Aerosol device

The gas aerosol device addresses mouthpiece contamination by retracting it into a storage slot, ensuring cleanliness and protection, thus improving user experience.

CN223094786UActive Publication Date: 2025-07-15SHENZHEN RELX TECH CO LTD
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Patent Information

Application Number
CN202421849906.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-31
Publication Date
2025-07-15
Estimated Expiration
2034-07-31

AI Technical Summary

Technical Problem

When the existing aerosol device is not in use, the suction nozzle is exposed to the outside of the device, which is easily contaminated, resulting in unhygienicity of users when using it.

Method used

An aerosol device is designed, including a fuselage and a removable atomizer. The atomizer has a state of use and storage. The suction nozzle can be accommodated in a storage tank when not in use. The fuselage is electrically connected to the atomizer to control the operation of the atomizer. The storage tank protects the suction nozzle and reduces contact with the external environment.

Benefits of technology

Effectively keep the nozzle clean, prevent pollution, reduce nozzle damage, and improve user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of aerosol equipment, and particularly discloses an aerosol device. The aerosol device comprises a machine body and one or two atomizing pieces, wherein each atomizing piece comprises a suction nozzle and an atomizing main body which are connected with each other; the atomizing part is configured to have a use state and a storage state; the machine body is configured to supply power to the atomization piece in the use state; the machine body comprises a base, a mounting space is formed outside the base, and the base is provided with a storage groove communicating with the mounting space; the atomizing part is configured to be detachably mounted in the mounting space; when the atomization piece is in the storage state, the suction nozzle of the atomization piece in the storage state is located in the storage groove; when the atomizing part is in the using state, the suction nozzle of the atomizing part in the using state is exposed out of the storage groove. When the aerosol device is not used, the suction nozzle is contained in the storage groove of the base, the storage groove can protect the suction nozzle, contact between the suction nozzle and the external environment is reduced, and therefore the suction nozzle can be kept clean easily, and the use sanitation problem of the suction nozzle is solved.
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Description

Technical Field

[0001] This application relates to the technical field of aerosol devices, and particularly to an aerosol device. Background Art

[0002] An aerosol device is a device that can disperse an atomizable matrix in a gas medium to form an aerosol, and has been widely used in the existing related technical fields. The aerosol device includes an atomizing member, which is used to store the atomizable matrix, and the atomizing member has a mouthpiece. When the aerosol device is not in use, the mouthpiece is exposed outside the aerosol device, which easily causes the mouthpiece to be contaminated and results in unhygienic problems when the user uses it again. Summary of the Utility Model

[0003] In view of this, this application provides an aerosol device that can improve the hygiene problem of the mouthpiece.

[0004] An embodiment of this application provides an aerosol device, which includes a body and one or two atomizing members. The atomizing member includes a mouthpiece and an atomizing body, and the mouthpiece is connected to the atomizing body. The atomizing member is configured to have a use state and a storage state. The body is configured to supply power to the atomizing member in the use state. The body includes a base, an installation space is formed outside the base, and the base is provided with a storage groove communicating with the installation space. The atomizing member is configured to be detachably installed in the installation space. When the atomizing member is in the storage state, the mouthpiece of the atomizing member in the storage state is located in the storage groove. When the atomizing member is in the use state, the mouthpiece of the atomizing member in the use state is exposed outside the storage groove.

[0005] In the above aerosol device, during use, the body is electrically connected to the atomizing member to control the operation of the atomizing member in the use state. The atomizing member can be converted between the use state and the storage state by being detached. When using the aerosol device, the mouthpiece is located outside the storage groove; when not using the aerosol device, by accommodating the mouthpiece in the storage groove, the storage groove can protect the mouthpiece, reduce the contact between the mouthpiece and the external environment, thereby making it easy to keep the mouthpiece clean, improving the hygiene problem of using the mouthpiece, and the mouthpiece being received in the storage groove is not easily damaged due to being bumped.

[0006] In at least one embodiment, the base includes a first mounting seat and a second mounting seat. The first mounting seat extends along a first direction, the second mounting seat extends along a second direction, one end of the first mounting seat is connected to one end of the second mounting seat, the second direction is perpendicular to the first direction, and the first mounting seat and the second mounting seat enclose the installation space; the first mounting seat is recessed inward to form the storage groove.

[0007] In at least one embodiment, the atomizing member is configured to be detachably mounted in the installation space along the first direction; the storage groove has an entrance opened in the first direction, and the entrance is for the mouthpiece to enter and exit the storage groove in the first direction.

[0008] In at least one embodiment, the fuselage further includes a baffle, the baffle is movably disposed on the base, and the baffle is configured to block or open the inlet.

