Atomization apparatus and atomization device
By designing a pushable sealing mechanism in the atomization device, it ensures that the user must activate the device before formal use, solving the burning problem caused by mistaken triggering or misoperation during transportation and use, and improving the user experience.
Patent Information
- Application Number
- PCT/CN2024/135393
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Priority Date
- 2023-11-30
- Filing Date
- 2024-11-28
- Publication Date
- 2025-06-05
AI Technical Summary
During transportation and use, existing atomization equipment is prone to dry-burning or causing liquid to be burned due to mistriggering or misoperation during transportation and use, which affects the taste and user experience.
An atomization device is designed, which includes a housing, a packaging seat, a seal and an atomization core. Before the user uses it, the sealing body is protruded on the side of the packaging seat facing away from the atomization core, so that before the atomization device is connected to the power supply device, the sealing body must be pushed to activate the atomization device, thereby avoiding mistriggering or misoperation.
It effectively avoids the situation of dry burning of the heating wire or burning of the liquid caused by the switch trigger or the user's misoperation, and improves the taste and user experience.
Smart Images

Figure CN2024135393_05062025_PF_FP_ABST
Abstract
Description
Atomization devices and atomization equipment
[0001] CROSS-REFERENCE TO RELATED APPLICATIONS
[0002] This application claims priority to Chinese invention patent application filed on November 30, 2023, with application number 2023116265834, entitled "Atomization device and atomization equipment thereof," the entire contents of which are incorporated herein by reference. Technical Field
[0003] The present application relates to the technical field of aerosol generating devices, and in particular to an atomizing device and an atomizing equipment. Background Art
[0004] With the increasing use of electronic products, the demand for atomizers is increasing. Currently, atomizers on the market primarily consist of an atomizer and a battery pack. The battery pack provides power to the atomizer, heating the atomizer's heating wire and subsequently atomizing the aerosol matrix into aerosol. Related technologies involve prolonged immersion of the aerosol matrix in the atomizer core, preventing the core from separating from the aerosol matrix. This prolonged immersion can lead to deterioration of the aerosol matrix, and prolonged contact between the core and the aerosol matrix can cause excessive aspiration and leakage.
[0005] In order to prevent the aerosol matrix and the atomizer core from being in contact with each other all the time, thereby affecting the deterioration of the aerosol matrix or the leakage of the aerosol matrix, most of the atomizer devices at this stage adopt the means of separating the aerosol matrix from the atomizer core. However, since the relevant technology adopts the oil-core separation method, there is no connection between the airway and the liquid inlet. The atomizer core is always dry during the transportation of the atomizer device. However, there may be a possibility of the start switch being triggered by mistake during transportation, or the user may misoperate the product after receiving it, and directly inhale without opening the liquid inlet hole, resulting in the heating wire burning dry or the guide liquid being burnt, seriously affecting the taste and user experience. Summary of the Invention
[0006] Based on the above problems existing in the prior art, the present application provides an atomization device and an atomization equipment.
[0007] This application specifically provides the following technical means to solve the above technical problems:
[0008] The present application provides an atomization device, comprising:
[0009] A shell, one end of which is provided with an opening, and the other end of which is provided with an atomization pipe extending inwardly;
[0010] The packaging base is used to block the opening so that the packaging base and the shell form a liquid storage cavity; wherein the packaging base includes a cylindrical tube body provided with an atomization cavity, and the cylindrical tube body is connected to the atomization pipeline;
[0011] The sealing body is movably connected to the packaging base to form a first liquid storage state or a second liquid storage state;
[0012] An atomizing core is arranged in the atomizing chamber and is used to atomize the aerosol matrix in the liquid storage chamber;
[0013] In the first liquid storage state, the sealing body is protrudingly arranged on a side of the packaging body facing away from the atomizer core, and the atomizer core is separated from the aerosol matrix in the liquid storage chamber;
[0014] In the second liquid storage state, the sealing body is recessed or flush with the side of the packaging base body facing away from the atomizing core, and the atomizing core is in contact with the aerosol matrix in the liquid storage cavity.
[0015] In some embodiments, the packaging base includes: a first packaging platform and a second packaging platform connected to the columnar tube;
[0016] The first packaging platform is used to form a first liquid storage state together with the shell and the sealing body, and the second packaging platform is used to form a second liquid storage state together with the shell and the sealing body.
