Atomizer and atomizing device
By designing a removable liquid storage component connected to the liquid circuit of the device in the electronic atomization device, the problem of flavor mixing when changing flavors in electronic atomization devices is solved, achieving the effect of instant flavor switching without flavor mixing, thus improving the user experience.
Patent Information
- Application Number
- CN202422088925.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-27
- Publication Date
- 2025-10-17
- Estimated Expiration
- 2034-08-27
AI Technical Summary
Existing electronic atomization devices are prone to flavor crosstalk when changing flavors, affecting the user experience.
Design an atomizer including a body, an atomizer core, and a removable liquid reservoir. The liquid reservoir is connected to the body via a liquid path, allowing users to replace the liquid reservoir at any time. The aerosol matrix is stored in the liquid reservoir to prevent residue from remaining on the body and to ensure that different flavors of aerosol matrix do not mix.
It enables users to change flavors instantly without mixing flavors, reduces the difficulty of replacing liquid storage components, and improves the user experience.
Smart Images

Figure CN223437890U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of aerosol atomization, in particular to an atomizer and an atomization device. BACKGROUND
[0002] Electronic atomization equipment can atomize aerosol substrates and generate aerosols. In order to improve the user experience, replaceable taste electronic atomization equipment has emerged as the times require. In the prior art, when replacing the taste, it is usually necessary to inject another taste aerosol substrate into the electronic atomization equipment, but due to the residual of the previous aerosol substrate in the electronic atomization equipment, the latter aerosol substrate is easy to cause the problem of taste mixing after injection, thereby affecting the user experience. CONTENT OF THE UTILITY MODEL
[0003] The present application provides an atomizer and an atomization device, aiming to solve the technical problem of taste mixing of the existing electronic atomization equipment when replacing the taste.
[0004] In some embodiments of the present application, an atomizer is provided, comprising a body, an atomization core and a liquid storage assembly, the body is provided with a mounting position; the atomization core is arranged on the mounting position and connected with the body; the liquid storage assembly is used for storing an aerosol substrate, and the liquid storage assembly is detachably mounted to the body; wherein the liquid storage assembly has an atomization channel, and the liquid storage assembly is configured to establish liquid path communication between the liquid storage assembly and the atomization core in a state of being mounted to the body, so that the aerosol substrate is transferred to the atomization core, and the atomization core is used for atomizing the aerosol substrate.
[0005] In some embodiments, the body comprises a first shell, the first shell has a containing cavity and an open mouth communicating with the containing cavity; the mounting position is formed in the containing cavity, at least part of the atomization core is arranged in the containing cavity, and the liquid storage assembly is detachably mounted into the containing cavity through the open mouth.
[0006] In some embodiments, part of the liquid storage assembly is arranged in the containing cavity, and another part of the liquid storage assembly is arranged outside the open mouth.
[0007] In some embodiments, one end of the atomization core is arranged at the bottom of the containing cavity, and the other end of the atomization core extends from the bottom of the containing cavity towards the direction of the open mouth; along the length direction of the containing cavity, the liquid storage assembly is inserted in the containing cavity, and the atomization core is arranged in the atomization channel.
[0008] In some embodiments, the liquid storage assembly comprises a liquid storage container and a liquid storage element; the liquid storage element is installed in the liquid storage container; the liquid storage container has a first through hole and a second through hole; the liquid storage element has a through channel, two ends of the through channel being communicated with the first through hole and the second through hole to form the atomization channel.
[0009] In some embodiments, the liquid storage assembly further comprises a liquid storage element, the liquid storage element being installed in the liquid storage container, the liquid storage element being a porous material having liquid adsorption capacity.
[0010] In some embodiments, the liquid storage assembly further comprises a sealing element, the sealing element being arranged at the first through hole and / or the through channel, the sealing element being used for sealingly connecting the atomization core and the liquid storage assembly.
[0011] In some embodiments, the liquid storage assembly and the machine body have a fixed connection structure, the fixed connection structure being used for stably installing the liquid storage assembly to the machine body.
[0012] In some embodiments, the first shell comprises an outer shell and a partition plate connected in the outer shell, the partition plate and the opening being arranged at opposite ends of the outer shell respectively, the outer shell and the partition plate enclosing the accommodation cavity; the partition plate has a connecting portion and a supporting portion, the connecting portion and the supporting portion jointly forming the installation position, the atomization core being installed between the connecting portion and the supporting portion.
