WO2022078187A1 - 方便注液的电子雾化设备 - Google Patents

方便注液的电子雾化设备 Download PDF

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Publication number
WO2022078187A1
WO2022078187A1 PCT/CN2021/120588 CN2021120588W WO2022078187A1 WO 2022078187 A1 WO2022078187 A1 WO 2022078187A1 CN 2021120588 W CN2021120588 W CN 2021120588W WO 2022078187 A1 WO2022078187 A1 WO 2022078187A1
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WO
WIPO (PCT)
Prior art keywords
atomization
shell
hole
atomizing
wall
Prior art date
Application number
PCT/CN2021/120588
Other languages
English (en)
French (fr)
Inventor
林光榕
郑贤彬
Original Assignee
惠州市新泓威科技有限公司
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 惠州市新泓威科技有限公司 filed Critical 惠州市新泓威科技有限公司
Publication of WO2022078187A1 publication Critical patent/WO2022078187A1/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
    • A24F40/40Constructional details, e.g. connection of cartridges and battery parts
    • A24F40/48Fluid transfer means, e.g. pumps
    • A24F40/485Valves; Apertures
    • 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
    • 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
    • A24F40/90Arrangements or methods specially adapted for charging batteries thereof
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61MDEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
    • A61M11/00Sprayers or atomisers specially adapted for therapeutic purposes
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61MDEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
    • A61M2205/00General characteristics of the apparatus
    • A61M2205/27General characteristics of the apparatus preventing use
    • A61M2205/273General characteristics of the apparatus preventing use preventing reuse, e.g. of disposables

Definitions

  • the present invention relates to the technical field of electronic atomization equipment, and more particularly, the present invention relates to an electronic atomization equipment that facilitates liquid injection.
  • Electronic atomization equipment on the market mainly includes medical liquid atomizers, smoking cessation equipment, etc. Its basic task is to provide a heating process to convert solutions such as smoke liquid or liquid medicine stored in the electronic atomization equipment into vapor mist, Aerosol, vapor or mist, etc.
  • Electronic atomization equipment generally includes a battery rod and an atomizing component.
  • the battery pole is installed with a battery that supplies power to the atomizing component.
  • the atomizing component includes a heating unit. When the heating unit is energized, the solution to be atomized can be atomized into vapor. Mist or aerosol for inhalation by the user.
  • the existing electronic atomization equipment generally injects the solution that needs to be atomized into the liquid storage cavity of the atomization component during production and assembly, which is inconvenient for liquid injection during assembly, and long-distance transportation to the sales destination after production. During the process, it takes a long time to turn around the transportation. During the long-distance transportation, due to the change of air pressure and the bumping of the transportation tool, it is very easy to cause the liquid leakage of the electronic atomization device that has been injected. There has been leaking liquid or even the atomized liquid has leaked light, causing a bad user experience to the user.
  • the purpose of the present invention is to provide an electronic atomization device that is convenient for liquid injection in order to overcome the deficiencies of the above technologies.
  • an electronic atomization device that is convenient for liquid injection, comprising a suction nozzle shell, an atomization assembly and a power supply assembly connected up and down in sequence, wherein the atomization assembly includes an atomization shell, so The upper end of the atomizing shell is provided with a transverse wall and the lower end is provided with an opening of the atomizing shell, the opening of the atomizing shell is provided with a base for blocking the opening, and a storage atomization is arranged between the transverse wall and the base of the atomizing shell.
  • the liquid storage cavity of the liquid, the horizontal wall of the atomization shell is provided with a liquid injection hole that communicates with the liquid storage cavity, the upper outer wall of the atomization shell is provided with a first convex button, and the lower part of the atomization shell is located on the base
  • the lower inner wall is provided with a second card slot;
  • the power supply assembly includes a power supply shell with an open upper end and a closed lower end, a battery bracket that is sheathed and fixed in the power supply shell, and a battery and a circuit board mounted on the battery bracket.
  • the lower outer wall of the atomizing shell is inserted into the upper end of the power supply shell.
  • the outer wall of the upper end of the battery bracket is inserted into the lower inner wall of the atomizing shell, and the upper end of the battery bracket is provided with a second convex button relative to the second slot, and the second convex
  • the buckle is connected with the second card slot to form a buckle connection;
  • the upper end of the suction nozzle shell is provided with a suction mouth and the lower end is provided with a suction nozzle opening, the inner wall of the suction nozzle shell is provided with a first slot relative to the position of the first convex buckle, and the inner wall of the suction nozzle shell is provided with a first slot.
  • a plunger protruding downward is provided at the position relative to the liquid injection hole;
  • the suction nozzle shell is sleeved down on the upper outer wall of the atomizing shell, and the first convex button A snap connection is formed with the first snap groove, and the plunger is simultaneously blocked in the liquid injection hole.
  • an atomization channel runs through the center of the transverse wall of the atomization shell and the center of the base from top to bottom.
  • the atomizing core for evaporating the atomizing liquid.
  • a mist outlet through hole is provided in the center of the transverse wall of the atomization shell, and the mist outlet through hole extends downward with a mist outlet pipe connected to the atomization shell, and the lower end of the mist outlet pipe is sleeved on the mist outlet.
  • an atomizing sealing sleeve is arranged between the atomizing tube and the atomizing tube, the atomizing core is sleeved in the atomizing tube, and the tube wall of the atomizing tube is provided with a communication reservoir.
  • the liquid cavity and the liquid guiding through hole of the atomizing core, the center of the base is provided with an air inlet through hole, the lower end of the atomization tube is inserted into the base, and the air inlet through hole and the atomization tube are inserted into the base.
  • the pipe hole, the pipe hole of the mist outlet pipe and the mist outlet through hole constitute the atomization channel.
  • a liquid conducting layer is further provided between the atomizing core and the atomizing tube.