[0009] In at least one embodiment, there are two atomizing members. When one atomizing member is in the use state, the other atomizing member is in the storage state; the installation space includes a first installation position and a second installation position. The first installation position accommodates the atomizing main body in the use state, and the second installation position accommodates the atomizing main body in the storage state.

[0010] In at least one embodiment, the atomizing member has an assembly portion, the assembly portion is located on the side of the atomizing main body away from the nozzle, and the assembly portion of the atomizing member in the use state is detachably connected to the assembly portion of the atomizing member in the storage state.

[0011] In at least one embodiment, the two atomizing members are respectively a first atomizing member and a second atomizing member; each assembly portion includes a protruding portion and a groove portion. The protruding portion of the first atomizing member is inserted into the groove portion of the second atomizing member, and the protruding portion of the second atomizing member is inserted into the groove portion of the first atomizing member.

[0012] In at least one embodiment, the atomizing member is configured to be detachably mounted in the installation space along a first direction; the atomizing main body has a connecting portion, and the base has a mating portion. The connecting portion is configured to be detachably connected to the mating portion along the first direction.

[0013] In at least one embodiment, the connecting portion includes a plugging portion and a first magnetic attracting portion, the mating portion has a slot, and the plugging portion is inserted into the slot in the first direction; the mating portion includes a second magnetic attracting portion disposed in the slot, and the second magnetic attracting portion is magnetically connected to the first magnetic attracting portion.

[0014] In at least one embodiment, the base is provided with an air inlet hole and a ventilation hole, and the air inlet hole and the ventilation hole communicate with the inside of the base; the atomizing main body is provided with a protruding portion, and the protruding portion is provided with a communication hole communicating with the nozzle; when the atomizing member is in the use state, the protruding portion is inserted into the ventilation hole along the first direction, and the ventilation hole communicates with the communication hole.

[0015] In at least one embodiment, the base is provided with an avoidance groove; when the atomizing member is in the storage state, the protruding portion is inserted into the avoidance groove along the first direction.

[0016] In at least one embodiment, the aerosol device further includes an adsorbing member, the adsorbing member is disposed in the storage groove, and the adsorbing member is configured to contact the nozzle located in the storage groove.

[0017] In at least one embodiment, the atomizing main body includes an atomizing core. The atomizing core of the atomizing member in the use state is configured to be electrically connected to the fuselage and contact the atomizable matrix in the atomizing main body to convert the atomizable matrix into aerosol. Description of the Drawings

[0018] Figure 1 is a perspective view of an aerosol device in an embodiment of the present application.

[0019] Figure 2 is Figure 1 a perspective view of the atomizing member of the aerosol device in

[0020] Figure 3 is Figure 1 a perspective view of the atomizing member of the aerosol device in a stored state.

[0021] Figure 4 is Figure 1 a perspective view of the body of the aerosol device in

[0022] Figure 5 is a perspective view of an aerosol device in another embodiment of the present application.

[0023] Figure 6 is Figure 5 a perspective view of an atomizing member of the aerosol device in a use state.

[0024] Figure 7 is Figure 5 a perspective view of the body of the aerosol device from a certain angle.

[0025] Figure 8 is Figure 5 a perspective view of an atomizing member of the aerosol device in a stored state.

[0026] Figure 9 is Figure 5 a perspective view of the body of the aerosol device from another angle.

[0027] Description of the Main Element Symbols

[0028] Aerosol device 100

[0029] Atomizing member 10

[0030] First atomizing member 10a

[0031] Second atomizing member 10b

[0032] Mouthpiece 11

[0033] Atomizing body 12

[0034] Housing 121

[0035] Connecting part 122

[0036] Insertion part 1221

[0037] The first magnetic attraction part 1222

[0038] The installation groove 1223

[0039] The assembly part 123

[0040] The protruding part 1231

[0041] The groove part 1232

[0042] The raised part 124

[0043] The communication hole 1241

[0044] The first connection terminal 13

[0045] The fuselage 20

[0046] The base 21

[0047] The first mounting seat 201

[0048] The second mounting seat 202

[0049] The storage groove 211

[0050] The mating part 212

[0051] The slot 2121

[0052] The second magnetic attraction part 2122

[0053] The entrance 213

[0054] The installation space 214

[0055] The first installation position 2141

[0056] The second installation position 2142

[0057] The air inlet hole 215

[0058] The ventilation hole 216

[0059] The avoidance groove 217

[0060] The second connection terminal 22

[0061] The first direction X

[0062] The second direction Y

[0063] The following specific embodiments will further illustrate the present application in combination with the above drawings. Specific embodiments

[0064] The technical solutions in the embodiments of the present application will be described below with reference to the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments.

[0065] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by those of ordinary skill in the technical field to which this application belongs. The terms used in the description of this application herein are only for the purpose of describing specific embodiments and are not intended to limit this application.

