Atomization equipment
By designing the structure of the bracket and the bracket body in the atomization equipment, the first control board is close to the circulation channel, and the battery and display components are far away from the circulation channel, the problem of high failure rate in the atomization device being close to the airflow channel is solved, and the effect of reducing the failure rate and simplifying troubleshooting is achieved.
Patent Information
- Application Number
- CN202421556993.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-03
- Publication Date
- 2025-06-06
- Estimated Expiration
- 2034-07-03
AI Technical Summary
In the atomization device, the electronic components are close to the airflow channel, resulting in a high failure rate and it is difficult to detect the causes of abnormalities.
Atomization device is designed, which includes a housing assembly, an atomization assembly, a first control panel, a battery and a display assembly. Through the structure of the upper bracket and the support body, the first control panel is placed close to the circulation passage, and the battery and display assembly are kept away from the circulation passage, reducing the chance of aerosol diffusion.
It reduces the failure rate of electronic components, makes troubleshooting easier and more accurate, and users can easily judge the faulty components and causes.
Smart Images

Figure CN222941789U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of atomizing devices, in particular to an atomizing device. Background Art
[0002] Now, the atomizer, also known as an electronic cigarette, when the user inhales the atomizer, air enters it through the hole at the bottom, and then the aerosol is generated inside and mixed with the air, and the air containing the aerosol enters the user's mouth. After the user inhales, the remaining aerosol that has not been inhaled will remain in the flow channel in the atomizer or leak. The aerosol cools and solidifies to form condensate that can damage electronic components. In order to sense the gas flow rate in the flow channel, the first control board of the microphone head is set close to the flow channel. Furthermore, in order to facilitate design and manufacturing, the battery and The display component for displaying the remaining power will also be arranged next to the first control board, causing the electronic components such as the first control board, the battery and the display component to be easily affected by the aerosol, and then malfunction, resulting in the problem that the atomization device cannot be used normally. Generally speaking, the atomization device malfunctions for this reason. Furthermore, since any one or more components of the first control board, the battery and the display may be affected by the aerosol, and insufficient battery power may also cause the atomization device to be unable to be used normally, therefore, when the atomization device cannot be used normally, it is difficult to easily know the cause of the malfunction. Utility Model Content
[0003] The utility model aims to provide an atomizing device to solve the technical problems that a large number of electronic components in the atomizing device are close to the air flow channel, resulting in a high failure rate of the atomizing device and difficulty in troubleshooting the abnormal causes of the device.
[0004] In order to achieve the above-mentioned purpose, the utility model provides an atomization device, including a shell assembly, an atomization assembly, a first control board, a battery and a display assembly, the shell assembly includes an upper bracket and a shell, a first accommodating chamber is provided in the shell, the upper bracket and the first control board are arranged in the first accommodating chamber, the upper bracket includes a top protrusion and a bracket body, a second accommodating chamber is provided in the bracket body, the top protrusion and the battery are arranged on the side of the bracket body relative to the first direction from top to bottom, the bottom surface of the top protrusion is provided with a connecting groove, the atomization assembly is arranged in the second accommodating chamber, the first control board is located below the atomization assembly and the battery, and the display assembly is arranged along the first direction. The battery is arranged in a spaced relationship, the display assembly includes a second control board and a display, the second control board is provided with a connecting hole penetrating along a first direction, the top end of the second control board is inserted into the connecting groove to connect the second control board and the top protrusion, one end of the first control board is inserted into the connecting hole to connect the second control board and the first control board, the display is arranged on the side of the second control board away from the battery, the side of the shell relative to the first direction and close to the display is provided with an exposure hole penetrating to the first accommodating cavity to expose the display, the first control board is connected to the atomization assembly, the battery and the second control board, and the second control board is connected to the battery.
[0005] Optionally, the shell assembly further includes a closing cover plate, which is disposed on the exposure hole to close the exposure hole, and the closing cover plate is made of a transparent material.
