Electronic cigarette powered by rotation of double smoke cartridges
The electronic cigarette design with dual-cool cartridges is designed to solve the problem that existing electronic cigarettes cannot smoke multiple flavors at the same time and consume fast e-liquid, achieving multi-flavor smoking and removable cigarette cartridges, reducing electronic cigarette pollution.
Patent Information
- Application Number
- CN202422320651.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-24
- Publication Date
- 2025-08-26
- Estimated Expiration
- 2034-09-24
AI Technical Summary
Existing electronic cigarettes can only match one cigarette cartridge, which makes it impossible to smoke multiple flavors at the same time. The smoke cartridge has limited oil storage capacity, a short continuous smoking period, and the power supply body and the cigarette cartridge are scrapped and polluted the environment.
A double cigarette with rotary power supply of double cigarette cartridges is designed to control the operation of the two cigarette cartridges by rotating the power supply body, and the removable connection and power supply switching of the cigarette cartridges are achieved by using the conductive structure and magnetic suction structure. The power supply body can rotate 180 degrees on the atomized body to switch the circuit path.
It realizes that electronic cigarettes can smoke two flavors of smoke at the same time, the amount of e-liquid is sufficient, which extends the smoking time. After the cartridge is consumed, the main power supply body can be detached and reused, reducing environmental pollution.
Smart Images

Figure CN223262344U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of electronic cigarettes, in particular to an electronic cigarette with dual cigarette cartridges rotating and powered by electricity. Background Art
[0002] At present, the existing electronic cigarettes can only be used with one cartridge. Since a single cartridge can only hold one flavor of e-liquid and produce one flavor of smoke, users cannot inhale multiple flavors of smoke on the electronic cigarette at the same time. Moreover, the oil storage capacity of a single cartridge is limited, and the e-liquid is consumed very quickly, resulting in a very short continuous inhalation cycle. Moreover, the cartridges are all integrated and enclosed in the power supply body. After the e-liquid in the cartridge is consumed, the power supply body cannot be disassembled and reused separately, resulting in the power supply body and the cartridge being scrapped together, polluting the environment. Utility Model Content
[0003] The purpose of the utility model is to provide an electronic cigarette with dual-cartridge rotary power supply, which controls the operation of the two cartridges by rotating the power supply body, thereby solving the problems in the prior art that the electronic cigarette can only be used with one cartridge, resulting in the inability to inhale multiple flavors of smoke at the same time, the electronic cigarette has a very short continuous inhalation cycle, and the power supply body of the electronic cigarette cannot be disassembled and reused separately, resulting in the power supply body and the cartridge being scrapped together and polluting the environment.
[0004] The technical solution adopted by the present invention to solve the technical problem is: an electronic cigarette with dual-cartridge rotating power supply, including an atomizer body and a power supply body detachably connected to the atomizer body, two cartridges for storing oils of different flavors are arranged in the atomizer body, an axis groove and a first conductive structure are provided on the power supply body, the atomizer body is provided with a rotating shaft inserted into the axis groove, and a second conductive structure and a third conductive structure respectively used for conductive connection corresponding to the cartridges, the first conductive structure corresponds to the second conductive structure, the power supply body supplies power to one cartridge through the first conductive structure and the second conductive structure, the power supply body can be rotated 180 degrees on the atomizer body through the rotating shaft and the axis groove, so that the first conductive structure and the third conductive structure can correspond to each other and supply power to the other cartridge.
[0005] As an embodiment, the third conductive structure is located on a rotation trajectory of the first conductive structure and the power supply body in a clockwise rotation, and the second conductive structure is located on a rotation trajectory of the first conductive structure and the power supply body in a counterclockwise rotation.
[0006] As an embodiment, the power supply body is further provided with a first detachable structure, and the atomizing body is provided with a second detachable structure corresponding to the first detachable structure, and the power supply body is detachably connected to the atomizing body through the first detachable structure and the second detachable structure.
