection part facing the first opening, the second limiting connection part is opposite to the first limiting connection part along the first direction, the two ends of the first elastic driving member are respectively connected to the first limiting connection part and the second limiting connection part, and when the atomizer assembly is in the storage state, one of the first limiting connection part and the second limiting connection part is stored in the other of the first limiting connection part and the second limiting connection part together with the first elastic driving member.
[0016] Furthermore, the limiting connector is also constructed to form a first limiting portion, and the inner wall of the third shell in the first cavity is constructed to form a second limiting portion, and the second limiting portion and the first limiting portion limit each other to limit the atomization assembly to remain in the usage state.
[0017] Furthermore, the disinfection assembly includes a second mounting member, a third mounting member, a lamp board and a disinfection lamp. The second mounting member and the third mounting member are interconnected to form a limited cavity and a third limited connection portion. The lamp board is arranged in the limited cavity. The disinfection lamp is arranged on the lamp board. When the disinfection assembly is in the disinfection state, the disinfection lamp can disinfect the inner and outer walls of the nozzle.
[0018] The third shell is constructed along the second direction to form a fourth limiting connection part facing the second opening, the fourth limiting connection part is opposite to the third limiting connection part along the second direction, the two ends of the second elastic driving member are respectively connected to the third limiting connection part and the fourth limiting connection part, and when the disinfection component is in the waiting state, one of the third limiting connection part and the fourth limiting connection part is accommodated in the other of the third limiting connection part and the fourth limiting connection part together with the second elastic driving member.
[0019] Further, the fourth shell structure is formed with an avoidance groove, and the second cavity includes the avoidance groove;
[0020] The disinfection assembly further includes a conductive spring, the conductive spring is electrically connected to the light board, and the conductive spring is suspended in the avoidance groove and moves along the second direction;
[0021] The third shell has a mounting portion, the mounting portion protrudes from the bottom of the avoidance groove along the first direction, and the mounting portion has an inclined surface connected to the bottom of the avoidance groove;
[0022] The electronic control assembly includes a control circuit board, a battery and an elastic pin, wherein the control circuit board is electrically connected to the elastic pin and the battery respectively, and the elastic pin is arranged on the mounting portion, and the control circuit board and the battery are respectively arranged in the third cavity;
[0023] During the process of the disinfection component moving along the second direction and switching from the waiting state to the disinfection state, the conductive spring will gradually elastically deform under the limitation of the inclined surface until it is electrically connected to the spring needle.
[0024] Furthermore, the mounting portion is provided with a mounting hole, and the spring pin does not extend out of the mounting hole;
[0025] The conductive spring has a convex portion, which faces away from the first shell. When the disinfection component is in the disinfection state, the convex portion is confined in the mounting hole and electrically connected to the spring needle.
[0026] Furthermore, the second mounting member is close to the first shell, and a toggle portion is formed on a side of the second mounting member facing away from the third mounting member;
[0027] And / or, the third mounting member is close to the fourth shell, and a avoidance hole is provided on the third mounting member, and the disinfection lamp is located in the avoidance hole;
[0028] And / or, the third mounting piece is close to the fourth shell, and the third mounting piece is a light-transmitting piece, and the light emitted by the disinfection lamp can pass through the third mounting piece and illuminate the inner wall and the outer wall of the suction nozzle piece.
[0029] In the electronic atomization device of the present application, the first elastic driving member is provided to drive the atomization assembly to move from the storage state to the use state along the first direction, so that the user can use the electronic atomization device, and the atomization assembly in the use state is cleverly used to limit the disinfection assembly so that the disinfection assembly remains in the waiting state, and the second elastic member is provided to drive the disinfection assembly to move from the waiting state to the disinfection state along the second direction, so that the disinfection assembly can disinfect and dust-proof the atomization assembly, and the disinfection assembly in the disinfection state is cleverly used to limit the atomization assembly so that the atomization assembly remains in the storage state, and when the disinfection assembly overcomes the drive of the second elastic driving member under the action of external force and moves from the disinfection state to the waiting state, the atomization assembly will automatically move from the storage state to the use state under the drive of the first elastic driving member, thereby simplifying the user's operating actions before inhalation. BRIEF DESCRIPTION OF THE DRAWINGS
[0030] The drawings described herein are used to provide a further understanding of the present application and constitute a part of the present application. The illustrative embodiments of the present application and their descriptions are used to explain the present application and do not constitute an improper limitation on the present application. In the drawings:
[0031] Figure 1 This is a schematic diagram of an electronic atomization device in an embodiment disclosed in the present application. In the figure, the atomization component is in use and the disinfection component is in a waiting state.
