CN212164891U - Charging device and aerosol-generating device set with same - Google Patents

Charging device and aerosol-generating device set with same Download PDF

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Publication number
CN212164891U
CN212164891U CN201922484991.6U CN201922484991U CN212164891U CN 212164891 U CN212164891 U CN 212164891U CN 201922484991 U CN201922484991 U CN 201922484991U CN 212164891 U CN212164891 U CN 212164891U
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China
Prior art keywords
generating device
cavity
aerosol
electrode connecting
connecting piece
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CN201922484991.6U
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Chinese (zh)
Inventor
邱伟华
李满成
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Changzhou Paiteng Electronic Technology Co Ltd
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Changzhou Paiteng Electronic Technology Co Ltd
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Abstract

The utility model discloses a charging device for charge for aerosol generation device, charging device includes that main part and movably install the moving part in the main part, is provided with the chamber of acceping that is used for acceping aerosol generation device in the main part, and the at least part chamber wall of acceping the chamber when the first state comprises the moving part, by the relative main part movable moving part of first state to second state to remove the chamber wall of acceping the chamber that comprises the moving part, make aerosol generation device at least part expose so that take out by the user. The utility model provides a charging device, when the first state, accept at least some chamber walls in chamber and constitute by the moving part, by relative main part activity moving part to second state of first state for aerosol generation device at least part exposes, and convenience of customers takes out aerosol generation device, simple structure, convenient operation. The utility model also discloses an aerosol generates device suit with this charging device.