[0017] In some embodiments, the packaging base includes a liquid inlet hole arranged on a side wall of the columnar tube body, and the liquid inlet hole is disposed between the first packaging platform and the second packaging platform.
[0018] In some embodiments, a first liquid injection hole is provided through the first packaging station, and the sealing body includes a first sealing portion. When the first sealing portion blocks the first liquid injection hole, the atomizing device forms a first liquid storage state.
[0019] The second packaging platform is penetrated by a second liquid injection hole, and the sealing body includes a second sealing portion. When the first liquid injection hole is opened and the second sealing portion blocks the second liquid injection hole, the liquid inlet hole is connected to the liquid storage chamber and the atomization core, and the atomization device forms a second liquid storage state.
[0020] In some embodiments, the package base further includes a third package stage connected to the second package stage, the third package stage is arranged on a side of the second package stage away from the first package stage, and a side of the third package stage away from the second package stage is substantially flush with the opening.
[0021] In some embodiments, a third liquid injection hole is provided through the third packaging station;
[0022] The sealing body includes a third sealing portion, which is arranged on a side of the second sealing portion away from the first sealing portion. In the second liquid storage state, the third sealing portion blocks the third liquid injection hole.
[0023] In some embodiments, the sealing body further includes a support member, which is fixedly connected to the first sealing portion, the second sealing portion, and the third sealing portion, and the support member and the first sealing portion, the second sealing portion, and the third sealing portion are made of different materials.
[0024] In some embodiments, the support member is made of metal; the first sealing portion, the second sealing portion and the third sealing portion are made of silicone.
[0025] The present application also provides an atomization device, comprising the above-mentioned atomization device and a power supply device. In the second liquid storage state, the atomization device and the power supply device are electrically connected.
[0026] In some embodiments, the atomization device is provided with a conductive member electrically connected to the atomization core, the conductive member is exposed at the end of the third packaging platform away from the atomization core, and the power supply device includes a conductive connector. In the second liquid storage state, the conductive member is in contact with the conductive connector to achieve electrical connection between the atomization device and the power supply device.
[0027] According to this embodiment, before the user officially uses the product, the sealing body is protrudingly provided on the side of the packaging base body away from the atomizer core. Therefore, before the atomizer device is connected to the power supply device, the sealing body must be pushed to activate the atomizer device, thereby avoiding accidental triggering of the switch, or the user may misoperate the product after receiving it, such as directly inhaling without opening the liquid inlet hole, resulting in dry burning of the heating wire or burning of the guide liquid, thereby improving the taste and user experience. BRIEF DESCRIPTION OF THE DRAWINGS
[0028] The present application is further described below with reference to the accompanying drawings and embodiments, wherein:
[0029] FIG1 is a perspective view of an atomizing device according to one embodiment of the present application;
[0030] FIG2 is a perspective view of an atomizing device according to one embodiment of the present application;
[0031] FIG3 is an exploded view of an atomizing device according to one embodiment of the present application;
[0032] FIG4 is a cross-sectional view of an atomizing device according to one embodiment of the present application;
[0033] FIG5 is a cross-sectional view of an atomizing device in a first liquid storage state according to one embodiment of the present application;
[0034] FIG6 is a cross-sectional view of an atomizing device in a second liquid storage state according to one embodiment of the present application;
[0035] FIG7 is a perspective view of a package base according to one embodiment of the present application;
[0036] FIG8 is a perspective view of a sealing body according to one embodiment of the present application;
[0037] FIG9 is a three-dimensional diagram of an atomizer core according to one embodiment of the present application.
[0038] Reference Signs: 100. Atomizer; 110. Housing; 111. Atomizer Pipe; 120. Packaging Base; 121. Columnar Tube; 1211. Liquid Inlet; 122. First Packaging Platform; 1221. First Liquid Injection Hole; 123. Second Packaging Platform; 1231. Second Liquid Injection Hole; 124. Third Packaging Platform; 1241. Third Liquid Injection Hole; 130. Sealing Body; 131. Support Member; 132. First Sealing Portion; 133. Second Sealing Portion; 134. Third Sealing Portion; 140. Sealing Ring; 150. Atomizer Core; 151. Heating Element; 152. Liquid Guide; 153. Atomizer Pipe; 154. Oil storage cotton; 161. First sealing ring; 162. First sealing ring; 163. Third sealing ring; 170. Liquid absorption; 180. Conductor; 190. Liquid storage chamber; 200. Power supply device; 210. Conductive connector. DETAILED DESCRIPTION
[0039] The following describes in detail embodiments of the present application. Examples of the embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals throughout represent the same or similar elements or elements having the same or similar functions. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain the present application and are not to be construed as limiting the present application.
