Rechargeable and detachable electronic atomization system
The rechargeable and detachable electronic atomization system uses magnets with opposite poles to prevent incorrect installation, ensuring correct alignment and preventing leakage and damage by generating a repulsive force when connected improperly.
Patent Information
- Application Number
- FR2024000527
- Authority / Receiving Office
- FR · FR
- Patent Type
- Utility models
- Current Assignee / Owner
- Priority Date
- 2023-09-01
- Filing Date
- 2024-01-19
- Publication Date
- 2025-10-10
- Estimated Expiration
- 2034-01-19
AI Technical Summary
Existing rechargeable detachable electronic atomizers face issues with incorrect installation direction leading to aerosol substrate leakage and damage due to symmetrical shape designs, making it difficult for users to determine the correct orientation during refilling.
The system incorporates magnets with opposite magnetic poles at the ends of the atomizer and charging case to generate a repulsive force when installed incorrectly, providing tactile feedback to guide correct alignment and prevent damage.
Prevents incorrect installation by generating a repulsive force when the atomizer is connected in the wrong direction, ensuring proper alignment and avoiding substrate leakage and device damage.
Smart Images

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Abstract
Description
Title of the invention: Rechargeable and detachable electronic atomization system Technical field
[0001] The present utility model relates to the technical field of electronic atomizers, and more particularly to a rechargeable and detachable electronic atomization system.
[0002] Technical background
[0003] Currently, many users use electronic atomizers. Some existing electronic atomizers are designed in the detachable form, comprising an atomizer for producing aerosol and a charging case for charging the atomizer. Users can detach the atomizer individually from the charging case for use, and reconnect it to the charging case via charging electrodes after use, thus enabling timely charging and the possibility of charging at any time and place. However, one end of the atomizer usually contains a liquid aerosol substrate, and if the atomizer is installed in the charging case incorrectly or in the wrong direction, it may cause leakage of the aerosol substrate and damage the components of the charging case, thereby reducing the service life of the device.In addition, for some atomizers with a symmetrical shape design, users often have difficulty in correctly determining the installation direction when refilling, which gives rise to the risk of aerosol substrate leakage mentioned above.
[0004] Content of invention
[0005] The embodiment of the present utility model provides a rechargeable and detachable electronic atomization system, with the aim of solving the problem in existing techniques for rechargeable detachable electronic atomizers, where it is easy for users to mistake the direction of installation of the atomizer in the refilling case, which is likely to damage the refilling case in the event of aerosol substrate leakage.
[0006] The embodiment of the present utility model provides a rechargeable and detachable electronic atomization system, comprising an atomizer and a charging case; the atomizer can be detachably connected to the charging case; a first electrode is provided on the atomizer; a second electrode is provided on the charging case; when the atomizer is connected to the charging case, the first electrode contacts the second electrode; a first end of the atomizer is in contact with a first end of the refill case, and a second end of the atomizer is in contact with a second end of the refill case; a first magnet is disposed on the first end of the atomizer, while a second magnet is disposed on the second end of the refill case; a magnetic pole of the first magnet facing the refill case is identical to a magnetic pole of the second magnet facing the atomizer.
[0007] In some embodiments, the second end of the atomizer is provided with a first magnetic clip; while the first end of the refill case is provided with a second magnetic clip; the first magnetic clip is attracted by the second magnet; and the second magnetic clip is attracted by the first magnet.
[0008] In some embodiments, the second end of the atomizer is equipped with a third magnet; while the first end of the refill case is equipped with a fourth magnet. The third magnet is positioned so as to be opposite the second magnet, and the magnetic pole of the third magnet directed toward the second magnet is opposite the magnetic pole of the second magnet directed toward the third magnet; the fourth magnet is positioned so as to be opposite the first magnet, and the magnetic pole of the fourth magnet directed toward the first magnet is opposite the magnetic pole of the first magnet directed toward the fourth magnet.
[0009] In some embodiments, the first electrode is disposed between the third magnet and the first magnet, and the third magnet and the first magnet are symmetrically disposed relative to the first electrode.
[0010] In some embodiments, the second electrode is disposed between the fourth magnet and the second magnet, the fourth magnet and the second magnet are symmetrically disposed relative to the second electrode.
[0011] In some embodiments, the atomizer is equipped with a first magnet housing therein; while the refill case is equipped with a second magnet housing therein; the first magnet is contained within the first magnet housing; and the second magnet is contained within the second magnet housing.