Description

Charging device and aerosol-generating device set with same
Technical Field
The utility model relates to a simulation smoking technical field especially relates to a charging device and have this charging device's aerosol generation device suit.
Background
An aerosol-generating device is an electronic product that simulates a cigarette. An aerosol-generating device which has the same appearance, smoke, taste and feel as a cigarette, and which is a product that is inhaled by a user by atomizing an aerosol-forming substrate in the aerosol-generating device to produce smoke, is preferred by many smokers because of its portability, safety and environmental friendliness.
When the charge in the battery device is exhausted, the aerosol-generating device needs to be inserted into the charging device to supply power to the aerosol-generating device, and finally the aerosol-generating device is pulled out from the charging device, however, sometimes the aerosol-generating device is formed by assembling a plurality of parts, when the connection between parts on the aerosol-generating device is not firm, the situation that part of the parts of the aerosol-generating device is left in the charging device when the aerosol-generating device is pulled out from the charging device is encountered, and the part of the parts left in the charging device cannot be taken out due to inconvenient operation, which causes troubles to the use of users.
SUMMERY OF THE UTILITY MODEL
In view of this, there is a need for a charging device that facilitates removal of an aerosol-generating device and an aerosol-generating device kit with such a charging device.
The utility model provides a technical scheme that its technical problem will adopt is: a charging device for charging an aerosol-generating device, the charging device comprising a main body and a movable member movably mounted on the main body, wherein an accommodating chamber for accommodating the aerosol-generating device is provided in the main body, at least part of a chamber wall of the accommodating chamber is formed by the movable member in a first state, and the movable member is moved relative to the main body from the first state to a second state, so that the chamber wall of the accommodating chamber formed by the movable member is removed, so that the aerosol-generating device is at least partially exposed for being taken out by a user.
Further, the top of main part is followed the axial undercut of main part forms the installation cavity, the moving part is installed the top of main part, be provided with in the moving part with the intercommunication groove of installation cavity intercommunication, accept the chamber by the chamber wall of installation cavity with the cell wall in intercommunication groove encloses jointly and closes and form.
Further, the movable part comprises a body and an installation part convexly arranged at one end of the body, a butting part is formed on a step surface between the body and the installation part, the installation part is inserted in the main body, and the butting part butts against the end surface of the main body.
Further, sunken being formed with the spout on the lateral wall of installation department, be close to on the installation department the one end of body is sunken be formed with the constant head tank of spout intercommunication, the inner wall epirelief of installation cavity be equipped with the slider that the spout corresponds, the slider is the deformation piece, the slider can slide in the spout and can the block be in the constant head tank.
Further, the main part includes the shell, the shell includes the casing and sets up in the end cover of casing one end, the moving part is installed the casing is kept away from the one end of end cover, the installation cavity is formed by the top undercut of casing, support the portion of holding and support the up end of casing, end cover sealing connection is in the casing is kept away from the one end of moving part.
Further, the aerosol generating device comprises a battery device, a first electrode connecting piece is arranged on the battery device, a second electrode connecting piece is arranged in the charging device corresponding to the first electrode connecting piece, and when the aerosol generating device is accommodated in the accommodating cavity, the first electrode connecting piece is in contact with the second electrode connecting piece and is electrically connected with the second electrode connecting piece.
Furthermore, a groove is formed in the first electrode connecting piece, the second electrode connecting piece is convexly arranged in the accommodating cavity, and when the aerosol generating device is accommodated in the accommodating cavity, the second electrode connecting piece is inserted in the first electrode connecting piece and electrically connected with the first electrode connecting piece and the second electrode connecting piece.
Furthermore, the cavity wall of the installation cavity is convexly provided with a limiting part, and the lower end face of the installation part is abutted against the limiting part.
Further, one side of the shell is sunken to form an accommodating cavity, the accommodating cavity and the mounting cavity are arranged on two opposite sides of the shell, and the accommodating cavity is matched with the aerosol generating device.
An aerosol-generating device kit comprising a charging device according to any preceding claim.
The utility model has the advantages that: the utility model provides a charging device and aerosol generating device suit thereof through movably setting up the moving part in the main part, when the first state, accepts aerosol generating device's at least some chamber wall of accepting the chamber and comprises the moving part, by the relative main part activity moving part of first state to second state for aerosol generating device at least part exposes, and convenience of customers takes out aerosol generating device, simple structure, convenient operation.
Drawings
The present invention will be further explained with reference to the drawings and examples.
Fig. 1 is a schematic structural diagram of a charging device according to the present invention;
fig. 2 is an exploded view of the charging device shown in fig. 1;
figure 3 is a schematic structural view of an aerosol-generating device kit according to the present invention;
figure 4 is a cross-sectional view of the aerosol-generating device kit of figure 3;
figure 5 is a schematic diagram of a portion of the construction of the kit of aerosol-generating devices of figure 3;
figure 6 is a schematic view of a further part of the aerosol-generating device kit of figure 3;
fig. 7 is a state diagram (with movable members omitted) of the charging device shown in fig. 1.
The names and the numbers of the parts in the figure are respectively as follows:
case 11 and housing 111 of charging device 100
The first open end 1111 of the end cap 112 is fitted with a cavity 1112
Second open end 1115 of limiting part 1113 sliding block 1114
Flip 1116 latch 1117 movable member 12
