Assembled double-state smoke cartridge
By designing detachable and connectable cartridge, mouthpiece, and e-liquid bottle components, a dual-state cartridge is achieved, allowing users to freely assemble it according to their needs. This solves the problem of inflexible assembly in existing technologies and improves ease of use and environmental friendliness.
Patent Information
- Application Number
- CN202423071627.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-12
- Publication Date
- 2026-01-06
- Estimated Expiration
- 2034-12-12
AI Technical Summary
The existing cartridge design cannot be freely assembled according to user needs, which prevents users from flexibly combining cartridge components, mouthpiece components, and e-liquid components in different situations, affecting the user experience and convenience.
Design an assembly-type dual-state e-cigarette cartridge, in which the cartridge assembly, mouthpiece assembly, and e-liquid bottle assembly are detachably connected, allowing users to combine them into a single cartridge and mouthpiece assembly state or a state that simultaneously includes the e-liquid bottle assembly, thus achieving flexible assembly.
It improves the ease of use and environmental friendliness of e-cigarette cartridges, allowing users to assemble them themselves according to their needs, extending usage time, reducing the hassle of frequent refills, and enhancing the user experience.
Smart Images

Figure CN223759212U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of electronic cigarette technology, and in particular to an assembled dual-state e-cigarette cartridge. Background Technology
[0002] In the field of e-cigarette technology, the cartridge, as its core component, plays a crucial role in storing e-liquid and heating and atomizing it to produce vapor. With the rapid development of the e-cigarette market, users' personalized demands for e-cigarettes are increasing, especially regarding the user experience and convenience of the cartridges.
[0003] In existing e-cigarette cartridges, the cartridge assembly, mouthpiece assembly, and e-liquid bottle assembly are mostly assembled in a way that cannot be easily disassembled. Disassembly is cumbersome when necessary, preventing users from freely assembling the cartridges according to their actual needs. For example, in some situations, users may prefer a small cartridge consisting only of the cartridge and mouthpiece assembly for easy carrying and use; in other situations, users may want to add an e-liquid bottle assembly to extend the cartridge's lifespan and reduce the inconvenience of frequent refills. However, due to the limitations of existing cartridge designs, users often cannot achieve this free assembly requirement. Therefore, this paper provides an assemblable dual-state e-cigarette cartridge to solve the above-mentioned technical problems. Utility Model Content
[0004] The purpose of this invention is to provide an assembled dual-state e-cigarette cartridge to address the shortcomings of existing technologies, thereby solving the technical problem that the cartridge components, mouthpiece components, and oil bottle components of existing e-cigarette cartridges cannot be freely assembled according to user needs.
[0005] To achieve the above objectives, the technical solution of this utility model is as follows:
[0006] An assembled dual-state e-liquid cartridge includes an e-liquid cartridge assembly for heating and atomizing e-liquid, an oil bottle assembly for storing e-liquid and continuously supplying e-liquid to the e-liquid cartridge assembly, and a mouthpiece assembly for sucking up e-liquid vapor. The e-liquid cartridge assembly, oil bottle assembly, and mouthpiece assembly are detachably connected so that the e-liquid cartridge assembly can be combined with the mouthpiece assembly, or combined with both the mouthpiece assembly and the oil bottle assembly.
[0007] The e-liquid cartridge assembly includes a cartridge shell and a cartridge base installed at the bottom of the cartridge shell. The cartridge shell and the cartridge base surround an atomizing chamber. An oil storage cotton is provided inside the atomizing chamber, and a heating wire assembly for heating the e-liquid is installed in the middle of the oil storage cotton.
[0008] Furthermore, the cartridge base is provided with a lower seal that is placed inside the atomizing chamber to prevent e-liquid leakage; the top of the cartridge shell is formed with several insertion holes that communicate with the atomizing chamber, and the top of the heating wire assembly is equipped with a first sealing sleeve.
[0009] Furthermore, the oil bottle assembly includes an oil bottle and an oil bottle base installed at the bottom of the oil bottle. The oil bottle and the oil bottle base surround an oil storage chamber for storing e-liquid. The oil bottle base is provided with an oil bottle sealing seat placed inside the oil storage chamber to prevent e-liquid leakage. It also includes a smoke guide tube placed inside the oil storage chamber with its top end passing through the top of the oil bottle. The bottom end of the smoke guide tube passes through the oil bottle base. The middle of the oil bottle base is provided with a second connecting pipe for communicating with the bottom end of the smoke guide tube.
