Atomization main machine and atomization equipment
By designing a detachable and connectable atomizing host and atomizing device, the form of the atomizing device can be changed, which solves the problem that fixed structure affects user experience, improves the flexibility and portability of use, and adapts to different needs.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-10
- Publication Date
- 2026-03-03
AI Technical Summary
The fixed structure of existing atomizing devices affects the user experience.
Atomizing host is provided, wherein the atomizing device and the power supply device can be switched between an unfolded state and a folded state, the atomizer can be detachably connected to the atomizing host, and the connecting component is electrically connected to the first atomizer and the second atomizer respectively to form an air passage connection.
It enables the atomizing device to change shape, improving its flexibility and portability, enhancing its playability, adapting to different tastes and vapor production needs, and extending the atomizer's lifespan.
Smart Images

Figure CN223958331U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of atomization technology, specifically to an atomizing host and atomizing device. Background Technology
[0002] Atomizing devices are electronic devices used to heat an atomizing substrate, causing it to produce an inhalable aerosol. Atomizing devices typically have an air inlet and an air intake channel. During inhalation, air is drawn in through the air inlet to carry away the aerosol, which is then inhaled by the user.
[0003] In some existing atomizing devices, the structure is usually fixed, which affects the user experience. Utility Model Content
[0004] This application provides an atomizing host and atomizing device to solve the problem of fixed structural form of existing atomizing devices.
[0005] In one embodiment, an atomizing host is provided for detachable connection with an atomizer. The atomizing host includes: a power supply device for supplying power to the atomizer; and an atomizing device movably connected to the power supply device. The atomizing device and the power supply device are rotatable between a first position and a second position, so that the atomizing host can switch between an unfolded state and a folded state.
[0006] In one embodiment, the atomizing device includes a connecting component having a first end and a second end; the atomizer includes a first atomizer and a second atomizer; the first end of the connecting component is used for detachable connection with the first atomizer, and the second end of the connecting component is used for detachable connection with the second atomizer.
[0007] In one embodiment, the connecting component is electrically connected to the power supply device, and the connecting component is electrically connected to the first atomizer and the second atomizer respectively.
[0008] And / or, the connecting component forms an air passage connection with the first atomizing channel of the first atomizer and the second atomizing channel of the second atomizer, respectively.
[0009] In one embodiment, the first end and the second end of the connecting component are arranged opposite to each other.
[0010] In one embodiment, the direction in which the first end of the connecting component extends to the second end is a first direction, the first end of the connecting component is an opening along the first direction for receiving the first atomizer detachably connected thereto, and the second end of the connecting component is an opening along the second direction for receiving the second atomizer detachably connected thereto, wherein the first direction and the second direction intersect.
[0011] In one embodiment, the atomizing device includes a first housing, and the connecting component includes a mounting base, a first conductive component, and a second conductive component; the mounting base is disposed within the first housing; the mounting base and the first housing define a first assembly cavity and a second assembly cavity; the first conductive component is disposed at one end of the mounting base facing the first assembly cavity and is conductively connected to the first atomizer installed therein; the second conductive component is disposed at one end of the mounting base facing the second assembly cavity and is conductively connected to the second atomizer installed therein.
[0012] In one embodiment, the opening of the first assembly cavity is located at the end of the first housing, and the opening of the second assembly cavity is located on the side of the first housing; when the atomizing host is in the unfolded state, the opening of the second assembly cavity is exposed on the surface of the atomizing host; when the atomizing host is in the folded state, the power supply device covers the opening of the second assembly cavity.
[0013] In one embodiment, the first housing further includes a first receiving groove disposed between the first assembly cavity and the second assembly cavity, and the first receiving groove is in communication with the first assembly cavity and the second assembly cavity respectively. The opening of the first receiving groove is located on the side of the first housing, and the mounting base is inserted into the first receiving groove. The communicating component includes a circuit board, and the mounting base includes a first mounting groove disposed on one side. The circuit board is disposed on the first mounting groove and is electrically connected to the first conductive component and the second conductive component respectively.
[0014] In one embodiment, the connecting component further includes a ventilation pipe and a first sealing element; one end of the mounting base is provided with a second mounting groove; the first sealing element is installed in the second mounting groove and is sealed between the mounting base and the first atomizer; the first sealing element includes a through ventilation hole, the ventilation pipe is disposed through the mounting base, and one end of the ventilation pipe is inserted into the ventilation hole, and the two ends of the ventilation pipe are respectively connected to the first assembly cavity and the second assembly cavity.
[0015] In one embodiment, the mounting base includes a main body and a connecting part. The connecting part is disposed at one end of the main body facing the first assembly cavity. A second mounting groove is disposed on the connecting part and communicates with the first mounting groove. The first sealing element further includes a first sealing part, a second sealing part, and a third sealing part connected in sequence. A vent hole is disposed on the first sealing part. The first sealing part is also provided with a detection hole. The second sealing part is provided with a mounting position communicating with the detection hole. The third sealing part is annularly arranged, and the first sealing part is located inside the third sealing part. The first sealing part is disposed in the second mounting groove, the second sealing part is disposed in the first mounting groove and abuts against the circuit board, and the third sealing part is sleeved on the outer periphery of the connecting part and sealed to the cavity wall of the connecting part and the first assembly cavity. The atomizing device further includes an airflow sensor disposed on the circuit board. The airflow sensor is installed in the mounting position and electrically connected to the circuit board.
[0016] In one embodiment, the atomizing device includes a first housing, the power supply device includes a second housing, and the atomizing host further includes a rotating base, the rotating base including a first rotating shaft and a second rotating shaft; the first housing and the first rotating shaft are rotatably connected, and the second housing is rotatably connected to the second rotating shaft, so that the power supply device rotates relative to the atomizing device.