[0012] In some embodiments, the atomizer comprises a case and an electrode holder disposed within the case; the first magnet housing is provided on the electrode holder, and the outer contour of the first magnet fits the inner contour of the first magnet housing; the first electrode is connected to the electrode holder, and one end of the first electrode successively passes through the electrode holder and the case, extending toward the refill case.
[0013] In some embodiments, the charging case comprises a charging portion and a receiving portion; the charging portion is removably connected to one side of the receiving portion; the second magnet housing is located in the charging portion on the side away from the atomizer, and the outer contour of the second magnet is matched to the inner contour of the second magnet housing; the second electrode is connected to the charging portion, and one end of the second electrode passes through the charging portion and protrudes toward the atomizer.
[0014] In some embodiments, the charging portion has a charging compartment oriented toward one side of the atomizer; the outer contour of the atomizer fits the inner contour of the charging compartment; the second electrode is disposed protrudingly within the charging compartment, and the second magnet is disposed opposite the charging compartment.
[0015] In some embodiments, the atomizer includes an air exhalation section located at one end and an atomizing section located at the other end; the air exhalation section is removably connected to the atomizing section; the first end of the refill case includes a container of the air exhalation section; the inner contour of the container of the air exhalation section fits the outer contour of the air exhalation section.
[0016] The rechargeable and detachable electronic atomizing system in the present embodiment is based on the above-mentioned structure and connection method, which is equipped in the atomizer and the refill case respectively with a first magnet and a second magnet, and the opposite magnetic poles of the first magnet and the second magnet are the same, when the user installs the atomizer in the wrong direction, the first magnet and the second magnet face each other and generate a repulsive force, thus the user is unable to continue installing the atomizer, thereby effectively preventing installation in the wrong direction and avoiding damage to the refill case caused by leakage of aerosol substrate.At the same time, this electrode configuration helps to guide the user during installation in case the electronic atomizer is in a symmetrical shape, thus avoiding reverse installation due to the symmetrical shape. Brief description of the figures
[0017] In order to illustrate more clearly the technical solution of the embodiment of the present utility model, a brief description of the figures used in the description of the embodiments will be presented below. It is obvious that the figures referred to in the description are detailed embodiments of the present utility model. Ordinary technicians of the trade will be able, without needing creative work, to take advantage of these figures to obtain other illustrations.
[0018] [Fig.l] shows a structural diagram after disassembly of the rechargeable and detachable electronic atomization system according to one embodiment of the present utility model;
[0019] [Fig.2] shows a structural diagram from another perspective after disassembly of the rechargeable and detachable electronic atomization system according to one embodiment of the present utility model;
[0020] [Fig. 3] shows a section of the rechargeable and detachable electronic atomization system according to an embodiment of the present utility model;
[0021] [Fig.4] shows an enlarged view of the circled area A in the section of the rechargeable and detachable electronic atomization system according to an embodiment of the present utility model.
[0022] The reference marks on the figures are as follows: 10 - Rechargeable and detachable electronic atomization system; 100 - Atomizer; 110 - First electrode; 120 - First magnet; 130 - First magnetic clip; 140 - Third magnet; 150 - First magnet housing; 160 - Case; 170 - Electrode holder; 180 - Air exhalation section; 190 - Atomization section; 200 - Charging case; 210 - Second electrode; 220 - Second magnet; 230 - Second magnetic clip; 240 - Fourth magnet; 250 - Second magnet housing; 260 - Charging part; 261 - Charging compartment; 270 - Receiving part; 271 - Charging component; 280 - Air exhalation section container.
[0023] Detailed embodiment
[0024] The technical solution of the embodiment of the present utility model will be described clearly and completely based on the figures of the embodiment of the utility model in question. It is obvious that the embodiment described here represents only a part of the embodiments of the present utility model instead of the whole. All other variant embodiments obtained by an ordinary technician of the art without having carried out creative work, on the basis of the embodiments of the present utility model, will also be the subject of protection of the present patented utility model.
[0025] It is to be understood that, when used in this description and in the appended claims, the terms "comprise" and "contain" indicate the presence of the features, assembly, steps, operations, elements and / or components described, but do not exclude the presence or addition of one or more other features, assemblies, steps, operations, elements, components and / or groups of components.
[0026] It is also to be understood that the terms used in this utility model specification are intended only to describe specific embodiments and are not intended to limit this utility model. As used in this utility model specification and the appended claims, unless the context clearly indicates otherwise, singular terms such as "a," "an," and "the" are intended to include the plural form.