[0007] As an embodiment, the first detachable structure and the second detachable structure include one of a magnetic structure, an interference fit structure, a plug-and-play structure, an adhesive structure, and a snap-on structure.
[0008] As an embodiment, a power control component is provided in the power supply body, and the power control component supplies power to one of the cigarette cartridges through the first conductive structure and the second conductive structure; or, the power control component supplies power to another of the cigarette cartridges through the first conductive structure and the third conductive structure.
[0009] As an embodiment, the power supply body includes a shell, a cavity space is formed in the shell, a battery cell and a control board are provided in the cavity space, the battery cell is electrically connected to the control board, and the battery cell and the control board constitute a power control component.
[0010] As an embodiment, the power supply body also includes a first surface cover, which covers the outer shell to seal the cavity space, the outer wall of the first surface cover is provided with the shaft groove, and the first electrode and the second electrode serving as the first conductive structure, the control board is electrically connected to the first electrode and the second electrode, and the outer wall of the first surface cover is also provided with a first magnet and a second magnet, and the first magnet and the second magnet constitute a first detachable structure.
[0011] As an embodiment, the atomizer body includes a main body shell and a second surface cover, and a partition wall is provided in the main body shell, and the partition wall divides the internal space of the main body shell into a first accommodating chamber and a second accommodating chamber. The two cigarette cartridges are respectively arranged in the first accommodating chamber and the second accommodating chamber. The second surface cover covers the main body shell, and the outer wall of the second surface cover is provided with the rotating shaft, the third electrode and the fourth electrode serving as the second conductive structure, and the fifth electrode and the sixth electrode serving as the third conductive structure. The third electrode is in contact with the first electrode, and the fourth electrode is in contact with the second electrode. The outer wall of the second surface cover is also provided with a third magnet corresponding to the first magnet, and a fourth magnet corresponding to the second magnet. The third magnet and the fourth magnet constitute a second detachable structure.
[0012] As an embodiment, the power supply body also includes an airflow sensor, which is arranged on the inner wall of the first cover, the cavity space corresponds to the airflow sensor, the control panel is also electrically connected to the airflow sensor, and a charging socket is provided on the control panel. The bottom end of the shell is provided with an air inlet hole communicating with the cavity space, and a charging socket corresponding to the charging socket.
[0013] As an embodiment, an oil storage chamber is formed in each of the cigarette cartridges, a mist tube is provided in the oil storage chamber, a mist channel is formed in the mist tube, a heating core is provided in the mist channel, an oil inlet hole corresponding to the corresponding heating core is provided on the outer wall of the mist tube, the third electrode and the fourth electrode are electrically connected to the heating core of one of the cigarette cartridges, the fifth electrode and the sixth electrode are electrically connected to the heating core of another of the cigarette cartridges, an air guide hole communicating with the lower end of the mist channel is provided at the bottom end of each of the cigarette cartridges, a smoke exhaust channel communicating with the upper end of the mist channel is provided at the top end of each of the cigarette cartridges, a first suction nozzle is provided at the top end of the main body shell, a second suction nozzle is provided at the bottom end of the main body shell, a first smoke outlet channel communicating with the smoke exhaust channel of one of the cigarette cartridges is provided in the first suction nozzle, and a second smoke outlet channel communicating with the smoke exhaust channel of the other cigarette cartridge is provided in the second suction nozzle.
[0014] The implementation of the dual-cartridge rotary power supply electronic cigarette of the utility model has the following beneficial effects: the dual-cartridge rotary power supply electronic cigarette of the utility model controls the operation of the two cartridges by rotating the power supply body, so that the electronic cigarette can match two cartridges at the same time, not only can two flavors of smoke be inhaled, but the two cartridges also have sufficient oil for a longer smoking time, and after the oil in the cartridge is consumed, the power supply body can be disassembled and matched with other atomization bodies for use. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] The following is a detailed description of the present invention in conjunction with the accompanying drawings to make the above advantages of the present invention more clear.
