Atomization main machine and atomization equipment

By designing a rotatable housing assembly and power system in the atomizing host, the problems of limited flavors and fixed structures in atomizing devices have been solved, enabling atomizing devices with multiple flavors and flexible structures, thus improving user experience and device stability.

CN223958332UActive 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 atomizing devices offer limited flavors and have fixed structures and usage methods, which negatively impacts the user experience.

Method used

A vaporizer is provided, comprising a first housing assembly and a second housing assembly, connected by a pivot point, allowing the first and second atomizers to be installed in different mounting cavities respectively, and electrically connected to the atomizers via a power supply assembly, enabling flexible configuration of various flavors and structural forms.

Benefits of technology

It enables configurable flavors and variable structural forms for atomizing devices, improving user experience and device stability, extending service life, and making it suitable for more usage environments and people.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an atomization main machine and atomization equipment. The atomization main machine is used in cooperation with a first atomizer and a second atomizer of the atomization equipment, and comprises a first shell assembly, a second shell assembly, a third shell assembly and a third shell assembly, the first shell assembly is provided with a first mounting cavity and a second mounting cavity, the first mounting cavity is used for mounting the first atomizer, and the second mounting cavity is used for mounting the second atomizer; the second shell assembly is rotationally connected to the first shell assembly, the second shell assembly can open or close the opening of the second mounting cavity, and the second atomizer is configured to be detachably mounted into the second mounting cavity from the opening of the second mounting cavity. According to the atomization equipment, the second shell assembly is rotationally connected to the first shell assembly, so that the first atomizer and the second atomizer can be installed in the first shell assembly, aerosol is provided by arranging the first atomizer and the second atomizer, the taste can be configured according to needs, and the atomization equipment is convenient to use. And the use form of the structure can be changed so as to increase playability.
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Description

Technical Field

[0001] This application relates to the field of electronic 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] Some existing atomizing devices typically offer only one flavor and have a fixed structure and usage, which affects the user experience. Utility Model Content

[0004] This application provides an atomizer and an atomization system to solve the problems of limited flavor and fixed structure and usage of existing atomization devices.

[0005] In one embodiment, an atomizing host is provided for use with a first atomizer and a second atomizer of an atomizing device, comprising: a first housing assembly having a first mounting cavity and a second mounting cavity, the first mounting cavity being used to mount the first atomizer and the second mounting cavity being used to mount the second atomizer; a second housing assembly rotatably connected to the first housing assembly, the second housing assembly being capable of opening or closing the opening of the second mounting cavity, the second atomizer being configured to be detachably mounted into the second mounting cavity from the opening of the second mounting cavity; and a power supply assembly disposed within the second housing assembly, the power supply assembly forming an electrical connection with the first atomizer and / or the second atomizer.

[0006] In one embodiment, the first housing assembly and the second housing assembly are arranged along the axial direction of the atomizing host, and the opening of the second mounting cavity is opened on the side of the first housing assembly facing the second housing assembly; a rotation fulcrum is provided between the first housing assembly and the second housing assembly, and along the horizontal direction of the atomizing host, the second housing assembly rotates relative to the first housing assembly around the rotation fulcrum to open or close the opening of the second mounting cavity.

[0007] In one embodiment, the first housing assembly includes a first outer shell, the first outer shell having a first end and a second end disposed opposite to each other along the axial direction of the atomizing host, the first mounting cavity and the second mounting cavity being disposed in communication within the first outer shell, the opening of the first mounting cavity opening towards the first end, and the opening of the second mounting cavity opening towards the second end; the second housing assembly includes a second outer shell and a first seal, the first seal being disposed on the opening of the second outer shell, and the power supply assembly being disposed within the second outer shell; when the second housing assembly closes the opening of the second mounting cavity, the first seal seals the opening of the second mounting cavity; when the second housing assembly rotates horizontally, the first seal rotates with the second outer shell to open the opening of the second mounting cavity.

[0008] In one embodiment, a rotating shaft protrudes from the second end of the first housing adjacent to the opening of the second mounting cavity, and a shaft hole is provided on the first seal. The rotating shaft is rotatably connected to the shaft hole to form the rotation fulcrum.

[0009] In one embodiment, the rotating shaft includes a connecting portion and a retaining portion. The connecting portion extends outward from the second end of the first housing, and the retaining portion is disposed at the end of the connecting portion facing the second housing. The connecting portion passes through the shaft hole, and the retaining portion retains the first seal on the side near the second housing assembly. And / or, a guide slope is provided at the end of the rotating shaft away from the first housing to guide the rotating shaft into the shaft hole.

