WO2023138046A1 - 一种可通体储液的主机及可通体储液的气溶胶发生装置 - Google Patents

一种可通体储液的主机及可通体储液的气溶胶发生装置 Download PDF

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Publication number
WO2023138046A1
WO2023138046A1 PCT/CN2022/113634 CN2022113634W WO2023138046A1 WO 2023138046 A1 WO2023138046 A1 WO 2023138046A1 CN 2022113634 W CN2022113634 W CN 2022113634W WO 2023138046 A1 WO2023138046 A1 WO 2023138046A1
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WO
WIPO (PCT)
Prior art keywords
power supply
atomizer
air intake
chamber
supply assembly
Prior art date
Application number
PCT/CN2022/113634
Other languages
English (en)
French (fr)
Inventor
杨小明
朱旦
Original Assignee
深圳市吉迩科技有限公司
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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 WO2023138046A1 publication Critical patent/WO2023138046A1/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
    • A24F40/10Devices 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
    • 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
    • A24F40/50Control or monitoring

Definitions

  • the present application relates to the technical field of aerosol generation, and more specifically, to a host capable of storing liquid throughout the body and an aerosol generating device capable of storing liquid throughout the body.
  • Aerosol generating device A device capable of converting an aerosol generating substrate into an aerosol for inhalation or use by a user.
  • the liquid storage chamber is generally installed above the atomizer, and the aerosol generating substrate in the atomized liquid storage chamber is heated and atomized by the atomizer to generate aerosol, and the power supply assembly is arranged below the atomizer to provide electric energy for heating the atomizer.
  • the space occupied by the device makes the space occupied by the device smaller, and at the same time causes the space of the liquid storage chamber to be limited, resulting in a small capacity of the aerosol generating device, and a smaller volume of the aerosol generating substrate that can be stored, which increases the frequency of liquid injection for users, and the user experience is poor.
  • the technical problem to be solved by the embodiment of the present application is that the liquid storage volume of the existing aerosol generating device is small.
  • the embodiment of the present application provides a host that can store liquid all over the body, and adopts the following technical solutions:
  • the main body includes:
  • a housing and a power supply assembly the housing is provided with a liquid storage chamber and an air flow chamber, the housing is sleeved on the outside of the power supply assembly, and the power supply assembly is located in the air flow chamber, the liquid storage chamber is located between the side wall of the air flow chamber and the outer side wall of the housing, and the liquid storage chamber is used to store aerosol generating substrates;
  • the airflow chamber is provided with a space for installing the atomizer, when the atomizer is installed in the airflow chamber, the power supply assembly is electrically connected with the atomizer, and the atomizer separates the liquid storage chamber from the airflow chamber.
  • the outer wall of the housing is made of transparent material.
  • the side wall of the airflow chamber is made of light-guiding material
  • the host computer further includes a light source device, the light source device is arranged in the airflow chamber, and the light source device is electrically connected to the power supply assembly.
  • the embodiment of the present application also provides an aerosol generating device capable of storing liquid throughout the body, which adopts the following technical solution:
  • the aerosol generating device that can store liquid through the whole body includes an atomizer and a host that can store liquid through the whole body as described in any of the above schemes; the atomizer is installed in the airflow cavity of the host, and the atomizer is used to contact the aerosol stored in the liquid storage cavity of the host.
  • the main unit also includes a power supply housing, the power supply assembly is arranged inside the power supply housing, a suction nozzle is provided on the top of the power supply housing, an exhaust channel is provided inside the suction nozzle, and the exhaust passage communicates with the air flow chamber; the atomizer is connected to the end of the power supply housing away from the suction nozzle, the atomizer is located below the power supply assembly, and the gas outlet end of the atomization chamber is arranged at the bottom of the atomizer.
  • a liquid absorbing part is also included, the liquid absorbing part is arranged in the air flow chamber, and the liquid absorbing part is in contact with the atomizer.
  • the atomizer includes a first atomizing core and a second atomizing core, the first atomizing core and the second atomizing core are respectively electrically connected to the power supply assembly, the first atomizing core is connected below the second atomizing core, the first atomizing core is used to atomize the aerosol generating substrate in the liquid storage cavity, and the second atomizing core is used to atomize the condensate in the liquid absorbing member.
  • a condensate blocking structure is provided on the inner side wall of the air flow chamber, and the condensate blocking structure extends toward the inside of the air flow chamber, and the liquid absorbing part is arranged below the condensate blocking structure.
  • a power supply assembly is also included, the power supply assembly is arranged at the bottom of the casing, the power supply assembly is electrically connected with the atomizer, and the power supply assembly is used for connecting with an external power supply device to provide electric energy to the atomizer.
  • the housing also includes an air intake adjustment assembly
  • the bottom of the housing is provided with an air intake hole, the air intake opening communicates with the atomization chamber, the air intake adjustment assembly is detachably connected to the outside of the bottom of the housing, the air intake adjustment assembly is arranged to cover the air intake hole, and the air intake adjustment assembly is used to adjust the amount of gas entering the atomization chamber.
  • an air flow cavity is provided in the shell of the main engine, and the liquid storage cavity is set on the side wall of the air flow cavity and the outer wall of the shell, so that when the power supply assembly is inside the shell, the liquid storage cavity can be set outside the power supply assembly, so that the whole body of the liquid storage cavity can be set in the casing, so that the device can realize liquid storage throughout the whole body, and the volume of the liquid storage cavity can be increased while the space occupied by the device is small, so that the liquid storage cavity can have a larger capacity to accommodate the aerosol-generating substrate, which reduces the user's oil filling operation and is more convenient to use.
  • Fig. 1 is a schematic structural view of Embodiment 1 of a host that can store liquid throughout the body provided by the present application;
  • Fig. 2 is a front structural schematic diagram of Embodiment 1 of an aerosol generating device capable of storing liquid throughout the body provided by the present application;
  • Fig. 3 is a top view of the aerosol generating device capable of storing liquid throughout the body shown in Fig. 2;
  • Fig. 4 is the sectional view of A-A place among Fig. 3;
  • Fig. 5 is a schematic diagram of the air flow of the aerosol generating device capable of storing liquid throughout the body shown in Fig. 4, and the arrows in the figure indicate the flow direction of the gas;
  • Fig. 6 is the sectional view of B-B place among Fig. 3;
  • Figure 7 is a schematic diagram of the air flow of the aerosol generating device that can store liquid throughout the body shown in Figure 6, and the arrows in the figure indicate the flow direction of the gas;
  • Fig. 8 is an exploded view of the aerosol generating device capable of storing liquid throughout the body shown in Fig. 2;
  • Fig. 9 is a schematic diagram of the three-dimensional structure of Embodiment 2 of the aerosol generating device capable of storing liquid throughout the body provided by the present application;
  • Fig. 10 is a top view of the aerosol generating device capable of storing liquid throughout the body shown in Fig. 9;
  • Fig. 11 is the sectional view of C-C place in Fig. 10;
  • Fig. 12 is a schematic diagram of the air flow of the aerosol generating device capable of storing liquid throughout the body shown in Fig. 11, and the arrows in the figure indicate the flow direction of the gas;
  • Fig. 13 is a sectional view at D-D place among Fig. 10;
  • Fig. 14 is a partial enlarged view at F in Fig. 13;
  • Fig. 15 is a schematic diagram of the air flow of the aerosol generating device capable of storing liquid throughout the body shown in Fig. 13, and the arrows in the figure indicate the flow direction of the gas;
  • Fig. 16 is a sectional view at E-E place among Fig. 10;
  • Figure 17 is a schematic diagram of the air flow of the aerosol generating device that can store liquid throughout the body shown in Figure 16, and the arrows in the figure indicate the flow direction of the gas;
  • Fig. 18 is a schematic diagram of the structure of the aerosol generating device capable of storing liquid throughout the body shown in Fig. 9 connected to a magnetic charger.
  • 300 atomizer; 301, atomization cavity; 310, first atomization core; 311, first atomization cavity; 320, second atomization core; 321, second atomization cavity;
  • liquid injection plug 500, liquid injection plug; 600, liquid suction part; 700, liquid storage part;
  • Magnetic charger 1000. Aerosol generating substrate.
