Atomization device
By introducing elastic parts and limiting parts into the atomization device, the problems of manual activation inconvenience and inconsistent force in the prior art are solved, and the user-friendly activation process and device safety are achieved.
Patent Information
- Application Number
- CN202311523092.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2023-11-15
- Publication Date
- 2025-05-16
AI Technical Summary
The oil core separation structure of the existing atomization device requires manual push or pressing, which is inconvenient to use and inconsistent force, which can easily lead to activation failure or device damage.
Design an atomization device, using the elastic part to help the user activate the device, and through the coordination of the limiting part and the elastic part, the activation process is easily completed, ensuring that the force is within an appropriate range, and avoiding damage caused by extreme means.
It enables users to easily activate the atomization device, enhances the user experience, ensures that each activation is consistent, and avoids device damage caused by extreme operations.
Smart Images

Figure CN119999958A_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the field of electronic atomization, and in particular to an atomization device. Background Art
[0002] For transportation safety, the atomizer is usually equipped with an oil core separation structure to separate the atomizing medium from the atomizing core, and then activate it when it is used. The existing oil core separation structure is a structure where the support part pushes up, or a structure where the nozzle presses down. The principle is to manually push the atomizing core up or down to open the passage between the oil inlet and the oil storage space to activate the atomizing device and achieve a normal suction state. The traditional structure has the following problems:
[0003] 1. Manual pushing or pressing has a lot of pressure and is inconvenient to use. For female users, it is extremely inconvenient to operate, which may cause the atomizer to fail to activate due to the pressure of pushing or pressing.
[0004] 2. Users push or press with different strengths, and there are many uncertain factors in the activation process. For example, some users press violently, causing the plastic parts of the atomizer to deform and cause the seal to fail, and many other uncertain hidden dangers. Summary of the invention
[0005] In order to solve the problem of inconsistent force in opening the channel between the oil inlet and the oil storage space, the present application provides an atomization device, which can utilize an elastic part to help the user activate the atomization device, and can easily complete the activation process to enhance the user experience; ensure that for each atomization device, the force of the user's activation process is within an appropriate range (relying on the elastic force of the elastic part to complete the activation), and avoid extreme users using extreme means to activate, causing damage to the atomization device.
[0006] The present application provides an atomization device, which includes a shell, an atomization module, an elastic part and a limiting member, wherein an oil storage space is arranged in the shell; the atomization module is provided with an oil inlet; the atomization module can be movably arranged in the shell to change the connection state between the oil inlet and the oil storage space; the limiting member is used to lock the atomization module when the oil inlet is separated from the oil storage space; the elastic part is used to move the atomization module to a position where the oil inlet is connected to the oil storage space after the limiting member is unlocked.
[0007] In some embodiments, the atomization device also includes a sealing piece, and the shell is also provided with an atomization channel; the sealing piece is installed and seals one side of the oil storage space, and the atomization channel is arranged on the other side of the oil storage space; one end of the atomization module is slidably installed in the atomization channel and tightly fitted, and the other end is slidably installed in the sealing piece and tightly fitted; the oil storage space is arranged around the atomization module; after the limit piece is unlocked, the elastic part drives the atomization module to move to a position where its oil inlet hole directly contacts the oil storage space, and then the oil inlet is connected to the oil storage space.
[0008] In some embodiments, the limiting member is configured to detachably connect the atomization module and the housing. When the limiting member is pulled out of the atomization module, the fixed connection between the atomization module and the housing is released. When the limiting member is inserted into the atomization module, the atomization module is fixedly connected to the housing.
[0009] In some embodiments, the limiting member includes an operating portion and a fixing portion, the operating portion is disposed outside the housing, the fixing portion is disposed inside the housing, and the fixing portion is configured to detachably connect the atomization module and the housing.
[0010] In some embodiments, the atomization module is provided with a first limiting hole, and the housing is provided with a second limiting hole. When the atomization module is locked, the limiting member is configured so that the fixing part is inserted into the first limiting hole and the second limiting hole, the second limiting hole is configured to coincide with the projection surface of the first limiting hole, and the oil inlet is separated from the oil storage space; when the limitation on the atomization module is released, the limiting member is configured so that the fixing part is disengaged from the first limiting hole, the second limiting hole is configured not to coincide with the projection surface of the first limiting hole, and the oil inlet is connected to the oil storage space.