[0010] The base of the oil bottle is equipped with several oil guide columns that can be inserted into the atomizing chamber through the socket and whose top ends are connected to the oil storage chamber. The bottom side of the oil guide column is formed with a liquid supply port for guiding the e-liquid into the atomizing chamber for absorption by the oil storage cotton. The oil storage cotton is formed with several clearance grooves to make way for the oil guide columns.
[0011] Furthermore, the outer side of the oil guide column is provided with a sealing cap that can move under force and is used to seal the liquid supply port. The inner side wall of the insertion hole is formed with a limiting protrusion. During the process of the oil guide column passing through the insertion hole, the limiting protrusion blocks the sealing cap, so that the sealing cap moves outside the oil guide column to open the liquid supply port.
[0012] Furthermore, the mouthpiece assembly includes a mounting frame, with a mouthpiece formed on the top of the mounting frame, several blocking parts provided at the bottom of the mounting frame, and a first connecting pipe communicating with the mouthpiece at the bottom of the mounting frame.
[0013] Furthermore, the mounting frame is installed on the top of the cartridge shell, and the plug is used to block the insertion hole. The first connecting tube is inserted into the first sealing sleeve and connected to the top of the heating wire assembly. Several first locking blocks are formed on the top side of the cartridge shell, and a second locking groove is formed on the inner side wall of the mounting frame for the first locking blocks to be inserted.
[0014] Furthermore, the mounting frame is installed on the top of the oil bottle and the first connecting pipe is connected to the top of the smoke guide pipe. The bottom of the oil bottle is installed on the top of the cartridge shell and the second connecting pipe is inserted into the first sealing sleeve and connected to the top of the heating wire assembly. Several second locking blocks are provided on the inner side wall of the mounting frame, and a third locking groove is formed on the top side wall of the oil bottle for the second locking blocks to be inserted.
[0015] Furthermore, the top of the oil bottle is formed with a receiving groove, and the receiving groove is provided with an upper sealing element to improve the sealing performance after the first connecting pipe and the top of the smoke guide pipe are connected. The upper sealing element is formed with a second sealing sleeve, and the first connecting pipe is inserted into the second sealing sleeve to connect with the top of the smoke guide pipe.
[0016] Furthermore, the top of the smoke guide tube is equipped with absorbent cotton to absorb e-liquid that has not been fully atomized.
[0017] Furthermore, the top of the oil bottle is formed with a positioning groove for the plug to be inserted.
[0018] The beneficial effects of this utility model are as follows: This e-cigarette cartridge can be assembled into two states. The first state is assembled by the e-cigarette cartridge assembly and the mouthpiece assembly. When the user smokes through the mouthpiece assembly, the mouthpiece assembly is activated to heat and atomize the e-liquid for the user to inhale. Furthermore, the e-cigarette cartridge assembly and the mouthpiece assembly are detachably connected, making the e-cigarette cartridge assembly easy to replace.
[0019] The second type is assembled from a cartridge assembly, an oil bottle assembly, and a mouthpiece assembly. By incorporating the oil bottle assembly, oil can be continuously supplied while smoking, increasing the oil storage capacity of the cartridge assembly and the usage time of the cartridge, thus avoiding the need for frequent refilling and affecting the user experience.
[0020] This e-cigarette cartridge features a freely replaceable parts design. The cartridge assembly, mouthpiece assembly, and e-liquid bottle assembly can be separated. Both the individual cartridge assembly and the assembled e-liquid bottle assembly can be used with the mouthpiece assembly. The parts are interchangeable and shared, which aligns with environmental protection principles. The combination of the first and second states can be assembled according to the user's needs, and the assembly is convenient, enhancing the user experience. Attached Figure Description
[0021] Figure 1 This is a three-dimensional structural diagram of the present invention.
[0022] Figure 2 This is a schematic diagram showing the separated state of the cartridge assembly, mouthpiece assembly, and oil bottle assembly of this utility model.
[0023] Figure 3 This is a schematic diagram showing the separated state of the cartridge assembly, mouthpiece assembly, and oil bottle assembly of this utility model from another perspective.