[0016] Figure 1 This is an exploded view of the electronic cigarette of the present invention;
[0017] Figure 2 It is a three-dimensional schematic diagram of the electronic cigarette of the utility model;
[0018] Figure 3 It is a cross-sectional schematic diagram of the electronic cigarette of the present invention;
[0019] Figure 4 This is a disassembled diagram of the power supply body and atomization body of the electronic cigarette of the utility model;
[0020] Figure 5 This is a cross-sectional view of the power supply body of the electronic cigarette of the present invention after being rotated 180 degrees on the atomizing body;
[0021] Figure 6 This is a schematic diagram of the exploded power supply body of the electronic cigarette of the present invention. DETAILED DESCRIPTION
[0022] The following describes the implementation of the present invention in detail with reference to the accompanying drawings and examples, so that the implementation process of how the present invention applies technical means to solve technical problems and achieve technical effects can be fully understood and implemented accordingly. It should be noted that as long as no conflict arises, the various embodiments of the present invention and the various features in each embodiment can be combined with each other, and the resulting technical solutions are all within the scope of protection of the present invention.
[0023] It should be noted that the specification of this application records a large number of technical features, which are distributed in various technical solutions. If all possible combinations of technical features of this application (i.e., technical solutions) are to be listed, the specification will be too lengthy. In order to avoid this problem, the various technical features disclosed in the above-mentioned utility model content of this application, the various technical features disclosed in the various embodiments and examples below, and the various technical features disclosed in the accompanying drawings can be freely combined with each other to form various new technical solutions (these technical solutions are all deemed to have been recorded in this specification), unless such a combination of technical features is technically infeasible. For example, in one example, feature A+B+C is disclosed, and in another example, feature A+B+D+E is disclosed. Features C and D are equivalent technical means that play the same role. Technically, only one of them can be used, and it is impossible to use them at the same time. Feature E can be technically combined with feature C. Then the solution of A+B+C+D should not be considered as having been recorded because it is technically infeasible, while the solution of A+B+C+E should be considered as having been recorded.
[0024] like Figure 1-6 As shown, the utility model provides an electronic cigarette with dual cigarette cartridges 7 rotating for power supply, including an atomizer body 10 and a power supply body 9 detachably connected to the atomizer body 10, wherein two cigarette cartridges 7 for storing cigarette oils of different flavors are arranged in the atomizer body 10, and an axis groove 501 and a first conductive structure 902 are provided on the power supply body 9, and the atomizer body 10 is provided with a rotating shaft 601 inserted into the axis groove 501, as well as a second conductive structure 1001 and a third conductive structure 1002 respectively used for conductive connection to the corresponding cigarette cartridges 7, the first conductive structure 902 corresponds to the second conductive structure 1001, the power supply body 9 supplies power to one cigarette cartridge 7 through the first conductive structure 902 and the second conductive structure 1001, and the power supply body 9 can be rotated 180 degrees on the atomizer body 10 through the rotating shaft 601 and the axis groove 501, so that the first conductive structure 902 and the third conductive structure 1002 can correspond to each other to supply power to the other cigarette cartridge 7. It should be noted that by rotating the power supply body 9 to control the operation of the two cartridges 7, the electronic cigarette can be matched with two cartridges 7 at the same time. Not only can two flavors of smoke be inhaled, but the two cartridges 7 also have sufficient oil for a longer smoking time. After the oil in the cartridge 7 is consumed, the power supply body 9 can also be removed to match other atomization bodies 10 for use.