[0032] Figure 2 for Figure 1 Schematic diagram along direction A-A1.
[0033] Figure 3 for Figure 1 Schematic diagram along the B-B1 direction.
[0034] Figure 4 for Figure 1 Schematic diagram along the C-C1 direction.
[0035] Figure 5 for Figure 1 Schematic diagram along direction A-A1, only the shell assembly is shown in the figure.
[0036] Figure 6 This is a schematic diagram of an electronic atomization device in an embodiment disclosed in the present application. In the figure, the atomization component is in a storage state and the disinfection component is in a disinfection state.
[0037] Figure 7 for Figure 6 Schematic diagram along the D-D1 direction.
[0038] Figure 8 for Figure 6 Schematic diagram along the E-E1 direction.
[0039] Figure 9 for Figure 6 Schematic diagram along the F-F1 direction.
[0040] Figure 10 for Figure 9 Enlarged schematic diagram of point M in the middle.
[0041] Figure 11 This is a schematic diagram of a position-limiting connector in an embodiment disclosed in this application.
[0042] The above drawings include the following reference numerals:
[0043] Electronic atomization device 100, first direction L1, second direction L2, shell assembly 10, first cavity 11, first opening 111, second cavity 12, second opening 121, third cavity 13, first shell 14, second shell 15, second limiting connection portion 151, third shell 16, second limiting portion 161, fourth limiting connection portion 162, mounting portion 163, inclined surface 1631, mounting hole 1632, fourth shell 17, avoidance groove 171, groove bottom 1711, atomization assembly 20, suction nozzle 21, liquid storage component 22, atomization core 23, atomization outer tube 231, first liquid hole 2311, atomization inner tube 232, second liquid hole 2321, first liquid guide member 233, second Liquid guiding part 234, heating part 235, first mounting part 24, limiting connecting part 25, first limiting connecting part 251, first limiting part 252, liquid storage tank 26, first sealing part 27, second sealing part 28, disinfection component 30, second mounting part 31, toggle part 311, third mounting part 32, avoidance hole 321, lamp board 33, disinfection lamp 34, limiting cavity 35, third limiting connecting part 36, conductive spring piece 37, protrusion 371, first elastic driving part 40, second elastic driving part 50, electronic control component 60, control circuit board 61, battery 62, spring pin 63, air regulating component 70, air regulating part 71, air inlet 711, sealing part 72, air hole 721. DETAILED DESCRIPTION
[0044] It should be noted that, in the absence of conflict, the embodiments and features of the embodiments in this application can be combined with each other. The present application will be described in detail below with reference to the accompanying drawings and in combination with the embodiments.
[0045] It should be noted that the terms used herein are only for describing specific embodiments and are not intended to limit the exemplary embodiments according to the present application. As used herein, unless the context clearly indicates otherwise, the singular form is also intended to include the plural form. In addition, it should be understood that when the terms "comprise" and / or "include" are used in this specification, they indicate the presence of features, steps, operations, devices, components and / or combinations thereof.
[0046] Unless otherwise specifically stated, the relative arrangement of the parts and steps, numerical expressions and numerical values set forth in these embodiments do not limit the scope of the present application. At the same time, it should be understood that, for ease of description, the sizes of the various parts shown in the drawings are not drawn according to actual proportional relationships. The techniques, methods and equipment known to those of ordinary skill in the relevant art may not be discussed in detail, but where appropriate, the techniques, methods and equipment should be considered as part of the authorization specification. In all examples shown and discussed here, any specific values should be interpreted as being merely exemplary, not as limitations. Therefore, other examples of the exemplary embodiments may have different values. It should be noted that similar numbers and letters represent similar items in the following figures, and therefore, once an item is defined in one figure, it does not need to be further discussed in subsequent figures.