[0006] Optionally, the display component also includes a button, which is arranged on the side of the second control board away from the battery, and the side of the closed cover plate opposite to the first direction is provided with a through accommodating hole corresponding to the button, and the button is located in the accommodating hole.
[0007] Optionally, the closed cover plate is provided with a plurality of first fasteners along the edge of the side surface relative to the exposure hole, and the hole wall of the exposure hole is provided with a plurality of first fastener grooves corresponding to the first fasteners, and the first fasteners are fastened to the first fastener grooves to connect the closed cover plate and the outer shell.
[0008] Optionally, the shell assembly also includes a lower bracket arranged in the first accommodating cavity, the lower bracket is located below the first control panel, the bottom surface of the lower bracket is against the bottom of the first accommodating cavity, the lower bracket supports the first control panel and the bracket body, the top surface of the lower bracket is provided with a plurality of second fasteners, the bottom surface of the bracket body is provided with a plurality of third fasteners corresponding to the second fasteners, the second fasteners are fastened to the third fasteners to connect the lower bracket and the bracket body.
[0009] Optionally, the two side surfaces of the bracket body relative to the second direction are provided with guide grooves extending along the first direction, and the two side cavity walls of the first accommodating cavity relative to the second direction are provided with guide rails extending along the first direction and corresponding to the guide grooves, and the guide rails are inserted into the guide grooves to connect the bracket body and the shell.
[0010] Optionally, it also includes a suction nozzle, the top surface of the shell is provided with a shell top hole penetrating to the first accommodating cavity, the suction nozzle is installed on the shell top hole, the suction nozzle is provided with a suction channel penetrating in the vertical direction, the top surface of the bracket body is provided with a frame top connecting hole penetrating to the second accommodating cavity, and the frame top connecting hole is connected to the suction channel.
[0011] Optionally, it also includes a first colloid, and a surrounding plate is vertically provided on the top surface of the bracket body along its edge, the first colloid is arranged in the surrounding plate, the side surface of the first colloid is against the inner wall of the surrounding plate, and the first colloid is provided with a first glue hole that passes through in the vertical direction, the first glue hole is connected to the suction channel upwards and connected to the connecting hole on the top of the frame downwards.
[0012] Optionally, the atomization assembly includes an atomizer and oil storage cotton, the side of the oil storage cotton abuts against the cavity wall of the second accommodating cavity, the oil storage cotton is provided with an atomization channel running through in a vertical direction, the atomizer is arranged in the atomization channel, and the atomizer is connected to the first control panel.
[0013] Optionally, it also includes a second colloid, a fixed block and a movable block which are arranged in sequence in the first accommodating cavity from top to bottom, the bottom surface of the bracket body is provided with a bottom connecting hole extending to the second accommodating cavity, the second colloid is arranged in the bottom connecting hole, the side of the second colloid is against the inner wall of the bottom connecting hole, the second colloid is provided with a second glue hole extending in a vertical direction, the fixed block is provided with a plurality of first flow holes extending in a vertical direction at intervals along the first direction, the first flow hole is upwardly connected to the second glue hole, the movable block is provided with a plurality of second flow holes extending in a vertical direction at intervals along the first direction, the bottom surface of the outer shell is provided with a shell bottom hole extending to the first accommodating cavity, and the movable block can be moved along the first direction to adjust the number of the second flow holes connected to the first flow hole and the shell bottom hole.
