Dual-atomized cartridge electronic atomizer

CN224734737UActive Publication Date: 2026-09-11深圳吉嘉科讯科技有限公司
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Patent Information

Application Number
CN202522010312.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-18
Publication Date
2026-09-11
Estimated Expiration
2035-09-18

AI Technical Summary

Technical Problem

[0004]然而,现有的双雾化弹电子雾化器一般为一体式,而且只支持同一类型的雾化弹,用户不能自行更换自己喜欢的口味的雾化弹,用户也不能自行更换自己喜欢的类型的雾化弹(如陶瓷芯雾化弹、大烟雾芯雾化弹、开放式雾化弹)

Benefits of technology

[0017]本实用新型提供的双雾化弹的电子雾化器,其结构紧凑,通过吸嘴组件可拆卸地盖合在壳体的开口以及第一雾化弹、第二雾化弹可拆卸地设置在容腔内,不仅实现用户可自行拆卸吸嘴组件以对容腔内的第一雾化弹、第二雾化弹进行更换,而且实现方便用户对吸嘴组件的内部气道进行清洗,解决了吸嘴组件难以清洗的卫生问题;通过第一气道与第一出气口、第二气道与第二出气口的配合,使得第一雾化弹、第二雾化弹产生的烟雾能够分流,实现防串味的功能。另外,通过设置有调气组件,调气组件分别调节第一进气口、第二进气口的进气量以实现分别单独地对第一雾化弹、第二雾化弹进行调气,满足不同用户的使用需求。

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Abstract

The utility model provides a kind of electronic atomizer of double atomization bullet, including shell, suction nozzle assembly, air adjusting assembly, electrical assembly, first atomization bullet and second atomization bullet, shell is equipped with opening, suction nozzle assembly is detachably covered in opening and with shell jointly encloses a cavity, air adjusting assembly, electrical assembly are respectively arranged in cavity;Suction nozzle assembly includes suction nozzle upper cover and shunt, shunt and suction nozzle upper cover jointly enclose first air passage, second air passage, first air passage, second air passage are respectively connected with the suction inlet of suction nozzle upper cover, first atomization bullet, second atomization bullet are respectively detachably arranged in cavity, the first gas outlet of first atomization bullet, the second gas outlet of second atomization bullet are respectively connected with first air passage, second air passage;Shell is equipped with first air inlet, second air inlet, first air inlet, second air inlet are respectively connected with first air inlet, second air inlet, air adjusting assembly is used to adjust the air intake of first air inlet, second air inlet.
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Description

Technical Field

[0001] This utility model relates to the field of electronic atomizer technology, and in particular to an electronic atomizer with dual atomizing cartridges. Background Technology

[0002] Currently, electronic atomizers generally consist of a power supply component and an atomizing cartridge. The power supply component supplies power to the atomizing cartridge, which heats the atomizing liquid to produce vapor for the user to inhale.

[0003] In existing technologies, e-cigarettes generally support the installation of one or two atomizing cartridges. Single-cartridge e-cigarettes are already very common in the market, while dual-cartridge e-cigarettes have also appeared. Dual-cartridge e-cigarettes can support two different flavors of atomizing cartridges, improving the user experience.

[0004] However, existing dual-cartridge e-cigarettes are generally one-piece designs and only support the same type of cartridge. Users cannot change to their preferred flavor or type of cartridge (such as ceramic coil, high-vapor coil, or open-cell cartridge). Furthermore, the mouthpieces of these existing dual-cartridge e-cigarettes lack internal airflow channels, meaning the vapor produced by both cartridges passes through the same channel, causing flavor mixing and degrading the user experience.

[0005] In addition, the mouthpieces of existing dual-atomizing cartridge electronic atomizers are generally not detachable, making it difficult to clean the air passages inside the mouthpiece, which poses a hygiene problem. Utility Model Content

[0006] The purpose of this invention is to provide an electronic atomizer with dual atomizing cartridges, which aims to solve or at least partially solve the shortcomings of the aforementioned background technology. It not only supports the replacement of different flavors or types of atomizing cartridges, but also has a detachable mouthpiece that prevents flavor mixing.

