Shell assembly and atomization device

By setting a wire channel on the rotating mounting base, the problems of high cost and poor contact in the conductive connection of the aerosol generating device are solved, achieving stable power transmission and convenient use, reducing costs and extending service life.

CN223958334UActive Publication Date: 2026-03-03HG INNOVATION LTD
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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

Technical Problem

Existing aerosol generation devices have high costs for conductive connections and are prone to poor contact, affecting ease of use and stability.

Method used

By setting a first wire channel and a second wire channel on the rotating mounting base for the wire assembly to pass through, the use of spring electrodes as conductive links is avoided, thus achieving stable power transmission.

Benefits of technology

It reduces the cost of conductive connections, improves the reliability and convenience of connections, extends service life, and enhances the user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a shell assembly and an atomization device. The shell assembly is applied to the atomization device, the atomization device comprises a power supply assembly, a to-be-powered assembly and a wire assembly, and the shell assembly comprises a first shell, a second shell and a rotary mounting base. The rotating mounting seat comprises a first rotating shaft and a second rotating shaft of which the axes are parallel, and the second shell rotates relative to the first shell; at least one wire channel for the wire assembly to pass through is arranged in the rotary mounting seat, the at least one wire channel is arranged between the first rotating shaft and the second rotating shaft in a penetrating manner, and the at least one wire channel comprises a first wire channel arranged in at least part of the first rotating shaft and a second wire channel arranged in at least part of the second rotating shaft; the two ends of the wire assembly are electrically connected with the power supply assembly and the to-be-powered assembly respectively. The wire channel is arranged on the rotary mounting seat for the wire assembly to pass through, so that the defect that a spring electrode is required to be used as a conductive link in the prior art is overcome, and the connector has the advantages of reliable connection, low cost and the like.
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Description

Technical Field

[0001] This application relates to the field of atomization technology, specifically to a housing assembly and an atomizing device. Background Technology

[0002] Atomizing devices are electronic devices used to heat an atomizing medium, 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] Some existing aerosol generating devices include: a first housing for housing an aerosol product, the first housing containing a heating element for heating the aerosol product to generate an aerosol; and a second housing movably connected to the first housing, the first and second housings being rotatable relative to each other between a first position and a second position, allowing the aerosol generating device to switch between an unfolded state and a folded state. The second housing contains a main board, a power supply unit electrically connected to the main board, and connection terminals. The main board integrates a heating circuit electrically connected to the heating element and a charging circuit electrically connected to the power supply unit. This method allows the aerosol generating device to be folded for convenient storage.

[0004] However, the existing aerosol generation devices use spring electrodes as conductive connections between the battery and the mainboard, which is costly and prone to poor contact, affecting conductivity. Furthermore, the conductive connection between the two rotating housings requires a rotating contact structure, which also results in high cost and a high risk of poor contact. Moreover, the conductive connection between the first and second housings can only be established when rotated to specific positions, limiting its ease of use. Utility Model Content

[0005] This application provides a housing assembly and an atomizing device to solve the problems of high cost, poor contact, and instability of conductive hinges in existing aerosol generating devices.

[0006] In one embodiment, a housing assembly is provided for use in an atomizing device. The atomizing device includes a power supply component, a component to be powered, and a wire assembly. The housing assembly includes: a first housing for housing the component to be powered; a second housing for housing the power supply component; and a rotating mounting base, the rotating mounting base including a first rotating shaft and a second rotating shaft with parallel axes. The first housing is rotatably connected to the first rotating shaft, and the second housing is rotatably connected to the second rotating shaft, so that the second housing rotates relative to the first housing. The rotating mounting base has at least one wire channel for the wire assembly to pass through. The at least one wire channel passes between the first rotating shaft and the second rotating shaft, including a first wire channel formed in at least a portion of the first rotating shaft and a second wire channel formed in at least a portion of the second rotating shaft. The two ends of the wire assembly are electrically connected to the power supply component and the component to be powered, respectively.

[0007] In one embodiment, the first housing and the second housing are rotatable between a first position and a second position relative to each other, so that the housing assembly can switch between an unfolded state and a folded state.

[0008] In one embodiment, the first housing is provided with a first connecting groove communicating with the interior, and the second housing is provided with a second connecting groove communicating with the interior; the first rotating shaft is rotatably connected to the first connecting groove, and at least one end of the first rotating shaft is communicating with the interior of the first housing; the second rotating shaft is rotatably connected to the second connecting groove, and at least one end of the second rotating shaft is communicating with the interior of the second housing; the wire assembly is guided from the interior of the first housing, through one end of the first rotating shaft and one end of the second rotating shaft, to the interior of the second housing.

[0009] In one embodiment, the rotating mounting base includes a base through which both ends are disposed and a first end member and a second end member mounted at both ends of the base; the first end member includes a first shaft portion and a second shaft portion, the first shaft portion and / or the second shaft portion being through-distributed and communicating with the interior of the base; the second end member includes a third shaft portion and a fourth shaft portion, the third shaft portion and / or the fourth shaft portion being through-distributed and communicating with the interior of the base; the first shaft portion and the third shaft portion are coaxially disposed to form a first rotating shaft; the second shaft portion and the fourth shaft portion are coaxially disposed to form a second rotating shaft.

