Atomization device and atomization equipment
By fixedly connecting the air nozzle and the atomizer shell assembly in the atomizer device and using magnetic parts to achieve detachable installation of the atomizer, the problem of cumbersome assembly and replacement operations of multi-flavor atomizer devices is solved, improving user experience and reducing costs.
Patent Information
- Application Number
- CN202422250044.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-13
- Publication Date
- 2025-09-23
- Estimated Expiration
- 2034-09-13
AI Technical Summary
Existing multi-flavor atomizer devices are cumbersome to assemble and replace atomizers, requiring assembly of the valve sealing silicone and valve cover, resulting in a poor user experience.
An atomization device is designed, in which the air nozzle and the atomization shell assembly are fixedly connected to form an integrally formed structure. The atomizer is directly installed in the mounting slot and a detachable connection is achieved through a magnetic attraction part, simplifying the assembly and replacement process.
It improves the user experience, reduces the number of parts and material costs, lowers the total cost, avoids air leakage, and enhances product competitiveness.
Smart Images

Figure CN223365004U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the field of atomization technology, and in particular to an atomization device and atomization equipment. Background Art
[0002] The atomizing device is mainly used to heat the aerosol-generating matrix to produce atomized particles. According to the number of atomizers installed, it can be divided into two categories. The first category is a single-flavor atomizing device with one atomizer, and the second category is a multi-flavor atomizing device with at least two atomizers.
[0003] At present, due to the unreasonable design, multi-flavor atomizer devices have the following defects: (1) cumbersome assembly: after all atomizers are installed in the mounting parts, the air nozzle sealing silicone and the air nozzle cover need to be assembled; (2) the operation of replacing the atomizer is complicated: when replacing a new atomizer, the air nozzle cover and the air nozzle sealing silicone need to be removed first, and after installing the new atomizer, the air nozzle cover and the air nozzle sealing silicone need to be covered. Utility Model Content
[0004] The present application provides an atomization device and an atomization equipment, aiming to solve the technical problem of complex operations of assembling and replacing atomizers.
[0005] According to a first aspect of the present application, an embodiment provides an atomization device, comprising a first mounting member and at least two atomizers, wherein the first mounting member has a mounting groove, and the at least two atomizers are detachably mounted in the mounting groove;
[0006] Each atomizer includes an atomizing shell assembly, an air nozzle, and an atomizing core. The atomizing shell assembly has a liquid storage chamber and an air guide channel that are isolated from each other. The atomizing core is installed in the atomizing shell assembly and is in communication with both the liquid storage chamber and the air guide channel. The air nozzle is connected to one end of the atomizing shell assembly and is in communication with the end of the air guide channel away from the atomizing core.
[0007] Wherein, each of the air nozzles is fixedly connected to the corresponding atomizing shell assembly or is an integrally formed structure.
[0008] In one embodiment, the end of the air nozzle away from the corresponding atomizer shell assembly extends to the outside of the mounting groove and extends toward the air nozzle of the adjacent atomizer, so that the portions of the two adjacent atomizers exposed in the mounting groove are at least in contact with each other at the end away from the first mounting member.
[0009] In one embodiment, the mounting slot includes at least two slot bodies, and each of the atomizers is mounted in one of the slot bodies;
[0010] Parts of two adjacent atomizers exposed from the mounting groove have a gap at one end close to the first mounting piece.
[0011] In one embodiment, the gap gradually increases in a direction approaching the first mounting member.
[0012] In one embodiment, adjacent sides of two adjacent gas nozzles are provided with notches to enable communication between the two adjacent gas nozzles.
[0013] In one embodiment, two of the atomizers and two of the trough bodies are provided, and the two trough bodies are arranged side by side;
[0014] The atomizing shell assembly includes a shell and a base. The air nozzle is fixedly connected to the shell or is an integrally formed structure, and passes through the notch of the trough body and extends to the outside of the trough body; the base is connected to the end of the shell away from the air nozzle and cooperates with the bottom wall of the trough body.
