Atomizer and atomizing device

By designing a sliding connection between the liquid storage chamber and the atomizing chamber in the atomizer and controlling the liquid inlet channel with a sealing component, oil-coil separation is achieved, solving the problems of atomizer leakage and user experience, and providing flexible atomizing matrix replenishment and flavor adjustment.

CN223681999UActive Publication Date: 2025-12-19HG INNOVATION LTD
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Patent Information

Application Number
CN202423184199.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-23
Publication Date
2025-12-19
Estimated Expiration
2034-12-23

AI Technical Summary

Technical Problem

Existing electronic atomizers cannot control the amount of atomizing matrix replenishing the reservoir cotton after activation, leading to the risk of leakage, and the residue of unused atomizing matrix affects the user experience.

Method used

Design an atomizer including a liquid storage chamber and an atomizing chamber. The sealing or opening of the liquid inlet channel is controlled by a sealing element, allowing users to adjust the replenishment amount of atomizing matrix as needed, achieving oil-coil separation, preventing leakage, and allowing for multiple replenishments to ensure good taste.

Benefits of technology

It effectively prevents leakage of the atomizing matrix, and users can adjust the suction feel as needed to improve the user experience and avoid increasing material costs and volume for large-volume products.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of electronic atomization, in particular to an atomizer and an atomization device.The atomizer comprises a liquid storage bin, an atomization bin and a sealing piece; the liquid storage bin is used for containing an atomized matrix and is provided with a liquid outlet; the atomization bin is provided with a liquid inlet, a liquid inlet channel is arranged between the liquid outlet and the liquid inlet, and the atomization bin is used for heating and atomizing the atomization matrix; the sealing piece is arranged in the liquid inlet channel in a penetrating mode and used for sealing the liquid outlet and / or the liquid inlet, and the atomization bin can move relative to the liquid storage bin so as to control the sealing piece to seal or conduct the liquid inlet channel. According to the electronic cigarette, the atomization substrate can be effectively prevented from leaking out, a user can adjust the smoking taste according to needs, and the user experience is effectively improved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of electronic atomization, in particular to an atomizer and an atomization device. BACKGROUND

[0002] Currently in the field of electronic atomization, an oil core separation method is usually used to avoid liquid leakage of the atomizer. However, once the product of the related art is activated, the replenishment amount of the atomization substrate to the liquid storage cotton cannot be controlled, and thus there is a risk of liquid leakage of the atomizer. In order to reduce the risk of liquid leakage, some manufacturers adopt a solution of reducing the liquid injection amount and increasing the volume of the liquid storage cotton, so that the liquid storage cotton has a lower liquid storage ratio, and ultimately the material cost and product volume of the atomizer product with a large liquid amount are increased. In addition, the unused atomization substrate continues to remain on the liquid storage cotton, and after being placed for a long time, the user's smoking experience is affected in the secondary use. CONTENT OF THE UTILITY MODEL

[0003] The purpose of the present application is to provide an atomizer and an atomization device, which can control the amount of atomization substrate added into the atomization chamber in real time, not only can effectively prevent the atomization substrate from leaking out, but also can enable the user to adjust the smoking taste according to the needs, and effectively improve the user experience.

[0004] In a first aspect, an embodiment of the present application provides an atomizer, comprising:

[0005] a liquid storage chamber configured to accommodate a liquid atomization substrate, the liquid storage chamber being provided with a liquid outlet;

[0006] an atomization chamber provided with a liquid inlet, a liquid inlet channel being provided between the liquid outlet and the liquid inlet, the atomization chamber being configured to heat and atomize the atomization substrate;

[0007] a sealing member penetratingly provided in the liquid inlet channel and configured to seal the liquid outlet and / or the liquid inlet, the atomization chamber being movable relative to the liquid storage chamber to control the sealing or conduction of the liquid inlet channel by the sealing member.

[0008] As an optional implementation, the sealing member is fixedly connected with the liquid storage chamber or the sealing member is fixedly connected with the atomization chamber.

