WO2023082701A1 - 一种组合式气溶胶发生装置 - Google Patents

一种组合式气溶胶发生装置 Download PDF

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Publication number
WO2023082701A1
WO2023082701A1 PCT/CN2022/107738 CN2022107738W WO2023082701A1 WO 2023082701 A1 WO2023082701 A1 WO 2023082701A1 CN 2022107738 W CN2022107738 W CN 2022107738W WO 2023082701 A1 WO2023082701 A1 WO 2023082701A1
Authority
WO
WIPO (PCT)
Prior art keywords
liquid storage
bracket
storage chamber
aerosol generating
atomization
Prior art date
Application number
PCT/CN2022/107738
Other languages
English (en)
French (fr)
Inventor
陈杰
廖振龙
牛彦明
Original Assignee
深圳市吉迩科技有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 深圳市吉迩科技有限公司 filed Critical 深圳市吉迩科技有限公司
Publication of WO2023082701A1 publication Critical patent/WO2023082701A1/zh

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Classifications

    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F40/00Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
    • A24F40/40Constructional details, e.g. connection of cartridges and battery parts
    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F40/00Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
    • A24F40/10Devices using liquid inhalable precursors
    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F40/00Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
    • A24F40/40Constructional details, e.g. connection of cartridges and battery parts
    • A24F40/42Cartridges or containers for inhalable precursors
    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F40/00Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
    • A24F40/40Constructional details, e.g. connection of cartridges and battery parts
    • A24F40/46Shape or structure of electric heating means
    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F40/00Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
    • A24F40/40Constructional details, e.g. connection of cartridges and battery parts
    • A24F40/48Fluid transfer means, e.g. pumps

Definitions

  • the present application relates to the technical field of aerosol generation, and more specifically, to a combined aerosol generating device.
  • the aerosol generating device is a device that heats the aerosol generating substrate to generate an aerosol for the user to inhale after the aerosol generating substrate is heated.
  • each part of the traditional aerosol generating device is inseparable, which is not convenient for daily maintenance.
  • the entire aerosol generating device needs to be replaced.
  • the cost is high, which is not conducive to environmental protection.
  • Existing aerosol generating devices are all assembled in a combined manner, which can separate the liquid storage chamber and the atomization assembly, which is convenient for oiling the liquid storage chamber, maintenance and replacement of the liquid storage chamber or the atomization assembly.
  • the technical problem to be solved by the embodiments of the present application is that when the existing aerosol generating device separates the liquid storage chamber from the atomizing assembly, oil leakage will occur.
  • the embodiment of the present application provides a combined aerosol generating device, which adopts the following technical solutions:
  • the combined aerosol generating device includes: a housing, a liquid storage chamber, an atomizing component and a power supply component;
  • the power supply assembly is connected inside the casing, the liquid storage bin and the atomization assembly are both connected to the casing, and the liquid storage bin and the atomization assembly can be connected through the casing separate connection, the atomization component is electrically connected to the power supply component, and is used to heat the aerosol generating substrate that enters the atomization component from the liquid storage chamber;
  • the liquid storage chamber is provided with a liquid storage chamber, the liquid storage chamber is used to store the aerosol generating substrate, the liquid storage chamber is provided with an opening, the opening is provided with a magnetic switch structure, and the atomization A magnetic unlocking piece is connected to the assembly, and a heating chamber is arranged inside the atomization assembly;
  • the magnetic switch structure is used to generate a magnetic interaction with the magnetic unlocking member when the liquid storage chamber body is connected to the atomization assembly through the housing, so as to open the liquid storage cavity and make the storage chamber
  • the liquid chamber communicates with the heating chamber, and closes the liquid storage chamber when the liquid storage chamber body is separated from the atomizing assembly.
  • the magnetic switch structure includes a blocking cover, a first magnet and a connecting piece, the magnetic unlocking piece is a second magnet, the blocking cover is arranged in the liquid storage chamber, and is arranged corresponding to the opening, The connecting piece is arranged through the opening, and the two ends of the connecting piece are respectively connected with the cover and the first magnet;
  • the first magnet is used to generate a mutual repulsion force with the second magnet when the liquid storage chamber body is connected to the atomization assembly through the housing, so that the connecting piece drives the blocking cover away from The direction of the second magnet moves to open the liquid storage chamber, and when the liquid storage chamber body is separated from the atomization assembly, the connecting piece drives the cover to close the liquid storage chamber .
  • the magnetic switch structure further includes an elastic member, one end of the elastic member is connected to the liquid storage chamber body, and the other end is connected to the connecting member, and the elastic member is used to reset the connecting member.
  • Elastic force when the connecting piece is not subjected to external force, the liquid storage chamber is in a closed state.
  • a first passage is provided inside the connector, and a through hole is provided on the side wall of the first passage.
  • the first channel is used to communicate with the heating chamber to allow the aerosol generating substrate to flow from the liquid storage chamber to the heating chamber.
  • the liquid storage chamber includes an upper cover and a base, and the upper cover and the base are mated and connected to enclose and form the liquid storage cavity, the connecting piece is movably connected to the base, and the The opening is arranged on the base, and the two ends of the elastic member are respectively connected with the base and the connecting piece, so that when the connecting piece is not subjected to external force, the cover abuts against the base and is close to the storage.
  • the base includes a bottom cover and a gasket, the gasket is arranged on the side of the bottom cover close to the liquid storage chamber, and the gasket is used to connect with The blocking cover abuts against.
  • the atomization assembly includes an atomization core and a bracket, the bracket is provided with a second channel, the magnetic unlocking member is connected in the bracket, the heating chamber is arranged inside the bracket, and the The atomizing core is connected in the heating chamber, and the atomizing core is used to heat the aerosol generating substrate entering the heating chamber to generate aerosol;
  • the atomizing core When the bracket is connected to the casing, the atomizing core is connected to the power supply assembly, and when the bracket is connected to the liquid storage chamber through the casing, the liquid storage chamber passes through the The second channel communicates with the heating chamber.
  • the support is connected with a first sealing ring, the first sealing ring protrudes from the top surface of the support, the first sealing ring is arranged around the outer periphery of the entrance of the second channel, the The first sealing ring is used to abut against the inner wall of the housing when the bracket is installed in the housing.
  • liquid storage chamber body is provided with a gas passage, the gas passage runs through the liquid storage chamber body, and the gas passage is used to communicate with the heating chamber so that the aerosol in the heating chamber The gas channel is exhausted.
  • the housing is provided with a connecting channel through which the heating cavity communicates with the gas channel, and the gas outlet end of the heating cavity is provided with a second sealing ring, and the second sealing ring is connected to the gas channel.
  • the bracket is connected, the second sealing ring protrudes from the top surface of the bracket, and the second sealing ring is used to abut against the inner wall of the housing when the bracket is installed in the housing.
  • the opening and closing of the liquid storage chamber is controlled by setting a magnetic switch structure at the opening of the liquid storage chamber and the magnetic interaction with the magnetic unlocking member provided on the atomization assembly.
  • Figure 1 is a schematic diagram of the disassembled state of the combined aerosol generating device provided in Embodiment 1 of the present application;
  • Fig. 2 is a cross-sectional view of the liquid storage chamber in the combined aerosol generating device shown in Fig. 1;
  • Fig. 3 is a partial enlarged view of place A in Fig. 2;
  • Fig. 4 is a diagram of the oil filling state of the liquid storage chamber body shown in Fig. 2;
  • Fig. 5 is a schematic diagram of the three-dimensional structure of the atomization component in the combined aerosol generating device shown in Fig. 1;
  • Fig. 6 is a cross-sectional view of the atomization assembly shown in Fig. 5;
  • Fig. 7 is a schematic diagram of the three-dimensional structure of the housing in the combined aerosol generating device shown in Fig. 1;
  • Fig. 8 is a sectional view of the housing shown in Fig. 7;
  • Fig. 9 is a schematic diagram of the disassembled state of the liquid storage chamber and the housing in the combined aerosol generating device shown in Fig. 1;
  • Fig. 10 is a schematic diagram of the connection state between the liquid storage chamber and the housing in the combined aerosol generating device shown in Fig. 1;
  • Fig. 11 is a schematic diagram of the disassembled state of the atomization component and the housing in the combined aerosol generating device shown in Fig. 1;
  • Fig. 12 is a schematic diagram of the connection state of the atomization component and the housing in the combined aerosol generating device shown in Fig. 1;
  • Fig. 13 is a partial enlarged view of place B in Fig. 12;
  • Fig. 14 is a side view of the combined state of the combined aerosol generating device provided by the first embodiment.
  • liquid storage bin body 201
  • liquid storage cavity 202
  • opening 203
  • gas channel 210
  • upper cover 220
  • base 221, bottom cover
  • 222 sealing gasket
  • Atomization component 301. Heating cavity; 3011. Liquid storage area; 3012. Atomization area; 310. Atomization core; , bracket; 321, second channel; 322, groove; 330, first sealing ring; 340, second sealing ring;
  • Fig. 1 to Fig. 14 are Embodiment 1 of the combined aerosol generating device provided by the present application.
  • the embodiment of the present application provides a combined aerosol generating device, referring to FIG. 1 to FIG. 14 , which includes a housing 100 , a liquid storage chamber 200 , an atomizing assembly 300 and a power supply assembly 410 .
  • the power supply assembly 410 is connected inside the housing 100, the liquid storage chamber 200 and the atomization assembly 300 are both connected to the housing 100, the atomization assembly 300 and the liquid storage chamber 200 are detachably connected through the housing 100, the atomization assembly 300 and the The power supply assembly 410 is electrically connected, and is used for heating the aerosol generating substrate entering the atomization assembly 300 from the liquid storage chamber body 200 .