[0010] In one embodiment, the first wire channel is formed between the first shaft portion, the second shaft portion, and the base; the second wire channel is formed between the third shaft portion, the fourth shaft portion, and the base; the wire assembly includes a first wire and a second wire, the first wire passing through the first wire channel and the second wire passing through the second wire channel.

[0011] In one embodiment, the rotating mounting base has a wire-passing space; the first shaft portion has a first through hole penetrating the wire-passing space; the second shaft portion has a second through hole penetrating the wire-passing space; the first through hole, the wire-passing space, and the second through hole communicate to form the first wire channel; the third shaft portion has a third through hole penetrating the wire-passing space; the fourth shaft portion has a fourth through hole penetrating the wire-passing space; the third through hole, the wire-passing space, and the fourth through hole communicate to form the second wire channel.

[0012] In one embodiment, the housing assembly further includes a mounting base fixed in the first housing; the mounting base includes a first limiting notch on one side and first mounting positions at both ends of the first limiting notch; the first limiting notch and the first housing define the first connecting groove, the first rotating shaft is limited and mounted in the first limiting notch, and the first rotating shaft is rotatably mounted in the first mounting position.

[0013] In one embodiment, the first housing includes a first receiving groove communicating with the first connecting groove, and the second housing includes a second receiving groove communicating with the second connecting groove. The mounting base is disposed within the first receiving groove. The component to be powered includes a first circuit board disposed in the first receiving groove. The mounting base includes a first mounting groove and a wire passage groove disposed opposite to each other and communicating with each other. The first circuit board is disposed within the first mounting groove, and the wire passage groove communicates with the first limiting notch. The power supply component includes a battery and a second circuit board electrically connected to the second receiving groove. One end of the wire assembly is electrically connected to the first circuit board, and the other end of the wire assembly passes sequentially through the wire passage groove, the first connecting groove, and the second connecting groove, and is electrically connected to the second circuit board. And / or, the housing assembly further includes a fixing seat fixed in the second housing. The fixing seat includes a second limiting notch opened on one side and second mounting positions disposed at both ends of the second limiting notch. The second limiting notch and the second housing define the second connecting groove. The second rotating shaft is limited and mounted in the second limiting notch, and the second rotating shaft is rotatably mounted in the second mounting position.

[0014] In one embodiment, an atomizing device is also provided, comprising: a housing assembly, a power supply assembly, a component to be powered, and a wire assembly; the housing assembly is any of the housing assemblies described above; the power supply assembly is used to provide electrical energy to the component to be powered.

[0015] In one embodiment, the atomizing device further includes a first atomizer and a second atomizer, the first atomizer and / or the second atomizer being detachably connected to the first housing; the power supply component further includes a first circuit board and at least two sets of conductive components; the two sets of conductive components are respectively located at both ends of the first circuit board and are conductively connected to the first atomizer and the second atomizer respectively; the power supply component includes a battery and a second circuit board; one end of the wire assembly is conductively connected to the first circuit board, and the other end passes through the wire channel and is conductively connected to the second circuit board.

[0016] According to the rotating mounting base and atomizing device of the above embodiments, by providing a first wire passage and a second wire passage on the rotating mounting base for the connecting wire to pass through, the defect of the prior art requiring the use of spring electrodes as conductive links is avoided, and the device has the advantages of reliable connection and low cost. Attached Figure Description

[0017] Figure 1 This is a three-dimensional structural schematic diagram of the atomizing device in its deployed state from one perspective in one embodiment.

[0018] Figure 2 This is a three-dimensional structural diagram of the internal structure of the atomizing device in one embodiment;

[0019] Figure 3 This is a partially exploded view of the atomizing device at one angle in one embodiment;

[0020] Figure 4 This is a cross-sectional schematic diagram of the housing assembly in one embodiment;

[0021] Figure 5 This is a schematic diagram of the structure of the first connecting groove and the second connecting groove in one embodiment;

[0022] Figure 6 This is a partially exploded view of the rotating mounting base in one embodiment;

[0023] Figure 7 This is a cross-sectional schematic diagram of a rotating mounting base in one embodiment;

[0024] Figure 8 This is a partial cross-sectional schematic diagram of the mounting base and the fixing base in one embodiment;

[0025] Figure 9This is a schematic diagram of a first atomizer and a second atomizer installed in a first housing in one embodiment;

[0026] Figure 10 for Figure 9 An enlarged schematic diagram of a portion of the structure in which the first atomizer and the second atomizer are installed in the first housing, according to one embodiment;

[0027] Figure 11 This is a schematic diagram of the structure of the first mounting slot and the first circuit board in one embodiment;

[0028] The reference numerals in the attached drawings are as follows: power supply component 1, battery 11, second circuit board 12, component to be powered 2, first circuit board 21, conductive component 22, wire assembly 3, first wire 31, second wire 32, housing assembly 4, first housing 41, first connecting groove 411, first receiving groove 412, second housing 42, second connecting groove 421, second receiving groove 422, rotating mounting base 43, first rotating shaft 431, second rotating shaft 432, base 433, first end piece 434, first shaft portion 4341, second shaft portion 4342, second end piece 4 35. Third shaft portion 4351, fourth shaft portion 4352, wire passage space 436, first through hole 4361, second through hole 4362, third through hole 4363, fourth through hole 4364, wire channel 44, first wire channel 441, second wire channel 442, mounting base 45, first limiting notch 451, first mounting position 452, first mounting groove 453, wire passage groove 454, fixing base 46, second limiting notch 461, second mounting position 462, first atomizer 5, second atomizer 6, first magnetic structure 7, second magnetic structure 8. Detailed Implementation

[0029] 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.