[0013] In some embodiments, the partition plate is provided with a third through hole, the third through hole being arranged through the connecting portion and the supporting portion, the atomization core comprising an atomization tube, a liquid guide element and a heating element; the atomization tube is clamped between the connecting portion and the supporting portion, the third through hole being communicated with a lumen of the atomization tube, the liquid guide element being accommodated in the atomization tube, and the heating element being accommodated in the liquid guide element.
[0014] In some embodiments, the first shell comprises an outer shell and a partition plate connected in the outer shell, the partition plate having a connecting portion; the liquid storage assembly further comprises a sealing element, the sealing element being sleeved between the connecting portion and a hole wall of the first through hole.
[0015] In some embodiments, the sealing element is in the form of a ring, an outer sidewall of the sealing element has a groove, the liquid storage container is provided with a clamping portion at the first through hole, and the sealing element is clamped on the clamping portion through the groove.
[0016] In some embodiments, the atomizer further comprises a mouthpiece cover; the mouthpiece cover is detachably connected with the machine body and covers the machine body, the mouthpiece cover is provided with an air outlet channel, and the air outlet channel is communicated with the atomization core.
[0017] Some embodiments provide an atomization device, comprising a power supply and the atomizer described in any of the above embodiments, the power supply is detachably connected with the atomizer, and the power supply is used to supply power to the atomizer.
[0018] In some embodiments, the power supply comprises a power supply assembly, a second housing and a third housing, the second housing and the third housing form an accommodation cavity, and the power supply assembly is installed in the accommodation cavity; the machine body is magnetically connected with the second housing, a side wall of a side of the machine body close to the second housing is provided with an air inlet hole, and an air inlet channel is arranged between the machine body and the second housing, and the air inlet channel communicates the air inlet hole and the atomization core.
[0019] According to the atomizer in the above embodiments, by setting the liquid storage assembly to be detachably installed to the machine body, the user can install or remove the liquid storage assembly as needed, so as to facilitate the user to replace the liquid storage assembly at any time and anywhere. Different liquid storage assemblies can be used to store different flavors of aerosol substrates, so that the user can select different liquid storage assemblies to change the flavor. Since the aerosol substrate is stored in the liquid storage assembly, when the user replaces the liquid storage assembly, the aerosol substrate of the previous flavor is removed with the liquid storage assembly and will not be left on the machine body. Therefore, the aerosol substrate of the latter flavor after replacement will not have the problem of flavor mixing with the aerosol substrate of the previous flavor, thereby ensuring the user's taste. When the liquid storage assembly is installed on the machine body, since the atomization core is in the installation position and in liquid communication with the liquid storage assembly, the aerosol substrate can be delivered to the atomization core, the atomization core can absorb the aerosol substrate in the liquid storage assembly for atomization, and the generated aerosol after atomization can be discharged from the atomization channel, thereby realizing the function of instant flavor change without flavor mixing.
[0020] In addition, the atomization core is connected to the installation position of the machine body, so that the machine body and the atomization core can form a fixed assembly, thereby reducing the number of parts to be disassembled when the user replaces the liquid storage assembly. When the user replaces the liquid storage assembly, the user only needs to remove or install the liquid storage assembly from the machine body, without the need to disassemble or assemble the atomization core, thereby reducing the operation difficulty of the user when replacing the liquid storage assembly. BRIEF DESCRIPTION OF DRAWINGS
[0021] Figure 1 FIG. 1 is a perspective view of an atomization device according to some embodiments of the present application;
[0022] Figure 2 FIG. 2 is an exploded view of the atomization device in FIG. 1; Figure 1
[0023] FIG. 3 is a sectional view of the atomization device in FIG. 1 before the liquid storage assembly is assembled; Figure 3 Figure 2
[0024] Figure 4 Fig. 1 is a schematic view of an atomization device according to an embodiment of the present application; Figure 2 Fig. 2 is a schematic view of a cross-sectional structure of a body of the atomization device;
[0025] Figure 5 Fig. 3 is a schematic view of a three-dimensional structure of an atomization core of the atomization device; Figure 2 Fig. 4 is a schematic view of a three-dimensional structure of the atomization core of the atomization device from another perspective;
[0026] Figure 6 Fig. 5 is a schematic view of a cross-sectional structure of an assembled liquid storage assembly of the atomization device; Figure 2 Fig. 6 is a schematic view of a three-dimensional structure of the liquid storage assembly of the atomization device from another perspective;
[0027] Figure 7 Fig. 7 is a schematic view of a three-dimensional structure of a power supply of the atomization device; Figure 2 Fig. 8 is a schematic view of an exploded structure of the power supply of the atomization device.
[0028] Figure 8 Fig. 9 is a schematic view of a three-dimensional structure of the power supply of the atomization device from another perspective. Figure 2 Fig. 10 is a schematic view of an exploded structure of the power supply of the atomization device.