[0024] Figure 4 This is a schematic diagram of the combined structure of the cigarette cartridge assembly and the mouthpiece assembly of this utility model.
[0025] Figure 5 This is a schematic diagram of the structure of the cigarette cartridge assembly of this utility model.
[0026] Figure 6 This is a schematic diagram of the structure of the oil bottle assembly of this utility model.
[0027] Figure 7 This is a structural schematic diagram of the oil bottle assembly of this utility model from another perspective.
[0028] The reference numerals in the figures include:
[0029] 1. Cartridge assembly; 11. Cartridge shell; 12. Atomizing chamber; 13. Lower seal; 14. Cartridge base; 15. Oil reservoir; 16. Insertion hole; 17. Limiting protrusion; 18. Relief groove; 19. Heating wire assembly; 110. First sealing sleeve; 111. First locking block; 112. First locking groove; 2. Mouthpiece assembly; 21. Mounting frame; 22. Mouthpiece; 23. Blocking part; 24. First connecting pipe; 25. Second locking block; 26. 3. Oil bottle assembly; 31. Oil bottle; 32. Oil storage tank; 33. Oil bottle sealing seat; 34. Smoke guide pipe; 35. Oil bottle base; 36. Second connecting pipe; 37. Embedded groove; 38. Oil guide column; 39. Liquid supply port; 310. Sealing cap; 311. Sealing ring; 312. Sealing plug; 313. Receiving groove; 314. Upper sealing element; 315. Oil absorbent cotton; 316. Positioning groove; 317. Second sealing sleeve; 318. Third slot. Detailed Implementation
[0030] The following is a detailed description of an assembled dual-state smoke cartridge of the present invention, with reference to the accompanying drawings.
[0031] like Figure 1-4 As shown, an embodiment of the present invention, a modular dual-state e-cigarette cartridge, includes a cartridge assembly 1 for heating and atomizing e-liquid, an oil bottle assembly 3 for storing e-liquid and continuously supplying oil to the cartridge assembly 1, and a mouthpiece assembly 2 for the user to inhale the e-liquid vapor. The cartridge assembly 1, the oil bottle assembly 3, and the mouthpiece assembly 2 are detachably connected, so that the cartridge assembly 1 can be combined with the mouthpiece assembly 2, or simultaneously combined with both the mouthpiece assembly 2 and the oil bottle assembly 3. This e-cigarette cartridge can be assembled into two states.
[0032] The first configuration is achieved by assembling a cartridge assembly 1 and a mouthpiece assembly 2, with the mouthpiece assembly 2 directly mounted on the cartridge assembly 1 (e.g., ...). Figure 4 As shown, the cartridge component 1 stores e-liquid. When the user smokes through the mouthpiece component 2, the mouthpiece component 2 is activated to heat and atomize the e-liquid for the user to inhale. Furthermore, the cartridge component 1 and the mouthpiece component 2 are detachably connected, making the cartridge component 1 easy to replace, which is in line with the concept of environmental protection.
[0033] The second configuration consists of a cartridge assembly 1, an oil bottle assembly 3, and a mouthpiece assembly 2. The oil bottle assembly 3 is installed on the cartridge assembly 1 to continuously supply oil to it, and the mouthpiece assembly 2 is installed on the oil bottle assembly 3 and connected to the cartridge assembly 1. By setting up the oil bottle assembly 3, oil can be continuously supplied while smoking, which increases the oil storage capacity of the cartridge assembly 1 and the usage time of the cartridge, avoiding the need for frequent oil refills that would affect the user experience.
[0034] This e-cigarette cartridge features a freely replaceable parts design. The cartridge assembly 1, mouthpiece assembly 2, and e-liquid bottle assembly 3 can be separated. Both the individual cartridge assembly 1 and the assembled e-liquid bottle assembly 3 can be used with the mouthpiece assembly 2. The parts are interchangeable and shared, conforming to environmental protection principles. The combination of the first and second states can be assembled according to the user's needs, and the assembly is convenient, enhancing the user experience. The specific structures of the first and second states are described below.