[0010] In one embodiment, the first housing assembly is further provided with a wire channel, which passes through the interior of the rotating shaft along the axial direction of the rotating shaft and extends to the side wall of the first housing; the atomizing host further includes a conductive component, which includes a circuit board and wires, the circuit board is disposed in the first housing assembly and is electrically connected to the first atomizer and the second atomizer respectively, the wires pass through the wire channel, one end of the wires is electrically connected to the power supply component, and the other end of the wires is connected to the circuit board; the circuit board forms an electrical connection with the first atomizer and / or the second atomizer.

[0011] In one embodiment, the first housing assembly further includes a mounting base installed inside the first housing, and the circuit board is mounted on the mounting base; the conductive assembly further includes a first electrode assembly and a second electrode assembly installed at both ends of the mounting base; one end of the first electrode assembly is electrically connected to the circuit board, and the other end of the first electrode assembly is electrically connected to the first atomizer; one end of the second electrode assembly is electrically connected to the circuit board, and the other end of the second electrode assembly is electrically connected to the second atomizer.

[0012] In one embodiment, the first housing assembly further includes a second seal and a third seal, and the mounting base further includes a communicating first mounting groove and a second mounting groove, the first mounting groove being disposed toward the first mounting cavity, the second mounting groove being disposed toward the second mounting cavity, the second seal being disposed in the first mounting groove, the third seal and the circuit board being disposed in the second mounting groove, and the circuit board being located between the second seal and the third seal; the second seal is sealingly abutting between the first atomizer and the circuit board, and the third seal is sealingly abutting between the second atomizer and the circuit board; the second seal, the third seal and the circuit board are provided with a communicating channel, the communicating channel connecting the first atomization channel of the first atomizer and / or the second atomization channel of the second atomizer.

[0013] In one embodiment, the second housing assembly has an air intake channel communicating with the outside on the side near the first housing assembly; when the second housing assembly closes the opening of the second mounting cavity, the air intake channel forms an air passage communication with the first atomizing channel of the first atomizer and / or the second atomizing channel of the second atomizer; and / or, the atomizing host further includes a first magnetic attraction structure and a second magnetic attraction structure, the first magnetic attraction structure being disposed on the side of the first housing assembly facing the second housing assembly, and the second magnetic attraction structure being disposed on the side of the second housing assembly facing the first housing assembly; when the second housing assembly closes the opening of the second mounting cavity, the first magnetic attraction structure and the second magnetic attraction structure are magnetically connected.

[0014] In one embodiment, an atomizing device is also provided, comprising: the aforementioned atomizing host, a first atomizer, and a second atomizer; the first atomizer is detachably installed into the first mounting cavity, and the second atomizer is selectively detachably installed into the second mounting cavity, wherein the atomizing host supplies power to the first atomizer and / or the second atomizer.

[0015] According to the above embodiments, the atomizing host and atomizing device are rotatably connected to the first housing assembly via the second housing assembly, so that the atomizing device can install the first atomizer and the second atomizer respectively in the first housing assembly, and provide aerosol by setting the first atomizer and the second atomizer, thereby avoiding the defects of the prior art of single flavor and single structural form, so that the atomizing device has the advantages of flavor can be configured as needed and structural form can be changed to increase playability. Attached Figure Description

[0016] Figure 1 This is a three-dimensional structural schematic diagram of the atomizing device from one perspective in one embodiment;

[0017] Figure 2 This is a cross-sectional schematic diagram of the atomizing host from one perspective in one embodiment;

[0018] Figure 3 This is a cross-sectional schematic diagram of the atomizing device from one perspective in one embodiment;

[0019] Figure 4 A cross-sectional view of the second housing assembly of the atomizing device with the second mounting cavity opening in one embodiment;

[0020] Figure 5 This is a partially exploded view of the atomizing device at one angle in one embodiment;

[0021] Figure 6 This is a three-dimensional structural diagram of the shaft and shaft hole in one embodiment;

[0022] Figure 7 This is a partially exploded view of the mounting base at one angle in one embodiment;

[0023] The attached figures are labeled as follows: Atomizing host 100, atomizing device 200, first atomizer 1, second atomizer 2, first housing assembly 3, first mounting cavity 31, second mounting cavity 32, first outer shell 33, wire channel 34, mounting base 35, first mounting groove 351, second mounting groove 352, second seal 36, third seal 37, connecting channel 38, second housing assembly 4, second outer shell 41, first seal 42, air intake channel 43, power supply assembly 5, rotating fulcrum 6, rotating shaft 61, connecting part 611, holding part 612, shaft hole 62, conductive assembly 7, circuit board 71, wire 72, first electrode assembly 73, second electrode assembly 74, first magnetic attraction structure 8, second magnetic attraction structure 9. Detailed Implementation

[0024] 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.

[0025] 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.

[0026] 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. The terms "connection" and "linkage" used in this application, unless otherwise specified, include both direct and indirect connections (linkages).