[0027] It should also be understood that, in this description of the utility model and in the appended claims, the term "and / or" refers to any combination of one or more elements listed in association, and all possible combinations are included therein.
[0028] Please refer to Figures 1 to 4, as shown in Figures 1 and 2, the present utility model provides a rechargeable and detachable electronic atomization system 10, comprising an atomizer 100 and a charging case 200; the atomizer 100 can be detachably connected to the charging case 200; a first electrode 110 is provided on the atomizer 100; while a second electrode 210 is located on the charging case 200; when the atomizer 100 is connected to the charging case 200, the first electrode 110 contacts the second electrode 210; a first end of the atomizer 100 is connected to a first end of the charging case 200, while the second end of the atomizer 100 is connected to the second end of the charging case 200; a first magnet 120 is disposed at the first end of the atomizer 100;while a second magnet 220 is located at the second end of the refill case 200; the magnetic pole directed towards the refill case 200 in the first magnet 120 is identical to the magnetic pole directed towards the atomizer 100 in the second magnet 220. ;
[0029] In this embodiment, the first end of the atomizer 100 contains liquid aerosol substrate and an atomizing component in contact with the aerosol substrate. The atomizing component can heat the aerosol substrate to vaporize it into a gaseous aerosol for use by the user. The atomizing component is powered by the battery in the atomizer 100. When the battery is low or exhausted, the user can charge the atomizer 100 in the charging case 200. Specifically, the user must align the first electrode 110 of the atomizer 100 with the second electrode 210 of the charging case 200, so that the charging device in the charging case 200 can recharge the battery of the atomizer 100 by means of the second electrode 210 and the first electrode 110.Normally, the user must align the first end of the atomizer 100 with the first end of the refill case 200, and the second end of the atomizer 100 with the second end of the refill case 200, to refill. in the correct direction; however, in some configurations of the first electrode 110 and second electrode 210, for example, when both electrodes 110 and 210 are circular single electrodes, or both ends of the atomizer 100 are symmetrical to each other, the user may install the atomizer 100 into the refill case 200 in an opposite or offset direction, and may align the first end of the atomizer 100 with the second end of the refill case 200. And then if the aerosol substrate leaks from the atomizer 100, it may seep from the first end of the atomizer 100 and enter the refill case 200 through the second end of the refill case 200 (which may be equipped with other components or not sealed) and damage the refill case 200.
[0030] The arrangement of the first magnet 120 at the first end of the atomizer 100 and the second magnet 220 at the second end of the refill case 200 makes it possible to avoid any direction error during installation. The first magnet 120 and the second magnet 220 are both magnetic components.Specifically, if the user correctly connects the atomizer 100 to the charging case 200, the first magnet 120 and the second magnet 220 are respectively positioned at the two ends and do not generate any mutual repulsive force; on the other hand, if the user connects the atomizer 100 and the charging case 200 in the opposite direction, thereby aligning the first end of the atomizer 100 with the second end of the charging case 200, the first magnet 120 and the second magnet 220 will be positioned oppositely, at which time, since the end surfaces facing each other of the first magnet 120 and the second magnet 220 are configured with the same magnetic pole, a repulsive force will occur between the first magnet 120 and the second magnet 220.As a result, when the user incorrectly connects the atomizer 100 to the charging case 200, the user will feel a tactile reaction resulting from the repulsive force, which will make it difficult to successfully install the atomizer 100, and the user will then become aware of the orientation error and will correctly reinstall the atomizer 100, thereby avoiding damage to the charging case 200.
[0031] In one embodiment, as illustrated in [Fig.l], the atomizer 100 is provided with a first magnetic clip 130 at its second end; the refill case 200 is equipped with a second magnetic clip 230 at its first end; the first magnetic clip 130 is attracted by the second magnet 220; while the second magnetic clip 230 is attracted by the first magnet 120.
[0032] In this embodiment, it is also possible to place the first magnetic clip 130 at the second end of the atomizer 100, and to place the second magnetic clip 230 at the first end of the refill case 200, in addition, the first magnetic clip 130 and the second magnetic clip 230 are made of a metal material capable of being attracted by the first magnet 120 or the second magnet 220. Thus, when the user connects the atomizer 100 to the charging case 200, the first magnet 120 can attract the second magnetic clip 230, and the second magnet 220 can attract the first magnetic clip 130, thereby ensuring a more stable connection between the atomizer 100 and the charging case 200.