[0015] In one embodiment, the atomization device further includes at least two connecting assemblies, and each of the atomizers is detachably mounted in the mounting groove via one of the connecting assemblies.
[0016] In one embodiment, the connecting component includes a first magnetic component and a second magnetic component, the first magnetic component is arranged in the mounting groove, and the second magnetic component is arranged in the atomizer. When the atomizer is installed in the mounting groove, the first magnetic component and the second magnetic component are magnetically attracted.
[0017] According to the second aspect of the present application, an embodiment provides an atomization device, comprising a power supply component and the atomization device described in the first aspect, wherein the power supply component is used to supply power to the atomization core of the atomization device.
[0018] In one embodiment, the atomization device further includes a second mounting member, the power supply assembly is installed in the second mounting member, and the second mounting member is fixedly connected to the first mounting member or is an integrally formed structure.
[0019] According to the atomization device and atomization equipment of the above-mentioned embodiment, since the air nozzle is fixedly connected to the atomization shell assembly of the atomizer or is an integrally formed structure, the air nozzle and the atomization shell assembly are an integral component and the two cannot be disassembled. When the atomizer is assembled to the first mounting member, the atomizer is directly installed in the mounting groove to complete the assembly. When replacing the atomizer, the old atomizer is directly taken out from the mounting groove, and then the new atomizer is installed in the mounting groove. The operations of assembling the atomizer and replacing the atomizer are relatively simple, which improves the user experience. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1A schematic structural diagram of an atomization device provided in an embodiment of the present application from one perspective;
[0021] Figure 2 An exploded view of the atomization device provided in an embodiment of the present application;
[0022] Figure 3 A bottom view of the atomization device provided in an embodiment of the present application;
[0023] Figure 4 for Figure 3 Sectional view along line AA;
[0024] Figure 5 for Figure 3 a cross-sectional view along line BB;
[0025] Figure 6 for Figure 5 A partial enlarged view of point C in the middle;
[0026] Figure 7 A diagram showing the flow direction of gas in the atomization device provided in an embodiment of the present application;
[0027] Figure 8 A schematic structural diagram of an atomizer provided in an embodiment of the present application from one perspective;
[0028] Figure 9 A bottom view of the atomizer provided in an embodiment of the present application;
[0029] Figure 10 for Figure 9 a cross-sectional view along line DD;
[0030] Figure 11 Schematic diagram of the assembly structure of the first mounting member and the second mounting member provided in an embodiment of the present application.
[0031] In the picture:
[0032] 100. Atomizing device; 10. First mounting member; 11. Mounting slot; 111. Slot body; 12. First air vent; 20. Atomizer; 21. Atomizing shell assembly; 211. Liquid storage chamber; 212. Air guide channel; 213. Shell; 214. Base; 215. Second air vent; 22. Air nozzle; 221. Notch; 23. Atomizing core; 24. Atomizing electrode; 30. Gap; 40. Connecting assembly; 41. First magnetic member; 42. Second magnetic member; 200. Power supply assembly; 300. Spring pin; 400. Second mounting member; 500. Shell. DETAILED DESCRIPTION
[0033] The present application is further described in detail below by means of specific embodiments in conjunction with the accompanying drawings. Similar elements in different embodiments are numbered with associated similar elements. In the following embodiments, many detailed descriptions are provided to enable the present application to be better understood. However, those skilled in the art will readily appreciate that some of the features may be omitted in different circumstances, or may be replaced by other elements, materials, or methods. In some cases, some operations related to the present application are not shown or described in the specification. This is to avoid the core portion of the present application being overwhelmed by excessive descriptions. For those skilled in the art, it is not necessary to describe these related operations in detail. They can fully understand the related operations based on the description in the specification and the general technical knowledge in the art.
[0034] In addition, the features, operations, or characteristics described in the specification may be combined in any appropriate manner to form various implementations, and the operational steps involved in each embodiment may be interchanged or adjusted in a manner that is obvious to those skilled in the art. Therefore, the specification and drawings are only for the purpose of clearly describing a particular embodiment and do not imply a required composition and / or sequence.