[0035] Specifically, the structure of the first state is as follows:
[0036] like Figure 5 As shown, the cartridge assembly 1 includes a cartridge shell 11 and a cartridge base 14 installed at the bottom of the cartridge shell 11. The cartridge shell 11 and the cartridge base 14 surround an atomizing chamber 12. The cartridge base 14 is provided with a lower seal 13 placed inside the atomizing chamber 12 to prevent e-liquid leakage. An oil-collecting cotton 15 is provided inside the atomizing chamber 12. A heating wire assembly 19 for heating e-liquid is installed in the middle of the oil-collecting cotton 15. An air hole communicating with the bottom of the heating wire assembly 19 is formed at the bottom of the cartridge base 14. The mouthpiece assembly 2 is installed at the top of the cartridge shell 11 and communicates with the top of the heating wire assembly 19. The oil-absorbing cotton 15 absorbs and stores e-liquid to supply oil to the heating wire assembly 19. The heating wire assembly 19 is existing technology. When the user smokes through the mouthpiece assembly 2, air enters the heating wire assembly 19 through the air hole at the bottom of the cartridge base 14. After detecting the air flow, the heating wire assembly 19 is activated to heat and atomize the e-liquid. The air then carries the atomized smoke out for the user to inhale. However, in order to replenish the e-liquid, several insertion holes 16 communicating with the atomization chamber 12 are formed on the top of the cartridge shell 11. After the mouthpiece assembly 2 is removed from the cartridge assembly 1, e-liquid can be poured into the atomization chamber 12 through the insertion holes 16 and absorbed by the oil-absorbing cotton 15. After the oil-absorbing cotton 15 has absorbed enough e-liquid, the mouthpiece assembly 2 is reinstalled on the top of the cartridge shell 11, and the insertion holes 16 are blocked for user use.
[0037] Furthermore, the mouthpiece assembly 2 includes a mounting frame 21 for mounting on the top of the cartridge housing 11 (e.g., Figure 3 As shown, the top of the mounting frame 21 is formed with a mouthpiece 22, and the bottom of the mounting frame 21 is provided with several plugs 23 for blocking the insertion hole 16 to prevent e-liquid leakage during use; the bottom of the mounting frame 21 is also provided with a first connecting pipe 24 that communicates with the mouthpiece 22 and is used to connect and communicate with the top of the heating wire assembly 19. After the mounting frame 21 is installed on the top of the cartridge shell 11, the plugs 23 are embedded into the insertion hole 16 to block it, and at the same time, the first connecting pipe 24 is connected and communicated with the top of the heating wire assembly 19, thus completing the assembly of the first state of the cartridge; the oil smoke generated by the heating wire assembly 19 is carried by the air to pass through the first connecting pipe 24 and is finally sucked out from the mouthpiece 22.
[0038] Additionally, a first sealing sleeve 110 is installed at the top of the heating wire assembly 19, and a first connecting tube 24 is inserted into the first sealing sleeve 110 to connect and communicate with the top of the heating wire assembly 19. By setting the first sealing sleeve 110, the sealing performance after the first connecting tube 24 is connected to the heating wire assembly 19 is improved, preventing air leakage. In order to detachably install the mounting frame 21 on the top of the cartridge shell 11, a plurality of first locking blocks 111 are formed on the top side of the cartridge shell 11, and a second locking groove 26 is formed on the inner side wall of the mounting frame 21 for the first locking blocks 111 to be inserted. After aligning the mounting frame 21 with the top of the cartridge shell 11, the mounting frame 21 is pressed from top to bottom to insert the first locking blocks 111 into the second locking groove 26, thereby installing the mounting frame 21. Furthermore, when it is necessary to remove the mounting frame 21 from the cartridge shell 11, after applying force to the mounting frame 21, the first locking block 111 automatically disengages from the second locking slot 26.