[0017] In one embodiment, the power supply device further includes a battery, a charging circuit board, and a wire assembly; the battery and the charging circuit board are electrically connected and mounted within the second housing.
[0018] The rotating base includes a wire assembly channel connecting the interior of the first housing and the interior of the second housing; the wire assembly passes through the wire assembly channel and is electrically connected to the circuit board and the charging circuit board respectively;
[0019] And / or, the atomizing device further includes a first magnetic attraction structure disposed on the side of the first housing, and the power supply device further includes a second magnetic attraction structure disposed on the side of the second housing;
[0020] When the atomizing host is in a folded state, the first magnetic structure and the second magnetic structure are magnetically connected.
[0021] In one embodiment, an atomizing device is also provided, including an atomizing host and an atomizer detachably connected to the atomizing host; the atomizing host is any of the atomizing hosts described above.
[0022] According to the above embodiments, the atomizing host and atomizing device can be detachably connected to the atomizing host, and the atomizing device and the power supply device can rotate between a first position and a second position, so that the atomizing host can switch between an unfolded state and a folded state, thereby avoiding the defects of the fixed structure of the prior art, and having the advantages of variable shape and strong playability. Attached Figure Description
[0023] Figure 1 This is a three-dimensional structural schematic diagram of the atomizing device in its unfolded state from one perspective in one embodiment.
[0024] Figure 2 This is a three-dimensional structural diagram of the atomizing host in an unfolded state in one embodiment;
[0025] Figure 3 This is a three-dimensional structural diagram of the atomizing device in an unfolded state from another perspective in one embodiment;
[0026] Figure 4 This is a schematic diagram of the atomizing device in a folded state in one embodiment;
[0027] Figure 5 This is a three-dimensional structural diagram of the atomizing device in an unfolded state with the second atomizer removed, as shown in one embodiment.
[0028] Figure 6 This is a three-dimensional structural diagram of the atomizing device in an unfolded state with the first and second housings opened, according to one embodiment.
[0029] Figure 7 This is a cross-sectional schematic diagram of an atomizing device in one embodiment;
[0030] Figure 8 This is a partially exploded view of the atomizing device at one angle in one embodiment;
[0031] Figure 9 This is a three-dimensional structural diagram of a connected component in one embodiment;
[0032] Figure 10 This is a partially exploded schematic diagram of a connected component in one embodiment;
[0033] Figure 11 This is a cross-sectional schematic diagram of a connected component in one embodiment;
[0034] The reference numerals in the attached drawings are as follows: atomizing host 100, atomizing device 200, first atomizer 1, first atomizing channel 11, second atomizer 2, second atomizing channel 21, power supply device 3, second housing 31, rotating seat 32, first rotating shaft 321, second rotating shaft 322, wire assembly channel 323, battery 33, charging circuit board 34, wire assembly 35, atomizing device 4, connecting component 40, mounting base 401, first mounting groove 4011, second mounting groove 4012, main body 401 3. Connecting part 4014, first conductive component 402, second conductive component 403, circuit board 404, ventilation pipe 405, first seal 406, first sealing part 4062, second sealing part 4063, third sealing part 4064, detection hole 4065, mounting position 4066, ventilation hole 4061, first housing 41, first assembly cavity 411, second assembly cavity 412, first receiving groove 413, first magnetic attraction structure 43, second magnetic attraction structure 44, airflow sensor 45. Detailed Implementation
[0035] The present application will now be described in further detail with reference to the accompanying drawings and specific embodiments. Similar elements in different embodiments are referred to by related similar element reference numerals. In the following embodiments, many details are described to facilitate a better understanding of the present application. However, those skilled in the art will readily recognize that some features may be omitted in different situations, or may be replaced by other elements, materials, or methods. In some cases, certain operations related to the present application are not shown or described in the specification. This is to avoid obscuring the core parts of the present application with excessive description. For those skilled in the art, detailed description of these related operations is not necessary; they can fully understand the related operations based on the description in the specification and general technical knowledge in the art.
[0036] Furthermore, the features, operations, or characteristics described in the specification can be combined in any suitable manner to form various embodiments. At the same time, the steps or actions in the method description can be rearranged or adjusted in a manner obvious to those skilled in the art. Therefore, the various orders in the specification and drawings are only for the clear description of a particular embodiment and do not imply a necessary order, unless otherwise stated that a particular order must be followed.
[0037] The serial numbers assigned to components in this document, such as "first" and "second," are used only to distinguish the described objects and have no sequential or technical meaning. Unless otherwise specified, the terms "connection" and "linkage" used in this application include both direct and indirect connections.
[0038] Addressing the issue of fixed structural forms in existing atomizing devices, this application proposes a device where the atomizer is detachably connected to the atomizing main unit, and the atomizing device and power supply unit can rotate between a first position and a second position. This allows the atomizing main unit to switch between an unfolded state and a folded state, giving the atomizing device advantages such as variable form and high playability.
[0039] like Figures 1 to 11 As shown, in one embodiment, an atomizing host 100 is provided for detachable connection with an atomizer, combined to form an atomizing device 200. The atomizing host 100 includes a power supply device 3 and an atomizing device 4. The power supply device 3 supplies power to the atomizer. The atomizing device 4 is movably connected to the power supply device 3, and the atomizing device 4 and the power supply device 3 can rotate between a first position and a second position, so that the atomizing host can switch between an unfolded state and a folded state.