[0029] Wherein:
[0030] 1-atomizer; 10-body; 100-mounting site; 11-first housing; 110-receiving cavity; 111-opening; 112-outer shell; 113-baffle; 1130-third through hole; 114-connection part; 115-supporting part; 116-mounting cavity; 117-air inlet hole; 12-atomization core; 120-liquid passage; 121-atomization tube; 122-liquid guide; 123-fastener; 13-liquid storage assembly; 131-liquid storage compartment; 132-liquid storage member; 133-atomization channel; 1331-first through hole; 1332-second through hole; 1333-channel; 134-sealing member; 1341-clamping part; 1342-groove; 14-muffler cover; 140-air outlet channel; 220-air inlet channel; 2-power supply; 21-power supply assembly; 22-second housing; 23-third housing; 24-receiving cavity. Specific embodiments
[0031] The present application will be further described below in conjunction with specific embodiments and the accompanying drawings. In different embodiments, similar elements are denoted by similar reference numerals. In the following embodiments, many details are described in order to make the present application better understood. However, those skilled in the art can easily recognize that some features can be omitted in different cases, or can be replaced by other elements, materials, methods. In some cases, some operations related to the present application are not shown or described in the specification in order to avoid the core of the present application being overwhelmed by too much description, and it is not necessary to describe these related operations in detail for those skilled in the art based on the description in the specification and general technical knowledge in the art.
[0032] In addition, the features described in the specification, operations or characteristics can be combined in any appropriate manner to form various embodiments, and the steps involved in the operations of each embodiment can also be sequentially adjusted or adjusted in a manner that can be easily apparent to those skilled in the art. Therefore, the description and drawings are only for the purpose of clearly describing one embodiment, and do not mean the necessary composition and / or order.
[0033] The serial numbers of the components in this paper, such as "first", "second", etc., are only used to distinguish the described objects, and do not have any order or technical meaning. The "connection" and "coupling" in this application include direct and indirect connections (couplings) unless otherwise specified.
[0034] The present application provides an atomization device, such as Figure 1 and Figure 2 The atomization device can include an atomizer 1 and a power supply 2, the power supply 2 is detachably connected with the atomizer 1, and the power supply 2 is used to supply power to the atomizer 1. Wherein, the atomizer 1 can include a body 10, an atomization core 12, a liquid storage assembly 13 and a mouthpiece cover 14, the atomization core 12 and the liquid storage assembly 13 can be installed on the body 10, the mouthpiece cover 14 can be installed on one end of the body 10, and the power supply 2 can be installed on the other end of the body 10. The liquid storage assembly 13 is used to store aerosol substrate, the atomization core 12 can be electrically connected with the power supply 2, and the power supply 2 can supply power to the atomization core 12, so that the atomization core 12 can heat the aerosol substrate to generate aerosol.
[0035] In order to solve the problem of taste mixing of electronic atomization equipment when changing taste, the present application also provides an atomizer 1, as shown in Figures 1 to 3 The atomizer 1 can include a body 10, an atomization core 12 and a liquid storage assembly 13, the body 10 can have a mounting position 100, the atomization core 12 is arranged on the mounting position 100 and connected with the body 10, and the liquid storage assembly 13 is detachably mounted to the body 10. Wherein, the liquid storage assembly 13 can have an atomization channel 133, and the liquid storage assembly 13 can be configured to form a liquid path communication between the mounting position 100 and the atomization core 12, so that the aerosol substrate is delivered to the atomization core 12, and the atomization core 12 is used to atomize the aerosol substrate.
[0036] By setting the liquid storage assembly 13 to be detachably mounted to the body 10, the user can independently install or remove the liquid storage assembly 13 as needed, thereby facilitating the user to replace the liquid storage assembly 13 at any time and anywhere. Different liquid storage assemblies 13 can be used to store aerosol substrates of different flavors, so that the user can select different liquid storage assemblies 13 to change the flavor. Since the aerosol substrate is stored in the liquid storage assembly 13, when the user replaces the liquid storage assembly 13, the aerosol substrate of the previous flavor is removed with the liquid storage assembly 13 and does not remain on the body 10. Therefore, the aerosol substrate of the latter flavor after replacement does not have the problem of cross-flavor with the aerosol substrate of the previous flavor, thereby ensuring the user's taste. When the liquid storage assembly 13 is mounted on the body 10, since the atomizing core 12 is in the mounting position 100 and in liquid communication with the liquid storage assembly 13, the aerosol substrate can be delivered to the atomizing core 12, the atomizing core 12 can absorb the aerosol substrate in the liquid storage assembly 13 for atomization, and the generated aerosol after atomization can be discharged from the atomizing channel 133, thereby realizing the function of instant flavor change without cross-flavor for the user.