[0011] In some embodiments, the elastic portion is arranged between the atomization module and the housing. When the limiting member locks the atomization module, the elastic portion is restricted by the atomization module and the housing and is in a compressed state. When the limiting member unlocks the atomization module, the elastic portion pushes the atomization module to move to a position where the oil inlet is connected to the oil storage space.
[0012] In some embodiments, the atomization module includes: an atomization tube, the oil inlet is arranged on the tube wall of the atomization tube; and an atomization seat, the atomization seat is located between the atomization tube and the bottom of the shell, supporting the atomization tube to change the connection state between the oil inlet and the oil storage space.
[0013] In some embodiments, the housing includes a supporting portion, and the atomizer seat is stably sleeved in the supporting portion; a circumferentially protruding abutting portion is provided on the atomizer seat; the upper end of the elastic portion abuts against the abutting portion, and the lower end abuts against the supporting portion.
[0014] When the oil inlet is separated from the oil storage space, the elastic part is compressed between the support part and the atomizer seat, and the limiting member locks the position of the atomizer seat; when the locking of the atomizer seat by the limiting member is released, the elastic part drives the atomizer seat to move, thereby pushing the atomizer pipe to move to the position where the oil inlet is connected to the oil storage space.
[0015] In some embodiments, the elastic portion is a spring, which is sleeved on the outer circumference of the atomizer seat.
[0016] In some embodiments, the blocking member is a silicone seat, and when the atomization module is locked, the silicone seat seals the oil inlet to isolate the oil inlet from the oil storage space.
[0017] In some embodiments, the limiting member is a latch.
[0018] In some embodiments, the atomization device is further provided with a suction port connected to the atomization module; a first air inlet hole is provided near the bottom of the shell, and the atomization module is provided with a second air inlet hole, and the first air inlet hole, the second air inlet hole and the suction port are connected to form a gas channel.
[0019] The atomizer device provided in the embodiment of the present application utilizes an elastic part to assist the user in activating the atomizer device, and the activation process can be easily completed, thereby enhancing the user experience. The activation is completed by relying on the elastic force of the elastic part, ensuring that for each atomizer device, the force of the user's activation process is within an appropriate range, thereby preventing extreme users from using extreme means to activate the atomizer device, thereby damaging the atomizer device. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] In order to more clearly illustrate the technical solutions in the embodiments of the present invention, the following briefly introduces the drawings required for use in the description of the embodiments. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without creative work.
[0021] Figure 1 It is a schematic diagram of the exploded structure of an embodiment of the atomization device provided by the present application;
[0022] Figure 2 is a front view of an embodiment of the atomization device provided by the present application before activation;
[0023] Figure 3 It is a structural schematic diagram of the atomizer seat provided by the present application;
[0024] Figure 4 It is a schematic diagram of the connection structure of the atomizer tube and the oil storage space before activation of an embodiment of the atomizer tube provided by the present application;
[0025] Figure 5 is a side view of an embodiment of the atomization device provided by the present application before activation;
[0026] Figure 6 is a front view of an embodiment of the atomization device provided by the present application after activation;
[0027] Figure 7 It is a schematic diagram of the connection structure between the atomizer tube and the oil storage space after the atomizer tube embodiment provided by the present application is activated;
[0028] Figure 8 It is a side view of an embodiment of the atomization device provided by the present application after activation. DETAILED DESCRIPTION
[0029] In order to make the present invention better understood by the persons skilled in the art, the present invention will be further described in detail below in conjunction with the accompanying drawings and examples. It is particularly noted that the following examples are only used to illustrate the present invention, but are not intended to limit the scope of the present invention. Similarly, the following examples are only partial embodiments of the present invention rather than all embodiments, and all other embodiments obtained by those of ordinary skill in the art without creative work are within the scope of protection of the present invention.
[0030] The terms "first", "second", "third", etc. in the present invention are used to distinguish similar objects, and are not necessarily used to describe a specific order or sequence. It should be understood that the data used in this way can be interchanged where appropriate, so that the embodiments described herein can be implemented in an order other than that illustrated or described herein. All directional indications (such as up, down, inside, outside, front, back, etc.) in the embodiments of the present invention are only used to explain the relative position relationship, movement, etc. between the components under a certain specific posture (as shown in the accompanying drawings). If the specific posture changes, the directional indication will also change accordingly.