[0040] Specifically, when the atomizing device 4 and the power supply device 3 rotate to their respective first positions, such as Figure 1 As shown, the atomizing device 4 and the power supply device 3 are deployed in the X direction, and the atomizing host 100 is in the deployed state, as shown. Figure 3 As shown, the unfolded atomizer increases the overall side surface area, making it easier for users to hold and improving comfort during use.
[0041] When the atomizing device 4 and the power supply device 3 rotate to their respective second positions, such as Figure 2 As shown, the atomizing device 4 and the power supply device 3 overlap in the Y direction, and the atomizing host 100 is in a folded state, as shown. Figure 4 As shown, the folded atomizer 100 reduces the overall side area, making it easier for users to carry and providing some protection for the atomizer, extending its lifespan. Similarly, when the atomizer is unfolded, its overall thickness is reduced, allowing users to easily place the entire atomizer in their pockets with less deformation, making it easier to carry and more aesthetically pleasing. The atomizer can be rotated to the unfolded state for easy holding and inhalation in certain situations, such as during vaping, and to the folded state for easy storage. Of course, users can adjust its shape according to their actual needs.
[0042] It should be noted that even when the atomizing host 100 is folded, it does not affect its use as an atomizing device 200 when combined with the atomizer. Furthermore, the atomizing host 100 can switch between an unfolded and folded state, and users can also decompress the atomizing device 4 and the power supply device 3 by flipping them back and forth, thereby increasing its playability. This makes the overall structure more diverse and versatile, improving user flexibility and portability, and enhancing the user experience.
[0043] Furthermore, since the power supply device 3 is movably connected to one side of the atomizing device 4, it is easy to replace when the power supply device 3 runs out of power, making operation more convenient. The power supply device 3 can store batteries 33 with larger capacity and volume, and can power the atomizing device 4 for a long time, improving the comfort of use. The power supply device 3, which is movably connected to the atomizing device 4, is easy to operate and can also be easily carried when using large-capacity batteries 33.
[0044] In one embodiment, the atomizing device 4 may further include a connecting component 40 having a first end and a second end. Correspondingly, the atomizer includes a first atomizer 1 and a second atomizer 2. The first end of the connecting component 40 is used for detachable connection with the first atomizer 1, and the second end of the connecting component 40 is used for detachable connection with the second atomizer 2. It is understood that the atomizing matrix stored in the first atomizer 1 and the second atomizer 2 may be of the same flavor or different flavors, thereby adapting to different flavors, different vapor production, and other requirements.
[0045] In one embodiment, the connecting component 40 is electrically connected to the power supply device 3, and the connecting component 40 is electrically connected to the first atomizer 1 and the second atomizer 2 respectively; and / or, the connecting component 40 forms an air passage connection with the first atomization channel 11 of the first atomizer 1 and the second atomization channel 21 of the second atomizer 2 respectively.
[0046] The power supply device 3 supplies power to the first atomizer 1 and the second atomizer 2 through the connecting component 40, so that the aerosols generated by the first atomizer 1 and the second atomizer 2 can be inhaled by the user simultaneously through the air passage connected by the first atomization channel 11 and the second atomization channel 21.
[0047] The first atomizer 1 and the second atomizer 2 can both be connected electrically via contact points, or other electrical connection methods. They are detachably installed within the atomizing device 4 and electrically connected to the connecting component 40, facilitating operation and replacement. Operators can choose whether or not to install the second atomizer 2 within the atomizing device 4 and electrically connect it to the connecting component 40, depending on actual usage.
[0048] Understandably, after the user installs the second atomizer 2 inside the atomizing device 4 and electrically connects it to the connecting component 40, the connecting component 40 forms an air passage connection between the first atomizing channel 11 of the first atomizer 1 and the second atomizing channel 21 of the second atomizer 2. This allows the user to inhale vapor of the same or different flavors, and the overall vapor volume increases, thus adapting to different tastes and vapor volume requirements. When the user removes the second atomizer 2 from the atomizing device 4, the overall vapor volume decreases, making it suitable for different user groups, expanding its applicability, and making its use more diverse.
[0049] In one embodiment, the first end and the second end of the connecting component 40 are arranged opposite each other so that the first atomizer 1 and the second atomizer 2 are separately arranged at both ends of the connecting component, which facilitates assembly and replacement.
[0050] In one embodiment, such as Figures 4 to 7 As shown, the direction in which the first end of the connecting component 40 extends to the second end is the first direction. The first end of the connecting component 40 is an opening along the first direction for receiving a first atomizer 1 detachably connected thereto. The second end of the connecting component 40 is an opening along the second direction for receiving a second atomizer 2 detachably connected thereto. The first and second directions intersect. Figure 1 As shown, the first direction is the Z direction in the figure, and the second direction is the Y direction in the figure.
[0051] The first atomizer 1 is configured to be detachably connected to the first end of the connecting component 40 along the first direction, so that the first atomizer 1 is vertically installed in the atomizing device 4, which facilitates installation, improves installation efficiency, improves the coaxiality between the first atomizer 1 and the atomizing device 4, facilitates inhalation by the user, improves the comfort during use, and makes the connection between the first atomizer 1 and the atomizing device 4 tighter, thus improving the connection strength.
[0052] The second atomizer 2 is configured to be detachably connected to the second end of the connecting component 40 along the second direction. The first and second directions intersect, so that the second atomizer 2 is vertically installed in the atomizing device 4 and connected to the other end of the connecting component 40. This facilitates installation and improves installation efficiency. When the atomizing device 4 and the power supply device 3 are in a folded state, the second atomizer 2 can also be protected to a certain extent, extending its service life and making it easy to replace.