[0027] To address the issues of limited flavor options and fixed structural forms in existing atomizing devices, this application addresses these problems by rotatably connecting a second housing assembly to a first housing assembly. This allows the atomizing device to house both a first and second atomizer within the first housing assembly, providing aerosol delivery. This avoids the limitations of existing technologies, which often feature limited flavor options and structural forms. The resulting atomizing device offers advantages such as configurable flavors and a flexible structural form for increased usability and playability.

[0028] like Figures 1 to 7 As shown, in one embodiment, an atomizing host 100 is provided, which is used in conjunction with a first atomizer 1 and a second atomizer 2 of an atomizing device 200. The atomizing host 100 includes: a first housing assembly 3, which is provided with a first mounting cavity 31 and a second mounting cavity 32, wherein the first mounting cavity 31 is used to install the first atomizer 1 and the second mounting cavity 32 is used to install the second atomizer 2; a second housing assembly 4, which is rotatably connected to the first housing assembly 3, and the second housing assembly 4 is capable of opening or closing the opening of the second mounting cavity 32, wherein the second atomizer 2 is configured to be detachably installed into the second mounting cavity 32 from the opening of the second mounting cavity 32; and a power supply assembly 5, which is disposed within the second housing assembly 4, and forms an electrical connection with the first atomizer 1 and / or the second atomizer 2.

[0029] Specifically, when the second housing assembly 4 opens the opening of the second mounting cavity 32, such as Figure 4 As shown, the atomizing host 100 is in the unfolded state, facilitating user replacement of the second atomizer 2. This simplifies the overall structure, reduces the risk of damage, and extends the lifespan of the entire atomizing host 100. When the second housing assembly 4 closes the opening of the second mounting cavity 32, as... Figure 1 and Figure 2As shown, the first atomizer 1 and the second atomizer 2 are both installed in the first housing assembly 3 of the atomizing host 100, forming a more compact structure of the atomizing device 200, which is easier for users to carry, and makes it easier to replace the first atomizer 1 and the second atomizer 2, improving the efficiency of replacement and the user experience, making the appearance more beautiful and easy to carry.

[0030] Among them, such as Figure 2 and Figure 3 As shown, the first mounting cavity 31 and the second mounting cavity 32 of the first housing assembly 3 are used to fix the first atomizer 1 and the second atomizer 2, respectively. This allows the first atomizer 1 to be securely installed in the first mounting cavity 31, improving stability, preventing leakage during carrying, reducing noise generation, and thus improving the user experience and extending its service life. Similarly, the second mounting cavity 32 can securely restrain the second atomizer 2, preventing leakage during carrying, reducing collisions with the first housing assembly 3, and thus extending its service life and improving the user experience.

[0031] By opening or closing the opening of the second housing assembly 4, the second atomizer 2 can be installed more stably in the mounting cavity formed by the second housing assembly 4 and the second mounting cavity 32, reducing the entry of dust, further extending its service life, and making it easier for users to replace.

[0032] The power supply component 5, located within the second housing assembly 4, allows the first atomizer 1 or the second atomizer 2 to operate independently, or to operate simultaneously. Users can choose according to their actual usage environment and personal preferences, making it suitable for a wider range of users and offering greater operational versatility.

[0033] In one embodiment, such as Figures 1 to 5 As shown, the first housing assembly 3 and the second housing assembly 4 are arranged along the axial direction of the atomizing host 100, and the opening of the second mounting cavity 32 is located on the side of the first housing assembly 3 facing the second housing assembly 4. A rotation fulcrum 6 is provided between the first housing assembly 3 and the second housing assembly 4. Along the horizontal direction of the atomizing host 100, the second housing assembly 4 rotates relative to the first housing assembly 3 around the rotation fulcrum 6 to open or close the opening of the second mounting cavity 32.

[0034] Understandably, the first housing assembly 3 and the second housing assembly 4, arranged axially along the atomizing host 100, allow the first atomizer 1 and the second atomizer 2 to be installed in the first mounting cavity 31 and the second mounting cavity 32 along the axial direction of the atomizing host 100. This facilitates the concealed installation of the second atomizer 2 in the second mounting cavity 32, resulting in a more aesthetically pleasing appearance. When the second housing assembly 4 closes the second mounting cavity 32, the power supply assembly 5, located in the second housing assembly 4, is on the same axis as the first atomizer 1 and the second atomizer 2, making the overall structure more compact and easier for the user to carry. This increases the length of the atomizing host 100 along its axis, improving the user's grip during inhalation and making it more comfortable for the user.

[0035] The rotation fulcrum 6 between the first housing assembly 3 and the second housing assembly 4 facilitates the rotation of the second housing assembly 4 around the first housing assembly 3 via the rotation fulcrum 6, making the rotation of the second housing assembly 4 smoother and the operation more flexible and effortless. In addition, users can also achieve the decompression effect by flipping the first housing assembly 3 and the second housing assembly 4 back and forth, thereby increasing playability and improving the user experience.