[0066] In the description of the embodiments of the present application, technical terms such as "first" and "second" are only used to distinguish different objects and cannot be understood as indicating or implying relative importance or implicitly specifying the quantity, specific order or primary-secondary relationship of the indicated technical features. In the description of the embodiments of the present application, the meaning of "a plurality" is two or more, unless otherwise clearly and specifically defined.

[0067] In the description of the embodiments of the present application, the term "vertical" is used to describe the ideal state between two components. In the actual production or use state, there may be a state approximately vertical between the two components.

[0068] An aerosol device is a device that can disperse an atomizable matrix in a gas medium to form an aerosol and has been widely used in the existing related technical fields. The aerosol device includes an atomizing member for storing the atomizable matrix, and the atomizing member has a mouthpiece. When the aerosol device is not in use, the mouthpiece is exposed outside the aerosol device, resulting in the mouthpiece being easily contaminated and causing unhygienic problems when the user uses it again.

[0069] The embodiments of the present application provide an aerosol device, including a body and one or two atomizing members. The atomizing member includes a mouthpiece and an atomizing body, and the mouthpiece is connected to the atomizing body. The atomizing member is configured to have a use state and a storage state. The body is configured to supply power to the atomizing member in the use state. The body includes a base, an installation space is formed outside the base, and the base is provided with a storage groove communicating with the installation space. The atomizing member is configured to be detachably installed in the installation space. When the atomizing member is in the storage state, the mouthpiece of the atomizing member in the storage state is located in the storage groove. When the atomizing member is in the use state, the mouthpiece of the atomizing member in the use state is exposed outside the storage groove.

[0070] In the above aerosol device, during use, the body is electrically connected to the atomizing member to control the atomizing member in the operating state to work. The atomizing member can be converted between the operating state and the storage state by being disassembled. When using the aerosol device, the mouthpiece is located outside the storage tank; when not using the aerosol device, by accommodating the mouthpiece in the storage tank, the storage tank can protect the mouthpiece, reduce the contact between the mouthpiece and the external environment, thereby making it easy to keep the mouthpiece clean, improving the hygienic problem of using the mouthpiece, and the mouthpiece being stored in the storage tank is not easily damaged due to bumping.

[0071] The following will further explain the embodiments of the present application with reference to the accompanying drawings.

[0072] As Figure 1 shown, an embodiment of the present application provides an aerosol device 100, which is used to convert an atomizable matrix into an aerosol. The aerosol device 100 includes an atomizing member 10 and a body 20. The atomizing member 10 is provided as one or two, and the atomizing member 10 can be electrically connected to the body 20 so that the body 20 controls the atomizing member 10 to work.

[0073] In some embodiments, the atomizing member 10 can store the atomizable matrix, and the body 20 is used to supply power to the atomizing member 10. The energized atomizing member 10 heats the atomizable matrix in the atomizing member 10 and converts the atomizable matrix into an aerosol, and the aerosol is discharged through the mouthpiece 11.

[0074] Referring to Figures 1 to 3 , in some embodiments, the atomizing member 10 includes a mouthpiece 11 and an atomizing body 12, and the mouthpiece 11 is connected to the atomizing body 12. The body 20 is detachably connected to the atomizing member 10. The body 20 includes a base 21, an installation space 214 is formed outside the base 21, and the atomizing member 10 is detachably installed in the installation space 214. The base 21 is provided with a storage tank 211 communicating with the installation space 214.

[0075] The atomizing member 10 has a storage state and an operating state. When the atomizing member 10 is in the storage state, the mouthpiece 11 of the atomizing member 10 in the storage state is located in the storage tank 211. The body 20 supplies power to the atomizing member 10 in the operating state. Figure 1 The atomizing member 10 in Figure 3 is in the operating state,

[0076] In use, the body 20 is electrically connected to the atomizing member 10 to control the operation of the atomizing member 10 in the operating state. The atomizing member 10 can be detachably connected to the body 20 to realize the conversion between the operating state and the storage state. When using the aerosol device 100, the nozzle 11 of the atomizing member 10 in the operating state is located outside the storage groove 211. When the aerosol device 100 is not in use, by accommodating the nozzle 11 of the atomizing member 10 in the storage state in the storage groove 211 of the base 21, the storage groove 211 can protect the nozzle 11, reduce the contact of the nozzle 11 with the external environment, so that it is easy for the nozzle 11 to remain clean, improve the hygienic problem of using the nozzle 11, and the nozzle 11 is not easily damaged due to collision when being accommodated in the storage groove 211.

[0077] In addition, the storage groove 211 can also receive the atomizable matrix leaking from the nozzle 11, reducing the possibility of the atomizable matrix leaking accidentally to the external environment and enhancing the user experience.