[0031] The term "and / or" used in the present invention is merely a description of the association relationship between associated objects, indicating that three relationships may exist. For example, A and / or B can represent three situations: A exists alone, A and B exist at the same time, and B exists alone.
[0032] The term "comprise" or any other variation in the present invention is intended to cover non-exclusive inclusion, so that a process, method, article or apparatus comprising a series of elements, without further restrictions, the elements defined by the sentence "comprise..." does not exclude the presence of other elements in the process, method, article or apparatus comprising the elements.
[0033] The "atomization device" mentioned in this article includes, but is not limited to, a device configured as an atomization module that heats the atomization medium by electrically connecting a battery. It can also be a disposable cartridge atomization device or an oil-fillable atomization device, which is not limited here.
[0034] In the field of atomizer devices, the existing oil core separation structures are all structures that push the support part upward, or structures that press the nozzle downward. The principle is to manually push the atomizer module upward or downward to open the channel between the oil inlet and the oil storage space to activate the atomizer device and achieve a normal suction state. The traditional structure has the following problems: manual pushing or pressing pressure is high, and it is extremely inconvenient to use for female users, which can easily cause the push or press to be in place, resulting in failure to activate the atomizer device; the user's pushing or pressing force is different, and there are many uncertain factors in the activation process. For example, some users press violently, causing the plastic parts of the atomizer device to deform and cause sealing failure, and many other uncertain hidden dangers. To this end, the present application provides an atomizer device to realize the process of using an elastic part to assist the user in activating the atomizer device, which can easily complete the activation process and enhance the user experience; rely on the elastic force of the elastic part to complete the activation, ensure that each atomizer device, the user's activation process strength is within an appropriate range, and avoid extreme users using extreme means to activate, causing damage to the atomizer device.
[0035] This application provides an atomization device. Figure 1-Figure 2 , Figure 1 It is a schematic diagram of the exploded structure of an embodiment of the atomization device provided by the present application; Figure 2It is a front view of an embodiment of the atomization device provided in the present application before activation; in some embodiments, the atomization device includes a housing 100, an atomization module 200, an elastic portion 300, and a stopper 400. Among them, the atomization module 200 and the elastic part 300 are both arranged in the shell 100, the limit member 400 can be withdrawn relative to the shell 100, and an oil storage space 110 is arranged in the shell 100, and the oil storage space 110 stores an atomizing medium 111; the atomization module 200 is provided with an oil inlet 211, and the oil inlet 211 is configured to be connected with the oil storage space 110 to achieve the contact between the atomization module 200 and the atomizing medium 111 in the oil storage space 110; the atomization module 200 can be movably arranged in the shell 100, and the atomization module 200 moves relative to the shell 100 to drive the oil inlet 211 on the atomization module 200 to be connected with or isolated from the oil storage space 110, that is, the atomization module 200 can be movably arranged in the shell 100 to change the connection state of the oil inlet 211 and the oil storage space 110.
[0036] See also Figure 2 In some embodiments, the atomizing device further comprises a plugging member 500, the housing 100 is further provided with an atomizing channel 102, the plugging member 500 is installed and seals one side of the oil storage space 110, and the atomizing channel 102 is provided on the other side of the oil storage space 110; one end of the atomizing module 200 is slidably installed in the atomizing channel 102 and is tightly fitted, and the other end is slidably installed in the plugging member 500 and is tightly fitted; the oil storage space 110 is provided around the atomizing module 200; please refer to Figure 4 Before the user uses the atomizer device, the limit member 400 locks the atomizer module 200, and the atomizer device is in an inactive state. The atomizer module 200 is provided with an oil inlet 211, and the oil inlet hole 211 is directly opposite to and contacts the blocking member 500, and the oil inlet hole 211 is sealed by the blocking member 500. At this time, the oil inlet 211 is separated and isolated from the oil storage space 110, and is not connected to the oil storage space 110. The atomizer module 200 and the atomizing medium 111 in the oil storage space 110 are in an oil core separation state.
[0037] See also Figure 6-Figure 7 When the user uses the atomizer device, he pulls the limit member 400 to activate the atomizer device, so that the limit member 400 is separated from the atomizer module 200. After the position restriction of the atomizer module 200 is released, the elastic part 300 drives the atomizer module 200 to move to the position where its oil inlet hole 211 is opposite to and contacts the oil storage space 110. At this time, the oil inlet hole 211 is opposite to the bottom end of the oil storage space 110, and then the oil inlet port 211 is connected with the oil storage space 110. At this time, the atomizer device is in an activated state.