  • the base includes a liquid barrier plate and a sealing seat
  • the liquid barrier plate is provided with a central through hole and is sleeved on the outer wall of the atomizing tube
  • the sealing seat is connected and arranged below the liquid barrier plate
  • the air inlet through hole is arranged in the center of the sealing seat
  • the sealing seat is provided with an annular groove on the outer periphery of the air inlet through hole, and the lower end of the atomizing tube is inserted into the annular groove.
  • the atomizing tube is made of non-rusting metal material.
  • the atomizing core includes an atomizing core body for conducting the atomizing liquid and a heating resistor for heating the atomizing liquid, the atomizing core body is provided with an atomizing through hole, and the heating resistor is located in the The inside of the atomizing core body or the hole wall of the atomizing through hole.
  • the heating resistor is respectively connected with lead wires
  • the battery support is provided with positive and negative electrodes at one end of the opening of the power supply shell, and the lead wires pass downward through the base and the positive and negative electrodes. connect.
  • the atomizing core body is made of microporous ceramic material or microporous diatomaceous earth material.
  • a suction nozzle sealing sleeve is connected to the inside of the suction nozzle housing under the plunger.
  • the suction port of the suction nozzle housing is connected with a suction nozzle tube extending downward, and a liquid blocking groove is formed between the suction nozzle tube and the inner wall of the suction nozzle housing.
  • the outer wall of the atomizing shell is provided with an observation window that can see through the atomized liquid in the liquid storage chamber.
  • a pin hole is provided on the outer wall of the power supply shell on one side of the lower end, the battery bracket is provided with a fixing hole relative to the pin hole, and the power supply assembly is further provided with a pin hole inserted into the A fixing pin of the fixing hole, the fixing pin fixes the battery bracket inside the power supply case.
  • the front end of the fixing pin is provided with an elastic clip
  • the end of the elastic clip is provided with a radially raised flange
  • the front end of the flange is provided with an inclined surface structure.
  • the fixing pin is made of a light-transmitting material, and the battery support is provided with an LED indicator light at the fixing hole.
  • the closed end of the power supply case is provided with a USB hole
  • the battery support is provided with a USB interface relative to the USB hole.
  • a liquid injection hole is opened at the upper end of the atomization shell for liquid injection, and the plunger provided in the suction nozzle shell is used to block the liquid injection hole, which makes the liquid injection of the electronic atomization device convenient; in terms of structure, the battery bracket is fixed with a fixing pin On the power supply case, connect the atomizing component to the battery bracket instead of the power supply case, so that the atomizing component and the power supply component are firmly connected; at the same time, the atomizing liquid is not injected into the storage liquid of the electronic atomization device during production and assembly. In the cavity, the liquid is injected after reaching the sales destination.
  • the nozzle shell is sleeved on the atomization component and assembled into an electronic atomization device that can be sold and used. Therefore, during long-distance transportation, there is no Long turnaround time, changes in air pressure, and bumps in transportation tools cause liquid leakage, giving users a good experience.
  • Fig. 1 is the three-dimensional exploded structure diagram of the electronic atomization device of the present invention
  • Fig. 2 is the front view of the atomization assembly of the present invention
  • Fig. 3 is the top view of the atomization assembly of the present invention.
  • Figure 4 is a side view of the atomizing assembly of the present invention.
  • Fig. 5 is the front sectional view of the atomization assembly of the present invention.
  • Fig. 6 is the side sectional view of the atomization assembly of the present invention.
  • Fig. 7 is the front view of the atomizing tube of the present invention.
  • Fig. 8 is the sectional view of the atomizing core of the present invention.
  • Fig. 9 is the structural exploded view of the base of the present invention.
  • Figure 10 is a structural exploded sectional view of the base of the present invention.
  • FIG. 11 is an exploded view of the structure of the power supply assembly of the present invention.
  • FIG. 12 is a cross-sectional view of a power supply case of the present invention.
  • 13 is a front view of the assembly of the battery support, battery and circuit board of the present invention.
  • 15 is a side view of the assembly of the battery support, battery and circuit board of the present invention.
  • 16 is a cross-sectional view of the assembly of the battery support, the battery and the circuit board of the present invention.
  • Figure 17 is a perspective view of the fixing pin of the present invention.
  • Figure 18 is a cross-sectional view of the fixing pin of the present invention.
  • Figure 19 is a front cross-sectional view of the nozzle housing of the present invention.
  • Figure 20 is a side sectional view of the nozzle housing of the present invention.
  • Figure 21 is a front view of the nozzle sealing sleeve of the present invention.
  • Figure 22 is a cross-sectional view of the nozzle sealing sleeve of the present invention.
  • FIG. 23 is a perspective view of the combination of the atomizing assembly and the power assembly of the present invention.
  • Fig. 24 is a working principle diagram of the electronic atomization device of the present invention.
  • the electronic atomization device for convenient liquid injection of the present invention in order to facilitate the following description, as shown in Figure 1 and Figure 19, the electronic atomization device is upright, that is, the suction port is placed vertically.
  • the descriptions of "upper, lower, upper, lower, upper end, lower end, upper, lower” of each component all refer to the upper and lower positional relationship when the suction port of the electronic atomization device is upward and the whole is vertically placed.
  • the atomized liquid in the present invention refers to a solution that can be filled in an electronic atomization device to be atomized.
  • an electronic atomization device for convenient liquid injection includes a nozzle shell 1 , an atomization component 2 , and a power supply component 3 that are connected up and down in sequence.
  • the atomization assembly 2 includes an atomization shell 21, the upper end of the atomization shell 21 is provided with a transverse wall 211 and the lower end is provided with an atomization shell opening 212, and the opening 212 of the atomization shell is provided with a plug In the base 22 of the opening, a liquid storage cavity 23 for storing the atomized liquid is provided between the transverse wall 211 of the atomizing shell 21 and the base 22 , and a liquid injection hole 2110 communicating with the liquid storage cavity 23 is provided on the transverse wall 211 of the atomizing shell 21 .
  • the atomizing channel 24 running through from top to bottom, and the atomizing channel 24 is provided with an atomizing core 25 for heating and evaporating the atomized liquid.