[0030] 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.

[0031] 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.

[0032] To address the issues of high cost and instability of conductive hinges in existing atomizing devices, this application proposes a solution. By providing a first and second wire channel on the rotating mounting base for the connecting wires to pass through, the prior art avoids the need for spring electrodes as conductive links, offering advantages such as reliable connection and low cost.

[0033] like Figures 1 to 7 As shown, in one embodiment, a housing assembly is provided that can be applied to an atomizing device. The atomizing device includes a power supply component 1, a component to be powered 2, and a wire assembly 3, wherein the power supply component 1 supplies power to the component to be powered 2 through the wire assembly 3.

[0034] The housing assembly 4 includes: a first housing 41 for housing the component to be powered 2; a second housing 42 for housing the power supply component 1; and a rotating mounting base 43, which includes a first rotating shaft 431 and a second rotating shaft 432 with parallel axes. The first housing 41 is rotatably connected to the first rotating shaft 431, and the second housing 42 is rotatably connected to the second rotating shaft 432, so that the second housing 42 rotates relative to the first housing 41.

[0035] The first housing 41 houses the component 2 to be powered, providing some protection and extending its service life. Similarly, the second housing 42 houses the power supply component 1, providing some protection, further improving safety, and extending its service life.

[0036] The first housing 41 and the second housing 42 are rotatably connected to the first rotating shaft 431 and the second rotating shaft 432, respectively. This allows the first housing 41 to rotate relative to the second housing 42, enabling the atomizing device to 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 for easy carrying and use. Furthermore, the separate housings increase the battery capacity of the power supply component, allowing for extended use.

[0037] The rotating mounting base 43 is provided with at least one wire channel 44 for the wire assembly 3 to pass through. The at least one wire channel 44 passes between the first rotating shaft 431 and the second rotating shaft 432. The two ends of the wire assembly 3 are electrically connected to the power supply component 1 and the component to be powered 2, respectively.

[0038] The wire channel 44 provided in the rotating mounting base 43 allows the power supply wire assembly 3 to easily reach the component to be powered 2 from the power supply component 1 through the first rotating shaft 431 and the second rotating shaft 432, supplying power to the component to be powered 2. The wire channel 44 enables the atomizing host to complete a stable power supply in both the unfolded and folded states, making it more convenient and effortless for users, reducing the overall manufacturing cost of the atomizing host and improving the user experience.

[0039] The wire channel 44 includes a first wire channel 441 formed in at least a portion of the first rotating shaft 431 and a second wire channel 442 formed in at least a portion of the second rotating shaft 432. Since the first housing 41 and the second housing 42 rotate around the first rotating shaft 431 and the second rotating shaft 432 respectively, when the atomizing host switches between an unfolded and folded state due to the relative rotation of the first housing 41 and the second housing 42, the wire assembly 3 located in the first wire channel 441 and the second wire channel 442 remains unaffected. This allows the wire assembly 3 to continue to stably transmit power to the component 2 to be powered, thereby reducing manufacturing costs, enabling long-term use, maintaining stable power delivery even after prolonged use, facilitating maintenance, and providing greater convenience and effort for users, thus improving the user experience.

[0040] In one embodiment, such as Figures 1 to 7 As shown, the first housing 41 and the second housing 42 can rotate between a first position and a second position relative to each other, so that the housing assembly 4 can switch between an unfolded state and a folded state.

[0041] Understandably, when the shell assembly 4 is in the unfolded state, the increased side surface area makes it easier for the user to grip and improves comfort during use. When the shell assembly 4 is in the folded state, the reduced side surface area makes it easier for the user to carry. Similarly, when the shell assembly 4 is in the unfolded state, the overall thickness is reduced, allowing the user to easily place the entire shell assembly 4 into a pocket, reducing pocket deformation, making it easier to carry and more aesthetically pleasing. This allows the shell assembly 4 to switch between different configurations, such as when pumping, where it can be rotated to the unfolded state for easier gripping and pumping, and when storing, where it can be rotated to the folded state for easier storage. Of course, users can adjust its configuration according to their actual needs.

[0042] Since the power supply component 1 is housed inside the second housing 42, it is easy to replace when the power supply component 1 runs out of power, making the operation more convenient. The power supply component 1 can store batteries 11 with larger capacity and volume, which can power the atomizing device for a long time, improve the comfort of use, and make it easy to carry when using large-capacity batteries 11.

[0043] In one embodiment, such as Figures 4 to 10 As shown, the first housing 41 is provided with a first connecting groove 411 communicating with the interior, and the second housing 42 is provided with a second connecting groove 421 communicating with the interior. A first rotating shaft 431 is rotatably connected to the first connecting groove 411, and at least one end of the first rotating shaft 431 is in communication with the interior of the first housing 41. A second rotating shaft 432 is rotatably connected to the second connecting groove 421, and at least one end of the second rotating shaft 432 is in communication with the interior of the second housing 42. The wire assembly 3 is guided from the interior of the first housing 41, through one end of the first rotating shaft 431 and one end of the second rotating shaft 432, to the interior of the second housing 42.