[0036] In one embodiment, both the first housing assembly 3 and the second housing assembly 4 are cylindrical, and the rotation of the first housing assembly 3 relative to the second housing assembly 4 will not be interfered with; or the second housing assembly 4 extends to form a receiving cavity, the main body of the first housing assembly 3 is disposed in the receiving cavity, and the suction nozzle is located outside the receiving cavity, so that the user can rotate the first housing assembly 3 relative to the second housing assembly 4 by pinching the suction nozzle. Alternatively, in some embodiments, the outer diameters of the first housing assembly 3 and the second housing assembly 4 are equal, and both are independent housing parts. A flange assembly is provided between the first housing assembly 3 and the second housing assembly 4, and the first housing assembly 3 and the second housing assembly 4 can move relative to each other through the flange assembly.

[0037] In one embodiment, such as Figures 1 to 5 As shown, the first housing assembly 3 includes a first outer shell 33, which has a first end and a second end disposed opposite to each other along the axial direction of the atomizing host 100. A first mounting cavity 31 and a second mounting cavity 32 are connected and disposed within the first outer shell 33. The opening of the first mounting cavity 31 faces the first end, and the opening of the second mounting cavity 32 faces the second end. The second housing assembly 4 includes a second outer shell 41 and a first sealing member 42. The first sealing member 42 is disposed on the opening of the second outer shell 41, and the power supply assembly 5 is disposed within the second outer shell 41. When the second housing assembly 4 closes the opening of the second mounting cavity 32, the first sealing member 42 seals the opening of the second mounting cavity 32. When the second housing assembly 4 rotates horizontally, the first sealing member 42 rotates with the second outer shell 41 to open the opening of the second mounting cavity 32.

[0038] The first end and the second end of the first outer shell 33 are respectively the positive and negative directions of the Z-axis. The opening faces the first mounting cavity 31, which is opened from the first end. This allows the first atomizer 1 to enter the first mounting cavity 31 from above, thereby enabling the first atomizer 1 to be installed more stably in the first mounting cavity 31. When the user inhales, the first atomizer 1 will be subject to its own gravity, which can further improve the stability of the first atomizer 1 in the first mounting cavity 31.

[0039] Similarly, the second mounting cavity 32, with its opening facing the second end, allows the second atomizer 2 to enter the second mounting cavity 32 only from below. This enables the second atomizer 2 to be installed more stably in the second mounting cavity 32. Furthermore, when the user replaces the second atomizer 2, after the first housing assembly 3 opens the opening of the second mounting cavity 32, the second atomizer 2 can smoothly detach from the second mounting cavity 32 due to its own gravity, thereby improving the efficiency of replacement and facilitating user operation.

[0040] The second housing 41 provides installation space for the power supply assembly 5, offering some protection, extending its service life, reducing maintenance costs, and improving safety. A first seal 42 is located on the opening of the second housing 41.

[0041] When the second housing assembly 4 closes the opening of the second mounting cavity 32, the first seal 42 rotates with the second housing 41 and moves below the opening of the second mounting cavity 32. The first seal 42 comes into contact with the second atomizer 2, thereby reducing the gap between the first housing 33 and the second housing 41, improving the sealing of the second mounting cavity 32, further reducing dust intrusion, improving the flavor and concentration of the smoke when the user inhales, further reducing the shaking of the second atomizer 2 when carried, extending its service life, and preventing leakage.

[0042] The first seal 42 can also cooperate with the second housing 41 to securely install the power supply component 5 in the second housing 41, preventing impurities from entering the second housing 41 when it is rotated back and forth, thus interfering with the operation of the power supply component 5, thereby improving the stability of the entire atomizing device 200 during operation, further extending its service life, and improving the user experience.

[0043] In one embodiment, such as Figures 1 to 6 As shown, a rotating shaft 61 protrudes from the second end of the first outer shell 33 adjacent to the opening of the second mounting cavity 32. A shaft hole 62 is provided on the first sealing member 42. The rotating shaft 61 is rotatably connected to the shaft hole 62 to form a rotation fulcrum 6.

[0044] The interlocking mechanism between the rotating shaft 61 and the shaft hole 62 allows the second housing assembly 4 to be horizontally rotatably connected to the lower part of the first housing 33. This simplifies the overall structure, facilitates manufacturing, reduces processing costs, and simplifies maintenance. The rotating shaft 61 can be integrally molded onto the first housing 33 using injection molding, or it can be mounted on the first housing 33 via threaded connections or bolts. The integrally molded shaft 61 can withstand greater loads, allowing for the installation of a larger capacity power supply assembly 5 within the second housing 41. The shaft 61 mounted on the first housing 33 via threaded connections or bolts is easier to replace after wear, reducing maintenance costs.

