Atomization equipment and atomizer
By designing disposal positions and temporary positions at different depths in the atomization equipment, the problem that existing equipment cannot install activated and inactivated atomizer at the same time is solved, and efficient replacement of the atomizer and enhance the aesthetics of the equipment are achieved.
Patent Information
- Application Number
- CN202311688673.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2023-12-08
- Publication Date
- 2025-06-10
AI Technical Summary
Existing atomizers cannot be installed at the same time as activated and inactive atomizers, resulting in inconvenient use and low aesthetics of the equipment.
Atomization equipment is designed, with disposal positions and temporary positions of different depths, and atomizers of different lengths can be installed, so that when the atomizable and non-atomable atomizers are installed simultaneously, the exposed part is flush to realize the installation and replacement of the second body.
The atomizer in atomizable and non-atomizable state is realized at the same time. The second body can be installed smoothly, and the efficiency of users replacing the atomizer is improved, and the equipment appearance is beautiful.
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Figure CN120113841A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of electronic atomization, and particularly relates to an atomization device and an atomizer. Background Art
[0002] At present, general atomization devices are for single use. The atomization device includes a fixed atomizer. After the atomization medium in the atomizer is used up, the atomization device is discarded, which is a waste. In order to save costs and improve the utilization rate of the atomization device, a structure with a replaceable atomizer has been designed in existing products. However, the current atomization device cannot install both an activated atomizer and an unactivated atomizer at the same time. Summary of the Invention
[0003] The present invention provides an atomization device and an atomizer to solve the problem that an activated atomizer and an unactivated atomizer cannot be installed at the same time.
[0004] In one embodiment, there is provided an atomization device, including:
[0005] There is at least a space for placing two atomizers, one of the atomizers is arranged at a disposal position, and the other atomizer is arranged at a temporary storage position;
[0006] The effective accommodation volume of the disposal position is smaller than the effective volume of the temporary storage position.
[0007] In one embodiment, the length of the effective accommodation volume of the disposal position is smaller than the length of the effective accommodation volume of the temporary storage position;
[0008] Or, the width of the effective accommodation volume of the disposal position is smaller than the width of the effective accommodation volume of the temporary storage position;
[0009] Or, the depth of the effective accommodation volume of the disposal position is smaller than the depth of the effective accommodation volume of the temporary storage position.
[0010] In one embodiment, the disposal position is used to place an atomizer in an atomizable state, and the temporary storage position is used to place an atomizer in a non-atomizable state or an atomizable state. The atomizer in the atomizable state has a first end face exposed from the disposal position, and the atomizer in the non-atomizable state has a second end face exposed from the temporary storage position. The first end face and the second end face are in the same plane.
[0011] In one embodiment, a support connecting member is provided at the bottom in the disposal position. The support connecting member has an installation groove, and the installation groove communicates with an air inlet channel. The air inlet end of the atomizer in the atomizable state is inserted into the installation groove;
[0012] And / or, the support height of the support connecting member is equal to the height difference between the atomizer in the atomizable state and the atomizer in the non-atomizable state.
[0013] In one embodiment, it includes a first body and a second body. A disposal position and a temporary storage position are provided inside the first body, and the second body is detachably connected to the first body.
[0014] The disposal position is provided with a first clamping portion, and the temporary storage position is provided with a second clamping portion. The first clamping portion is used to limit the atomizer in an atomizable state to the disposal position, and the second clamping portion is used to limit the atomizer in a non-atomizable state or an atomizable state to the temporary storage position.
[0015] When the second body is opened, the atomizer is limited in the placement groove.
[0016] In one embodiment, the first clamping portion and / or the second clamping portion is a radially protruding structure.
[0017] Or, the first clamping portion and / or the second clamping portion is a plurality of protruding structures distributed on the corresponding annular ring.
[0018] In one embodiment, a bearing portion is further provided on the bottom wall of the temporary storage position. The bearing portion has a bearing surface facing the insertion direction of the atomizer, and the bearing surface is used to support the end face of the atomization body of the atomizer.
[0019] In one embodiment, a placement rack is provided in the placement groove. The placement rack has at least one first slot and at least one second slot. The first slot forms the disposal position, and the bottom wall of the first slot has an air path connection port and a circuit connection port. The second slot forms the temporary storage position.
[0020] And / or, the placement rack has an installation groove, and the inner side wall of the installation groove has a plurality of protruding partition portions. The partition portions divide the installation groove into the first slot and the second slot.
[0021] In one embodiment, it further includes at least one atomizer. The atomizer includes an atomizable state and a non-atomizable state. The length of the atomizer in the atomizable state is less than the length of the atomizer in the non-atomizable state.
[0022] The atomizer includes an atomization body, an atomization inner core, an atomization medium, and an atomization separation mechanism. The atomization inner core is arranged inside the atomization body. The atomization body has a medium cavity, and the atomization medium is located in the medium cavity.
