WO2023178888A1 - 雾化组件及气雾发生装置 - Google Patents

雾化组件及气雾发生装置 Download PDF

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Publication number
WO2023178888A1
WO2023178888A1 PCT/CN2022/105387 CN2022105387W WO2023178888A1 WO 2023178888 A1 WO2023178888 A1 WO 2023178888A1 CN 2022105387 W CN2022105387 W CN 2022105387W WO 2023178888 A1 WO2023178888 A1 WO 2023178888A1
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WO
WIPO (PCT)
Prior art keywords
conduit
oil storage
atomization
hole
core
Prior art date
Application number
PCT/CN2022/105387
Other languages
English (en)
French (fr)
Inventor
陈家太
周胜文
范方琴
彭苓
杨小东
罗传
谭红亮
Original Assignee
深圳市赛尔美电子科技有限公司
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.)
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Publication date
Priority claimed from CN202220646370.2U external-priority patent/CN217284813U/zh
Priority claimed from CN202220731007.0U external-priority patent/CN217851363U/zh
Application filed by 深圳市赛尔美电子科技有限公司 filed Critical 深圳市赛尔美电子科技有限公司
Priority to PCT/US2022/074931 priority Critical patent/WO2023183056A1/en
Publication of WO2023178888A1 publication Critical patent/WO2023178888A1/zh

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    • 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
    • A24F40/46Shape or structure of electric heating means