[0047] See also Figure 1-4 As shown, the present application provides an electronic atomization device 100, which includes a housing assembly 10, an atomization assembly 20, a disinfection assembly 30, a first elastic driving member 40, and a second elastic driving member 50. The atomization assembly 20 is connected to the housing assembly 10 through the first elastic driving member 40 and has a storage state and a use state. The disinfection assembly 30 is connected to the housing assembly 10 through the second elastic driving member 50 and has a waiting state and a disinfection state.
[0048] Among them, see Figure 2-7 As shown, the shell assembly 10 is constructed to form a first cavity 11 and a second cavity 12. The first cavity 11 has a first opening 111 that passes through the shell assembly 10 along a first direction L1, and the second cavity 12 has a second opening 121 that connects to the first cavity 11 along a second direction L2, and the second opening 121 is close to the first opening 111.
[0049] The atomizer assembly 20 in the storage state is stored in the first cavity 11, and the suction nozzle 21 of the atomizer assembly 20 in the use state extends out of the shell assembly 10 at the first opening 111. The first elastic driving member 40 is used to drive the atomizer assembly 20 to move from the storage state to the use state along the first direction L1; the disinfection assembly 30 in the waiting state is stored in the second cavity 12, and the disinfection assembly 30 in the disinfection state is located in the first cavity 11 and disinfects the suction nozzle 21. The second elastic driving member 50 is used to drive the disinfection assembly 30 to move from the waiting state to the disinfection state along the second direction L2.
[0050] When the atomizing assembly 20 is in the use state, the atomizing assembly 20 restricts the disinfection assembly 30 to remain in the waiting state. When the disinfection assembly 30 is in the disinfection state, the disinfection assembly 30 restricts the atomizing assembly 20 to be in the storage state.
[0051] By providing the first elastic driving member 40 to drive the atomizer assembly 20 to move from the storage state to the use state along the first direction L1, the user can use the electronic atomizer device 100, and the atomizer assembly 20 in the use state is cleverly used to limit the disinfection assembly 30 so that the disinfection assembly 30 remains in the waiting state, and by providing the second elastic member to drive the disinfection assembly 30 to move from the waiting state to the disinfection state along the second direction L2, so that the disinfection assembly 30 can disinfect and dust-proof the atomizer assembly 20, and the disinfection assembly 30 in the disinfection state is cleverly used to limit the atomizer assembly 20 so that the atomizer assembly 20 remains in the storage state. Moreover, when the disinfection assembly 30 overcomes the drive of the second elastic driving member 50 under the action of external force and moves from the disinfection state to the waiting state, the atomizer assembly 20 will automatically move from the storage state to the use state under the drive of the first elastic driving member 40, thereby simplifying the user's operation before inhalation.
[0052] In the examples of this application, please refer to Figure 5-7 As shown, the shell assembly 10 is also constructed to form a third cavity 13, which is separated from the first cavity 11 and the second cavity 12 respectively, and is adjacent to the first cavity 11 and the second cavity 12 respectively, so that the third cavity 13 is located in the angle area between the first cavity 11 and the second cavity 12.
[0053] The electronic atomization device 100 also includes an electronic control component 60, which is arranged in the third cavity 13 and is electrically connected to at least the atomization component 20 in the use state, so that the atomization component 20 in the use state can atomize the contained aerosol matrix, and is electrically connected to at least the disinfection component 30 in the disinfection state, so that the disinfection component 30 in the disinfection state can disinfect the atomization component 20 in the contained state.
[0054] In the examples of this application, please refer to Figure 5As shown, the housing assembly 10 includes a first shell 14, a second shell 15, a third shell 16, and a fourth shell 17. The first shell 14 and the second shell 15 are respectively connected to opposite sides of the third shell 16 along the first direction L1, and the first shell 14, the second shell 15, and the third shell 16 define a first cavity 11. The first shell 14 is configured to form a first opening 111. Therefore, the atomizer assembly 20 in the stored state is stored in the third shell 16. In the used state, the atomizer assembly 20 at least partially extends out of the first shell 14 at the first opening 111 for the user to inhale. The fourth shell 17 is connected to the second shell 15 along the first direction L1 and is close to the first shell 14. The first shell 14, the third shell 16, and the fourth shell 17 define a second cavity 12. The first shell 14 and the third shell 16 are configured to form a second opening 121. The second shell 15 and the fourth shell 17 define the third cavity 13.