[0039] In addition, the second state is described as follows:
[0040] like Figure 6-7 As shown, the oil bottle assembly 3 includes an oil bottle 31 and an oil bottle base 35 installed at the bottom of the oil bottle 31. The oil bottle 31 and the oil bottle base 35 surround an oil storage chamber 32 for storing e-liquid. The oil bottle base 35 is provided with an oil bottle sealing seat 33 placed inside the oil storage chamber 32 to prevent e-liquid leakage. It also includes a smoke guide tube 34 placed inside the oil storage chamber 32 and whose top end passes through the top of the oil bottle 31. The bottom end of the smoke guide tube 34 passes through the oil bottle base 35. The middle part of the oil bottle base 35 is provided with a second connecting pipe 36 for communicating with the bottom end of the smoke guide tube 34. The mounting frame 21 is installed on the top of the oil bottle 31 and the first connecting pipe 24 is connected to the top end of the smoke guide tube 34. The bottom of the oil bottle 31 is installed on the top of the cartridge shell 11 and the second connecting pipe 36 is inserted into the first sealing sleeve 110 and connected to the top end of the heating wire assembly 19. When a user smokes through the mouthpiece assembly 2, air enters the heating wire assembly 19 through the air hole at the bottom of the cartridge base 14. Upon detecting the airflow, the heating wire assembly 19 is activated to heat and atomize the e-liquid. The air carries the atomized smoke to the second connecting pipe 36 and the smoke guide pipe 34 for flow, and then through the first connecting pipe 24 to the mouthpiece 22 for the user to inhale. A groove 37 is formed at the bottom of the oil bottle base 35 for the first sealing sleeve 110 to be inserted. When the second connecting pipe 36 is inserted into the first sealing sleeve 110 and connected to the top of the heating wire assembly 19, the first sealing sleeve 110 is embedded in the groove 37, thereby improving the seal between the second connecting pipe 36 and the top of the heating wire assembly 19.
[0041] To automatically replenish the e-liquid in the oil storage tank 32 to the atomizing chamber 12, the oil bottle base 35 is provided with several oil guide columns 38 for insertion into the atomizing chamber 12 through the insertion hole 16, with their tops communicating with the oil storage tank 32. The bottom side of the oil guide column 38 has a liquid inlet 39 for guiding the e-liquid into the atomizing chamber 12 for absorption by the oil storage cotton 15. The oil storage cotton 15 has several clearance grooves 18 for making way for the oil guide columns 38. The bottom of the oil bottle 31... When the second connecting tube 36 is inserted into the first sealing sleeve 110 and connected to the top of the heating wire assembly 19, the oil guide column 38 is inserted into the atomizing chamber 12 through the insertion hole 16 and placed in the relief groove 18 to fit against the oil storage cotton 15. At this time, the e-liquid in the oil storage chamber 32 is guided by the oil guide column 38 and then flows out from the liquid supply port 39 for the oil storage cotton 15 to absorb, which facilitates the continuous oil supply to the heating wire assembly 19.
[0042] However, when the oil bottle assembly 3 is not installed on the cartridge assembly 1, the liquid supply port 39 on the side of the oil guide column 38 is sealed. Specifically, a sealing cap 310 is provided on the outside of the oil guide column 38, which can move under force and is used to seal the liquid supply port 39. A limiting protrusion 17 is formed on the inner wall of the insertion hole 16. During the process of the oil guide column 38 passing through the insertion hole (16), the limiting protrusion 17 blocks the sealing cap 310, so that the sealing cap 310 moves outside the oil guide column 38 to open the liquid supply port 39; during the process of the oil guide column 38 passing through the insertion hole 16, The limiting protrusion 17 blocks the sealing cap 310, and the oil guide column 38 continues to pass through the insertion hole 16. At this time, the sealing cap 310 moves on the outside of the oil guide column 38 to gradually shift the position of the liquid supply port 39, so that the liquid supply port 39 opens automatically. The opened liquid supply port 39 is in contact with the oil storage cotton 15. When the oil bottle assembly 3 is installed on the e-cigarette cartridge assembly 1, the two are automatically connected. Moreover, when the oil bottle assembly 3 is not installed, the e-liquid will not leak, making it easy to carry the oil bottle assembly 3 and be ready to refill the e-cigarette cartridge assembly 1 at any time.
[0043] In addition, a sealing ring 311 is formed on the outside of the sealing cap 310 to improve the sealing between the inner wall of the insertion hole 16 and the outer wall of the oil guide column 38. Both the sealing cap 310 and the sealing ring 311 are silicone parts. When the oil guide column 38 passes through the insertion hole 16, the sealing cap 310 is placed inside the insertion hole 16. The sealing ring 311 is press-fitted with the inner wall of the insertion hole 16, which improves the sealing between the inner wall of the insertion hole 16 and the outer wall of the oil guide column 38. No oil leakage will occur after the cartridge is tilted or turned over.