[0038] See also Figure 5In some embodiments, the stopper 400 is configured to detachably connect the atomization module 200 and the housing 100. When the stopper 400 is inserted into the atomization module 200, the stopper 400 connects the atomization module 200 and the housing 100 to achieve position limitation of the atomization module 200, and the oil inlet 211 and the oil storage space 110 are in a separated state; please refer to Figure 8 When the limiting member 400 is pulled out of the atomization module 200, the fixed connection between the atomization module 200 and the housing 100 is released, the position limitation of the atomization module 200 is released, and the elastic part 300 drives the atomization module 200 to move toward the oil storage space 110, so that the atomization device is in an activated state, and the oil inlet 211 is in a connected state with the oil storage space 110, so that the atomization medium 111 can enter the atomization module 200 from the oil storage space 110 through the oil inlet 211.
[0039] Please continue reading Figure 1 and Figure 5 In some embodiments, the limiting member 400 includes an operating portion 402 and a fixing portion 401, the operating portion 402 is disposed outside the housing 100, and the fixing portion 401 is disposed inside the housing 100, and the fixing portion 401 is configured to detachably connect the atomization module 200 and the housing 100. When the user activates the atomization device, the user can release the fixed connection between the atomization module 200 and the housing 100 by pulling the operating portion 402.
[0040] Please continue reading Figure 2-Figure 3 In some embodiments, the atomization module 200 includes a first limiting hole 223, and the housing 100 includes a second limiting hole 130. When the atomization device is in an inactive state, the fixing portion 401 of the limiting member 400 is inserted into the first limiting hole 223 and the second limiting hole 130. The second limiting hole 130 is configured to coincide with the projection surface of the first limiting hole 223. The second limiting hole 130 is fixedly connected with the first limiting hole 223 through the fixing portion 401. The oil inlet 211 is directly opposite to the blocking member 500, and the oil inlet 211 is sealed by the blocking member 500. The oil inlet 211 is sealed and separated from the oil storage space 110; when the limitation on the atomization module 200 is released, the limiting member 400 is configured so that the fixing portion 401 is disengaged from the first limiting hole 223, or the fixing portion 401 is disengaged from the first limiting hole 223 and the second limiting hole 130, and the second limiting hole 130 is configured to be disconnected from the first limiting hole 223, and the elastic portion 300 drives the atomization module 200 to move until the oil inlet 211 is connected to the oil storage space 110, and at this time, the second limiting hole 130 is configured so as not to overlap with the projection surface of the first limiting hole 223.
[0041] In some embodiments, the stopper 400 is a latch, the latch is cylindrical, and the direction of insertion and removal of the latch is perpendicular to the axial direction of the atomization module 200. The first stopper hole 223 and the second stopper hole 130 can be configured as a latch hole adapted to the latch. In other embodiments, the first stopper hole 223, the second stopper hole 130 and the stopper 400 can also be set to other structures, such as pin connection, screw connection, etc., which are not limited here, as long as they can be snap-fitted with the stopper 400 and detachably connected.
[0042] Please continue reading Figure 2 and Figure 6 In some embodiments, the elastic part 300 is disposed between the atomization module 200 and the housing 100. When the atomization device is in an unactivated state, the limiter 400 locks the atomization module 200, and the elastic part 300 is limited by the atomization module 200 and the housing 100 to be in a compressed state. In order to push the atomization module 400 to accumulate force, at this time, the oil inlet 211 and the oil storage space 110 are in an isolated state; when the atomization device needs to be activated, the limiter 400 is released from locking the atomization module 200, and the limiter 400 is locked. The fixing part 401 of the positioning member 400 is separated from the first limiting hole 223, or the fixing part 401 is separated from the first limiting hole 223 and the second limiting hole 130, so that the elastic part 300 generates elastic force due to compression and storage force to push the atomization module 200 to move to the position where the oil inlet 211 is connected to the oil storage space 110, and then the atomization medium 111 in the oil storage space 110 enters the atomization module 200 for atomization. At this time, the atomization device is in an activated state, and the elastic part 300 is in a relatively extended state. The elastic part 300 can be a spring or other elastic structure, as long as it can push the atomization module 200 to move to a position connected to the oil storage space 110, and there is no limitation here.