[0045] In one embodiment, such as Figures 1 to 6 As shown, the rotating shaft 61 includes a connecting part 611 and a retaining part 612. The connecting part 611 extends outward from the second end of the first housing 33, and the retaining part 612 is disposed at the end of the connecting part 611 facing the second housing 41. The connecting part 611 passes through the shaft hole 62, and the retaining part 612 is retained on the side of the first seal 42 near the second housing assembly 4.

[0046] Understandably, by dividing the rotating shaft 61 into a connecting part 611 and a retaining part 612, during installation, the shaft hole 62 opened in the first seal 42 passes through the retaining part 612 and enters the connecting part 611. The retaining part 612 restricts the first seal 42 in the axial direction of the connecting part 611, so that the first seal 42 remains relatively stationary with the connecting part 611 in the axial direction. The connecting part 611 allows the first seal 42 to rotate more smoothly around the first housing 33.

[0047] The retaining part 612 is located on the side of the first seal 42 near the second housing assembly 4. After the retaining part 612 passes through the shaft hole 62 of the first seal 42, the upper part of the retaining part 612 will contact the first seal 42 to lock them together, allowing the second housing assembly 4 to have more rotation space. When the second housing assembly 4 rotates to open the opening of the second mounting cavity 32, it can reduce the area occupied by the first seal 42 at the opening of the second mounting cavity 32, making it easier to disassemble or install the second atomizer 2 with a larger cross-section in the second mounting cavity 32, thereby facilitating operation, improving the user experience, and making the structure lighter.

[0048] In one embodiment, such as Figures 1 to 6 As shown, a guide slope is provided at the end of the rotating shaft 61 away from the first housing 33 to guide the rotating shaft 61 into the shaft hole 62.

[0049] The guide ramp makes it easier for personnel to insert the rotating shaft 61 into the shaft hole 62 during installation, thereby improving installation efficiency, facilitating operation, reducing wear on the rotating shaft 61 during installation, and further extending its service life.

[0050] In one embodiment, such as Figures 1 to 6 As shown, the first housing assembly 3 is also provided with a wire channel 34, which passes through the interior of the rotating shaft 61 along the axial direction of the rotating shaft 61 and extends to the side wall of the first housing 33.

[0051] The wire channel 34 located inside the rotating shaft 61 can conceal the power supply component 5 when it supplies power to the first atomizer 1 and / or the second atomizer 2. When the second housing component 4 opens or closes the opening of the second mounting cavity 32, the power supply wires of the power supply component 5 are hidden in the wire channel 34, which can further improve the aesthetics of the entire atomizing host 100. Moreover, the power supply wires hidden in the wire channel 34 will not interfere with the rotation of the second housing component 4, thus making the rotation smoother and the use safer.

[0052] In one embodiment, such as Figures 1 to 7 As shown, the atomizing host 100 also includes a conductive component 7, which includes a circuit board 71 and wires 72. The circuit board 71 is disposed within the first housing assembly 3 and is electrically connected to the first atomizer 1 and the second atomizer 2, respectively. The wires 72 pass through the wire channel 34, with one end of the wires 72 electrically connected to the power supply assembly 5 and the other end of the wires 72 connected to the circuit board 71. The circuit board 71 forms an electrical connection with the first atomizer 1 and / or the second atomizer 2.

[0053] The wires 72, threaded through the wire channel 34, transmit power from the power supply component 5 to the circuit board 71, which then transmits the power to the first atomizer 1 and / or the second atomizer 2. The wires 72 are concealed within the wire channel 34, improving the overall aesthetics of the atomizing host 100, reducing external corrosion of the wires 72, extending their lifespan, and enhancing safety during use. The circuit board 71 can control the output power to the first atomizer 1 and the second atomizer 2 as needed, allowing them to atomize at different or the same power levels, thus improving adaptability to different atomization requirements of various liquids. Alternatively, the circuit board 71 can independently control the conductivity, power, and other parameters of the first and second atomizers, enabling them to operate independently. This makes them suitable for a wider range of environments and users, increasing their versatility.

[0054] In one embodiment, such as Figures 1 to 7 As shown, the first housing assembly 3 also includes a mounting base 35 installed inside the first housing 33, and the circuit board 71 is mounted on the mounting base 35. The conductive assembly 7 also includes a first electrode assembly 73 and a second electrode assembly 74 installed at both ends of the mounting base 35. One end of the first electrode assembly 73 is electrically connected to the circuit board 71, and the other end of the first electrode assembly 73 is electrically connected to the first atomizer 1. One end of the second electrode assembly 74 is electrically connected to the circuit board 71, and the other end of the second electrode assembly 74 is electrically connected to the second atomizer 2.