[0025] In some embodiments, the third conductive structure 1002 is located on a rotational trajectory of the first conductive structure 902 and the power supply body 9 in a clockwise rotation, and the second conductive structure 1001 is located on a rotational trajectory of the first conductive structure 902 and the power supply body 9 in a counterclockwise rotation. It should be noted that by locating the third conductive structure 1002 and the second conductive structure 1001 on the clockwise and counterclockwise rotational trajectories of the first conductive structure 902, respectively, the power supply body 9 can be rotated 180 degrees clockwise or counterclockwise on the atomizer body 10, and the first conductive structure 902 can be electrically conductively aligned with the third conductive structure 1002 and the second conductive structure 1001.
[0026] In some embodiments, the power supply body 9 is further provided with a first detachable structure 903, and the atomizing body 10 is provided with a second detachable structure 1003 corresponding to the first detachable structure 903. The power supply body 9 is detachably connected to the atomizing body 10 via the first detachable structure 903 and the second detachable structure 1003. The first detachable structure 903 and the second detachable structure 1003 are used to allow the power supply body 9 to be detachable from the atomizing body 10 and reassembled after detachment.
[0027] In some embodiments, the first detachable structure 903 and the second detachable structure 1003 include one of a magnetic structure, an interference fit structure, a plug-and-play structure, an adhesive structure, and a snap-on structure. In this embodiment, the first detachable structure 903 and the second detachable structure 1003 preferably employ a magnetic structure, which facilitates the disassembly and assembly of the power supply body 9 and the atomizer body 10.
[0028] In some embodiments, a power control assembly 901 is provided within the power supply body 9. The power control assembly 901 supplies power to one cigarette cartridge 7 via the first conductive structure 902 and the second conductive structure 1001; alternatively, the power control assembly 901 supplies power to another cigarette cartridge 7 via the first conductive structure 902 and the third conductive structure 1002. Specifically, after the power supply body 9 is normally assembled onto the atomizer body 10, the first conductive structure 902 corresponds to the second conductive structure 1001, and the power control assembly 901 supplies power to one cigarette cartridge 7 via the first conductive structure 902 and the second conductive structure 1001. After the power supply body 9 is rotated 180 degrees on the atomizer body 10 via the rotating shaft 601 and the shaft groove 501, the first conductive structure 902 corresponds to the third conductive structure 1002, and the power control assembly 901 supplies power to another cigarette cartridge 7 via the first conductive structure 902 and the third conductive structure 1002.
[0029] In some embodiments, the power supply body 9 includes a housing 1, which defines a cavity 103. A battery cell 3 and a control board 2 are located within the cavity 103. The battery cell 3 is electrically connected to the control board 2, and the battery cell 3 and the control board 2 constitute a power control assembly 901. The cavity 103 is used to accommodate the battery cell 3 and the control board 2. The battery cell 3 is used to power the control board 2 to activate its electronic control functions. The control board 2 is used to power the two cigarette cartridges 7 to atomize the cigarette oil and simultaneously control the operation of the two cigarette cartridges 7.
[0030] In some embodiments, the power supply body 9 further includes a first cover 5, which covers the sealed cavity space 103 on the shell 1. The outer wall of the first cover 5 is provided with an axis groove 501, as well as a first electrode 502 and a second electrode 503 as a first conductive structure 902. The control board 2 is electrically connected to the first electrode 502 and the second electrode 503. The outer wall of the first cover 5 is further provided with a first magnet 504 and a second magnet 505. The first magnet 504 and the second magnet 505 constitute a first detachable structure 903. Among them, the first electrode 502 and the second electrode 503 are made of conductive metal material for conductively connecting the two cigarette cartridges 7. The first magnet 504 and the second magnet 505 are used to utilize magnetic attraction to detachably connect the power supply body 9 to the atomizer body 10.