  • the liquid storage chamber 200 is provided with a liquid storage chamber 201, the liquid storage chamber 201 is used to store the aerosol generating substrate, the liquid storage chamber 200 is provided with an opening 202, the opening 202 is provided with a magnetic switch structure 500, and an atomization assembly 300 A magnetic unlocking member 600 is connected to it, and a heating cavity 301 is provided in the atomizing assembly 300 .
  • the magnetic switch structure 500 is used to generate a magnetic interaction with the magnetic unlocking member 600 when the liquid storage chamber body 200 is connected to the atomization assembly 300 through the casing 100 to open the liquid storage chamber 201 and make the liquid storage chamber 201 communicate with the heating chamber 301 , and close the liquid storage chamber 201 when the liquid storage chamber body 200 is separated from the atomization assembly 300 .
  • both the liquid storage chamber body 200 and the atomization assembly 300 are connected to the housing 100, so that the liquid storage chamber body 200, the atomization assembly 300 and the power supply assembly 410 form an integral device through the connection of the housing 100, at this time
  • the magnetic switch structure 500 on the liquid storage chamber body 200 corresponds to the magnetic unlocking part 600 on the atomization assembly 300 and is close to each other.
  • the magnetic switch structure 500 will have a magnetic interaction with the magnetic unlocking part 600 to open the liquid storage chamber 201, so that The liquid storage chamber 201 communicates with the heating chamber 301 , and the aerosol generating substrate can enter the atomization assembly 300 from the liquid storage chamber 201 to be heated to form an aerosol.
  • the liquid storage bin body 200 and/or the atomization assembly 300 are separated from the housing 100, the liquid storage bin body 200 is separated from the atomization assembly 300, and the magnetic switch structure 500 and the magnetic unlocking member 600 will be released as the distance increases. The effect disappears, and the magnetic switch structure 500 closes the liquid storage chamber 201 at this time, and the liquid storage chamber 201 is in a sealed state, and the aerosol generating substrate will not leak out of the liquid storage chamber 201 .
  • liquid storage bin 200 and/or the atomization assembly 300 described in this application are detached from the housing 100, it specifically means that at least the liquid storage bin 200 and the atomization assembly 300 When the casing 100 is detached, the liquid storage chamber body 200 and the atomization assembly 300 will be separated, and the magnetic switch structure 500 will close the liquid storage chamber 201 at this time.
  • both the liquid storage bin 200 and the atomization assembly 300 are detachably connected to the housing 100 , so that the liquid storage bin 200 and the atomization assembly 300 pass through the housing 100 Detachable connection, wherein the liquid storage chamber 200 can be disassembled from the housing 100 separately, so as to fill the liquid storage chamber 201 or replace the liquid storage chamber 200, and the atomization assembly 300 can also be disassembled from the housing 100 separately down for individual maintenance and replacement of the atomizing assembly 300 .
  • the combined aerosol generating device of the present application can also be configured such that the liquid storage chamber 200 is fixedly connected to the housing 100, and the atomization assembly 300 is detachably connected to the housing 100, thereby realizing the liquid storage chamber 200 and the atomization assembly 300 are detachably connected through the housing 100, that is, only the atomization assembly 300 can be separated from the housing 100 for replacement and maintenance of the atomization assembly 300.
  • the magnetic switch structure 500 will close the liquid storage chamber 201 .
  • the combined aerosol generating device of the present application can also be configured such that the liquid storage chamber 200 is detachably connected to the housing 100, and the atomization assembly 300 is fixedly connected to the housing 100, so that the liquid storage chamber 200 and the atomization
  • the assembly 300 is detachably connected through the housing 100 , that is, only the liquid storage bin 200 can be separated from the housing 100 , and when the liquid storage bin 200 is detached from the housing 100 , the magnetic switch structure 500 will close the liquid storage chamber 201 .
  • liquid storage chamber 200 and the atomization assembly 300 described in this application are detachably connected through the housing 100, as long as the liquid storage chamber 200 and the atomization assembly 300 in the combined aerosol generating device At least one of them may be detachably connected to the housing 100 .
  • the liquid storage chamber 200 of the aerosol generating device can be separated from the atomization assembly 300, and when the remaining aerosol generating substrate remains in the liquid storage chamber 200, the liquid storage chamber 200 and the Disassembly of the atomizing assembly 300 will cause oil leakage.
  • the user needs to clear the aerosol generating substrate in the liquid storage chamber 200 in advance to carry out the liquid storage chamber 200 and the atomization assembly 300. Detachment will lead to waste of aerosol generation substrate.
  • the combined aerosol generator has at least the following technical effects:
  • the opening and closing of the liquid storage chamber 201 is controlled by setting the magnetic switch structure 500 at the opening 202 of the liquid storage chamber 200 and the magnetic interaction with the magnetic unlocking member 600 on the atomization assembly 300 .
  • the liquid storage chamber 201 is opened, and the aerosol generating substrate can flow into the atomization assembly 300; when the liquid storage chamber 200 is separated from the atomization assembly 300 , the liquid storage chamber 201 will be closed, and no oil leakage will occur.
  • the user does not need to deliberately empty the aerosol generating substrate in the liquid storage chamber 200, thereby avoiding the waste of the aerosol generating substrate and optimizing the user experience .
  • the magnetic switch structure 500 includes a cover 510, a first magnet 520 and a connecting member 530, the magnetic unlocking member 600 is a second magnet, and the cover 510 It is arranged in the liquid storage chamber 201 and is arranged corresponding to the opening 202.
  • the connecting piece 530 is arranged through the opening 202, and the two ends of the connecting piece 530 are respectively connected with the cover 510 and the first magnet 520;
  • the first magnet 520 is used to generate a mutual repulsion force with the second magnet when the liquid storage chamber body 200 is connected to the atomization assembly 300 through the casing 100, so that the connecting piece 530 drives the blocking cover 510 to move away from the second magnet, so as to
  • the liquid storage chamber 201 is opened, and when the liquid storage chamber body 200 is separated from the atomization assembly 300 , the connecting piece 530 drives the cover 510 to close the liquid storage chamber 201 .
  • the magnetic switch structure 500 further includes an elastic member 540 , one end of the elastic member 540 is connected to the liquid storage chamber body 200 , and the other end is connected to the connecting member 530 , the elastic member 540 is used to provide a restoring elastic force to the connecting member 530, so that when the connecting member 530 is not subjected to external force, the opening 202 is in a closed state.
  • an elastic member 540 is provided between the connecting member 530 and the liquid storage chamber body 200, and the elastic member 540 makes the connection without external force, and the blocking cover 510 maintains a closed state to the liquid storage chamber 201 .
  • the external force described in this application includes the thrust generated by the first magnet 520 on the connecting piece 530 in a direction away from the second magnet, and also includes the pushing force exerted by the user on the connecting piece 530 during oil filling.
  • the arrangement of the elastic member 540 makes the connecting member 530 always exert a pulling force on the cover 510 outward.
  • the cover 510 always covers the opening 202 to prevent the aerosol-generating substrate from flowing out.
  • the liquid storage chamber 201 is in a sealed state, even if the liquid storage chamber body 200 is turned over, there will be no oil leakage; when the connecting piece 530 receives the mutually repulsive thrust exerted by the first magnet 520, the thrust received by the connecting rod overcomes the elasticity
  • the elastic member 540 is compressed, and the blocking cover 510 moves away from the second magnet, thereby opening the liquid storage chamber 201, or when the connecting member 530 is subjected to an external push force applied by the user, the elastic member 540 is compressed, and the blocking cover 510 moves away from the second magnet.
  • the cover 510 moves away from the second magnet to open the liquid storage chamber 201 for oil filling (as shown in FIG. 4 ).
  • the elastic member 540 is a spring, and the spring is sheathed on the outer periphery of the connecting rod.
  • the elastic member 540 may also be a component having an elastic deformation function such as a shrapnel or a flexible member.
  • the magnetic switch structure 500 can also omit the setting of the elastic member 540.
  • the connecting rod When the mutual repulsion force suffered by the first magnet 520 disappears, the connecting rod will be under its own gravity, as well as the blocking cover 510 and the first magnet 520. Under the action of gravity, the cover 510 is driven to move downward, so that the cover 510 covers the opening 202 again, and when the magnetic switch structure 500 is away from the second magnet, the liquid storage chamber 201 returns to the closed state.
  • a first channel 5301 is provided inside the connector 530, and a through hole 5311 is provided on the side wall of the first channel 5301.
  • a channel 5301 communicates.
  • the first passage 5301 is used to communicate with the heating chamber 301 , so that the aerosol generating substrate flows from the liquid storage chamber 201 to the heating chamber 301 .
  • the through hole 5311 on the connector 530 will enter the liquid storage chamber 201, and since the through hole 5311 communicates with the first channel 5301, the first channel 5301 communicates with the outside , so that the liquid storage chamber 201 is in an open state at this time.
  • the first channel 5301 communicates with the heating chamber 301 , so that the aerosol generating substrate in the liquid storage chamber 201 flows into the heating chamber 301 from the first channel 5301 .
  • the user can squeeze the connecting piece 530 toward the inside of the liquid storage chamber 201, so that the through hole 5311 on the connecting piece 530 enters the liquid storage chamber 201, and the liquid storage chamber 201 passes through the The through hole 5311 communicates with the outside atmosphere, and aligns the outlet of the oil filling bottle a with the first channel 5301 , so that the aerosol generating substrate can be injected into the liquid storage chamber 201 through the first channel 5301 .