[0044] A receiving groove 313 is formed on the top of the oil bottle 31. An upper sealing member 314 is provided within the receiving groove 313 to improve the sealing performance after the first connecting pipe 24 and the top of the smoke guide tube 34 are connected. A second sealing sleeve 317 is formed on the upper sealing member 314. The first connecting pipe 24 is inserted into the second sealing sleeve 317 to connect with the top of the smoke guide tube 34. When the mounting frame 21 is installed on the top of the oil bottle 31, the first connecting pipe 24 is inserted into the second sealing sleeve 317. Both the second and second sealing sleeves 317 are made of silicone to improve the sealing performance after the first connecting pipe 24 and the top of the smoke guide tube 34 are connected, preventing air leakage. Additionally, an oil-absorbing cotton 315 is provided at the top of the smoke guide tube 34. The oil-absorbing cotton 315 is used to absorb e-liquid that has not been fully atomized, preventing e-liquid from leaking from the mouthpiece 22 and affecting the user experience.
[0045] Additionally, the receiving groove 313 has a liquid inlet that communicates with the oil storage tank 32. A sealing plug 312 is provided at the liquid inlet to plug it. By removing the sealing plug 312 from the liquid inlet, e-liquid can be injected into the oil storage tank 32 from the liquid inlet, thus replenishing the e-liquid. A positioning groove 316 is also formed on the top of the oil bottle 31 for the plug 23 to embed into. When the mounting frame 21 is installed on top of the oil bottle 31, the plug 23 is embedded in the positioning groove 316, improving the stability of the mounting frame 21 after installation.
[0046] To allow the mounting frame 21 to be detachably mounted on the top of the oil bottle 31, several second locking blocks 25 are provided on the inner side wall of the mounting frame 21, and a third locking groove 318 is formed on the top side wall of the oil bottle 31 for the second locking blocks 25 to engage. After aligning the mounting frame 21 with the top of the oil bottle 31, the mounting frame 21 is pressed down from top to bottom to press the second locking blocks 25 into the third locking groove 318, thus installing the mounting frame 21. Furthermore, when it is necessary to remove the mounting frame 21 from the top of the oil bottle 31, applying force to the mounting frame 21 will automatically disengage the second locking blocks 25 from the third locking groove 318. A first slot 112 is formed on the inner side wall of the bottom of the oil bottle 31 for the first locking block 111 to be inserted. After aligning the top of the oil bottle 31 with the top of the cartridge shell 11, force is applied to the oil bottle 31 to press it down until the first locking block 111 is inserted into the first slot 112, thereby assembling the oil bottle 31 and the cartridge shell 11.
[0047] In summary, this utility model possesses the aforementioned excellent characteristics, enabling it to achieve unprecedented efficiency in use and thus become a highly practical product.
[0048] The above description is only a preferred embodiment of this utility model. For those skilled in the art, there will be changes in the specific implementation method and application scope based on the idea of this utility model. The content of this specification should not be construed as a limitation of this utility model.
Claims
1. An assembled dual state cartridge, characterized by: The application relates to a cigarette assembly, which comprises a cartridge assembly (1) for heating and atomizing tobacco tar, an oil bottle assembly (3) for storing the tobacco tar and continuously supplying the cartridge assembly (1) with the tobacco tar, and a cigarette holder assembly (2) for sucking the tobacco tar, wherein the cartridge assembly (1), the oil bottle assembly (3) and the cigarette holder assembly (2) are detachably connected, so that the cartridge assembly (1) can be combined with the cigarette holder assembly (2) or the cartridge assembly (1) can be combined with the cigarette holder assembly (2) and the oil bottle assembly (3) at the same time. The cartridge assembly (1) comprises a cartridge shell (11) and a cartridge base (14) arranged at the bottom of the cartridge shell (11), wherein the cartridge shell (11) and the cartridge base (14) surround an atomizing chamber (12), the atomizing chamber (12) is provided with a storage cotton (15), and a heating wire assembly (19) for heating the tobacco tar is arranged in the middle of the storage cotton (15).
2. The assembled dual state cartridge of claim 1, wherein: The cartridge base (14) is provided with a lower sealing element (13) arranged in the atomizing chamber (12) and used for preventing the tobacco tar from leaking, the top of the cartridge shell (11) is formed with a plurality of insertion holes (16) communicated with the atomizing chamber (12), and the top end of the heating wire assembly (19) is arranged with a first sealing sleeve (110).