Definitions

  • the present invention relates to the field of electronic cigarettes, and in particular to an atomizing component and an aerosol generating device.
  • the atomizing core 1 of the aerosol generating device generally includes an oil-conducting cotton core 101 and a heating wire 102. As shown in Figures 1 and 2, the two ends of the heating wire 102 are connected with leads 103, and the heating wire 102 is wound around a columnar oil-conducting wire. The cotton core 101 is then placed horizontally on the fiberglass tube 2 and heated by the heating wire 102 to atomize the smoke oil, and the generated smoke is led out through the fiberglass tube 2 .
  • the fiberglass tube 2 is a one-piece structure. During production, it is necessary to punch a hole in the middle of the fiberglass tube 2 and cut a slit 201 to facilitate the splitting of the fiberglass tube 2, and then install the atomizing core 1 into the fiberglass tube. 2 in the installation hole 202, and then rely on the elastic restoring force of the fiberglass tube 2 to restore itself into a cylindrical shape to clamp the atomizer core 1. However, during the assembly process, it often happens that the fiberglass tube 2 cannot be installed due to insufficient elasticity.
  • the phenomenon of clamping the atomizing core 1 occurs, and the atomizing core 1 is easy to loosen, and when the fiberglass tube 2 is bent under force, it is easy to cause the atomizing core 2 to detach from the mounting hole 202, thus affecting the atomizing effect.
  • the invention provides an atomization assembly that can effectively clamp the atomization core to ensure the atomization effect, and has the characteristics of simple structure, convenient assembly and compact structure.
  • an atomization assembly which includes:
  • a first conduit, the first end of the first conduit is formed with a placement slot for penetrating and placing the atomizer core along the radial direction of the first conduit;
  • a second conduit the first end of the second conduit is sleeved on the first end of the first conduit, and is used to press the atomizing core into the placement groove.
  • the first end of the second conduit is formed with a compression groove opposite to the placement groove.
  • the tube assembly for the atomizing core also includes a sleeve, the sleeve is sleeved on the outer wall of the first conduit, the first conduit and the second conduit are respectively located on both sides of the atomizing core, and the There is a wire passing gap between the sleeve and the first conduit for the lead wire of the atomizer core to pass through.
  • the diameter of the first conduit is greater than or smaller than the diameter of the second conduit.
  • An aerosol generating device including the atomization component, and also includes:
  • the atomizing core is disposed in the placement groove along the radial direction of the first conduit;
  • the oil storage assembly includes an oil storage cotton and an oil storage silo.
  • the pipe assembly for the atomization core is arranged in the oil storage cotton.
  • the oil storage cotton is arranged in the oil storage silo, and the atomization core
  • the lead wire extends out of the oil storage tank; a first through hole and a second through hole are formed at both ends of the oil storage tank, the first through hole is connected to the first conduit, and the second through hole Communicated with the second conduit.
  • the oil storage tank includes a tank body. Both ends of the tank body are sealed and connected with a silicone seat and a silicone cover.
  • the silicone seat is provided with the first through hole
  • the silicone cover is provided with the second through hole.
  • a gasket is provided between the silicone cover and the oil storage cotton, and the gasket is provided with a third through hole connected to the second through hole.
  • the tube component for the atomizing core, the atomizing core, the oil storage component and the circuit component are arranged in the housing.
  • the side wall of the housing is provided with an air inlet. , the air inlet is connected to the first through hole, the end of the housing is provided with a cigarette holder, the cigarette holder is provided with an air outlet, and the air outlet is connected to the second through hole; the circuit
  • the assembly is used to control the atomization of the atomization core, and the upper part of the cigarette holder is provided with a cigarette holder cover.
  • the circuit component includes a circuit board, a battery and a microphone switch.
  • the circuit board is connected to the lead of the atomization core.
  • the battery is connected to the circuit board.
  • the microphone switch is connected to the circuit board.
  • An atomization component which includes:
  • a first protective tube is provided on the inside and/or outside of the first conduit for the lead wires to pass through;
  • a second conduit the first end of which is sleeved on the first end of the first conduit, is used to press the atomizing core into the placement groove.
  • a first protection tube is provided inside the first conduit for the lead wire to pass through.
  • the two first protection tubes are arranged oppositely, and the top ends of the two first protection tubes are close to the placement groove.
  • the bottom end of the first protection tube is flush with the bottom end of the first conduit.
  • the first protection tube is disposed outside the first conduit, and the bottom end of the first protection tube is flush with the bottom end of the first conduit.
  • the atomizing core can be placed through the placement groove formed by the first end of the first conduit along the radial direction of the first conduit, that is, the atomization core can be placed horizontally in the placement groove; through the first end of the second conduit Socketed on the first end of the first conduit, the atomizing core can be pressed tightly into the placement slot to realize the clamping of the atomizing core and ensure the atomizing effect. It has the characteristics of simple structure, convenient disassembly and assembly, and low cost.
  • Figure 1 is a schematic structural diagram of a related technology fiberglass tube
  • Figure 2 is a schematic diagram of the assembly of the glass fiber tube and the atomizing core in the related technology
  • Figure 3 is one of the exploded assembly views of the tube assembly for the atomizing core provided by the present invention.
  • Figure 4 is the second exploded assembly view of the tube assembly for the atomizing core provided by the present invention.
  • Figure 5 is an exploded view of the atomization core assembly provided by the present invention.
  • Figure 6 is a schematic structural diagram of the aerosol generating device provided by the present invention.
  • Figure 7 is an exploded view of the aerosol generating device provided by the present invention.
  • Figure 8 is one of the cross-sectional views of the aerosol generating device provided by the present invention.
  • Figure 9 is the second cross-sectional view of the aerosol generating device provided by the present invention.