  • the first channel 5301 serves as a centralized guide for the flow of the aerosol-generating substrate.
  • the liquid storage chamber 200 includes an upper cover 210 and a base 220, and the upper cover 210 and the base 220 are mated and connected to form a liquid storage chamber 201.
  • the connecting piece 530 is movably connected to the base 220, and the opening 202 is arranged On the base 220, the two ends of the elastic member 540 are respectively connected with the base 220 and the connecting member 530, so that when the connecting member 530 is not subjected to external force, the cover 510 abuts against the side surface of the base 220 close to the liquid storage chamber 201, and covers on the opening 202 to close the liquid storage cavity 201 .
  • the base 220 includes a bottom cover 221 and a gasket 222.
  • the gasket 222 is arranged on the side of the bottom cover 221 close to the liquid storage chamber 201.
  • the gasket 222 is used for connecting the connector 530 without external force.
  • the blocking cover 510 abuts.
  • both the cover 510 and the gasket 222 are made of flexible sealing materials.
  • the cover 510 and the gasket 222 made of flexible sealing materials such as silica gel or rubber can better fill the connection gap between the cover 510 and the liquid storage chamber body 200 when the cover 510 covers the opening 202.
  • the sealing effect of the liquid storage chamber 201 is improved.
  • the connector 530 includes a connecting rod 531 and a connecting head 532, the connecting rod 531 is connected to the cover 510, the connecting head 532 is set on the outside of the first magnet 520, and the connecting head 532 is far away from the first magnet 520.
  • One end of the magnet 520 is connected to an end of the connecting rod 531 away from the cover 510 , and the first channel 5301 runs through the connecting rod 531 , the connecting head 532 and the first magnet 520 .
  • the outer diameter of the connecting head 532 is larger than the outer diameter of the connecting rod 531.
  • the elastic member 540 is sleeved on the outside of the connecting rod 531. one end of the first magnet 520 .
  • the diameter of the blocking cover 510 is larger than the aperture of the opening 202, and the aperture of the opening 202 is larger than the outer diameter of the connecting rod portion 531, so that the blocking cover 510 can cover the opening 202 driven by the connecting rod portion 531, and the connecting rod portion 531 can pass through the opening 202 and move relative to the liquid storage chamber 200 at the opening 202 .
  • the bottom of the cover 510 is provided with a stepped structure, which is adapted to the opening 202 , and the stepped structure is used to engage with the opening 202 to improve the sealing effect.
  • the opening 202 is disposed through the bottom cover 221 and the sealing gasket 222 , wherein the apertures of the opening 202 in the part of the bottom cover 221 and the part of the sealing gasket 222 are not equal.
  • the hole diameter of the opening 202 part of the bottom cover 221 is smaller than the hole diameter of the opening 202 part of the sealing gasket 222, and the hole diameter of the opening 202 part of the bottom cover 221 is equal to the outer diameter of the connecting rod part 531, and the hole diameter of the opening 202 part of the sealing gasket 222 is equal to that of the connecting rod part 531.
  • the diameter of the part of the opening 202 is larger than the outer diameter of the connecting rod part 531 .
  • the connecting rod part 531 can slide relative to the liquid storage chamber body 200 and prevent the aerosol generating substrate from leaking out from the connection gap between the connecting rod part 531 and the bottom cover 221 .
  • the diameter of the opening 202 may also be equal to the outer diameter of the connecting rod portion 531 .
  • the through hole 5311 is opened on the side wall of the connecting rod part 531.
  • the side wall of the connecting rod part 531 fits with the opening 202, thereby closing the through hole 5311 and making the gas in the liquid storage chamber 201
  • the sol-generating substrate will not flow out from the through hole 5311, nor will it leak out from the gap between the opening 202 and the connecting rod part 531; when the liquid storage chamber 201 is in an open state, the side wall of the connecting rod part 531 will always Fitting with the opening 202, the through hole 5311 moves to the inside of the liquid storage chamber 201, and the aerosol-generating substrate can only flow out from the through hole 5311 instead of leaking out from the gap between the connecting rod part 531 and the opening 202 .
  • the first channel 5301 can also be omitted for the connecting piece, and the diameter of the blocking cover 510 is larger than the aperture of the opening 202, so that when the blocking cover 510 is removed from the opening 202, the opening 202 is opened and the liquid storage chamber 201 communicates with the heating cavity 301 through the opening 202 . That is, the aerosol-generating substrate can directly flow out from the opening 202 and flow to the heating chamber 301 .
  • the cover 510 covers the opening 202, the cover 510 blocks the outflow of the aerosol generating substrate, and the liquid storage chamber 201 is in a sealed state.
  • the atomization assembly 300 includes an atomization core 310 and a bracket 320, the bracket 320 is provided with a second channel 321, the magnetic unlocking member 600 is connected in the bracket 320, and the heating chamber 301 is set Inside the bracket 320, the atomizing core 310 is connected in the heating chamber 301, and the atomizing core 310 is used to heat the aerosol generating substrate entering the heating chamber 301 to generate aerosol.
  • the atomizing core 310 is connected to the power supply assembly 410 , and when the bracket 320 is connected to the liquid storage chamber 200 through the housing 100 , the liquid storage chamber 201 is connected to the heating chamber through the second channel 321 301 connected.
  • the magnetic unlocking member 600 is a second magnet
  • the second channel 321 runs through the second magnet
  • the second magnet is in the shape of a ring
  • the first channel 5301 runs through the first magnet 520
  • the first magnet 520 is in the shape of a ring
  • Both the first magnet 520 and the second magnet are ring-shaped, that is, only when the ring-shaped first magnet 520 corresponds to the ring-shaped second magnet, the first magnet 520 and the second magnet will generate the maximum mutual repulsion force,
  • the liquid storage chamber 201 is opened; when the ring-shaped first magnet 520 and the ring-shaped second magnet are staggered, the mutual repulsion force will decrease sharply, so that the liquid storage chamber 201 can be quickly closed.
  • the ring-shaped first magnet 520 and the second magnet can improve the switching sensitivity of the liquid storage chamber 201 .
  • first magnet 520 and the second magnet can also be arranged in different shapes, as long as the first magnet 520 and the second magnet can produce mutual repulsion force when they are facing each other.
  • the bracket 320 is detachably installed in the casing 100 . Specifically, when the bracket 320 is connected to the housing 100 , the atomizing core 310 is connected to the power supply assembly 410 to convert electrical energy into thermal energy, thereby heating the aerosol generating substrate entering the heating cavity 301 . When the bracket 320 and the liquid storage chamber 200 are assembled on the housing 100 , the aerosol-generating substrate in the liquid storage chamber 201 flows to the heating chamber 301 through the guide flow of the second channel 321 .
  • the second magnet is arranged on the outer periphery of the second passage 321, and the first magnet 520 is arranged on the outer periphery of the first passage 5301.
  • the first passage 5301 and the second passage 321 also correspond to each other.
  • the first channel 5301 can communicate with the second channel 321 .
  • the bracket 320 is connected with a first sealing ring 330, the first sealing ring 330 protrudes from the top surface of the bracket 320, the first sealing ring 330 is arranged around the outer periphery of the entrance of the second channel 321, the first sealing ring 330 is used to abut against the inner wall of the housing 100 when the bracket 320 is installed in the housing 100 .
  • the first sealing ring 330 is in contact with the inner wall of the housing 100 to prevent the aerosol-generating substrate from flowing from the bracket 320 to the inner wall of the housing 100 during the process of flowing from the liquid storage chamber 201 to the second channel 321 .
  • the connecting gap leaks out.
  • the top of the casing 100 is provided with a first installation groove 102, and the inside of the casing 100 is provided with a second installation groove 103.
  • the first installation groove 102 is used to detachably install the liquid storage bin 200, and the second installation
  • the slot 103 is used for detachably installing the atomization assembly 300 .
  • the first installation slot 102 is located above the second installation slot 103 .
  • the second installation groove 103 is horizontally opened inside the casing 100 , and the atomization assembly 300 can be installed in the second installation groove 103 in a lateral sliding manner. Specifically, the atomization assembly 300 can be slid into the second installation groove 103 from left to right along the transverse direction, and can also be slid into the second installation groove 103 from right to left along the transverse direction.
  • the liquid storage bin 200 when assembling, can be installed in the first installation groove 102 first, so that the liquid storage bin 200 is connected to the top of the housing 100, and then the atomization assembly 300 can be slid into the first installation groove along the lateral direction.
  • the first magnet pushes the connecting part 530 to open the liquid storage chamber 201 under the action of mutual repulsion; when it is necessary to remove the atomization assembly 300 from the second installation groove 103, move the atomization assembly 300 so that the first When the magnet and the magnetic unlocking part 600 are dislocated, the mutual repulsion force decreases or disappears, and the connecting part 530 resets to close the liquid storage chamber 201 .
  • the atomization assembly 300 can also be installed horizontally in the second installation groove 103 first, and then the liquid storage chamber body 200 can be installed in the first installation groove 102 .
  • the distance between the first magnet and the magnetic unlocking member 600 is relatively long, the liquid storage chamber 201 is in a closed state, and after the liquid storage chamber 200 is installed in the first installation groove 102, The distance between the first magnet and the magnetic unlocking member 600 is shortened, and the mutual repulsion force is increased, so that the first magnet moves away from the magnetic unlocking member 600 , thereby opening the liquid storage chamber 201 .