[0055] In the examples of this application, please refer to Figure 2 As shown, the first direction L1 and the second direction L2 are two directions perpendicular to each other, so that the third cavity 13 is arranged side by side with the first cavity 11 along the second direction L2, and is located on the same side of the first cavity 11 as the second cavity 12, and the third cavity 13 is located below the second cavity 12 along the first direction L1, so that the shell assembly 10 fully utilizes the third cavity 13 formed by the angle area between the first cavity 11 and the second cavity 12 to accommodate the electronic control component 60, so that the electronic control component 60 is adjacent to the atomization component 20 and the disinfection component 30 in the waiting state, thereby facilitating the electronic control component 60 to supply power to the atomization component 20 and the disinfection component 30.
[0056] In an embodiment of the present application, the atomizer assembly 20 also includes a liquid storage part 22, an atomizer core 23, a first mounting part 24 and a limiting connector 25. The first mounting part 24 and the mouthpiece 21 are respectively sealed and connected to the opposite ends of the liquid storage part 22 along the first direction L1. The atomizer core 23 is sealed and connected between the liquid storage part 22 and the first mounting part 24 along the first direction L1, and is jointly constructed with the liquid storage part 22 and the first mounting part 24 to form a liquid storage tank 26. The liquid storage tank 26 is used to accommodate an aerosol matrix. The limiting connector 25 is connected to the side of the liquid storage part 22 away from the mouthpiece 21, and is located on the outside of the first mounting part 24. The limiting connector 25 is used to connect the first elastic driving part 40.
[0057] Among them, the side of the limiting connection part 25 facing away from the liquid storage part 22 is constructed to form a first limiting connection part 251, and the second shell 15 is constructed to form a second limiting connection part 151 facing the first opening 111 along the first direction L1. The second limiting connection part 151 and the first limiting connection part 251 are arranged opposite to each other along the first direction L1, and the two ends of the first elastic driving part 40 are respectively connected to the first limiting connection part 251 and the second limiting connection part 151, so that the atomization assembly 20 will move between the storage state and the use state along the first direction L1 under the guidance of the first cavity 11.
[0058] Further, see Figure 2-4 As shown, when the atomizer assembly 20 is in the use state, the first position limiting connection part 251 and the second position limiting connection part 151 are spaced a certain distance apart from each other. When the atomizer assembly 20 is in the storage state, one of the first position limiting connection part 251 and the second position limiting connection part 151 is stored together with the first elastic driving member 40 in the other of the first position limiting connection part 251 and the second position limiting connection part 151, thereby more stably limiting the first elastic driving member 40 in the compressed state.
[0059] In the embodiment of the present application, the first elastic driving member 40 can be, but is not limited to, any one of a compression spring, a disc spring, and a tower spring. The first limiting connection portion 251 can be a limiting socket, and the second limiting connection portion 151 can be a limiting post. One end of the first elastic driving member 40 is inserted into the limiting socket, and the other end of the first elastic driving member 40 is sleeved on the limiting post. When the atomizer assembly 20 is in the stored state, the first elastic driving member 40 is compressed and is inserted into the limiting socket together with the limiting post.
[0060] Further, see Figure 7-10 As shown, when the atomizer assembly 20 is in the storage state, the open end of the limiting socket abuts against the second shell 15 , thereby further improving the stability of the atomizer assembly 20 stored in the first cavity 11 .
[0061] In an embodiment of the present application, at least one first limiting connection part 251 may be provided on the limiting connection member 25, and a second limiting connection part 151 is provided on the second shell 15 corresponding to each first limiting connection part 251, and a first elastic driving member 40 is connected between each first limiting connection part 251 and the corresponding second limiting connection part 151.
[0062] In the embodiment of the present application, the limiting connection member 25 is provided with two first limiting connection parts 251, and the second shell 15 is provided with a second limiting connection part 151 corresponding to each first limiting connection part 251, and a first elastic driving member 40 is connected between each first limiting connection part 251 and the corresponding second limiting connection part 151.