[0014] Compared with the prior art, the atomizing device of the present utility model has the following beneficial effects:
[0015] The utility model arranges the first control board and the upper bracket of the shell assembly in the first accommodating cavity of the shell shell assembly, the atomizer assembly is arranged in the second accommodating cavity of the bracket body of the upper bracket, the battery is arranged on the side of the bracket body, the display assembly is arranged along the first direction and spaced from the battery, and the first control board is arranged below the atomizer assembly and the battery, wherein, since the aerosol generated by the atomizer assembly generally flows in the vertical direction, its flow channel is formed along the vertical direction, and the aforementioned structure can make the first control board close to the flow channel for setting the microphone, and it is convenient to connect to the battery and the display assembly, and it can also make the battery and the display assembly away from the flow channel, which can largely avoid the aerosol from diffusing to the battery and the display assembly; further, the bottom surface of the top protrusion of the upper bracket is provided with a connecting groove, and the second control board of the display assembly is provided with a connecting hole penetrating along the first direction, and the top end of the second control board is inserted into the connecting groove, One end of the first control board is inserted into the connecting hole to fix the second control board. The display of the display assembly is arranged on the side of the second control board away from the battery, and an exposure hole penetrating into the first accommodating cavity is provided on the side of the outer shell relative to the first direction and close to the display to expose the display, so that the user can observe the remaining power and remaining oil displayed on the display at the exposure hole; in summary, the structure of the utility model keeps the battery and the display assembly away from the circulation channel, and the upper bracket plays an isolation role between the circulation channel and the battery and the display assembly, which can greatly reduce the probability of aerosol diffusion to the battery and the display assembly, thereby reducing the failure rate, and because the above structure can reduce the probability of failure of the battery and the display assembly caused by aerosol to negligible, when the atomization device cannot be used normally, the user can easily determine the components and causes of the problem with the equipment, and the troubleshooting is low in difficulty and high in accuracy. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 It is a structural schematic diagram of the utility model.
[0017] Figure 2 It is a cross-sectional view of the utility model.
[0018] Figure 3 It is an exploded view of the utility model.
[0019] Reference numerals: 1, housing assembly; 11, upper bracket; 111, bracket body; 1111, top connecting hole; 1112, guide groove; 112, top protrusion; 113, enclosure; 114, second fastener; 12, housing; 121, first accommodating cavity; 122, exposure hole; 123, housing top hole; 124, housing bottom hole; 125, guide rail; 126, first fastener groove; 13, closing cover; 131, first fastener; 132, accommodating hole; 14, Lower bracket; 15, third fastener; 2, atomization assembly; 21, oil storage cotton; 211, atomization channel; 22, atomizer; 3, first control board; 4, battery; 5, display assembly; 51, second control board; 52, display; 53, button; 6, suction nozzle; 61, suction channel; 7, first colloid; 71, first glue hole; 8, second colloid; 81, second glue hole; 9, fixed block; 91, first flow hole; 10, moving block; 101, second flow hole. DETAILED DESCRIPTION
[0020] The following is a further detailed description of the specific implementation of the present invention in conjunction with the accompanying drawings and examples. The following examples are used to illustrate the present invention, but are not intended to limit the scope of the present invention.
[0021] In the description of the present invention, it should be understood that the terms "top", "bottom", "inside", "outside", "circumferential", etc. indicate orientations or positional relationships based on the orientations or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be understood as a limitation on the present invention.
[0022] In addition, the terms "first" and "second" are used for descriptive purposes only and should not be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features defined as "first" and "second" may explicitly or implicitly include at least one of the features. In the description of the present utility model, the meaning of "plurality" is at least two, such as two, three, etc., unless otherwise clearly and specifically defined.
[0023] like Figures 1 to 3As shown, an atomization device of the utility model comprises a shell assembly 1, an atomization assembly 2, a first control board 3, a battery 4 and a display assembly 5, the shell assembly 1 comprises an upper bracket 11 and a shell 12, a first accommodating chamber 121 is provided in the shell 12, the upper bracket 11 and the first control board 3 are arranged in the first accommodating chamber 121, the upper bracket 11 comprises a top protrusion 112 and a bracket body 111, the bracket body 111 is provided with a second accommodating chamber, the top protrusion 112 and the battery 4 are arranged on the side of the bracket body 111 relative to the first direction from top to bottom, the bottom surface of the top protrusion 112 is provided with a connecting groove, the atomization assembly 2 is arranged in the second accommodating chamber, the first control board 3 is located below the atomization assembly 2 and the battery 4, and the display assembly 5 is spaced apart along the first direction. The battery 4 is provided, and the display assembly 5 includes a second control board 51 and a display 52. The second control board 51 is provided with a connecting hole penetrating along a first direction. The top end of the second control board 51 is inserted into the connecting groove to connect the second control board 51 and the top protrusion 112. One end of the first control board 3 is inserted into the connecting hole to connect the second control board 51 and the first control board 3. The display 52 is provided on the side of the second control board 51 away from the battery 4. The side of the housing 12 relative to the first direction and close to the display 52 is provided with an exposure hole 122 penetrating to the first accommodating cavity 121 to expose the display 52. The first control board 3 is connected to the atomizer assembly 2, the battery 4 and the second control board 51, and the second control board 51 is connected to the battery 4.