[0035] The serial numbers assigned to components herein, such as "first," "second," etc., are used solely to distinguish the objects being described and do not convey any sequential or technical meaning. References to "connection" and "coupling" herein, unless otherwise specified, include both direct and indirect connections (couplings).
[0036] In the related art, a multi-flavor atomizer device is provided with an air nozzle sealing silicone and an air nozzle cover. Therefore, when assembling the atomizer of the atomizer device or replacing the atomizer of the atomizer device, it is necessary to operate the air nozzle sealing silicone and the air nozzle cover separately, which makes the operation steps cumbersome and affects the user experience.
[0037] In view of this, the present application provides an atomizing device and an atomizing equipment including the atomizing device, so as to solve the problem of complicated operations when assembling the atomizing device and replacing the atomizer of the atomizing device.
[0038] See also Figures 1 to 5 The atomization device includes an atomization device 100 and a power supply component 200, and the power supply component 200 is used to supply power to the atomization device 100. After the atomization device 100 is powered on, it can heat the aerosol-generating substrate to generate aerosol.
[0039] See also Figure 2The atomizing device 100 includes a first mounting member 10 and at least two atomizers 20. The first mounting member 10 has a mounting slot 11, and the at least two atomizers 20 are detachably mounted within the mounting slot 11. The atomizers 20 are used to heat an aerosol-generating substrate to generate an aerosol. By providing at least two atomizers 20, each atomizer 20 can heat an aerosol-generating substrate of a different flavor, thereby generating aerosols of different flavors. Of course, in specific applications, all atomizers 20 can also heat an aerosol-generating substrate of the same flavor.
[0040] See also Figures 8 to 10 Each atomizer 20 includes an atomizing shell assembly 21, an air nozzle 22, and an atomizing core 23. The atomizing shell assembly 21 has a liquid storage chamber 211 and an air guide channel 212, which are isolated from each other. The atomizing core 23 is installed in the atomizing shell assembly 21 and communicates with both the liquid storage chamber 211 and the air guide channel 212. The air nozzle 22 is connected to one end of the atomizing shell assembly 21 and communicates with the end of the air guide channel 212 away from the atomizing core 23. The liquid storage chamber 211 is used to store the aerosol-generating substrate.
[0041] During specific implementation, the aerosol-generating substrate in the liquid storage chamber 211 flows from the liquid storage chamber 211 to the atomizer core 23. The power supply component 200 supplies power to the atomizer core 23 of the atomizer device 100. After the atomizer core 23 is energized, it can heat the aerosol-generating substrate from the liquid storage chamber 211 to generate aerosol. The generated aerosol flows into the air guide channel 212 along with the gas flowing through the atomizer core 23, and then flows to the gas nozzle 22 and is discharged from the gas nozzle 22.
[0042] In one embodiment, each air nozzle 22 is fixedly connected to the corresponding atomizing shell assembly 21 or is an integrally formed structure. During specific implementation, the air nozzle 22 and the atomizing shell assembly 21 can be fixedly connected by bonding or heat sealing. By setting the air nozzle 22 to be fixedly connected to the corresponding atomizing shell assembly 21 or as an integrally formed structure, the air nozzle 22 and the atomizing shell assembly 21 are an integral component and cannot be disassembled. When the atomizer 20 is assembled to the first mounting member 10, the atomizer 20 is directly installed as a whole in the mounting groove 11 to complete the assembly, and there is no need to install the atomizing shell assembly 21 and the air nozzle 22 separately. Similarly, when replacing the atomizer 20, the old atomizer 20 is directly removed from the mounting groove 11, and then the new atomizer 20 is installed in the mounting groove 11. The operations of assembling and replacing the atomizer 20 are relatively simple, which improves the user experience. In addition, this setting method reduces the number of parts of the atomizer device 100 (such as the air nozzle sealing silicone), saves material costs and labor assembly costs, helps to reduce the total cost of the atomizer device 100, and makes the product more competitive.