[0031] In some embodiments, the atomizer body 10 includes a main body shell 8 and a second surface cover 6. A partition wall 801 is provided inside the main body shell 8. The partition wall 801 divides the internal space of the main body shell 8 into a first accommodating chamber 802 and a second accommodating chamber 803. Two cigarette cartridges 7 are respectively provided in the first accommodating chamber 802 and the second accommodating chamber 803. The second surface cover 6 covers the main body shell 8. The outer wall of the second surface cover 6 is provided with a rotating shaft 601, a third electrode 602 and a fourth electrode 603 serving as the second conductive structure 1001, and a fifth electrode 604 and a sixth electrode 605 serving as the third conductive structure 1002. The third electrode 602 abuts the first electrode 502, and the fourth electrode 603 abuts the second electrode 503. The outer wall of the second surface cover 6 is also provided with a third magnet 606 corresponding to the first magnet 504, and a fourth magnet 607 corresponding to the second magnet 505. The third magnet 606 and the fourth magnet 607 constitute a second detachable structure 1003. Among them, the first accommodating chamber 802 and the second accommodating chamber 803 are respectively used to accommodate the corresponding cigarette cartridges 7, and the second cover 6 is used to seal the first accommodating chamber 802 and the second accommodating chamber 803. After the power supply body 9 is normally assembled to the atomizer body 10, the power supply body 9 is detachably connected to the atomizer body 10 through the magnetic attraction between the first magnet 504 and the third magnet 606, and the magnetic attraction between the second magnet 505 and the fourth magnet 607. The control board 2 is in contact with the first electrode 502 through the third electrode 602, and the fourth The electrode 603 abuts against the second electrode 503 to supply power to a cigarette cartridge 7. After the power supply body 9 rotates 180 degrees on the atomizer body 10 through the rotating shaft 601 and the shaft groove 501, the power supply body 9 is detachably connected to the atomizer body 10 through the magnetic attraction between the first magnet 504 and the fourth magnet 607, and the magnetic attraction between the second magnet 505 and the third magnet 606. The control board 2 abuts against the first electrode 502 through the fifth electrode 604, and abuts against the second electrode 503 to supply power to another cigarette cartridge 7.
[0032] In some embodiments, the power supply body 9 further includes an airflow sensor 4, which is provided on the inner wall of the first cover 5. The cavity space 103 corresponds to the airflow sensor 4. The control board 2 is also electrically connected to the airflow sensor 4. A charging socket 201 is provided on the control board 2. The bottom end of the housing 1 is provided with an air inlet 101 communicating with the cavity space 103, and a charging socket 102 corresponding to the charging socket 201. It should be noted that when smoking, airflow can enter the cavity space 103 from the air inlet 101. After the airflow sensor 4 senses the airflow in the cavity space 103, it can activate the control board 2 to power the cigarette cartridge 7. The plug of the charging device can be inserted from the charging socket 102 into the charging socket 201, and then the battery cell 3 is charged through the control board 2.
[0033] In some embodiments, an oil storage chamber 701 is formed in each cigarette cartridge 7, a mist tube 702 is provided in the oil storage chamber 701, a mist channel 703 is formed in the mist tube 702, a heating core 704 is provided in the mist channel 703, an oil inlet hole 705 corresponding to the corresponding heating core 704 is opened on the outer wall of the mist tube 702, the third electrode 602 and the fourth electrode 603 are electrically connected to the heating core 704 of one cigarette cartridge 7, and the fifth electrode 604 and the sixth electrode 605 are electrically connected to the heating core 704 of another cigarette cartridge 7 An air guide hole 706 communicating with the lower end of the mist channel 703 is provided at the bottom of each cigarette cartridge 7, and a smoke exhaust channel 707 communicating with the upper end of the mist channel 703 is provided at the top of each cigarette cartridge 7. A first suction nozzle 804 is provided at the top of the main body shell 8, and a second suction nozzle 806 is provided at the bottom of the main body shell 8. A first smoke outlet channel 805 communicating with the smoke exhaust channel 707 of one cigarette cartridge 7 is provided in the first suction nozzle 804, and a second smoke outlet channel 807 communicating with the smoke exhaust channel 707 of another cigarette cartridge 7 is provided in the second suction nozzle 806. Among them, the oil storage chamber 701 is used to store the smoke oil, the mist pipe 702 is used to isolate the smoke oil in the oil storage chamber 701, the mist channel 703 is used to ventilate the air and accommodate the heating core 704, the oil inlet hole 705 is used to introduce the smoke oil in the oil storage chamber 701 into the heating core 704, the heating core 704 is used to generate heat after being powered by the control board 2, and then heat the smoke oil to generate smoke. The user holds the first suction nozzle 804 and the second suction nozzle 806 in the mouth and inhales. During inhalation, the air flow can enter the mist channel 703 from the air guide hole 706, and then drive the heating core 704 to heat the smoke oil to generate smoke and be discharged from the smoke exhaust channel 707, and finally the smoke is inhaled into the mouth through the first smoke outlet channel 805 or the second smoke outlet channel 807.