[0044] The first connecting groove 411 provided on the first housing 41 enables the first rotating shaft 431 to be more stably connected to the first housing 41, improving the connection strength between the first rotating shaft 431 and the first housing 41. This makes it more stable when switching the form of the housing assembly 4 during use and further reduces installation costs. Similarly, the second connecting groove 421 provided on the second housing 42 enables the second rotating shaft 432 to be more stably connected to the second housing 42, improving the connection strength between the second housing 42 and the first housing 41. This also makes it more stable when switching the form of the housing assembly 4 during use.

[0045] At least one end of the first rotating shaft 431 is connected to the interior of the first housing 41, and at least one end of the second rotating shaft 432 is connected to the interior of the second housing 42. This allows the wire assembly 3 to pass through the first rotating shaft 431 and the second rotating shaft 432 from the interior of the first housing 41 to the interior of the second housing 42. This makes it easier for the wire assembly 3 to transmit power from the power supply component 1 inside the second housing 42 to the component 2 to be powered. During power transmission, the entire wire assembly 3 is enclosed by the first housing 41, the second housing 42, the first rotating shaft 431, and the second rotating shaft 432, employing a buried wire power transmission method. This further improves the overall aesthetics, enhances safety during use, facilitates installation, reduces assembly difficulty, and lowers manufacturing costs.

[0046] In one embodiment, such as Figures 1 to 7 ,and Figure 11As shown, the rotating mounting base 43 includes a base 433 through which both ends are disposed, and a first end piece 434 and a second end piece 435 mounted on both ends of the base 433. The first end piece 434 includes a first shaft portion 4341 and a second shaft portion 4342, which are through and communicate with the interior of the base 433.

[0047] The second end member 435 includes a third shaft portion 4351 and a fourth shaft portion 4352, which are disposed through each other and communicate with the interior of the base 433. The first shaft portion 4341 and the third shaft portion 4351 are coaxially disposed to form a first rotating shaft 431, and the second shaft portion 4342 and the fourth shaft portion 4352 are coaxially disposed to form a second rotating shaft 432.

[0048] The first shaft portion 4341 and the second shaft portion 4342 of the first end member 434 are respectively installed in the first connecting groove 411 and the second connecting groove 421. The first end member 434 can further improve the connection strength between the first housing 41 and the second housing 42, making the rotation between the first housing 41 and the second housing 42 more stable and further extending the service life of the housing assembly 4. Similarly, the third shaft portion 4351 and the fourth shaft portion 4352 of the second end member 435 can further improve the connection strength between the first housing 41 and the second housing 42, making the rotation axis between the first housing 41 and the second housing 42 more centered, the rotation torque more uniform, reducing wear on the first housing 41 and the second housing 42, and further extending the service life of the housing assembly 4.

[0049] The first shaft portion 4341 and / or the second shaft portion 4342 are connected through each other, as are the third shaft portion 4351 and / or the fourth shaft portion 4352, and all are connected to the interior of the base 433. This allows the wire assembly 3 to pass through the first shaft portion 4341 and then out through the second shaft portion 4342, enabling the wire assembly 3 to stably transmit power from the power supply component 1 to the component 2 to be powered. Similarly, the wire assembly 3 can also pass through the first shaft portion 4341 and then out through the fourth shaft portion 4352, again enabling the wire assembly 3 to stably transmit power from the power supply component 1 to the component 2 to be powered. Likewise, the wire assembly 3 can also pass through the third shaft portion 4351, pass through the interior of the base 433, and then out through the fourth shaft portion 4352 or the second shaft portion 4342, thus enabling the wire assembly 3 to stably transmit power from the power supply component 1 to the component 2 to be powered. The above-described arrangement of the wire assembly 3 can be selected according to different usage environments, for example:

[0050] When the conductor assembly 3 has only one conductor, and it enters from the first shaft portion 4341 and exits from the second shaft portion 4342, the entire conductor assembly 3 is arranged in a U-shape within the base 433. This reduces the wiring length of the conductor assembly 3, saves materials, and further reduces manufacturing costs. However, when the conductor assembly 3 enters from the first shaft portion 4341 and exits from the fourth shaft portion 4352, the entire conductor assembly 3 is arranged in a Z-shape within the base 433. This reduces the curvature of the conductor assembly 3, further extending its service life. Similarly, when the conductor assembly 3 enters from the third shaft portion 4351 and exits from the fourth shaft portion 4352 or the second shaft portion 4342, it can respectively reduce the wiring length of the conductor assembly 3, saving materials and further reducing manufacturing costs, or reduce the curvature of the conductor assembly 3, further extending its service life.

[0051] When the wire assembly 3 has multiple wires, the multiple wires can be passed through the first shaft 4341 or the third shaft 4351 respectively, and then passed out through the second shaft 4342 or the fourth shaft 4352. This allows multiple wires to pass through the first shaft 4341, the second shaft 4342, the third shaft 4351 and the fourth shaft 4352 respectively, so that the installer can arrange them according to different usage environments. This further reduces the material consumption of the wire assembly 3, makes the wiring more reasonable and simple, facilitates maintenance, and can also prevent short circuits between wires, thus improving safety.