[0009] As an optional implementation, one end of the sealing member is fixedly connected with the atomization chamber, and the other end of the sealing member is configured to seal the liquid outlet of the liquid storage chamber.

[0010] As an optional implementation, the other end of the sealing member comprises a sealing portion, the sealing portion being located in an inner cavity of the liquid storage chamber, the liquid storage chamber comprising an abutting surface provided with the liquid outlet, and a projection of the sealing portion on the abutting surface covering the liquid outlet.

[0011] As an optional implementation, the atomizer comprises an elastic member arranged between the atomizing chamber and the liquid storage chamber, the elastic member has an elastic potential energy for moving the liquid storage chamber away from the atomizing chamber, when the atomizer is not subjected to external force, the sealing portion is abutted against the abutting surface to seal the liquid outlet; when external force moves the atomizing chamber and the liquid storage chamber close to each other, the sealing portion is separated from the abutting surface to open the liquid inlet channel.

[0012] As an optional implementation, the atomizing chamber and the liquid storage chamber are movably connected, and the atomizer comprises an elastic connecting member, one end of the elastic connecting member is connected to the liquid storage chamber, and the other end of the elastic connecting member is connected to the atomizing chamber.

[0013] As an optional implementation, the elastic connecting member comprises a flexible connecting sleeve, one end of the flexible connecting sleeve is sleeved on the outer periphery of the liquid storage chamber, and the other end of the flexible connecting sleeve is sleeved on the outer periphery of the atomizing chamber.

[0014] As an optional implementation, the liquid storage chamber comprises an external sleeve, and the side of the atomizing chamber close to the liquid storage chamber is provided with a plug-in portion, the plug-in portion is slidingly arranged in the external sleeve.

[0015] As an optional implementation, the sealing member comprises a sealing column penetrating in the liquid inlet channel, and the outer side wall of the sealing column and the inner wall of the liquid inlet channel form a flow channel, the flow channel is used for connecting the liquid outlet and the liquid inlet.

[0016] As an optional implementation, the atomizing chamber is provided with a limiting hole and a limiting portion, the liquid storage chamber is provided with a hook, the hook movably penetrates in the limiting hole, and the limiting portion is used for abutting against the hook to limit the maximum distance between the atomizing chamber and the liquid storage chamber.

[0017] As an optional implementation, the atomizing chamber is provided with a liquid storage cotton in fluid communication with the liquid outlet, and the liquid storage cotton is provided with an atomizing module for heating and atomizing the atomizing substrate.

[0018] As an optional implementation, the liquid storage chamber is provided with a suction duct in communication with the atomizing module in the middle part of the liquid storage chamber, and the liquid storage chamber is provided with a suction nozzle in communication with the suction duct at the end away from the atomizing chamber.

[0019] In a second aspect, the embodiments of the present application provide an atomizing device, comprising a power supply assembly and the atomizer described above, and the power supply assembly is used for providing electric energy for the atomizer.

[0020] The beneficial effects of the embodiments of the present application include:

[0021] The atomizer provided in the embodiments of the present application comprises a liquid storage bin and an atomization bin. The liquid storage bin is used for containing liquid atomization substrate, and a liquid outlet is arranged on the liquid storage bin. The atomization bin is provided with a liquid inlet. A liquid inlet channel is arranged between the liquid outlet and the liquid inlet. The atomization substrate in the liquid storage bin can enter the atomization bin through the liquid inlet channel. The atomization bin is used for heating and atomizing the atomization substrate. A sealing element is arranged in the liquid inlet channel. The sealing element can be used for sealing the liquid outlet and / or the liquid inlet to prevent the atomization substrate from entering the atomization bin. The atomization bin of the embodiments of the present application can move relative to the liquid storage bin to control the sealing or conduction of the liquid inlet channel. By changing the relative distance between the liquid storage bin and the atomization bin, the sealing or conduction of the liquid inlet channel is controlled, so that the user can supplement the liquid multiple times, and the user can control the liquid supplementing amount each time. Compared with the related art, the embodiments of the present application can allow the user to supplement the atomization substrate into the atomization bin multiple times according to the need after the oil core is separated and activated, and the user can adjust the injection amount of the atomization substrate according to the amount of the atomization substrate used at a time. Therefore, the embodiments of the present application can avoid supplementing too much atomization substrate to cause a large amount of atomization substrate to be left in the atomization bin. The atomization substrate can be supplemented again in the second use to ensure good taste. In addition, the embodiments of the present application can also solve the problem that the large-oil-amount cartridge product is prone to oil leakage because a large amount of atomization substrate is not left in the atomization bin.