  • the mutual repulsion force decreases or disappears sharply, so as to close the liquid storage chamber 201 again.
  • connection hole 104 is opened between the first installation groove 102 and the second installation groove 103 , and the liquid storage chamber 201 can be connected to the heating chamber 301 through the connection hole 104 .
  • the connecting holes 104 are respectively provided corresponding to the first channel 5301 and the second channel 321 .
  • the liquid storage chamber 200 is provided with a gas passage 203, the gas passage 203 runs through the liquid storage chamber 200, and the gas passage 203 is used to communicate with the heating chamber 301, so that the aerosol in the heating chamber 301 flows from the gas passage 203 discharge.
  • the casing 100 is provided with a connecting channel 101
  • the heating chamber 301 communicates with the gas channel 203 through the connecting channel 101
  • the gas outlet end of the heating chamber 301 is provided with a second sealing ring 340
  • the second sealing ring 340 is connected with the bracket 320
  • the second sealing ring 340 is connected to the bracket 320.
  • the second sealing ring 340 protrudes from the top surface of the bracket 320 , and the second sealing ring 340 is used to abut against the inner wall of the housing 100 when the bracket 320 is installed in the housing 100 .
  • connection channel 101 is disposed between the first installation groove 102 and the second installation groove 103 to communicate with the first installation groove 102 and the second installation groove 103 .
  • the gas channel 203 communicates with the heating chamber 301 through the connecting channel 101 .
  • the second sealing ring 340 is used to fill the connection gap between the bracket 320 and the housing 100 to prevent the aerosol from losing from the gap.
  • the connecting channel 101 protrudes from the inner end surface of the first installation groove 102.
  • the connecting channel 101 and the gas channel 203 are docked, and at the same time, the liquid storage
  • the installation of the bin body 200 in the first installation groove 102 plays a positioning role.
  • the casing 100 is provided with a third sealing ring 700 , and the third sealing ring 700 surrounds the outer periphery of the connecting hole 104 .
  • the third sealing ring 700 is used to abut against the bottom of the oil storage bin.
  • the atomizing core 310 includes a fixed frame 311, a liquid guide 312 and a heating element 313, the liquid guide 312 is connected inside the fixed frame 311, and the fixed frame 311 is provided with an inlet Liquid hole, the liquid guide part 312 is connected to the liquid inlet hole, so that the aerosol generating substrate in the heating chamber 301 enters the liquid guide part 312 through the liquid inlet hole, and the heating element 313 is connected with the liquid guide part 312, and the heating element 313 is used The aerosol-generating substrate that enters the liquid guide 312 is heated.
  • the liquid guiding element 312 may be components such as oil-absorbing cotton, porous ceramics, and porous glass.
  • the heating element 313 can be a heating element such as a heating wire, a heating sheet, a heating mesh or a heating film.
  • the connection between the heating element 313 and the liquid guiding element 312 can be that the heating element 313 is bonded to the surface of the liquid guiding element 312 , or the heating element 313 is embedded inside the liquid guiding element 312 .
  • the heating chamber 301 is separated by a fixed frame 311 to form a liquid storage area 3011 and an atomization area 3012, the liquid storage area 3011 is located outside the fixed frame 311, the liquid storage area 3011 communicates with the second channel 321, and the atomization area 3012 Located inside the fixing frame 311 , the bracket 320 cooperates with the casing 100 to form an air intake channel 105 , and the air intake channel 105 communicates with the atomizing area 3012 .
  • the air intake channel 105 is formed by the groove 322 on the side wall of the bracket 320 cooperating with the inner wall of the second installation groove 103 .
  • the air intake channel 105 can also be opened inside the bracket 320 .
  • the liquid storage area 3011 is used to temporarily store the aerosol that enters the inside of the bracket 320 , so that the aerosol can soak into the liquid guide 312 and penetrate into the inside of the liquid guide 312 .
  • aerosol is formed in the atomization area 3012 , and the airflow entering from the air inlet channel 105 will drive the aerosol in the atomization area 3012 to be discharged from the gas channel 203 together.
  • the second sealing ring 340 is connected to the top periphery of the fixing frame 311 .