3. The assembled dual state cartridge of claim 2, wherein: The oil bottle assembly (3) comprises an oil bottle (31) and an oil bottle base (35) arranged at the bottom of the oil bottle (31), wherein the oil bottle (31) and the oil bottle base (35) surround an oil storage chamber (32) for storing the tobacco tar, the oil bottle base (35) is provided with an oil bottle sealing seat (33) arranged in the oil storage chamber (32) and used for preventing the tobacco tar from leaking, and the oil bottle assembly (3) further comprises a smoke guide pipe (34) arranged in the oil storage chamber (32) and penetrating through the top of the oil bottle (31) at the top end, and the bottom end of the smoke guide pipe (34) penetrates through the oil bottle base (35), and the middle of the oil bottle base (35) is provided with a second connecting pipe (36) for being communicated with the bottom end of the smoke guide pipe (34). The oil bottle base (35) is provided with a plurality of oil guide columns (38) which can be inserted into the atomizing chamber (12) from the insertion holes (16) and arranged in communication with the oil storage chamber (32) at the top end, the bottom end side of the oil guide column (38) is formed with a liquid supply port (39) for guiding the tobacco tar into the atomizing chamber (12) for being absorbed by the storage cotton (15), and the storage cotton (15) is formed with a plurality of accommodation grooves (18) for accommodating the oil guide column (38).
4. The assembled dual state cartridge of claim 3, wherein: The outer side of the oil guide column (38) is provided with a sealing cap (310) which can be moved after being stressed and used for sealing the liquid supply port (39), the inner side wall of the insertion hole (16) is formed with a limiting protrusion (17), and the limiting protrusion (17) blocks the sealing cap (310) during the process that the oil guide column (38) penetrates through the insertion hole (16), so that the sealing cap (310) moves outside the oil guide column (38) to open the liquid supply port (39).
5. The assembled dual state cartridge of claim 3, wherein: The cigarette holder assembly (2) comprises a mounting frame (21), the top of the mounting frame (21) is formed with a cigarette holder (22), the bottom of the mounting frame (21) is provided with a plurality of blocking parts (23), and the bottom of the mounting frame (21) is further provided with a first connecting pipe (24) arranged in communication with the cigarette holder (22).
6. The assembled dual state cartridge of claim 5, wherein: The mounting frame (21) is mounted on the top of the cartridge shell (11), and the plug (23) is used to plug the socket (16). The first connecting pipe (24) is inserted into the first sealing sleeve (110) and connected with the top end of the heating wire assembly (19). The cartridge shell (11) is provided with a plurality of first clamping blocks (111) on the side wall of the top. The mounting frame (21) is provided with a second clamping groove (26) on the inner side wall for clamping the first clamping blocks (111).
7. The assembled dual state cartridge of claim 5, wherein: The mounting frame (21) is mounted on the top of the oil bottle (31) and the first connecting pipe (24) is connected with the top end of the smoke guide pipe (34). The oil bottle (31) is mounted on the top of the cartridge shell (11) and the second connecting pipe (36) is inserted into the first sealing sleeve (110) and connected with the top end of the heating wire assembly (19). The mounting frame (21) is provided with a plurality of second clamping blocks (25) on the inner side wall. The oil bottle (31) is provided with a third clamping groove (318) on the side wall of the top for clamping the second clamping blocks (25).
8. The assembled dual state cartridge of claim 7, wherein: The oil bottle (31) is provided with a containing groove (313) on the top. The containing groove (313) is provided with an upper sealing element (314) for improving the sealing performance of the first connecting pipe (24) and the top end of the smoke guide pipe (34). The upper sealing element (314) is provided with a second sealing sleeve (317). The first connecting pipe (24) is inserted into the second sealing sleeve (317) and connected with the top end of the smoke guide pipe (34).
9. The assembled dual state cartridge of claim 8, wherein: The top end of the smoke guide pipe (34) is provided with an oil absorbing cotton (315) for absorbing the oil that is not completely atomized.
10. The assembled dual state cartridge of claim 9, wherein: The top of the oil bottle (31) is provided with a positioning groove (316) for embedding the plug (23). The top of the oil bottle (31) is provided with a positioning groove (316) for embedding the plug (23).