[0078] Refer to Figure 4 , in some embodiments, the base 21 includes a first mounting seat 201 and a second mounting seat 202. The first mounting seat 201 extends along a first direction X, and the second mounting seat 202 extends along a second direction Y. One end of the first mounting seat 201 is connected to one end of the second mounting seat 202. The second direction Y is perpendicular to the first direction X. The first mounting seat 201 and the second mounting seat 202 enclose an installation space 214. The first mounting seat 201 is recessed inward to form the storage groove 211.

[0079] Specifically, refer to Figure 1 And Figure 3 , the base 21 is generally L-shaped. The atomizing body 12 of the atomizing member 10 in the operating state is located in the installation space 214, and the nozzle 11 is located outside the storage groove 211 and faces the second direction Y. The atomizing body 12 of the atomizing member 10 in the storage state is located in the installation space 214, and the nozzle 11 is located in the storage groove 211 and faces the opposite direction of the second direction Y.

[0080] When the atomizing member 10 is in the operating state and the storage state, the atomizing body 12 can be installed in the installation space 214. By inverting the atomizing member 10, the atomizing member 10 can be converted between the operating state and the storage state, thereby improving the convenience of installing the atomizing member 10.

[0081] In some embodiments, the atomizing member 10 is detachably installed in the installation space 214 along the first direction X. The storage groove 211 has an entrance 213 opened in the first direction X, and the entrance 313 allows the nozzle 11 to enter and exit the storage groove 211 in the first direction X.

[0082] The detachable installation direction of the atomizing member 10 and the opening direction of the inlet 213 are both in the first direction X, so that the mouthpiece 11 can enter the storage tank 211 from the inlet 213 during the process of installing the atomizing member 10 in the installation space 214.

[0083] In some embodiments, the body 20 further includes a baffle (not shown in the figure), the baffle is movably arranged on the base 21, and the baffle is used to block or open the inlet 213.

[0084] Specifically, in one embodiment, the baffle is rotatably connected to the first mounting seat 201, and the baffle is rotated to open or block the inlet 213. When the atomizing member 10 is installed in the installation space 214, the baffle rotates to a state of blocking the inlet 213.

[0085] In other embodiments, the baffle is detachably connected to the first mounting seat 201 by an adhesive bonding method. For example, the baffle is provided with double-sided tape, and the baffle is detachably pasted on the first mounting seat 201 through the double-sided tape.

[0086] In some embodiments, the aerosol device 100 further includes an adsorbent (not shown in the figure), the adsorbent is arranged in the storage tank 211, and the adsorbent is configured to contact the mouthpiece 11 in the storage tank 211. When the opening of the mouthpiece 11 is inverted in the storage tank 211, the adsorbent can adsorb the atomizable matrix leaking from the mouthpiece 11, improve the problem of the atomizable matrix flowing freely in the storage tank 211, reduce the leakage of the atomizable matrix to the external environment, and improve the user experience.

[0087] Exemplarily, the adsorbent is adsorption cotton. In other embodiments, the adsorbent can also be other flexible adsorbents with an adsorption effect.

[0088] Refer to Figure 1 And Figure 2 , in some embodiments, the atomizing main body 12 includes a housing 121, a matrix storage chamber (not shown in the figure) and an atomizing core (not shown in the figure), the matrix storage chamber and the atomizing core are arranged in the housing 121, the matrix storage chamber is used to store the atomizable matrix, and the atomizing core of the atomizing member 10 in the use state is electrically connected to the body 20 and contacts the atomizable matrix to convert the atomizable matrix in the matrix storage chamber into aerosol.

[0089] In one embodiment, the body 20 includes a battery assembly, and the battery assembly is used to be electrically connected to the atomizing core of the atomizing member 10 in the use state to supply power to the atomizing core. When the atomizing member 10 is in the storage state, the battery assembly is disconnected from the atomizing core of the atomizing member 10 in the storage state.

[0090] In some embodiments, the housing 121 and the mouthpiece 11 are integrally formed.

[0091] Refer to Figures 1 to 4, in some embodiments, the atomizing body 12 has a connecting portion 122; the base 21 has a mating portion 212, and the connecting portion 122 and the mating portion 212 are detachably connected along the first direction X. The atomizing member 10 and the fuselage 20 are detachably connected through the cooperation between the mating portion 212 and the connecting portion 122.

[0092] On the one hand, the direction of the inlet 213 opened in the storage groove 211 is consistent with the connection direction of the connecting portion 122 and the mating portion 212, so that the nozzle 11 can enter the storage groove 211 during the installation of the atomizing member 10 onto the base 21, thus facilitating the loading of the nozzle 11 into the storage groove 211.