[0022] The atomization device provided in the embodiments of the present application comprises a power supply assembly and the above-mentioned atomizer. The power supply assembly is used for providing electric energy for the atomizer. The atomization device of the embodiments of the present application can control the amount of the atomization substrate supplemented into the atomization bin in real time. The atomization device can not only effectively prevent the atomization substrate from leaking, but also allow the user to adjust the suction taste according to the need, thereby effectively improving the user experience. BRIEF DESCRIPTION OF DRAWINGS

[0023] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the following will briefly introduce the drawings needed to be used in the embodiments. It should be understood that the following drawings only show some of the embodiments of the present application, and therefore should not be regarded as a limitation on the scope. For those skilled in the art, other related drawings can also be obtained without creative labor on the basis of these drawings.

[0024] Figure 1 FIG. 1 is a structural schematic diagram of an atomizer according to an embodiment of the present application;

[0025] Figure 2 FIG. 2 is a structural schematic diagram of an atomizer according to another embodiment of the present application;

[0026] Figure 3 FIG. 3 is a structural schematic diagram of an atomizer according to another embodiment of the present application;

[0027] Figure 4 FIG. 4 is a structural schematic diagram of an atomizer according to another embodiment of the present application;

[0028] Figure 5 Figure 5 is a structural schematic diagram of a fifth embodiment of an atomizer of the present application;

[0029] Figure 6 Figure 6 is a structural schematic diagram of a sixth embodiment of an atomizer of the present application.

[0030] Icon:

[0031] 100-liquid storage chamber; 101-atomization chamber; 102-sealing member; 103-liquid outlet; 104-sealing column; 105-sealing portion; 106-abutment surface; 107-elastic member; 108-outer sleeve; 109-insertion portion; 110-liquid inlet channel; 111-internal sleeve; 112-flow channel; 113-limiting hole; 114-hook; 115-liquid storage cotton; 116-atomization module; 117-suction duct; 118-suction nozzle; 119-flexible connecting sleeve; 120-limiting portion; 121-elastic connecting member. DETAILED DESCRIPTION

[0032] In order to make the purpose, technical solutions and advantages of the embodiments of the present application clearer, the technical solutions in the embodiments of the present application will be described clearly and completely below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only some of the embodiments of the present application, rather than all the embodiments of the present application. The components of the embodiments of the present application described and shown in the drawings herein can be arranged and designed in various different configurations.

[0033] Therefore, the following detailed description of the embodiments of the present application provided in the drawings is not intended to limit the scope of the claimed present application, but only represents selected embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without making creative efforts fall within the scope of protection of the present application.

[0034] It should be noted that: similar reference numerals and letters represent similar items in the following drawings, therefore, once an item is defined in one drawing, it does not need to be further defined and explained in subsequent drawings. In addition, the terms “first”, “second”, “third” and the like are only used for differentiation in description, and cannot be understood as indicating or implying relative importance.

[0035] In the description of the present application, it should also be noted that, unless otherwise explicitly specified and limited, the terms “setting”, “mounting”, “connecting”, “connecting” should be understood broadly, for example, it can be fixedly connected, or detachably connected, or integrally connected; it can be mechanically connected, or electrically connected; it can be directly connected, or indirectly connected through an intermediate medium, or the internal communication of two elements. For those of ordinary skill in the art, the specific meanings of the above terms in the present application can be understood according to the specific circumstances.