[0037] In addition, the atomizing core 12 is connected to the mounting position 100 of the body 10, so that the body 10 and the atomizing core 12 can form a fixed assembly, thereby reducing the number of parts to be disassembled when the user replaces the liquid storage assembly 13. When the user replaces the liquid storage assembly 13, the user only needs to remove or install the liquid storage assembly 13 from or to the body 10, without the need to disassemble or assemble the atomizing core 12, thereby reducing the operation difficulty of the user when replacing the liquid storage assembly 13.
[0038] The atomizing core 12 can be partially disposed in the atomizing channel 133 or entirely disposed in the atomizing channel 133. The atomizing core 12 can be exposed outside the body 10 or accommodated in the body 10. The present application does not specially limit the manner in which the atomizing core 12 is disposed in the atomizing channel 133 or the relative positional relationship between the atomizing core 12 and the body 10.
[0039] In some embodiments, as shown in Figure 2 and Figure 3 The body 10 can include a first housing 11, the first housing 11 can have a receiving cavity 110 and an opening 111 in communication with the receiving cavity 110; the mounting position 100 can be formed in the receiving cavity 110, at least part of the atomizing core 12 is disposed in the receiving cavity 110, and the liquid storage assembly 13 can be detachably mounted into the receiving cavity 110 through the opening 111.
[0040] Therefore, the liquid storage assembly 13 can be loaded into the body 10 from the opening 111 and accommodated in the accommodation cavity 110, thereby facilitating the user to install or remove the liquid storage assembly 13. The first shell 11 can protect the liquid storage assembly 13 from being exposed to the outside and being easily bumped. The atomizing core 12 can be entirely arranged in the accommodation cavity 110 or partially protrude out of the accommodation cavity 110, and the present application does not specially limit whether the atomizing core 12 protrudes out of the accommodation cavity 110.
[0041] In other embodiments, the atomizing core 12 can also be directly connected to the outer surface of the body 10, that is, without the accommodation cavity 110. When the liquid storage assembly 13 is installed, the atomizing core 12 directly penetrates into the atomizing channel 133, and the present application does not specially limit whether the body 10 is provided with the accommodation cavity 110.
[0042] In addition, the body 10 can also include a circuit board and a bottom shell, the circuit board can be used for electrical connection with the atomizing core 12, and the bottom shell can be used for forming an airflow channel in the body, and the present application does not specially limit the specific structure of the body 10.
[0043] In some embodiments, as shown in Figure 3 the one end of the atomizing core 12 can be arranged at the bottom of the accommodation cavity 110, and the other end of the atomizing core 12 can extend from the bottom of the accommodation cavity 110 towards the opening 111; along the length direction of the accommodation cavity 110, the liquid storage assembly 13 is inserted into the accommodation cavity 110, and the atomizing core 12 is arranged in the atomizing channel 133.
[0044] For example, the atomizing core 12 can be arranged in a long strip shape along the a-a axis direction, the bottom end of the atomizing core 12 is arranged at the bottom of the accommodation cavity 110, and the top end of the atomizing core 12 extends towards the opening 111. When the user installs the liquid storage assembly 13, the user only needs to push the liquid storage assembly 13 into the accommodation cavity 110 from the opening 111. When the user replaces the liquid storage assembly 13, the user only needs to pull the liquid storage assembly 13 out of the accommodation cavity 110 from the opening 111, which is simple and convenient.
[0045] In other embodiments, the liquid storage assembly 13 and the first shell 11 can also be arranged in a cylindrical structure, and a threaded structure is arranged between the outer side wall of the liquid storage assembly 13 and the inner side wall of the first shell 11, so that the liquid storage assembly 13 is detachably connected to the first shell 11 through the threads. Alternatively, the liquid storage assembly 13 and the first shell 11 can also be arranged in a snap connection structure, and the present application does not specially limit the specific shape of the liquid storage assembly 13 and the first shell 11 and the detachable connection mode between the liquid storage assembly 13 and the first shell 11.
[0046] In some embodiments, as shown in Figure 3As shown, the liquid storage assembly 13 can include a liquid storage cartridge 131 and a liquid storage piece 132, the liquid storage piece 132 is installed in the liquid storage cartridge 131, the liquid storage cartridge 131 has a first through hole 1331 and a second through hole 1332, the liquid storage piece 132 has a through channel 1333, both ends of the channel 1333 communicate with the first through hole 1331 and the second through hole 1332 to form an atomization channel 133.