[0023] The atomization separation mechanism is movably connected to the atomization body. One end of the atomization separation mechanism is located inside the atomization body and is used to separate the medium cavity and the atomization core assembly. The other end of the atomization separation mechanism exposes from one end of the atomization body.
[0024] In one embodiment, the atomizer body is provided with a first bayonet and a second bayonet. The first bayonet is closer to the end of the atomizer body where the atomization separation mechanism is exposed than the second bayonet, and the atomization separation mechanism has a buckle.
[0025] When the atomizer is in a non-atomizable state, the buckle is connected to the first bayonet.
[0026] When the atomizer is in an atomizable state, the buckle moves to be connected to the second bayonet; the first bayonet or the second bayonet is used to connect to the first latching portion or the second latching portion.
[0027] An atomizer, characterized in that the atomizer includes an atomizable state and a non-atomizable state. The length of the atomizer in the atomizable state is less than the length of the atomizer in the non-atomizable state; the atomizer in the atomizable state can be installed in the disposal position or the temporary storage position of the atomization device, and the atomizer in the non-atomizable state can be installed in the temporary storage position of the atomization device. The effective accommodation volume of the disposal position is less than the effective volume of the temporary storage position.
[0028] The atomizer includes an atomizer body, an atomization inner core, an atomization medium, and an atomization separation mechanism. The atomization inner core is arranged in the atomizer body. The atomizer body has a medium cavity, and the atomization medium is located in the medium cavity.
[0029] The atomization separation mechanism is movably connected to the atomizer body. One end of the atomization separation mechanism is located in the atomizer body and is used to separate the medium cavity and the atomization core assembly. The other end of the atomization separation mechanism is exposed at one end of the atomizer body.
[0030] In one embodiment, the atomizer body is provided with a first bayonet and a second bayonet. The first bayonet is closer to the end of the atomizer body where the atomization separation mechanism is exposed than the second bayonet, and the atomization separation mechanism has a buckle.
[0031] When the atomizer is in a non-atomizable state, the buckle is connected to the first bayonet.
[0032] When the atomizer is in an atomizable state, the buckle moves to be connected to the second bayonet; the first bayonet or the second bayonet is used to connect to the first latching portion or the second latching portion.
[0033] For the atomization device and the atomizer according to the above embodiments, since the effective accommodation volume of the disposal position is less than the effective volume of the temporary storage position, for example, the atomization device is provided with disposal positions and temporary storage positions with different depths to install atomizers of different lengths, so that when the atomizers in the atomizable state and the non-atomizable state are installed in the atomization device at the same time, the exposed parts of the two are flush, which can realize the installation of the second body, facilitate the user to replace the atomizer, and is more beautiful. Brief Description of the Drawings
[0034] Figure 1 It is a schematic structural view of an atomizing device in an embodiment;
[0035] Figure 2 It is a cross-sectional view of an atomizing device in an embodiment;
[0036] Figure 3 It is a schematic structural view of a first body in an embodiment;
[0037] Figure 4 It is a top view of a first body in an embodiment;
[0038] Figure 5 It is a schematic structural view of an atomizer in an embodiment;
[0039] Figure 6 It is a cross-sectional view of an atomizer in an embodiment;
[0040] The reference numerals are as follows:
[0041] 1 - First body, 11 - Placement groove, 111 - Disposal position, 112 - Temporary placement position, 12 - Placement rack, 121 - First slot, 1211 - Gas path connection port, 1212 - Circuit connection port, 1213 - First clamping portion, 122 - Second slot, 1221 - Second clamping portion, 1222 - Bearing portion, 123 - Partition portion, 13 - Placement cavity, 14 - Support connecting member, 141 - Installation groove, 142 - Support step, 15 - Electrical connection terminal;
[0042] 2 - Second body;
[0043] 3 - Mouthpiece;
[0044] 4 - Atomizer, 41 - Atomizing body, 411 - First bayonet, 412 - Second bayonet, 42 - Atomizing inner core, 43 - Atomizing medium, 44 - Atomizing separation mechanism, 441 - Buckle. Detailed Description of the Invention
[0045] The present invention will be further described in detail below in conjunction with the accompanying drawings through specific embodiments. Similar elements in different embodiments are denoted by related similar element numbers. In the following embodiments, many detailed descriptions are provided to enable a better understanding of the present application. However, those skilled in the art can easily recognize that some of the features can be omitted in different situations, or can be replaced by other elements, materials, or methods. In some cases, some operations related to the present application are not shown or described in the specification, in order to avoid overwhelming the core part of the present application with excessive descriptions. For those skilled in the art, it is not necessary to describe these related operations in detail, and they can fully understand the related operations based on the descriptions in the specification and the general technical knowledge in the art.
[0046] In addition, the features, operations, or characteristics described in the specification can be combined in any appropriate manner to form various embodiments. At the same time, the steps or actions in the method description can also be reordered or adjusted in an obvious manner by those skilled in the art. Therefore, the various sequences in the specification and the drawings are only for clearly describing a certain embodiment, and do not mean that they are the necessary sequences, unless it is stated that a certain sequence must be followed.