[0053] In some embodiments, the first housing 41 and the second housing 31 are cuboids with substantially the same shape, and the rotation axis of the rotating seat 32 is parallel to the length direction of the first housing 41 and the second housing 31.
[0054] In other embodiments, the shapes of the first housing 41 and the second housing 31 may also be different, and can be designed as needed. The rotation axis of the rotating seat 32 may also be set at appropriate positions in the first housing 41 and the second housing 31 as needed.
[0055] In one embodiment, such as Figures 5 to 9 As shown, the atomizing device 4 includes a first housing 41, and the connecting component 40 includes a mounting base 401, a first conductive component 402, and a second conductive component 403. The mounting base 401 is disposed inside the first housing 41, and the mounting base 401 and the first housing 41 define a first assembly cavity 411 and a second assembly cavity 412.
[0056] The first conductive component 402 is disposed at the end of the mounting base 401 facing the first assembly cavity 411 and is electrically connected to the inserted first atomizer 1. The first assembly cavity 411 enables the first atomizer 1 to be installed more stably in the first housing 41 of the atomizing device 4, improving the connection strength between the first atomizer 1 and the atomizing device 4, facilitating installation. The shape of the first assembly cavity 411 is roughly similar to the shape of the first atomizer 1, making the electrical connection between the first atomizer 1 and the connecting component 40 more stable and secure, thus making it suitable for more usage environments, providing more stable inhalation during use, and extending service life.
[0057] The second conductive component 403 is disposed at the end of the mounting base 401 facing the second assembly cavity 412 and is electrically connected to the installed second atomizer 2. The second atomizer 2 is installed in the second assembly cavity 412, which can improve the connection strength between the second atomizer 2 and the atomizing device 4, making the electrical connection between the second atomizer 2 and the connecting component 40 more stable and firm, thus making it suitable for more usage environments, providing more stable inhalation during use, and extending its service life.
[0058] The first housing 41 can be rectangular or cubic, which facilitates manufacturing and installation, allows for a tighter connection with the connecting component 40, makes it suitable for harsher operating environments, and extends its service life. Of course, the shape of the first housing 41 can also be designed into other shapes as needed.
[0059] In some embodiments, the first conductive component 402 and the second conductive component 403 are connected by contacts to output the power provided by the power supply device 3 to the first atomizer 1 and the second atomizer 2 respectively. This reduces the difficulty of replacing the first atomizer 1 and the second atomizer 2, facilitates the change of atomizing matrix and atomized smoke of different flavors, facilitates maintenance, and improves the efficiency of replacement.
[0060] In one embodiment, such as Figures 5 to 8 As shown, the opening of the first assembly cavity 411 is located at the end of the first housing 41, and the opening of the second assembly cavity 412 is located on the side of the first housing 41. Under the action of gravity, the first atomizer 1 located in the first assembly cavity 411 can be more stably installed in the first housing 41, preventing the first atomizer 1 from shaking during use and preventing the first atomizer 1 from detaching from the first housing 41 during carrying. This further improves the connection strength between the first atomizer 1 and the first housing 41, ensuring that the connecting component 40 maintains a stable electrical connection with the first atomizer 1 through the first conductive component 402, thereby improving stability during use.
[0061] Understandably, the opening of the second assembly cavity 412 is located on the side of the first housing 41, so that the inner wall of the second assembly cavity 412 supports the second atomizer 2, improving the stability and connection strength of the second atomizer 2 in the second assembly cavity 412, and ensuring that the connecting component 40 maintains a stable electrical connection with the second atomizer 2 through the second conductive component 403, thereby improving the stability of inhalation during use.
[0062] When the atomizing host is in the unfolded state, the opening of the second assembly chamber 412 is exposed on the surface of the atomizing host, making it easier for the user to remove the second atomizer 2 from the second assembly chamber 412, reducing the difficulty of replacement, improving the replacement efficiency, and making it more comfortable to use.
[0063] When the atomizing host is in a folded state, the power supply device 3 can cover the opening of the second assembly cavity 412 to prevent the second atomizer 2 from coming out of the second assembly cavity 412. When carrying it, it can improve the stability of the second atomizer 2 inside the second assembly cavity 412, reduce the shaking of the second atomizer 2, and extend its service life.
[0064] In one embodiment, such as Figures 6 to 9 As shown, the first housing 41 also includes a first receiving groove 413 disposed between the first assembly cavity 411 and the second assembly cavity 412, and the first receiving groove 413 communicates with the first assembly cavity 411 and the second assembly cavity 412 respectively. The opening of the first receiving groove 413 is located on the side of the first housing 41, and the mounting base 401 is inserted into the first receiving groove 413. The first receiving groove 413 is opened according to the shape of the mounting base 401. The first receiving groove 413 increases the contact area between the mounting base 401 and the first housing 41, making the mounting base 401 and the first housing 41 more tightly installed, reducing the shaking of the mounting base 401 during carrying, playing a certain protective role, and extending its service life. The mounting base 401 inserted into the first receiving groove 413 is easy to install and improves installation efficiency.
[0065] The first receiving groove 413, which communicates with the first assembly cavity 411 and the second assembly cavity 412, facilitates the electrical connection of the first conductive component 402 and the second conductive component 403 of the connecting component 40 with the first atomizer 1 and the second atomizer 2, respectively. This improves the efficiency of installing the first atomizer 1 or the second atomizer 2, makes the electrical connection between the first atomizer 1 and the second atomizer 2 and the connecting component 40 more stable, prevents short circuits, and improves safety.