[0040] In the description of this application, descriptions of orientations, such as up, down, front, back, left, and right, etc., indicating orientations or positional relationships, are based on the orientations or positional relationships shown in the accompanying drawings. They are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation. Therefore, they should not be understood as limitations on this application.
[0041] In the description of this application, "several" means more than one, "plurality" means more than two, "greater than," "less than," and "exceed" are understood to exclude the number itself, while "above," "below," and "within" are understood to include the number itself. The use of "first" and "second" in the description is solely for the purpose of distinguishing technical features and should not be construed as indicating or implying relative importance, implicitly specifying the number of the indicated technical features, or implicitly specifying the order of the indicated technical features.
[0042] In the description of this application, unless otherwise clearly defined, terms such as setting, installing, and connecting should be understood in a broad sense, and technicians in the relevant technical field can reasonably determine the specific meanings of the above terms in this application based on the specific content of the technical solution.
[0043] In the description of this application, reference to the terms "one embodiment," "some embodiments," "illustrative embodiments," "examples," "specific examples," or "some examples" means that the specific features, structures, materials, or characteristics described in conjunction with the embodiment or example are included in at least one embodiment or example of this application. In this specification, the schematic representations of the above terms do not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials, or characteristics described can be combined in any appropriate manner in any one or more embodiments or examples.
[0044] As shown in FIG1 to FIG9 , the present application provides an atomization device 100 , wherein an atomization channel runs through the atomization device 100 , and transmits the generated aerosol to the user's mouth through the atomization channel for inhalation.
[0045] The atomization device 100 includes an atomization core 150 , which is arranged in the atomization chamber and is used to atomize the aerosol matrix in the liquid storage chamber 190 .
[0046] The atomizer 100 includes a housing 110 with an opening at one end and an atomizer conduit 111 extending from the opening at the other end. The atomizer conduit 111 is part of the atomizer channel. In one embodiment, the housing 110 is provided with a plurality of locating holes, which are arranged circumferentially on the sidewall of the housing 110. The package base 120 is provided with a plurality of connecting structures. The plurality of connecting structures snap into the plurality of locating holes to secure the connection between the package base 120 and the housing 110.
[0047] The atomizing device 100 includes a packaging base 120, which blocks the opening at one end of the housing 110 and forms a liquid storage chamber 190 with the housing 110. The liquid storage chamber 190 is used to store the aerosol matrix that generates the aerosol. The packaging base 120 includes a cylindrical tube 121, which is hollow and forms an atomizing chamber. The atomizing chamber is arranged as part of the air flow channel. The atomizing chamber is connected to the atomizing pipe 111. After the atomizing core 150 is heated and atomized in the atomizing chamber, it is transmitted to the user's mouth through the atomizing pipe 111 for the user to inhale.
[0048] The atomizer 100 also includes a sealing body 130, which is movably connected to the packaging base 120 to form a first liquid storage state and a second liquid storage state. In the first liquid storage state, the sealing body 130 protrudes from the side of the packaging base 120 facing away from the atomizer core 150, separating the atomizer core 150 from the aerosol matrix in the liquid storage chamber. In the second liquid storage state, the sealing body 130 is recessed or flush with the side of the packaging base 120 facing away from the atomizer core 150, allowing the atomizer core 150 to contact the aerosol matrix in the liquid storage chamber.
[0049] According to this embodiment, before the user officially uses the product, the sealing body 130 is protrudingly provided on the side of the packaging base 120 facing away from the atomizer core 150. Therefore, before the atomizer device 100 is connected to the power supply device 200, the sealing body 130 must be pushed to activate the atomizer device 100, thereby avoiding the switch from being triggered by mistake or the user from misoperating the product after receiving it, such as directly inhaling without opening the liquid inlet hole 1211, which may cause the heating wire to burn dry or the guide liquid 152 to be burnt. This improves the taste and user experience.