  • Embodiment 1 of the host that can store liquid throughout the body of the present application
  • This embodiment provides a host that can store liquid all over the body.
  • the host is provided with an installation space for installing an atomizer 300.
  • the host includes:
  • the shell 100 and the power supply assembly 210, the inside of the shell 100 is provided with a liquid storage chamber 101 and an air flow chamber 102, the shell 100 is sleeved on the outside of the power supply assembly 210, and the power supply assembly 210 is located in the air flow chamber 102, the liquid storage chamber 101 is located between the side wall of the air flow chamber 102 and the outer wall of the shell 100, and the liquid storage chamber 101 is used to store the aerosol generating substrate 1000;
  • the airflow chamber 102 is provided with a space for installing the atomizer 300 , when the atomizer 300 is installed in the airflow chamber 102 , the power supply assembly 210 is electrically connected with the atomizer 300 , and the atomizer 300 separates the liquid storage chamber 101 from the airflow chamber 102 .
  • the host has at least the following technical effects:
  • the airflow chamber 102 is provided in the casing 100 of the host, and the liquid storage chamber 101 is arranged on the side wall of the airflow chamber 102 and the outer wall of the casing 100, so that when the power supply assembly 210 enters the inside of the casing 100, the liquid storage chamber 101 can be arranged on the outside of the power supply assembly 210, so that the whole body of the liquid storage chamber 101 can be set in the casing, so that the device can realize liquid storage throughout the body, and then the liquid storage chamber 101 can be enlarged while occupying a small space.
  • the volume makes the liquid storage chamber 101 have a larger capacity to accommodate the aerosol generating substrate 1000, which reduces the user's oil filling operation and is more convenient to use.
  • the outer wall of the housing 100 is made of transparent material.
  • the outer wall of the housing is the outer wall of the liquid storage chamber 101 , and the outer wall of the housing is made of a transparent material, which is beneficial for the user to directly observe the remaining amount of the aerosol generating substrate 1000 in the liquid storage chamber 101 .
  • the sidewall of the airflow chamber 102 is made of light-transmitting material
  • the host computer further includes a light source device 220 disposed in the airflow chamber 102 , and the light source device 220 is electrically connected to the power supply assembly 210 .
  • the light source device 220 provides brightness for observing the remaining amount of the aerosol generating substrate 1000 .
  • the light emitted by the light source device 220 can be transmitted into the liquid storage chamber 101 through the side wall of the light-guiding air flow chamber 102 , and then transmitted outward through the transparent side wall of the liquid storage chamber 101 , which can be used for illumination.
  • the liquid storage chamber 101 surrounds the outside of the air flow chamber 102 , so that the liquid storage chamber 101 surrounds the air flow chamber 102 , further increasing the storage capacity of the aerosol generating substrate 1000 .
  • Embodiment 1 of an aerosol generating device that can store liquid throughout the body of the present application
  • the embodiment of the present application provides an aerosol generating device capable of storing liquid throughout the body, as shown in FIG. 2 to FIG. 8 , which includes an atomizer 300 and a host capable of storing liquid throughout the body provided in the above embodiments.
  • the atomizer 300 is installed in the airflow chamber 102 of the host.
  • the atomizer 300 is used to contact the aerosol generating substrate 1000 stored in the liquid storage chamber 101 of the host.
  • the atomizer 300 is provided with an atomization chamber 301 which communicates with the airflow chamber 102 of the host.
  • the power supply assembly 210 provides electric energy to the atomizer 300 to heat the aerosol generating substrate 1000 .
  • Both the power supply assembly 210 and the atomizer 300 are disposed in the air flow chamber 102, and the liquid storage chamber 101 is located between the side wall of the air flow chamber 102 and the outer wall of the casing 100, so that the aerosol generating substrate 1000 is stored outside the power supply assembly 210 and the atomizer 300.
  • the atomizer 300 is in contact with the aerosol generating substrate 1000 to heat the aerosol generating substrate 1000 to atomize the aerosol generating substrate 1000 and form an aerosol in the atomizing chamber 301.
  • the aerosol enters the airflow chamber 102 from the atomizing chamber 301 and then is discharged outward for inhalation by the user.
  • the aerosol generator has at least the following technical effects:
  • the airflow cavity 102 is arranged in the shell 100, and the liquid storage cavity 101 is arranged on the side wall of the airflow cavity 102 and the outer wall of the shell 100, so that when the power supply assembly 210 and the nebulizer 300 are installed inside the shell 100, the liquid storage chamber 101 can be set on the outside of the power supply assembly 210 and the nebulizer 300, and can be set as a full-body liquid storage chamber 101, so that the device can realize full-body liquid storage, and then can occupy the space occupied by the device.
  • the volume of the liquid storage chamber 101 is increased while being small, so that the liquid storage chamber 101 can have a larger capacity to accommodate the aerosol generating substrate 1000 , which reduces the user's oil filling operation and is more convenient to use.
  • the atomizer 300 is arranged below the power supply assembly 210, and the liquid storage chamber 101 is arranged around the power supply assembly 210 and the atomizer 300 in the axial direction, so that the outside of the power supply assembly 210 and the atomizer 300 surround the liquid storage chamber 101, which greatly increases the liquid storage capacity of the liquid storage chamber 101, reduces the number of times of liquid filling, and the integrity of the device is stronger.
  • the top of the casing 100 is connected with a suction nozzle 240
  • the host also includes a power supply case 230 and an upper cover 250
  • the power supply assembly 210 is arranged in the power supply case 230
  • the upper cover 250 is connected to the top of the power supply case 230
  • the suction nozzle 240 is located above the upper cover 250
  • an exhaust passage 241 is formed inside the suction nozzle 240, and the exhaust passage 241 communicates with the air flow chamber 102
  • the upper cover 250 is used to connect the exhaust passage 241 with the power supply case 230
  • the inner cavity is separated.
  • the suction nozzle 240 is integrally formed with the casing 100 .
  • the suction nozzle 240 can also be configured to be detachably connected to the housing 100 .
  • the suction nozzle 240 can be disassembled from the casing 100 to expose the power supply assembly 210 in the power supply casing 230 for replacement and maintenance of the power supply assembly 210 .
  • the atomizer 300 is connected to the end of the power shell 230 away from the suction nozzle 240 , the atomizer 300 is located under the power supply assembly 210 , and the gas outlet of the atomization chamber 301 is set at the bottom of the atomizer 300 .
  • the atomizer 300 is connected to the end of the power supply housing 230 away from the suction nozzle 240, so that the aerosol has a longer circulation path in the airflow chamber 102, and the aerosol has enough time to cool down during the circulation of the aerosol in the airflow chamber 102, so as to prevent the temperature of the aerosol inhaled by the user from being too high and affecting the user's smoking experience.
  • the atomizer 300 installed under the power supply assembly 210 and the suction nozzle 240 on the top of the power supply housing 230 are separated by the power supply assembly 210, so that the aerosol atomized and formed in the atomizer 300 has a longer path from the atomizer 300 to the suction nozzle 240.
  • large particles or incompletely atomized aerosols can be fully condensed to form condensate, and the condensate will fall back to the position of the atomizer 300 under the action of gravity to avoid aerosolization of large particles.
  • the glue is discharged from the suction nozzle 240, making the aerosol inhaled by the user more delicate.
  • the liquid storage chamber 101 is separated from the air flow chamber 102 .
  • the power shell 230 is provided with an installation structure (not shown in the figure), the installation structure is located under the power supply assembly 210 , and the installation structure is used for detachable connection with the atomizer 300 .
  • the installation structure is a buckle structure, and the buckle structure is engaged with the atomizer 300 to install the atomizer 300 under the power supply assembly 210 .
  • the installation structure may also be a magnetic attraction structure, and the magnetic attraction structure absorbs the atomizer 300 under the power supply assembly 210 through a magnetic attraction effect.
  • the housing forms a liquid accumulation tank 103 below the atomizer 300 , and the liquid accumulation tank 103 communicates with the airflow cavity 102 .
  • the liquid accumulation tank 103 is used to store the condensed liquid of the aerosol generating substrate 1000 during the atomization process.