[0047] The serial numbers assigned to the components in this article, such as "first", "second", etc., are only used to distinguish the described objects and do not have any sequential or technical meanings. The "connection" and "coupling" mentioned in the present application, unless otherwise specified, both include direct and indirect connections (couplings).
[0048] The current atomizer is provided with an oil core separation structure, and the activated and unactivated atomizers have different lengths. The existing atomization device has disposal positions and temporary storage positions with the same depth. When atomizers in the atomizable state and non-atomizable state are installed in the atomization device at the same time, the two atomizers in different states present different lengths, which will cause the second body (upper cover) not to be closable and not aesthetically pleasing.
[0049] In response to the above problems, the present application proposes a new atomization device. The atomization device is provided with disposal positions and temporary storage positions with different depths to install atomizers of different lengths. When atomizers in the atomizable state and non-atomizable state are installed in the atomization device at the same time, the exposed parts of the two are flush, which can realize the installation of the second body, facilitate the user to replace the atomizer, and be more aesthetically pleasing.
[0050] In one embodiment, an atomizing device is provided. The atomizing device can be equipped with multiple atomizers at the same time, one of which is used for atomization, and the other atomizers are used as spares. At the same time, the atomizing device can also store used atomizers. A clamping structure is provided in the atomizing device, so that when the atomizer is replaced and when the second body is opened, the atomizer is fixed by the clamping structure and is not easy to fall out. Even if the atomizing device is inverted, it is difficult to fall out, so that when the user inserts and removes one of the atomizers, it will not affect other atomizers, which is conducive to improving the efficiency of replacing the atomizer and improving the user experience.
[0051] Please refer to Figures 1 to 4 The atomizing device of this embodiment mainly includes a first body 1, a second body 2 and a nozzle 3. One end of the first body 1 has a placement groove 11, and the placement groove 11 has an opening. The placement groove 11 has at least one disposal position 111 and at least one temporary placement position 112. The disposal position 111 is used to clamp and place the atomizer 4 in the atomizing state and provide electric drive for the atomizer 4. The disposal position 111 is provided with an electrical connection terminal, which can be electrically connected to the electrical connection part of the atomizer 4. The temporary placement position 112 is used to clamp and place the atomizer 4 in the non-atomizing state or the atomizing state, that is, the temporary placement position 1112 is used to clamp and place the spare or used atomizer 4, and no electrical connection terminal is provided in the temporary placement position 112. For example, the placement groove 11 has one disposal position 111 and two temporary placement positions 112, and three atomizers 4 can be installed in the first body 1 at the same time. The atomizer 4 to be smoked can be in an atomizable state, and the spare atomizer 4 can be in a non-atomizable state. The atomizer 4 in the non-atomizable state realizes oil core separation, which can prevent the spare atomizer 4 from leaking oil during storage.
[0052] In this embodiment, the effective storage volume of the disposal position 111 is smaller than the effective storage volume of the temporary storage position 112. The difference in the effective storage volumes of the two is mainly reflected in the difference in depth of the two. Figure 2 In the up and down direction shown, the depth of the effective accommodating volume of the handling position 111 is smaller than the depth of the effective accommodating volume of the temporary position 112, and the length of the atomizer 4 in the atomizable state is smaller than the length of the atomizer 4 in the non-atomizable state, so that when the atomizer 4 in the atomizable state is installed in the handling position 111 and the atomizer 4 in the non-atomizable state is installed in the temporary position 112, the atomizers 4 in two different states are flush or aligned.
[0053] In other embodiments, the effective accommodation volume is the volume actually occupied by the atomizer 4. The length of the effective accommodation volume of the disposal position 111 is less than the length of the effective accommodation volume of the temporary storage position 112, or the width of the effective accommodation volume of the disposal position 111 is less than the width of the effective accommodation volume of the temporary storage position 112. For example, the cross-sections of both the disposal position 111 and the temporary storage position 112 are in the shape of a runway. If the placement directions of the disposal position 111 and the temporary storage position 112 are different and the length directions of the disposal position 111 and the temporary storage position 112 are perpendicularly arranged, then in the length or width direction of the atomization device, the length of the effective accommodation volume of the disposal position 111 will be less than the width or height of the effective accommodation volume of the temporary storage position 112, or the width of the effective accommodation volume of the disposal position 111 will be less than the length or height of the effective accommodation volume of the temporary storage position 112.
[0054] In this embodiment, the accommodation depth difference between the disposal position 111 and the temporary storage position 112 is equal to the length difference between the atomizer 4 in the atomizable state and the atomizer 4 in the non-atomizable state. The atomizer 4 in the atomizable state installed in the disposal position 111 has a first end face exposed outside the disposal position 111, and the atomizer 4 in the non-atomizable state installed in the temporary storage position 112 has a second end face exposed outside the temporary storage position 112. The first end face and the second end face are in the same plane. That is, multiple atomizers 4 with different lengths are installed in the atomization device, and they can be neatly arranged and expose the same length, so that the second body 2 can simultaneously seal and fix multiple atomizers 4 in the first body 1. When the second body 2 is opened, the multiple aligned atomizers 4 presented are also more beautiful.