[0063] Further, see Figure 2-4 as well as Figure 11 As shown, the limiting connection member 25 is also constructed to have a first limiting portion 252, which is along the first direction L1 toward the second limiting connection member 151, and the third shell 16 is constructed to have a second limiting portion 161 on the inner wall of the first cavity 11, which is along the first direction L1 toward the first limiting connection member 251, and the second limiting portion 161 and the first limiting portion 252 are mutually limited to limit the atomizer assembly 20 to remain in the use state, so that the atomizer assembly 20 in the use state can be stably maintained in the use state under the limitation of the first elastic driving member 40, the first limiting portion 252, the second limiting portion 161 and the first cavity 11.
[0064] Furthermore, the mouthpiece 21 is sealed to the liquid storage part 22 via a first sealing part 27, and the first mounting part 24 is sealed to the liquid storage part 22 via a second sealing part 28, so that the liquid storage tank 26 is formed between the liquid storage part 22, the first sealing part 27, the atomizer core 23 and the second sealing part 28.
[0065] See also Figure 2 As shown, the atomizing core 23 includes an atomizing outer tube 231, an atomizing inner tube 232, a first liquid guide 233, a second liquid guide 234 and a heating element 235. The opposite ends of the atomizing outer tube 231 are sealed and plugged into the first sealing member 27 and the second sealing member 28 respectively, and have a first liquid hole 2311, which is connected to the liquid storage tank 26. The atomizing inner tube 232 is arranged in the atomizing outer tube 231 and has a There is a second liquid-passing hole 2321, the first liquid-guiding member 233 is arranged between the atomizing outer tube 231 and the atomizing inner tube 232, and covers the first liquid-passing hole 2311 and the second liquid-passing hole 2321, the second liquid-guiding member 234 is curledly arranged on the inner side of the atomizing inner tube 232, and covers the second liquid-passing hole 2321, the heating element 235 is curledly arranged on the inner side of the second liquid-guiding member 234, and is electrically connected to the control component.
[0066] The aerosol matrix contained in the liquid storage tank 26 will flow through the first liquid hole 2311, the first liquid guide 233, the second liquid hole 2321 and the second liquid guide 234 in sequence and then contact the heating element 235. When the heating element 235 is powered on, the aerosol matrix is heated by the heating element 235 and atomized to generate an aerosol.
[0067] Further, see Figure 2-3 as well as Figure 7-10 As shown, the disinfection assembly 30 includes a second mounting member 31, a third mounting member 32, a lamp board 33, and a disinfection lamp 34. The second mounting member 31 and the third mounting member 32 are interconnected to form a limiting cavity 35 and a third limiting connection portion 36. The lamp board 33 is disposed in the limiting cavity 35, and the disinfection lamp 34 is disposed on the lamp board 33. When the disinfection assembly 30 is in the disinfection state, the disinfection lamp 34 can disinfect the inner and outer walls of the nozzle 21.
[0068] The third shell 16 is constructed along the second direction L2 to form a fourth limiting connection part 162 facing the second opening 121. The fourth limiting connection part 162 is opposite to the third limiting connection part 36 along the second direction L2. The two ends of the second elastic driving member 50 are respectively connected to the third limiting connection part 36 and the fourth limiting connection part 162, so that the disinfection component 30 will switch between the waiting state and the disinfection state under the guidance of the second cavity 12.
[0069] When the disinfection component 30 is in the waiting state, one of the third limiting connection part 36 and the fourth limiting connection part 162 and the second elastic driving member 50 are housed in the other of the third limiting connection part 36 and the fourth limiting connection part 162, thereby more stably limiting the disinfection component 30 in the waiting state.
[0070] In the embodiment of the present application, the second elastic driving member 50 can be, but is not limited to, any one of a compression spring, a disc spring, and a tower spring. The third limiting connection portion 36 can be a limiting socket, and the fourth limiting connection portion 162 can be a limiting post. One end of the second elastic driving member 50 is inserted into the limiting socket, and the other end of the second elastic driving member 50 is sleeved on the limiting post. When the disinfection assembly 30 is in the waiting state, the second elastic driving member 50 is compressed and inserted into the limiting socket together with the limiting post.
[0071] Furthermore, when the disinfection component 30 is in the waiting state, the open end of the limiting socket abuts against the third shell 16 , thereby further improving the stability of the disinfection component 30 when housed in the second cavity 12 .