[0066] Furthermore, the connecting component 40 includes a circuit board 404, and the mounting base 401 includes a first mounting groove 4011 provided on one side. The circuit board 404 is disposed in the first mounting groove 4011 and is electrically connected to the first conductive component 402 and the second conductive component 403, respectively. The first mounting groove 4011 provided on one side of the mounting base 401 has a shape that is approximately the same as the shape of the circuit board 404. When the circuit board 404 is placed in the first mounting groove 4011, the stability of the circuit board 404 can be improved, the shaking of the circuit board 404 during carrying can be reduced, the circuit board 404 can be prevented from being damaged, and the space occupied can be reduced, making the internal space layout more reasonable.
[0067] The circuit board 404 is electrically connected to the power supply device 3, and is also electrically connected to the first conductive component 402 and the second conductive component 403. The circuit board 404 can control the output of different or the same power to the first conductive component 402 and the second conductive component 403 as needed, thereby controlling the first atomizer 1 and the second atomizer 2 to atomize at different or the same power, thus improving the adaptability to the atomization requirements of different atomizing liquids; or, the circuit board 404 can also individually control the conductive on / off state, power, etc. of the first atomizer 1 and the second atomizer 2, thereby enabling the first atomizer 1 and the second atomizer 2 to work independently.
[0068] In one embodiment, such as Figures 9 to 11 As shown, the connecting component 40 also includes an air duct 405 and a first sealing element 406. One end of the mounting base 401 is provided with a second mounting groove 4012. The first sealing element 406 is installed in the second mounting groove 4012 and is sealed between the mounting base 401 and the first atomizer 1. The second mounting groove 4012 can improve the connection strength between the first sealing element 406 and the mounting base 401, so that the first sealing element 406 can be installed more stably on the mounting base 401. The mounting base 401 can be connected more tightly to the first housing 41, further preventing the mounting base 401 from loosening. The first sealing element 406 can improve the sealing performance between the mounting base 401 and the first atomizer 1, preventing aerosol leakage, and can also play a certain buffering protection role for the first atomizer 1.
[0069] Furthermore, the first sealing element 406 includes a through vent hole 4061, and a vent pipe 405 is disposed through the mounting base 401, with one end of the vent pipe 405 inserted into the vent hole 4061. The two ends of the vent pipe 405 are respectively connected to the first assembly cavity 411 and the second assembly cavity 412. By inserting one end of the vent pipe 405 into the vent hole 4061, the connection strength between the vent pipe 405 and the first sealing element 406 can be improved, allowing the vent pipe 405 to be installed more stably on the mounting base 401. The vent pipe 405 connects the first atomizer 1 and the second atomizer 2 located in the first assembly cavity 411 and the second assembly cavity 412 respectively, allowing users to inhale smoke of different flavors and amounts, improving the sealing between the first atomizer 1 and the second atomizer 2, thereby preventing aerosol leakage, making the user more comfortable, and reducing the waste of smoke raw materials.
[0070] In one embodiment, such as Figures 9 to 11 As shown, the first sealing part 4062 is disposed in the second mounting groove 4012, the second sealing part 4063 is disposed in the first mounting groove 4011 and abuts against the circuit board 404, and the third sealing part 4064 is sleeved on the outer periphery of the connecting part 4014 and is sealed to the cavity wall of the connecting part 4014 and the first assembly cavity 411. The atomizing device 4 also includes an airflow sensor 45 disposed on the circuit board 404. The airflow sensor 45 is installed in the mounting position 4066 and is electrically connected to the circuit board 404.
[0071] The mounting base 401 includes a main body 4013 and a connecting part 4014. The connecting part 4014 is disposed at the end of the main body 4013 facing the first assembly cavity 411. A second mounting groove 4012 is disposed on the connecting part 4014 and communicates with the first mounting groove 4011. The mounting base 401, consisting of the main body 4013 and the connecting part 4014, is easy to manufacture and can be installed by mutual locking. It also facilitates the replacement of the main body 4013 and the connecting part 4014. The mounting base 401 is manufactured by integral molding, thereby improving the connection strength between the main body 4013 and the connecting part 4014 and improving the stability between the connecting part 4014 and the first atomizer 1. The second mounting groove 4012 is provided on the connecting part 4014 and communicates with the first mounting groove 4011. The second mounting groove 4012 can further improve the connection strength between the connecting part 4014 and the first seal 406, so that the first seal 406 can be more stably installed on the connecting part 4014.
[0072] Furthermore, the first sealing element 406 also includes a first sealing portion 4062, a second sealing portion 4063, and a third sealing portion 4064 connected in sequence. A vent 4061 is provided on the first sealing portion 4062, which also has a detection hole 4065. The second sealing portion 4063 has a mounting position 4066 communicating with the detection hole 4065. The third sealing portion 4064 is annularly arranged, with the first sealing portion 4062 located inside it. The first sealing portion 4062 also has a detection hole 4065, through which the airflow sensor 45 can detect the operation of the upper first atomizer 1. In case of leakage or abnormality, it can promptly alert the user, improving safety and reducing waste of vapor material. The annular third sealing part 4064 can further fill the gap between the connecting part 4014 and the first housing 41, making the sealing between the connecting part 4014 and the first housing 41 better, further reducing the shaking of the mounting base 401 inside the first housing 41, extending its service life and improving stability.