[0055] In other embodiments, the accommodation depth of one temporary storage position 112 can be set to be greater than the accommodation depth of the disposal position 111, and the accommodation depth of the other temporary storage position 112 is equal to the accommodation depth of the disposal position 111. The temporary storage position 112 with the accommodation depth equal to that of the disposal position 111 can be used to place the atomizer 4 in the atomizable state, that is, to place the used atomizer 4. For example, it can meet the user's need to replace atomizers 4 with different flavors for use at any time.
[0056] In this embodiment, a support connecting member 14 is provided at the bottom of the disposal position 111. The support connecting member 14 has a certain support height. The depth of the disposal position 111 is the length from the support connecting member 14 to the opening of the disposal position 111. That is, after the support connecting member 14 is installed in the disposal position 111, the accommodation depth of the disposal position 111 is less than the accommodation depth of the temporary storage position 112.
[0057] The support connecting member 14 can be a silicone elastic structural member. The support connecting member 14 has an installation groove 141, and the installation groove 141 communicates with the air inlet passage of the first body 1. A support step 142 is provided at the opening of the installation groove 141. The air inlet end of the support atomizer 4 is inserted into the installation groove 141, and the end face of the air inlet end of the support atomizer 4 abuts against the support step 142. The support connecting member 14 can support and seal - connect the air inlet end of the support atomizer 4.
[0058] The support connecting member 14 has a preset support height, which is the support height after the support connecting member 14 is extruded and deformed. This support height is equal to the length difference between the atomizer 4 in the atomizable state and the atomizer 4 in the non - atomizable state, so that the first end face of the atomizer 4 in the atomizable state and the second end face of the atomizer 4 in the non - atomizable state are located in the same plane.
[0059] In other embodiments, a support portion protruding upward is provided at the bottom of the disposal position 111, and this support portion can also support the atomizer 4 in the atomizable state, so that the atomizer 4 in the atomizable state is flush with the atomizer 4 in the non - atomizable state.
[0060] In this embodiment, an installation rack 12 is provided in the installation groove 11. The installation rack 12 has an installation groove, and the inner side wall of the installation groove has a plurality of protruding partition portions 123. The partition portions 123 divide the installation groove into one disposal position 111 and at least one temporary storage position 112. For example, it is divided into one disposal position 111 and two temporary storage positions 112, or divided into two disposal positions 111 and two temporary storage positions 112. The installation rack 12 can be fixedly connected to the first body 1 by means of snap - connection or interference fit, etc., and the installation rack 12 can also be an integral structure with the first body 1.
[0061] The cavity in the first body 1 is divided into two parts. The cavity in the first body 1 can be divided into two parts by an installation rack 12. One part of the first body 1 is the installation groove 11, and the other part is the installation cavity 13. Components such as a battery and a circuit board can be installed in the installation cavity 13. As Figure 2 shown, the upper half of the first body 1 is the installation groove 11, and the lower half is the installation cavity 13. Separating the atomizer 4 from the components can prevent the atomizer 4 from accidentally leaking oil into the components, and arranging multiple atomizers 4 on the same side also facilitates the replacement and use of the atomizer 4.
[0062] The second body 2 is detachably provided at one end of the first body 1. The second body 2 covers the end of the first body 1 having the installation groove 11, and the second body 2 encloses the installation groove 11 to form a receiving cavity. The second body 2 is used to fix the multiple atomizers 4 in the installation groove 11. When the atomizer 4 needs to be replaced, it can be replaced by opening the second body 2.
[0063] The nozzle 3 is arranged on the side of the second body 2 facing away from the first body 1, that is, the nozzle 3, the second body 2 and the first body 1 are sequentially connected to form a three-section structure. One end of the nozzle 3 passes through the second body 2, and the end of the nozzle 3 passing through the second body 2 is used for detachably connecting the atomizer 4 to be sucked. That is, when the second body 2 is correctly installed on the first body 1, the nozzle 3 is aligned with the disposal position 111 of the first body 1, so that one end of the nozzle 3 can be inserted into the atomizer 4 at the disposal position 111, and the nozzle 3 forms an air path connection with the atomizer 4 to be sucked at the disposal position 111. The end of the nozzle 3 exposed from the second body 2 can be used for the user to suck. When the second body 2 is separated from the first body 1, the nozzle 3 can also be separated from the atomizer 4. When the second body 2 is connected to the first body 1, the nozzle 3 can also be connected to the atomizer 4. That is, the second body 2 and the nozzle 3 are synchronously separated and connected. The second body 2 and the nozzle 3 can be set as an integrated structure, or the second body 2 and the nozzle 3 can be set as a detachable connection structure.