[0043] In one embodiment, the end of the air nozzle 22 away from the corresponding atomizing shell assembly 21 extends to the outside of the mounting slot 11. This allows, on the one hand, the user to apply force to the portion of the air nozzle 22 extending outside the mounting slot 11 when disassembling the atomizer 20, thereby facilitating disassembly and assembly of the atomizer 20; and on the other hand, it allows the user to conveniently place the end of the air nozzle 22 away from the corresponding atomizing shell assembly 21 in their mouth or align it with their mouth, thereby allowing the aerosol to flow through the air nozzle 22 into the user's mouth.
[0044] In one embodiment, the end of the air nozzle 22 away from the corresponding atomizing shell assembly 21 extends toward the air nozzle 22 of the adjacent atomizer 20, so that the portions of the two adjacent atomizers 20 exposed in the mounting groove 11 are at least aligned at the end away from the first mounting member 10.
[0045] In a specific implementation, all the atomizers 20 can be set to work simultaneously. By setting the end of the air nozzle 22 away from the corresponding atomizing shell assembly 21 to extend toward the air nozzle 22 of the adjacent atomizer 20, the air nozzles 22 of all the atomizers 20 can be arranged together. When the aerosol generated by all the atomizers 20 is discharged through the air nozzle 22, all the aerosol can be discharged together. Of course, in a specific application, it is also possible to set some of the atomizers 20 to work simultaneously, for example, one atomizer 20 is in operation while the other atomizers 20 are not in operation.
[0046] By abutting the portions of two adjacent atomizers 20 exposed from the mounting slot 11 at least at the end facing away from the first mounting member 10, gaps between the adjacent atomizers 20 at the ends provided with the air nozzles 22, which could lead to air leakage, can be avoided. Furthermore, when the atomizing device 100 is in use, air can be prevented from entering the discharged aerosol through the gaps between the adjacent atomizers 20, thereby improving the user experience. In a specific implementation, the portions of the two adjacent atomizers 20 exposed from the mounting slot 11 can be abutted at least at the end facing away from the first mounting member 10, ensuring a tight fit between the two.
[0047] See also Figure 2 and Figure 11 The mounting slot 11 includes at least two slot bodies 111, and each atomizer 20 is installed in one slot body 111. This facilitates the installation of the atomizer 20 and improves installation efficiency. In this embodiment, the mounting slot 11 includes two slot bodies 111, and the two slot bodies 111 are arranged side by side. Two atomizers 20 are also provided, and one atomizer 20 is installed in each slot body 111. Of course, in other embodiments, the mounting slot 11 includes one slot body 111, and all atomizers 20 are installed in the slot body 111.
[0048] See also Figure 2 、 Figure 5 and Figure 6The portions of two adjacent atomizers 20 exposed from the mounting slot 11 have a gap 30 at one end near the first mounting member 10. Providing this gap 30 reduces interference between adjacent atomizers 20 during assembly of the atomizer device 100, reduces assembly errors, and facilitates assembly of the atomizer device 100. Furthermore, the gap 30 is positioned away from the air nozzle 22. Therefore, when the atomizer device 100 is in use, air will not pass through the gap 30 and mix into the aerosol discharged through the air nozzle 22.
[0049] In one embodiment, the gap 30 gradually increases in a direction approaching the first mounting member 10. The larger the gap 30, the smaller the probability of interference between adjacent atomizers 20. Therefore, by gradually increasing the gap 30 in a direction approaching the first mounting member 10, the assembly of the atomizer 20 is more facilitated.
[0050] See also Figure 8 Adjacent sides of two adjacent air nozzles 22 are provided with notches 221 to allow communication between the two adjacent air nozzles 22. This allows aerosols generated by different atomizers 20 to mix at the air nozzles 22. Especially when aerosols generated by different atomizers 20 have different flavors, they can be fully mixed at the air nozzles 22 before being discharged, greatly improving the user experience.