[0007] This utility model provides an electronic atomizer with dual atomizing cartridges, including a shell, a mouthpiece assembly, an airflow regulating assembly, an electrical assembly, a first atomizing cartridge, and a second atomizing cartridge. One end of the shell has an opening that mates with the mouthpiece assembly. The mouthpiece assembly is detachably fitted onto the opening and, together with the shell, forms a cavity. The airflow regulating assembly and the electrical assembly are respectively disposed within the cavity. The mouthpiece assembly includes a mouthpiece cover and a flow divider disposed inside the mouthpiece cover. The flow divider and the mouthpiece cover together form a first airway and a second airway. The first and second airways are respectively connected to the inlet of the mouthpiece cover. The first and second atomizing cartridges are detachably fitted onto the mouthpiece. The atomizing cartridge is disposed within the cavity. The first air outlet of the first atomizing cartridge and the second air outlet of the second atomizing cartridge are connected to the first air passage and the second air passage, respectively. The opposite side walls of the shell are provided with a first air inlet and a second air inlet that communicate with the outside. The first air inlet of the first atomizing cartridge and the second air inlet of the second atomizing cartridge are connected to the first air inlet and the second air inlet, respectively. The air regulating component is used to regulate the air intake of the first air inlet and the second air inlet. The electrical components include a PCBA board and a battery. The PCBA board is used to regulate the working state of the first atomizing cartridge and the second atomizing cartridge, and the battery is used to power the first atomizing cartridge and the second atomizing cartridge.

[0008] Furthermore, the first atomizing bullet can be one of the following: a ceramic core atomizing bullet, a large smoke core atomizing bullet, or an open atomizing bullet; the second atomizing bullet can be one of the following: a ceramic core atomizing bullet, a large smoke core atomizing bullet, or an open atomizing bullet.

[0009] Furthermore, the two sides of the nozzle cover are respectively provided with elastic snap-fit ​​structures. The elastic snap-fit ​​structures include a pressing part and a buckle. The upper and lower ends of the pressing part are connected to the nozzle cover and the buckle respectively. The inner wall of the housing is provided with snap-fit ​​grooves that snap with the buckle.

[0010] Furthermore, the diverter includes a mating block and a diverter bracket disposed below the mating block. The mating block has a mating hole through it, and the diverter bracket has a diverter portion protruding from it. The diverter portion passes through the mating hole and extends toward the suction port.

[0011] Furthermore, the diversion bracket has a first guide hole and a second guide hole through it. The first air passage is connected to the first air outlet through the first guide hole, and the second air passage is connected to the second air outlet through the second guide hole.

[0012] Furthermore, the cavity is divided into a first air intake chamber and a second air intake chamber. The first air intake chamber is connected to the first air intake hole and the first air intake port, respectively, and the second air intake chamber is connected to the second air intake hole and the second air intake port, respectively.

[0013] Furthermore, the air regulating component includes a first air regulating slider and a second air regulating slider. The first air regulating slider and the second air regulating slider are slidably mounted on the housing corresponding to the positions of the first air inlet and the second air inlet, respectively. The first air regulating slider and the second air regulating slider are respectively provided with the first air regulating hole and the second air regulating hole. The first air regulating hole can communicate with the first air inlet, and the second air regulating hole can communicate with the second air inlet.

[0014] Furthermore, the first and second air adjustment sliders are slidably mounted on the inner wall of the housing corresponding to the positions of the first and second air inlets, respectively, and are located in the first and second air inlets, respectively. The first and second air adjustment sliders are respectively provided with a first adjustment handle and a second adjustment handle protruding outwards, and the first and second adjustment handles are respectively movably mounted in the first and second air inlets.

[0015] Furthermore, the cavity is divided into a first mounting cavity, a second mounting cavity, and a receiving cavity. The first mounting cavity and the second mounting cavity are used to install the first atomizing bullet and the second atomizing bullet, respectively, and the receiving cavity is used to accommodate the PCBA board and the battery.

[0016] Furthermore, the electrical components also include operation buttons and a display screen, which are respectively mounted on the housing and electrically connected to the PCBA board.