[0073] The first sealing part 4062 is disposed within the second mounting groove 4012, the second sealing part 4063 is disposed within the first mounting groove 4011 and abuts against the circuit board 404, and the third sealing part 4064 is sleeved on the outer periphery of the connecting part 4014 and sealingly connected to the cavity wall of the connecting part 4014 and the first assembly cavity 411. The first sealing part 4062, disposed within the second mounting groove 4012, allows for a recessed installation within the second mounting groove 4012, further enhancing the connection strength between the first sealing element 406 and the mounting base 401, making the connection more stable. The second sealing part 4063, disposed within the first mounting groove 4011 and abutting against the circuit board 404, ensures the circuit board 404 is stably installed within the first mounting groove 4011, reducing vibration of the circuit board 404 during use and extending its service life.
[0074] The atomizing device 4 also includes an airflow sensor 45 disposed on the circuit board 404. The airflow sensor 45 is installed in the mounting position 4066 and electrically connected to the circuit board 404. The airflow sensor 45 installed in the mounting position 4066 can play a certain protective role, prevent external interference, improve the detection accuracy of the airflow sensor 45, make the response more sensitive, and extend the service life of the entire device.
[0075] In one embodiment, such as Figures 5 to 8As shown, the atomizing device 4 includes a first housing 41, the power supply device 3 includes a second housing 31, and the atomizing host also includes a rotating base 32. The rotating base 32 includes a first rotating shaft 321 and a second rotating shaft 322. The first housing 41 and the first rotating shaft 321 are rotatably connected, and the second housing 31 is rotatably connected to the second rotating shaft 322, so that the power supply device 3 rotates relative to the atomizing device 4.
[0076] The first housing 41 is mounted on the second housing 31 via a rotating seat 32. The first housing 41 can rotate smoothly to the side of the second housing 31 via the first rotating shaft 321 and the second rotating shaft 322 of the rotating seat 32, making it convenient for the user to fold or unfold the atomizing device 4 and the power supply device 3.
[0077] In one embodiment, such as Figures 5 to 8 As shown, the power supply device 3 also includes a battery 33, a charging circuit board 34, and a wire assembly 35. The battery 33 and the charging circuit board 34 are electrically connected and installed inside the second housing 31. The rotating seat 32 includes a wire assembly channel 323 that connects the interior of the first housing 41 and the second housing 31. The wire assembly 35 passes through the wire assembly channel 323 and is electrically connected to the circuit board 404 and the charging circuit board 34, respectively.
[0078] The battery 33 and the charging circuit board 34 are electrically connected and installed in the second housing 31. After the battery 33 is electrically connected to the charging circuit board 34, it is then electrically connected to the circuit board 404 through the wire assembly 35 and the wire assembly channel 323. The charging circuit board 34 can play a certain role in protecting the circuit board 404 and the battery 33. When a short circuit occurs inside the battery 33, the charging circuit board 34 can cut off the power transmission in time, improve the safety of the entire device during use, reduce the damage to the charging circuit board 34, and reduce maintenance costs.
[0079] In one embodiment, such as Figure 1 and Figure 5 As shown, the atomizing device 4 also includes a first magnetic structure 43, which is disposed on the side of the first housing 41. The power supply device 3 also includes a second magnetic structure 44, which is disposed on the side of the second housing 31. When the atomizing host is in a folded state, the first magnetic structure 43 and the second magnetic structure 44 are magnetically connected.
[0080] In this configuration, when the atomizing unit is in a folded state, the first magnetic structure 43 and the second magnetic structure 44 are magnetically connected. The first magnetic structure 43 and the second magnetic structure 44 can be permanent magnets with opposite polarities, using their mutual attraction to form a positioning system. Alternatively, the first housing 41 and the second housing 31 can be made of permanent magnets, utilizing their mutual attraction to form a magnetic positioning system, preventing the atomizing device 4 and the power supply device 3 from being easily unfolded, facilitating portability, further improving the stability of the second atomizer 2 within the second assembly cavity 412, and enhancing the connection strength.
[0081] In one embodiment, such as Figures 1 to 7 As shown, the conductor assembly channel includes a first conductor channel and a second conductor channel respectively opened on the first rotating shaft 321 and the second rotating shaft 322.
[0082] The first and second wire channels, respectively located in the first and second rotating shafts 431 and 432, are respectively positioned around the first and second rotating shafts 321 and 322. When the first and second housings 41 rotate relative to each other, switching the atomizer between an unfolded and folded state, the wire assembly 35 located in the first and second wire channels of the wire assembly channel 323 remains unaffected. This ensures that the wire assembly 35 continues to stably transmit power to the first conductive component 402 and the second conductive component 403 at both ends of the circuit board 404. In other words, the atomizer 100 can always be powered through the wire assembly 35 in both unfolded and folded states, guaranteeing that the atomizer is always operational in different states. This design reduces manufacturing costs, allows for long-term use, maintains stable power delivery even after extended use, facilitates maintenance, and provides greater convenience and ease of use for users, thus improving the user experience.
[0083] In one embodiment, such as Figures 1 to 7 As shown, the rotating base 32 includes a base with both ends extending through it, and a first end member and a second end member mounted on both ends of the base. The first end member includes a first shaft portion and a second shaft portion, which extend through the base and communicate with its interior. The second end member includes a third shaft portion and a fourth shaft portion, which extend through the base and communicate with its interior. The first and third shaft portions are coaxially arranged to form a first rotating shaft 321, and the second and fourth shaft portions are coaxially arranged to form a second rotating shaft 322.
[0084] The first and second shaft portions of the first end member are respectively installed in the first and second connecting grooves. The first end member further enhances the connection strength between the first housing 41 and the second housing 31, making their rotation more stable and extending their service life. Similarly, the third and fourth shaft portions of the second end member further enhance the connection strength between the first housing 41 and the second housing 31, making their rotation axis more centered, their rotational torque more uniform, reducing wear on the first housing 41 and the second housing 31, and further extending their service life.