[0051] In one embodiment, two atomizers 20 are provided, and the two atomizers 20 are arranged side by side. It is understood that in other embodiments, three, four, or five atomizers 20 may be provided. In specific implementations, the two atomizers 20 are each provided with a separate airflow sensor, and the two atomizers 20 can operate simultaneously or independently.
[0052] See also Figure 5 、 Figures 8 to 10 The atomizing shell assembly 21 of the atomizer 20 includes a shell 213 and a base 214. The air nozzle 22 is fixedly connected to the shell 213 or is an integrally formed structure, and passes through the notch of the tank body 111 and extends to the outside of the tank body 111; the base 214 is connected to the end of the shell 213 away from the air nozzle 22, and cooperates with the bottom wall of the tank body 111. The liquid storage chamber 211 and the air guide channel 212 are both formed in the shell 213. During assembly, the aerosol generating matrix is first loaded into the liquid storage chamber 211, and then the atomizing core 23 is installed in the shell 213, and finally the base 214 is connected to the shell 213. The base 214 and the shell 213 can be fixedly connected or detachably connected.
[0053] Please refer to 2. Figure 5 、 Figure 10 and Figure 11, the first mounting member 10 is also provided with a first air vent 12, through which external gas can enter the mounting groove 11. Wherein, external gas refers to the gas outside the atomizing device 100. Specifically, the bottom of each slot body 111 is provided with a first air vent 12, through which external gas enters the slot body 111. The base 214 is provided with a second air vent 215, and the second air vent 215 is connected to the atomizing core 23, and is connected to the air guide channel 212 through the atomizing core 23. The gas entering the slot body 111 can enter the atomizing core 23 through the second air vent 215, and then enter the air guide channel 212 and the air nozzle 22. When the gas passes through the atomizing core 23, it can enter the air guide channel 212 and the air nozzle 22 together with the aerosol. Wherein, Figure 7 The flow direction of the gas in the atomizing device 100 is shown, and the solid arrows indicate the direction of the gas flow.
[0054] In one embodiment, the atomizing device 100 further includes at least two connecting assemblies 40, and each atomizer 20 is detachably mounted in the mounting groove 11 via one connecting assembly 40. This improves the stability of the atomizer 20 mounted in the mounting groove 11 and also facilitates assembly and disassembly of the atomizer 20.
[0055] See also Figure 4 、 Figure 8 and Figure 11 The connecting component 40 includes a first magnetic component 41 and a second magnetic component 42. The first magnetic component 41 is arranged in the mounting groove 11, and the second magnetic component 42 is arranged in the atomizer 20. When the atomizer 20 is installed in the mounting groove 11, the first magnetic component 41 and the second magnetic component 42 are magnetically attracted. Through the magnetic attraction of the first magnetic component 41 and the second magnetic component 42, the atomizer 20 can be detachably connected to the mounting groove 11. In a specific implementation, the first magnetic component 41 can be arranged on the bottom wall of the groove body 111, and the second magnetic component 42 can be arranged on the base 214 of the atomizer 20. In this embodiment, two of the first magnetic component 41 and the second magnetic component 42 are provided.
[0056] It can be understood that in other embodiments, the connecting assembly 40 may include a protrusion and a groove, and the detachable connection of the atomizer 20 is achieved through the snap-fitting of the protrusion and the groove; or, the connecting assembly 40 may include a first buckle and a second buckle, and the detachable connection of the atomizer 20 is achieved through the snap-fitting of the first protrusion and the second protrusion.
[0057] In this embodiment, the power supply assembly 200 is used to supply power to the atomizing core 23 of the atomizing device 100. When the atomizing core 23 is energized, it can heat the aerosol-generating substrate from the liquid storage chamber 211 to generate aerosol. Figure 4 、 Figure 9 and Figure 10Each atomizer 20 further includes two atomizing electrodes 24 electrically connected to the atomizing core 23. The atomizing device further includes a plurality of spring pins 300. Each spring pin 300 is electrically connected between the power supply component 200 and an atomizing electrode 24, so that the power supply component 200 can supply power to the atomizing core 23. The two atomizing electrodes 24 of each atomizer 20 are respectively a positive electrode and a negative electrode.