[0033] In one embodiment, as illustrated in Figures 3 and 4, a third magnet 140 is disposed at the second end of the atomizer 100; a fourth magnet 240 is disposed at the first end of the refill case 200; the third magnet 140 is disposed opposite the second magnet 220, and the magnetic pole of the third magnet 140 facing the second magnet 220 is opposite the magnetic pole of the second magnet 220 facing the third magnet 140; the fourth magnet 240 is disposed opposite the first magnet 120, and the magnetic pole of the fourth magnet 240 facing the first magnet 120 is opposite the magnetic pole of the first magnet 120 facing the fourth magnet 240.
[0034] In this embodiment, it is possible to place the third magnet 140 at the second end of the atomizer 100 and the fourth magnet 240 at the first end of the refill case 200. The third magnet 140 and the fourth magnet 240 are both magnetic components, with the same magnetic attraction property as that of the first magnet 120 and the second magnet 220. The third magnet 140 and the second magnet 220 can be attracted to each other, as can the fourth magnet 240 and the first magnet 120.When the user connects the atomizer 100 correctly, it ensures a more stable connection between the atomizer 100 and the charging case 200; however, in case of incorrect connection of the atomizer 100, where the first end of the atomizer 100 is opposite to the second end of the charging case 200, and the second end of the atomizer 100 is opposite to the first end of the charging case 200, the third magnet 140 repels the fourth magnet 240, and the first magnet 120 repels the second magnet 220, vice versa, then the user can immediately adjust the connection method through the obvious tactile sensation caused by the repulsive force.
[0035] In one embodiment, as illustrated in [Fig. 4], the first electrode 110 is positioned between the third magnet 140 and the first magnet 120, and the third magnet 140 and the first magnet 120 are symmetrically arranged with respect to the first electrode 110.
[0036] In this embodiment, the first electrode 110 is positioned between the third magnet 140 and the first magnet 120, and the third magnet 140 and the first magnet 120 are symmetrically arranged on either side of the first electrode 110, so when the user correctly connects the atomizer 100 to the charging case 200, this ensures a uniform attractive force between the first magnet 120 and the third magnet 140 placed on both sides of the first electrode 110, thereby ensuring a reliable connection between the first electrode 110 and the second electrode 210.
[0037] In one embodiment, as illustrated in [Fig. 4], the second electrode 210 is positioned between the fourth magnet 240 and the second magnet 220, and the fourth magnet 240 and the second magnet 220 are symmetrically arranged with respect to the second electrode 210.
[0038] In this embodiment, the second electrode 210 is positioned between the fourth magnet 240 and the second magnet 220, and the fourth magnet 240 and the second magnet 220 are symmetrically arranged on either side of the second electrode 210, so that when the user correctly connects the atomizer 100 to the charging case 200, this ensures a uniform attraction force between the fourth magnet 240 and the second magnet 220 placed on both sides of the second electrode 210, thereby ensuring a reliable connection between the second electrode 210 and the first electrode 110.
[0039] In one embodiment, as illustrated in [Fig.4], the atomizer 100 is equipped with a first magnet housing 150 therein; while the refill case 200 is equipped with a second magnet housing 250 therein; the first magnet 120 is contained within the first magnet housing 150; the second magnet 220 is contained within the second magnet housing 250.
[0040] In this embodiment, the first magnet housing 150 is configured in a concave shape inside the atomizer 100, while a second magnet housing 250 is also configured in a concave shape inside the refill case 200. The first magnet housing 150 is provided inside the atomizer 100, facing the side of the refill case 200, while the second magnet housing 250 is provided inside the refill case 200, facing the side of the atomizer 100. Thus, the first magnet 120 can be firmly installed inside the atomizer 100, while the second magnet 220 can be firmly installed inside the refill case 200, thus ensuring a rather short distance between the first magnet 120 and the second magnet. 220 in case of poor connection, in order to generate sufficient repulsion force to provide tactile feedback.Meanwhile, the first magnet 120 and the second magnet 220 are not exposed outside the atomizer 100 and the refill case 200, which can effectively avoid any risk of detachment or damage.
[0041] In one embodiment, as illustrated in Figures 1 and 4, the atomizer 100 comprises a box 160 and an electrode holder 170 disposed inside the box 160; the first magnet housing 150 is provided on the electrode holder 170, and the outer contour of the first magnet 120 fits the inner contour of the first magnet housing 150; a first electrode 110 is connected to the electrode holder 170, and one end of the first electrode 110 successively passes through the electrode holder 170 and the box 160, protruding towards the charger 200.