[0017] This invention provides a dual-atomizing cartridge electronic atomizer with a compact structure. The mouthpiece assembly is detachably fitted onto the opening of the housing, and the first and second atomizing cartridges are detachably disposed within the cavity. This allows users to easily disassemble the mouthpiece assembly to replace the first and second atomizing cartridges within the cavity, and also facilitates cleaning of the internal air passages of the mouthpiece assembly, solving the hygiene problem of the mouthpiece assembly being difficult to clean. The cooperation between the first air passage and the first air outlet, and the second air passage and the second air outlet, allows the vapor produced by the first and second atomizing cartridges to be separated, achieving a flavor-preventing function. Furthermore, by incorporating an airflow adjustment component, the airflow volume of the first and second air inlets can be adjusted independently for each atomizing cartridge, meeting the needs of different users. Attached Figure Description

[0018] To more clearly illustrate the technical solutions of the embodiments of the present invention, the accompanying drawings used in the embodiments will be briefly introduced below. It should be understood that the following drawings only show some embodiments of the present invention and should not be regarded as a limitation on the scope. For those skilled in the art, other related drawings can be obtained based on these drawings without creative effort.

[0019] Figure 1 This is a perspective view of an electronic atomizer with dual atomizing cartridges according to the present invention.

[0020] Figure 2 for Figure 1 An exploded 3D view of the electronic atomizer of the dual-atomizing bullet.

[0021] Figure 3 for Figure 2 An exploded 3D view of the nozzle assembly shown.

[0022] Figure 4 for Figure 1 The cross-sectional view of the electronic atomizer of the dual-atomizing bullet shown.

[0023] Figure 5 for Figure 4 A magnified diagram of point A in the middle.

[0024] Figure 6 for Figure 4 A magnified diagram of point B in the middle.

[0025] Figure 7 for Figure 4 A magnified diagram of point C.

[0026] Figure 8 for Figure 4 The cross-sectional view of the casing shown.

[0027] Figure 9 for Figure 4 The cross-sectional view of the first atomizing bomb shown.

[0028] Figure 10 for Figure 4 The cross-sectional view of the second atomizing bomb shown.

[0029] The attached diagram lists the components represented by each number as follows: 100. Nozzle assembly; 101. Nozzle cover; 102. Flow divider; 103. First air passage; 104. Second air passage; 105. Inlet; 106. Elastic snap-fit ​​structure; 107. Pressing part; 108. Buckle; 109. Mating block; 110. Mating hole; 111. Flow divider bracket; 112. First guide hole; 113. Second guide hole; 114. Flow divider; 200. Housing; 201. Opening; 202. First air inlet; 203. Second air inlet. 204. Air inlet, 205. Second air inlet, 206. First mounting cavity, 207. Second mounting cavity, 208. Receiving cavity, 209. Mounting bracket, 210. Mounting compartment, 211. Fixing bracket, 212. First through hole, 213. Second through hole, 214. Power supply electrode, 215. First observation port, 216. Second observation port, 217. First extension, 218. Second extension, 219. First protrusion, 220. Second protrusion 221. Glass plate; 222. Snap-fit ​​groove; 300. Gas regulating assembly; 301. First gas regulating slider; 302. Second gas regulating slider; 303. First gas regulating hole; 304. Second gas regulating hole; 305. First adjusting handle; 306. Second adjusting handle; 307. First sealing silicone; 308. Second sealing silicone; 400. Electrical assembly; 401. PCBA board; 402. Battery; 403. Operation button; 404. Display screen; 405. U SB charging port, 500, first atomizer cartridge, 501, first air inlet, 502, first air outlet, 503, first base, 504, first outer shell, 505, first liquid tank, 506, first atomizing chamber, 507, first atomizer core, 600, second atomizer cartridge, 601, second air inlet, 602, second air outlet, 603, second base, 604, second outer shell, 605, second liquid tank, 606, second atomizing chamber, 607, second atomizer core. Detailed Implementation

[0030] The specific embodiments of this utility model will be described in further detail below with reference to the accompanying drawings and examples. The following examples are used to illustrate this utility model, but are not intended to limit its scope.

[0031] The terms “first,” “second,” “third,” “fourth,” etc. (if present) in the specification and claims of this utility model are used to distinguish similar objects and are not necessarily used to describe a specific order or sequence.