[0036] At present, in the field of electronic cigarettes, the oil core separation method is usually used to avoid leakage of the cartridge. However, the related technology can only ensure the separation of the atomization substrate and the liquid storage cotton before the product is activated for use. Once the product is activated and enters the use state, the atomization substrate and the liquid storage cotton are in contact, and cannot be restored to the state of oil core separation again when not in use, so there is still a risk of leakage of the atomizer. In order to reduce the risk, some manufacturers reduce the injection amount and increase the volume of the liquid storage cotton, so that the liquid storage cotton has a lower liquid storage ratio, ultimately resulting in an increase in the material cost and product volume of the atomizer product with a large liquid amount. In addition, the unused atomization substrate continues to remain on the liquid storage cotton, which affects the user's smoking experience in the second use after long-term placement.

[0037] To solve the above technical problems, the embodiments of the present application provide an atomizer and an atomizing device.

[0038] Referring to FIGS. 1 to 3, Figure 1 Figure 2 and Figure 3 The embodiments of the present application provide an atomizer, which comprises a liquid storage bin 100, an atomization bin 101 and a sealing piece 102; the liquid storage bin 100 is used for containing an atomization substrate, the liquid storage bin 100 is provided with a liquid outlet 103, the atomization bin 101 is provided with a liquid inlet, a liquid inlet channel 110 is arranged between the liquid outlet 103 and the liquid inlet, and the atomization bin 101 is used for heating and atomizing the atomization substrate; the sealing piece 102 is arranged in the liquid inlet channel 110 and is used for sealing the liquid outlet 103 and / or the liquid inlet, and the atomization bin 101 is movable relative to the liquid storage bin 100 to control the sealing or conduction of the sealing piece 102 to the liquid inlet channel 110.

[0039] In some embodiments, one end of the sealing piece 102 is fixedly connected with the atomization bin 101, and the other end of the sealing piece 102 is used for sealing the liquid outlet 103 of the liquid storage bin 100.

[0040] In some embodiments, one end of the sealing piece 102 is fixedly connected with the liquid storage bin 100, and the other end of the sealing piece 102 is used for sealing the liquid inlet of the atomization bin 101.

[0041] For the above two structures, those skilled in the art can select according to the needs, and the embodiments of the present application do not make special limitations.

[0042] ​In some embodiments, the liquid storage bin 100 is in sliding connection with the atomization bin 101, so that the liquid storage bin 100 and the atomization bin 101 can approach or move away from each other under external force. The liquid storage bin 100 is provided with a liquid outlet 103 at one end close to the atomization bin 101, which can communicate with the atomization bin 101. A sealing column 104 is arranged in the liquid outlet 103. One end of the sealing column 104 is connected with the atomization bin 101, and the other end is provided with a sealing part 105. The liquid storage bin 100 is provided with an abutting surface 106. The projection of the sealing part 105 on the abutting surface 106 covers the liquid outlet 103. Further, an elastic member 107 is arranged between the atomization bin 101 and the liquid storage bin 100. The elastic member 107 generates a force to move the liquid storage bin 100 away from the atomization bin 101. The sealing part 105 and the abutting surface 106 abut to block the liquid outlet 103. The atomization bin 101 is pressed to approach the liquid storage bin 100, so that the sealing part 105 and the abutting surface 106 are separated.

[0043] The atomizer provided by the embodiments of the present application comprises a liquid storage bin 100 and an atomization bin 101. The liquid storage bin 100 and the atomization bin 101 are in sliding connection.

[0044] It should be noted that the sliding path of the atomization bin 101 is consistent with the extension direction of the central axis of the liquid storage bin 100. The liquid storage bin 100 and the atomization bin 101 can approach or move away from each other through sliding.