[0072] In an embodiment of the present application, at least one third limiting connection part 36 may be provided on the disinfection component 30, and a fourth limiting connection part 162 is provided on the third shell 16 corresponding to each third limiting connection part 36, and a second elastic driving member 50 is connected between each third limiting connection part 36 and the corresponding fourth limiting connection part 162.
[0073] In an embodiment of the present application, two third limiting connection parts 36 are provided on the disinfection component 30, and a fourth limiting connection part 162 is provided on the third shell 16 corresponding to each third limiting connection part 36, and a second elastic driving part 50 is connected between each third limiting connection part 36 and the corresponding fourth limiting connection part 162.
[0074] In the examples of this application, please refer to Figure 10 As shown, the fourth shell 17 is structured to form an avoidance groove 171, and the second cavity 12 includes the avoidance groove 171; the disinfection component 30 also includes a conductive spring 37, which is electrically connected to the lamp board 33, and the conductive spring 37 is suspended in the avoidance groove 171, and moves synchronously with the lamp board 33 during the movement of the disinfection component 30 along the second direction L2; the third shell 16 has a mounting portion 163, and the mounting portion 163 protrudes from the bottom 1711 of the avoidance groove 171 along the first direction L1, and the mounting portion 163 has an inclined surface 1631 connected to the bottom 1711 of the avoidance groove 171, and the inclined surface 1631 is inclined from the bottom 1711 of the avoidance groove 171 along the second direction L2, and the inclined surface 1631 faces the second cavity 12.
[0075] See also Figure 7-10 As shown, the electronic control component 60 includes a control circuit board 61, a battery 62, and a spring pin 63. The control circuit board 61 is electrically connected to the spring pin 63 and the battery 62, respectively, and the spring pin 63 is provided on the mounting portion 163. The control circuit board 61 and the battery 62 are respectively provided in the third cavity 13. During the movement of the disinfection component 30 along the second direction L2 and the switching from the waiting state to the disinfection state, the conductive spring 37 will gradually elastically deform under the limitation of the inclined surface 1631 until it is electrically connected to the spring pin 63, so that the disinfection lamp 34 is energized and can disinfect the inner and outer walls of the mouthpiece 21.
[0076] Among them, the conductive spring piece 37 can be compressed under the limitation of the inclined surface 1631, so that when the disinfection component 30 is in the disinfection state, the conductive spring piece 37 can be stably electrically connected to the elastic needle 63, thereby ensuring that the disinfection lamp 34 can effectively disinfect the suction nozzle 21.
[0077] Further, see Figure 10 As shown, the mounting portion 163 is provided with a mounting hole 1632, and the elastic pin 63 does not extend out of the mounting hole 1632; the conductive spring clip 37 has a convex portion 371, and the convex portion 371 faces away from the first shell 14. When the disinfection component 30 is in the disinfection state, the convex portion 371 is limited to the mounting hole 1632 and is electrically connected to the elastic pin 63, so that when the conductive spring clip 37 is limited to the mounting hole 1632, the conductive spring clip 37 is stably electrically connected to the elastic pin 63.
[0078] In an embodiment of the present application, the second mounting member 31 is close to the first shell 14, and a toggle portion 311 is formed on the side of the second mounting member 31 facing away from the third mounting member 32. The toggle portion 311 is used for allowing a user to toggle the disinfection assembly 30 along the second direction L2 between the waiting state and the disinfection state.
[0079] Further, see Figure 7-10 As shown, the third mounting member 32 is close to the fourth shell 17, and an avoidance hole 321 is provided on the third mounting member 32. The disinfection lamp 34 is located in the avoidance hole 321, so that when the disinfection component 30 is in the disinfection state, the disinfection lamp 34 can directly disinfect the inner and outer walls of the suction nozzle 21.
[0080] Furthermore, the third mounting member 32 is close to the fourth shell 17, and the third mounting member 32 is a light-transmitting member. The light emitted by the disinfection lamp 34 can pass through the third mounting member 32 and illuminate the inner and outer walls of the suction nozzle 21, so that when the disinfection component 30 is in the disinfection state, the disinfection lamp 34 can disinfect the inner and outer walls of the suction nozzle 21.