[0043] Please continue reading Figure 2 In some embodiments, the atomization module 200 includes an atomization tube 210 and an atomization seat 220, one end of the atomization tube 210 is slidably installed in the atomization channel 102 and tightly fitted, and the other end is slidably installed in the blocking member 500 and tightly fitted, the oil storage space 110 is arranged around the atomization tube 210, and the oil inlet 211 is arranged on the tube wall of the atomization tube 210, and the oil inlet 211 can enter the atomization channel 102 or be withdrawn from the atomization channel 102 as the atomization tube 210 moves; the atomization seat 220 is arranged between the atomization tube 210 and the bottom of the housing 100, supporting the atomization tube 210 to change the connection state between the oil inlet 211 and the oil storage space 110.
[0044] Please continue reading Figure 2When the atomizer is in an inactive state, the oil inlet 211 is separated from the oil storage space 110, and the elastic part 300 is compressed between the housing 100 and the atomizer seat 220. The compressed elastic part 300 accumulates force to push the atomizer seat 220, and the limiter 400 locks the position of the atomizer seat 220; please refer to Figure 8 When the locking of the atomizer seat 220 by the limiting member 400 is released, the elastic force generated by the compression and accumulation of the elastic part 300 pushes the atomizer seat 220 to move, and the atomizer seat 220 supports the atomizer tube 210 and then pushes the atomizer tube 210 to move to the position where the oil inlet 211 is connected to the oil storage space 110, so that the atomized medium 111 in the oil storage space 110 enters the atomizer tube 210 for atomization.
[0045] like Figure 3 As shown, the atomizer seat 220 is provided with a circumferentially protruding abutting portion 221, which is arranged as an arc groove in a direction away from the atomizer tube. The inner diameter of the abutting portion 221 is greater than or equal to the outer diameter of the elastic portion 300, and one end of the elastic portion 300 is limited to the abutting portion 221.
[0046] Please continue reading Figure 2 In some embodiments, the atomizer device further comprises a support portion 600, which is disposed on a side of the housing 100 away from the oil storage space 110, the atomizer seat 220 is stably sleeved in the support portion 600, the elastic portion 300 is limited between the support portion 600 and the abutment portion 221, the upper end of the elastic portion 300 abuts against the abutment portion 221, and the lower end abuts against the support portion 600. When the elastic portion 300 undergoes deformation movement, the support portion 600 and the abutment portion 221 limit the deformation process of the elastic portion 300, so that the direction of the elastic force generated by the deformation of the elastic portion 300 is consistent with the moving direction of the atomizer module 200, ensuring that the elastic force generated by the deformation of the elastic portion 300 is sufficient to push the atomizer module 200 to move to a position where the oil inlet 211 is connected to the oil storage space 110.
[0047] Please continue reading Figure 2 In some embodiments, a limiting through hole 610 is provided at one end of the support portion 600 away from the oil storage space 110. The atomizer seat 220 can pass through the limiting through hole 610 and be mounted in the support portion 600, and be fixed to the housing 100 through a limiting member 400. During the activation process, the atomizer seat 220 moves through the support portion 600, so that the atomizer module 200 can move stably in the set direction.
[0048] like Figure 2 As shown, in some embodiments, the blocking member 500 is a silicone seat, which is fixed to the bottom of the oil storage space 110, the atomization module 200 is inserted into the silicone seat, and the atomization tube 210 is further inserted into the silicone seat. Figure 4As shown, when the stopper 400 is locked, the position of the atomizer seat 220 and the housing 100 is limited, and the oil inlet 211 is shielded and sealed by the silicone seat. The silicone seat seals the oil inlet 211 to isolate the oil inlet 211 from the oil storage space 110, thereby achieving oil core separation, thereby avoiding leakage of the atomizer medium 111 before the atomizer device is activated, and further improving the oil core separation effect; Figure 6-Figure 8 As shown, when activation is required (when oil core separation is not required), the limit member 400 is separated from the atomizer seat 220, and the restriction of the atomizer seat 220 on the elastic part 300 is released. The driving force generated by the compression storage of the elastic part 300 pushes the atomizer module 200 to move toward the oil storage space 110, and pushes the atomizer tube 210 to penetrate into the oil storage space 110 until the oil inlet 211 is separated from the silicone seat and is directly opposite and in contact with the oil storage space 110, and then the oil inlet 211 is connected to the oil storage space 110, thereby realizing the activation of the atomizer device. Optionally, the sealing member 500 can be made of sealing materials such as silicone, as long as it can prevent the atomized medium 111 from overflowing from the bottom of the oil storage space 110 and can seal the oil inlet 211, and no limitation is made here.