  • the upper outer wall of 21 is provided with a first protruding buckle 213
  • the inner wall of the lower part of the atomizing shell 21 below the base 22 is provided with a second slot 214 , in this embodiment, the second slot 214 is a penetrating slot.
  • the center of the horizontal wall 211 of the atomization shell is provided with a mist outlet through hole 2111, and the mist outlet through hole 2111 extends downward with a mist outlet pipe 216 integrally formed with the atomization shell 21, and the lower end of the mist outlet pipe 216 is sleeved on the atomization pipe.
  • an atomization sealing sleeve 27 is provided between the connection between the mist outlet pipe 216 and the atomization pipe 26, the atomization core 25 is sleeved in the atomization pipe 26, and the pipe wall of the atomization pipe 26 is provided with a communication storage liquid.
  • the cavity 23 and the liquid guiding through hole 260 of the atomizing core 25, the center of the base 29 is provided with an air intake through hole 290, the lower end of the atomization tube 26 is inserted into the base 29, the air intake through hole 290, the atomization tube 26
  • the pipe hole, the pipe hole of the mist outlet pipe 216 and the mist outlet through hole 2111 constitute the atomization channel 24 .
  • the atomizing tube 26 is made of a non-rusting metal material such as stainless steel.
  • the metal material has good thermal conductivity, so that the excess heat generated by the atomizing core 25 of the atomizing tube 26 can be conducted to the atomization in the liquid storage chamber. Liquid, used to preheat the atomizing core to make it more fluid.
  • a liquid conducting layer 28 is also provided between the atomizing core 25 and the atomizing tube 26, and the liquid conducting layer 28 can be made of materials such as cotton, glass fiber, and porous ceramics.
  • a liquid guiding through hole 260 is provided on the wall of the atomizing tube 26, and the liquid guiding through hole 260 communicates with the liquid storage chamber 23 and the atomizing core 25, so that the atomized liquid in the liquid storage chamber 23 can pass through
  • the liquid conducting through hole 260 flows to the atomizing core 25 .
  • the liquid guiding layer 28 is provided between the atomizing core 25 and the atomizing tube 26, the atomized liquid in the liquid storage chamber 23 first flows to the liquid guiding layer 28 through the liquid guiding through hole 260, and the liquid guiding layer 28 absorbs and conducts the atomization. liquid to the atomizing core 25.
  • the atomizing core 25 includes an atomizing core body 251 and a heating resistor (not shown in the figure).
  • the atomizing core body 251 is used to conduct the atomizing liquid, the heating resistance is used to heat the atomizing liquid, and the atomizing core is used for heating the atomizing liquid.
  • the main body 251 is provided with an atomization through hole 250 , and the heating resistor is arranged inside the atomization core body 251 or on the hole wall of the atomization through hole 250 .
  • the two ends of the heating resistor are also connected with lead wires 252 respectively.
  • the atomizing core body 251 is made of a microporous ceramic material or a microporous diatomite material.
  • the base 29 includes a liquid barrier plate 291 and a sealing seat 292 , the liquid barrier plate 291 is provided with a central through hole 2910 , and the central through hole 2910 is sleeved on the outer wall of the atomizing tube 26 to seal
  • the seat 292 is connected and arranged below the liquid separator 291, the air inlet through hole 290 is arranged in the center of the sealing seat 292, the sealing seat 292 is provided with an annular groove 2922 on the outer periphery of the air inlet through hole 290, and the lower end of the atomizing tube 26 is inserted into the sealing seat 292. sleeved in the annular groove 2922.
  • the lower surface of the liquid separator 291 is also provided with a protruding post 2911, and a blind hole 2921 is provided at the connection between the sealing seat 292 and the liquid separator 291 relative to the protruding post 2911, and the protruding post 2911 is inserted into the blind hole 2921.
  • the connection of the seal seat 292 can be fixed on the liquid barrier plate 291 .
  • the outer wall of the sealing seat 292 is also provided with a radially protruding annular strip 2923 , and the annular strip 2923 can further enhance the sealing between the sealing seat 292 and the inner wall of the atomizing shell 21 .
  • the liquid barrier plate 291 is made of a hard material and functions as a skeleton for supporting the sealing seat 292 .
  • the sealing seat 292 is made of soft material and is used for sealing the liquid storage chamber and the atomizing tube 26 to prevent liquid leakage.
  • the liquid barrier plate 291 and the sealing seat 292 can be integrally formed by a two-color mold process.
  • the power supply assembly 3 includes a power supply case 31 , a battery bracket 32 sheathed and fixed in the power supply case 31 , a battery 33 and a circuit board 34 mounted on the battery bracket.
  • the upper end of the power supply case 31 is provided with a power supply case opening 310 , the lower end is closed, and the end of the closed end is provided with a USB hole 311 .
  • the upper end of the battery bracket 32 is provided with a second protruding button 321 relative to the second slot 214 .
  • the upper outer wall of the bracket 32 is inserted into the lower inner wall of the atomizing shell 21, and the second protruding buckle 321 forms a snap connection with the second slot 214; , so that the atomizing assembly 2 and the power supply assembly 3 cannot be disassembled.
  • the connection and fixation of the atomizing component 2 and the power supply component 3 is achieved by setting the second slot 214 on the atomizing shell 21 and setting the second protruding button 321 on the battery bracket 32 to make them snap together.
  • the connection is more secure, because if a snap is arranged between the atomizing shell 21 and the power supply shell 31, the shell of the power supply shell 31 The thinness makes the provided clips shorter and shallower, and the power supply shell 31 is easily deformed, causing the clips to slip off.
  • Positive and negative electrodes 322 are provided at one end of the battery holder 32 located at the opening 310 of the power supply case, and the lead wires 252 pass downward through the base 29 and are connected to the positive and negative electrodes 322 .
  • the battery bracket is provided with a USB interface 341 opposite to the USB hole, and the USB interface 341 is used for charging the battery 33 and exchanging data for the control circuit of the circuit board 34 .