[0093] On the other hand, whether the atomizing member 10 is in a use state or a storage state, the connecting portion 122 is connected to the mating portion 212 to realize the installation of the atomizing member 10 in the installation space 214 of the base 21, improve the integrity of the aerosol device 100, and facilitate the carrying of the aerosol device 100. And through the detachable connection between the connecting portion 122 and the mating portion 212, it is convenient to switch the atomizing member 10 between the use state and the storage state, improving the convenience of user use.

[0094] Refer to Figure 2 and Figure 4 , in some embodiments, the connecting portion 122 includes a plugging portion 1221, and the mating portion 212 includes a slot 2121, and the plugging portion 1221 is in plugging cooperation with the slot 2121. For example, the plugging portion 1221 and the slot 2121 are in plugging cooperation along the first direction X, and the plugging portion 1221 is in interference fit in the slot 2121 to improve the tightness of the cooperation between the slot 2121 and the plugging portion 1221, so that the atomizing member 10 is not easily detached from the base 21 during use.

[0095] Refer to Figure 2 and Figure 4 , in some embodiments, the connecting portion 122 includes a first magnetic attracting portion 1222, and the mating portion 212 includes a second magnetic attracting portion 2122, and the second magnetic attracting portion 2122 is magnetically connected to the first magnetic attracting portion 1222. For example, the first magnetic attracting portion 1222 and the second magnetic attracting portion 2122 are magnets. Through the magnetic attraction cooperation between the first magnetic attracting portion 1222 and the second magnetic attracting portion 2122, it is convenient for the rapid connection and disconnection between the connecting portion 122 and the assembling portion 123, and thus it is convenient for the rapid assembly and disassembly of the atomizing member 10 and the base 21.

[0096] In some embodiments, the first magnetic attraction portion 1222 is disposed on the insertion portion 1221. For example, the insertion portion 1221 is provided with an installation groove 1223, and the first magnetic attraction portion 1222 is embedded in the installation groove 1223. The second magnetic attraction portion 2122 is disposed in the insertion slot 2121. In this way, the connecting portion 122 and the assembling portion 123 achieve a dual connection effect under the interference fit between the insertion slot 2121 and the insertion portion 1221 and the magnetic attraction effect between the second magnetic attraction portion 2122 and the first magnetic attraction portion 1222, further improving the connection stability after the atomizing member 10 and the base 21 are assembled.

[0097] Refer to Figure 2 With Figure 4 , in some embodiments, there are multiple connecting portions 122. For example, there are two, three, four, etc. connecting portions 122, and the number of assembling portions 123 is the same as and corresponds one by one to the number of connecting portions 122. The multiple connecting portions 122 and the multiple assembling portions 123 limit the atomizing member 10 and the base 21 at the same time, so that the connected atomizing member 10 and the base 21 are not easily rotated relative to each other, improving the connection stability.

[0098] Refer to Figure 1 With Figure 3 , in some embodiments, there is one atomizing member 10. In the use state, the nozzle 11 protrudes out of the base 21 to avoid the base 21, facilitating the user to use. The setting direction of the atomizing member 10 in the storage state is opposite to that of the atomizing member 10 in the use state relative to the base 21, that is: by separating the atomizing member 10 in the use state from the base 21, then rotating the atomizing member 10 by 180 degrees to invert the atomizing member 10, and then assembling the atomizing member 10 on the base 21, the nozzle 11 can be located in the storage groove 211 to realize the conversion of the atomizing member 10 from the use state to the storage state.

[0099] When the atomizing member 10 is not in use, converting the atomizing member 10 to the storage state can accommodate the nozzle 11 in the storage groove 211, so that the nozzle 11 is not easily in contact with the external environment and is easy to keep the nozzle 11 clean.

[0100] Refer to Figure 5 , in some embodiments, there are two atomizing members 10. When one atomizing member 10 is in the use state, the other atomizing member 10 is in the storage state.

[0101] By providing two atomizers 10, after the atomizable matrix in one atomizer 10 is exhausted, the aerosol device 100 can continue to be used by replacing the other atomizer 10, thus extending the usage time. The storage slot 211 can protect the nozzle 11 of the atomizer 10 in the stored state, so that the nozzle 11 of the atomizer 10 in the stored state is not easily contaminated by the external environment, which is conducive to keeping the nozzle 11 of the atomizer 10 in the stored state clean.

[0102] In some embodiments, the two atomizers 10 include at least one atomizable matrix. This facilitates configuring at least one atomizable matrix according to user needs for the user to select and meet different taste requirements.

[0103] Refer to Figures 5 to 8 , in some embodiments, the installation space 214 includes a first installation position 2141 and a second installation position 2142. The second installation position 2142 is in communication with the storage slot 211. The first installation position 2141 accommodates the atomization body 12 of the atomizer 10 in the use state, and the second installation position 2142 accommodates the atomization body 12 of the atomizer 10 in the stored state; the nozzles 11 of the two atomizers 10 face opposite directions.