[0034] The following is a detailed description through preferred embodiments.
[0035] like Figure 1-6As shown, the electronic cigarette of the present invention includes: a power supply body 9 and an atomization body 10, the power supply body 9 includes: a shell 1, a control board 2, a battery cell 3, an airflow sensor 4, and a first cover 5, wherein a cavity space 103 is formed in the shell 1 for accommodating the battery cell 3 and the control board 2, the battery cell 3 and the control board 2 are installed in the cavity space 103, the battery cell 3 is electrically connected to the control board 2 for supplying power to the control board 2 to activate the electric control function, the first cover 5 is installed on the shell 1 for sealing the cavity space 103, the airflow sensor 4 is installed on the inner wall of the first cover 5, the cavity space 103 corresponds to the airflow sensor 4, the control board 2 is electrically connected to the airflow sensor 4 for supplying power to the airflow sensor 4 to activate the airflow sensing control function, and a charging socket 201 is provided on the control board 2 for charging the battery cell 3. A charging socket 102 corresponding to the charging socket 201 is provided at the bottom end of the shell 1 for inserting a plug into the charging socket 201. An air inlet 101 communicating with the cavity space 103 is also provided at the bottom end of the shell 1 for airflow to enter the cavity space 103. The outer wall of the first cover 5 is provided with an axis groove 501 for enabling the power supply body 9 to rotate on the atomizing body 10. The outer wall of the first cover 5 is also provided with a first electrode 502 and a second electrode 503 for conductively connecting the atomizing body 10. The control board 2 is electrically connected to the first electrode 502 and the second electrode 503 for supplying power to the atomizing body 10. The outer wall of the first cover 5 is also provided with a first magnet 504 and a second magnet 505 for utilizing magnetic attraction to detachably connect the power supply body 9 to the atomizing body 10. The various components are combined together to cooperate with each other to form the power supply body 9.
[0036] The atomizer body 10 includes: a second cover 6, a cigarette cartridge 7, and a main body shell 8. A partition wall 801 is provided in the main body shell 8 to isolate the internal space of the main body shell 8. The partition wall 801 divides the internal space of the main body shell 8 into a first accommodating chamber 802 and a second accommodating chamber 803 for accommodating the cigarette cartridge 7. The cigarette cartridge 7 is installed in two in the first accommodating chamber 802 and the second accommodating chamber 803 respectively. The second cover 6 is installed on the main body shell 8 to seal the first accommodating chamber 802 and the second accommodating chamber 803. The outer wall of the second cover 6 is provided with a rotating shaft 601 to enable the power supply body 9 to be able to move in the atomizer body 1. 0 is rotated, the outer wall of the second cover 6 is further provided with a third electrode 602 and a fourth electrode 603 for conductively connecting one of the cartridges 7, and a fifth electrode 604 and a sixth electrode 605 for conductively connecting another cartridge 7, the outer wall of the second cover 6 is further provided with a third magnet 606 and a fourth magnet 607 for powering the main body 9 detachably connected to the atomizer main body 10, and an oil storage chamber 701 is formed in each cartridge 7 for storing oil, a mist pipe 702 is provided in the oil storage chamber 701 for isolating the oil in the oil storage chamber 701, and a mist channel 703 is formed in the mist pipe 702 For ventilation, a heating core 704 is provided in the mist channel 703 for entering the smoke oil to generate smoke, and an oil inlet hole 705 corresponding to the corresponding heating core 704 is provided on the outer wall of the mist tube 702 for introducing the smoke oil in the oil storage chamber 701 into the heating core 704. The third electrode 602 and the fourth electrode 603 are electrically connected to the heating core 704 of one of the smoke cartridges 7, and the fifth electrode 604 and the sixth electrode 605 are electrically connected to the heating core 704 of another smoke cartridge 7. The bottom end of each smoke cartridge 7 is provided with an air guide hole 706 communicating with the lower end of the mist channel 703 for introducing smoke oil into the mist channel 7. 