[0052] The first end piece 434 includes two first unit pieces joined together in the plane containing the axes of the first shaft portion 4341 and the second shaft portion 4342; the second end piece 435 includes two second unit pieces joined together in the plane containing the axes of the third shaft portion 4351 and the fourth shaft portion 4352. The two first unit pieces and two second unit pieces facilitate the installation of the wire assembly 3 within the first end piece 434 and the second end piece 435, further improving installation efficiency. Furthermore, if any of the first or second unit pieces are damaged, they can be replaced promptly, further reducing maintenance costs, alleviating labor intensity, and facilitating operation.

[0053] In one embodiment, such as Figures 4 to 7 As shown, at least one conductor channel 44 includes a first conductor channel 441 and a second conductor channel 442. The first conductor channel 441 is formed between the first shaft portion 4341, the second shaft portion 4342, and the base 433, and the second conductor channel 442 is formed between the third shaft portion 4351, the fourth shaft portion 4352, and the base 433. The conductor assembly 3 includes a first conductor 31 and a second conductor 32, with the first conductor 31 passing through the first conductor channel 441 and the second conductor 32 passing through the second conductor channel 442.

[0054] The first conductor channel 441 formed between the first shaft portion 4341, the second shaft portion 4342, and the base 433 allows installers to stably fix the conductor assembly 3 within it. This prevents the conductor assembly 3 from being clamped due to large displacement when the first housing 41 and the second housing 42 rotate relative to each other, thereby improving the stability of the conductor assembly 3 within the first conductor channel 441, extending its service life, and making power transmission more stable. The first conductor channel 441 between the first shaft portion 4341, the second shaft portion 4342, and the base 433 also facilitates installation and reduces manufacturing costs. Similarly, the second conductor channel 442 formed between the third shaft portion 4351, the fourth shaft portion 4352, and the base 433 further improves the stability of the conductor assembly 3 within the second conductor channel 442, extending its service life and making power transmission more stable.

[0055] Furthermore, the second wire channel 442 and the first wire channel 441 can increase the wiring methods of the wire assembly 3, making it suitable for more usage scenarios and facilitating installation. Different wiring methods can be selected according to different usage methods.

[0056] The wire assembly 3 includes a first wire 31 and a second wire 32. The first wire 31 passes through a first wire channel 441, and the second wire 32 passes through a second wire channel 442, thus separating the first wire 31 and the second wire 32. This reduces contact between the first wire 31 and the second wire 32, preventing short circuits and improving safety during use. It also extends the service life and facilitates replacement and maintenance. Rotating the first housing 41 and the second housing 42 further reduces wear on the first wire 31 and the second wire 32, further extending their service life.

[0057] In one embodiment, such as Figures 4 to 7 As shown, the rotating mounting base 43 has a wire passage space 436. The first shaft portion 4341 has a first through hole 4361 extending into the wire passage space 436, and the second shaft portion 4342 has a second through hole 4362 extending into the wire passage space 436. The first through hole 4361, the wire passage space 436, and the second through hole 4362 are connected to form a first conductor channel 441. The third shaft portion 4351 has a third through hole 4363 extending into the wire passage space 436, and the fourth shaft portion 4352 has a fourth through hole 4364 extending into the wire passage space 436. The third through hole 4363, the wire passage space 436, and the fourth through hole 4364 are connected to form a second conductor channel 442.

[0058] The wire passage space 436 provided in the rotating mounting base 43 facilitates the wire assembly 3 to pass through the first wire channel 441 formed by the connection of the first through hole 4361, the wire passage space 436 and the second through hole 4362 during installation. This can improve the installation efficiency and further reduce the wear on the wire assembly 3 when rotating the first housing 41 and the second housing 42, thus extending its service life.

[0059] Similarly, when the wire assembly 3 passes through the second wire channel 442 formed by the connection of the third through hole 4363, the wire passage space 436, and the fourth through hole 4364, the wire passage space 436 can further reduce the wear on the wire assembly 3 when rotating the first housing 41 and the second housing 42, thus extending its service life. This provides installers with more operating space and increases the number of wiring options.

[0060] In one embodiment, such as Figures 8 to 10 As shown, the housing assembly 4 also includes a mounting base 45 fixed in the first housing 41. The mounting base 45 includes a first limiting notch 451 opened on one side and first mounting positions 452 provided at both ends of the first limiting notch 451. The first limiting notch 451 and the first housing 41 define a first connecting groove 411. The first rotating shaft 431 is limited and installed in the first limiting notch 451, and the first rotating shaft 431 is rotatably installed in the first mounting position 452.

[0061] The first rotating shaft 431, which is installed in the first limiting notch 451, can further increase the connection strength between the first rotating shaft 431 and the first housing 41, improve the stability of the first housing 41 when rotating around the first rotating shaft 431, and thus maintain the stability of the housing assembly 4 during the switching between the unfolded state and the folded state. It can also reduce the wear between the first rotating shaft 431 and the first housing 41 and further extend its service life.

[0062] The first limiting notch 451 also ensures good sealing inside the first housing 41, reducing the intrusion of dust and sweat, further extending its service life, and making it more aesthetically pleasing.