[0045] Referring to FIGS. 1-3, Figure 2 , Figure 3 The liquid storage bin 100 is provided with a liquid outlet 103 at one end close to the atomization bin 101, which can communicate with the atomization bin 101. A sealing column 104 is arranged in the liquid outlet 103. One end of the sealing column 104 is connected with the atomization bin 101, and the other end is provided with a sealing part 105.

[0046] It should be noted that one end of the sealing column 104 is connected with the atomization bin 101, so that the sealing part 105 is connected with the atomization bin 101 through the sealing column 104. When the atomization bin 101 approaches the liquid storage bin 100, the sealing part 105 can move away from the abutting surface 106.

[0047] The liquid storage bin 100 is provided with an abutting surface 106. The projection of the sealing part 105 on the abutting surface 106 covers the liquid outlet 103. It should be noted that the sealing part 105 can be tightly attached to the abutting surface 106 to seal the liquid outlet 103. The liquid outlet 103 can be circular or square. The specific shape can be set by those skilled in the art as needed, and no special limitation is made.

[0048] In this embodiment of the application, an elastic element 107 is provided between the atomizing chamber 101 and the liquid storage chamber 100. The elastic element 107 generates a force that causes the liquid storage chamber 100 to move away from the atomizing chamber 101 along the guide path. The sealing part 105 abuts against and blocks the liquid outlet 103 with the contact surface 106.

[0049] In some implementations, refer to Figure 3 , Figure 4 As shown in the embodiment of this application, when in use, the user can press the liquid storage chamber 100 and the atomizing chamber 101 to bring the liquid storage chamber 100 closer to the atomizing chamber 101. At this time, the sealing part 105 and the contact surface 106 at the liquid outlet 103 separate, forming a gap. In this state, the liquid outlet 103 can connect the atomizing chamber 101 and the liquid storage chamber 100. The atomizing matrix in the liquid storage chamber 100 can flow into the atomizing chamber 101 under the action of gravity, realizing the injection of atomizing matrix into the atomizing chamber 101.

[0050] It should be noted that when the liquid storage chamber 100 and the atomizing chamber 101 approach each other, the elastic element 107 compresses and stores elastic potential energy. When the pressing force is removed, refer to... Figure 2 As shown, the elastic element 107 releases elastic potential energy, causing the liquid storage chamber 100 and the atomizing chamber 101 to move away from each other along the guide path, thereby making the sealing part 105 and the contact surface 106 at the liquid outlet 103 fit tightly together, so that the sealing part 105 blocks the liquid outlet 103, achieving complete isolation between the liquid storage chamber 100 and the atomizing chamber 101.

[0051] It should be noted that the sealing part 105 in this embodiment is located inside the liquid storage chamber 100 and at the end of the liquid storage chamber 100 near the atomizing chamber 101. At this time, the contact surface 106 is the inner wall surface of the liquid storage chamber 100 near the atomizing chamber 101.

[0052] In some embodiments, a countersunk hole can be provided at the outlet 103 near the end of the storage chamber 100, and the sealing part 105 can be embedded in the countersunk hole. The sealing part 105 and the countersunk hole have a larger sealing contact surface, which can enhance the sealing performance and prevent the atomizing matrix from seeping into the atomizing chamber 101.

[0053] It should be noted that when using the atomizer provided in this application embodiment, the user can repeatedly press the liquid storage chamber 100 and the atomizing chamber 101 so that the atomizing matrix in the liquid storage chamber 100 can flow into the atomizing chamber 101 multiple times. Alternatively, the user can press once and stop for a certain period of time so that the atomizing matrix can continuously enter the atomizing chamber 101.

[0054] Regarding the explanation of the atomizing matrix entering the atomizing chamber 101 through the liquid outlet 103, in addition to the aforementioned entry of the atomizing matrix into the atomizing chamber 101 under the action of gravity, it can also increase the internal pressure of the liquid storage chamber 100, causing the atomizing matrix to flow out.