[0042] In this embodiment, the case 160 of the atomizer 100 has a hollow structure with a central cavity, which contains inside the aerosol substrate and the atomizing components, as well as an electrode support 170 for fixing the first electrode 110 and the first magnet 120. The first magnet housing 150 is arranged on the electrode support 170, making it possible to firmly fix the first magnet 120 in the magnet housing 150 and to avoid any risk of detachment. At the same time, the first electrode 110 is also fixed to the electrode holder 170, and one end of the first electrode 110 passes through the electrode holder 170 and the case 160, protruding toward the charging case 200 to easily connect to the second electrode 210. The electrode holder 170 ensures stable installation of the first electrode 110 and the first magnet 120.
[0043] In one embodiment, as illustrated in Figures 1 and 3, the charging case 200 comprises a charging portion 260 and a receiving portion 270; the charging portion 260 is removably connected to one side of the receiving portion 270; the second magnet housing 250 is located in the charging portion 260 on the side far from the atomizer 100, and the outer contour of the second magnet 220 is matched to the inner contour of the second magnet housing 250; the second electrode 210 is connected to the charging portion 260, and one end of the second electrode 210 passes through the charging portion 260 and protrudes toward the atomizer 100.
[0044] In this embodiment, the charging case 200 is composed of two distinct parts, namely the charging part 260 and the receiving part 270. The charging part 260 and the receiving part 270 can be detachably connected. The charging portion 260 is the portion of the charging case 200 located near the atomizer 100, with a second magnet housing 250 placed inside the charging portion 260, not directly contacting the atomizer 100. The second magnet 220 may be securely embedded in the second magnet housing 250. One end of the second electrode 210 is fixedly connected to the charging portion 260 on the side far from the atomizer 100, while the other end of the second electrode 210 may pass through the charging portion 260, protruding toward the atomizer 100, to enable connection with the first electrode 110.Since the charging part 260 and the receiving part 270 can be separated, therefore it is . possible to perform quick maintenance of the internal components of the 200 charging case.
[0045] In one embodiment, as illustrated in [Fig.l], a charging compartment 261 is open on one side of the charging portion 260 that faces the atomizer 100; the outer contour of the atomizer 100 is compatible with the inner contour of the charging compartment 261; the second electrode 210 is disposed protrudingly inside the charging compartment 261, and the second magnet 220 is disposed opposite the charging compartment 261.
[0046] In this embodiment, the charging portion 260 is equipped with a groove-shaped charging compartment 261 on the side facing the atomizer 100, the atomizer 100 can be installed in the charging compartment 261. Inside the charging compartment 261, a second electrode 210 is raised, thus, the atomizer 100 can be stably charged in the charging compartment 261, thus avoiding unwanted swings or rotations. Optionally, a charging component 271 can be disposed inside the receiving portion 270; the charging component 271 is electrically connected to the second electrode 210. More specifically, the receiving portion 270 has an internal cavity structure in which the charging component 271 is disposed. The charging component 271 allows the atomizer 100 to be recharged by being electrically connected to the second electrode 210.At the same time, the charging component 271 can be configured in a removable manner to facilitate its efficient maintenance.
[0047] In one embodiment, as illustrated in Figures 1 to 3, the atomizer 100 comprises an air exhalation section 180 located at the first end and an atomizing section 190 located at the second end; the air exhalation section 180 can be detached and connected to the atomizing section 190; a container of the air exhalation section 280 is disposed at the first end of the refill case 200; the inner contour of the container of the air exhalation section 280 is adapted to the outer contour of the air exhalation section 180.
[0048] In this embodiment, the atomizer 100 is divided into two parts, namely the air exhalation section 180 and the atomizing section 190. The atomizing section 190 contains aerosol substrate in liquid form and a heating component that heats the aerosol substrate to produce gaseous aerosol, the battery that powers the heating component is also located in the atomizer 100. The aerosol can be expelled from the air exhalation section 180 for the user to use. The first end of the refill case 200 has a container of the air exhalation section 280, when the user wants to refill the atomizer 100, he can detach the air exhalation section 180 from the atomizing section 190, then place the air exhalation section 180 in the container of the section air exhalation section 280, and then reconnect the atomizing section 190 to the refill case 200 for refilling. At the same time, after the atomizing section 190 is connected to the refill case 200, it forms a shield for the container of the air exhalation section 280 and the air exhalation section 180 inside, thereby preventing any falling. Thus, the user can prevent contamination of the air exhalation section 180 during refilling.