[0104] For example, the two atomizers 10 are respectively a first atomizer 10a and a second atomizer 10b. When the first atomizer 10a and the second atomizer 10b are assembled with the base 21 at the same time, the nozzle 11 of the first atomizer 10a and the nozzle 11 of the second atomizer 10b face opposite directions. When the atomization body 12 of the first atomizer 10a is located at the first installation position 2141, that is, when the first atomizer 10a is in the use state, the atomization body 12 of the second atomizer 10b is located at the second installation position 2142, and the second atomizer 10b is in the storage state. The nozzle 11 of the second atomizer 10b is located in the storage slot 211, thereby protecting the nozzle 11 of the second atomizer 10b and improving the hygiene problem of the nozzle 11 of the second atomizer 10b. In practical applications, the unused atomizer 10 can be installed as the second atomizer 10b at the second installation position 2142 for continued use next time.

[0105] It can be understood that the positions of the first atomizer 10a and the second atomizer 10b can be interchanged according to requirements.

[0106] The user can install one of the first atomizer 10a and the second atomizer 10b at the first installation position 2141 for use according to taste requirements; and install the other at the second installation position 2142 for backup.

[0107] In some embodiments, the atomizing member 10 can also be provided in multiple numbers. For example, the atomizing member 10 is provided as 3, or 4, or 5, etc. Multiple atomizing members 10 can be detachably assembled in the installation space 214 at the same time, and the nozzle 11 of one of the atomizing members 10 is located in the storage groove 211, so as to facilitate the fuselage 20 to carry multiple atomizing members 10 at the same time.

[0108] Refer to Figures 5 to 8 , in some embodiments, at least two mating parts 212 are provided on the base 21. At least one mating part 212 is used to cooperate with the connecting part 122 of the atomizing member 10 located at the first installation position 2141, and at least one mating part 212 is used to cooperate with the connecting part 122 of the atomizing member 10 located at the second installation position 2142. In this way, both atomizing members 10 can be detachably assembled with the base 21, facilitating the quick installation and disassembly of the two atomizing members 10.

[0109] Refer to Figures 6 to 8 , in some embodiments, the atomizing member 10 has an assembly part 123. The assembly part 123 is located on the side of the atomizing main body 12 away from the cigarette holder, and the assembly part 123 of the atomizing member 10 in the use state is detachably connected to the assembly part 123 of the atomizing member 10 in the storage state.

[0110] When assembling the two atomizing members 10 and the base 21, first assemble the two atomizing members 10 into a whole through the assembly part 123, and then assemble the two assembled atomizing members 10 onto the base 21 along the first direction X at the same time; when changing the positions of the two atomizing members 10, it is also possible to first detach the two atomizing members 10 from the base 21 at the same time, then reverse the directions of the two atomizing members 10, and then install the two atomizing members 10 onto the base 21 at the same time.

[0111] When the atomizable matrix in one of the atomizing members 10 is exhausted or needs to be discarded, separate the assembly parts 123 of the two atomizing members 10, and then the atomizing member 10 can be replaced.

[0112] Refer to Figure 6 And Figure 8 , in some embodiments, each assembly part 123 includes a protruding part 1231 and a groove part 1232. The protruding part 1231 of the first atomizing member 10a is inserted into the groove part 1232 of the second atomizing member 10b, and the protruding part 1231 of the second atomizing member 10b is inserted into the groove part 1232 of the first atomizing member 10a.

[0113] For example, in one of the assembly parts 123 of the first atomizing part 10a, the protruding part 1231 is located in the middle of the groove part 1232; in one of the assembly parts 123 of the second atomizing part 10b, the groove part 1232 is formed in the middle of the protruding part 1231. This makes the two assembly parts 123 of the first atomizing part 10a and the second atomizing part 10b complementary in shape, so that the two assembly parts 123 can be inserted and matched with each other.

[0114] In some embodiments, the protruding part 1231 of the first atomizing part 10a is in interference fit with the groove part 1232 of the second atomizing part 10b, and the protruding part 1231 of the second atomizing part 10b is in interference fit with the groove part 1232 of the first atomizing part 10a, so as to improve the tightness of the fit between the protruding part 1231 and the first groove part 1232, making it difficult for the two atomizing parts 10 to separate from each other.

[0115] By inserting the assembly parts 123 of the first atomizing part 10a and the second atomizing part 10b into each other, it is convenient for the quick installation and disassembly of the two atomizing parts 10.