[0055] For example, the liquid storage bin 100 is made of rubber or plastic material, and the user presses the liquid storage bin 100 and the atomization bin 101 to make them close to each other, and at the same time, the liquid storage bin 100 is deformed under pressure, so that the atomization substrate in the liquid storage bin 100 is pressed into the atomization bin 101. It should be noted that the structure can make the liquid storage bin 100 arranged below the atomization bin 101, and in the case of not using the smoke cartridge, the liquid level of the atomization substrate is far away from the liquid outlet 103, and the risk of oil leakage can be completely eliminated.

[0056] Compared with the related art, the embodiment of the application can realize effective oil core separation, so that the user can add atomization substrate to the atomization bin 101 as needed, and the user can adjust the injection amount of the atomization substrate according to the single use amount of the atomization substrate. Therefore, the embodiment of the application can avoid adding too much atomization substrate to make a large amount of atomization substrate remain in the atomization bin 101, and can re-press the added atomization substrate in the secondary use to ensure good taste. In addition, the embodiment of the application can also solve the problem of easy leakage of large liquid amount atomizer products due to the fact that a large amount of atomization substrate is not left in the atomization bin 101.

[0057] Referring to Figure 4 As shown in the figure, the liquid storage bin 100 of the embodiment of the application is formed with an external sleeve 108, and the atomization bin 101 has a plug-in part 109 close to one end of the liquid storage bin 100, and the plug-in part 109 is slidably inserted into the external sleeve 108.

[0058] Regarding the structure of the liquid storage bin 100 and the atomization bin 101, the liquid storage bin 100 and the atomization bin 101 can be provided in a cylindrical structure, and those skilled in the art can also provide the liquid storage bin 100 and the atomization bin 101 in other shapes as needed, which is not specially limited here.

[0059] For example, the liquid storage bin 100 and the atomization bin 101 are provided in a cylindrical structure, and the center axis of the external sleeve 108 provided on the liquid storage bin 100 coincides with the center axis of the atomization bin 101.

[0060] Referring to Figure 4 As an optional embodiment, the liquid storage bin 100 is provided with a liquid inlet channel 110 with a center axis consistent with the center axis of the liquid outlet 103, and the plug-in part 109 is provided with an internal sleeve 111, and one end of the liquid inlet channel 110 is communicated with the liquid outlet 103, and the other end is inserted into the internal sleeve 111.

[0061] In some embodiments, the liquid inlet channel 110 extends from the liquid outlet 103 of the liquid storage bin 100, and the central axis of the liquid inlet channel 110 is consistent with the direction of the guide path of the guide sliding assembly. The inner sleeve 111 is formed on the plug-in part 109, and the inner sleeve 111 can be sleeved on the liquid inlet channel 110. On the one hand, the liquid inlet channel 110 can slide in the inner sleeve 111 to achieve the guiding effect, and on the other hand, the liquid inlet channel 110 and the inner wall of the inner sleeve 111 can guide the atomized substrate to smoothly enter the atomization bin 101.

[0062] In some embodiments, the sealing column 104 is arranged in the liquid inlet channel 110, and the outer wall of the sealing column 104 and the inner wall of the liquid inlet channel 110 form the flow channel 112 for connecting the liquid outlet 103 and the liquid inlet.

[0063] It should be noted that, as shown in Figure 4 , the inner wall of the sealing column 104 and the inner wall of the liquid inlet channel 110 form the flow channel 112, that is, the sealing column 104 is arranged in the liquid inlet channel 110, but does not completely seal the liquid inlet channel 110. In some embodiments, the sealing column 104 and the sealing part 105 can be integrally formed by injection molding or other processes, and the material can be selected from silica gel materials.

[0064] For the liquid outlet 103 and the liquid inlet channel 110, refer to Figure 4 , the liquid inlet channel 110 is an extension of the liquid outlet 103, and the inner diameter of the liquid inlet channel 110 and the inner diameter of the liquid outlet 103 can be set to be consistent. In addition, the elastic member 107 can be sleeved outside the liquid inlet channel 110.