  • the battery bracket 32 is also provided with a sealing ring 323 between one end of the opening 310 of the power supply shell and the inner wall of the power supply shell 31.
  • the sealing ring 323 is used to seal the gap between the battery bracket 32 and the power supply shell 31 to prevent sundries or liquids from falling. The battery and the control circuit will be damaged if it goes inside the power supply case 31 .
  • the battery holder 32 is also provided with an air flow induction type start switch 35, and the start switch 35 can sense the air flow of inhalation to start and stop the electronic atomization device.
  • the upper end of the battery bracket 32 is further provided with an airflow sensing through hole 324 that communicates with the start switch 35 and the air intake through hole 290 .
  • a pin hole 312 is provided on the outer wall of the power supply shell 31 on the lower end side
  • a fixing hole 325 is provided on the battery bracket 32 relative to the pin hole 312
  • the power supply assembly 3 is also provided with a fixing pin 36 , the fixing pin 36 is inserted into the fixing hole 325 from the pin hole 312 , and the fixing pin 36 fixes the battery bracket 32 to the inside of the power supply shell 31 .
  • the front end of the fixing pin 36 is provided with two clamping feet 361, the two clamping feet 361 can be elastically opened and closed, the ends of the two clamping feet 361 are provided with radially raised flanges 3622, and the front ends of the flanges 362 are provided with radially raised flanges 3622.
  • There is an inclined surface structure so that when the fixing pin 36 is inserted into the fixing hole 325, the front end of the flange 362 is larger than the diameter of the fixing hole 325, but the inclined surface structure of the flange 362 can be guided forward and inward under the action of thrust, so that the card The feet 361 continue to be inserted forward into the fixing holes 325.
  • the fixing pin 36 is made of light-transmitting material, and the battery bracket 32 is provided with an LED indicator light at the fixing hole 325. When the electronic atomization device is working, the light of the LED indicator light can be transmitted through the fixing pin 36. .
  • the suction mouth 10 is provided at the upper end of the suction nozzle housing 1 and the suction nozzle opening 11 is arranged at the lower end thereof, and the inner wall of the suction nozzle housing 1 is provided with a first snap groove at a position relative to the first protruding buckle 213 .
  • the nozzle housing 1 is provided with a protruding plunger 13 downward relative to the liquid injection hole 2110.
  • the inside of the nozzle housing 1 is connected with a nozzle sealing sleeve 14 below the plunger 13, and the suction nozzle is sealed.
  • a nozzle cover through hole 141 is provided in the middle of the sleeve 14 , and a plunger hole 142 is provided in the nozzle sealing sleeve 14 at a position opposite to the plunger 13 .
  • the suction port 10 of the suction nozzle case 1 is extended downward and is connected with a suction port pipe 101 , and a liquid blocking groove 102 is formed between the suction port pipe 101 and the inner wall of the suction nozzle case 1 .
  • the outer wall of the suction pipe 101 can block the condensate or the small droplets that are not atomized in the vapor mist, and collect them in the liquid blocking groove 102 to prevent the condensate or the small droplets that are not atomized from being sucked into the user's mouth. cause a bad user experience.
  • the nozzle shell 1 is sleeved downwardly on the upper outer wall of the atomization shell 2 from its opening 11, and the first convex
  • the buckle 213 forms a buckle connection with the first card slot 12
  • the suction port 10 communicates with the atomization channel 24
  • the plunger 13 is blocked in the liquid injection hole 2110 at the same time.
  • an observation window 215 is provided in the middle of the outer wall of the atomizing shell 2 .
  • the electronic atomization device of the present invention works as follows: when the user inhales, a negative pressure is generated at the suction port 10, and the outside air is sucked into the base from the gap between the atomization component 2 and the power supply component 3 Below 29, it further flows upward through the air intake through hole 290 of the base, and then in the atomization through hole 250 of the atomizing core, the atomizing liquid is heated and atomized into vapor mist or aerosol, and the vapor mist or aerosol continues to flow upward. After reaching the suction port 10 through the pipe hole of the mist outlet pipe 216, the direction of the gas flow is shown by the continuous arrow a in the figure.
  • the start switch 35 When the user inhales, a negative pressure is generated under the base 29, and the air flow sensing through hole 324 of the power supply assembly 3 has air flowing upward. Because the air flow sensing through hole 324 is connected to the start switch 35, the start switch 35 is triggered by sensing the air flow. , start the heating resistor of the atomizing core 25 to energize, and the atomizing liquid is heated and atomized into vapor mist or aerosol.
  • the electronic atomization device of the present invention in order to avoid the leakage of the atomized liquid during long-distance transportation, the electronic atomization device of the present invention does not carry out liquid injection at the production site, but in the production , first assemble the power supply assembly 3 and the atomizing assembly 2 respectively, and then install the atomizing assembly 2 on the power supply assembly 3, so that the atomizing assembly 2 and the power supply assembly 3 become a combination 4, and the combination 4 and the nozzle shell 1. Separate the packaging, and after reaching the sales destination, inject liquid into the combined body 4 immediately before selling to the user, and finally install the nozzle housing 1 on the combined body 4 after injecting the liquid.