  • the atomizing core 310 can also omit the setting of the fixing frame 311, and the heating chamber 301 is divided into the oil storage area and the atomization area 3012 by the liquid guide 312, and one side of the liquid guide 312 is connected to the oil storage area.
  • the aerosol is in contact with the substrate, and the other side is connected with the heating element 313 to generate aerosol in the atomization area 3012.
  • the atomizing core 310 further includes an electrode 314, the electrode 314 is connected to the bottom of the support 320, the electrode 314 is connected to the heating element 313, and the shell 100 is provided with a conductive pin 420, which is connected to the power supply assembly 410 connection, the electrode 314 is electrically connected to the conductive pin 420 .
  • the conductive spring pin 420 is movably connected to the bottom of the second installation slot 103 , and the conductive spring pin 420 protrudes from the bottom end surface of the second installation slot 103 .
  • the conductive spring needle 420 can move relative to the housing 100 , and when the atomization assembly 300 is installed in the second installation groove 103 , the atomization assembly 300 will squeeze the conductive spring needle 420 so that the conductive spring needle 420 moves away from the atomization assembly 300 At the same time, the conductive spring needle 420 will also exert elastic force on the atomization assembly 300, so that after the atomization assembly 300 is installed in place, the conductive spring needle 420 can always keep in contact with the electrode 314 to achieve electrical connection, and can also improve the atomization assembly 300.
  • the stability of the installation in the second installation groove 103 The stability of the installation in the second installation groove 103.
  • the heating element 313 is heated by self-heating through electric heating.
  • the heating mode of the heating element 313 of the present application is not limited to the one mode provided in the above-mentioned embodiments.
  • the atomization assembly 300 also includes an induction coil, the induction assembly is installed in the bracket 320, and is arranged around the outside of the heating element 313, the heating element 313 is connected with the liquid guide 312, and the bracket 320 is installed in the shell When the body 100 is on, the induction coil is electrically connected to the power supply assembly 410, and the induction coil is used to generate electromagnetic induction to the heating element 313, so that the heating element 313 generates heat under the action of electromagnetic induction.
  • the power supply assembly 410 includes a circuit board 411 and a power supply 412 , the power supply 412 is connected to the circuit board 411 , and the circuit board 411 is connected to the conductive pin 420 .

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Abstract

一种组合式气溶胶发生装置,包括:壳体(100)、储液仓体(200)、雾化组件(300)和供电组件(410);供电组件(410)连接在壳体(100)内部,储液仓体(200)、雾化组件(300)均与壳体(100)连接,储液仓体(200)与雾化组件(300)通过壳体(100)可分离连接,雾化组件(300)与供电组件(410)连接,用于加热从储液仓体(200)进入到雾化组件(300)的气溶胶发生基材;储液仓体(200)内设有储液腔(201),储液仓体(200)的开口(202)处设有磁性开关结构(500),雾化组件(300)上连接有磁性解锁件(600),雾化组件(300)内设有加热腔(301);磁性开关结构(500)用于与磁性解锁件(600)产生磁性作用,以打开储液腔(201),并在储液仓体(200)与雾化组件(300)分离时,关闭储液腔(201),不会漏油。

Description

一种组合式气溶胶发生装置
技术领域
本申请涉及气溶胶生成技术领域,更具体地,涉及一种组合式气溶胶发生装置。
背景技术
气溶胶发生装置是一种通过加热气溶胶发生基材,使气溶胶发生基材受热后生成气溶胶以供用户吸食的一种装置。
传统的气溶胶发生装置的各部分结构是不可拆分的,不便于日常维修,当气溶胶发生装置中的雾化组件发生损坏或者使用时间过长时,需要将气溶胶发生装置整个更换,使用成本高,不利于环保。现有的气溶胶发生装置都采用组合的方式进行组装,可以分离储液仓体和雾化组件,便于进行储液仓体的注油、储液仓体或雾化组件的维修、更换。
但是现有的气溶胶发生装置,当储液仓体和雾化组件分离时,若储液仓体内还留有气溶胶发生基材,储液仓体会出现漏油,进而污染到外部环境,给用户带来不佳的使用体验。
发明内容
本申请实施例所要解决的技术问题是现有的气溶胶发生装置将储液仓体与雾化组件分离时,会出现漏油问题。
为了解决上述技术问题,本申请实施例提供一种组合式气溶胶发生装置,采用了如下所述的技术方案:
该组合式气溶胶发生装置,包括:壳体、储液仓体、雾化组件和供电组件;
所述供电组件连接在所述壳体内部,所述储液仓体、所述雾化组件均与所述壳体连接,所述储液仓体与所述雾化组件通过所述壳体可分离连接,所述雾化组件与所述供电组件电连接,用于加热从所述储液仓体进入到所述雾化组件的气溶胶发生基材;
所述储液仓体内设有储液腔,所述储液腔用于储存气溶胶发生基材,所述储液仓体开设有开口,所述开口处设有磁性开关结构,所述雾化组件上连接有磁性解锁件,所述雾化组件内设有加热腔;
所述磁性开关结构用于在所述储液仓体通过所述壳体与所述雾化组件连接时,与所述磁性解锁件产生磁性作用,以打开所述储液腔,使所述储液腔与所述加热腔连通,并在所述储液仓体与所述雾化组件分离时,关闭所述储液腔。
进一步的,所述磁性开关结构包括挡盖、第一磁铁和连接件,所述磁性解锁件为第二磁铁,所述挡盖设置在所述储液腔内,且与所述开口对应设置,所述连接件贯穿于所述开口设置,所述连接件的两端分别与所述挡盖、所述第一磁铁连接;
所述第一磁铁用于在所述储液仓体通过所述壳体与所述雾化组件连接时,与所述第二磁铁产生互斥力,使所述连接件带动所述挡盖向远离所述第二磁铁的方向移动,以打开所述储液腔,并在所述储液仓体与所述雾化组件分离时,使所述连接件带动所述挡盖关闭所述储液腔。
进一步的,所述磁性开关结构还包括弹性件,所述弹性件的一端与所述储液仓体连接,另一端与所述连接件连接,所述弹性件用于对所述连接件提供复位弹力,使所述连接件不受外力作用时,所述储液腔处于关闭状态。
进一步的,所述连接件的内部设有第一通道,所述第一通道的侧壁设有通孔,当所述储液腔处于打开状态时,所述储液腔通过所述通孔与所述第一通道连通;
所述第一通道用于与所述加热腔连通,使气溶胶发生基材从所述储液腔流向所述加热腔。
进一步的,所述储液仓体包括上盖和底座,所述上盖和所述底座配合连接,以围合形成所述储液腔,所述连接件活动连接在所述底座上,所述开口设置在所述底座上,所述弹性件的两端分别与所述底座、所述连接件连接,使所述连接件不受外力作用时,所述挡盖抵接于所述底座靠近储液腔的一侧面上,且覆盖在所述开口上,以关闭所述储液腔。
进一步的,所述底座包括底盖和密封垫,所述密封垫设置在底盖靠近所述储液腔的一侧面上,所述密封垫用于在所述连接件不受外力作用时,与所述挡盖抵接。
进一步的,所述雾化组件包括雾化芯以及支架,所述支架设有第二通道,所述磁性解锁件连接在所述支架内,所述加热腔设置在所述支架的内部,所述雾化芯连接在所述加热腔中,所述雾化芯用于加热进入所述加热腔的气溶胶发生基材,以生成气溶胶;
当所述支架与所述壳体连接时,所述雾化芯与所述供电组件连接,当所述支架通过所述壳体与所述储液仓体连接时,所述储液腔通过所述第二通道与所述加热腔连通。