  • the aerosol generating device capable of storing liquid throughout the body further includes an air intake adjustment assembly 400.
  • the bottom of the housing 100 is provided with an air intake hole 104, which communicates with the atomization chamber 301.
  • the air intake adjustment assembly 400 is detachably connected to the outside of the bottom of the housing 100.
  • the air intake adjustment assembly 400 is arranged to cover the air intake hole 104.
  • the air intake adjustment assembly 400 is used to adjust the amount of air entering the atomization chamber 301.
  • the air intake adjustment assembly 400 includes a gas-regulating silica gel 410, a breathable mesh 420 and a fixing ring 430.
  • the fixing ring 430 fixes the breathable mesh 420 below the gas-regulating silica gel 410, and the ventilating mesh 420 and the gas-regulating silica gel 410 are installed on the bottom of the housing 100.
  • the breathable mesh 420 and the gas-regulating silica gel 410 are fixedly connected, and the gas-regulating silica gel 410 is rotatably connected to the housing 100.
  • the gas-regulating silica gel 410 is provided with a plurality of air holes 411 with different apertures, and the rotation of the air-regulating silica gel 410 can be controlled by rotating the air-permeable mesh 420, so that the air holes 411 with different apertures are aligned with the air inlet 104, thereby realizing the control of the air intake of the device.
  • a plurality of vent holes 411 are distributed in a circle, when the vent hole 411 with smaller aperture rotates to the position aligned with the air intake hole 104, the air intake volume is small;
  • a closed area is formed between at least two adjacent air holes 411.
  • the air inlet 104 is arranged at the bottom of the casing, so that when the user holds the device from the side, it is not easy to block the air inlet 104 .
  • the air-permeable mesh 420 is made of a hard material, and the air-permeable mesh 420 is arranged under the air-regulating silica gel 410, and there is a space between the air-permeable mesh 420 and the air-regulating silica gel 410, so that even if there is foreign object contact with the bottom of the aerosol generating device, it will not completely block the vent holes 411 of the air-regulating silica gel 410, so that the aerosol generating device can still maintain smooth air flow.
  • the air intake adjustment assembly 400 further includes a waterproof and breathable layer (not shown in the figure), and the waterproof and breathable layer is located between the breathable mesh 420 and the air-regulating silicone 410 .
  • the waterproof and breathable layer can be made of a waterproof and breathable film or fiber material, which can prevent water from entering the bottom of the housing 100 and ensure gas flow in the airflow cavity 102 .
  • a liquid injection hole 105 is provided at the bottom of the casing 100, and the liquid injection hole 105 communicates with the liquid storage chamber 101.
  • the casing 100 is connected with a liquid injection plug 500 at the liquid injection hole 105, and the air intake adjustment assembly 400 is arranged to cover the liquid injection plug 500.
  • the liquid injection plug 500 is detachably connected to the housing 100 , and when liquid needs to be injected into the liquid storage chamber 101 , the liquid injection plug 500 can be pulled out to open the liquid storage chamber 101 for liquid injection.
  • the gas-regulating silica gel 410 and the breathable mesh 420 are covered under the liquid injection plug 500, so that the gas-regulating silica gel 410 and the breathable mesh 420 can cover the liquid injection plug 500, so as to prevent the liquid injection plug 500 from being pulled out due to children's mistaken contact, resulting in leakage of the aerosol from the substrate 1000.
  • Embodiment 2 of the aerosol generating device that can store liquid throughout the body of the present application
  • the atomizer 300 is detachably connected to the power supply case 230
  • the power supply case 230 is detachably connected to the housing 100
  • the top of the power supply case 230 is detachably connected to the suction nozzle 240
  • the suction nozzle 240 is provided with an exhaust channel 241 inside, and the exhaust channel 241 communicates with the air flow chamber 102 .
  • the suction nozzle 240 is located on the top of the power supply housing 230 , and the exhaust passage 241 inside the suction nozzle 240 communicates with the air flow chamber 102 .
  • the air When the user inhales the aerosol, the air enters the atomizing chamber 301 from the air inlet 104 , mixes the aerosol in the atomizing chamber 301 , enters the airflow chamber 102 under the action of suction, then enters the exhaust channel 241 through the airflow chamber 102 , and finally is discharged through the exhaust channel 241 .
  • the suction nozzle 240 is detachably connected to the top of the power supply housing 230.
  • the suction nozzle 240 covers the top of the power supply assembly 210, and the exhaust passage 241 is separated from the power supply assembly 210, so that the aerosol is directly discharged through the exhaust passage 241 to prevent the aerosol from entering the power supply assembly 210.
  • the power supply assembly 210 further includes an upper cover 250 , and the upper cover 250 is detachably installed between the power supply assembly 210 and the suction nozzle 240 .
  • the suction nozzle 240 can be disassembled from the power supply housing 230 and the upper cover 250 can be removed to expose the power supply assembly 210 for further replacement or maintenance of the power supply assembly 210 .
  • a sealing member may be provided at the connection between the upper cover 250 and the power supply case 230 , and the sealing member is used to fill the connection gap between the upper cover 250 and the power supply case 230 to prevent condensate from entering the power supply assembly 210 in the power supply case 230 .
  • the power supply shell 230 is detachably connected to the shell 100 , and the power supply assembly 210 and the suction nozzle 240 can be disassembled from the shell as a whole, so as to clean the airflow cavity 102 .
  • the aerosol generating device further includes a liquid absorbing part 600 , the liquid absorbing part 600 is arranged in the air flow chamber 102 , and the liquid absorbing part 600 is in contact with the atomizer 300 .
  • the atomized aerosol flows into the airflow chamber 102 from the atomization chamber 301, and flows upward along the flow area between the power supply housing 230 and the sidewall of the airflow chamber 102.
  • the temperature of the sidewall of the airflow chamber 102 is relatively low, so that larger particles or incompletely atomized aerosols contact the sidewall of the airflow chamber 102 and form condensate.
  • the condensate slides down along the sidewall of the air flow chamber 102 into the liquid absorbing member 600 , the liquid absorbing member 600 is used to absorb the condensate, and the condensate is atomized again through the atomizer 300 .
  • the atomizer 300 includes a first atomizing core 310 and a second atomizing core 320 , the first atomizing core 310 and the second atomizing core 320 are respectively electrically connected to the power supply assembly 210 , the first atomizing core 310 is connected below the second atomizing core 320 , the first atomizing core 310 is used to atomize the aerosol generating substrate 1000 in the liquid storage chamber 101 , and the second atomizing core 320 is used to atomize the condensate in the liquid absorbing member 600 .
  • the power supply assembly 210 includes a battery 211 and a circuit control board 212 .
  • the battery 211 is electrically connected to the circuit control board 212
  • the first atomizing core 310 and the second atomizing core 320 are respectively connected to the circuit control board 212 .
  • the first atomizing core 310 and the second atomizing core 320 are both controlled by the circuit control board 212 to generate heat as required, and the circuit control board 212 controls the heating power of the first atomizing core 310 and the second atomizing core 320 respectively.
  • the heating power of the first atomizing core 310 is higher than that of the second atomizing core 320 .
  • the upper cover 250 is detachably installed between the battery 211 and the suction nozzle 240 .
  • the atomization chamber 301 is at least composed of a first atomization chamber 311 and a second atomization chamber 321 , the first atomization chamber 311 is located in the first atomization core 310 , and the second atomization chamber 321 is located in the second atomization core 320 .
  • the first atomization chamber 311 communicates with the second atomization chamber 321 , and both the first atomization chamber 311 and the second atomization chamber 321 communicate with the airflow chamber 102 .
  • the first atomizing core 310 includes a first atomizing support and a first heating element, the first atomizing chamber 311 is located in the first atomizing support, the second heating element is installed in the first atomizing support, the first atomizing support is provided with a first liquid guide hole, the first liquid guide hole is arranged corresponding to the liquid storage part 700, and the first heating element is arranged corresponding to the first liquid guide hole.
  • the second atomizing core 320 includes a second atomizing bracket and a second heating element.
  • the second atomizing chamber 321 is located in the second atomizing bracket.
  • the second heating element is installed in the second atomizing bracket.