[0065] As an optional embodiment, the liquid storage bin 100 is provided with a limiting structure, and the limiting structure abuts against the atomization bin 101 to prevent the liquid storage bin 100 and the atomization bin 101 from being separated along the sliding path.

[0066] It should be noted that the limiting structure can be a hook 114 or other limiting block, and the limiting structure can prevent the liquid storage bin 100 and the atomization bin 101 from being completely separated along the sliding guide assembly.

[0067] In some embodiments, as shown in Figure 5 , Figure 6 , the atomization bin 101 is provided with a limiting hole 113 and a limiting part 120, and the liquid storage bin 100 is provided with a hook 114, the hook 114 is movably arranged in the limiting hole 113, and the limiting part 120 is used to abut against the hook 114 to limit the maximum distance between the atomization bin 101 and the liquid storage bin 100.

[0068] In some embodiments, the hook 114 abuts against the limiting part 120 to prevent the liquid storage chamber 100 from separating from the atomizing chamber 101 along the guide path.

[0069] It should be noted that the blocking force generated by the limiting structure is greater than the elastic thrust of the elastic element 107 on the liquid storage chamber 100 and the atomizing chamber 101, which effectively prevents the liquid storage chamber 100 and the atomizing chamber 101 from separating, and helps to ensure the stability of the structure.

[0070] As an optional implementation, the sealing part 105 is provided with a plurality of concentric annular grooves, and an outlet sealing ring that abuts against the contact surface 106 is embedded in the annular groove; the projection of the outlet 103 on the contact surface 106 is located within the area enclosed by the outlet 103 sealing ring.

[0071] In this embodiment, an annular groove is provided on the sealing part 105, and a liquid outlet sealing ring is embedded in the annular groove. When the sealing part 105 abuts against the contact surface 106, the liquid outlet sealing ring can enhance the sealing performance.

[0072] Regarding the number of liquid outlets 103, this application embodiment does not impose a special limitation. Those skilled in the art can determine the number and arrangement of liquid outlets 103 as needed. For example, there are two liquid outlets 103, arranged at intervals around the central axis of the liquid storage tank 100. For example, there are three liquid outlets 103 arranged at intervals around the central axis of the liquid storage tank 100.

[0073] Reference Figure 5 , Figure 6 As shown, as an optional implementation, the atomizing chamber 101 is provided with a liquid storage cotton 115 that is in fluid communication with the liquid outlet, and an atomizing module 116 for heating and atomizing the atomizing matrix is ​​inserted into the liquid storage cotton 115.

[0074] In some embodiments, a suction pipe 117 communicating with an atomizing chamber 101 is provided in the middle of the liquid storage chamber 100; a suction nozzle 118 communicating with the suction pipe 117 is provided at the end of the liquid storage chamber 100 away from the atomizing chamber 101.

[0075] Reference Figure 1 , Figure 5 As shown, in one optional implementation, the atomizing chamber 101 is movably connected to the liquid storage chamber 100. The atomizer includes an elastic connector 121, one end of which is connected to the liquid storage chamber 100 and the other end is connected to the atomizing chamber 101.

[0076] In some embodiments, the elastic connector 121 includes a flexible connecting sleeve 119, one end of which is fitted onto the liquid storage chamber 100 and the other end of which is fitted onto the atomizing chamber 101.

[0077] In some embodiments, the flexible connecting sleeve 119 is sleeved on the outer periphery of the liquid storage bin 100 at one end and on the outer periphery of the atomization bin 101 at the other end.

[0078] The embodiment of the present application connects the liquid storage bin 100 and the atomization bin 101 through the flexible connecting sleeve 119, and can protect the sliding guide of the liquid storage bin 100 and the atomization bin 101. When the liquid storage bin 100 and the atomization bin 101 are close to or away from each other, the flexible connecting sleeve 119 can automatically contract or elongate.

[0079] The embodiment of the present application provides the flexible connecting sleeve 119, which can not only provide sealing protection, but also be beneficial to enhancing the aesthetic degree of the atomizer.