[0064] In this embodiment, the placement rack 12 has at least one first slot 121 and at least one second slot 122. The first slot 121 forms the disposal position 111, and the second slot 122 forms the temporary placement position 112. The first slot 121 and the plurality of second slots 122 are arranged side by side. The bottom of the first slot 121 has an air path connection port 1211 and a circuit connection port 1212. The air path connection port 1211 is communicated with the outside through an air path channel. The circuit connection port 1212 is used for inserting an electrical connection terminal 15. The first slot 121 is provided with the air path connection port 1211 and the circuit connection port 1212, so that the atomizer 4 installed in the first slot 121 can achieve air path and circuit connection. The bottom of the second slot 122 is not provided with the air path connection port 1211 and the circuit connection port 1212, and the atomizer 4 installed in the second slot 122 does not need to achieve air path and circuit connection. Among them, the air path connection port 1211 and the circuit connection port 1212 are arranged in the support connecting member 14, and the electrical connection terminal 15 is inserted into the installation groove 141 of the support connecting member 14.
[0065] The placement rack 12 has a slot with a long strip-shaped cross section. On the two inner side walls in the length direction of the cross section of the placement rack 12, there are a plurality of protruding partition parts 123. The partition parts 123 divide the slot into at least one first slot 121 and at least one second slot 122 arranged side by side. The partition parts 123 on the two inner side walls of the placement rack 12 are arranged at intervals relative to each other, and there is a gap between them. That is, the partition parts 123 do not form a partition board. This structure can reduce the use of materials, reduce the weight of the product, and save material costs. Of course, the partition parts 123 can also be set as partition boards to completely separate the first slot 121 and the second slot 122, and to completely separate the plurality of second slots 122.
[0066] The first slot 121 is provided with a first clamping portion 1213, that is, the disposal position 111 is provided with the first clamping portion 1213. The second slot 122 is provided with a second clamping portion 1221, that is, the temporary placement position 112 is provided with the second clamping portion 1221. The first clamping portion 1213 and the second clamping portion 1221 can be set to the same structure, and the first clamping portion 1213 and the second clamping portion 1221 can also be set to different structures. The first clamping portion 1213 is used to clamp the atomizer 4 to be driven in the disposal position 111, and the second clamping portion 1221 is used to clamp the atomizer 4 in the temporary placement position 112.
[0067] For example, both the first clamping portion 1213 and the second clamping portion 1221 are radial convex structures. Among them, the insertion and extraction directions of the atomizer 4 are axial, and the direction perpendicular to the axial direction is radial. The protruding height of this convex structure is relatively low, generally about 1 mm, so that the atomizer 4 can be clamped into and pulled out of this convex structure through elastic deformation. Correspondingly, the circumferential outer side surface of the atomizer 4 is provided with a clamping portion adapted to the first clamping portion 1213 and the second clamping portion 1221, and the clamping portion can be a card slot. Of course, by setting card slots in the first slot 121 and the second slot 122, and the circumferential outer side surface of the atomizer 4 is provided with a convex structure, the clamping installation of the atomizer 4 can also be realized.
[0068] The first clamping portion 1213 is preferably arranged on the bottom wall of the first slot 121 or near the bottom wall. Similarly, the second clamping portion 1221 is preferably arranged on the bottom wall of the second slot 122 or near the bottom wall. Correspondingly, the clamping portion of the atomizer 4 is arranged near the air inlet end. Such a setting makes the clamping point of the atomizer 4 located at the bottom, and the atomizer 4 is clamped only when it is inserted in place, and at the same time, it is convenient to pull out the atomizer 4.
[0069] The first clamping portion 1213 and the second clamping portion 1221 can be multiple convex structures distributed on the same annular ring. The corresponding clamping portion is multiple card slots on the corresponding annular ring on the circumferential outer side surface of the atomizer 4. For example, the first clamping portion 1213 and the second clamping portion 1221 can be four convex structures evenly distributed on the same annular ring, and the clamping portion is four card slots evenly distributed on the corresponding annular ring on the circumferential outer side surface of the atomizer 4. Through the clamping limit at multiple points, the stability of the overall clamping limit can be improved.
[0070] The first clamping portion 1213 and the second clamping portion 1221 can also be set to a hemispherical structure. The hemispherical structure has an arc surface facing the slot opening and a back-facing slot opening, so that the atomizer 4 can be clamped into and pulled out more easily.
[0071] In one embodiment, the first engaging portion 1213 and the second engaging portion 1221 have a first inclined surface or a first arc surface facing the insertion direction of the atomizer 4 (i.e., towards the slot opening), and a second inclined surface or a second arc surface facing the extraction direction of the atomizer 4 (i.e., away from the slot opening). The first engaging portion 1213 and the second engaging portion 1221 can be strip-shaped structures. The strip-shaped structures have opposite first inclined surfaces and second inclined surfaces, or first arc surfaces or second arc surfaces, which can also play a role in the transition of insertion and extraction, enabling the atomizer 4 to be more easily snapped in and out.