[0058] See also Figure 2 The atomizing device further includes a second mounting member 400, within which the power supply assembly 200 is mounted. The second mounting member 400 and the first mounting member 10 are integrally formed. This reduces assembly steps and improves assembly efficiency. It is understood that in other embodiments, the first mounting member 10 and the second mounting member 400 may also be fixedly connected.
[0059] In one embodiment, the atomizing device further comprises a housing 500, and the first mounting member 10 and the second mounting member 400 are both mounted in the housing 500. The housing 500 protects the internal components and also gives the atomizing device a better appearance.
[0060] The above specific examples are used to illustrate the present application, which is only used to help understand the present application and is not intended to limit the present application. For those skilled in the art of the present application, based on the concept of the present application, they can also make some simple deductions, modifications or substitutions.
Claims
1. An atomizing device, characterized in that: The device comprises a first mounting member and at least two atomizers, wherein the first mounting member has a mounting groove, and the at least two atomizers are detachably mounted in the mounting groove; Each atomizer includes an atomizing shell assembly, an air nozzle, and an atomizing core. The atomizing shell assembly has a liquid storage chamber and an air guide channel that are isolated from each other. The atomizing core is installed in the atomizing shell assembly and is in communication with both the liquid storage chamber and the air guide channel. The air nozzle is connected to one end of the atomizing shell assembly and is in communication with the end of the air guide channel away from the atomizing core. Wherein, each of the air nozzles is fixedly connected to the corresponding atomizing shell assembly or is an integrally formed structure.
2. The atomizing device according to claim 1, characterized in that The end of the air nozzle away from the corresponding atomizing shell assembly extends to the outside of the mounting groove and extends toward the air nozzle of the adjacent atomizer, so that the portions of the two adjacent atomizers exposed in the mounting groove are in contact with each other at least at the end away from the first mounting member.
3. The atomizing device according to claim 2, characterized in that The mounting slot includes at least two slot bodies, and each of the atomizers is mounted in one of the slot bodies; Parts of two adjacent atomizers exposed from the mounting groove have a gap at one end close to the first mounting piece.
4. The atomizing device according to claim 3, characterized in that The gap gradually increases in a direction approaching the first mounting member.
5. The atomizing device according to claim 2, characterized in that Adjacent sides of two adjacent gas nozzles are provided with notches so that the two adjacent gas nozzles are connected.
6. The atomizing device according to claim 3, characterized in that There are two atomizers and two tank bodies, and the two tank bodies are arranged side by side; The atomizing shell assembly includes a shell and a base. The air nozzle is fixedly connected to the shell or is an integrally formed structure, and passes through the notch of the trough body and extends to the outside of the trough body; the base is connected to the end of the shell away from the air nozzle and cooperates with the bottom wall of the trough body.
7. The atomizing device according to any one of claims 1 to 6, characterized in that It also includes at least two connecting components, and each of the atomizers is detachably installed in the installation slot through one of the connecting components.
8. The atomizing device according to claim 7, characterized in that The connecting component includes a first magnetic component and a second magnetic component. The first magnetic component is arranged in the installation groove, and the second magnetic component is arranged in the atomizer. When the atomizer is installed in the installation groove, the first magnetic component and the second magnetic component are magnetically attracted.
9. An atomizing device, characterized in that: The invention comprises a power supply component and an atomization device according to any one of claims 1 to 8, wherein the power supply component is used to supply power to the atomization core of the atomization device.
10. The atomizing device according to claim 9, characterized in that It also includes a second mounting member, the power supply assembly is installed in the second mounting member, and the second mounting member is fixedly connected to the first mounting member or is an integrally formed structure.