[0032] The directional terms such as "up," "down," "left," "right," "front," "back," "top," and "bottom" (if present) used in the specification and claims of this utility model are defined according to the position of the structures in the drawings and the relative positions of the structures, and are only for the purpose of clarity and convenience in expressing the technical solution. It should be understood that the use of directional terms should not limit the scope of protection claimed in this application.

[0033] Please see Figure 1 , Figure 2 , Figure 4 , Figure 9 and Figure 10 An electronic atomizer with dual atomizing cartridges includes a housing 200, a mouthpiece assembly 100, a gas regulating assembly 300, an electrical assembly 400, a first atomizing cartridge 500, and a second atomizing cartridge 600.

[0034] One end of the housing 200 has an opening 201 that mates with the nozzle assembly 100. The nozzle assembly 100 is detachably covered by the opening 201 and together with the housing 200 forms a cavity. The air regulating assembly 300 and the electrical assembly 400 are respectively disposed in the cavity.

[0035] The nozzle assembly 100 includes a nozzle cover 101 and a flow divider 102 disposed inside the nozzle cover 101. The flow divider 102 and the nozzle cover 101 together form a first airway 103 and a second airway 104. The first airway 103 and the second airway 104 are respectively connected to the suction port 105 of the nozzle cover 101. The first atomizing bullet 500 and the second atomizing bullet 600 are respectively detachably disposed in the cavity. The first air outlet 502 of the first atomizing bullet 500 and the second air outlet 602 of the second atomizing bullet 600 are respectively connected to the first airway 103 and the second airway 104.

[0036] The housing 200 has a first air inlet 202 and a second air inlet 203 on its opposite side walls that communicate with the outside. The first air inlet 501 of the first atomizing bullet 500 and the second air inlet 601 of the second atomizing bullet 600 are respectively connected to the first air inlet 202 and the second air inlet 203. The air regulating component 300 is used to regulate the air intake of the first air inlet 501 and the second air inlet 601.

[0037] The electrical component 400 includes a PCBA board 401 and a battery 402. The PCBA board 401 is used to adjust the working state of the first atomizing bullet 500 and the second atomizing bullet 600, and the battery 402 is used to supply power to the first atomizing bullet 500 and the second atomizing bullet 600.

[0038] As described above, the electronic atomizer with dual atomizing cartridges provided by this utility model has a compact structure. The mouthpiece assembly 100 is detachably covered by the opening 201 of the housing 200, and the first atomizing cartridge 500 and the second atomizing cartridge 600 are detachably arranged in the cavity. This not only allows the user to disassemble the mouthpiece assembly 100 to replace the first atomizing cartridge 500 and the second atomizing cartridge 600 in the cavity, but also makes it convenient for the user to clean the internal air passage of the mouthpiece assembly 100, solving the hygiene problem of the mouthpiece assembly 100 being difficult to clean. Through the cooperation of the first air passage 103 and the first air outlet 502, and the second air passage 104 and the second air outlet 602, the smoke generated by the first atomizing cartridge 500 and the second atomizing cartridge 600 can be diverted, achieving the function of preventing cross-contamination of flavors. In addition, by providing an air regulating component 300, the air regulating component 300 can adjust the air intake of the first air inlet 501 and the second air inlet 601 respectively, so as to adjust the air intake of the first atomizing bullet 500 and the second atomizing bullet 600 separately to meet the usage needs of different users.

[0039] More specifically, the first atomizing cartridge 500 can be one of the following: a ceramic core atomizing cartridge, a large smoke core atomizing cartridge, or an open-type atomizing cartridge; the second atomizing cartridge 600 can also be one of the following: a ceramic core atomizing cartridge, a large smoke core atomizing cartridge, or an open-type atomizing cartridge. Among them, the ceramic core atomizing cartridge can support the atomization of medical-grade or food-grade high-viscosity oily atomizing liquids.

[0040] Please see Figure 9 and Figure 10 The first atomizing cartridge 500 includes a first base 503, a first outer shell 504, a first atomizing core 507, and a first electrode (not shown). The first base 503 and the first outer shell 504 form a first liquid chamber 505. A first atomizing chamber 506 is disposed inside the first liquid chamber 505. The first atomizing core 507 is disposed inside the first atomizing chamber 506. The first electrode is used for electrical connection with the battery 402. The second atomizing cartridge 600 includes a second base 603, a second outer shell 604, a second atomizing core 607, and a second electrode (not shown). The second base 603 and the second outer shell 604 form a second liquid chamber 605. A second atomizing chamber 606 is disposed inside the second liquid chamber 605. The second atomizing core 607 is disposed inside the second atomizing chamber 606. The second electrode is used for electrical connection with the battery 402.