[0081] Further, see Figure 2As shown, the electronic atomization device 100 also includes an air regulating component 70, which includes an air regulating part 71 and a sealing part 72. The sealing part 72 is connected to the limiting connecting part 25 and is constructed to have an air hole 721. The air hole 721 is connected to the atomization core 23. The air regulating part 71 is movably provided on the third shell 16. When the atomization component 20 is in the use state, the air hole 721 is opposite to the air regulating part 71, and by moving the air regulating part 71, the air inlet 711 on the air regulating part 71 can be connected to the air hole 721, so that the external airflow can enter the atomization core 23 through the air inlet 711 and the air hole 721, and mix with the generated aerosol in the atomization core 23 and then flow out from the mouthpiece 21.
[0082] For ease of description, spatially relative terms such as "above", "above", "on the upper surface of", "above", etc. may be used herein to describe the spatial positional relationship of a device or feature to other devices or features as shown in the figures. It should be understood that spatially relative terms are intended to include different orientations of the device in use or operation in addition to the orientation described in the figures. For example, if the device in the drawings is inverted, the device described as "above other devices or structures" or "above other devices or structures" will be positioned as "below other devices or structures" or "below other devices or structures". Thus, the exemplary term "above" can include both "above" and "below". The device can also be positioned in other different ways (rotated 90 degrees or in other orientations), and the spatially relative descriptions used here are interpreted accordingly.
[0083] In addition, it should be noted that the use of terms such as "first" and "second" to limit components is only for the convenience of distinguishing the corresponding components. Unless otherwise stated, the above terms have no special meaning and therefore cannot be understood as limiting the scope of protection of this application.
[0084] The above are merely preferred embodiments of the present application and are not intended to limit the present application. Those skilled in the art will readily appreciate that various modifications and variations are possible. Any modifications, equivalent substitutions, or improvements made within the spirit and principles of the present application shall be included within the scope of protection of the present application.
Claims
1. An electronic atomization device, characterized in that: include: A housing assembly, wherein the housing assembly is structured to form a first cavity and a second cavity, wherein the first cavity has a first opening penetrating the housing assembly along a first direction, and the second cavity has a second opening communicating with the first cavity along a second direction, and the second opening is adjacent to the first opening; An atomizing assembly and a disinfecting assembly, wherein the atomizing assembly has a storage state and a use state. When in the storage state, the atomizing assembly is stored in the first cavity. When in the use state, the mouthpiece of the atomizing assembly extends out of the housing assembly at the first opening. The disinfecting assembly has a waiting state and a disinfecting state. When in the waiting state, the disinfecting assembly is stored in the second cavity. When in the disinfecting state, the disinfecting assembly is located in the first cavity and disinfects the mouthpiece. as well as a first elastic driving member and a second elastic driving member, the first elastic driving member being used to drive the atomizing assembly to move from the storage state to the use state along the first direction, and the second elastic driving member being used to drive the disinfecting assembly to move from the waiting state to the disinfecting state along the second direction; Wherein, when the atomizing assembly is in the use state, the atomizing assembly restricts the disinfection assembly to remain in the waiting state; when the disinfection assembly is in the disinfection state, the disinfection assembly restricts the atomizing assembly to be in the storage state.
2. The electronic atomization device according to claim 1, characterized in that The housing assembly is further configured to form a third cavity, the third cavity being separated from the first cavity and the second cavity, and adjacent to the first cavity and the second cavity, respectively; The electronic atomization device further includes an electronic control component, which is disposed in the third cavity and is electrically connected to at least the atomization component in the use state and at least the disinfection component in the disinfection state.
3. The electronic atomization device according to claim 2, characterized in that The shell assembly includes a first shell, a second shell, a third shell and a fourth shell, the first shell and the second shell are respectively connected to opposite sides of the third shell along the first direction, and the first shell, the second shell and the third shell define the first cavity, the first shell structure forms the first opening, the fourth shell is connected to the second shell along the first direction and is close to the first shell, and the first shell, the third shell and the fourth shell define the second cavity, the first shell and the third shell structure form the second opening, and the second shell and the fourth shell define the third cavity.