[0063] When the first rotating shaft 431 is rotatably installed in the first mounting position 452, the smoothness of the rotation between the first rotating shaft 431 and the first housing 41 can be further improved. Since the first rotating shaft 431 is rotatably installed in the first mounting position 452, it is easy to replace the first rotating shaft 431 after it wears out.

[0064] In one embodiment, such as Figures 8 to 11 As shown, the first housing 41 includes a first receiving groove 412 communicating with the first connecting groove 411, and the mounting base 45 is disposed in the first receiving groove 412.

[0065] The first receiving groove 412 facilitates the installation of the mounting base 45 on the first housing 41, which can improve the connection strength between the mounting base 45 and the first housing 41, keep the mounting base 45 stable during use, and can be replaced in time after the mounting base 45 is worn.

[0066] The power supply component 2 includes a first circuit board 21 disposed in the first receiving groove 412. The mounting base 45 includes a first mounting groove 453 and a wire passage groove 454 disposed opposite to each other and connected. The first circuit board 21 is disposed in the first mounting groove 453, and the wire passage groove 454 is connected to the first limiting notch 451.

[0067] The first circuit board 21 is electrically connected to the conductive components 22 at both ends. The first circuit board 21 can control the output of different or the same power to the conductive components 22 as needed, thereby controlling the first atomizer 5 and the second atomizer 6 to atomize with different or the same power, thereby improving the adaptability to the atomization requirements of different atomizing liquids.

[0068] The placement of the first circuit board 21 within the first mounting slot 453 enhances its stability during use and provides some protection. Connecting the wire channel 454 with the first limiting notch 451 allows the wire assembly 3 to be connected to the first circuit board 21 more smoothly, reducing installation difficulty, labor intensity, and installation efficiency. It also saves internal space and makes wiring more rational.

[0069] The second housing 42 includes a second receiving groove 422 communicating with the second connecting groove 421. The power supply component 1 includes a battery 11 electrically connected to the second receiving groove 422 and a second circuit board 12. One end of the wire assembly 3 is electrically connected to the first circuit board 21, and the other end of the wire assembly 3 passes through the wire groove 454, the first connecting groove 411, and the second connecting groove 421 in sequence, and is electrically connected to the second circuit board 12.

[0070] The second receiving slot 422 can protect the internal battery 11 and the second circuit board 12, reduce the intrusion of impurities, extend their service life, improve the stability of the battery 11 and the second circuit board 12 inside the second housing 42, reduce the vibration of the battery 11 and the second circuit board 12 during use, further extend their service life, and make reasonable use of space.

[0071] The second circuit board 12 can provide some protection for the first circuit board 21 and the battery 11. When a short circuit occurs inside the battery 11, the second circuit board 12 can cut off the power transmission in time, improve the safety of the entire device during use, reduce damage to the first circuit board 21, and reduce maintenance costs.

[0072] The housing assembly 4 also includes a fixing seat 46 fixed in the second housing 42. The fixing seat 46 includes a second limiting notch 461 opened on one side and second mounting positions 462 provided at both ends of the second limiting notch 461. The second limiting notch 461 and the second housing 42 define a second connecting groove 421. The second rotating shaft 432 is limited and installed in the second limiting notch 461, and the second rotating shaft 432 is rotatably installed in the second mounting position 462.

[0073] The second rotating shaft 432, which is limited and installed in the second limiting notch 461 of the fixed base 46, can further increase the connection strength between the second rotating shaft 432 and the second housing 42, improve the stability of the second housing 42 when rotating around the second rotating shaft 432, and thus maintain the stability of the housing assembly 4 during the switching between the unfolded state and the folded state. It can also reduce the wear between the second rotating shaft 432 and the second housing 42, and further extend its service life.

[0074] The second limiting notch 461 also ensures good sealing inside the second housing 42, reducing the intrusion of dust and sweat, further extending service life, and making the appearance more aesthetically pleasing.

[0075] When the second rotating shaft 432 is rotatably installed in the second mounting position 462, the smoothness of rotation between the second rotating shaft 432 and the second housing 42 is further improved. Because the second rotating shaft 432 is rotatably installed in the second mounting position 462, it is easier to replace it after wear. By adjusting the relative height between the fixed base 46 and the mounting base 45, the axes of the first rotating shaft 431 and the second rotating shaft 432 can be kept at the same horizontal level, resulting in more even force distribution when rotating the first housing 41 and the second housing 42, smoother operation, and greater user comfort.

[0076] In one embodiment, such as Figure 1 and Figure 3 As shown, it also includes a first magnetic structure 7 and a second magnetic structure 8 respectively installed on the first housing 41 and the second housing 42. The first magnetic structure 7 is disposed on the side of the first housing 41 and the second magnetic structure 8 is disposed on the side of the second housing 42. When the housing assembly 4 is in a folded state, the first magnetic structure 7 and the second magnetic structure 8 are magnetically connected.

[0077] When the housing assembly 4 is in the folded state, the first magnetic attraction structure 7 and the second magnetic attraction structure 8 are magnetically connected. The first magnetic attraction structure 7 and the second magnetic attraction structure 8 can be permanent magnets with opposite polarities, using the mutual attraction of permanent magnets to form a positioning. Alternatively, the first housing 41 and the second housing 42 themselves can be made of permanent magnets, using the mutual attraction properties of permanent magnets to form an attractive positioning, preventing the housing assembly 4 from being easily unfolded and facilitating carrying.