[0041] The nozzle assembly 100 can be detachably mounted on the opening 201 of the housing 200 via a magnetic or snap-fit ​​mechanism. See also... Figure 2 , Figure 3 and Figure 5In this embodiment, elastic snap-fit ​​structures 106 are respectively provided on both sides of the nozzle cover 101. The elastic snap-fit ​​structure 106 includes a pressing part 107 and a buckle 108. The upper and lower ends of the pressing part 107 are respectively connected to the nozzle cover 101 and the buckle 108. The inner wall of the housing 200 is provided with a snap-fit ​​groove 222 that engages with the buckle 108. Since the pressing part 107 is only fixedly connected to the nozzle cover 101 at its upper end, the pressing part 107 has a certain degree of elasticity.

[0042] When it is necessary to disassemble the nozzle assembly 100, the user can press the two pressing parts 107 inward at the same time to make the pressing parts 107 drive the buckle 108 to move inward, thereby disengaging the buckle 108 from the snap-fit ​​groove 222, and finally remove the nozzle assembly 100 from the opening 201 to disassemble the nozzle assembly 100.

[0043] Please see Figure 3 , Figure 4 , Figures 8-10 The flow divider 102 is installed inside the nozzle cover 101 by fasteners. The flow divider 102 includes a mating block 109 and a flow divider bracket 111 disposed below the mating block 109. The mating block 109 has a mating hole 110 through it, and the flow divider bracket 111 has a protruding flow divider portion 114. The flow divider portion 114 passes through the mating hole 110 and extends toward the suction port 105. The cross-section of the flow divider portion 114 is "human" shaped. The nozzle cover 101, the mating block 109, and the flow divider portion 114 together form the first air passage 103 and the second air passage 104.

[0044] Furthermore, the diversion bracket 111 has a first guide hole 112 and a second guide hole 113 through it. The first air passage 103 is connected to the first air outlet 502 through the first guide hole 112, and the second air passage 104 is connected to the second air outlet 602 through the second guide hole 113. This achieves the connection of the inlet 105, the first air passage 103, the first air outlet 502, the first air inlet 501, and the first air inlet 202, as well as the connection of the inlet 105, the second air passage 104, the second air outlet 602, the second air inlet 601, and the second air inlet 203.

[0045] Please see Figures 8-10 The cavity is divided into a first air intake chamber 204 and a second air intake chamber 205. The first air intake chamber 204 is connected to the first air intake hole 202 and the first air intake port 501, respectively. The second air intake chamber 205 is connected to the second air intake hole 203 and the second air intake port 601, respectively. The first air intake chamber 204 and the second air intake chamber 205 are not connected. By cooperating with the air regulating component 300, the function of individually regulating the air of the first atomizing bullet 500 and the second atomizing bullet 600 can be realized.

[0046] The cavity is further divided into a first mounting cavity 206, a second mounting cavity 207, and a receiving cavity 208. The first mounting cavity 206 and the second mounting cavity 207 are used to mount the first atomizing bullet 500 and the second atomizing bullet 600, respectively. The receiving cavity 208 is used to accommodate the PCBA board 401 and the battery 402. A first through hole 212 is provided between the first mounting cavity 206 and the first air intake cavity 204, and the first air intake cavity 204 is connected to the first air intake port 501 through the first through hole 212. A second through hole 213 is provided between the second mounting cavity 207 and the second air intake cavity 205, and the second air intake cavity 205 is connected to the second air intake port 601 through the second through hole 213.

[0047] The shell 200 has a first observation port 215 and a second observation port 216 on its opposite side walls. The first observation port 215 and the second observation port 216 are respectively connected to the first mounting cavity 206 and the second mounting cavity 207. The user can observe the remaining amount of atomizing liquid in the first liquid tank 505 of the first atomizing bullet 500 through the first observation port 215, and the user can observe the remaining amount of atomizing liquid in the second liquid tank 605 of the second atomizing bullet 600 through the second observation port 216.