[0050] In one embodiment, the packaging base 120 includes a first packaging platform 122 and a second packaging platform 123 connected to the columnar tube 121. The columnar tube 121 is disposed through the first packaging platform 122 and the second packaging platform 123. The second packaging platform 123 is disposed on a side of the first packaging platform 122 away from the atomization pipeline 111. A first liquid injection hole 1221 is disposed through the first packaging platform 122, and a second liquid injection hole 1231 is disposed through the second packaging platform 123. During liquid injection, an injector is used to inject the aerosol matrix into the liquid storage chamber 190 through the second liquid injection hole 1231 and the first liquid injection hole 1221 in sequence.
[0051] In one embodiment, the cylindrical tube 121 is further provided with a liquid inlet 1211, which is arranged on the side wall of the cylindrical tube 121, between the first packaging platform 122 and the second packaging platform 123. The liquid inlet 1211 is a transversely arranged through-hole, which connects the liquid storage chamber 190 and the atomizing core 150, and the aerosol matrix can enter the interior of the atomizing core 150 from the liquid storage chamber 190. The shape of the liquid inlet 1211 is usually circular, and can also be, for example, elliptical, honeycomb, double diamond, crescent, hexagonal, bat-shaped, four-leaf clover, four-pointed star, rectangle (including square), infinity symbol, cross, star, five-pointed star, and triangle. The number of liquid inlet holes 1211 is usually 2, symmetrically arranged. The number of liquid inlet holes 1211 can be multiple, arranged around the side wall of the cylindrical tube 121. With the arrangement of this embodiment, only when the first liquid injection hole 1221 is opened can the aerosol matrix enter the space between the first packaging platform 122 and the second packaging platform 123 from the liquid storage chamber 190, and then enter the interior of the atomizer core 150 through the liquid inlet hole 1211 at multiple angles, thereby facilitating rapid liquid infusion and soaking the atomizer core 150, reducing user waiting time. The shape and number of the liquid inlet holes 1211 are not limited by this solution.
[0052] In one embodiment, the packaging base 120 further includes a third packaging stage 124, disposed on a side of the second packaging stage 123 away from the first packaging stage 122. The third packaging stage 124 is connected to the second packaging stage 123. The second and third packaging stages 123, 124 are coaxially arranged, and a peripheral wall may be provided between them to facilitate connection between the second and third packaging stages 123. The surface of the third packaging stage 124 facing away from the cylindrical tube 121 is substantially flush with the opening of the housing 110. This embodiment facilitates connection to the power supply device 200.
[0053] In one embodiment, the cylindrical tube 121, the first packaging station 122, the second packaging station 123, and the third packaging station 124 are made of the same material and are integrated. This integration makes the structure more compact, saving assembly time for multiple components in the production process. At the same time, it reduces the number of components produced, lowering production costs and facilitating automated production.
[0054] In one embodiment, the surface of the third packaging platform 124 facing the second packaging platform 123 is provided with multiple protrusions or grooves. Gaps are formed between the grooves, which provide a capillary effect. This embodiment not only guides the condensate, but also traps it between the protrusions or within the grooves through capillary action, preventing it from falling and damaging the power supply device 200.
[0055] In one embodiment, the atomization device 100 further includes a liquid absorbing liquid 170. The liquid absorbing liquid 170 is disposed on one side of the atomization core 150 and can be disposed on the surface of the third packaging platform 124 facing the second packaging platform 123 to absorb condensed liquid flowing down from the drainage groove.
[0056] In one embodiment, the sealing body 130 includes a support member 131 and a first sealing portion 132 and a second sealing portion 133 connected to the support member 131. In the first liquid storage state, the first sealing portion 132 is in interference fit with the first liquid injection hole 1221, that is, the first sealing portion 132 blocks the first liquid injection hole 1221, and the housing 110, the columnar tube 121, the first packaging platform 122, and the first sealing portion 132 together form the liquid storage chamber 190. At this time, the second sealing portion 133 is not connected to the second liquid injection hole 1231, and the aerosol matrix in the liquid storage chamber 190 is separated from the atomizing core 150 in the columnar tube 121. The support member 131 is pushed toward the atomizer core 150. When the first sealing portion 132 moves away from the first liquid injection hole 1221 and the second sealing portion 133 is in interference fit with the second liquid injection hole 1231 (i.e., the second sealing portion 133 blocks the second liquid injection hole 1231), the aerosol matrix in the liquid storage chamber 190 flows out of the first liquid injection hole 1221 and enters the atomizer core 150 through the first liquid inlet hole 1211. At this point, the second packaging platform 123, the housing 110, the cylindrical tube 121, and the second sealing portion 133 form a second liquid storage state.