[0024] In the above technical scheme, since the aerosol generated by the atomizer assembly 2 generally flows in the vertical direction, its circulation channel is formed in the vertical direction. The arrangement position and structure of the first control board 3, the battery 4 and the display assembly 5 relative to the atomizer assembly 2 and the frame tube can make the first control board 3 close to the circulation channel for setting the microphone, and at the same time, it is convenient to connect to the battery 4 and the display assembly 5, and the battery 4 and the display assembly 5 can also be kept away from the circulation channel, which can largely avoid the aerosol from diffusing to the battery 4 and the display assembly 5; further, the top protrusion 112 and the first control board 3 cooperate to fix the second control board 51, the display 52 is arranged on the side of the second control board 51, and the shell 12 is correspondingly provided with an exposure hole 122 to expose the display 52, so that the user can observe the remaining power and the remaining oil displayed by the display 52 at the exposure hole 122; in summary, the structure of the utility model keeps the battery 4 and the display assembly 5 away from the circulation channel, Moreover, the upper bracket 11 plays an isolating role between the circulation channel and the battery 4 and the display component 5, which can greatly reduce the probability of aerosol diffusion to the battery 4 and the display component 5, thereby reducing the failure rate. Moreover, since the above structure can reduce the failure rate of the battery 4 and the display component 5 caused by the aerosol to negligible, when the atomizing device cannot be used normally, the user can easily determine the components and causes of the device problems, and the troubleshooting is easy and accurate. Specifically: 1. When the atomizing device can be inhaled normally, the display 52 cannot display normally, and the reason is judged to be a failure of the display 52; 2. When the atomizing device cannot be inhaled normally, the display 52 can display normally, and the reason is judged to be a failure of the first control board 3; 3. When the atomizing device cannot be inhaled normally, the display 52 cannot display normally, and the reason is judged to be that the battery 4 is out of power (because the failure causes caused by aerosols account for the majority, so in general, it can be directly judged according to the above situation).
[0025] Furthermore, the shell assembly 1 also includes a closing cover 13, which is arranged on the exposure hole 122 to close the exposure hole 122. The closing cover 13 is made of a transparent material to protect the components in the first accommodating cavity 121 while allowing the user to observe the display 52 through the closing cover 13.
[0026] Furthermore, the display component 5 also includes a button 53, which is arranged on the side of the second control board 51 away from the battery 4, and the side of the closed cover 13 relative to the first direction is provided with a through accommodating hole 132 corresponding to the button 53, and the button 53 is located in the accommodating hole 132, so that the display 52 can switch the information displayed on the display 52 by pressing the button 53, thereby expanding the observable information.
[0027] Furthermore, the closed cover 13 is provided with a plurality of first fasteners 131 along the edge of the side surface relative to the exposure hole 122, and the hole wall of the exposure hole 122 is provided with a plurality of first fastener grooves 126 corresponding to the first fasteners 131, and the first fasteners 131 are fastened to the first fastener grooves 126 to connect the closed cover 13 and the outer shell 12.
[0028] Furthermore, the shell assembly 1 also includes a lower bracket 14 arranged in the first accommodating cavity 121, the lower bracket 14 is located below the first control board 3, the bottom surface of the lower bracket 14 is against the bottom of the first accommodating cavity 121, the lower bracket 14 supports the first control board 3 and the bracket body 111, the top surface of the lower bracket 14 is provided with a plurality of second fasteners 114, the bottom surface of the bracket body 111 is provided with a plurality of third fasteners 15 corresponding to the second fasteners 114, the second fasteners 114 are fastened to the third fasteners 15 to connect the lower bracket 14 and the bracket body 111.