[0047] The liquid storage piece 132 can adsorb the aerosol substrate in the liquid storage cartridge 131, so that the aerosol substrate is not easy to leak in and out of the liquid storage cartridge 131. When the liquid storage assembly 13 is inserted into the accommodating cavity 110, the atomization core 12 is arranged in the atomization channel 133, and the liquid storage piece 132 can be wrapped around the outer surface of the atomization core 12, so that the aerosol substrate adsorbed by the liquid storage piece 132 can be immersed in the atomization core 12 for atomization. Wherein, the liquid storage piece 132 can be liquid storage cotton or other porous materials, and the specific material of the liquid storage piece 132 is not specially limited in the present application. In other embodiments, the liquid storage cartridge 131 can also connect a pipeline between the first through hole 1331 and the second through hole 1332, and a liquid passing hole can be formed on the pipeline, so that the aerosol substrate can flow directly from the liquid passing hole to the atomization core 12 for atomization. At this time, the liquid storage piece 132 can also be omitted.
[0048] Wherein, the liquid storage cartridge 131 can include a cartridge body and a cartridge cover connected together, and the liquid storage piece 132 can be injected with the aerosol substrate into the cartridge body after being loaded into the cartridge body, and then the cartridge cover is connected with the cartridge body, so that the aerosol substrate is encapsulated in the liquid storage cartridge 131. In addition, a sealing ring can be arranged between the cartridge body and the cartridge cover, which can be used to seal the gap between the cartridge body and the cartridge cover. The specific structure of the liquid storage cartridge 131 is not specially limited in the present application.
[0049] In addition, before the liquid storage assembly 13 is loaded into the first shell 11, a layer of sealing film can be attached to each of the first through hole 1331 and the second through hole 1332 to prevent the aerosol substrate in the liquid storage assembly 13 from leaking out. When the liquid storage assembly 13 is loaded into the first shell 11, the sealing film can be torn off and then the liquid storage assembly 13 is loaded into the first shell 11. Alternatively, the atomization core 12 can directly pierce the sealing film. When the liquid storage assembly 13 is loaded into the first shell 11, the second end of the atomization core 12 can be located near the second through hole 1332, so that the second end of the atomization core 12 communicates with the second through hole 1332. Alternatively, the second end of the atomization core 12 can directly penetrate the second through hole 1332 to release the atomized aerosol. Whether the second end of the atomization core 12 penetrates the second through hole 1332 or not is not specially limited in the present application.
[0050] In some embodiments, as shown in FIG. 1, Figure 4 and Figure 5As shown, the first shell 11 can include a shell 112, and a partition plate 113 connected in the shell 112, the partition plate 113 and the opening 111 are respectively arranged at opposite ends of the shell 112, and the shell 112 and the partition plate 113 enclose the accommodation cavity 110; the partition plate 113 can have a connecting portion 114 and a supporting portion 115, the connecting portion 114 and the supporting portion 115 can jointly form the mounting site 100, and the atomization core 12 can be mounted between the connecting portion 114 and the supporting portion 115.
[0051] By arranging the partition plate 113 in the first shell 11, the accommodation cavity 110 can be arranged on one side of the partition plate 113, and the power supply 2 can be arranged on the other side of the partition plate 113, so that the liquid storage assembly 13 and the power supply 2 are arranged separately to avoid aerosol matrix from leaking into the power supply 2. The connecting portion 114 can be arranged as a cylindrical structure extending along the a-a axis to the opening 111, the cylindrical structure has a mounting cavity 116, the supporting portion 115 can protrude from the side wall of the mounting cavity 116, and one end of the atomization tube 121 can be inserted into the mounting cavity 116 and abut against the supporting portion 115 to ensure the reliability of the connection of the atomization tube 121.
[0052] In some embodiments, as shown in Figure 4 and Figure 5 The partition plate 113 can be provided with a third through hole 1130, the third through hole 1130 can be arranged through the connecting portion 114 and the supporting portion 115, the atomization core 12 can include an atomization tube 121, a liquid guide 122 and a heating element (not shown in the figure), the atomization tube 121 can be clamped between the connecting portion 114 and the supporting portion 115, the third through hole 1130 can be in communication with the lumen of the atomization tube 121, the liquid guide 122 is accommodated in the atomization tube 121, and the heating element is accommodated in the liquid guide 122.