Mounting portion 122 abutting portion 123 of main body 121
Connecting groove 124, sliding groove 125 and positioning groove 126
Accommodating cavity 13, second electrode connecting piece 14 and circuit board 15
Aerosol-generating device 200 battery device 21 first electrode connection 211
Atomizer 22 reservoir 221 atomizing assembly 222
Atomizing tube 2221 heating structure 2222 atomizing chamber 2223
Snorkel 223 smoke exit 2231 aerosol generating device kit 300
Main body 10A of connecting piece 1119 of flip body 1118
Detailed Description
The present invention will now be described in detail with reference to the accompanying drawings. This figure is a simplified schematic diagram, and merely illustrates the basic structure of the present invention in a schematic manner, and therefore it shows only the constitution related to the present invention.
As shown in fig. 1 and 4, the present invention provides an aerosol-generating device kit 300, the aerosol-generating device kit 300 comprising a charging device 100 and an aerosol-generating device 200 detachably mounted within the charging device 100. Wherein the aerosol-generating device 200 comprises a battery device 21 and an atomizer 22 arranged on the battery device 21, the atomizer 22 storing an aerosol-forming substrate therein, the atomizer 22 heating the aerosol-forming substrate when in electrical connection with the battery device 21 such that the aerosol-forming substrate is atomized to generate an aerosol for inhalation by a user. The battery device 21 is provided with a first electrode connecting member 211, and the charging device 100 is provided with a second electrode connecting member 14 corresponding to the first electrode connecting member 211. When the aerosol-generating device 200 is mounted in the charging device 100, the first electrode connector 211 is electrically connected with the second electrode connector 14 to charge the battery device 21 in the aerosol-generating device 200. It will be appreciated that the connection between the atomizer 22 and the battery device 21 may also be detachable, such as by snapping, screwing or magnetic connection.
As shown in fig. 2 to 4, the charging device 100 includes a main body 10A and a movable member 12 movably mounted on the main body 10A, the main body 10A is provided with a receiving cavity 13 for receiving the aerosol-generating device 200, at least a part of a cavity wall of the receiving cavity 13 is formed by the movable member 12 in a first state, and the movable member 12 is moved relative to the main body 10A from the first state to a second state, so that the cavity wall of the receiving cavity 13 formed by the movable member 12 is removed, so that the aerosol-generating device 200 is at least partially exposed for being taken out by a user. It should be noted that the first state refers to a state of the charging device 100 when the movable member 12 is attached to the main body 10A, and the second state refers to a state of the charging device 100 when the main body 10A is detached from the movable member 12.
In one specific embodiment, the main body 10A includes a housing 11, the housing 11 includes a casing 111 and an end cover 112 disposed at one end of the casing 111, the movable element 12 is movably mounted at one end of the casing 111 away from the end cover 112, the top of the casing 111 is recessed downwards along an axial direction of the housing 11 to form a mounting cavity 1112, an upper end opening of the mounting cavity 1112 forms a first open end 1111, and a cavity wall of the mounting cavity 1112 is provided with a limiting portion 1113 in a protruding manner. The movable element 12 includes a body 121 and an installation portion 122 protruding from one end of the body 121, a supporting portion 123 is formed on a step surface between the body 121 and the installation portion 122, a communicating groove 124 penetrating through an upper end surface and a lower end surface of the movable element 12 is formed on the movable element 12, when the movable element 12 is installed on the main body 10A through the first opening end 1111, the lower end surface of the installation portion 122 supports against the limiting portion 1113 and/or the supporting portion 123 supports against an end surface of the main body 10A, so as to limit the installation of the movable element 12, meanwhile, the communicating groove 124 is communicated with the installation cavity 1112, and the accommodation cavity 13 is formed by jointly enclosing a groove wall of the communicating groove 124 and a cavity wall of the installation cavity 1112.
In one specific embodiment, the movable element 12 is inserted into the main body 10A through the mounting portion 122 to mount the movable element 12 on the main body 10A, wherein a sliding groove 125 is concavely formed on a side wall of the mounting portion 122, a positioning groove 126 communicated with the sliding groove 125 is concavely formed on one end of the mounting portion 122 close to the main body 121, a depth of the positioning groove 126 is greater than a depth of the sliding groove 125, a sliding block 1114 corresponding to the sliding groove 125 is convexly arranged on an inner wall of the mounting cavity 1112, the sliding block 1114 is a deformable member, for example, the sliding block 1114 may be made of a deformable material such as rubber or plastic, the sliding block 1114 may slide in the sliding groove 125, the sliding block 1114 may be engaged in the positioning groove 126, when the mounting portion 122 is inserted into the main body 10A, the sliding block 1114 is compressed and abutted against a groove wall of the sliding groove 125, and during a downward movement of the mounting portion 122 along an axial direction, when the slider 1114 slides into the positioning groove 126, the slider 1114 recovers and is clamped in the positioning groove 126, at this time, the movable element 12 and the main body 10A are installed in place, and the slider 1114 can slide into the sliding groove 125 from the positioning groove 126 by slight force, so that the movable element 12 can be prevented from being easily taken down from the main body 10A by external force, and the sliding groove 125 and the slider 1114 are matched to guide the installation of the movable element 12.
In one specific embodiment, the end cap 112 is clamped on the housing 111, a buckle 1121 is convexly arranged on the end cap 112, a clamping groove corresponding to the buckle 1121 is concavely formed on an inner wall of the housing 111, and the end cap 112 is mounted at the bottom of the housing 111 by matching the buckle 1121 with the clamping groove to seal the housing 111, it can be understood that the end cap 112 and the housing 111 can also be connected by a connection method such as a threaded connection or a magnetic connection.