4. The electronic atomization device according to claim 3, characterized in that The first direction and the second direction are two directions perpendicular to each other, the third cavity is arranged side by side with the first cavity along the second direction and is located on the same side of the first cavity as the second cavity, and the third cavity is located below the second cavity along the first direction.
5. The electronic atomization device according to claim 4, characterized in that: The atomizer assembly further includes a liquid storage member, an atomizer core, a first mounting member, and a position-limiting connector. The first mounting member and the mouthpiece are respectively sealedly connected to opposite ends of the liquid storage member along the first direction. The atomizer core is sealedly connected between the liquid storage member and the first mounting member along the first direction. The position-limiting connector is connected to a side of the liquid storage member facing away from the mouthpiece and is located outside the first mounting member. In which, the side of the limiting connection member facing away from the liquid storage member is constructed with a first limiting connection part, the second shell is constructed along the first direction with a second limiting connection part facing the first opening, the second limiting connection part is opposite to the first limiting connection part along the first direction, the two ends of the first elastic driving member are respectively connected to the first limiting connection part and the second limiting connection part, and when the atomizer assembly is in the storage state, one of the first limiting connection part and the second limiting connection part is stored in the other of the first limiting connection part and the second limiting connection part together with the first elastic driving member.
6. The electronic atomization device according to claim 5, characterized in that The limiting connector is further structured to form a first limiting portion, and the third shell is structured to form a second limiting portion on the inner wall of the first cavity. The second limiting portion and the first limiting portion limit each other to limit the atomizer assembly to remain in the use state.
7. The electronic atomization device according to claim 4, characterized in that: The disinfection assembly includes a second mounting member, a third mounting member, a lamp board, and a disinfection lamp. The second mounting member and the third mounting member are interconnected to form a limited cavity and a third limited connection portion. The lamp board is disposed in the limited cavity. The disinfection lamp is disposed on the lamp board. When the disinfection assembly is in the disinfection state, the disinfection lamp can disinfect the inner and outer walls of the nozzle. The third shell is constructed along the second direction to form a fourth limiting connection part facing the second opening, the fourth limiting connection part is opposite to the third limiting connection part along the second direction, the two ends of the second elastic driving member are respectively connected to the third limiting connection part and the fourth limiting connection part, and when the disinfection component is in the waiting state, one of the third limiting connection part and the fourth limiting connection part is accommodated in the other of the third limiting connection part and the fourth limiting connection part together with the second elastic driving member.
8. The electronic atomization device according to claim 7, characterized in that: The fourth shell structure is formed with an avoidance groove, and the second cavity includes the avoidance groove; The disinfection assembly further includes a conductive spring, the conductive spring is electrically connected to the light board, and the conductive spring is suspended in the avoidance groove and moves along the second direction; The third shell has a mounting portion, the mounting portion protrudes from the bottom of the avoidance groove along the first direction, and the mounting portion has an inclined surface connected to the bottom of the avoidance groove; The electronic control assembly includes a control circuit board, a battery and an elastic pin, wherein the control circuit board is electrically connected to the elastic pin and the battery respectively, and the elastic pin is arranged on the mounting portion, and the control circuit board and the battery are respectively arranged in the third cavity; During the process of the disinfection component moving along the second direction and switching from the waiting state to the disinfection state, the conductive spring will gradually elastically deform under the limitation of the inclined surface until it is electrically connected to the spring needle.
9. The electronic atomization device according to claim 8, characterized in that: The mounting portion is provided with a mounting hole, and the spring pin does not extend out of the mounting hole; The conductive spring has a convex portion, which faces away from the first shell. When the disinfection component is in the disinfection state, the convex portion is confined in the mounting hole and electrically connected to the spring needle.
10. The electronic atomization device according to claim 7, characterized in that: The second mounting member is close to the first shell, and a toggle portion is formed on a side of the second mounting member facing away from the third mounting member; And / or, the third mounting member is close to the fourth shell, and a avoidance hole is provided on the third mounting member, and the disinfection lamp is located in the avoidance hole; And / or, the third mounting piece is close to the fourth shell, and the third mounting piece is a light-transmitting piece, and the light emitted by the disinfection lamp can pass through the third mounting piece and illuminate the inner wall and the outer wall of the suction nozzle piece.