[0048] Within the cavity of the housing 200, from bottom to top, are arranged a fixing frame 211, a mounting chamber 210, and a mounting frame 209. The fixing frame 211 supports the mounting chamber 210, which has a receiving cavity 208. The mounting frame 209 supports the first atomizing bullet 500 and the second atomizing bullet 600. The mounting frame 209 has a "T" shaped cross-section. The mounting frame 209, the housing 200, and the nozzle assembly 100 together form the first mounting cavity 206 and the second mounting cavity 207. The housing 200, the fixing frame 211, the mounting chamber 210, and the mounting frame 209 together form the first air intake cavity 204 and the second air intake cavity 205.

[0049] The mounting bracket 209 has a power supply electrode 214 in the first mounting cavity 206 and the second mounting cavity 207 respectively. The power supply electrode 214 is electrically connected to the PCBA board 401 and the battery 402 respectively. The power supply electrode 214 is used to contact and electrically connect with the first atomizing bullet 500 and the second atomizing bullet 600.

[0050] Please see Figure 4 , Figures 6-8 The air regulating component 300 includes a first air regulating slider 301 and a second air regulating slider 302. The first air regulating slider 301 and the second air regulating slider 302 are slidably mounted on the housing 200 at positions corresponding to the first air inlet 202 and the second air inlet 203, respectively. The first air regulating slider 301 and the second air regulating slider 302 are respectively provided with a first air regulating hole 303 and a second air regulating hole 304. The first air regulating hole 303 can communicate with the first air inlet 202, and the second air regulating hole 304 can communicate with the second air inlet 203.

[0051] In the closed state, the first air adjustment slider 301 blocks the first air inlet 202, so the first air inlet chamber 204 is not connected to the outside, and the first air adjustment hole 303 is not connected to the first air inlet 202; the second air adjustment slider blocks the second air inlet 203, so the second air inlet chamber 205 is not connected to the outside, and the second air adjustment hole 304 is not connected to the second air inlet 203. When adjusting the air volume, the user can slide the first air adjustment slider 301 to move the first air adjustment hole 303, so that the first air adjustment hole 303 is connected to the first air inlet 202. The opening of the first air inlet 202 can be controlled by controlling the size of the area of ​​the connection between the first air adjustment hole 303 and the first air inlet 202, thereby adjusting the air intake of the first air inlet 501 of the first atomizing bullet 500. The user can slide the second air adjustment slider 302 to move the second air adjustment hole 304, so that the second air adjustment hole 304 is connected to the second air inlet 203. The opening of the second air inlet 203 can be controlled by controlling the size of the area of ​​the connection between the second air adjustment hole 304 and the second air inlet 203, thereby adjusting the air intake of the second air inlet 601 of the second atomizing bullet 600.

[0052] In this embodiment, the first air-adjusting slider 301 and the second air-adjusting slider 302 are slidably mounted on the inner wall of the housing 200, corresponding to the positions of the first air inlet 202 and the second air inlet 203, and are respectively located within the first air inlet chamber 204 and the second air inlet chamber 205. The first air-adjusting slider 301 and the second air-adjusting slider 302 are respectively provided with a first adjusting handle 305 and a second adjusting handle 306 protruding outwards. The first adjusting handle 305 and the second adjusting handle 306 are respectively movably mounted in the first air inlet 202 and the second air inlet 203. The user can drive the first air-adjusting slider 301 and the second air-adjusting slider 302 to slide by using the first adjusting handle 305 and the second adjusting handle 306, respectively.

[0053] More specifically, the mounting bracket 209 is provided with a first extension 217 and a second extension 218 extending toward the first air intake chamber 204 and the second air intake chamber 205, respectively; the fixing bracket 211 is provided with a first protrusion 219 and a second protrusion 220 extending toward the first air intake chamber 204 and the second air intake chamber 205, respectively. The first extension 217 and the first protrusion 219 are slidably connected to the inner side of the first air regulating slider 301, and the first extension 217, the first protrusion 219 and the first air regulating slider 301 cooperate to prevent the first air regulating slider 301 from detaching from the housing 200; the second extension 218 and the second protrusion 220 are slidably connected to the inner side of the second air regulating slider 302, and the second extension 218, the second protrusion 220 and the second air regulating slider 302 cooperate to prevent the second air regulating slider 302 from detaching from the housing 200.