[0029] Furthermore, the two side surfaces of the bracket body 111 relative to the second direction are provided with guide grooves 1112 extending along the first direction, and the two side cavity walls of the first accommodating cavity 121 relative to the second direction are provided with guide rails 125 extending along the first direction and corresponding to the guide grooves 1112. The guide rails 125 are inserted into the guide grooves 1112 to connect the bracket body 111 and the shell 12. The bracket body 111 can pass through the exposure hole 122 and slide into the first accommodating cavity 121 along the guide rails 125, so as to facilitate the installation of the bracket body 111 in the first accommodating cavity 121.
[0030] Furthermore, it also includes a suction nozzle 6. The top surface of the shell 12 is provided with a shell top hole 123 that penetrates to the first accommodating cavity 121. The suction nozzle 6 is installed on the shell top hole 123. The suction nozzle 6 is provided with a suction channel 61 that penetrates along the vertical direction. The top surface of the bracket body 111 is provided with a frame top connecting hole 1111 that penetrates to the second accommodating cavity. The frame top connecting hole 1111 is connected to the suction channel 61, and the user can suck through the top of the suction nozzle 6.
[0031] Furthermore, it also includes a first colloid 7, and a surrounding plate 113 is vertically arranged on the top surface of the bracket body 111 along its edge. The first colloid 7 is arranged in the surrounding plate 113, and the side of the first colloid 7 is against the inner wall of the surrounding plate 113. The first colloid 7 is provided with a first glue hole 71 that passes through in the vertical direction. The first glue hole 71 is connected to the suction channel 61 upwards and connected to the frame top connecting hole 1111 downwards, wherein the first colloid 7 is used to prevent gas from overflowing from the top of the bracket body 111.
[0032] Furthermore, the atomization assembly 2 includes an atomizer 22 and an oil storage cotton 21, the side of the oil storage cotton 21 is against the cavity wall of the second accommodating cavity, the oil storage cotton 21 is provided with an atomization channel 211 which runs through in the vertical direction, the atomizer 22 is arranged in the atomization channel 211, and the atomizer 22 is connected to the first control board 3, wherein the oil storage cotton 21 is used to store the smoke oil, and the atomizer 22 is heated to convert the smoke oil into aerosol.
[0033] Furthermore, it also includes a second colloid 8, a fixed block 9 and a moving block 10 which are sequentially arranged in the first accommodating cavity 121 from top to bottom, the bottom surface of the bracket body 111 is provided with a frame bottom connecting hole penetrating to the second accommodating cavity, the second colloid 8 is arranged in the frame bottom connecting hole, the side of the second colloid 8 is against the inner wall of the frame bottom connecting hole, the second colloid 8 is provided with a second glue hole 81 penetrating in the vertical direction, the fixed block 9 is provided with a plurality of first flow holes 91 penetrating in the vertical direction at intervals along the first direction, the first flow holes 91 are upwardly connected to the second glue holes 81, the moving block 10 is provided with a plurality of second flow holes 101 penetrating in the vertical direction at intervals along the first direction, the bottom surface of the outer shell 12 is provided with a shell bottom hole 124 penetrating to the first accommodating cavity 121, the moving block 10 can move along the first direction to adjust the number of the second flow holes 101 connected to the first flow holes 91 and the shell bottom hole 124, wherein the second colloid 8 is used to prevent gas from overflowing from the bottom end of the bracket body 111.
[0034] Furthermore, a pull block is provided on the bottom surface of the moving block 10, and the pull block passes through the bottom hole 124 of the shell. The bottom surface of the pull block is provided with a plurality of convex marks at intervals along the first direction to facilitate the user to open, adjust and close the connecting hole.
[0035] Furthermore, a microphone is provided on the first control board 3, the first control board 3 is connected to the microphone, the suction channel 61, the first glue hole 71, the frame top connecting hole 1111, the atomization channel 211, the second glue hole 81, the first circulation hole 91, the second circulation hole 101 and the shell bottom hole 124 are sequentially connected to form a circulation channel, and the microphone is arranged in the circulation channel.