03 internal air guide, a smoke exhaust channel 707 connected to the upper end of the mist channel 703 is provided at the top of each cigarette cartridge 7 for exhausting smoke, a first suction nozzle 804 is provided at the top of the main body shell 8 for smoking, and a second suction nozzle 806 is provided at the bottom of the main body shell 8 for smoking, a first smoke outlet channel 805 connected to the smoke exhaust channel 707 of a cigarette cartridge 7 is provided in the first suction nozzle 804 for inhaling smoke, and a second smoke outlet channel 807 connected to the smoke exhaust channel 707 of another cigarette cartridge 7 is provided in the second suction nozzle 806 for inhaling smoke, and each component is combined together to cooperate with each other to form the atomizer body 10.
[0037] Among them, after the power supply body 9 is assembled on the atomizer body 10, the rotating shaft 601 can be inserted into the shaft groove 501, the first magnet 504 corresponds to the third magnet 606, the second magnet 505 corresponds to the fourth magnet 607, the third electrode 602 abuts against the first electrode 502, and the fourth electrode 603 abuts against the second electrode 503. The power supply body 9 is detachably connected to the atomizer body 10 through the magnetic attraction between the first magnet 504 and the third magnet 606, and the magnetic attraction between the second magnet 505 and the fourth magnet 607. The control board 2 supplies power to the heating core 704 of a cigarette cartridge 7 through the abutment between the third electrode 602 and the first electrode 502, and the abutment between the fourth electrode 603 and the second electrode 503 to make it heat up.
[0038] Among them, the power supply body 9 can be rotated on the atomizer body 10 through the rotating shaft 601 and the shaft groove 501, and the fifth electrode 604 and the sixth electrode 605 are respectively located on the rotation trajectory of the first electrode 502 and the second electrode 503. After the power supply body 9 rotates 180 degrees clockwise on the atomizer body 10 through the rotating shaft 601 and the shaft groove 501, the first magnet 504 corresponds to the fourth magnet 607, the second magnet 505 corresponds to the third magnet 606, the fifth electrode 604 abuts against the first electrode 502, and the sixth electrode 605 abuts against the second electrode 503. The power supply body 9 is detachably connected to the atomizer body 10 through the magnetic attraction between the first magnet 504 and the fourth magnet 607, and the magnetic attraction between the second magnet 505 and the third magnet 606. The control board 2 supplies power to the heating core 704 of another cigarette cartridge 7 to make it heat up through the abutment between the fifth electrode 604 and the first electrode 502, and the abutment between the sixth electrode 605 and the second electrode 503.
[0039] Finally, it should be noted that the above are merely preferred embodiments of the present invention and are not intended to limit the present invention. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art will be able to modify the technical solutions described in the aforementioned embodiments or replace some of the technical features therein with equivalents. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the present invention shall be included within the scope of protection of the present invention.