进一步的,所述支架上连接有第一密封圈,所述第一密封圈凸起于所述支架的顶面,所述第一密封圈环绕设置在所述第二通道的入口外周,所述第一密封圈用于在所述支架安装在所述壳体内时,抵接所述壳体的内壁。
进一步的,所述储液仓体开设有气体通道,所述气体通道贯穿于所述储液仓体,所述气体通道用于与所述加热腔连通,使所述加热腔中的气溶胶从所述气体通道排出。
进一步的,所述壳体设有连接通道,所述加热腔通过所述连接通道与所述气体通道连通,所述加热腔的出气端设有第二密封圈,所述第二密封圈与所述支架连接,所述第二密封圈突起于所述支架的顶面,所述第二密封圈用于在所述支架安装在所述壳体内时,抵接所述壳体的内壁。
与现有技术相比,本申请实施例主要有以下有益效果:
本申请实施例通过在储液仓体的开口处设置磁性开关结构,以及与雾化组件上设置磁性解锁件之间产生的磁性作用,来控制储液腔的启闭。使储液仓体与雾化组件通过壳体连接时,储液腔被打开,气溶胶发生基材能够流入雾化组件中;储液仓体与雾化组件分离时,储液腔就会关闭,不会出现漏油的情况。在分离储液仓体与雾化组件之前,用户也不需要特意清空储液仓体内的气溶胶发生基材,从而避免了气溶胶发生基材的浪费,优化了用户的使用感受。
附图说明
为了更清楚地说明本申请的方案,下面将对实施例描述中所需要使用的附图作一个简单介绍,显而易见地,下面描述中的附图是本申请的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
图1是本申请实施例一提供的组合式气溶胶发生装置的拆分状态示意图;
图2是图1所示组合式气溶胶发生装置中储液仓体的剖视图;
图3是图2中A处的局部放大图;
图4是图2所示储液仓体的注油状态图;
图5是图1所示组合式气溶胶发生装置中雾化组件的立体结构示意图;
图6是图5所示雾化组件的剖视图;
图7是图1所示组合式气溶胶发生装置中壳体的立体结构示意图;
图8是图7所示壳体的剖视图;
图9是图1所示组合式气溶胶发生装置中储液仓体和壳体的拆分状态示意图;
图10是图1所示组合式气溶胶发生装置中储液仓体和壳体的连接状态示意图;
图11是图1所示组合式气溶胶发生装置中雾化组件和壳体的拆分状态示意图;
图12是图1所示组合式气溶胶发生装置中雾化组件和壳体的连接状态示意图;
图13是图12中B处的局部放大图;
图14是实施例一提供的组合式气溶胶发生装置的组合状态侧视图。
附图标记:
100、壳体;101、连接通道;102、第一安装槽;103、第二安装槽;104、连接孔;105、进气通道;
200、储液仓体;201、储液腔;202、开口;203、气体通道;210、上盖;220、底座;221、底盖;222、密封垫;
300、雾化组件;301、加热腔;3011、蓄液区域;3012、雾化区域;310、雾化芯;311、固定架;312、导液件;313、发热体;314、电极;320、支架;321、第二通道;322、凹槽;330、第一密封圈;340、第二密封圈;
410、供电组件;411、电路板;412、电源;420、导电弹针;
500、磁性开关结构;510、挡盖;520、第一磁铁;530、连接件;5301、第一通道;531、连接杆部;5311、通孔;532、连接头部;540、弹性件;
600、磁性解锁件;700、第三密封圈;a、注油瓶。
具体实施方式
除非另有定义,本文所使用的所有的技术和科学术语与属于本申请技术领域的技术人员通常理解的含义相同;本文中在申请的说明书中所使用的术语只是为了描述具体的实施例的目的,不是旨在于限制本申请;本申请的说明书和权利要求书及上述附图说明中的术语“包括”和“具有”以及它们的任何变形,意图在于覆盖不排他的包含。本申请的说明书和权利要求书或上述附图中的术语“第一”、“第二”等是用于区别不同对象,而不是用于描述特定顺序。
在本文中提及“实施例”意味着,结合实施例描述的特定特征、结构或特性可以包含在本申请的至少一个实施例中。在说明书中的各个位置出现该短语并不一定均是指相同的实施例,也不是与其它实施例互斥的独立的或备选的实施例。本领域技术人员显式地和隐式地理解的是,本文所描述的实施例可以与其它实施例相结合。
图1至图14为本申请提供的组合式气溶胶发生装置的实施例一。
本申请实施例提供一种组合式气溶胶发生装置,参阅图1至图14,包括壳体100、储液仓体200、雾化组件300和供电组件410。
供电组件410连接在壳体100内部,储液仓体200、雾化组件300均与壳体100连接,雾化组件300与储液仓体200通过壳体100可分离连接,雾化组件300与供电组件410电连接,用于加热从储液仓体200进入到雾化组件300的气溶胶发生基材。储液仓体200内设有储液腔201,储液腔201用于储存气溶胶发生基材,储液仓体200开设有开口202,开口202处设有磁性开关结构500,雾化组件300上连接有磁性解锁件600,雾化组件300内设有加热腔301。
磁性开关结构500用于在储液仓体200通过壳体100与雾化组件300连接时,与磁性解锁件600产生磁性作用,以打开储液腔201,使储液腔201与加热腔301连通,并在储液仓体200与雾化组件300分离时,关闭储液腔201。
可以理解的,该组合式气溶胶发生装置的工作原理如下:
使用时,储液仓体200和雾化组件300均连接在壳体100上,使储液仓体200、雾化组件300和供电组件410通过壳体100的连接形成一个整体的装置,此时储液仓体200上的磁性开关结构500与雾化组件300上的磁性解锁件600相对应且相互靠近,磁性开关结构500会与磁性解锁件600产生磁性作用,打开储液腔201,以使储液腔201与加热腔301连通,气溶胶发生基材能够从储液腔201进入到雾化组件300中加热形成气溶胶。
当将储液仓体200和/或雾化组件300拆离壳体100时,储液仓体200与雾化组件300分离,随着距离的增加使磁性开关结构500和磁性解锁件600的磁性作用消失,此时磁性开关结构500关闭储液腔201,储液腔201处于密闭状态,气溶胶发生基材不会从储液腔201中泄露出来。
需要说明的是,本申请所述的储液仓体200和/或所述雾化组件300拆离壳体100时,具体是指只要储液仓体200和雾化组件300这两者中至少一个拆离壳体100时,就会形成储液仓体200和雾化组件300的分离,此时磁性开关结构500就会关闭储液腔201。
在本申请提供的实施例中,如图1所示,储液仓体200和雾化组件300均与壳体100可拆卸连接,从而实现储液仓体200与雾化组件300通过壳体100可分离连接,其中,储液仓体200可以单独从壳体100上拆卸下来,以便向储液腔201进行注油或更换储液仓体200,雾化组件300也可以单独从壳体100中拆卸下来,以便雾化组件300的单独维修和更换。
在另外一些实施方式中,本申请的组合式气溶胶发生装置还可以设置为储液仓体200与壳体100固定连接,雾化组件300与壳体100可拆卸连接,从而实现储液仓体200与雾化组件300通过壳体100可分离连接,即只有雾化组件300可以单独拆离壳体100,以便雾化组件300的更换和维修,这种设置方式下,当雾化组件300拆离壳体100时,磁性开关结构500就会关闭储液腔201。当然,本申请的组合式气溶胶发生装置还可以设置为储液仓体200与壳体100可拆卸连接,雾化组件300与壳体100为固定连接,从而实现储液仓体200与雾化组件300通过壳体100可分离连接,即只有储液仓体200可以单独拆离壳体100,储液仓体200拆离壳体100时,磁性开关结构500就会关闭储液腔201。因此,可以理解的是,本申请所述的储液仓体200与雾化组件300通过壳体100可分离连接,只要组合式气溶胶发生装置中的储液仓体200和雾化组件300之间至少一个与壳体100为可拆卸连接即可。
现有技术中,气溶胶发生装置的储液仓体200可以与雾化组件300拆分,而当储液仓体200内留存在剩余的气溶胶发生基材时,将储液仓体200与雾化组件300拆分会造成漏油。为了避免漏油问题,用户在拆分储液仓体200和雾化组件300之前,需要提前清空储液仓体200内的气溶胶发生基材才能对储液仓体200与雾化组件300进行拆离,会导致气溶胶发生基材的浪费。
与现有技术相比,该组合式气溶胶发生装置至少具有以下技术效果:
本申请实施例通过在储液仓体200的开口202处设置磁性开关结构500,以及与雾化组件300上设置磁性解锁件600之间产生的磁性作用,来控制储液腔201的启闭。使储液仓体200与雾化组件300通过壳体100连接时,储液腔201被打开,气溶胶发生基材能够流入雾化组件300中;储液仓体200与雾化组件300分离时,储液腔201就会关闭,不会出现漏油的情况。在分离储液仓体200与雾化组件300之前,用户也不需要特意清空储液仓体200内的气溶胶发生基材,从而避免了气溶胶发生基材的浪费,优化了用户的使用感受。
一个实施例中,如图2至图4、图12和图13所示,磁性开关结构500包括挡盖510、第一磁铁520和连接件530,磁性解锁件600为第二磁铁,挡盖510设置在储液腔201内,且与开口202对应设置,连接件530贯穿于开口202设置,连接件530的两端分别与挡盖510、第一磁铁520连接;
第一磁铁520用于在储液仓体200通过壳体100与雾化组件300连接时,与第二磁铁产生互斥力,使连接件530带动挡盖510向远离第二磁铁的方向移动,以打开储液腔201,并在储液仓体200与雾化组件300分离时,使连接件530带动挡盖510关闭储液腔201。
本实施例中,如图12至图13所示,当储液仓体200与雾化组件300均连接在壳体100上时,第一磁铁520与第二磁铁相对应,第一磁铁520靠近第二磁铁后,会产生同极相斥,使第一磁铁520向远离第二磁铁方向移动,从而使连接件530带动挡盖510向远离第二磁铁的方向移动,挡盖510从开口202处移开,从而打开储液腔201,气溶胶发生基材得以从储液腔201中流动到雾化组件300的加热腔301中;如图2至图3、图9至图10所示,当储液仓体200与雾化组件300分离时,第一磁铁520所受到的互斥力消失,在不受外力作用下,连接件530带动挡盖510复位,以关闭储液腔201。
本实施例中,如图2至图4、图12和图13所示,磁性开关结构500还包括弹性件540,弹性件540的一端与储液仓体200连接,另一端与连接件530连接,弹性件540用于对连接件530提供复位弹力,使连接件530不受外力作用时,开口202处于关闭状态。具体的,在连接件530和储液仓体200之间设置弹性件540,通过弹性件540使连接在不受到外力作用下,挡盖510保持对储液腔201的关闭状态。
需要说明的是,本申请所述的外力作用,包括第一磁铁520对连接件530产生的远离第二磁铁方向的推力,还包括在注油时,用户对连接件530施加的推力。弹性件540的设置使连接件530始终对挡盖510施加向外拉的拉力,当连接件530不受到外力时,挡盖510始终覆盖在开口202处,以阻挡气溶胶发生基材向外流出,储液腔201处于密闭状态,即使储液仓体200翻转,也不会出现漏油的情况;当连接件530受到第一磁铁520施加的互斥推力时,连接杆所受到的推力克服弹性件540的拉力,弹性件540被压缩,挡盖510向远离第二磁铁的方向移动,从而打开储液腔201,或当连接件530受到用户施加的外部推力时,弹性件540被压缩,挡盖510向远离第二磁铁的方向移动,实现储液腔201的打开,以便注油(如图4所示)。
本实施例中,弹性件540为弹簧,弹簧套设在连接杆的外周。在另外一些实施方式中,弹性件540还可以是弹片、柔性件等具有弹性形变功能的部件。