[0036] In summary, the embodiment of the utility model provides an atomization device, and its technical effects are:
[0037] In the utility model, the first control panel 3 and the upper bracket 11 of the shell component 1 are arranged in the first accommodating cavity 121 of the shell 12 of the shell component 1, the atomizer component 2 is arranged in the second accommodating cavity of the bracket body 111 of the upper bracket 11, the battery 4 is arranged on the side of the bracket body 111, the display component 5 is arranged along the first direction to be spaced apart from the battery 4, and the first control panel 3 is arranged below the atomizer component 2 and the battery 4, wherein, since the aerosol generated by the atomizer component 2 generally flows in the vertical direction, its flow channel is formed along the vertical direction, and the above-mentioned structure can make the first control panel 3 close to the flow channel for setting the microphone, and it is convenient to connect to the battery 4 and the display component 5, and it can also make the battery 4 and the display component 5 away from the flow channel, which can largely avoid the aerosol from diffusing to the battery 4 and the display component 5; further, the bottom surface of the top protrusion 112 of the upper bracket 11 is provided with a connecting groove, and the second control panel 51 of the display component 5 is provided with a connecting hole penetrating along the first direction, and the top end of the second control panel 51 is inserted into The first control panel 3 is connected to the second control panel 51 by a connecting groove, and one end of the first control panel 3 is inserted into the connecting hole to fix the second control panel 51. The display 52 of the display assembly 5 is arranged on the side of the second control panel 51 away from the battery 4, and an exposure hole 122 is provided on the side of the shell 12 relative to the first direction and close to the display 52, which penetrates into the first accommodating cavity 121 to expose the display 52, so that the user can observe the remaining power and the remaining oil displayed by the display 52 at the exposure hole 122; in summary, the structure of the utility model keeps the battery 4 and the display assembly 5 away from the circulation channel, and the upper bracket 11 plays an isolation role between the circulation channel and the battery 4 and the display assembly 5, which can greatly reduce the probability of aerosol diffusion to the battery 4 and the display assembly 5, thereby reducing the failure rate, and because the above structure can reduce the failure rate of the battery 4 and the display assembly 5 caused by the aerosol to negligible, when the atomizing device cannot be used normally, the user can easily determine the components and causes of the problem with the device, and the troubleshooting is low in difficulty and high in accuracy.
[0038] The above is only a preferred embodiment of the present invention. It should be pointed out that for ordinary technicians in this technical field, several improvements and substitutions can be made without departing from the technical principle of the present invention. These improvements and substitutions should also be regarded as the protection scope of the present invention.
Claims
1. An atomization device, characterized in that: The invention comprises a shell assembly, an atomizer assembly, a first control board, a battery and a display assembly, wherein the shell assembly comprises an upper bracket and a shell, wherein a first accommodating cavity is arranged in the shell, wherein the upper bracket and the first control board are arranged in the first accommodating cavity, wherein the upper bracket comprises a top protrusion and a bracket body, wherein a second accommodating cavity is arranged in the bracket body, wherein the top protrusion and the battery are arranged on the side of the bracket body relative to a first direction from top to bottom in sequence, wherein a connecting groove is arranged on the bottom surface of the top protrusion, wherein the atomizer assembly is arranged in the second accommodating cavity, wherein the first control board is located below the atomizer assembly and the battery, wherein the display assembly is arranged along the first direction with the battery spaced therebetween, and wherein the battery is arranged along the first direction with the top protrusion and the battery is spaced therebetween. The display assembly includes a second control board and a display, the second control board is provided with a connecting hole penetrating along a first direction, the top end of the second control board is inserted into the connecting groove to connect the second control board and the top protrusion, one end of the first control board is inserted into the connecting hole to connect the second control board and the first control board, the display is arranged on the side of the second control board away from the battery, the side of the shell relative to the first direction and close to the display is provided with an exposure hole penetrating to the first accommodating cavity to expose the display, the first control board is connected to the atomization assembly, the battery and the second control board, and the second control board is connected to the battery.