[0116] In some embodiments, the fuselage 20 includes an electronic control module (not shown in the figure), and the electronic control module is arranged in the base 21. The battery assembly is electrically connected to the electronic control module, and the electronic control module is used to be connected to the atomizing core of the atomizing part 10 to control the operation of the atomizing core.

[0117] In some embodiments, the electronic control module includes a circuit board and an air flow switch connected to the circuit board. The air flow switch is used to detect the change of air flow or air pressure in the base 21, and the circuit board controls the on-off of the electrical connection between the battery assembly and the atomizing core according to the change of the air flow or air pressure. When the user inhales from the mouthpiece 11, the external air flow enters the inside of the base 21, and the air flow switch detects the change of the air flow or air pressure in the base 21, so that the circuit board controls the electrical connection between the battery module and the atomizing core; when the user stops inhaling, the air flow switch detects the change of the air flow or air pressure in the base 21 again, so that the circuit board controls the disconnection of the electrical connection between the battery module and the atomizing core.

[0118] Refer to Figure 2 and Figure 4 or refer to Figure 6 and Figure 7 In some embodiments, the atomizing part 10 includes a first connection terminal 13. One end of the first connection terminal 13 is connected to the atomizing core, and the other end of the first connection terminal 13 is exposed outside the atomizing body 12. The base 21 includes a second connection terminal 22. One end of the second connection terminal 22 is electrically connected to the electronic control module, and the other end of the second connection terminal 22 is exposed outside the base 21. When the atomizing part 10 is in use, its first connection terminal 13 is electrically connected to the second connection terminal 22, so that the electronic control module is electrically connected to the atomizing core, thereby realizing the control of the atomizing core by the electronic control module.

[0119] Refer to Figure 4 , in some embodiments, along the second direction Y, two sets of second connection terminals 22 are provided, and each set includes two second connection terminals 22. As Figure 5 shown, when the fuselage 20 is fitted with two atomizing members 10, the first connection terminal 13 of the atomizing member 10 in the use state is electrically connected and fitted with the upper set of second connection terminals 22; as Figure 1 shown, when the fuselage 20 is fitted with one atomizing member 10, the first connection terminal 13 of the first atomizing member 10a in the use state is electrically connected and fitted with the lower set of second connection terminals 22. By providing two sets of second connection terminals 22 on the fuselage 20, the fuselage 20 can be used in cooperation with two atomizing members 10 or one atomizing member 10, thereby improving the adaptability of the fuselage 20 to different atomizing members 10.

[0120] Refer to Figure 2 and Figure 4 , or refer to Figure 6 and Figure 9 , in some embodiments, the base 21 has an air inlet hole 215 and a ventilation hole 216, and the air inlet hole 215 and the ventilation hole 216 communicate with the inside of the base 21. The atomizing main body 12 is provided with a protruding portion 124, and the protruding portion 124 is provided with a communication hole 1241 communicating with the mouthpiece 11, and the communication hole 1241 communicates with the mouthpiece 11. When the atomizing member 10 is in the use state, the protruding portion 124 is inserted into the ventilation hole 216 along the first direction X, and the ventilation hole 216 communicates with the communication hole 1241. When the user inhales through the mouthpiece 11, external air enters the base 21 from the air inlet hole 215, passes through the ventilation hole 216 and the communication hole 1241 to reach the mouthpiece 11, and discharges the aerosol generated by the atomizing member 10 from the mouthpiece 11. In addition, the protruding portion 124 and the ventilation hole 216 are inserted and matched, and also have the function of connecting the atomizing member 10 and the base 21, so as to improve the connection stability between the atomizing member 10 in the use state and the base 21.

[0121] Refer to Figure 2 and Figure 4 , in some embodiments, the base 21 is provided with an avoidance groove 217. When the atomizing member 10 is in the storage state, the protruding portion 124 is inserted into the avoidance groove 217 along the first direction X, and the avoidance groove 217 does not communicate with the inside of the base 21. This enables the base 21 to avoid the protruding portion 124 when the atomizing member 10 in the storage state is installed in the installation space 214, thereby facilitating the assembly of the atomizing member 10 and the base 21 and improving the structural compactness of the aerosol device 100 after assembly.

[0122] Refer to Figure 6 , Figure 7 , and Figure 8, in an embodiment having two atomizing members 10, the convex portion 124 of the atomizing member 10 in the use state is installed in the ventilation hole 216 so that the communication hole 1241 of the atomizing member 10 in the use state communicates with the ventilation hole 216; the convex portion 124 of the atomizing member 10 in the storage state is installed in the avoidance groove 217.

[0123] In some embodiments, the aerosol device 100 is an electronic cigarette, wherein the body 20 is a cigarette rod, the atomizing member 10 is a cartridge, the atomizable matrix is e-liquid, and the aerosol is the atomized smoke.