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  • Health & Medical Sciences (AREA)
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Abstract

一种方便注液的电子雾化设备,包括上下依次连接的吸嘴壳(1)、雾化组件(2)和电源组件(3),雾化组件(2)包括雾化壳(21),雾化壳(21)上端设有横壁(211),横壁(211)上设有注液孔(2110),雾化壳(21)的上部外壁设有第一凸扣(213),雾化壳(21)的下部内壁设有第二卡槽(214);电源组件(3)包括电源壳(31)、电池支架(32)、电池(33)、电路板(34),雾化壳(21)的下部外壁插入电源壳(31)的上端内壁,同时电池支架(32)的上端外壁插接于雾化壳(21)的下部内壁,电池支架(32)的上端相对于第二卡槽(214)的部位设有第二凸扣(321),第二凸扣(321)与第二卡槽(214)构成卡扣连接;吸嘴壳(1)的上端设有吸口(10),下端设有吸嘴开口(11),吸嘴壳(1)的内壁相对于第一凸扣(213)的位置设有第一卡槽(12),吸嘴壳(1)的内部相对于注液孔(2110)的部位设有向下凸起的柱塞(13)。有益之处在于,注液方便、连接牢固、不漏液。

Description

方便注液的电子雾化设备 技术领域
本发明涉及电子雾化设备的技术领域,更具体的说,本发明涉及一种方便注液的电子雾化设备。
背景技术
市场上的电子雾化设备主要包括医用药液雾化器、戒烟雾化设备等,其基本任务是提供加热过程,将电子雾化设备内储存的烟液或药液等溶液转化为汽雾、气溶胶、蒸气或药雾等。
电子雾化设备,一般包括电池杆和雾化组件,电池杆内安装有给雾化组件供应电源的电池,雾化组件包括发热单元,发热单元在通电时可将待雾化的溶液雾化成汽雾或气溶胶,供使用者吸入口中吸食。
现有的电子雾化设备,一般都在生产装配时就已将需要雾化的溶液注入雾化组件的储液腔中,装配中不方便注液,且生产后在到达销售目的地的长途运输过程中,需要周转运输的时间较长,在长途运输过程中又由于气压的变化、运输工具的颠簸等原因,极易使已注液的电子雾化设备发生漏液现象,用户刚开始使用就已有漏液甚至雾化液已经漏光,给用户造成不良的使用体验。
另为节约成本,简化制造工艺,需要一种结构简单、方便安装、方便注液的一次性电子雾化设备。
技术问题
本发明的目的在于为克服上述技术的不足而提供一种方便注液的电子雾化设备。
技术解决方案
本发明的技术方案是这样实现的:一种方便注液的电子雾化设备,包括上下依次连接的吸嘴壳、雾化组件和电源组件,其中,所述雾化组件包括雾化壳,所述雾化壳上端设有横壁及其下端设有雾化壳开口,所述雾化壳开口处设有封堵该开口的底座,所述雾化壳的横壁与底座之间设有储存雾化液的储液腔,所述雾化壳的横壁上设有与储液腔连通的注液孔,所述雾化壳的上部外壁设有第一凸扣,雾化壳的下部位于所述底座下方的内壁设有第二卡槽;
所述电源组件包括上端开口及下端封闭的电源壳、套装固定于电源壳内的电池支架和安装于电池支架上的电池、电路板,所述雾化壳的下部外壁插入所述电源壳的上端内壁,同时所述电池支架的上端外壁插接于所述雾化壳的下部内壁,所述电池支架的上端相对于所述第二卡槽的部位设有第二凸扣,所述第二凸扣与第二卡槽构成卡扣连接;
所述吸嘴壳的上端设有吸口及其下端设有吸嘴开口,所述吸嘴壳的内壁相对于所述第一凸扣的位置设有第一卡槽,所述吸嘴壳的内部相对于所述注液孔的部位设有向下凸起的柱塞;
所述雾化组件与电源组件连接以及所述注液孔向储液腔注入雾化液后,所述吸嘴壳向下套接于所述雾化壳的上部外壁,所述第一凸扣与第一卡槽构成卡扣连接,所述柱塞同时封堵于所述注液孔内。
优选地,所述雾化壳的横壁的中心与底座的中心之间自上而下贯穿设有雾化通道,所述雾化通道与所述吸口连通,所述雾化通道内设有用于加热蒸发雾化液的雾化芯。
优选地,所述雾化壳的横壁中心设有出雾通孔,所述出雾通孔向下延伸设有与雾化壳连接的出雾管,所述出雾管的下端套接在雾化管的上端,所述出雾管与雾化管之间设有雾化密封套,所述雾化芯套设于所述雾化管内,所述雾化管的管壁上设有连通储液腔与雾化芯的导液通孔,所述底座的中心设有进气通孔,所述雾化管的下端插接于所述底座内,所述进气通孔、雾化管的管孔、出雾管的管孔和出雾通孔构成所述雾化通道。
优选地,所述雾化芯与雾化管之间还设有导液层。
优选地,所述底座包括隔液板和密封座,所述隔液板设有中心通孔穿套于所述雾化管的外壁,所述密封座连接设于所述隔液板的下方,所述进气通孔设于所述密封座的中心,所述密封座位于进气通孔的外周设有环形槽,所述雾化管的下端插套于所述环形槽内。
优选地,所述雾化管由不生锈的金属材料制成。
优选地,所述雾化芯包括用于传导雾化液的雾化芯本体和用于加热雾化液的发热电阻,所述雾化芯本体设有雾化通孔,所述发热电阻设于雾化芯本体内部或雾化通孔的孔壁。
优选地,所述发热电阻的两端还分别连接设有引线,所述电池支架位于所述电源壳开口一端设有正负电极,所述引线向下穿过所述底座与所述正负电极连接。
优选地,所述雾化芯本体由微孔陶瓷材料或微孔硅藻土材料制成。
优选地,所述吸嘴壳的内部位于所述柱塞下方连接设有吸嘴密封套。
优选地,所述吸嘴壳的吸口向下延伸连接设有吸口管,所述吸口管与所述吸嘴壳的内壁之间围合构成挡液槽。
优选地,所述雾化壳的外壁上设有可以透视观察储液腔内的雾化液的观察窗。