[0078] In one embodiment, the first housing 41 is provided with a first clearance notch corresponding to the first limiting notch 451, and the second housing 42 is provided with a second clearance notch corresponding to the first clearance notch, so that the second rotating shaft 432 can be rotatably installed in the second mounting position 462, and the rotating mounting seat 43 passes through the first clearance notch and the second clearance notch and is disposed between the first housing 41 and the second housing 42.

[0079] Understandably, the first clearance notch and the second clearance notch are respectively located at the edges of the first housing 41 and the second housing 42 that are close to each other, providing rotation space when the first housing 41 and the second housing 42 rotate around the first pivot 431 and the second pivot 432 respectively, making the first housing 41 and the second housing 42 rotate more smoothly when they are folded or unfolded, further reducing the gap when the first housing 41 and the second housing 42 are folded, making the overall appearance more beautiful. The first clearance notch and the second clearance notch also make it easier to install the rotating mounting base 43 between the first housing 41 and the second housing 42, reducing the installation difficulty, improving the installation efficiency, and reducing the manufacturing cost.

[0080] With the first and second clearance notches, after the first housing 41 and the second housing 42 are unfolded, the first housing 41, the second housing 42 and the rotating mounting base 43 can be on the same horizontal plane, making it more comfortable for the user to hold and further improving the overall aesthetics. It also makes it easier to replace the rotating mounting base 43 after it wears out.

[0081] In one embodiment, such as Figures 1 to 11 As shown, this application also provides an atomizing device, including a housing assembly 4, a power supply assembly 1, a power supply component 2, and a wire assembly 3. The housing assembly 4 is the aforementioned housing assembly 4, and the power supply assembly 1 is used to provide electrical energy to the power supply component 2.

[0082] The housing assembly 4 can be any of the housing assembly 4 described in the above embodiments. It allows for smoother rotation of the first housing 41 and the second housing 42 around the first pivot 431 and the second pivot 432, making operation more comfortable for the user. It also reduces the gap between the first housing 41 and the second housing 42 when the housing assembly 4 is folded, resulting in a more aesthetically pleasing appearance and greater stability when switching the form of the housing assembly 4. The housing assembly 4 allows for embedded wiring to transmit power, further improving the overall aesthetics, enhancing safety during use, facilitating installation, reducing labor intensity during manufacturing, lowering manufacturing costs, and ensuring more stable power transmission.

[0083] In one embodiment, such as Figures 1 to 5As shown, the atomizing device also includes a first atomizer 5 and a second atomizer 6, which are detachably connected to the first housing 41. The power supply component 2 also includes a first circuit board 21 and at least two sets of conductive components 22, which are located at both ends of the first circuit board 21 and are conductively connected to the first atomizer 5 and the second atomizer 6, respectively. The power supply component 1 includes a battery 11 and a second circuit board 12. One end of the wire assembly 3 is conductively connected to the first circuit board 21, and the other end passes through the wire channel 44 and is conductively connected to the second circuit board 12.

[0084] The first atomizer 5 and / or the second atomizer 6 are detachably connected to the first housing 41.

[0085] Understandably, the atomizing matrix stored in the first atomizer 5 and the second atomizer 6 can be of the same or different flavors, thus adapting to different tastes and vapor production requirements. Both the first atomizer 5 and the second atomizer 6 can be connected to the conductive component 22 via contact electrical connections, or other electrical connection methods. The second atomizer 6 is detachably installed within the first housing 41 and electrically connected to the conductive component 22, facilitating operation and replacement. Operators can choose whether to install the second atomizer 6 within the first housing 41 and electrically connect it to the conductive component 22 below, depending on actual usage.

[0086] Understandably, after the user installs the second atomizer 6 inside the first housing 41 and electrically connects it to the conductive component 22 below, the conductive component 22 forms an airflow path connecting the first atomizer 5 and the second atomizer 6 respectively. 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 6 from the first housing 41, the overall vapor volume decreases, making it suitable for different user groups, expanding its applicability, and making its use more diverse.

[0087] In one embodiment, the first housing 41 includes a first assembly cavity defined by the mounting base 45 at one end of the mounting base 45 and a second assembly cavity at the other end of the mounting base 45; the first atomizer 5 and the second atomizer 6 are detachably installed in the first assembly cavity and the second assembly cavity, respectively.

[0088] The first assembly cavity allows the first atomizer 5 to be installed more stably inside the first housing 41, improving the connection strength between the first atomizer 5 and the first housing 41 and facilitating installation. The shape of the first assembly cavity is roughly similar to the shape of the first atomizer 5, making the electrical connection between the first atomizer 5 and the upper conductive component 22 more stable and secure, thus making it suitable for more usage environments, providing more stable inhalation during use, and extending its service life.

[0089] The second atomizer 6 is installed in the second assembly cavity, which can improve the connection strength between the second atomizer 6 and the first housing 41, making the electrical connection between the second atomizer 6 and the lower conductive component 22 more stable and firm, thus making it suitable for more usage environments, making the inhalation more stable during use, and extending its service life.

[0090] 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.