[0053] For example, the third through hole 1130 can be in communication with the mounting cavity 116 on the connecting portion 114. The atomization tube 121 can be provided with a liquid passage 120 on the wall thereof, when the atomization core 12 penetrates into the liquid storage assembly 13, the aerosol matrix in the liquid storage assembly 13 can be immersed into the liquid guide 122 through the liquid passage 120, the heating element can heat and atomize the aerosol matrix adsorbed by the liquid guide 122, and the aerosol generated after atomization can be discharged from the top of the atomization tube 121. The supporting portion 115 can be provided with a through hole, so that the pin of the heating element can pass through the through hole and be electrically connected with the power supply 2. The bottom of the atomization core 12 can also be provided with a fastener 123, the fastener 123 is sleeved in the atomization tube 121 and abuts against the atomization tube 121 to fix the pin of the heating element.
[0054] The atomizing pipe 121 can be connected and fixed to the connecting portion 114 by bonding or by insertion, and the application does not specially limit the connection mode between the atomizing pipe 121 and the connecting portion 114.
[0055] In some embodiments, as shown in Figure 6 part of the liquid storage assembly 13 can be arranged in the accommodating cavity 110, and another part of the liquid storage assembly 13 can be arranged outside the opening 111.
[0056] When the liquid storage assembly 13 is loaded into the accommodating cavity 110, part of the liquid storage assembly 13 protrudes outside the opening 111, so that when the user takes out the liquid storage assembly 13, the user can pinch the part of the liquid storage assembly 13 protruding outside the opening 111 with fingers to pull out the liquid storage assembly 13, thereby facilitating the user to replace the liquid storage assembly 13. In other embodiments, a push-pull structure can also be arranged between the liquid storage assembly 13 and the first shell 11, so that the liquid storage assembly 13 can be popped out of the first shell 11.
[0057] In some embodiments, as shown in Figure 6 and Figure 7 The first shell 11 can include a shell 112 and a partition plate 113 connected in the shell 112, and the partition plate 113 can have a connecting portion 114. The liquid storage assembly 13 can further include a sealing member 134, which can be sleeved between the connecting portion 114 and the hole wall of the first through hole 1331.
[0058] The sealing member 134 can seal the gap between the connecting portion 114 and the hole wall of the first through hole 1331, thereby preventing the problem of odor mixing caused by the leakage of aerosol substrate into the first shell 11. The sealing member 134 can be in the form of a sealing ring or a sealing plug, and the application does not specially limit the specific shape of the sealing member 134.
[0059] In some embodiments, as shown in Figure 6 and Figure 7 The sealing member 134 can be in the form of a circular ring, and the outer side wall of the sealing member 134 can have a groove 1342. The liquid storage bin 131 is provided with a clamping portion 1341 at the first through hole 1331, and the sealing member 134 is clamped on the clamping portion 1341 through the groove 1342.
[0060] The sealing member 134 is clamped on the clamping portion 1341 through the groove 1342, so that the sealing member 134 can be stably fixed in the liquid storage compartment 131 to avoid falling off of the sealing member 134. In addition, the inner and outer sides of the bottom plate of the liquid storage compartment 131 can also be provided with annular grooves along the circumference of the first through hole 1331, and the side walls on both sides of the groove of the sealing member 134 can be embedded in the annular grooves of the bottom plate of the liquid storage compartment 131, so that the connection between the sealing member 134 and the liquid storage compartment 131 is more stable, and the sealing performance is better.
[0061] When the liquid storage assembly 13 is installed in the first shell 11, the sealing member 134 can move with the liquid storage assembly 13 to a position abutting the outer side wall of the connecting portion 114, so as to seal between the liquid storage compartment 131 and the connecting portion 114 to avoid the aerosol substrate flowing into the accommodation cavity 110. In other embodiments, the sealing member 134 can also be provided on the outer side wall of the connecting portion 114, and when the liquid storage assembly 13 is installed in the first shell 11, the sealing member 134 can abut the hole wall of the first through hole 1331. The specific position of the sealing member 134 is not specially limited in the present application.
[0062] In more embodiments, as shown in Figure 2 The atomizer 1 can also include a mouthpiece cover 14, which is detachably connected with the machine body 10 and covers the machine body 10. The mouthpiece cover 14 is provided with an air outlet passage 140, which communicates with the atomization core 12.
[0063] The air outlet passage 140 communicates with the atomization core 12, so that the aerosol generated after atomization can be discharged from the air outlet passage 140. The mouthpiece cover 14 can be detachably connected with the first shell 11 of the machine body 10 by screwing, clamping or inserting, and the like. The specific manner of detachable connection between the mouthpiece cover 14 and the machine body 10 is not specially limited in the present application. When the liquid storage assembly 13 is installed in the machine body 10, the mouthpiece cover 14 can fix the liquid storage assembly 13 in the machine body 10 through the connection with the machine body 10. In addition, the mouthpiece cover 14 can also be detachably connected with the liquid storage assembly 13, and the liquid storage assembly 13 can be fixed in the machine body 10 by screwing, clamping or inserting, and the like. Of course, the mouthpiece cover 14 can also be detachably connected with the machine body 10 and detachably connected with the liquid storage assembly 13, which is not specially limited in the present application.