[0049] Please continue reading Figure 2 In some embodiments, the housing 100 is provided with a first air inlet hole 120 near the bottom, the atomizer seat 220 is provided with a second air inlet hole 222, and the atomizer device is further provided with a suction port 101 connected to the atomizer module 200, so that the first air inlet hole 120, the second air inlet hole 222, and the suction port 101 are connected to form a gas channel, so that the gas enters the atomizer module 200 from the outside of the atomizer device through the first air inlet hole 120 and the second air inlet hole 222 in sequence, so that the atomization medium 111 is fully atomized, and the user finally performs the suction operation through the suction port 101.
[0050] like Figure 2 As shown, in some embodiments, the elastic part 300 is sleeved on the outer periphery of the atomizer seat 220 to limit the deformation process of the elastic part 300. During the deformation process of the elastic part 300, the atomizer seat 220 guides the deformation of the elastic part 300, so that the elastic part 300 can be stably deformed in a set direction, and the driving force generated by the resetting of the elastic part 300 can push the atomizer seat 220 to move toward the oil storage space 110 in the set direction; at the same time, the elastic part 300 is sleeved on the outer periphery of the atomizer seat 220 to improve the space utilization rate inside the atomizer device and save the internal space of the atomizer device.
[0051] See also Figure 1-2 In some embodiments, the atomization module 200 also includes oil storage cotton 212, oil guide cotton 213, and heating net 214. Figure 4 , Figure 7As shown, the oil storage cotton 212 is arranged on the inner wall of the atomization module 200. Optionally, the oil storage cotton 212 is arranged on the inner wall of the atomization tube 210, and the oil storage cotton 212 is connected to the oil inlet 211. When the limiter 400 releases the restriction on the atomization seat 220, the elastic part 300 pushes the atomization module 200 to move, so that the oil inlet 211 of the atomization tube 210 is opposite to the bottom end of the oil storage space 110 and contacts with the oil storage space 110, and the oil inlet 211 connects the oil storage cotton 212 and the oil storage space 110; the oil guiding cotton 213 is arranged on the inner side of the oil storage cotton 212 and is connected to the oil storage cotton 212; the heating net 214 is arranged on the inner side of the oil guiding cotton 213, so that the atomization medium 111 in the oil guiding cotton 213 is heated and atomized, and the user finally inhales through the suction port 101.
[0052] Please continue to see Figure 2 In some embodiments, a third air inlet hole 620 is provided near the bottom of the support portion 600, so that the first air inlet hole 120, the third air inlet hole 620 and the second air inlet hole 222 are connected to form a gas channel, so that the gas enters the atomizer seat 220 from the outside of the atomization device through the first air inlet hole 120, the third air inlet hole 620 and the second air inlet hole 222 in sequence, and the atomizer seat 220 is connected to the atomizer tube 210, so that the gas enters the atomizer tube 210, so that the atomization medium 111 is fully atomized.
[0053] Please continue to see Figure 1-2 In some embodiments, in order to ensure the sealing performance of the atomizing device, the atomizing device further includes a sealing ring 700, which is disposed between the atomizing seat 220 and the supporting portion 600 to seal the gap between the atomizing seat 220 and the outer wall of the supporting portion 600, thereby preventing the gas in the supporting portion 600 from leaking out from between the atomizing seat 220 and the supporting portion 600. Figure 8 As shown, when the limiting member 400 is separated from the atomizer seat 220, the elastic part 300 supports the atomizer module 200 to move, the first limiting hole 223 and the second limiting hole 130 are released from the fixed connection, and the first limiting hole 223 is sealed in the sealing ring 700, thereby ensuring that the atomizer seat 220 and the outer wall of the support part 600 are always in a sealed state.