[0085] The first and / or second shaft portions are through-connected, as are the third and / or fourth shaft portions, and all are connected to the interior of the base. This allows the wire assembly 35 to pass through the first shaft portion and exit through the second shaft portion, enabling it to stably transmit power from the power supply component 1 to the component 2 to be powered. Similarly, the wire assembly 35 can also pass through the first shaft portion and exit through the fourth shaft portion, again ensuring a stable power transmission from the power supply component 1 to the component 2. Likewise, the wire assembly 35 can also pass through the third shaft portion, pass through the interior of the base, and then exit through the fourth or second shaft portion, thus ensuring a stable power transmission from the power supply component 1 to the component 2. The above-described arrangement of the wire assembly 35 can be selected according to different usage environments, for example:
[0086] When the conductor assembly 35 has only one conductor, and it enters from the first shaft and exits from the second shaft, the entire conductor assembly 35 is arranged in a U-shape within the base. This reduces the wiring length of the conductor assembly 35, saves materials, and further reduces manufacturing costs. When the conductor assembly 35 enters from the first shaft and exits from the fourth shaft, the entire conductor assembly 35 is arranged in a Z-shape within the base. This reduces the curvature of the conductor assembly 35, further extending its service life. Similarly, when the conductor assembly 35 enters from the third shaft and exits from the fourth or second shaft, it reduces the wiring length of the conductor assembly 35, saving materials and further reducing manufacturing costs, or it reduces the curvature of the conductor assembly 35, further extending its service life.
[0087] When the wire assembly 35 has multiple wires, the multiple wires can be passed through the first or third shaft respectively, and then pass out through the second or fourth shaft. This allows multiple wires to pass through the first, second, third, and fourth shafts respectively, so that installers can arrange them according to different usage environments. This further reduces the material consumption of the wire assembly 35, makes the wiring more reasonable and simple, facilitates maintenance, and can also prevent short circuits between wires, thus improving safety.
[0088] In one embodiment, such as Figures 1 to 11 As shown, this application also provides an atomizing device 200, including the aforementioned atomizing host 100, a first atomizer 1, and a second atomizer 2, wherein the atomizing host 100 provides electrical energy for the operation of the first atomizer 1 and the second atomizer 2.
[0089] The atomizing host 100 can be any of the atomizing hosts described in the above embodiments. The atomizing device 4 of the atomizing host 100 is movably connected to the power supply device 3. The atomizing device 4 and the power supply device 3 can rotate between a first position and a second position relative to each other, so that the atomizing host can switch between an unfolded state and a folded state. The atomizing device 4 includes a connecting component 40. The first atomizer 1 is configured to be detachably connected to one end of the connecting component 40, and the second atomizer 2 is configured to be selectively detachably connected to the other end of the connecting component 40.
[0090] The connecting component 40 is electrically connected to the power supply device 3, and is also electrically connected to the first atomizer 1 and the second atomizer 2. And / or, the connecting component 40 forms an airflow connection between the first atomization channel 11 of the first atomizer 1 and the second atomization channel 21 of the second atomizer 2. The connecting component 40 allows the atomizing device to switch between a first and a second form, and by providing aerosol through the first atomizer 1 and the second atomizer 2, it avoids the shortcomings of existing technologies that offer only a single form and flavor. This gives the atomizing device advantages such as variable form and customizable flavor, thereby improving the user's vaping experience.
[0091] In some embodiments, the first atomizer 1 may include a first atomizing shell, a first atomizing component, a mouthpiece, etc. A first atomizing chamber is provided in the first atomizing shell for storing the atomizing matrix. The shape of the first atomizing shell matches the shape of the first assembly chamber so that the first atomizer can be detachably inserted into the first assembly chamber.
[0092] The first atomizing component is disposed inside the first atomizing housing and is used to heat the atomizing matrix to generate an aerosol. The nozzle is disposed at the upper end of the first atomizing housing and has a suction channel connected to the first atomizing channel of the first atomizing component to provide a suction channel for the user.
[0093] Furthermore, in some embodiments, the lower end of the first atomizing component is provided with a contact that is electrically connected to the connecting component 40. The connecting component 40 can supply power to the first atomizing component through the contact connection. Of course, various other existing methods can also be used for power supply.
[0094] In some embodiments, the second atomizer 2 may include a second atomizing housing and a second atomizing assembly. A second atomizing chamber is provided in the second atomizing housing for storing the atomizing matrix. The shape of the second atomizing housing matches the shape of the second assembly chamber so that the second atomizer can be detachably inserted into the second assembly chamber.
[0095] The second atomizing component is disposed inside the second atomizing shell and is used to heat the atomizing matrix to generate an aerosol. Furthermore, an atomizing outlet is provided at the upper end of the second atomizing shell, which is connected to the second atomizing channel of the second atomizing component. The aerosol generated by the second atomizing component can be output to the first atomizing component through the connecting component, and then inhaled by the user through the mouthpiece.
[0096] Furthermore, in some embodiments, the upper end of the second atomizing component is provided with a contact that is electrically connected to the connecting component 40. The connecting component 40 can supply power to the second atomizing component through the contact connection. Of course, other existing power supply methods can also be used.
[0097] Understandably, in some embodiments, the atomizing device may also include a control switch, a power indicator light, or a mode indicator light, which can be configured according to actual needs.
[0098] The above examples illustrate this application only to aid understanding and are not intended to limit its scope. Those skilled in the art to which this application pertains can make various simple deductions, modifications, or substitutions based on the ideas presented.