优选地,所述电源壳位于下端一侧的外壁设有销孔,所述电池支架相对于所述销孔处设有固定孔,所述电源组件还设有自所述销孔插入到所述固定孔的固定销,所述固定销将所述电池支架固定于所述电源壳内部。
优选地,所述固定销的前端设有弹性卡脚,所述弹性卡脚的端部设有径向凸起的凸缘,所述凸缘的前端设有斜面结构。
优选地,所述固定销由透光材料构成,所述电池支架位于所述固定孔处设有LED指示灯。
优选地,所述电源壳的封闭端端部设有USB孔,所述电池支架相对于所述USB孔处设有USB接口。
有益效果
在雾化壳上端开设注液孔进行注液,并利用吸嘴壳内设有的柱塞堵塞注液孔,这样使得电子雾化设备注液方便;在结构上,将电池支架用固定销固定于电源壳上,将雾化组件连接固定于电池支架上而非电源壳上,使雾化组件与电源组件连接牢固;同时,在生产装配时没有将雾化液注入电子雾化设备的储液腔中,而是在到了销售目的地后才进行注液,注液后将吸嘴壳套接于雾化组件上组装成电子雾化设备即可销售使用,因此在长途运输过程中,不因周转时间较长、气压的变化、运输工具的颠簸等造成漏液现象,给用户予以良好的使用体验。
附图说明
图1是本发明的电子雾化设备的立体分解结构图;
图2是本发明的雾化组件的正视图;
图3是本发明的雾化组件的俯视图;
图4是本发明的雾化组件的侧视图;
图5是本发明的雾化组件的正面剖视图;
图6是本发明的雾化组件的侧面剖视图;
图7是本发明的雾化管的正视图;
图8是本发明的雾化芯的剖视图;
图9是本发明的底座的结构分解图;
图10是本发明的底座的结构分解剖视图;
图11是本发明的电源组件的结构分解图;
图12是本发明的电源壳的剖视图;
图13是本发明的电池支架、电池及电路板的组合体正视图;
图14是本发明的电池支架、电池及电路板的组合体俯视图;
图15是本发明的电池支架、电池及电路板的组合体侧视图;
图16是本发明的电池支架、电池及电路板的组合体剖视图;
图17是本发明的固定销的立体视图;
图18是本发明的固定销的剖视图;
图19是本发明的吸嘴壳的正面剖视图;
图20是本发明的吸嘴壳的侧面剖视图;
图21是本发明的吸嘴密封套的正视图;
图22是本发明的吸嘴密封套的剖视图;
图23是本发明的雾化组件与电源组件的组合体的立体视图;
图24是本发明的电子雾化设备的工作原理图。
本发明的最佳实施方式
本发明的方便注液的电子雾化设备,为便于以下行文描述,如图1、图19所示,将该电子雾化设备正立,即将其吸口朝上地竖直放置,本文所述有关各部件的“上、下、上部、下部、上端、下端、上面、下面”等描述,均是指在该电子雾化设备的吸口朝上且整体竖直放置时的上下位置关系。本发明所述的雾化液系指可以灌装于电子雾化设备内待雾化的溶液。
实施例
如图1所示,本发明实施例方便注液的电子雾化设备,包括上下依次连接的吸嘴壳1、雾化组件2、电源组件3。
如图2-图6所示,雾化组件2包括雾化壳21,雾化壳21的上端设有横壁211及其下端设有雾化壳开口212,雾化壳开口212处设有封堵该开口的底座22,雾化壳21的横壁211与底座22之间设有储存雾化液的储液腔23,雾化壳的横壁211上设有与储液腔23连通的注液孔2110,雾化壳的横壁211的中心与底座22的中心之间自上而下贯穿设有雾化通道24,雾化通道24内设有用于加热蒸发雾化液的雾化芯25,雾化壳21的上部外壁设有第一凸扣213,雾化壳21的下部位于底座22下方的内壁设有第二卡槽214,本实施例中,第二卡槽214为穿透型的卡孔。
雾化壳的横壁211中心设有出雾通孔2111,出雾通孔2111向下延伸设有与雾化壳21一体成型的出雾管216,出雾管216的下端套接在雾化管26的上端,出雾管216与雾化管26连接之间设有雾化密封套27,雾化芯25套设于雾化管26内,雾化管26的管壁上设有连通储液腔23与雾化芯25的导液通孔260,底座29的中心设有进气通孔290,雾化管26的下端插接于底座29内,进气通孔290、雾化管26的管孔、出雾管216的管孔和出雾通孔2111构成雾化通道24。
雾化管26由不生锈的金属材料例如不锈钢材料制成,金属材料具有良好的导热性能,这样可将雾化管26的雾化芯25产生的多余热量传导给储液腔内的雾化液,用于预热雾化芯,使其流动性更好。
雾化芯25与雾化管26之间还设有导液层28,导液层28可以由棉、玻璃纤维、多孔陶瓷等材料制成。
如图7所示,雾化管26的管壁上设有导液通孔260,导液通孔260连通储液腔23与雾化芯25,这样,储液腔23的雾化液可通过导液通孔260流动到雾化芯25。雾化芯25与雾化管26之间设有导液层28时,储液腔23的雾化液通过导液通孔260首先流动到导液层28,导液层28吸收并传导雾化液到雾化芯25。
如图8所示,雾化芯25包括雾化芯本体251和发热电阻(图中未示),雾化芯本体251用于传导雾化液,发热电阻用于加热雾化液,雾化芯本体251设有雾化通孔250,发热电阻设于雾化芯本体251的内部或雾化通孔250的孔壁上。发热电阻的两端还分别连接设有引线252。本实施例中,雾化芯本体251由微孔陶瓷材料或微孔硅藻土材料制成。
如图5、图9、图10所示,底座29包括隔液板291和密封座292,隔液板291设有中心通孔2910,中心通孔2910穿套于雾化管26的外壁,密封座292连接设于隔液板291的下方,进气通孔290设于密封座292的中心,密封座292上位于进气通孔290的外周设有环形槽2922,雾化管26的下端插套于环形槽2922内。