[0054] like Figure 2 As shown, in some embodiments, the atomization device further includes a battery 800 and an airflow sensing component 900. The battery 800 is disposed in the housing 100 and is electrically connected to the heating network 214. The airflow sensing component 900 is disposed in the housing 100 and is electrically connected to the battery 800.
[0055] The above are only implementation methods of the present application, and are not intended to limit the patent scope of the present application. Any equivalent structure or equivalent process transformation made using the contents of the present application specification and drawings, or directly or indirectly applied in other related technical fields, are also included in the patent protection scope of the present application.
Claims
1. An atomizing device, characterized in that: It includes a shell, an atomization module, an elastic part and a limiter, and an oil storage space is provided in the shell; the atomization module is provided with an oil inlet; The atomization module can be movably disposed in the housing to change the communication state between the oil inlet and the oil storage space; The limiting member is used to lock the atomization module when the oil inlet is separated from the oil storage space; The elastic portion is used to enable the atomization module to move to a position where the oil inlet is connected to the oil storage space after the limit member is unlocked.
2. The atomizing device according to claim 1, characterized in that ; The atomizing device further comprises a plugging member, and the housing is further provided with an atomizing channel; the plugging member is installed and seals one side of the oil storage space, and the atomizing channel is provided on the other side of the oil storage space; one end of the atomizing module is slidably installed in the atomizing channel and tightly fitted, and the other end is slidably installed in the plugging member and tightly fitted; the oil storage space is provided around the atomizing module; After the position limiting member is unlocked, the elastic part drives the atomization module to move to a position where the oil inlet hole thereof directly contacts the oil storage space, and thus the oil inlet is communicated with the oil storage space.
3. The atomizing device according to claim 1, characterized in that; The limiting member is configured to detachably connect the atomization module and the housing. When the limiting member is inserted into the atomization module, the atomization module is fixedly connected to the housing. When the limiting member is withdrawn from the atomization module, the fixed connection between the atomization module and the housing is released.
4. The atomizing device according to claim 1, characterized in that ; The limiting member includes an operating portion and a fixing portion, wherein the operating portion is arranged outside the shell, and the fixing portion is arranged inside the shell, and the fixing portion is configured to detachably connect the atomization module and the shell.
5. The atomizing device according to claim 4, characterized in that ; The atomization module is provided with a first limiting hole, and the housing is provided with a second limiting hole. When the atomization module is locked, the limiting member is configured so that the fixing portion is inserted into the first limiting hole and the second limiting hole, the second limiting hole is configured to coincide with the projection surface of the first limiting hole, and the oil inlet is separated from the oil storage space; when the limitation on the atomization module is released, the limiting member is configured so that the fixing portion is separated from the first limiting hole, the second limiting hole is configured not to coincide with the projection surface of the first limiting hole, and the oil inlet is connected to the oil storage space.
6. The atomizing device according to claims 1-5, It is characterized by: The elastic part is arranged between the atomization module and the shell. When the limiting member locks the atomization module, the elastic part is restricted by the atomization module and the shell to be in a compressed state. When the limiting member unlocks the atomization module, the elastic part pushes the atomization module to move to a position where the oil inlet is connected to the oil storage space.
7. The atomizing device according to claim 6, characterized in that: The atomization module comprises: Atomizing pipe, the oil inlet is arranged on the pipe wall of the atomizing pipe; The atomizer seat is located between the atomizer tube and the bottom of the shell, and supports the atomizer tube to change the communication state between the oil inlet and the oil storage space.
8. The atomizing device according to claim 7, characterized in that ; The housing comprises a supporting portion, in which the atomizer seat is stably sleeved; a contact portion protruding in the circumferential direction is arranged on the atomizer seat; the upper end of the elastic portion contacts the contact portion, and the lower end contacts the supporting portion.
9. The atomizing device according to claim 2, characterized in that: The blocking member is a silicone seat. When the atomization module is locked, the silicone seat seals the oil inlet to isolate the oil inlet from the oil storage space.
10. The atomizing device according to claim 6, characterized in that: The limiting member is a latch.
11. The atomizing device according to claim 1, characterized in that ; The atomization device is also provided with a suction port connected to the atomization module; the shell is provided with a first air inlet hole near the bottom, the atomization module is provided with a second air inlet hole, and the first air inlet hole, the second air inlet hole and the suction port are connected to form a gas channel.
Citation Information
Cited By
Atomization device
EP4795946A1