Claims
1. An atomization host, characterized by, A power supply device is configured to supply power to the atomizer. A power supply device is configured to supply power to the atomizer. The atomization device is movably connected to the power supply device, and the atomization device and the power supply device are rotatable between a first position and a second position to enable the atomization main machine to switch between an unfolded state and a folded state.
2. The atomization host of claim 1, wherein, The atomization device includes a communication assembly having a first end and a second end; the atomizer includes a first atomizer and a second atomizer; The first end of the communication assembly is configured to be detachably connected to the first atomizer, and the second end of the communication assembly is configured to be detachably connected to the second atomizer.
3. The atomization host of claim 2, wherein, The communication assembly is electrically connected to the power supply device, and the communication assembly is electrically connected to the first atomizer and the second atomizer respectively. And / or, the communication assembly forms an air path communication between a first atomization channel of the first atomizer and a second atomization channel of the second atomizer respectively.
4. The atomization host of claim 2, wherein, The first end and the second end of the communication assembly are oppositely arranged.
5. The atomization host of claim 4, wherein, The first end of the communication assembly extends to the second end in a first direction, the first end of the communication assembly is an opening in the first direction for receiving the first atomizer detachably connected thereto, and the second end of the communication assembly is an opening in a second direction for receiving the second atomizer detachably connected thereto, the first direction and the second direction intersect.
6. The atomization host of claim 2, wherein, The atomization device includes a first housing, and the communication assembly includes a mounting seat, a first conductive assembly, and a second conductive assembly. The mounting seat is arranged in the first housing; the mounting seat and the first housing define a first assembly cavity and a second assembly cavity; The first conductive assembly is arranged at one end of the mounting seat facing the first assembly cavity and is conductively connected to the first atomizer; The second conductive assembly is arranged at one end of the mounting seat facing the second assembly cavity and is conductively connected to the second atomizer.
7. The atomization host of claim 6, wherein, The opening of the first assembly cavity is located at the end of the first housing, and the opening of the second assembly cavity is located at the side of the first housing; When the atomization main machine is in the unfolded state, the opening of the second assembly cavity is exposed on the surface of the atomization main machine; When the atomization main machine is in the folded state, the power supply device covers the opening of the second assembly cavity.
8. The atomization host of claim 6, wherein, The first housing further includes a first accommodating groove arranged between the first assembly cavity and the second assembly cavity, and the first accommodating groove is in communication with the first assembly cavity and the second assembly cavity respectively, the opening of the first accommodating groove is located at the side of the first housing, and the mounting seat is inserted into the first accommodating groove; The communication assembly includes a circuit board, and the mounting seat includes a first mounting groove arranged on one side; The circuit board is arranged on the first mounting groove and is conductively connected to the first conductive assembly and the second conductive assembly respectively.
9. The atomization host of claim 8, wherein, The communication assembly further includes an air pipe and a first sealing member; One end of the mounting seat is provided with a second mounting groove; the first sealing member is mounted in the second mounting groove and is sealingly connected between the mounting seat and the first atomizer; The first sealing member comprises a through ventilation hole, the ventilation pipe is arranged through the mounting seat, and one end of the ventilation pipe is inserted into the ventilation hole, and the two ends of the ventilation pipe are respectively communicated with the first assembly cavity and the second assembly cavity.
10. The atomization host of claim 9, wherein, The mounting seat comprises a main body part and a connecting part, the connecting part is arranged at one end of the main body part towards the first assembly cavity, the second mounting groove is arranged on the connecting part and is communicated with the first mounting groove; The first sealing member further comprises a first sealing part, a second sealing part and a third sealing part connected in sequence, the ventilation hole is arranged on the first sealing part, the first sealing part is further provided with a detection hole, the second sealing part is provided with a mounting position communicated with the detection hole, the third sealing part is arranged in an annular shape, and the first sealing part is located inside the third sealing part; wherein, the first sealing part is arranged in the second mounting groove, the second sealing part is arranged in the first mounting groove and abuts on the circuit board, and the third sealing part is sleeved on the outer periphery of the connecting part and is sealingly connected to the connecting part and the cavity wall of the first assembly cavity; The atomization device further comprises an airflow sensor arranged on the circuit board, the airflow sensor is mounted in the mounting position and is electrically connected with the circuit board.
11. The atomizing host of any one of claims 1-10, wherein, The atomization device comprises a first shell, the power supply device comprises a second shell, and the atomization main machine further comprises a rotating seat, the rotating seat comprises a first rotating shaft and a second rotating shaft; The first shell and the first rotating shaft are rotatably connected, and the second shell and the second rotating shaft are rotatably connected, so that the power supply device is relatively rotated with respect to the atomization device.
12. The atomization host of claim 11, wherein, The power supply device further comprises a battery, a charging circuit board and a wire assembly; the battery and the charging circuit board are electrically connected and mounted in the second shell; The rotating seat comprises a wire assembly channel communicating the interiors of the first shell and the second shell; the wire assembly passes through the wire assembly channel and is electrically connected with the circuit board and the charging circuit board respectively; And / or, the atomization device further comprises a first magnetic attraction structure, the first magnetic attraction structure is arranged on the side surface of the first shell, the power supply device further comprises a second magnetic attraction structure, and the second magnetic attraction structure is arranged on the side surface of the second shell; In the folding state of the atomization main machine, the first magnetic attraction structure and the second magnetic attraction structure are magnetically connected.
13. An atomising device characterised in that The atomization main machine comprises an atomization main machine and an atomizer detachably connected with the atomization main machine, and the atomization main machine is the atomization main machine according to any one of claims 1-12.