[0064] In addition, in other embodiments, the mouthpiece cover 14 can also be integrally formed or fixedly connected with the liquid storage assembly 13. When the user needs to take out the liquid storage assembly 13, the mouthpiece cover 14 can be pinched to take out the liquid storage assembly 13, thereby facilitating the operation of the user.
[0065] In some embodiments, as shown in Figure 2 , Figure 3 and Figure 8As shown, the power supply 2 can include a power supply assembly 21, a second housing 22, and a third housing 23, the second housing 22 and the third housing 23 enclosing a receiving cavity 24, and the power supply assembly 21 can be installed in the receiving cavity 24; the machine body 10 can be magnetically connected with the second housing 22, and the side wall of the side of the machine body 10 close to the second housing 22 is provided with an air inlet hole 117, and an air inlet channel 220 is arranged between the machine body 10 and the second housing 22, and the air inlet channel 220 communicates the air inlet hole 117 and the atomization core 12.
[0066] For example, the first housing 11 and the second housing 22 are magnetically connected, which can simplify the operation difficulty of the connection between the power supply 2 and the atomizer 1. In other embodiments, the first housing 11 and the second housing 22 can also be connected by snap or plug connection, and the application does not specially limit the connection mode between the first housing 11 and the second housing 22. During atomization, air can enter the air inlet channel 220 from the air inlet hole 117, and since the third through hole 1130 is arranged through the connecting portion 114 and the supporting portion 115, and the third through hole 1130 communicates with the atomization tube 121, the air in the air inlet channel 220 can flow into the lumen of the atomization tube 121 from the third through hole 1130, thereby atomizing the aerosol substrate. The air inlet hole 117 can be a round hole, a waist-shaped hole, or a slit channel, and the application does not specially limit the specific shape of the air inlet hole 117.
[0067] In some embodiments, as shown in Figure 2 and Figure 8 The air inlet channel 220 can be arranged on the side of the second housing 22 facing the first housing 11, and the second housing 22 can have two oppositely arranged air inlet channels 220 that are communicated. In this way, when the power supply 2 is connected with the atomizer 1, whether the front of the power supply 2 and the air inlet hole 117 are located on the same side, or the back of the power supply 2 and the air inlet hole 117 are located on the same side, the air inlet hole 117 can be communicated with the air inlet channel 220, thereby avoiding the problem of the user inserting the power supply 2 in reverse.
[0068] In one embodiment, as shown in Figure 3 The fixing connection structure (not shown in the figure) is used to stably install the liquid storage assembly 13 to the machine body 10. The fixing connection structure forms a stable connection relationship between the machine body 10 and the liquid storage assembly 13, and the two are not easy to be separated during use.
[0069] In some embodiments, the fixing connection structure can be a threaded connection structure, and the external thread part of the threaded connection structure is arranged on the machine body 10, and the internal thread part is arranged on the liquid storage assembly 13.
[0070] In some embodiments, the fixed connection structure can be a magnetic attraction structure, a portion of the magnetic attraction structure is arranged on the body 10, and another portion is arranged on the surface opposite to the body 10 of the liquid storage assembly 13.
[0071] In some embodiments, the fixed connection structure can be a buckle connection structure, in which a hook portion is arranged on the lower surface of the liquid storage assembly 13, and a buckle portion is arranged on the surface opposite to the liquid storage assembly 13 of the body 10.
[0072] In one embodiment, as shown in FIG. 13, the sealing member 1331 is part of the fixed connection structure, and the atomizing core 12 or the mounting position (not labeled in the figure) of the atomizing core 12 is another part of the fixed connection structure. The sealing member 1331 is used to provide a large sliding damping after forming a connection relationship with the atomizing core 12 or the mounting position, so as to avoid the two from being separated. Figure 3
[0073] In some embodiments, the power supply assembly 21 can include circuit boards, batteries, microphones, controllers, and other components. The pins of the heating body in the atomizing core 12 can be electrically connected to the circuit board, and the battery can be electrically connected to the circuit board. Of course, the pins of the heating body can also be directly electrically connected to the battery, and the specific structure of the power supply assembly 21 is not specially limited in the present application.
[0074] The above application of specific examples to the present application is only used to help understand the present application and does not limit the present application. For those skilled in the art to which the present application belongs, according to the idea of the present application, a number of simple deductions, deformations or substitutions can be made.