[0091] 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. A housing assembly, characterized in that, This is applied to an atomizing device, which includes a power supply component, a component to be powered, and a wire assembly. The housing assembly includes: The first housing is used to house the component to be powered. The second housing is used to house the power supply components; A rotating mounting base includes a first rotating shaft and a second rotating shaft with parallel axes. The first housing is rotatably connected to the first rotating shaft, and the second housing is rotatably connected to the second rotating shaft, so that the second housing rotates relative to the first housing. The rotating mounting base is provided with at least one wire channel for the wire assembly to pass through. The at least one wire channel is provided between the first rotating shaft and the second rotating shaft, including a first wire channel opened in at least a portion of the first rotating shaft and a second wire channel opened in at least a portion of the second rotating shaft. The two ends of the conductor assembly are electrically connected to the power supply assembly and the component to be powered, respectively.

2. The housing assembly according to claim 1, characterized in that, The first housing and the second housing can rotate between a first position and a second position relative to each other, so that the housing assembly can switch between an unfolded state and a folded state.

3. The housing assembly according to claim 1, characterized in that, The first housing is provided with a first connecting groove communicating with the interior, and the second housing is provided with a second connecting groove communicating with the interior; The first rotating shaft is rotatably connected to the first connecting groove, and at least one end of the first rotating shaft is in communication with the interior of the first housing. The second rotating shaft is rotatably connected to the second connecting groove, and at least one end of the second rotating shaft communicates with the interior of the second housing; The wire assembly is guided from the inside of the first housing, through one end of the first rotating shaft and one end of the second rotating shaft, into the inside of the second housing.

4. The housing assembly according to claim 3, characterized in that, The rotating mounting base includes a base with both ends extending through it and a first end piece and a second end piece installed at both ends of the base; The first end member includes a first shaft portion and a second shaft portion, wherein the first shaft portion and / or the second shaft portion are disposed through the base and communicate with the interior of the base; The second end member includes a third shaft portion and a fourth shaft portion, wherein the third shaft portion and / or the fourth shaft portion are disposed through the base and communicate with the interior of the base; The first shaft portion and the third shaft portion are coaxially arranged to form the first rotating shaft; The second shaft portion and the fourth shaft portion are coaxially arranged to form the second rotating shaft.

5. The housing assembly according to claim 4, characterized in that, The first wire channel is formed between the first shaft portion, the second shaft portion, and the interior of the base; the second wire channel is formed between the third shaft portion, the fourth shaft portion, and the interior of the base; The conductor assembly includes a first conductor and a second conductor, wherein the first conductor passes through the first conductor channel and the second conductor passes through the second conductor channel.

6. The housing assembly according to claim 5, characterized in that, The rotating mounting base is provided with a wire-passing space; The first shaft portion is provided with a first through hole extending into the wire passage space; the second shaft portion is provided with a second through hole extending into the wire passage space; the first through hole, the wire passage space and the second through hole are connected to form the first conductor channel; The third shaft portion is provided with a third through hole extending into the wire passage space; the fourth shaft portion is provided with a fourth through hole extending into the wire passage space; the third through hole, the wire passage space, and the fourth through hole are connected to form the second conductor channel.

7. The housing assembly according to claim 3, characterized in that, The housing assembly further includes a mounting base fixed in the first housing; The mounting base includes a first limiting notch on one side and first mounting positions at both ends of the first limiting notch; the first limiting notch and the first housing define the first connecting groove, the first rotating shaft is limited and installed in the first limiting notch, and the first rotating shaft is rotatably installed in the first mounting position.

8. The housing assembly according to claim 7, characterized in that, The first housing includes a first receiving groove communicating with the first connecting groove, the second housing includes a second receiving groove communicating with the second connecting groove, and the mounting base is disposed in the first receiving groove; The component to be powered includes a first circuit board disposed in the first receiving slot, and the mounting base includes a first mounting slot and a wire passage slot disposed opposite to each other and communicating with each other. The first circuit board is disposed in the first mounting slot, and the wire passage slot communicates with the first limiting notch. The power supply component includes a battery and a second circuit board that are electrically connected to the second receiving slot; One end of the wire assembly is electrically connected to the first circuit board, and the other end of the wire assembly passes through the wire groove, the first connecting groove, and the second connecting groove in sequence, and is electrically connected to the second circuit board. And / or, the housing assembly further includes a mounting base fixed in the second housing; The fixing seat includes a second limiting notch opened on one side and second mounting positions provided at both ends of the second limiting notch; the second limiting notch and the second housing define the second connecting groove, the second rotating shaft is limited and installed in the second limiting notch, and the second rotating shaft is rotatably installed in the second mounting position.

9. An atomizing device, characterized in that, include: A housing assembly, a power supply assembly, a component to be powered, and a wire assembly; the housing assembly is the housing assembly according to any one of claims 1-8; The power supply component is used to provide electrical energy to the component to be powered.

10. The atomizing device according to claim 9, characterized in that, The atomizing device further includes a first atomizer and a second atomizer, wherein the first atomizer and / or the second atomizer are detachably connected to the first housing; The component to be powered further includes a first circuit board and at least two sets of conductive components; the two sets of conductive components are located at both ends of the first circuit board and are electrically connected to the first atomizer and the second atomizer, respectively. The power supply component includes a battery and a second circuit board; One end of the wire assembly is electrically connected to the first circuit board, and the other end passes through the wire channel and is electrically connected to the second circuit board.