[0057] In one embodiment, the support member 131, the first sealing portion 132, and the second sealing portion 133 are made of different materials and can be integrally formed through in-mold injection molding. This integration makes the structure more compact, saves assembly time for multiple components in the production process, and reduces production costs by eliminating multiple components, facilitating automated production.
[0058] Since the support member 131 needs to withstand the pushing force, the material can be made of a material with a certain hardness, including but not limited to PP, PE or metal. The first sealing portion 132 and the second sealing portion 133 need to seal the first injection hole 1221 and the second injection hole 1231, and can be made of silicone.
[0059] In one embodiment, a third liquid injection hole 1241 is provided through the third sealing platform, and the sealing body 130 further includes a third sealing portion 134 connected to the support member 131. In the first liquid storage state, the third sealing portion 134 protrudes from the side of the packaging base 120 facing away from the housing 110. In the second liquid storage state, the third sealing portion 134 and the packaging base 120 are in interference fit, that is, the third sealing portion 134 blocks the third liquid injection hole 1241, and one end surface of the sealing body is flush with one end surface of the packaging base.
[0060] In one embodiment, the first liquid injection hole 1221, the second liquid injection hole 1231, and the third liquid injection hole 1241 are longitudinally coaxially arranged. The first sealing portion 132, the second sealing portion 133, and the third sealing portion 134 matching the first liquid injection hole 1221, the second liquid injection hole 1231, and the third liquid injection hole 1241 are also longitudinally coaxially arranged.
[0061] In one embodiment, the first injection hole 1221 , the second injection hole 1231 , and the third injection hole 1241 can be provided as one or more holes, and multiple holes can be provided for simultaneous injection to speed up the injection of the aerosol matrix.
[0062] In one embodiment, the atomizer device 100 includes a sealing plug (not shown). The sealing plug is located at the end of the atomizer conduit 111 away from the liquid storage chamber 190, i.e., the location where the user draws the liquid. This embodiment seals the atomizer conduit, preventing leakage, aerosol substrate volatilization, and deterioration from the factory to the user's hands, and also prevents accidental triggering of the device during transportation.
[0063] In one embodiment, the atomizing device 100 includes a sealing ring 140 disposed between the atomizing pipe 111 and the cylindrical tube 121. The sealing ring 140 provides a tighter connection between the atomizing pipe 111 and the cylindrical tube 121, thereby preventing the aerosol matrix in the liquid storage chamber 190 from escaping through the gap therebetween. The sealing ring 140 may be made of silicone.
[0064] In one embodiment, the atomization device 100 includes multiple sealing rings, each of which matches a corresponding packaging stage and is arranged between the packaging stage and the housing 110 to achieve a connection between the packaging stage and the housing 110. These sealing rings fill the gap between the housing 110 and the packaging base 120 to seal the liquid storage chamber 190, preventing leakage from the liquid storage chamber 190 and damaging the power supply device 200 located on one side of the liquid storage chamber 190. A first sealing ring 161 can be mounted on the first packaging stage 122, a second sealing ring 162 can be mounted on the second packaging stage 123, and a third sealing ring 163 can be mounted on the third packaging stage 124. The sealing rings can be made of silicone.
[0065] In one embodiment, the atomization core 150 includes a heating element 151, a liquid guide 152 and an atomization tube 153. The heating element 151 is arranged inside the liquid guide 152, and the liquid guide 152 is arranged inside the atomization tube 153. The atomization tube 153 is used to fix the shape of the heating element 151 and the liquid guide 152, and provide a better atomization space for the atomization medium. The liquid inlet hole 1211 is arranged through the outer wall of the atomization tube 153. The liquid guide 152 is used to directly absorb and conduct the atomization medium in the liquid storage component, so that the atomization medium is in contact with the heating element 151. When the heating element 151 is energized, the atomization medium in the liquid storage component is heated and evaporated into vapor or aerosol, which is then provided to the user for inhalation. The material of the liquid guide 152 can be made of oil-conducting cotton or porous ceramic material, which plays a better role in conducting the atomization liquid. The heating element 151 includes a heating segment and pins. The heating segment is used to heat the atomized medium. The pins are connected to the heating segment and can be provided at both ends of the heating segment to connect to the power supply device 200 to conduct current to the heating segment. The pins include a first pin (not shown) and a second pin (not shown).