[0072] In one embodiment, the first engaging portion 1213 and the second engaging portion 1221 can be of different structures. For example, the first engaging portion 1213 is an engaging strip, and the second engaging portion 1221 is an engaging hemisphere.
[0073] In one embodiment, the first engaging portion 1213 and the second engaging portion 1221 are raised structures with different raised heights to form different engaging forces. The raised height of the first engaging portion 1213 is slightly greater than that of the second engaging portion 1221. The engaging force formed by the first engaging portion 1213 is greater than that formed by the second engaging portion 1221, so that the atomizer 4 can be more stably installed in the treatment position 111, achieving better airtightness of the gas path.
[0074] In one embodiment, a bearing portion 1222 is further provided in the second slot 122, that is, a bearing portion 1222 is provided in the temporary placement position. The bearing portion 1222 has a bearing surface facing the insertion direction of the atomizer 4 (i.e., towards the slot opening). The bearing portion 1222 is used to support the end face of the atomizing body of the atomizer 4. In particular, the second slot 122 can also snap and limit the activated atomizer 4, providing an axial supporting force for the activated atomizer 4.
[0075] Multiple bearing portions 1222 can be provided in the second slot 122. The bearing surfaces of the multiple bearing portions 1222 are located in the same plane. The multiple bearing portions 1222 can achieve multi-point support for the atomizer 4, improving the stability of the support.
[0076] Please refer to Figure 2 、 Figure 5 and Figure 6 , in one embodiment, an atomizing device is provided. On the basis of any of the above embodiments, the atomizing device further includes an atomizer 4. The atomizing device can include at least one atomizer 4. Installing one atomizer 4 in the treatment position 111 can achieve atomizing use, and the atomizer 4 in the temporary placement position 112 can be supplemented by subsequent purchase.
[0077] The atomizer 4 mainly includes an atomizing body 41, an atomizing core 42, and an atomizing medium 43. The atomizing core 42 is installed at the middle position of the atomizing body 41, and the atomizing body 41 is provided with an air passage communicating with the atomizing core 42. The air passage communicates with the atomizing core 42 and runs through the atomizing body 41. A medium cavity is provided in the atomizing body 41. The atomizing medium 43 can be e-liquid. The atomizing medium 43 is located in the medium cavity of the atomizing body 41. The atomizing core 42 has an air inlet communicating with the medium cavity, so that the atomizing medium 43 can enter the atomizing core 42 for heating.
[0078] The atomizing core 42 can include structures such as an outer cylinder, absorbent cotton, and a heating element. The absorbent cotton is used to absorb the atomizing medium 43 in the medium cavity, and the heating element is used to heat the atomizing medium 43 on the absorbent cotton.
[0079] A structure with anti-leakage cotton can be provided in the atomizer 4 to prevent the atomizer 4 in the temporary placement position from leaking oil. An oil core separation structure can also be provided in the atomizer 4. When the atomizer 4 is not activated, the medium cavity is not communicated with the air inlet of the atomizing core 42. When the atomizer 4 is activated, the medium cavity is communicated with the air inlet of the atomizing core 42. For the atomizer 4 provided with an oil core separation structure, the activated atomizer 4 is installed at the disposal position 111, and the unactivated atomizer 4 is installed at the temporary placement position 112.
[0080] The outer circumferential side surface of the atomizing body 41 is provided with a clamping portion, which is used to be clamped with the first clamping portion 1213 in the first slot 121. The third slot can also be used to be clamped with the second clamping portion 1221 in the second slot 122.
[0081] The atomizer 4 may further include an atomization separation mechanism 44. The atomization separation mechanism 44 is movably connected to the atomization body 41. One end of the atomization separation mechanism 44 is located inside the atomization body 41. Specifically, one end of the atomization separation mechanism 44 may be a sleeve, and the sleeve is sleeved outside the atomization inner core 42. The sleeve of the atomization separation mechanism 44 isolates the air inlet hole of the atomization inner core 42 from the medium chamber. The sleeve of the atomization separation mechanism 44 is also provided with a through hole. When the sleeve of the atomization separation mechanism 44 moves, the through hole of the atomization separation mechanism 44 can be communicated and aligned with the air inlet hole of the atomization inner core 42, so that the atomization medium 43 in the medium chamber can enter the atomization inner core 42. The other end of the atomization separation mechanism 44 is exposed outside the atomization body 41, and the atomization separation mechanism 44 can move axially relative to the atomization body 41 as a whole. The atomization body 41 is provided with a first bayonet 411 and a second bayonet 412. Both the first bayonet 411 and the second bayonet 412 penetrate the atomization body 41 in the radial direction. The atomization separation mechanism 44 has a bayonet 441, and the bayonet 441 can move along the inner side wall of the atomization body 41 to be clamped with the first bayonet 411 and the second bayonet 412. Among them, the first bayonet 411 and the second bayonet 412 are distributed at intervals along the axial direction of the atomization body 41, and the first bayonet 411 is closer to the end where the atomization separation mechanism 44 is exposed outside the atomization body 41 than the second bayonet 412. The first bayonet 411 and the second bayonet 412 may be provided in plurality. Correspondingly, the bayonets 441 of the atomization separation mechanism 44 are provided in plurality. Each bayonet 441 corresponds to a first bayonet 411 and a second bayonet 412. The setting of multiple bayonets and bayonets can improve the stability of the clamping connection.