[0055] The first housing 33 is divided into a first mounting cavity 31 and a second mounting cavity 32 by the mounting base 35. The first mounting cavity 31 and the second mounting cavity 32 improve the stability of the first atomizer 1 and the second atomizer 2 after installation, and the circuit board 71 mounted on the mounting base 35 further protects the circuit board 71. The first electrode assembly 73 and the second electrode assembly 74 mounted at both ends of the mounting base 35 are electrically connected to the first atomizer 1 and the second atomizer 2, respectively. The first electrode assembly 73 and the second electrode assembly 74 enable the power generated by the power supply assembly 5 to continue to be stably transmitted to the first atomizer 1 and the second atomizer 2, so that they form a point contact conductive connection, which facilitates the replacement of the first atomizer 1 and the second atomizer 2. This design can reduce manufacturing costs, enable long-term use, maintain stable power supply after long-term use, facilitate maintenance, and make the user experience more convenient and effortless.

[0056] In one embodiment, such as Figures 1 to 7 As shown, the first housing assembly 3 further includes a second seal 36 and a third seal 37. The mounting base 35 also includes a first mounting groove 351 and a second mounting groove 352 that communicate with each other. The first mounting groove 351 is disposed towards the first mounting cavity 31, and the second mounting groove 352 is disposed towards the second mounting cavity 32. The second seal 36 is disposed in the first mounting groove 351, and the third seal 37 and the circuit board 71 are disposed in the second mounting groove 352, with the circuit board 71 located between the second seal 36 and the third seal 37. The second seal 36 seals against the first atomizer 1 and the circuit board 71, and the third seal 37 seals against the second atomizer 2 and the circuit board 71.

[0057] By installing the third seal 37 and the circuit board 71 within the second mounting groove 352 of the mounting base 35, the stability of the third seal 37 and the circuit board 71 can be further improved, reducing the shaking and wear of the circuit board 71, extending its service life, and increasing the stability of the circuit board 71 when transmitting power, thereby improving the safety of the entire atomizing host 100 during use. By sealing the bottom of the mounting base 35 with the third seal 37, the corrosion of the circuit board 71 by impurities can be further reduced. The third seal 37 can also increase the sealing between the mounting base 35 and the first housing 33, allowing the mounting base 35 to be more securely and stably installed within the first housing 33. Furthermore, when the second atomizer 2 is electrically connected to the second electrode assembly 74, the third seal 37 increases the sealing between the mounting base 35 and the second atomizer 2, preventing leakage of the second atomizer 2, avoiding waste of vapor material, and further improving user comfort.

[0058] The first mounting groove 351 on the mounting base 35 allows the second seal 36 to be securely and stably installed on the mounting base 35, facilitating positioning and installation, improving installation efficiency, and reducing installation difficulty. Similarly, the second seal 36 further ensures that the mounting base 35 is securely and stably installed inside the first housing 33. The second seal 36 also increases the sealing between the mounting base 35 and the first atomizer 1 when the first atomizer 1 is electrically connected to the first electrode assembly 73, preventing leakage of the first atomizer 1, avoiding waste of vapor material, and further improving user comfort.

[0059] Furthermore, such as Figure 7 As shown, the second seal 36 also includes a third sealing portion arranged in an annular shape and a second sealing portion arranged in a rectangular shape. The third sealing portion arranged in an annular shape can further fill the gap between the mounting base 35 and the first housing 33, making the sealing between the second seal 36 and the first housing 33 better, further reducing the shaking of the mounting base 35 inside the first housing 33, extending its service life, and improving stability. The second sealing portion arranged in a rectangular shape can press against the circuit board 71, further improving the stability of the circuit board 71 after installation.

[0060] In one embodiment, such as Figures 1 to 7 As shown, the second seal 36, the third seal 37, and the circuit board 71 are provided with a connecting channel 38, which connects the first atomizing channel of the first atomizer 1 and / or the second atomizing channel of the second atomizer 2.

[0061] A connecting channel 38 is provided through the second seal 36, the third seal 37, and the circuit board 71. The connecting channel 38 is a vertically continuous structure. When the first atomizer 1 and the second atomizer 2 are installed inside the first housing 33, the first atomizing channel of the first atomizer 1 and the second atomizing channel of the second atomizer 2 are connected in series via the vertically continuous connecting channel 38. This allows the user to directly inhale from both atomizers. It is understood that the atomizing matrix stored in the first atomizer 1 and the second atomizer 2 can be of the same or different flavors, thus adapting to different tastes and vapor production requirements. When both the first atomizer 1 and the second atomizer 2 are installed inside the first housing 33 and connected to the connecting channel 38, the overall vapor production increases, further adapting to different tastes and vapor production requirements. When the user removes the second atomizer 2 from the first housing 33, the overall vapor production decreases, making it suitable for different user groups, expanding its applicability, and making its use more diverse.

[0062] In one embodiment, such as Figures 1 to 7 As shown, the second housing assembly 4 has an air intake channel 43 connected to the outside on the side near the first housing assembly 3. When the second housing assembly 4 closes the opening of the second mounting cavity 32, the air intake channel 43 forms an air passage connection with the first atomizing channel of the first atomizer 1 and / or the second atomizing channel of the second atomizer 2.