  • the second atomizing bracket is provided with a second liquid guide hole. Both the first heating element and the second heating element are electrically connected to the circuit control board 212 .
  • the housing is formed with a liquid accumulation tank 103 below the first atomization chamber 311, and the liquid accumulation tank 103 communicates with the air flow chamber 102.
  • the liquid accumulation tank 103 can store the condensate produced by the first atomization core 310 and the second atomization core 320 in the process of atomizing the aerosol generating substrate 1000, so as to prevent the condensate from being sucked out of the device.
  • the aerosol formed in the second atomization chamber 321 first passes through the first atomization chamber 311, and then atomizes the aerosol in the second atomization core 320 through the first atomization core 310.
  • the aerosol in the second atomization chamber 321 After the aerosol in the second atomization chamber 321 is mixed with the aerosol in the first atomization chamber 311, it flows through the liquid accumulation tank 103, and is sucked upward into the airflow chamber 102 under the action of suction, and continues to flow upward along the airflow chamber 102 to the exhaust channel 241. Finally discharged outwards.
  • the liquid accumulation tank 103 is located at the bottom of the housing, and the suction nozzle 240 is located at the top of the housing.
  • the path between the liquid accumulation tank 103 and the exhaust passage 241 of the suction nozzle 240 is relatively long, so that the liquid in the liquid accumulation tank 103 is not easily sucked out.
  • a liquid storage part 700 is provided at the liquid outlet of the liquid storage cavity 101 , and the liquid storage part 700 is in contact with the atomizer 300 .
  • the liquid storage member 700 is made of cotton material.
  • the liquid storage part 700 can buffer the aerosol generating substrate 1000 from flowing out of the liquid storage chamber 101, and can also prevent the second heating element from drying out when the amount of the aerosol generating substrate 1000 in the liquid storage chamber 101 is too low.
  • the power supply assembly 210 also includes an electrode spring pin 213 , the electrode spring pin 213 is electrically connected to the circuit control board 212 , and the electrode spring pin 213 is electrically connected to the atomizer 300 .
  • the atomizer 300 is electrically connected to the circuit control board 212 through the electrode spring pin 213 .
  • the power supply assembly 210 also includes a microphone switch 214 , and the microphone switch 214 is electrically connected to the circuit control board 212 .
  • a microphone cover 215 is provided on the outside of the microphone switch, and the microphone cover 215 is used to fix the microphone switch 214 .
  • the power supply assembly 210 also includes a control board bracket 216 , which is disposed in the power supply housing 230 , and the control board bracket 216 is connected with the circuit control board 212 for fixing the position of the circuit control board 212 .
  • the power supply assembly 210 also includes a charging structure 260 , which is electrically connected to the circuit control board 212 , and the charging structure 260 is arranged in the power supply shell 230 .
  • the charging structure 260 can be a TYPE-C or TYPE-A interface slave, and the charging structure 260 is used to connect with an external power supply device to charge the battery 211 . Since the power supply assembly 210 is detachably connected to the housing 100 . When the battery 211 needs to be charged, the power supply assembly 210 can be disassembled from the housing 100 to expose the charging structure 260 , and the charging structure 260 can be connected to an external power supply device to charge the battery 211 .
  • the aerosol generating device further includes a power supply assembly 800, which is arranged at the bottom of the housing 100, and the power supply assembly 800 is electrically connected to the atomizer 300, and the power supply assembly 800 is used to connect with an external power supply device to provide electric energy to the atomizer 300.
  • a power supply assembly 800 is provided at the bottom of the casing 100. When the power supply assembly 210 is out of power, it can be directly connected to an external power supply device through the power supply assembly 800, so that the external power supply device can directly supply power to the atomizer 300, so that the device can be used normally without charging the power supply assembly 210 first. Anomalies arising from the use of nebulizer 300 .
  • the power supply assembly 800 is arranged at the bottom of the casing, so that the power supply assembly 800 is arranged close to the atomizer 300, so that the wiring between the power supply assembly 800 and the atomizer 300 is short, the resistance is small, and the response speed is fast.
  • the power supply assembly 800 includes a magnetic component 810 , a power supply circuit board 820 and a conductive component 830 , the magnetic component 810 is disposed under the power supply circuit board 820 , the conductive component 830 is electrically connected to the power supply circuit board 820 , and the power supply circuit board 820 is electrically connected to the atomizer 300 .
  • the magnetic attraction member 810 may be a magnet or other components that have a magnetic attraction effect with an external power supply device.
  • the magnetic attraction part 810 is used to attract the external power supply equipment, and make the external power supply equipment contact with the conductive part 830 , so as to realize the electrical connection between the power supply equipment and the atomizing core through the conductive part 830 .
  • the power supply circuit board 820 is also electrically connected to the power supply assembly 210 , and the power supply circuit board 820 controls an external power supply device to supply power to the atomizing core and/or charge the battery 211 .
  • the power supply assembly 800 further includes a key structure 840 , the key structure 840 is disposed under the power supply circuit board 820 , and the key structure 840 is in contact with the power supply circuit board 820 .
  • the user can control the mode switching of the power supply circuit board 820 supplying power to the atomizing core and/or charging the battery 211 through the button structure 840 .
  • the external power supply device described in this embodiment may be the magnetic charger 900 , or other devices capable of supplying electric energy to the atomizer 300 and the battery 211 .
  • a condensate blocking structure 110 is provided on the inner side wall of the airflow chamber 102 , and the condensate blocking structure 110 extends to the inside of the airflow chamber 102 , and a liquid absorbing part 600 is arranged below the condensate blocking structure 110 , and the liquid absorbing part 600 is in contact with the atomizer 300 .
  • the space between the side wall of the power supply housing 230 and the inner side wall of the airflow chamber 102 forms an airflow channel, and the condensate blocking structure 110 is arranged in the airflow channel. Since the sidewall of the airflow chamber 102 is the sidewall of the liquid storage chamber 101, the temperature of the condensate blocking structure 110 is relatively low. Element 600 stores the condensate.
  • the liquid absorbing member 600 is arranged below the air flow area between the condensate blocking structure 110 and the side wall of the power supply housing 230, and a part of the liquid absorbing member 600 is directly below a part of the condensate blocking structure 110.
  • the condensate blocking structure 110 can reduce the temperature of the aerosol, and on the other hand, it can block and condense large particles or incompletely atomized parts of the aerosol, making the discharged aerosol more delicate.
  • the liquid absorbing part 600 can absorb the formed condensate in time to avoid leakage of the condensate when the device is turned over.
  • the liquid absorbing part 600 is in contact with the atomizer 300, so that the atomizer 300 can perform secondary atomization on the condensate in the liquid absorbing part 600, so as to reduce the accumulation of condensate in the device.
  • the condensate blocking structure 110 is arranged in a spiral shape along the side wall of the air flow chamber 102 , and the liquid absorbing member 600 is located at the end of the condensate blocking structure 110 , so that the condensate blocking structure 110 can guide the condensate formed on the side wall of the air flow chamber 102 and guide the condensate into the liquid absorbing member 600 .