[0080] The embodiment of the present application provides the atomization device, which comprises a power supply assembly and the atomizer described above, and the power supply assembly is used for providing electric energy for the atomizer.

[0081] The atomization device of the embodiment of the present application can control the amount of atomization base material filled into the atomization bin 101 in real time, can effectively prevent the atomization base material from leaking, can make the user adjust the suction taste according to the need, and effectively improves the user experience.

[0082] The above only describes the preferred embodiments of the present application and is not used to limit the present application. For those skilled in the art, the present application can have various modifications and changes. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.

Claims

1. An atomizer characterized by, The application relates to an atomizer, which comprises the following parts: a storage bin for containing an atomized substrate, the storage bin being provided with an outlet; an atomizing bin provided with an inlet, the outlet and the inlet being connected through a liquid inlet channel, the atomizing bin being used for heating and atomizing the atomized substrate; a sealing element penetrating through the liquid inlet channel and used for sealing the outlet and / or the inlet, the atomizing bin being movable relative to the storage bin to control the sealing or the opening of the liquid inlet channel by the sealing element.

2. The atomizer of claim 1, wherein, The sealing element is fixedly connected with the storage bin or the sealing element is fixedly connected with the atomizing bin.

3. The atomizer of claim 2, wherein, One end of the sealing element is fixedly connected with the atomizing bin, and the other end of the sealing element is used for sealing the outlet of the storage bin.

4. The atomizer of claim 3, wherein, The other end of the sealing element comprises a sealing part located in the inner cavity of the storage bin, the storage bin comprises an abutting surface provided with the outlet, and the projection of the sealing part on the abutting surface covers the outlet.

5. The atomizer of claim 4, wherein, The atomizer comprises an elastic element arranged between the atomizing bin and the storage bin, the elastic element has an elastic potential energy for moving the storage bin away from the atomizing bin, when the atomizer is not subjected to external force, the elastic element makes the sealing part abut against the abutting surface to seal the outlet, and when external force moves the atomizing bin and the storage bin close to each other, the sealing part is separated from the abutting surface to open the liquid inlet channel.

6. The atomizer of any of claims 1-5, wherein, The atomizing bin and the storage bin are movably connected, the atomizer comprises an elastic connecting element, one end of the elastic connecting element is connected with the storage bin, and the other end of the elastic connecting element is connected with the atomizing bin.

7. The atomizer of claim 6, wherein, The elastic connecting element comprises a flexible connecting sleeve, one end of the flexible connecting sleeve is sleeved with the outer periphery of the storage bin, and the other end of the flexible connecting sleeve is sleeved with the outer periphery of the atomizing bin.

8. The atomizer of claim 7, wherein, The storage bin comprises an external sleeve, one side of the atomizing bin close to the storage bin is provided with a plug-in part, and the plug-in part is slidably arranged in the external sleeve.

9. The atomizer of any of claims 1-5, wherein, The sealing element comprises a sealing column penetrating through the liquid inlet channel, an outer side wall of the sealing column and an inner wall of the liquid inlet channel are formed with a flow channel, and the flow channel is used for connecting the outlet and the inlet.

10. The atomizer of any of claims 1-5, wherein, The atomizing bin is provided with a limiting hole and a limiting part, the storage bin is provided with a hook, the hook movably penetrates through the limiting hole, and the limiting part is used for abutting against the hook to limit the maximum distance between the atomizing bin and the storage bin.

11. The atomizer of any of claims 1-5, wherein, The atomizing bin is provided with a storage cotton in fluid communication with the outlet, and the storage cotton is provided with an atomizing module used for heating and atomizing the atomized substrate.

12. The atomizer of claim 11, wherein, The middle part of the storage bin is provided with a suction pipe in communication with the atomizing module, and one end of the storage bin away from the atomizing bin is provided with a suction nozzle in communication with the suction pipe.

13. An atomising device characterised in that The atomizer comprises a power supply assembly and the atomizer in any one of claims 1-12, and the power supply assembly is used for providing electric energy for the atomizer.