Claims
1. An electronic cigarette with dual cartridges and rotating power supply, comprising an atomizing body and a power supply body detachably connected to the atomizing body, characterized in that: Two cigarette cartridges for storing different flavors of e-liquid are provided in the atomizer body, an axis groove and a first conductive structure are provided on the power supply body, a rotating shaft inserted into the axis groove, and a second conductive structure and a third conductive structure respectively used for conductive connection to the corresponding cigarette cartridges, the first conductive structure corresponds to the second conductive structure, the power supply body supplies power to one of the cigarette cartridges through the first conductive structure and the second conductive structure, the power supply body can be rotated 180 degrees on the atomizer body through the rotating shaft and the axis groove, so that the first conductive structure and the third conductive structure can correspond to each other and supply power to the other cigarette cartridge.
2. The electronic cigarette according to claim 1, characterized in that The third conductive structure is located on a rotation track of the first conductive structure and the power supply body in a clockwise rotation, and the second conductive structure is located on a rotation track of the first conductive structure and the power supply body in a counterclockwise rotation.
3. The electronic cigarette according to claim 1, characterized in that The power supply body is further provided with a first detachable structure, and the atomizing body is provided with a second detachable structure corresponding to the first detachable structure. The power supply body is detachably connected to the atomizing body through the first detachable structure and the second detachable structure.
4. The electronic cigarette according to claim 3, characterized in that The first detachable structure and the second detachable structure include one of a magnetic structure, an interference fit structure, a plug-and-play structure, an adhesive structure, and a snap-on structure.
5. The electronic cigarette according to claim 1, characterized in that A power control component is provided in the power supply body, and the power control component supplies power to one of the cigarette cartridges through the first conductive structure and the second conductive structure; alternatively, the power control component supplies power to another of the cigarette cartridges through the first conductive structure and the third conductive structure.
6. The electronic cigarette according to any one of claims 1 to 5, characterized in that: The power supply body includes a shell, a cavity space is formed in the shell, a battery cell and a control board are arranged in the cavity space, the battery cell is electrically connected to the control board, and the battery cell and the control board constitute a power control component.
7. The electronic cigarette according to claim 6, characterized in that The power supply body also includes a first surface cover, which covers the outer shell to seal the cavity space. The outer wall of the first surface cover is provided with the shaft groove, and the first electrode and the second electrode serving as the first conductive structure. The control board is electrically connected to the first electrode and the second electrode. The outer wall of the first surface cover is also provided with a first magnet and a second magnet. The first magnet and the second magnet constitute a first detachable structure.
8. The electronic cigarette according to claim 7, characterized in that The atomizer body includes a main body shell and a second surface cover. A partition wall is provided in the main body shell, and the partition wall divides the internal space of the main body shell into a first accommodating chamber and a second accommodating chamber. The two cigarette cartridges are respectively arranged in the first accommodating chamber and the second accommodating chamber. The second surface cover covers the main body shell. The outer wall of the second surface cover is provided with the rotating shaft, the third electrode and the fourth electrode serving as the second conductive structure, and the fifth electrode and the sixth electrode serving as the third conductive structure. The third electrode abuts against the first electrode, and the fourth electrode abuts against the second electrode. The outer wall of the second surface cover is also provided with a third magnet corresponding to the first magnet, and a fourth magnet corresponding to the second magnet. The third magnet and the fourth magnet constitute a second detachable structure.
9. The electronic cigarette according to claim 7, characterized in that The power supply body also includes an airflow sensor, which is arranged on the inner wall of the first cover. The cavity space corresponds to the airflow sensor. The control panel is also electrically connected to the airflow sensor. A charging socket is provided on the control panel. The bottom end of the shell is provided with an air inlet hole communicating with the cavity space, and a charging socket corresponding to the charging socket.
10. The electronic cigarette according to claim 8, characterized in that The smoke trap is configured to connect the smoke generating device and the smoke generating device, wherein the smoke generating device is configured to connect the smoke generating device to the smoke generating device, and the smoke generating device is configured to connect the smoke generating device to the smoke generating device.