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Abstract

本申请实施例属于气溶胶生成技术领域,涉及一种可通体储液的主机及可通体储液的气溶胶发生装置。该可通体储液的主机内部设有用于安装雾化器的安装空间,该主机包括:外壳和电源组件,所述外壳的内部设有储液腔和气流腔,所述外壳套接在所述电源组件的外侧,且所述电源组件位于所述气流腔中,所述储液腔位于所述气流腔的侧壁与所述外壳的外侧壁之间,所述储液腔用于储存气溶胶发生基材;所述气流腔设有用于安装所述雾化器的空间,当所述雾化器安装在所述气流腔中时,所述电源组件与所述雾化器电连接,所述雾化器将所述储液腔和所述气流腔分隔开。本申请提供的技术方案能够使储液腔能够有更大的容量以容纳气溶胶发生基材,减少了用户的注油操作。

Description

一种可通体储液的主机及可通体储液的气溶胶发生装置
技术领域
本申请涉及气溶胶生成技术领域,更具体地,涉及一种可通体储液的主机及可通体储液的气溶胶发生装置。
背景技术
气溶胶发生装置一种能够将气溶胶发生基材转化为气溶胶,以供用户吸食或使用的装置。
现有的气溶胶发生装置一般是将储液腔安装在雾化器的上方,通过雾化器加热雾化储液腔中的气溶胶发生基材,以生成气溶胶,而电源组件则设置在雾化器的下方,以向雾化器的加热提供电能。但这样的气溶胶发生装置在使装置所占的空间更小的同时,会造成储液腔的空间受限,导致气溶胶发生装置的容量小,所能储存的气溶胶发生基材的体积较小,增加了用户的注液频次,用户的使用体验感较差。
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的储液量小。
为了解决上述技术问题,本申请实施例提供可通体储液的主机,采用了如下所述的技术方案:
该可通体储液的主机内部设有用于安装雾化器的安装空间,该主机包括:
外壳和电源组件,所述外壳的内部设有储液腔和气流腔,所述外壳套接在所述电源组件的外侧,且所述电源组件位于所述气流腔中,所述储液腔位于所述气流腔的侧壁与所述外壳的外侧壁之间,所述储液腔用于储存气溶胶发生基材;
所述气流腔设有用于安装所述雾化器的空间,当所述雾化器安装在所述气流腔中时,所述电源组件与所述雾化器电连接,所述雾化器将所述储液腔和所述气流腔分隔开。
进一步的,所述外壳的外侧壁由透明材质制成。
进一步的,所述气流腔的侧壁由导光材料制成,主机还包括光源器件,所述光源器件设置在所述气流腔中,所述光源器件与所述电源组件电连接。
为了解决上述技术问题,本申请实施例还提供一种可通体储液的气溶胶发生装置,采用了如下所述的技术方案:
该可通体储液的气溶胶发生装置包括雾化器和如上述任一方案所述的可通体储液的主机;所述雾化器安装在所述主机的气流腔中,所述雾化器用于与储存在所述主机储液腔中的气溶胶发生基材接触,所述雾化器的内部设有雾化腔,所述雾化腔与所述主机的气流腔连通。
进一步的,所述主机还包括电源壳,所述电源组件设置在所述电源壳的内部,所述电源壳的顶部设置有吸嘴,所述吸嘴的内部设有排气通道,所述排气通道与所述气流腔连通;所述雾化器连接在所述电源壳远离所述吸嘴的一端,所述雾化器位于所述电源组件的下方,所述雾化腔的出气端设置在所述雾化器的底部。
进一步的,还包括吸液件,所述吸液件设置在所述气流腔中,所述吸液件与所述雾化器接触。
进一步的,所述雾化器包括第一雾化芯和第二雾化芯,所述第一雾化芯和第二雾化芯分别与所述电源组件电连接,所述第一雾化芯连接在所述第二雾化芯的下方,所述第一雾化芯用于雾化所述储液腔中的气溶胶发生基材,所述第二雾化芯用于雾化所述吸液件中的冷凝液。
进一步的,所述气流腔的内侧壁设有冷凝液阻挡结构,所述冷凝液阻挡结构向所述气流腔的内部延伸,所述吸液件设置在所述冷凝液阻挡结构的下方。
进一步的,还包括供电组件,所述供电组件设置在所述外壳的底部,所述供电组件与所述雾化器电连接,所述供电组件用于与外部的供电设备连接,以向所述雾化器提供电能。
进一步的,还包括进气调节组件,所述外壳的底部设有进气孔,所述进气孔与所述雾化腔连通,所述进气调节组件可拆卸地连接在所述外壳的底部外侧,所述进气调节组件覆盖所述进气孔设置,所述进气调节组件用于调节气体进入到所述雾化腔的进气量。
与现有技术相比,本申请实施例主要有以下有益效果:
本申请的实施例通过在主机的外壳内设置气流腔,并将储液腔设置在气流腔的侧壁与外壳的外侧壁上,使电源组件到外壳的内部时,储液腔能够设置在电源组件的外侧,使壳体内可以设置成通体的储液腔,以使装置能够实现通体储液,进而能在装置所占空间较小的同时增大储液腔的体积,使储液腔能够有更大的容量以容纳气溶胶发生基材,减少了用户的注油操作,使用更加方便。
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是本申请提供的可通体储液的主机实施例一的结构示意图;
图2是本申请提供的可通体储液的气溶胶发生装置实施例一的主视结构示意图;
图3是图2所示可通体储液的气溶胶发生装置的俯视图;
图4是图3中A-A处的剖视图;
图5是图4所示可通体储液的气溶胶发生装置的气流示意图,图中箭头所示为气体的流通方向;
图6是图3中B-B处的剖视图;
图7是图6所示可通体储液的气溶胶发生装置的气流示意图,图中箭头所示为气体的流通方向;
图8是图2所示可通体储液的气溶胶发生装置的***图;
图9是本申请提供的可通体储液的气溶胶发生装置实施例二的立体结构示意图;
图10是图9所示可通体储液的气溶胶发生装置的俯视图;
图11是图10中C-C处的剖视图;
图12是图11所示可通体储液的气溶胶发生装置的气流示意图,图中箭头所示为气体的流通方向;
图13是图10中D-D处的剖视图;
图14是图13中F处的局部放大图;
图15是图13所示可通体储液的气溶胶发生装置的气流示意图,图中箭头所示为气体的流通方向;
图16是图10中E-E处的剖视图;
图17是图16所示可通体储液的气溶胶发生装置的气流示意图,图中箭头所示为气体的流通方向;
图18是图9所示可通体储液的气溶胶发生装置与磁吸充电器连接的结构示意图。
附图标记:
100、外壳;101、储液腔;102、气流腔;103、积液槽;104、进气孔;105、注液孔;110、冷凝液阻挡结构;
210、电源组件;211、电池;212、电路控制板;213、电极弹针;214、咪头开关;215、咪头套;216、控制板支架;
220、光源器件;230、电源壳;240、吸嘴;241、排气通道;250、上盖;260、充电结构;
300、雾化器;301、雾化腔;310、第一雾化芯;311、第一雾化腔;320、第二雾化芯;321、第二雾化腔;
400、进气调节组件;410、调气硅胶;411、透气孔;420、透气网;430、固定环;
500、注液塞;600、吸液件;700、储液件;
800、供电组件;810、磁吸件;820、供电电路板;830、导电件;840、按键结构;
900、磁吸充电器;1000、气溶胶发生基材。
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。
本申请可通体储液的主机的实施例一
本实施例提供一种可通体储液的主机,参阅图1,该主机内部设有用于安装雾化器300的安装空间,主机包括:
外壳100和电源组件210,外壳100的内部设有储液腔101和气流腔102,外壳100套接在电源组件210的外侧,且电源组件210位于气流腔102中,储液腔101位于气流腔102的侧壁与外壳100的外侧壁之间,储液腔101用于储存气溶胶发生基材1000;
气流腔102设有用于安装雾化器300的空间,当雾化器300安装在气流腔102中时,电源组件210与雾化器300电连接,雾化器300将储液腔101和气流腔102分隔开。
与现有技术相比,该主机至少具有以下技术效果:
本申请的实施例通过在主机的外壳100内设置气流腔102,并将储液腔101设置在气流腔102的侧壁与外壳100的外侧壁上,使电源组件210到外壳100的内部时,储液腔101能够设置在电源组件210的外侧,使壳体内可以设置成通体的储液腔101,以使装置能够实现通体储液,进而能在装置所占空间较小的同时增大储液腔101的体积,使储液腔101能够有更大的容量以容纳气溶胶发生基材1000,减少了用户的注油操作,使用更加方便。
本实施例中,外壳100的外侧壁由透明材质制成。具体的,壳体的外侧壁为储液腔101的外侧壁,将壳体的外侧壁设置为透明材质,有利于用户直接观察储液腔101中气溶胶发生基材1000的剩余量。
本实施例中,气流腔102的侧壁由透光材料制成,主机还包括光源器件220,光源器件220设置在气流腔102中,光源器件220与电源组件210电连接。具体的,光源器件220为观察气溶胶发生基材1000的剩余量提供了亮度。并且,光源器件220发出的光线可以透过导光的气流腔102的侧壁透射到储液腔101中,再通过透明的储液腔101的侧壁向外透射,可以用于照明。
本实施例中,储液腔101环绕设置气流腔102的外侧,使储液腔101包围气流腔102,进一步加大了气溶胶发生基材1000的储存量。
本申请可通体储液的气溶胶发生装置的实施例一
本申请实施例提供一种可通体储液的气溶胶发生装置,参阅图2至图8,包括雾化器300和上述实施例提供的可通体储液的主机。雾化器300安装在主机的气流腔102中,雾化器300用于与储存在主机储液腔101中的气溶胶发生基材1000接触,雾化器300的内部设有雾化腔301,雾化腔301与主机的气流腔102连通。
可以理解的,该气溶胶发生装置的工作原理如下:
电源组件210向雾化器300加热气溶胶发生基材1000提供电能。电源组件210和雾化器300均设置在气流腔102中,储液腔101位于气流腔102的侧壁与外壳100的外侧壁之间,使气溶胶发生基材1000储存在电源组件210和雾化器300的外侧。雾化器300与气溶胶发生基材1000接触,以加热气溶胶发生基材1000,使气溶胶发生基材1000雾化并在雾化腔301中形成气溶胶,气溶胶从雾化腔301进入到气流腔102中,再向外排出,供用户吸食。
综上,与现有技术相比,该气溶胶发生装置至少具有以下技术效果:
本申请的实施例通过将外壳100内设置气流腔102,并将储液腔101设置在气流腔102的侧壁与外壳100的外侧壁上,使电源组件210和雾化器300安装到外壳100的内部时,储液腔101能够设置在电源组件210和雾化器300的外侧,可以设置成通体的储液腔101,以使装置能够实现通体储液,进而能在装置所占空间较小的同时增大储液腔101的体积,使储液腔101能够有更大的容量以容纳气溶胶发生基材1000,减少了用户的注油操作,使用更加方便。
本实施例中,雾化器300设置在电源组件210的下方,且储液腔101在轴向环绕电源组件210和雾化器300设置,使电源组件210和雾化器300的外侧均环绕了储液腔101,大大增加了储液腔101的储液量,减少装液次数,且装置的整体性更强,外壳100呈通体储液腔101设置。
本实施例中,外壳100的顶部连接有吸嘴240,主机还包括电源壳230和上盖250,电源组件210设置在电源壳230内,上盖250连接在电源壳230的顶部,吸嘴240位于上盖250的上方,吸嘴240内部形成有排气通道241,排气通道241与气流腔102连通,上盖250用于将排气通道241与电源壳230的内腔分隔开。本实施例中,吸嘴240与外壳100一体成型。
在一些实施方式中,吸嘴240还可以设置为与外壳100可拆卸连接。吸嘴240可以在外壳100上拆卸下来,以露出电源壳230内的电源组件210,以便电源组件210的更换和维护,吸嘴240拆卸后还可以便于电源壳230和电源组件210从外壳100中拆卸下来,以进行整体更换以及对外壳100的内部进行清洗。
雾化器300连接在电源壳230远离吸嘴240的一端,雾化器300位于电源组件210的下方,雾化腔301的出气端设置在雾化器300的底部。具体的,雾化器300连接在电源壳230内远离吸嘴240的一端,使气溶胶在气流腔102中的流通路径更长,气溶胶在气流腔102的流通过程中,有足够的时间降温,避免用户吸出的气溶胶温度过高,影响用户的吸食体验。安装在电源组件210下方的雾化器300与电源壳230顶部的吸嘴240之间隔着电源组件210,从而使在雾化器300中雾化形成的气溶胶,从雾化器300流向吸嘴240的路径更长,在流动的过程中能够将大颗粒或未完全雾化的气溶胶充分冷凝形成冷凝液,冷凝液在重力作用下会回落到雾化器300的位置,避免大颗粒气溶胶从吸嘴240排出,使用户吸出的气溶胶更加细腻。
本实施例中,雾化器300安装在壳体内后,将储液腔101与气流腔102分隔开。
本实施例中,电源壳230设有安装结构(图中未示出),安装结构位于电源组件210的下方,安装结构用于与所述雾化器300可拆卸连接。
本实施例中,安装结构为卡扣结构,卡扣结构与雾化器300卡合连接,以将雾化器300安装在电源组件210的下方。
当然,在另外一些实施方式中,安装结构还可以是磁吸结构,磁吸结构通过磁吸作用将雾化器300吸附在电源组件210的下方。
本实施例中,壳体在雾化器300的下方形成有积液槽103,积液槽103与气流腔102连通。积液槽103用于储存气溶胶发生基材1000在雾化过程中的冷凝液。
本实施例中,可通体储液的气溶胶发生装置还包括进气调节组件400,外壳100的底部设有进气孔104,进气孔104与雾化腔301连通,进气调节组件400可拆卸地连接在外壳100的底部外侧,进气调节组件400覆盖进气孔104设置,进气调节组件400用于调节气体进入到雾化腔301的进气量。
具体的,进气调节组件400包括调气硅胶410、透气网420以及固定环430,固定环430将透气网420固定在调气硅胶410的下方,并腔透气网420和调气硅胶410安装到外壳100的底部,透气网420和调气硅胶410固定连接,调气硅胶410与外壳100转动连接。调气硅胶410上设有多个孔径不同的透气孔411,通过转动透气网420能够控制调气硅胶410转动,以使不同孔径的透气孔411对准进气孔104,从而实现装置进气量大小的控制。
其中,多个透气孔411呈圆周分布,当孔径较小的透气孔411转动到与进气孔104对准的位置上时,进气量较小;当孔径较大的透气孔411转动到与进气孔104对准的位置上时,进气量较大。其中,至少两个相邻的透气孔411之间形成密闭区域,当转动调气硅胶410至密闭区域对准进气孔104时,进气孔104被堵住,此时,进气孔104处于关闭状态,气流无法进入到气流腔102中形成装置内的气体流动,使雾化腔301中的气溶胶无法被吸出,能够有效避免儿童误食气溶胶。
具体的,进气孔104设置在壳体的底部,使用户从侧面手握着装置时,不容易堵住进气孔104。透气网420由硬质材料制成,透气网420设置在调气硅胶410的下方,且透气网420和调气硅胶410之间形成有间隔区域,使气溶胶发生装置的底部即使有外物接触,也不会完全遮挡住调气硅胶410的透气孔411,使气溶胶发生装置依然能够保持气流通畅。
一些实施方式中,进气调节组件400还包括防水透气层(图中未示出),防水透气层位于透气网420和调气硅胶410之间。本实施例中,防水透气层可以采用防水透气膜或纤维材料制成,能够防止外壳100的底部进水,同时保证气流腔102内能够实现气体流通。
本实施例中,外壳100的底部还设有注液孔105,注液孔105与储液腔101连通,外壳100在注液孔105处连接有注液塞500,进气调节组件400覆盖注液塞500设置。具体的,注液塞500与外壳100为可拆卸连接,当需要往储液腔101中注液时,可以拔出注液塞500,以打开储液腔101进行注液。其中,调气硅胶410和透气网420覆盖在注液塞500的下方,使调气硅胶410和透气网420对注液塞500起遮盖的作用,避免儿童误接触导致注液塞500被拔出,导致气溶胶发生基材1000的泄露。
本申请可通体储液的气溶胶发生装置的实施例二