[0054] More specifically, a first sealing silicone 307 is provided on the outward-facing side of the first air-adjusting slider 301, and the first sealing silicone 307 abuts against the inner wall of the housing 200. On the one hand, the first sealing silicone 307 can enhance the sealing performance of the first air-adjusting slider 301 in blocking the first air inlet 202; on the other hand, in the absence of manual operation, the first sealing silicone 307 can restrict the sliding of the first air-adjusting slider 301 to maintain the air intake volume adjusted by the user. Similarly, a second sealing silicone 308 is provided on the outward-facing side of the second air-adjusting slider 302, and the second sealing silicone 308 abuts against the inner wall of the housing 200. On the one hand, the second sealing silicone 308 can enhance the sealing performance of the second air-adjusting slider 302 in blocking the second air inlet 203; on the other hand, in the absence of manual operation, the second sealing silicone 308 can restrict the sliding of the second air-adjusting slider 302 to maintain the air intake volume adjusted by the user.

[0055] Please see Figure 2 and Figure 4 The electrical component 400 also includes operation buttons 403, a display screen 404, and a USB charging port 405. Operation buttons 403 and the display screen 404 are respectively mounted on the housing 200 and are electrically connected to the PCBA board 401. Operation buttons 403 are used to switch between the first atomizing bullet 500 and the second atomizing bullet 600, and can also be used to adjust the operating power of the first atomizing bullet 500 and the second atomizing bullet 600. The display screen 404 displays the operating status of the first atomizing bullet 500 and the second atomizing bullet 600, the battery level of the battery 402, etc. The USB charging port 405 is electrically connected to the battery 402 and passes through the mounting compartment 210 and the fixing bracket 211, and is exposed on the bottom surface of the housing 200. The USB charging port 405 is a Type-C interface.

[0056] More specifically, the display screen 404 is exposed on the outer side wall of the housing 200, and a glass plate 221 is provided on the outer side wall of the housing 200. The glass plate 221 is located outside the display screen 404, and the light emitted by the display screen 404 can pass through the glass plate 221. The operation buttons 403 are exposed on the outer surface of the glass plate 221.

[0057] The above description is merely a specific embodiment of this utility model, but the protection scope of this utility model is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the technical scope disclosed in this utility model should be included within the protection scope of this utility model. Therefore, the protection scope of this utility model should be determined by the protection scope of the claims.

Claims

1. An electronic atomizer with dual atomizing cartridges, characterized in that, The device includes a housing (200), a nozzle assembly (100), an air regulating assembly (300), an electrical assembly (400), a first atomizing cartridge (500), and a second atomizing cartridge (600). One end of the housing (200) has an opening (201) that mates with the nozzle assembly (100). The nozzle assembly (100) is detachably fitted onto the opening (201) and together with the housing (200) forms a cavity. The air regulating assembly (300) and the electrical assembly (400) are respectively disposed within the cavity. The nozzle assembly (100) includes a nozzle cover (101) and a diverter (102) disposed inside the nozzle cover (101). The diverter (102) and the nozzle cover (101) together form a first airway (103) and a second airway (104). The first airway (103) and the second airway (104) are respectively connected to the inlet (105) of the nozzle cover (101). The first atomizing bullet (500) and the second atomizing bullet (600) are respectively detachably disposed in the cavity. The first air outlet (502) of the first atomizing bullet (500) and the second air outlet (602) of the second atomizing bullet (600) are respectively connected to the first airway (103) and the second airway (104). The housing (200) has a first air inlet (202) and a second air inlet (203) on its opposite side walls, which communicate with the outside. The first air inlet (501) of the first atomizing bullet (500) and the second air inlet (601) of the second atomizing bullet (600) are respectively connected to the first air inlet (202) and the second air inlet (203). The air regulating component (300) is used to regulate the air intake of the first air inlet (501) and the second air inlet (601). The electrical component (400) includes a PCBA board (401) and a battery (402). The PCBA board (401) is used to adjust the working state of the first atomizing bullet (500) and the second atomizing bullet (600), and the battery (402) is used to supply power to the first atomizing bullet (500) and the second atomizing bullet (600).