[0049] It is thus evident that, based on the above-mentioned structure and connection method, the rechargeable and detachable electronic atomization system according to the embodiments of the present utility model, by installing a first magnet and a second magnet in the atomizer and the charging case respectively, the opposite magnetic poles of the first magnet and the second magnet correspond to each other, the user cannot continue to install the atomizer due to the repulsive force generated when the first magnet and the second magnet are opposite each other, thus preventing incorrect installation, this can prevent damage to the charging case due to installation in the wrong direction.At the same time, this electrode configuration helps to guide the user during installation in case the electronic atomizer is in a symmetrical shape, thus avoiding reverse installation due to the symmetrical shape.
[0050] These are only the particular embodiments of the present utility model above. Any skilled technician could easily envisage various equivalent modifications or substitutions within the technical scope disclosed by the present utility model.
Claims
Claims
1. A rechargeable and detachable electronic atomization system, characterized in that it comprises an atomizer and a charging case; the atomizer can be detachably connected to the charging case; a first electrode is provided on the atomizer; a second electrode is provided on the charging case; when the atomizer is connected to the charging case, the first electrode contacts the second electrode; a first end of the atomizer is in contact with a first end of the charging case, and a second end of the atomizer is in contact with a second end of the charging case; a first magnet is provided on the first end of the atomizer, while a second magnet is provided on the second end of the charging case;a magnetic pole of the first magnet on the side towards the refill case is identical to a magnetic pole of the second magnet facing the atomizer.;
2. The rechargeable and detachable electronic atomizing system according to claim 1, characterized in that the second end of the atomizer is provided with a first magnetic clip, while the first end of the refill case is provided with a second magnetic clip; the first magnetic clip is attracted by the second magnet; the second magnetic clip is attracted by the first magnet.
3. The rechargeable and detachable electronic atomization system according to claim 1, characterized in that the atomizer is equipped with a third magnet at its second end, while the refill case is equipped with a fourth magnet at its first end; the third magnet is positioned opposite the second magnet, and the magnetic poles of the third magnet directed toward the second magnet are opposite the magnetic poles of the second magnet directed toward the third magnet; the fourth magnet is positioned opposite the first magnet, and the magnetic poles of the fourth magnet directed toward the first magnet are opposite the magnetic poles of the first magnet directed toward the fourth magnet.
4. The rechargeable and detachable electronic atomization system according to claim 3, characterized in that the first electrode is arranged between the third magnet and the first magnet, and the third magnet and the first magnet are symmetrically arranged with respect to the first electrode.
5. The rechargeable and detachable electronic atomization system according to claim 3, characterized in that the second electrode is disposed between the fourth magnet and the second magnet, and the fourth magnet and the second magnet are symmetrically disposed with respect to the second electrode.
6. The rechargeable and detachable electronic atomizing system according to claim 1, characterized in that the atomizer is equipped with a first magnet housing therein, while the refill case is equipped with a second magnet housing therein; the first magnet is contained inside the first magnet housing; and the second magnet is contained inside the second magnet housing.
7. The rechargeable and detachable electronic atomization system according to claim 6, characterized in that the atomizer comprises a case and an electrode holder disposed inside the case; the first magnet housing is provided on the electrode holder, and the outer contour of the first magnet fits the inner contour of the first magnet housing; the first electrode is connected to the electrode holder, and one end of the first electrode successively passes through the electrode holder and the case, extending toward the refill case.
8. The rechargeable and detachable electronic atomization system according to claim 6, characterized in that the charging case comprises a charging part and a receiving part; the charging part is detachably connected to one side of the receiving part; the second magnet housing is located in the charging part on the side away from the atomizer, and the outer contour of the second magnet is matched to the inner contour of the second magnet housing; the second electrode is connected to the charging part, and one end of the second electrode passes through the charging part and protrudes toward the atomizer.
9. The rechargeable and detachable electronic atomizing system according to claim 8, characterized in that the charging part is provided with a charging compartment facing one side of the atomizer; the outer contour of the atomizer is adapted to the contour inside the charging compartment; the second electrode protrudes inside the charging compartment, and the second magnet is arranged opposite the charging compartment.
10. The rechargeable and detachable electronic atomizing system according to claim 1, characterized in that the atomizer comprises an air exhalation section located at the first end and an atomizing section located at the second end; the air exhalation section can be detached and connected to the atomizing section: the first end of the refill box has a container of the air exhalation section; the inner contour of the container of the air exhalation section corresponds to the outer contour of the air exhalation section.