[0124] In some embodiments, the aerosol device 100 can also be an aromatherapy machine. Correspondingly, the atomizable matrix is aromatherapy essential oil. The aerosol device 100 can also be a medical nebulizer. Correspondingly, the atomizable matrix can be a medicinal solution with therapeutic efficacy. The aerosol device 100 can also be a disinfection device. Correspondingly, the atomizable matrix is a solid disinfection powder.

[0125] In addition, those of ordinary skill in the art of the present technology should recognize that the above embodiments are only used to illustrate the present application, rather than being used to limit the present application. As long as it is within the scope of the substantial spirit of the present application, appropriate changes and variations made to the above embodiments fall within the scope of the disclosure of the present application.

Claims

1. An aerosol device, characterized in that, Comprising: One or two atomizing members, the atomizing member including a mouthpiece and an atomizing body, the mouthpiece being connected to the atomizing body, and the atomizing member being configured to have a use state and a storage state; A fuselage configured to supply power to the atomizing member in the use state; the fuselage includes a base, an installation space is formed outside the base, and the base is provided with a storage groove communicating with the installation space; The atomizing member is configured to be detachably installed in the installation space; When the atomizing member is in the storage state, the mouthpiece of the atomizing member in the storage state is located in the storage groove; When the atomizing member is in the use state, the mouthpiece of the atomizing member in the use state is exposed outside the storage groove.

2. The aerosol device according to claim 1, characterized in that, The base includes a first mounting seat and a second mounting seat, the first mounting seat extends along a first direction, the second mounting seat extends along a second direction, one end of the first mounting seat is connected to one end of the second mounting seat, the second direction is perpendicular to the first direction, and the first mounting seat and the second mounting seat enclose the installation space; The first mounting seat is recessed towards the inside of the first mounting seat to form the storage groove.

3. The aerosol device according to claim 1, characterized in that, The atomizing member is configured to be detachably installed in the installation space along the first direction; the storage groove has an entrance opened in the first direction, and the entrance allows the mouthpiece to enter and exit the storage groove in the first direction.

4. The aerosol device according to claim 3, characterized in that, The fuselage further includes a baffle, the baffle is movably arranged on the base, and the baffle is configured to block or open the entrance.

5. The aerosol device according to claim 1, characterized in that, There are two atomizing members. When one of the atomizing members is in the use state, the other atomizing member is in the storage state; the installation space includes a first installation position and a second installation position, the first installation position accommodates the atomizing body in the use state, and the second installation position accommodates the atomizing body in the storage state.

6. The aerosol device according to claim 5, characterized in that, The atomizing member has an assembly part, the assembly part is located on the side of the atomizing body away from the mouthpiece, and the assembly part of the atomizing member in the use state is detachably connected to the assembly part of the atomizing member in the storage state.

7. The aerosol device according to claim 6, wherein The two atomizing members are respectively a first atomizing member and a second atomizing member; each assembly part includes a protruding part and a groove part, the protruding part of the first atomizing member is inserted into the groove part of the second atomizing member, and the protruding part of the second atomizing member is inserted into the groove part of the first atomizing member.

8. The aerosol device according to claim 1, characterized in that, The atomizing member is configured to be detachably installed in the installation space along the first direction; the atomizing body has a connecting part, and the base has a cooperating part, and the connecting part is configured to be detachably connected to the cooperating part along the first direction.

9. The aerosol device according to claim 8, characterized in that, The connecting part includes a plugging part and a first magnetic attracting part, the cooperating part has a slot, and the plugging part and the slot are plugged and matched along the first direction; the cooperating part includes a second magnetic attracting part arranged in the slot, and the second magnetic attracting part is magnetically connected to the first magnetic attracting part.

10. The aerosol device according to claim 8, wherein, The base is provided with an air inlet hole and a ventilation hole, and the air inlet hole and the ventilation hole communicate with the interior of the base; the atomization main body is provided with a convex part, and the convex part is provided with a communication hole communicating with the suction nozzle. When the atomization member is in the use state, the convex part is inserted into the ventilation hole along the first direction, and the ventilation hole communicates with the communication hole.

11. The aerosol device according to claim 10, wherein, The base is provided with an avoidance groove; when the atomization member is in the storage state, the convex part is inserted into the avoidance groove along the first direction.

12. The aerosol device according to any one of claims 1 to 11, characterized in that, The aerosol device further includes a suction accessory, and the suction accessory is arranged in the storage groove and is configured to contact the suction nozzle located in the storage groove.

13. The aerosol device according to any one of claims 1 to 11, characterized in that, The atomization main body includes an atomization core, and the atomization core of the atomization member in the use state is configured to be electrically connected to the fuselage and contact the atomizable matrix in the atomization main body to convert the atomizable matrix into aerosol.