Claims
1. An atomizer, characterized in that: include: The fuselage is provided with a mounting position; an atomizer core, disposed on the mounting position and connected to the body; and a liquid storage component for storing aerosol matrix, wherein the liquid storage component is detachably mounted to the body; The liquid storage component has an atomization channel, and the atomization core is at least partially arranged in the atomization channel. The liquid storage component is configured to establish a liquid path connection between the liquid storage component and the atomization core when it is installed on the fuselage, so that the aerosol matrix is transferred to the atomization core, and the atomization core is used to atomize the aerosol matrix.
2. The atomizer according to claim 1, wherein The body includes a first shell having a receiving cavity and an opening communicating with the receiving cavity; The installation position is formed in the accommodating cavity, at least a portion of the atomizer core is disposed in the accommodating cavity, and the liquid storage assembly is detachably installed in the accommodating cavity through the opening.
3. The atomizer according to claim 2, wherein A portion of the liquid storage component is disposed in the accommodating cavity, and another portion of the liquid storage component is disposed outside the opening.
4. The atomizer according to claim 2, wherein One end of the atomizer core is disposed at the bottom of the accommodating cavity, and the other end of the atomizer core extends from the bottom of the accommodating cavity toward the opening; Along the length direction of the accommodating cavity, the liquid storage assembly is inserted into the accommodating cavity, and the atomizing core is inserted into the atomizing channel.
5. The atomizer according to claim 2, wherein: The liquid storage assembly includes a liquid storage tank having a first through hole and a second through hole. Two ends of the atomizer core are respectively connected to the first through hole and the second through hole.
6. The atomizer according to claim 5, characterized in that The liquid storage component also includes a liquid storage part, which is installed in the liquid storage tank. The liquid storage part is a porous material with liquid adsorption capacity. The liquid storage part has a through channel, and both ends of the channel are connected to the first through hole and the second through hole to form the atomization channel.
7. The atomizer according to claim 5, wherein The liquid storage assembly further includes a sealing member, which is disposed in the first through hole and / or the through channel and is used to seal and connect the atomizer core and the liquid storage assembly.
8. The atomizer according to claim 5, wherein A fixed connection structure is provided between the liquid storage assembly and the body, and the fixed connection structure is used to securely mount the liquid storage assembly to the body.
9. The atomizer according to claim 2, wherein: The first shell includes an outer shell and a partition connected to the inner shell, wherein the partition and the opening are respectively arranged at opposite ends of the outer shell, and the outer shell and the partition enclose the accommodating cavity; The partition has a connecting portion and a supporting portion, the connecting portion and the supporting portion are arranged together to form the installation position, and the atomizer core is installed between the connecting portion and the supporting portion.
10. The atomizer according to claim 9, wherein The partition is provided with a third through hole, and the third through hole is provided through the connecting portion and the supporting portion. The atomizing core includes an atomizing tube, a liquid guide member and a heating member; The atomizing tube is clamped between the connecting portion and the supporting portion, the third through hole is communicated with the tube cavity of the atomizing tube, the liquid guiding member is accommodated in the atomizing tube, and the heating member is accommodated in the liquid guiding member.
11. The atomizer according to claim 5, wherein The first housing includes an outer shell and a partition connected to the inner shell, wherein the partition has a connecting portion; The liquid storage assembly further includes a sealing member, which is sleeved between the connecting portion and the hole wall of the first through hole.
12. The atomizer according to claim 11, wherein The sealing member is annular in shape, and an outer side wall of the sealing member has a groove. The liquid storage tank is provided with a clamping portion at the first through hole, and the sealing member is clamped on the clamping portion through the groove.
13. The atomizer according to any one of claims 1 to 12, characterized in that The atomizer further comprises a nozzle cover; The nozzle cover is detachably connected to the body and is covered on the body. The nozzle cover is provided with an air outlet channel, and the air outlet channel is communicated with the atomizer core.
14. An atomizing device, characterized in that: include: The atomizer according to any one of claims 1 to 10; as well as, A power supply is detachably connected to the atomizer, and is used to supply power to the atomizer.
15. The atomizing device according to claim 14, wherein: The power supply includes a power supply assembly, a second shell and a third shell, wherein the second shell and the third shell are enclosed to form an accommodating cavity, and the power supply assembly is installed in the accommodating cavity; The body is magnetically connected to the second shell, an air inlet hole is provided on a side wall of the body close to the second shell, an air inlet channel is provided between the body and the second shell, and the air inlet channel connects the air inlet hole and the atomizer core.