参阅图9至图18,本实施例中,雾化器300与电源壳230可拆卸连接,电源壳230与外壳100可拆卸连接,电源壳230的顶部与吸嘴240可拆卸连接,吸嘴240的内部设有排气通道241,排气通道241与气流腔102连通。具体的,吸嘴240位于电源壳230的顶部,吸嘴240内部排气通道241与气流腔102连通。用户在吸食气溶胶时,空气从进气孔104进入雾化腔301中,混合了雾化腔301中的气溶胶后,在吸力作用下进入到气流腔102中,再经过气流腔102进入到排气通道241,最后通过排气通道241向外排出。
具体的,吸嘴240与电源壳230的顶部可拆卸连接,当吸嘴240安装在电源壳230的顶部时,吸嘴240覆盖在电源组件210的上方,且排气通道241与电源组件210为分隔设置,以使气溶胶直接经过排气通道241向外排出,避免气溶胶进入到电源组件210中。
本实施例中,电源组件210还包括上盖250,上盖250可拆卸地安装在电源组件210和吸嘴240之间。当需要更换或维护电源组件210时,可以将吸嘴240从电源壳230上拆卸下来,并将上盖250拆卸下来,以露出电源组件210,以对电源组件210进行进行进一步的更换或维护。
本实施例中,上盖250与电源壳230的连接处可以设置密封件,密封件用于填充上盖250与电源壳230之间的连接缝隙,避免冷凝液进入到电源壳230内的电源组件210中。
电源壳230与外壳100可拆卸连接,可以将电源组件210与吸嘴240作为一个整体从壳体中拆卸出来,以便清理气流腔102。
本实施例中,气溶胶发生装置还包括吸液件600,吸液件600设置在气流腔102中,吸液件600与雾化器300接触。具体的,雾化后的气溶胶从雾化腔301流入气流腔102中,并沿电源壳230和气流腔102的侧壁之间的流通区域向上流动,在流动过程中,由于气流腔102的侧壁直接与储液腔101内的气溶胶发生基材1000接触,气流腔102的侧壁温度较低,使颗粒较大或未完全雾化的气溶胶接触到气流腔102的侧壁后会形成冷凝液,冷凝液沿气流腔102的侧壁滑落进入吸液件600,吸液件600用于吸取冷凝液,并将冷凝液通过雾化器300进行再次雾化。
本实施例中,雾化器300包括第一雾化芯310和第二雾化芯320,第一雾化芯310和第二雾化芯320分别与电源组件210电连接,第一雾化芯310连接在第二雾化芯320的下方,第一雾化芯310用于雾化储液腔101中的气溶胶发生基材1000,第二雾化芯320用于雾化吸液件600中的冷凝液。
具体的,电源组件210包括电池211和电路控制板212。电池211与电路控制板212电连接,第一雾化芯310和第二雾化芯320分别与电路控制板212连接。其中,第一雾化芯310和第二雾化芯320均由电路控制板212根据需要控制是否发热,并由电路控制板212分别控制第一雾化芯310和第二雾化芯320的发热功率。本实施例中,第一雾化芯310的发热功率高于第二雾化芯320的发热功率。
具体的,上盖250可拆卸地安装在电池211和吸嘴240之间。
本实施例中,雾化腔301至少由第一雾化腔311和第二雾化腔321组成,第一雾化腔311位于第一雾化芯310内,第二雾化腔321位于第二雾化芯320内。第一雾化腔311和第二雾化腔321连通,且第一雾化腔311和第二雾化腔321均与气流腔102连通。第一雾化芯310包括第一雾化支架和第一发热体,第一雾化腔311位于第一雾化支架内,第二发热体安装在第一雾化支架内,第一雾化支架设有第一导液孔,第一导液孔与储液件700对应设置,第一发热体与第一导液孔对应设置。第二雾化芯320包括第二雾化支架和第二发热体,第二雾化腔321位于第二雾化支架内,第二发热体安装在第二雾化支架内,第二雾化支架设有第二导液孔,第二导液孔与吸液件600对应设置,第二发热体与第二导液孔对应设置。第一发热体与第二发热体均与电路控制板212电连接。
壳体在第一雾化腔311的下方形成有积液槽103,积液槽103与气流腔102连通,积液槽103能够储存第一雾化芯310和第二雾化芯320在雾化气溶胶发生基材1000过程中所产生的冷凝液,避免这些冷凝液被吸出装置外。在第二雾化腔321所形成的气溶胶先经过第一雾化腔311,通过第一雾化芯310对第二雾化芯320内的气溶胶进行二次雾化,且第二雾化腔321内的气溶胶与第一雾化腔311内的气溶胶混合后,再流经积液槽103,在吸力作用下被向上吸入到气流腔102中,并沿气流腔102继续向上流动到排气通道241,最后向外排出。其中,积液槽103位于壳体的底部,而吸嘴240位于壳体的顶部,积液槽103与吸嘴240的排气通道241之间的路径较长,使积液槽103中的液体不容易被吸出。
具体的,储液腔101的出液口处设置有储液件700,储液件700与雾化器300接触。储液件700由棉质材料制成。储液件700能够对气溶胶发生基材1000流出储液腔101起缓冲的作用,还能避免储液腔101内气溶胶发生基材1000的量过低时,第二发热体出现干烧的情况。
进一步,电源组件210还包括电极弹针213,电极弹针213与电路控制板212电连接,电极弹针213与雾化器300电连接。具体的, 雾化器300通过电极弹针213与电路控制板212电连接。
电源组件210还包括咪头开关214,咪头开关214与电路控制板212电连接。本实施例中,咪开关的外侧套设有咪头套215,咪头套215用于固定咪头开关214。
电源组件210还包括控制板支架216,控制板支架216设置在电源壳230内,控制板支架216与电路控制板212连接,用于固定电路控制板212的位置。
电源组件210还包括充电结构260,充电结构260与电路控制板212电连接,充电结构260设置在电源壳230内。充电结构260可以为TYPE-C或者TYPE-A接口从,充电结构260用于与外部的供电设备连接,以向电池211充电。由于电源组件210与外壳100为可拆卸连接。当需要对电池211进行充电时,可以将电源组件210从外壳100中拆卸出来,以露出充电结构260,将充电结构260与外部的供电设备连接,以实现对电池211的充电。
本实施例中,气溶胶发生装置还包括供电组件800,供电组件800设置在外壳100的底部,供电组件800与雾化器300电连接,供电组件800用于与外部的供电设备连接,以向雾化器300提供电能。在外壳100的底部设置供电组件800,当电源组件210没电时,可以直接通过供电组件800与外部的供电设备连接,使外部供电设备直接向雾化器300供电,使装置能够正常使用,而不需要先对电源组件210进行充电再使用,即使在电源组件210没电的情况下,也可以直接通过外部供电设备进行供电,不影响装置的使用,还能减少对电池211的损耗,避免一边对电池211进行充电一边使用雾化器300所产生的异常。供电组件800设置在壳体的底部,使供电组件800靠近雾化器300设置,使供电组件800与雾化器300之间的布线短,电阻小,响应速度快。
具体的,供电组件800包括磁吸件810、供电电路板820和导电件830,磁吸件810设置在供电电路板820的下方,导电件830与供电电路板820电连接,供电电路板820与雾化器300电连接。
本实施例中,磁吸件810可以为磁铁或其他与外部供电设备产生磁吸作用的部件。磁吸件810用于吸附外部的供电设备,使外部的供电设备与导电件830接触,从而实现供电设备通过导电件830与雾化芯电连接。
本实施例中,供电电路板820还与电源组件210电连接,供电电路板820控制外部的供电设备向雾化芯供电和/或向电池211充电。
具体的,供电组件800还包括按键结构840,按键结构840设置在供电电路板820的下方,按键结构840与供电电路板820接触。用户可以通过按键结构840来控制供电电路板820向雾化芯供电和/或向电池211充电的模式切换。
需要说明的是,本实施例所述的外部的供电设备可以是磁吸充电器900,也可以其他能够向雾化器300和电池211提供电能的设备。