隔液板291的下表面还设有凸柱2911,密封座292与隔液板291连接处相对于凸柱2911的部位设有盲孔2921,凸柱2911插接于盲孔2921内,两者的连接使密封座292可固定于隔液板291上。密封座292的外壁上还设有径向凸起的环形条2923,环形条2923可进一步增强密封座292与雾化壳21内壁之间的密封性。
本实施例中,隔液板291由硬质材料构成,起到骨架的作用,用于支撑密封座292。密封座292由软质材料构成,用于密封储液腔与雾化管26,防止漏液。隔液板291与密封座292可以双色模的工艺方法一体成型地构成一体。
如图11所示,电源组件3包括电源壳31、套装固定于电源壳31内的电池支架32和安装于电池支架上的电池33、电路板34。
如图12所示,电源壳31的上端设有电源壳开口310,下端封闭,封闭端端部设有USB孔311。
如图13-图16所示,电池支架32的上端相对于第二卡槽214的部位设有第二凸扣321,雾化壳21的下部外壁插接于电源壳开口310端的内壁,同时电池支架32的上端外壁插接于雾化壳21的下部内壁,第二凸扣321与第二卡槽214构成卡扣连接;第二凸扣321扣合在第二卡槽214内因张力而不可脱出,使雾化组件2与电源组件3不可被拆卸。本发明中,雾化组件2与电源组件3的连接固定,是通过在雾化壳21上设置第二卡槽214以及在电池支架32上设置第二凸扣321并使两者相互扣合连接的,相比于在雾化壳21与电源壳31之间设置卡扣连接更为牢固,因为,如果在雾化壳21与电源壳31之间设置卡扣时,因电源壳31的壳体较薄使设置的卡扣较为短浅、以及电源壳31容易发生变形而导致卡扣滑脱。
电池支架32位于电源壳开口310的一端设有正负电极322,引线252向下穿过底座29与正负电极322连接。电池支架相对于USB孔处设有USB接口341,USB接口341用于给电池33进行充电以及给电路板34的控制电路进行数据交换。
电池支架32位于电源壳开口310的一端与电源壳31的内壁之间还设有密封环323,密封环323用于密封电池支架32与电源壳31之间的间隙,防止杂物或液体掉落到电源壳31内部损害电池及控制电路。另外,电池支架32上还设有气流感应式的启动开关35,启动开关35可感应到吸气的气流从而启动和关闭电子雾化设备。为此,电池支架32的上端部还设有连通启动开关35和进气通孔290的气流感应通孔324。
如图11、图17、图18所示,电源壳31位于下端一侧的外壁设有销孔312,电池支架32相对于销孔312处设有固定孔325,电源组件3还设有固定销36,固定销36自销孔312插入到固定孔325内,固定销36将电池支架32固定于电源壳31的内部。固定销36的前端即插入一端设有两只卡脚361,两只卡脚361可以弹性开合,两只卡脚361的端部设有径向凸起的凸缘3622,凸缘362前端设有斜面结构,这样,当固定销36插入固定孔325时,凸缘362的前端大于固定孔325的孔径,但凸缘362的斜面结构在推力作用下可以向前及向内侧进行导向,使卡脚361继续向前插入到固定孔325内,插入到位后,凸缘362即可卡住固定孔325的内侧边缘,使固定销36被固定于固定孔325内而不可被拔出,同时固定销36的尾端被卡在销孔312内,因此,固定销36可将电池支架32与电源壳31牢固地连接固定。本发明实施例中,固定销36由透光材料构成,电池支架32位于固定孔325处设有LED指示灯,电子雾化设备工作时,LED指示灯的灯光可通过固定销36将灯光透出。
如图19-图22所示,吸嘴壳1的上端设有吸口10及其下端设有吸嘴开口11,吸嘴壳1的内壁相对于第一凸扣213的位置设有第一卡槽12,吸嘴壳1在相对于注液孔2110的部位向下设有凸起的柱塞13,吸嘴壳1的内部位于柱塞13的下方连接设有吸嘴密封套14,吸嘴密封套14中间设有吸嘴套通孔141,吸嘴密封套14在相对于柱塞13的部位设有柱塞孔142,柱塞13在吸嘴密封套14的柱塞孔142的包裹下具有密封性。吸嘴壳1的吸口10向下延伸连接设有吸口管101,吸口管101与吸嘴壳1的内壁之间围合构成挡液槽102。吸口管101的外壁可以阻挡汽雾中的冷凝液或未被雾化的小液滴,并收集在挡液槽102内,避免冷凝液或未被雾化的小液滴被吸到用户口中,给用户造成不良的使用体验。
如图5、图6所示,储液腔23自注液孔2110向下注入雾化液后,吸嘴壳1自其开口11向下套接于雾化壳2的上部外壁,第一凸扣213与第一卡槽12构成卡扣连接,吸口10与雾化通道24连通,柱塞13同时封堵于注液孔2110内。如图2、图4所示,雾化壳2的外壁中间设有观察窗215,观察窗215由可透视材料制成,用以观察储液腔23内的雾化液。
如图24所示,本发明的电子雾化设备,其工作原理如下:用户吸气时,吸口10处产生负压,外界气体从雾化组件2与电源组件3连接的缝隙处被吸入到底座29的下方,进一步向上流经底座的进气通孔290,然后在雾化芯的雾化通孔250内,雾化液被加热雾化成汽雾或气溶胶,汽雾或气溶胶继续向上流经出雾管216的管孔到达吸口10,气体流动的方向如图中连续箭头a所示。用户吸气时,底座29的下方产生负压,电源组件3的气流感应通孔324具有向上流动的气体,因气流感应通孔324连通启动开关35,此时启动开关35感应到气流而被触发,启动雾化芯25的发热电阻进行通电工作,雾化液被加热雾化成汽雾或气溶胶。
如图1、图11、图23所示,本发明的电子雾化设备,为避免雾化液在长途运输途中发生泄漏,本发明的电子雾化设备不在生产地进行注液,而是在生产中,首先将电源组件3、雾化组件2分别进行组装,然后将雾化组件2安装到电源组件3上,使雾化组件2与电源组件3成为组合体4,组合体4与吸嘴壳1分开包装,到了销售目的地后,在即将销售给用户前再对组合体4进行注液,注液后最后将吸嘴壳1安装到组合体4上。