2. The electronic atomizer of the dual atomizing bullet as described in claim 1, characterized in that, The first atomizing bullet (500) can be one of a ceramic core atomizing bullet, a large smoke core atomizing bullet, or an open atomizing bullet; the second atomizing bullet (600) can be one of a ceramic core atomizing bullet, a large smoke core atomizing bullet, or an open atomizing bullet.

3. The electronic atomizer of the dual-atomizing bullet as described in claim 1, characterized in that, The upper and lower ends of the suction nozzle cover (101) are respectively provided with elastic snap-fit ​​structures (106). The elastic snap-fit ​​structure (106) includes a pressing part (107) and a buckle (108). The upper and lower ends of the pressing part (107) are respectively connected to the upper and lower ends of the suction nozzle cover (101) and the buckle (108). The inner wall of the housing (200) is provided with a snap-fit ​​groove (222) that snaps into the buckle (108).

4. The electronic atomizer of the dual atomizing bullet as described in claim 1, characterized in that, The diverter (102) includes a mating block (109) and a diverter bracket (111) disposed below the mating block (109). The mating block (109) has a mating hole (110) through it. The diverter bracket (111) has a diverter portion (114) protruding from it. The diverter portion (114) passes through the mating hole (110) and extends toward the suction port (105).

5. The electronic atomizer of the dual-atomizing bullet as described in claim 4, characterized in that, The diversion bracket (111) has a first guide hole (112) and a second guide hole (113) through it. The first air passage (103) is connected to the first air outlet (502) through the first guide hole (112), and the second air passage (104) is connected to the second air outlet (602) through the second guide hole (113).

6. The electronic atomizer of the dual-atomizing bullet as described in claim 1, characterized in that, The cavity is divided into a first air inlet chamber (204) and a second air inlet chamber (205). The first air inlet chamber (204) is connected to the first air inlet hole (202) and the first air inlet (501) respectively. The second air inlet chamber (205) is connected to the second air inlet hole (203) and the second air inlet (601) respectively.

7. The electronic atomizer of the dual atomizing bullet as described in claim 6, characterized in that, The gas regulating component (300) includes a first gas regulating slider (301) and a second gas regulating slider (302). The first gas regulating slider (301) and the second gas regulating slider (302) are slidably mounted on the housing (200) corresponding to the positions of the first air inlet (202) and the second air inlet (203), respectively. The first gas regulating slider (301) and the second gas regulating slider (302) are respectively provided with a first gas regulating hole (303) and a second gas regulating hole (304). The first gas regulating hole (303) can communicate with the first air inlet (202), and the second gas regulating hole (304) can communicate with the second air inlet (203).

8. The electronic atomizer of the dual atomizing bullet as described in claim 7, characterized in that, The first air adjustment slider (301) and the second air adjustment slider (302) are respectively slidably disposed on the inner side wall of the housing (200) corresponding to the positions of the first air inlet (202) and the second air inlet (203) and are respectively located in the first air inlet cavity (204) and the second air inlet cavity (205). The first air adjustment slider (301) and the second air adjustment slider (302) are respectively provided with a first adjustment handle (305) and a second adjustment handle (306) protruding outward. The first adjustment handle (305) and the second adjustment handle (306) are respectively movably disposed in the first air inlet (202) and the second air inlet (203).

9. The dual-atomizing cartridge electronic atomizer of claim 1, wherein, The cavity is divided into a first mounting cavity (206), a second mounting cavity (207), and a receiving cavity (208). The first mounting cavity (206) and the second mounting cavity (207) are used to install the first atomizing bullet (500) and the second atomizing bullet (600), respectively. The receiving cavity (208) is used to accommodate the PCBA board (401) and the battery (402).

10. The dual-atomizing cartridge electronic atomizer of claim 1, wherein, The electrical component (400) also includes an operation button (403) and a display screen (404), the operation button (403) and the display screen (404) are respectively disposed on the housing (200), and the operation button (403) and the display screen (404) are respectively electrically connected to the PCBA board (401).