[0063] The air intake channel 43, which connects to the outside, passes below the second mounting cavity 32. When both the first atomizer 1 and the second atomizer 2 are installed inside the first housing 33, the air intake channel 43 passes below the second atomization channel of the second atomizer 2, so that the air intake channel 43, the second atomization channel of the second atomizer 2, the connecting channel 38, and the first atomization channel of the first atomizer 1 form an air passage connection, thereby generating an appropriate amount of smoke during inhalation and improving the user experience.

[0064] Similarly, when the user removes the second atomizer 2 from the first outer shell 33, the air intake channel 43, the second mounting cavity 32, the connecting channel 38 and the first atomizing channel of the first atomizer 1 form an air passage connection, thereby producing different smokes during inhalation and creating different smoke experiences, thus improving the user experience.

[0065] In one embodiment, such as Figures 1 to 7 As shown, the atomizing host 100 also includes a first magnetic structure 8 and a second magnetic structure 9. The first magnetic structure 8 is disposed on the side of the first housing assembly 3 facing the second housing assembly 4, and the second magnetic structure 9 is disposed on the side of the second housing assembly 4 facing the first housing assembly 3. When the second housing assembly 4 closes the opening of the second mounting cavity 32, the first magnetic structure 8 and the second magnetic structure 9 are magnetically connected.

[0066] This application utilizes a first magnetic attraction structure 8 and a second magnetic attraction structure 9 to achieve a magnetic connection between the atomizer 100 and the second housing assembly 4 when the opening of the second mounting cavity 32 is closed. The first magnetic attraction structure 8 and the second magnetic attraction structure 9 can be permanent magnets with opposite polarities, using their mutual attraction to form a positioning mechanism. Alternatively, one end of the first housing 33 and the second housing 41 can be made of permanent magnets, utilizing their mutual attraction properties to form a magnetic positioning mechanism, preventing the atomizer 100 from being easily opened, facilitating portability, further improving the stability of the second atomizer 2 within the second mounting cavity 32, and enhancing the connection strength.

[0067] In one embodiment, such as Figures 1 to 7 As shown, an atomizing device 200 is also provided, including: an atomizing host 100, a first atomizer 1, and a second atomizer 2. The first atomizer 1 is detachably installed into a first mounting cavity 31, and the second atomizer 2 is selectively detachably installed into a second mounting cavity 32. The atomizing host 100 supplies power to the first atomizer 1 and / or the second atomizer 2.

[0068] The atomizing host 100 can be any of the atomizing hosts described in the above embodiments. By rotatably connecting the first housing assembly 3 and the second housing assembly 4 of the atomizing host 100, the first atomizer 1 is configured to be detachably connected to one end of the first housing assembly 3, and the second atomizer 2 is configured to be selectively detachably connected to the other end of the first housing assembly 3.

[0069] By setting up a first atomizer 1 and a second atomizer 2 to provide aerosol, the atomization device has the advantages of variable shape and flavor that can be configured as needed, thereby improving the user's vaping experience.

[0070] 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 mounting cavity 31 so that the first atomizer 1 can be detachably installed into the first mounting cavity 31.

[0071] 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.

[0072] Furthermore, in some embodiments, the lower end of the first atomizing component is provided with a contact that is electrically connected to the first electrode component 73. The power supply component 5 can supply power to the first atomizer 1 through the contact of the first electrode component 73. Of course, other existing power supply methods can also be used.

[0073] 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 mounting cavity 32 so that the second atomizer 2 can be detachably inserted into the second mounting cavity 32.

[0074] The second atomizing component is disposed inside the second atomizing housing 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 housing, 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 atomizer 1 through the connecting channel 38, and then inhaled by the user through the mouthpiece.

[0075] Furthermore, in some embodiments, the upper end of the second atomizer 2 is provided with contacts that are electrically connected to the second electrode assembly 74. The second electrode assembly 74 can supply power to the second atomizer 2 through the contact connection. Of course, various other existing power supply methods can also be used.

[0076] Understandably, in some embodiments, the atomizing device 200 may also include a control switch, a power indicator light, or a mode indicator light, which can be configured according to actual needs.

[0077] 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 master, used in cooperation with a first atomizer and a second atomizer of an atomization device, characterized in that, The atomization host comprises: a first housing assembly provided with a first installation cavity for installing the first atomizer and a second installation cavity for installing the second atomizer; a second housing assembly rotatably connected to the first housing assembly, the second housing assembly being capable of opening or closing the opening of the second installation cavity, and the second atomizer being configured to be detachably installed into the second installation cavity from the opening of the second installation cavity; a power supply assembly arranged in the second housing assembly and electrically connected to the first atomizer and / or the second atomizer.