如图1、图11、图23所示,到销售目的地后,将雾化组件2及电源组件3的组合体4竖直放置,即将其注液孔2110朝上竖直放置,自注液孔2110向下朝储液腔23注入雾化液,然后将吸嘴壳1向下插套于雾化壳21的上部外壁,插套到位后,第一凸扣213扣合在第一卡槽12内,该卡扣连接将吸嘴壳1固定在雾化组件2上,柱塞13同时封堵于注液孔2110内,储液腔23即方便地完成注液并被柱塞13封堵而避免漏液。
工业实用性
以上所述仅为本发明的较佳实施例,凡依本发明权利要求范围所做的均等变化与修饰,皆应属本发明权利要求的涵盖范围。

Claims (16)

  1. 一种方便注液的电子雾化设备,其特征在于,包括上下依次连接的吸嘴壳、雾化组件和电源组件,其中,
    所述雾化组件包括雾化壳,所述雾化壳上端设有横壁及其下端设有雾化壳开口,所述雾化壳开口处设有封堵该开口的底座,所述雾化壳的横壁与底座之间设有储存雾化液的储液腔,所述雾化壳的横壁上设有与储液腔连通的注液孔,所述雾化壳的上部外壁设有第一凸扣,雾化壳的下部位于所述底座下方的内壁设有第二卡槽;
    所述电源组件包括上端开口及下端封闭的电源壳、套装固定于电源壳内的电池支架和安装于电池支架上的电池、电路板,所述雾化壳的下部外壁插入所述电源壳的上端内壁,同时所述电池支架的上端外壁插接于所述雾化壳的下部内壁,所述电池支架的上端相对于所述第二卡槽的部位设有第二凸扣,所述第二凸扣与第二卡槽构成卡扣连接;
    所述吸嘴壳的上端设有吸口及其下端设有吸嘴开口,所述吸嘴壳的内壁相对于所述第一凸扣的位置设有第一卡槽,所述吸嘴壳的内部相对于所述注液孔的部位设有向下凸起的柱塞;
    所述雾化组件与电源组件连接以及所述注液孔向储液腔注入雾化液后,所述吸嘴壳向下套接于所述雾化壳的上部外壁,所述第一凸扣与第一卡槽构成卡扣连接,所述柱塞同时封堵于所述注液孔内。
  2. 根据权利要求1所述的方便注液的电子雾化设备,其特征在于,所述雾化壳的横壁的中心与底座的中心之间自上而下贯穿设有雾化通道,所述雾化通道与所述吸口连通,所述雾化通道内设有用于加热蒸发雾化液的雾化芯。
  3. 根据权利要求2所述的方便注液的电子雾化设备,其特征在于,所述雾化壳的横壁中心设有出雾通孔,所述出雾通孔向下延伸设有与雾化壳连接的出雾管,所述出雾管的下端套接在雾化管的上端,所述出雾管与雾化管之间设有雾化密封套,所述雾化芯套设于所述雾化管内,所述雾化管的管壁上设有连通储液腔与雾化芯的导液通孔,所述底座的中心设有进气通孔,所述雾化管的下端插接于所述底座内,所述进气通孔、雾化管的管孔、出雾管的管孔和出雾通孔构成所述雾化通道。
  4. 根据权利要求3所述的方便注液的电子雾化设备,其特征在于,所述雾化芯与雾化管之间还设有导液层。
  5. 根据权利要求3所述的方便注液的电子雾化设备,其特征在于,所述底座包括隔液板和密封座,所述隔液板设有中心通孔穿套于所述雾化管的外壁,所述密封座连接设于所述隔液板的下方,所述进气通孔设于所述密封座的中心,所述密封座位于进气通孔的外周设有环形槽,所述雾化管的下端插套于所述环形槽内。
  6. 根据权利要求3所述的方便注液的电子雾化设备,其特征在于,所述雾化管由不生锈的金属材料制成。
  7. 根据权利要求2所述的方便注液的电子雾化设备,其特征在于,所述雾化芯包括用于传导雾化液的雾化芯本体和用于加热雾化液的发热电阻,所述雾化芯本体设有雾化通孔,所述发热电阻设于雾化芯本体内部或雾化通孔的孔壁。
  8. 根据权利要求7所述的方便注液的电子雾化设备,其特征在于,所述发热电阻的两端还分别连接设有引线,所述电池支架位于所述电源壳开口一端设有正负电极,所述引线向下穿过所述底座与所述正负电极连接。
  9. 根据权利要求7所述的方便注液的电子雾化设备,其特征在于,所述雾化芯本体由微孔陶瓷材料或微孔硅藻土材料制成。
  10. 根据权利要求1所述的方便注液的电子雾化设备,其特征在于,所述吸嘴壳的内部位于所述柱塞下方连接设有吸嘴密封套。
  11. 根据权利要求1所述的方便注液的电子雾化设备,其特征在于,所述吸嘴壳的吸口向下延伸连接设有吸口管,所述吸口管与所述吸嘴壳的内壁之间围合构成挡液槽。
  12. 根据权利要求1所述的方便注液的电子雾化设备,其特征在于,所述雾化壳的外壁上设有可以透视观察储液腔内的雾化液的观察窗。
  13. 根据权利要求1所述的方便注液的电子雾化设备,其特征在于,所述电源壳位于下端一侧的外壁设有销孔,所述电池支架相对于所述销孔处设有固定孔,所述电源组件还设有自所述销孔插入到所述固定孔的固定销,所述固定销将所述电池支架固定于所述电源壳内部。
  14. 根据权利要求13所述的方便注液的电子雾化设备,其特征在于,所述固定销的前端设有弹性卡脚,所述弹性卡脚的端部设有径向凸起的凸缘,所述凸缘的前端设有斜面结构。
  15. 根据权利要求13所述的方便注液的电子雾化设备,其特征在于,所述固定销由透光材料构成,所述电池支架位于所述固定孔处设有LED指示灯。
  16. 根据权利要求1所述的方便注液的电子雾化设备,其特征在于,所述电源壳的封闭端端部设有USB孔,所述电池支架相对于所述USB孔处设有USB接口。
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