[0082] The atomizer 4 has an atomizable state and a non-atomizable state. The atomizer 4 can be converted from the non-atomizable state to the atomizable state by pressing the atomization separation mechanism 44. The length of the atomizer 4 in the non-atomizable state is greater than the length of the atomizer 4 in the atomizable state.
[0083] When the atomizer 4 is not activated, one end of the atomization separation mechanism 44 exposed from the atomization body 41 is relatively far away from the atomization body 41. At this time, the overall length of the atomizer 4 is relatively longer. The buckle 441 of the atomization separation mechanism 44 is connected to the first bayonet 411. The through hole of the sleeve of the atomization separation mechanism 44 is offset from the air inlet hole of the atomization inner core 42, and the medium cavity is isolated from the air inlet hole of the atomization inner core 42. The atomization medium 43 in the medium cavity cannot enter the atomization inner core 42. When the atomizer 4 needs to be activated, the user presses one end of the atomization separation mechanism 44 exposed from the atomization body 41 and squeezes the atomization separation mechanism 44 towards the atomization body 41. The atomization separation mechanism 44 moves in the direction of the atomization body 41 (along the axis). The buckle 441 of the atomization separation mechanism 44 is separated from the first bayonet 411, and the buckle 441 of the atomization separation mechanism 44 moves to be clamped with the second bayonet 412. At this time, the atomizer 4 is in an atomizable state. The through hole of the sleeve of the atomization separation mechanism 44 is aligned and communicated with the air inlet hole of the atomization inner core 42, the medium cavity is communicated with the air inlet hole of the atomization inner core 42, and the atomization medium 43 in the medium cavity can enter the atomization inner core 42.
[0084] Since the first bayonet 411 and the second bayonet 412 of the atomizer 4 are bayonets penetrating the atomization body 41, the first bayonet 411 and the second bayonet 412 can be used as clamping parts. When the first clamping part 1213 of the disposal position 111 and the second clamping part 1221 of the temporary placement position 112 are aligned with the first bayonet 411 of the atomizer 4, the first bayonet 411 can be used as a clamping part, and the first clamping part 1213 and the second clamping part 1221 can be clamped with the first bayonet 411 by being inserted from the outside of the first bayonet 411; when the first clamping part 1213 of the disposal position 111 and the second clamping part 1221 of the temporary placement position 112 are aligned with the second bayonet 412 of the atomizer 4, the second bayonet 412 can be used as a clamping part, and the first clamping part 1213 and the second clamping part 1221 can be clamped with the second bayonet 412 by being inserted from the outside of the second bayonet 412. Using the first bayonet 411 or the second bayonet 412 as the clamping part can simplify the structure of the atomization body 41 and reduce the complexity of the atomization body 41.
[0085] In one embodiment, a clamping part can also be additionally provided on the circumferential outer side surface of the atomization body 41 of the atomizer 4. The clamping part has a different position from the first bayonet 411 and the second bayonet 412, and the limit clamping of the atomizer 4 can also be achieved.
[0086] In one embodiment, the atomizer 4 may not be provided with the atomization separation mechanism 44. Structures such as an oil storage cotton are provided in the atomizer 4, which can also play a role in preventing oil leakage for the unused atomizer 4. A clamping part is additionally provided on the atomization body 41 of the atomizer 4 with this structure, so that the atomizer 4 can be limited and fixed at the disposal position 111 and the temporary placement position 112.
[0087] In one embodiment, an atomizer is provided. This atomizer includes the atomizer 4 in any of the above embodiments. This atomizer 4 can be installed in the atomization device in any of the above embodiments for use.
[0088] The above uses specific examples to elaborate on the present invention, which is only used to help understand the present invention and is not intended to limit the present invention. For those skilled in the technical field to which the present invention pertains, based on the idea of the present invention, several simple deductions, deformations or substitutions can also be made.
Claims
1. An atomization device, characterized in that, it includes: at least a space for arranging two atomizers, one of the atomizers is arranged at a disposal position, and the other atomizer is arranged at a temporary storage position; the effective accommodation volume of the disposal position is smaller than the effective accommodation volume of the temporary storage position.
2. The atomization device according to claim 1, characterized in that, the length of the effective accommodation volume of the disposal position is smaller than the length of the effective accommodation volume of the temporary storage position; or, the width of the effective accommodation volume of the disposal position is smaller than the width of the effective accommodation volume of the temporary storage position; or, the depth of the effective accommodation volume of the disposal position is smaller than the depth of the effective accommodation volume of the temporary storage position.