In one specific embodiment, a circuit board 15 electrically connected to the second electrode connector 14 is further disposed in the main body 10A, and the second electrode connector 14 and the circuit board 15 are both mounted on the end cap 112, in this embodiment, the circuit board 15 is electrically connected to an external power source, and it is understood that in other embodiments, not shown, a battery is disposed in the housing 11, and the circuit board 15 is electrically connected to the battery. In this embodiment, the first electrode connecting member 211 is provided with a groove therein, and the second electrode connecting member 14 is disposed in the accommodating cavity 13 in a protruding manner, so that when the aerosol generating device 200 is inserted into the charging device 100 for charging, the second electrode connecting member 14 is inserted into the first electrode connecting member 211 and electrically connected to the first electrode connecting member 211, on one hand, the second electrode connecting member 14 is electrically conducted with an external power source, and on the other hand, the insertion fit between the first electrode connecting member 211 and the second electrode connecting member 14 enhances the connection strength between the charging device 100 and the aerosol generating device 200. It will be appreciated that in other embodiments, not shown, the first electrode connector 211 is provided protruding outside the aerosol-generating device 200 and the second electrode connector 14 is provided with a groove, or the first electrode connector 211 and the second electrode connector 14 are electrically connected only by contact.
As shown in fig. 3 to 7, when the aerosol-generating device 200 is charged, the end of the aerosol-generating device 200 to which the battery device 21 is attached is inserted into the housing cavity 13 through the communication groove 124, a part of the wall surface of the aerosol-generating device 200 is positioned in the attachment cavity 1112, the other part of the wall surface of the aerosol-generating device 200 is positioned in the communication groove 124, and at least a part of the outer surface of the aerosol-generating device 200 is positioned outside the charging device 100. In the present embodiment, when the battery device 21 remains in the housing 11 during the process of taking out the aerosol-generating device 200 by pulling out the atomizer 22 after the aerosol-generating device 200 is charged, the movable member 12 is moved upward by a force in the axial direction of the main body 10A, the slider 1114 slides into the sliding groove 125 from the positioning groove 126, and the movable member 12 is removed from the main body 10A by continuously moving the movable member 12 upward, so that part of the wall surface on the battery device 21 is exposed to the outside of the main body 10A, and part of the wall surface on the handheld battery device 21 exposed to the outside of the main body 10A moves upward in the axial direction of the charging device 100, so that the battery device 11 remaining in the main body 10A can be taken out. It will be appreciated that in other embodiments, not shown, the housing 13 is formed by a cavity in the main body 10A, and the movable member 12 is disposed on a side wall of the main body 10A, so long as at least a portion of the wall of the housing 13 is formed by the movable member 12, so that when the movable member 12 is moved relative to the main body 10A, a portion of the wall of the aerosol-generating device 200 is exposed to the outside of the main body 10A; alternatively, in other embodiments, not shown, the walls of the housing chamber 13 are all constituted by the mobile element 12; the movable member 12 and the main body 10A may be connected by a movable connection manner such as a flip connection, a sliding connection, or a mobile connection.
In one specific embodiment, as shown in fig. 2, a receiving cavity is formed by recessing the top of the main body 10A downward along the axial direction of the housing 11 relative to one side of the mounting cavity 1112, the upper end opening of the receiving cavity forms a second open end 1115, the receiving cavity and the mounting cavity 1112 are disposed on two opposite sides of the main body 10A, the receiving cavity is matched with the atomizer 22, a flip cover 1116 is further disposed on the main body 10A, and the flip cover 1116 is movably disposed at the second open end 1115 of the main body 10A. In one specific embodiment, the flip 1116 comprises a flip body 1118 and a connecting member 1119 protruding below the flip body 1118, a retaining block 1117 is disposed below the connecting member 1119, a retaining groove corresponding to the retaining block 1117 is disposed on the main body 10A, and the flip 1116 is movably disposed on the housing 111 through the cooperation of the retaining block 1117 and the retaining groove. It will be appreciated that in other embodiments, not shown, the flip 1116 may be pivotally mounted to the housing 111 via a hinged or sliding connection, provided that the movable flip 1116 exposes the second open end 1115, and that the flip body 1118 and the connecting members 1119 may be made of metal or rubber.
In one specific embodiment, as shown in fig. 4, a liquid storage cavity 221 and an atomizing assembly 222 are disposed in the atomizer 22, the aerosol-forming substrate is stored in the liquid storage cavity 221, the atomizing assembly 222 includes an atomizing tube 2221 and a heating structure 2222 accommodated in the atomizing tube 2221, the atomizing tube 2221 is disposed with an atomizing cavity 2223, the heating structure 2222 is disposed in the atomizing cavity 2223 and electrically connected to the battery device 21, the atomizer 22 is disposed with a vent tube 223, an inner cavity of the vent tube 223 forms a smoke outlet channel 2231 communicated with the atomizing cavity 2223, the atomizing tube 2221 is opened with a liquid inlet hole, the aerosol-forming substrate in the liquid storage cavity 221 contacts the heating structure 2222 through the liquid inlet hole, and the heating structure 2222 heats the aerosol-forming substrate under the electric driving of the battery device 21 to generate smoke to be emitted into the atomizing cavity 2223, and then enters the user's mouth through the smoke outlet channel 2231.
The utility model provides a charging device 100 through movably setting up moving part 12 on shell 11, when the first state, accepts aerosol generation device 200 accept at least part chamber wall of chamber 13 and constitute by moving part 12, by the relative shell 11 activity moving part 12 to the second state of first state for aerosol generation device 200 at least part exposes, and convenience of customers takes out aerosol generation device 200, simple structure, convenient operation.
The aerosol generating device set provided by the present invention has the same technical effects as the above-mentioned charging device 100 because it has all the technical features.
In light of the foregoing, it will be apparent to those skilled in the art from this disclosure that various changes and modifications can be made without departing from the scope of the invention. The technical scope of the present invention is not limited to the content of the specification, and must be determined according to the scope of the claims.