本实施例中,气流腔102的内侧壁设有冷凝液阻挡结构110,冷凝液阻挡结构110向气流腔102的内部延伸,冷凝液阻挡结构110的下方设置有吸液件600,吸液件600与雾化器300接触。具体的,电源壳230的侧壁与气流腔102的内侧壁的间隔区域形成气流通道,冷凝液阻挡结构110设置在气流通道中,由于气流腔102的侧壁为储液腔101的侧壁,冷凝液阻挡结构110的温度较低,当气溶胶流经气流通道时,未完全雾化或颗粒较大的气溶胶与冷凝液阻挡结构110接触从而形成冷凝液,冷凝液滑落到吸液件600上,由吸液件600对冷凝液进行储存。
本实施例中,吸液件600设置在冷凝液阻挡结构110与电源壳230侧壁之间的气流区域下方,且吸液件600的一部分正对在冷凝液阻挡结构110一部分的下方,吸液件600与气流腔102的侧壁之间留有间隔区域,使气溶胶能够从吸液件600与气流腔102的侧壁之间流过,同时确保从冷凝液阻挡结构110中滑落的冷凝液能够滴入到吸液件600中,以防冷凝液流入到第一雾化芯310中,引起炸液或其他不良反应,也能使冷凝液未完全冷却前通过第二雾化芯320用较低的发热功率具可以实现冷凝液的再次雾化,优化雾化效果和稳定性。
冷凝液阻挡结构110一方面能够起到对气溶胶降温的效果,另一方面能够阻挡并冷凝气溶胶中的大颗粒或未完全雾化的部分,使排出的气溶胶更加细腻。吸液件600能够及时吸收所形成冷凝液,避免在装置翻转时发生冷凝液泄漏。吸液件600与雾化器300接触,使雾化器300能够对吸液件600中的冷凝液进行二次雾化,以减少装置内冷凝液的积累。
本实施例中,参阅图15和图16,冷凝液阻挡结构110沿气流腔102的侧壁呈螺旋状倾斜设置,吸液件600位于冷凝液阻挡结构110的末端,使冷凝液阻挡结构110能够对气流腔102侧壁上所形成的冷凝液起导流的作用,引导冷凝液进入到吸液件600中。
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. 一种可通体储液的主机,其中,内部设有用于安装雾化器的安装空间,所述主机包括:
    外壳和电源组件,所述外壳的内部设有储液腔和气流腔,所述外壳套接在所述电源组件的外侧,且所述电源组件位于所述气流腔中,所述储液腔位于所述气流腔的侧壁与所述外壳的外侧壁之间,所述储液腔用于储存气溶胶发生基材;
    所述气流腔设有用于安装所述雾化器的空间,当所述雾化器安装在所述气流腔中时,所述电源组件与所述雾化器电连接,所述雾化器将所述储液腔和所述气流腔分隔开。
  2. 根据权利要求1所述的可通体储液的主机,其中,所述外壳的外侧壁由透明材质制成。
  3. 根据权利要求2所述的可通体储液的主机,其中,所述气流腔的侧壁由导光材料制成,主机还包括光源器件,所述光源器件设置在所述气流腔中,所述光源器件与所述电源组件电连接。
  4. 一种可通体储液的气溶胶发生装置,其中,包括雾化器和可通体储液的主机;所述雾化器安装在所述主机的气流腔中,所述雾化器用于与储存在所述主机储液腔中的气溶胶发生基材接触,所述雾化器的内部设有雾化腔,所述雾化腔与所述主机的气流腔连通;
    所述可通体储液的主机内部设有用于安装雾化器的安装空间,所述主机包括:
    外壳和电源组件,所述外壳的内部设有储液腔和气流腔,所述外壳套接在所述电源组件的外侧,且所述电源组件位于所述气流腔中,所述储液腔位于所述气流腔的侧壁与所述外壳的外侧壁之间,所述储液腔用于储存气溶胶发生基材;
    所述气流腔设有用于安装所述雾化器的空间,当所述雾化器安装在所述气流腔中时,所述电源组件与所述雾化器电连接,所述雾化器将所述储液腔和所述气流腔分隔开。
  5. 根据权利要求4所述的可通体储液的气溶胶发生装置,其中,所述外壳的外侧壁由透明材质制成。
  6. 根据权利要求5所述的可通体储液的气溶胶发生装置,其中,所述气流腔的侧壁由导光材料制成,主机还包括光源器件,所述光源器件设置在所述气流腔中,所述光源器件与所述电源组件电连接。
  7. 根据权利要求4所述的可通体储液的气溶胶发生装置,其中,所述主机还包括电源壳,所述电源组件设置在所述电源壳的内部,所述电源壳的顶部设置有吸嘴,所述吸嘴的内部设有排气通道,所述排气通道与所述气流腔连通;所述雾化器连接在所述电源壳远离所述吸嘴的一端,所述雾化器位于所述电源组件的下方,所述雾化腔的出气端设置在所述雾化器的底部。
  8. 根据权利要求4所述的可通体储液的气溶胶发生装置,其中,还包括吸液件,所述吸液件设置在所述气流腔中,所述吸液件与所述雾化器接触。
  9. 根据权利要求8所述的可通体储液的气溶胶发生装置,其中,所述雾化器包括第一雾化芯和第二雾化芯,所述第一雾化芯和第二雾化芯分别与所述电源组件电连接,所述第一雾化芯连接在所述第二雾化芯的下方,所述第一雾化芯用于雾化所述储液腔中的气溶胶发生基材,所述第二雾化芯用于雾化所述吸液件中的冷凝液。
  10. 根据权利要求8所述的可通体储液的气溶胶发生装置,其中,所述气流腔的内侧壁设有冷凝液阻挡结构,所述冷凝液阻挡结构向所述气流腔的内部延伸,所述吸液件设置在所述冷凝液阻挡结构的下方。
  11. 根据权利要求4所述的可通体储液的气溶胶发生装置,其中,还包括供电组件,所述供电组件设置在所述外壳的底部,所述供电组件与所述雾化器电连接,所述供电组件用于与外部的供电设备连接,以向所述雾化器提供电能。
  12. 根据权利要求7所述的可通体储液的气溶胶发生装置,其中,还包括供电组件,所述供电组件设置在所述外壳的底部,所述供电组件与所述雾化器电连接,所述供电组件用于与外部的供电设备连接,以向所述雾化器提供电能。
  13. 根据权利要求8所述的可通体储液的气溶胶发生装置,其中,还包括供电组件,所述供电组件设置在所述外壳的底部,所述供电组件与所述雾化器电连接,所述供电组件用于与外部的供电设备连接,以向所述雾化器提供电能。
  14. 根据权利要求9所述的可通体储液的气溶胶发生装置,其中,还包括供电组件,所述供电组件设置在所述外壳的底部,所述供电组件与所述雾化器电连接,所述供电组件用于与外部的供电设备连接,以向所述雾化器提供电能。
  15. 根据权利要求10所述的可通体储液的气溶胶发生装置,其中,还包括供电组件,所述供电组件设置在所述外壳的底部,所述供电组件与所述雾化器电连接,所述供电组件用于与外部的供电设备连接,以向所述雾化器提供电能。
  16. 根据权利要求4所述的可通体储液的气溶胶发生装置,其中,还包括进气调节组件,所述外壳的底部设有进气孔,所述进气孔与所述雾化腔连通,所述进气调节组件可拆卸地连接在所述外壳的底部外侧,所述进气调节组件覆盖所述进气孔设置,所述进气调节组件用于调节气体进入到所述雾化腔的进气量。
  17. 根据权利要求7所述的可通体储液的气溶胶发生装置,其中,还包括进气调节组件,所述外壳的底部设有进气孔,所述进气孔与所述雾化腔连通,所述进气调节组件可拆卸地连接在所述外壳的底部外侧,所述进气调节组件覆盖所述进气孔设置,所述进气调节组件用于调节气体进入到所述雾化腔的进气量。
  18. 根据权利要求8所述的可通体储液的气溶胶发生装置,其中,还包括进气调节组件,所述外壳的底部设有进气孔,所述进气孔与所述雾化腔连通,所述进气调节组件可拆卸地连接在所述外壳的底部外侧,所述进气调节组件覆盖所述进气孔设置,所述进气调节组件用于调节气体进入到所述雾化腔的进气量。
  19. 根据权利要求9所述的可通体储液的气溶胶发生装置,其中,还包括进气调节组件,所述外壳的底部设有进气孔,所述进气孔与所述雾化腔连通,所述进气调节组件可拆卸地连接在所述外壳的底部外侧,所述进气调节组件覆盖所述进气孔设置,所述进气调节组件用于调节气体进入到所述雾化腔的进气量。
  20. 根据权利要求10所述的可通体储液的气溶胶发生装置,其中,还包括进气调节组件,所述外壳的底部设有进气孔,所述进气孔与所述雾化腔连通,所述进气调节组件可拆卸地连接在所述外壳的底部外侧,所述进气调节组件覆盖所述进气孔设置,所述进气调节组件用于调节气体进入到所述雾化腔的进气量。
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