3. The atomization device according to claim 1, characterized in that, the disposal position is used to arrange an atomizer in an atomizable state, the temporary storage position is used to arrange an atomizer in a non-atomizable state or an atomizable state, the atomizer in an atomizable state has a first end face exposed to the disposal position, and the atomizer in a non-atomizable state has a second end face exposed to the temporary storage position, and the first end face and the second end face are in the same plane.
4. The atomization device according to claim 1, characterized in that, a support connecting member is provided at the bottom in the disposal position, the support connecting member has an installation groove, the installation groove is communicated with an air inlet channel, and the air inlet end of the atomizer in an atomizable state is inserted into the installation groove; and / or, the support height of the support connecting member is equal to the height difference between the atomizer in an atomizable state and the atomizer in a non-atomizable state.
5. The atomization device according to claim 1, characterized in that, it includes a first body and a second body, the disposal position and the temporary storage position are arranged in the first body, and the second body is detachably connected to the first body; the disposal position is provided with a first clamping portion, the temporary storage position is provided with a second clamping portion, the first clamping portion is used to limit the atomizer in an atomizable state to the disposal position, and the second clamping portion is used to limit the atomizer in a non-atomizable state or an atomizable state to the temporary storage position; when the second body is opened, the atomizer is limited in the installation groove.
6. The atomization device according to claim 5, characterized in that, the first clamping portion and / or the second clamping portion is a radial convex structure; or, the first clamping portion and / or the second clamping portion is a plurality of convex structures distributed on a corresponding annular ring.
7. The atomization device according to claim 1, characterized in that, a bearing portion is further provided on the bottom wall of the temporary storage position, the bearing portion has a bearing surface facing the insertion direction of the atomizer, and the bearing surface is used to support the atomizer body end face.
8. The atomization device according to claim 1, characterized in that, an installation frame is arranged in the installation groove, the installation frame has at least one first slot and at least one second slot, the first slot forms the disposal position, and the bottom wall of the first slot has an air path connection port and a circuit connection port, and the second slot forms the temporary storage position; And / or, the placement rack has a mounting groove, and the inner side wall of the mounting groove has a plurality of protruding partition parts, and the partition parts divide the mounting groove into the first slot and the second slot.
9. The atomizing device according to any one of claims 5 to 8, wherein, it further includes at least one atomizer, the atomizer includes an atomizable state and a non-atomizable state, and the length of the atomizer in the atomizable state is less than the length of the atomizer in the non-atomizable state; the atomizer includes an atomizing body, an atomizing inner core, an atomizing medium and an atomizing separation mechanism, the atomizing inner core is arranged in the atomizing body, the atomizing body has a medium cavity, and the atomizing medium is located in the medium cavity; the atomizing separation mechanism is movably connected to the atomizing body, one end of the atomizing separation mechanism is located in the atomizing body and is used for separating the medium cavity and the atomizing core assembly, and the other end of the atomizing separation mechanism protrudes from one end of the atomizing body.
10. The atomizing device according to claim 9, wherein, the atomizing body is provided with a first bayonet and a second bayonet, the first bayonet is closer to the end where the atomizing separation mechanism protrudes from the atomizing body than the second bayonet, and the atomizing separation mechanism has a buckle; when the atomizer is in the non-atomizable state, the buckle is connected to the first bayonet; when the atomizer is in the atomizable state, the buckle moves to be connected to the second bayonet; the first bayonet or the second bayonet is used for connecting to the first clamping part or the second clamping part.
11. An atomizer, wherein, the atomizer includes an atomizable state and a non-atomizable state, the length of the atomizer in the atomizable state is less than the length of the atomizer in the non-atomizable state, the atomizer in the atomizable state can be installed in the disposal position or the temporary placement position of the atomizing device, and the atomizer in the non-atomizable state can be installed in the temporary placement position of the atomizing device, and the effective accommodation volume of the disposal position is less than the effective volume of the temporary placement position; the atomizer includes an atomizing body, an atomizing inner core, an atomizing medium and an atomizing separation mechanism, the atomizing inner core is arranged in the atomizing body, the atomizing body has a medium cavity, and the atomizing medium is located in the medium cavity; the atomizing separation mechanism is movably connected to the atomizing body, one end of the atomizing separation mechanism is located in the atomizing body and is used for separating the medium cavity and the atomizing core assembly, and the other end of the atomizing separation mechanism protrudes from one end of the atomizing body.
12. The atomizer according to claim 11, wherein, the atomizing body is provided with a first bayonet and a second bayonet, the first bayonet is closer to the end where the atomizing separation mechanism protrudes from the atomizing body than the second bayonet, and the atomizing separation mechanism has a buckle; when the atomizer is in the non-atomizable state, the buckle is connected to the first bayonet; when the atomizer is in the atomizable state, the buckle moves to be connected to the second bayonet; the first bayonet or the second bayonet is used for connecting to the first clamping part or the second clamping part.