当然,在另外一些实施方式中,磁性开关结构500还可以省略弹性件540的设置,当第一磁铁520所受到的互斥力消失时,连接杆在自身重力、以及挡盖510、第一磁铁520的重力作用下,带动挡盖510向下移动,以使挡盖510重新覆盖于开口202,使磁性开关结构500远离第二磁铁时,储液腔201恢复到关闭状态。
本实施例中,连接件530的内部设有第一通道5301,第一通道5301的侧壁设有通孔5311,当储液腔201处于打开状态时,储液腔201通过通孔5311与第一通道5301连通。第一通道5301用于与加热腔301连通,使气溶胶发生基材从储液腔201流向加热腔301。具体的,当挡盖510从开口202处移开时,连接件530上的通孔5311会进入到储液腔201中,由于通孔5311与第一通道5301连通,第一通道5301与外部连通,使此时储液腔201处于打开状态。当储液仓体200与雾化组件300连接时,第一通道5301与加热腔301连通,使储液腔201内的气溶胶发生基材从第一通道5301流动到加热腔301中。当用户需要对储液腔201注油时,用户可以通过朝储液腔201内部的方向挤压连接件530,使连接件530上的通孔5311进入到储液腔201中,储液腔201通过通孔5311与外界大气连通,并将注油瓶a的出口对准第一通道5301,使气溶胶发生基材能够通过第一通道5301注入到储液腔201中。第一通道5301对气溶胶发生基材的流动起集中导向的作用。
本实施例中,储液仓体200包括上盖210和底座220,上盖210和底座220配合连接,以围合形成储液腔201,连接件530活动连接在底座220上,开口202设置在底座220上,弹性件540的两端分别与底座220、连接件530连接,使连接件530不受外力作用时,挡盖510抵接于底座220靠近储液腔201的一侧面上,且覆盖在开口202上,以关闭储液腔201。
本实施例中,底座220包括底盖221和密封垫222,密封垫222设置在底盖221靠近储液腔201的一侧面上,密封垫222用于在连接件530不受外力作用时,与挡盖510抵接。
本实施例中,挡盖510和密封垫222均由柔性密封材料制成。采用硅胶或橡胶等柔性密封材料制成的挡盖510和密封垫222,使挡盖510覆盖在开口202处时,能够更好的填充挡盖510与储液仓体200之间的连接缝隙,提高储液腔201的密闭效果。
本实施例中,连接件530包括连接杆部531和连接头部532,连接杆部531与挡盖510连接,连接头部532罩设在第一磁铁520的外侧,连接头部532远离第一磁铁520的一端与连接杆部531远离挡盖510的一端连接,第一通道5301贯穿于连接杆部531、连接头部532和第一磁铁520。连接头部532的外直径大于连接杆部531的外直径,弹性件540套设在连接杆部531的外侧,弹性件540的两端分别抵接于储液仓体200和连接头部532远离第一磁铁520的一端。
本实施例中,挡盖510的直径大于开口202的孔径,开口202的孔径大于连接杆部531的外直径,使挡盖510能够在连接杆部531的带动下覆盖于开口202,连接杆部531能够贯穿与开口202,并在开口202处相对储液仓体200移动。
本实施例中,挡盖510的底部设有台阶结构,台阶结构与开口202相适配,台阶结构用于卡合于开口202,提高密封效果。
本实施例中,开口202贯穿底盖221和密封垫222设置,其中开口202在底盖221的部分与在密封垫222的部分中所开设的孔径不相等。具体的,位于底盖221的开口202部分的孔径,小于位于密封垫222的开口202部分的孔径,且底盖221的开口202部分的孔径等于连接杆部531的外直径,位于密封垫222的开口202部分的孔经大于连接杆部531的外直径。使连接杆部531能够相对储液仓体200滑动,且避免气溶胶发生基材从连接杆部531与底盖221的连接缝隙中泄漏出去。
在一些实施方式中,开口202的孔径也可以等于连接杆部531的外直径。通孔5311开设在连接杆部531的侧壁,当储液腔201处于关闭状态时,连接杆部531的侧壁与开口202贴合,从而关闭通孔5311,使储液腔201内的气溶胶发生基材不会从通孔5311流出,也不会从开口202与连接杆部531之间的缝隙中泄露出去;当储液腔201处于打开状态时,连接杆部531的侧壁也始终与开口202贴合,通孔5311移动到储液腔201的内部,气溶胶发生基材能够只能从通孔5311流出,而不会从连接杆部531与开口202之间的缝隙中泄漏出去。
在另外一些实施方式中,连接件还可以省略第一通道5301的设置,挡盖510的直径大于开口202的孔径,使挡盖510从开口202处移开时,开口202被打开,储液腔201通过开口202与加热腔301连通。即气溶胶发生基材可以直接从开口202处流出,并流向加热腔301。当挡盖510覆盖于开口202时,挡盖510阻挡了气溶胶发生基材的外流,储液腔201处于密闭状态。
一个实施例中,如图5至图13所示,雾化组件300包括雾化芯310以及支架320,支架320设有第二通道321,磁性解锁件600连接在支架320内,加热腔301设置在支架320的内部,雾化芯310连接在加热腔301中,雾化芯310用于加热进入加热腔301的气溶胶发生基材,以生成气溶胶。
当支架320与所述壳体100连接时,雾化芯310与供电组件410连接,当支架320通过壳体100与储液仓体200连接时,储液腔201通过第二通道321与加热腔301连通。
本实施例中,磁性解锁件600为第二磁铁,第二通道321贯穿于第二磁铁,第二磁铁呈环状,且第一通道5301贯穿于第一磁铁520,第一磁铁520呈环状。第一磁铁520和第二磁铁均呈环状,即只有当环状的第一磁铁520和环状的第二磁铁相对应时,第一磁铁520和第二磁铁才会产生最大的互斥力,从而打开储液腔201;当环状的第一磁铁520和环状的第二磁铁错开时,互斥力会急剧变小,实现储液腔201的快速关闭。本实施例中,环状结构的第一磁铁520和第二磁铁能够提高储液腔201的开关灵敏度。
当然,在另外一些实施方式中,第一磁铁520、第二磁铁还可以设置成不同形状的结构,只要能够满足第一磁铁520和第二磁铁正对时,能够产生互斥力即可。
本实施例中,支架320可拆卸地安装在壳体100内。具体的,当支架320与壳体100连接时,雾化芯310与供电组件410连接,以将电能转化为热能,从而加热进入到加热腔301内的气溶胶发生基材。当支架320和储液仓体200均组装到壳体100上时,储液腔201中气溶胶发生基材通过第二通道321的导流,流向加热腔301。
第二磁铁设置在第二通道321的外周,且第一磁铁520设置在第一通道5301的外周,当第一磁铁520与第二磁铁相对应时,第一通道5301与第二通道321也相对应,使第一通道5301能够与第二通道321连通。
本实施例中,支架320上连接有第一密封圈330,第一密封圈330凸起于支架320的顶面,第一密封圈330环绕设置在第二通道321的入口外周,第一密封圈330用于在支架320安装在壳体100内时,抵接壳体100的内壁。具体的,第一密封圈330通过与壳体100的内壁抵接,避免气溶胶发生基材从储液腔201中流向第二通道321的过程中,从支架320与壳体100的内壁之间的连接缝隙泄漏出去。
本实施例中,壳体100顶部设有第一安装槽102,壳体100的内部设有第二安装槽103,第一安装槽102用于可拆卸地安装储液仓体200,第二安装槽103用于可拆卸地安装雾化组件300。第一安装槽102位于第二安装槽103的上方。
第二安装槽103横向开设在壳体100的内部,雾化组件300能够横向滑动安装于第二安装槽103中。具体的,雾化组件300可以沿横向从左向右滑入第二安装槽103,也可以沿横向从右向左滑入第二安装槽103中。
可以理解的是,组装时,可以先将储液仓体200安装在第一安装槽102中,使储液仓体200连接在壳体100的顶部,再将雾化组件300沿横向滑动进入第二安装槽103,在雾化组件300横向滑动的过程中,第一磁铁和磁性解锁件600处于错位,储液腔201始终保持关闭,当雾化组件300滑动到位后,第一磁铁与磁性解锁件600对应,第一磁铁在互斥力的作用下推动连接件530打开储液腔201;当需要将雾化组件300从第二安装槽103中拆出时,移动雾化组件300,使第一磁铁与磁性解锁件600发生错位,此时互斥力降低或消失,连接件530复位以关闭储液腔201。
另外一种组装方式中,还可以先将雾化组件300横向安装在第二安装槽103中,再将储液仓体200安装到第一安装槽102中。在储液仓体200安装到第一安装槽102之前,第一磁铁和磁性解锁件600的距离较远,储液腔201处于关闭状态,储液仓体200安装到第一安装槽102后,第一磁铁和磁性解锁件600的距离缩短,互斥力增加,使第一磁铁向远离磁性解锁件600的方向移动,从而打开储液腔201。当储液仓体200从第一安装槽102中拆卸下来后,互斥力急剧减小或消失,以重新关闭储液腔201。
第一安装槽102和第二安装槽103之间开设有连接孔104,储液腔201能够通过连接孔104与加热腔301连接。连接孔104分别与第一通道5301、第二通道321对应设置。
本实施例中,储液仓体200开设有气体通道203,气体通道203贯穿于储液仓体200,气体通道203用于与加热腔301连通,使加热腔301中的气溶胶从气体通道203排出。
进一步的,壳体100设有连接通道101,加热腔301通过连接通道101与气体通道203连通,加热腔301的出气端设有第二密封圈340,第二密封圈340与支架320连接,第二密封圈340突起于支架320的顶面,第二密封圈340用于在支架320安装在壳体100内时,抵接壳体100的内壁。
本实施例中,连接通道101设置在第一安装槽102和第二安装槽103之间,以连通第一安装槽102和第二安装槽103。当储液仓体200安装在第一安装槽102上,支架320安装在第二安装槽103中时,气体通道203通过连接通道101与加热腔301连通。第二密封圈340用于填充支架320与壳体100之间的连接缝隙,避免气溶胶从缝隙中流失。
本实施例中,连接通道101凸出于第一安装槽102的内端面,储液仓体200安装在第一安装槽102内时,连接通道101与气体通道203对接,同时还能对储液仓体200在第一安装槽102内的安装起定位作用。
本实施例中,壳体100设有第三密封圈700,第三密封圈700环绕连接孔104的外周。第三密封圈700用于抵接储油仓体的底部。
本实施例中,如图6至图14所示,雾化芯310包括固定架311、导液件312和发热体313,导液件312连接在固定架311内部,固定架311上开设有进液孔,导液件312连接在进液孔处,使加热腔301内的气溶胶发生基材通过进液孔进入导液件312中,发热体313与导液件312连接,发热体313用于加热进入导液件312中的气溶胶发生基材。
一个实施例中,导液件312可以为吸油棉、多孔陶瓷、多孔玻璃等部件。发热体313可以为发热丝、发热片、发热网或发热膜等发热部件。发热体313与导液件312的连接,可以是将发热体313贴合连接在导液件312的表面,或将发热体313镶嵌在导液件312的内部。
本实施例中,加热腔301通过固定架311分隔形成蓄液区域3011和雾化区域3012,蓄液区域3011位于固定架311的外侧,蓄液区域3011与第二通道321连通,雾化区域3012位于固定架311的内部,支架320与壳体100配合形成进气通道105,进气通道105与雾化区域3012连通。