[0066] The atomizer core 150 also includes a liquid storage. The liquid storage is mounted on the atomizer tube. The liquid storage is used to store the aerosol matrix that flows into the atomizer chamber in the second liquid storage state, to prevent the aerosol matrix from excessively flowing into the atomizer chamber after the liquid inlet hole 1211 is opened, causing splashing and scalding the user. The liquid storage can be set as an oil storage cotton 154. The liquid storage can be used to store the aerosol matrix in the liquid storage chamber 190, to prevent a large amount of aerosol matrix from flowing into the atomizer tube, causing insufficient atomization and leading to the user directly inhaling the aerosol matrix or being scalded by large particles of aerosol matrix. Due to the use of the oil core separation structure, after the liquid inlet hole 1211 is opened, it needs to stand for a few minutes before the aerosol matrix can infiltrate the atomizer core 150, and it cannot be used by the user immediately. A small amount of aerosol matrix can be injected into the liquid storage in advance, so that the user can directly inhale after opening the liquid inlet hole 1211.
[0067] In one embodiment, the atomizer core 150 includes a heating element and a liquid reservoir. These elements are housed within a cylindrical tube 121, with the liquid reservoir being hollow and positioned directly over the heating element. Because the cylindrical tube 121 supports the exterior of this embodiment, the atomizer tube and liquid guide are eliminated. This arrangement results in a more compact structure, saving assembly time for multiple components during the production process. Furthermore, fewer components are produced, reducing production costs and facilitating automated production.
[0068] The bottom of the cylindrical tube 121 is provided with a through hole for the pin to pass through, which is used to fix the position of the pin to prevent the heating wire from moving. The fixing method can be fixed by dispensing glue, which is not limited in this embodiment.
[0069] In one embodiment, a drainage surface (not shown) and a drainage groove (not shown) are provided at one end of the columnar tube body 121 away from the atomization pipe 111. The drainage surface is arranged to be inclined outward from the hollow part, and the drainage groove is arranged on the drainage surface.
[0070] In one embodiment, one or more grooves are provided on the sidewall where the cylindrical tube 121 connects to the housing 110. The multiple protrusions or grooves form gaps that act as a capillary force. A small amount of condensate may accumulate in the gap between the cylindrical tube 121 and the housing 110. This embodiment utilizes the capillary action of the grooves to trap the condensate within the drainage trough, preventing it from falling directly.
[0071] As shown in FIG1 , the present application provides an atomization device, comprising an atomization device 100 and a power supply device 200. The atomization device 100 is used to generate an aerosol matrix for a user to inhale, and the power supply device 200 is used to supply power to the atomization device 100.
[0072] The atomizer device 100 also includes a conductive member 180. One end of the conductive member 180 is located on the side of the third packaging platform 124 closest to the atomizer core 150 and is electrically connected to the heating element 151 via a pin. The other end of the conductive member 180 is exposed on the side of the third packaging platform 124 that is exposed to the air, i.e., the side away from the atomizer core 150. In the first liquid storage state, because the sealing body 130 protrudes from the side of the packaging base 120 facing away from the atomizer core 150, the conductive member 180, which is coplanar with the packaging base 120, cannot directly contact the conductive connector 210 on the power supply device 200. In the second liquid storage state, the sealing body 130 has moved toward the liquid storage chamber and is now in the same plane as the packaging base 120. At this time, the conductive member 180 can establish an electrical connection with the power supply device 200 by directly contacting the conductive connector 210 on the power supply device 200, so as to supply the power of the power supply device 200 to the heating element 151, heating and atomizing to generate aerosol for the user to inhale. Through this embodiment, before the user officially uses it, the sealing body 130 is protrudingly arranged on the side of the packaging base 120 away from the atomizer core 150, so that before the atomizer device 100 is connected to the power supply device 200, the sealing body 130 must be pushed to activate the atomizer device 100, thereby avoiding accidental triggering of the switch, or the user may easily misoperate the product after receiving it, and directly inhale without opening the liquid inlet hole 1211, resulting in dry burning of the heating wire or burnt liquid 152, thereby improving the taste and user experience.
[0073] In one embodiment, the conductive member 180 and the package base 120 are integrally formed using in-mold injection molding. Specifically, the conductive member 180 is first placed into a mold for the package base 120, resulting in the conductive member 180 and the package base 120 being integrally manufactured. The conductive member 180 can be an electrode column or an electrode sheet, and is made of a metal with good conductivity. In this embodiment, the package base 120 is made of an insulating material.