2. The atomizing device according to claim 1, characterized in that: The housing assembly further comprises a closing cover plate, which is arranged on the exposure hole to close the exposure hole, and the closing cover plate is made of a transparent material.
3. The atomizing device according to claim 2, characterized in that: The display assembly also includes a button, which is arranged on the side of the second control board away from the battery. The side of the closed cover plate opposite to the first direction is provided with a through accommodating hole corresponding to the button, and the button is located in the accommodating hole.
4. The atomizing device according to claim 2, characterized in that: The closed cover plate is provided with a plurality of first fasteners along the edge of the side surface relative to the exposure hole, and the hole wall of the exposure hole is provided with a plurality of first fastener grooves corresponding to the first fasteners, and the first fasteners are fastened in the first fastener grooves to connect the closed cover plate and the shell.
5. The atomizing device according to claim 1, characterized in that: The shell assembly also includes a lower bracket arranged in the first accommodating cavity, the lower bracket is located below the first control board, the bottom surface of the lower bracket is against the bottom of the first accommodating cavity, the lower bracket supports the first control board and the bracket body, the top surface of the lower bracket is provided with a plurality of second fasteners, the bottom surface of the bracket body is provided with a plurality of third fasteners corresponding to the second fasteners, the second fasteners are fastened to the third fasteners to connect the lower bracket and the bracket body.
6. The atomizing device according to claim 1, characterized in that: The two side surfaces of the bracket body relative to the second direction are provided with guide grooves extending along the first direction, and the two side cavity walls of the first accommodating cavity relative to the second direction are provided with guide rails extending along the first direction and corresponding to the guide grooves. The guide rails are inserted into the guide grooves to connect the bracket body and the shell.
7. The atomizing device according to claim 1, characterized in that: It also includes a suction nozzle, the top surface of the shell is provided with a shell top hole that penetrates to the first accommodating cavity, the suction nozzle is installed on the shell top hole, the suction nozzle is provided with a suction channel that penetrates along the vertical direction, the top surface of the bracket body is provided with a frame top connecting hole that penetrates to the second accommodating cavity, and the frame top connecting hole is connected to the suction channel.
8. The atomizing device according to claim 7, characterized in that: It also includes a first colloid, and a surrounding plate is vertically arranged along the edge of the top surface of the bracket body. The first colloid is arranged in the surrounding plate, and the side surface of the first colloid is against the inner wall of the surrounding plate. The first colloid is provided with a first glue hole that passes through in the vertical direction, and the first glue hole is connected to the suction channel upward and connected to the connecting hole on the top of the frame downward.
9. The atomizing device according to claim 1, characterized in that: The atomization assembly includes an atomizer and oil storage cotton. The side of the oil storage cotton abuts against the cavity wall of the second accommodating cavity. The oil storage cotton is provided with an atomization channel running through in the vertical direction. The atomizer is arranged in the atomization channel. The atomizer is connected to the first control board.
10. The atomizing device according to claim 1, characterized in that: It also includes a second colloid, a fixed block and a moving block which are sequentially arranged in the first accommodating cavity from top to bottom, the bottom surface of the bracket body is provided with a frame bottom connecting hole which penetrates to the second accommodating cavity, the second colloid is arranged in the frame bottom connecting hole, the side surface of the second colloid is against the inner wall of the frame bottom connecting hole, the second colloid is provided with a second glue hole which penetrates in the vertical direction, the fixed block is provided with a plurality of first flow holes which penetrate in the vertical direction at intervals along the first direction, the first flow hole is upwardly connected to the second glue hole, the moving block is provided with a plurality of second flow holes which penetrate in the vertical direction at intervals along the first direction, the bottom surface of the outer shell is provided with a shell bottom hole which penetrates to the first accommodating cavity, and the moving block can be moved along the first direction to adjust the number of the second flow holes connected to the first flow hole and the shell bottom hole.