具体的,雾化组件300安装到第二安装槽103中后,进气通道105由支架320侧壁上的凹槽322与第二安装槽103的内壁配合形成。
一些实施方式中,进气通道105还可以开设在支架320的内部。
具体的,蓄液区域3011用于暂时储存进入到支架320内部的气溶胶,使气溶胶能够浸泡到导液件312,并渗透到导液件312的内部。气溶胶发生基材经过加热后,在雾化区域3012形成气溶胶,从进气通道105进入的气流会带动雾化区域3012的气溶胶一同从气体通道203排出。
具体的,第二密封圈340连接在固定架311的顶部外周。在一些实施方式中,雾化芯310还可以省略固定架311的设置,通过导液件312将加热腔301分隔成蓄油区域和雾化区域3012,导液件312的一侧面与蓄油区域的气溶胶发生基材接触,另一侧面与发热体313连接,以在雾化区域3012生成气溶胶。
本实施例中,雾化芯310还包括电极314,电极314连接于支架320的底部,电极314与发热体313连接,壳体100上设有导电弹针420,导电弹针420与供电组件410连接,电极314与导电弹针420电连接。具体的,导电弹针420活动连接在第二安装槽103的底部,导电弹针420凸出于第二安装槽103的底端面。导电弹针420能够相对壳体100移动,当雾化组件300安装到第二安装槽103中后,雾化组件300会挤压导电弹针420,使导电弹针420向远离雾化组件300的方向移动,同时导电弹针420也会对雾化组件300施加弹力,使雾化组件300安装到位后,导电弹针420能够始终与电极314保持接触实现电连接,还可以提高雾化组件300在第二安装槽103中安装的稳定性。
本实施例中,发热体313采用通电加热的自体发热方式进行加热。需要说明的是,本申请的发热体313的发热方式不限于上述实施例所提供的一种方式。例如,在一些实施方式中,雾化组件300还包括感应线圈,感应组件安装在支架320内,且环绕设置在发热体313的外侧,发热体313与导液件312连接,支架320安装在壳体100上时,感应线圈与供电组件410电连接,感应线圈用于对发热体313产生电磁感应,使发热体313在电磁感应作用下发热。
本实施例中,供电组件410包括电路板411和电源412,电源412与电路板411连接,电路板411与导电弹针420连接。
显然,以上所描述的实施例仅仅是本申请一部分实施例,而不是全部的实施例,附图中给出了本申请的较佳实施例,但并不限制本申请的专利范围。本申请可以以许多不同的形式来实现,相反地,提供这些实施例的目的是使对本申请的公开内容的理解更加透彻全面。尽管参照前述实施例对本申请进行了详细的说明,对于本领域的技术人员来而言,其依然可以对前述各具体实施方式所记载的技术方案进行修改,或者对其中部分技术特征进行等效替换。凡是利用本申请说明书及附图内容所做的等效结构,直接或间接运用在其他相关的技术领域,均同理在本申请专利保护范围之内。

Claims (20)

  1. 一种组合式气溶胶发生装置,其中,包括:
    壳体、储液仓体、雾化组件和供电组件;
    所述供电组件连接在所述壳体内部,所述储液仓体、所述雾化组件均与所述壳体连接,所述储液仓体与所述雾化组件通过所述壳体可分离连接,所述雾化组件与所述供电组件电连接,用于加热从所述储液仓体进入到所述雾化组件的气溶胶发生基材;
    所述储液仓体内设有储液腔,所述储液腔用于储存气溶胶发生基材,所述储液仓体开设有开口,所述开口处设有磁性开关结构,所述雾化组件上连接有磁性解锁件,所述雾化组件内设有加热腔;
    所述磁性开关结构用于在所述储液仓体通过所述壳体与所述雾化组件连接时,与所述磁性解锁件产生磁性作用,以打开所述储液腔,使所述储液腔与所述加热腔连通,并在所述储液仓体与所述雾化组件分离时,关闭所述储液腔。
  2. 根据权利要求1所述的组合式气溶胶发生装置,其中,所述磁性开关结构包括挡盖、第一磁铁和连接件,所述磁性解锁件为第二磁铁,所述挡盖设置在所述储液腔内,且与所述开口对应设置,所述连接件贯穿于所述开口设置,所述连接件的两端分别与所述挡盖、所述第一磁铁连接;
    所述第一磁铁用于在所述储液仓体通过所述壳体与所述雾化组件连接时,与所述第二磁铁产生互斥力,使所述连接件带动所述挡盖向远离所述第二磁铁的方向移动,以打开所述储液腔,并在所述储液仓体与所述雾化组件分离时,使所述连接件带动所述挡盖关闭所述储液腔。
  3. 根据权利要求2所述的组合式气溶胶发生装置,其中,所述磁性开关结构还包括弹性件,所述弹性件的一端与所述储液仓体连接,另一端与所述连接件连接,所述弹性件用于对所述连接件提供复位弹力,使所述连接件不受外力作用时,所述储液腔处于关闭状态。
  4. 根据权利要求3所述的组合式气溶胶发生装置,其中,所述连接件的内部设有第一通道,所述第一通道的侧壁设有通孔,当所述储液腔处于打开状态时,所述储液腔通过所述通孔与所述第一通道连通;
    所述第一通道用于与所述加热腔连通,使气溶胶发生基材从所述储液腔流向所述加热腔。
  5. 根据权利要求4所述的组合式气溶胶发生装置,其中,所述储液仓体包括上盖和底座,所述上盖和所述底座配合连接,以围合形成所述储液腔,所述连接件活动连接在所述底座上,所述开口设置在所述底座上,所述弹性件的两端分别与所述底座、所述连接件连接,使所述连接件不受外力作用时,所述挡盖抵接于所述底座靠近储液腔的一侧面上,且覆盖在所述开口上,以关闭所述储液腔。
  6. 根据权利要求5所述的组合式气溶胶发生装置,其中,所述底座包括底盖和密封垫,所述密封垫设置在底盖靠近所述储液腔的一侧面上,所述密封垫用于在所述连接件不受外力作用时,与所述挡盖抵接。
  7. 根据权利要求1所述的组合式气溶胶发生装置,其中,
    所述雾化组件包括雾化芯以及支架,所述支架设有第二通道,所述磁性解锁件连接在所述支架内,所述加热腔设置在所述支架的内部,所述雾化芯连接在所述加热腔中,所述雾化芯用于加热进入所述加热腔的气溶胶发生基材,以生成气溶胶;
    当所述支架与所述壳体连接时,所述雾化芯与所述供电组件连接,当所述支架通过所述壳体与所述储液仓体连接时,所述储液腔通过所述第二通道与所述加热腔连通。
  8. 根据权利要求7所述的组合式气溶胶发生装置,其中,所述支架上连接有第一密封圈,所述第一密封圈凸起于所述支架的顶面,所述第一密封圈环绕设置在所述第二通道的入口外周,所述第一密封圈用于在所述支架安装在所述壳体内时,抵接所述壳体的内壁。
  9. 根据权利要求8所述的组合式气溶胶发生装置,其中,所述储液仓体开设有气体通道,所述气体通道贯穿于所述储液仓体,所述气体通道用于与所述加热腔连通,使所述加热腔中的气溶胶从所述气体通道排出。
  10. 根据权利要求9所述的组合式气溶胶发生装置,其中,所述壳体设有连接通道,所述加热腔通过所述连接通道与所述气体通道连通,所述加热腔的出气端设有第二密封圈,所述第二密封圈与所述支架连接,所述第二密封圈突起于所述支架的顶面,所述第二密封圈用于在所述支架安装在所述壳体内时,抵接所述壳体的内壁。
  11. 根据权利要求2所述的组合式气溶胶发生装置,其中,
    所述雾化组件包括雾化芯以及支架,所述支架设有第二通道,所述磁性解锁件连接在所述支架内,所述加热腔设置在所述支架的内部,所述雾化芯连接在所述加热腔中,所述雾化芯用于加热进入所述加热腔的气溶胶发生基材,以生成气溶胶;
    当所述支架与所述壳体连接时,所述雾化芯与所述供电组件连接,当所述支架通过所述壳体与所述储液仓体连接时,所述储液腔通过所述第二通道与所述加热腔连通。
  12. 根据权利要求11所述的组合式气溶胶发生装置,其中,所述支架上连接有第一密封圈,所述第一密封圈凸起于所述支架的顶面,所述第一密封圈环绕设置在所述第二通道的入口外周,所述第一密封圈用于在所述支架安装在所述壳体内时,抵接所述壳体的内壁。
  13. 根据权利要求12所述的组合式气溶胶发生装置,其中,所述储液仓体开设有气体通道,所述气体通道贯穿于所述储液仓体,所述气体通道用于与所述加热腔连通,使所述加热腔中的气溶胶从所述气体通道排出。
  14. 根据权利要求13所述的组合式气溶胶发生装置,其中,所述壳体设有连接通道,所述加热腔通过所述连接通道与所述气体通道连通,所述加热腔的出气端设有第二密封圈,所述第二密封圈与所述支架连接,所述第二密封圈突起于所述支架的顶面,所述第二密封圈用于在所述支架安装在所述壳体内时,抵接所述壳体的内壁。
  15. 根据权利要求3所述的组合式气溶胶发生装置,其中,
    所述雾化组件包括雾化芯以及支架,所述支架设有第二通道,所述磁性解锁件连接在所述支架内,所述加热腔设置在所述支架的内部,所述雾化芯连接在所述加热腔中,所述雾化芯用于加热进入所述加热腔的气溶胶发生基材,以生成气溶胶;
    当所述支架与所述壳体连接时,所述雾化芯与所述供电组件连接,当所述支架通过所述壳体与所述储液仓体连接时,所述储液腔通过所述第二通道与所述加热腔连通。
  16. 根据权利要求15所述的组合式气溶胶发生装置,其中,所述支架上连接有第一密封圈,所述第一密封圈凸起于所述支架的顶面,所述第一密封圈环绕设置在所述第二通道的入口外周,所述第一密封圈用于在所述支架安装在所述壳体内时,抵接所述壳体的内壁。
  17. 根据权利要求16所述的组合式气溶胶发生装置,其中,所述储液仓体开设有气体通道,所述气体通道贯穿于所述储液仓体,所述气体通道用于与所述加热腔连通,使所述加热腔中的气溶胶从所述气体通道排出。
  18. 根据权利要求4所述的组合式气溶胶发生装置,其中,
    所述雾化组件包括雾化芯以及支架,所述支架设有第二通道,所述磁性解锁件连接在所述支架内,所述加热腔设置在所述支架的内部,所述雾化芯连接在所述加热腔中,所述雾化芯用于加热进入所述加热腔的气溶胶发生基材,以生成气溶胶;
    当所述支架与所述壳体连接时,所述雾化芯与所述供电组件连接,当所述支架通过所述壳体与所述储液仓体连接时,所述储液腔通过所述第二通道与所述加热腔连通。
  19. 根据权利要求5所述的组合式气溶胶发生装置,其中,
    所述雾化组件包括雾化芯以及支架,所述支架设有第二通道,所述磁性解锁件连接在所述支架内,所述加热腔设置在所述支架的内部,所述雾化芯连接在所述加热腔中,所述雾化芯用于加热进入所述加热腔的气溶胶发生基材,以生成气溶胶;
    当所述支架与所述壳体连接时,所述雾化芯与所述供电组件连接,当所述支架通过所述壳体与所述储液仓体连接时,所述储液腔通过所述第二通道与所述加热腔连通。
  20. 根据权利要求6所述的组合式气溶胶发生装置,其中,
    所述雾化组件包括雾化芯以及支架,所述支架设有第二通道,所述磁性解锁件连接在所述支架内,所述加热腔设置在所述支架的内部,所述雾化芯连接在所述加热腔中,所述雾化芯用于加热进入所述加热腔的气溶胶发生基材,以生成气溶胶;
    当所述支架与所述壳体连接时,所述雾化芯与所述供电组件连接,当所述支架通过所述壳体与所述储液仓体连接时,所述储液腔通过所述第二通道与所述加热腔连通。
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CN113995169A (zh) * 2021-11-10 2022-02-01 吉万(深圳)科技有限公司 一种组合式气溶胶发生装置
CN216796487U (zh) * 2021-11-10 2022-06-24 吉万(深圳)科技有限公司 一种组合式气溶胶发生装置

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