[0074] In one embodiment, the conductive member 180 may be an electrode sheet, and the package base 120 may be provided with a support column located at one end of the third package platform 124 near the heating element to support the conductive member 180. In this embodiment, the provision of an electrode sheet saves more metal material than electrode columns, thereby reducing production costs.
[0075] The above embodiments are only used to illustrate the technical solutions of the present application, rather than to limit them. Although the present application has been described in detail with reference to the aforementioned embodiments, those skilled in the art should understand that they can still modify the technical solutions described in the aforementioned embodiments, or make equivalent replacements for some of the technical features therein. However, these modifications or replacements do not deviate the essence of the corresponding technical solutions from the spirit and scope of the technical solutions of the embodiments of the present application.
Claims
1. An atomizing device, characterized in that: include: A shell, one end of which is provided with an opening, and the other end of which is extended inwardly to be provided with an atomization pipeline; A packaging seat body, used to block the opening so that the packaging seat body and the shell form a liquid storage cavity; wherein the packaging seat body comprises a columnar tube body provided with an atomization cavity, and the columnar tube body is connected to the atomization pipeline; A sealing body, movably connected to the packaging seat body to form a first liquid storage state or a second liquid storage state; An atomizing core, arranged in the atomizing chamber, and used for atomizing the aerosol matrix in the liquid storage chamber; Wherein, in the first liquid storage state, the sealing body is protrudingly arranged on a side of the packaging seat body away from the atomizer core, and the atomizer core is separated from the aerosol matrix in the liquid storage cavity; In the second liquid storage state, the sealing body is recessed or flushly arranged on a side of the packaging base body facing away from the atomizer core, and the atomizer core is in contact with the aerosol matrix in the liquid storage cavity.
2. The atomizing device according to claim 1, characterized in that: The packaging seat body comprises: a first packaging platform and a second packaging platform connected to the columnar tube body; The first packaging platform is used to form a first liquid storage state together with the shell and the sealing body, and the second packaging platform is used to form a second liquid storage state together with the shell and the sealing body.
3. The atomizing device according to claim 2, characterized in that: The packaging seat body comprises a liquid inlet hole arranged on the side wall of the columnar tube body, and the liquid inlet hole is set between the first packaging stage and the second packaging stage.
4. The atomizing device according to claim 3, characterized in that: The first packaging platform is provided with a first liquid injection hole, the sealing body includes a first sealing portion, and when the first sealing portion blocks the first liquid injection hole, the atomizing device forms a first liquid storage state; The second packaging platform is penetrated by a second liquid injection hole, and the sealing body includes a second sealing portion. When the first liquid injection hole is opened and the second sealing portion blocks the second liquid injection hole, the liquid inlet hole is connected to the liquid storage cavity and the atomization core, and the atomization device forms a second liquid storage state.
5. The atomizing device according to claim 2, characterized in that: The package base body further includes a third package stage connected to the second package stage. The third package stage is arranged on a side of the second package stage away from the first package stage. A side of the third package stage away from the second package stage is substantially flush with the opening.
6. The atomizing device according to claim 5, characterized in that: The third packaging platform is provided with a third liquid injection hole; The sealing body comprises a third sealing portion, which is arranged on a side of the second sealing portion away from the first sealing portion. In the second liquid storage state, the third sealing portion blocks the third liquid injection hole.
7. The atomizing device according to claim 6, characterized in that: The sealing body further includes a supporting member, which is fixedly connected to the first sealing portion, the second sealing portion, and the third sealing portion, and the supporting member and the first sealing portion, the second sealing portion, and the third sealing portion are made of different materials.
8. The atomizing device according to claim 7, characterized in that: The supporting member is made of metal; the first sealing portion, the second sealing portion and the third sealing portion are made of silicone.
9. An atomization device, characterized in that: It comprises a power supply device and an atomization device as described in any one of claims 1 to 8, wherein in a second liquid storage state, the power supply device and the atomization device are electrically connected.
10. The atomizing device according to claim 9, characterized in that: The atomization device is provided with a conductive member electrically connected to the atomization core, and the conductive member is exposed at an end of the third packaging platform away from the atomization core. The power supply device includes a conductive connecting member. In the second liquid storage state, the conductive member is in contact with and connected to the conductive connecting member to achieve electrical connection between the atomization device and the power supply device.
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