Claims (10)

1. A charging device for charging an aerosol-generating device, comprising: the charging device comprises a main body and a movable piece movably mounted on the main body, wherein an accommodating cavity for accommodating the aerosol generating device is arranged in the main body, at least part of cavity wall of the accommodating cavity is formed by the movable piece in a first state, and the movable piece moves relative to the main body from the first state to a second state, so that the cavity wall of the accommodating cavity formed by the movable piece is removed, and at least part of the aerosol generating device is exposed so as to be taken out by a user.
2. A charging arrangement as claimed in claim 1, in which: the top of main part is followed the axial undercut of main part forms the installation cavity, the moving part is installed the top of main part, be provided with in the moving part with the intercommunication groove of installation cavity intercommunication, accept the chamber by the chamber wall of installation cavity with the cell wall in intercommunication groove encloses jointly and closes and form.
3. A charging arrangement as claimed in claim 2, in which: the movable piece comprises a body and an installation part convexly arranged at one end of the body, a butting part is formed on a step surface between the body and the installation part, the installation part is inserted in the main body, and the butting part butts against the end surface of the main body.
4. A charging arrangement as claimed in claim 3, in which: sunken being formed with the spout on the lateral wall of installation department, be close to on the installation department the one end of body is sunken be formed with the constant head tank of spout intercommunication, the inner wall epirelief of installation cavity be equipped with the slider that the spout corresponds, the slider is the deformation piece, the slider can slide in the spout and can the block be in the constant head tank.
5. A charging arrangement as claimed in claim 3, in which: the main part comprises a shell, the shell comprises a shell body and an end cover arranged at one end of the shell body, the moving part is installed at one end, far away from the end cover, of the shell body, the installation cavity is formed by downward sinking of the top of the shell body, the abutting part abuts against the upper end face of the shell body, and the end cover is connected to one end, far away from the moving part, of the shell body in a sealing mode.
6. A charging arrangement as claimed in claim 5, in which: the aerosol generating device comprises a battery device, a first electrode connecting piece is arranged on the battery device, a second electrode connecting piece is arranged in the charging device corresponding to the first electrode connecting piece, and when the aerosol generating device is accommodated in the accommodating cavity, the first electrode connecting piece is in contact with and electrically connected with the second electrode connecting piece.
7. The charging device of claim 6, wherein: the aerosol generating device comprises a first electrode connecting piece, a second electrode connecting piece, an aerosol generating device and a first electrode connecting piece, wherein a groove is formed in the first electrode connecting piece, the second electrode connecting piece is convexly arranged in the accommodating cavity, and when the aerosol generating device is accommodated in the accommodating cavity, the second electrode connecting piece is inserted in the first electrode connecting piece and is electrically connected with the first electrode connecting piece and the second electrode connecting piece.
8. A charging arrangement as claimed in claim 3, in which: the mounting cavity is characterized in that a limiting part is convexly arranged on the cavity wall of the mounting cavity, and the lower end face of the mounting part is abutted to the limiting part.
9. A charging arrangement as claimed in claim 5, in which: one side of the shell is sunken to form an accommodating cavity, the accommodating cavity and the mounting cavity are arranged on two opposite sides of the shell, and the accommodating cavity is matched with the aerosol generating device.
10. An aerosol-generating device kit, characterized by: the aerosol-generating device kit comprising a charging device according to any of claims 1 to 9.
CN201922484991.6U 2019-12-31 2019-12-31 Charging device and aerosol-generating device set with same Active CN212164891U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201922484991.6U CN212164891U (en) 2019-12-31 2019-12-31 Charging device and aerosol-generating device set with same

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201922484991.6U CN212164891U (en) 2019-12-31 2019-12-31 Charging device and aerosol-generating device set with same

Publications (1)

Publication Number Publication Date
CN212164891U true CN212164891U (en) 2020-12-18

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201922484991.6U Active CN212164891U (en) 2019-12-31 2019-12-31 Charging device and aerosol-generating device set with same

Country Status (1)

Country Link
CN (1) CN212164891U (en)

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