2. The atomization host of claim 1, wherein, The first housing assembly and the second housing assembly are arranged along the axial direction of the atomization host, and the opening of the second installation cavity is formed on the side of the first housing assembly facing the second housing assembly; A rotation fulcrum is arranged between the first housing assembly and the second housing assembly, and the second housing assembly rotates relative to the first housing assembly about the rotation fulcrum in the horizontal direction of the atomization host to open or close the opening of the second installation cavity.

3. The atomization host of claim 2, wherein, The first housing assembly comprises a first housing having a first end and a second end arranged oppositely along the axial direction of the atomization host, and the first installation cavity and the second installation cavity are arranged in the first housing in communication, the opening of the first installation cavity is formed towards the first end, and the opening of the second installation cavity is formed towards the second end; The second housing assembly comprises a second housing and a first sealing member arranged on the opening of the second housing, and the power supply assembly is arranged in the second housing; When the second housing assembly closes the opening of the second installation cavity, the first sealing member seals the opening of the second installation cavity, and when the second housing assembly rotates horizontally, the first sealing member rotates with the second housing to open the opening of the second installation cavity.

4. The atomization host of claim 3, wherein, The second end of the first housing is provided with a rotating shaft adjacent to the opening of the second installation cavity, the first sealing member is provided with a shaft hole, and the rotating shaft is rotatably connected in the shaft hole to form the rotation fulcrum.

5. The atomization host of claim 4, wherein, The rotating shaft comprises a connecting portion and a clamping portion, the connecting portion extends outwardly at the second end of the first housing, and the clamping portion is arranged at the end of the connecting portion facing the second housing, the connecting portion penetrates the shaft hole, and the clamping portion clamps the side of the first sealing member close to the second housing assembly; And / or, a guide inclined surface is arranged at the end of the rotating shaft away from the first housing to guide the rotating shaft to be inserted into the shaft hole.

6. The atomization host of claim 4, wherein, The first housing assembly is further provided with a wire channel penetrating the inside of the rotating shaft in the axial direction of the rotating shaft and extending to the side wall of the first housing; The atomization host further comprises a conductive assembly, the conductive assembly comprises a circuit board and a wire, the circuit board is arranged in the first shell assembly and is in conductive connection with the first atomizer and the second atomizer respectively, one end of the wire is arranged in the wire channel, the other end of the wire is in conductive connection with the power supply assembly, and the other end of the wire is connected with the circuit board; the circuit board is in electrical connection with the first atomizer and / or the second atomizer.

7. The atomization host of claim 6, wherein, The first shell assembly further comprises a mounting seat arranged in the first shell, and the circuit board is arranged on the mounting seat. The conductive assembly further comprises a first electrode assembly and a second electrode assembly arranged at two ends of the mounting seat; one end of the first electrode assembly is in electrical connection with the circuit board, and the other end of the first electrode assembly is in electrical connection with the first atomizer; one end of the second electrode assembly is in electrical connection with the circuit board, and the other end of the second electrode assembly is in electrical connection with the second atomizer.

8. The atomization host of claim 7, wherein, The first shell assembly further comprises a second sealing element and a third sealing element, the mounting seat further comprises a first mounting groove and a second mounting groove in communication, the first mounting groove is arranged towards the first mounting cavity, the second mounting groove is arranged towards the second mounting cavity, the second sealing element is arranged in the first mounting groove, the third sealing element and the circuit board are arranged in the second mounting groove, and the circuit board is located between the second sealing element and the third sealing element. The second sealing element is sealed and abuts between the first atomizer and the circuit board, and the third sealing element is sealed and abuts between the second atomizer and the circuit board. The second sealing element, the third sealing element and the circuit board are provided with a communication channel, and the communication channel communicates the first atomization channel of the first atomizer and / or the second atomization channel of the second atomizer.

9. The atomizing host of any one of claims 1-8, wherein, The second shell assembly is provided with an air inlet channel in communication with the outside near one side of the first shell assembly; When the second shell assembly closes the opening of the second mounting cavity, the air inlet channel is in gas path communication with the first atomization channel of the first atomizer and / or the second atomization channel of the second atomizer; And / or, the atomization host further comprises a first magnetic attraction structure and a second magnetic attraction structure, the first magnetic attraction structure is arranged on one side of the first shell assembly facing the second shell assembly, and the second magnetic attraction structure is arranged on one side of the second shell assembly facing the first shell assembly; When the second shell assembly closes the opening of the second mounting cavity, the first magnetic attraction structure and the second magnetic attraction structure are magnetically connected.

10. An atomising device characterised in that Comprise: An atomization host, a first atomizer and a second atomizer; The atomization host is the atomization host of any one of claims 1-9; The first atomizer is detachably mounted into the first mounting cavity, the second atomizer is selectively detachably mounted into the second mounting cavity, and the atomization host supplies power to the first atomizer and / or the second atomizer.