  • Figure 10 is a schematic three-dimensional structural diagram of another designed aerosol generating device provided by the present invention.
  • Figure 11 is a half-section schematic diagram of Figure 10
  • Figure 12 is a schematic structural diagram of the atomizer core assembly with fixed pins in Figure 11;
  • Figure 13 is a schematic diagram of the internal structure of the atomizer core assembly with fixed pins in Figure 12;
  • Figure 14 is a schematic diagram of the internal structure of Embodiment 2 of another design
  • Figure 15 is a schematic structural diagram of Embodiment 3 of another design
  • Figure 16 is a schematic diagram of the exploded structure of Figure 15;
  • Figure 17 is a schematic structural diagram of Embodiment 4 of another design.
  • Embodiments of the present invention provide an atomizing component and an aerosol generating device.
  • the aerosol generating device provided by the present invention includes an atomizing component.
  • the atomizing component is also called an atomizing core tube assembly. It has the characteristics of a split structure, and the atomization assembly includes: a first conduit 3 and a second conduit 4.
  • the first end (upper end) of the first conduit 3 is formed with a placement groove 301 for placing the atomizing core 1 along the radial direction of the first conduit 3, that is, the atomizing core 1 can be laterally assembled in the placement groove 301.
  • the first end (lower end) of the second conduit 4 is sleeved on the first end of the first conduit 3 for pressing the atomizing core 1 into the placement groove 301.
  • Core 1 is loose, and when disassembling, simply separate the two conduits.
  • the split structure of the aerosol generating device with a split structure provided by the embodiment of the present invention is a detachable tube assembly for the atomizing core.
  • the atomizing core 1 is placed through the radial direction of the first conduit 3; by the first end of the second conduit 4 being sleeved on the first end of the first conduit 3, the atomizing core 1 can be pressed tightly into the placement slot 301, achieving The clamping of the atomizing core 1 ensures the atomizing effect, and has the characteristics of simple structure, convenient disassembly and assembly, and low cost.
  • the placement groove 301 should be designed as an arc-shaped groove that matches the oil-conducting cotton core 101. Specifically, it can be a U-shaped groove.
  • the first end (lower end) of the second conduit 4 is formed with a pressing groove 401 arranged opposite to the placing groove 301.
  • the shape of the pressing groove 401 is consistent with the oil-conducting cotton wick.
  • 101 is adapted to the shape of the arc groove, which can be a U-shaped groove.
  • the tube assembly for the atomizing core of the present invention also includes a sleeve 5.
  • the sleeve 5 is sleeved on the outer wall of the first conduit 3 and is located in the atomizer with the second conduit 4 respectively. both sides of core 1.
  • the first conduit 3 can be protected on the one hand through the sleeve 5; on the other hand, primary clamping is achieved through the first conduit 3 and the second conduit 4, and the sleeve 5 cooperates with the second conduit 4 to achieve Two-stage clamping, that is, two-stage clamping, can improve the clamping effect and effectively prevent the atomizer core 1 from loosening.
  • the lead wire 103 of the atomizing core 1 there is a wire passing gap between the sleeve 5 and the first conduit 3 for the lead wire 103 of the atomizing core 1 to pass through.
  • the lead 103 of the atomizing core 1 can be fixed to a certain extent through the sleeve 5 to prevent it from loosening.
  • the lead 103 of the atomizing core 1 can pass through the inside of the first conduit 3; it can also be exposed to the pipe assembly for the atomizing core. Such a design can avoid interference with the gas flow in the conduit.
  • the diameter of the first conduit 3 can be larger than the diameter of the second conduit 4, that is, the second conduit 4 is sleeved inside the first conduit 3; the diameter of the first conduit 3 can also be smaller than the diameter of the first conduit 3.
  • the diameter of the second conduit 4, that is, the second conduit 4 is sleeved on the outside of the first conduit 3, can be specifically designed according to actual assembly requirements.
  • first conduit 3, the second conduit 4 and the sleeve 5 of the present invention are not particularly limited.
  • they may be fiberglass tubes.
  • the present invention also provides an atomization core assembly, which includes an atomization core 1, an oil storage assembly and the atomization core tube assembly of the above embodiment.
  • the atomizing core 1 is transversely disposed in the placement groove 301 along the radial direction of the first conduit 3;
  • the oil storage assembly includes an oil storage cotton 6 and an oil storage bin 7, and the pipe assembly for the atomization core is disposed in the oil storage cotton 6.
  • the oil storage cotton 6 is arranged in the oil storage tank 7, and the lead 103 of the atomization core 1 extends out of the oil storage tank 7 to facilitate connection with the circuit components;
  • a first through hole 705 and a first through hole 705 are formed at both ends of the oil storage tank 7.
  • Two through holes 706 the first through hole 705 is connected to the first conduit 3 , and the second through hole 706 is connected to the second conduit 4 .
  • the oil storage tank 7 includes a tank body 701, a silicone seat 702, a silicone cover 703 and a gasket 704. Both ends of the tank body 701 are sealingly connected with a silicone seat 702 and a silicone cover 703 to improve the sealing performance.
  • the silicone seat 702 is provided with a first through hole 705, the silicone cover 703 is provided with a second through hole 706, and a gasket 704 is provided between the silicone cover 703 and the oil storage cotton 6 for compressing the oil storage cotton 6.
  • the sheet 704 is provided with a third through hole 707 connected with the second through hole 706 to ensure the circulation of smoke.
  • the working principle of the atomizer core assembly is described below, which generally includes: air intake through the first through hole 705, and the e-liquid in the oil storage cotton 6 enters the oil guide through the oil guide cotton core 101 of the atomizer core 1.
  • the heating wire 102 of the atomizing core 1 is energized to generate heat to heat and atomize the e-liquid adsorbed by the oil-conducting cotton core 101.
  • the atomized smoke is driven by the air flow. It flows from the first conduit 3 to the second conduit 4 and then flows out through the second through hole 706 .
  • the aerosol generating device of the present invention includes: a housing 8, a circuit component and the atomizing core component of the above embodiment.
  • the circuit component and the atomizing core component are arranged in the housing.
  • the atomizing core assembly is located at the upper part of the casing 8
  • the circuit assembly is located at the lower part of the casing 8.
  • the side wall of the casing 8 is provided with an air inlet 801, which is connected with the first through hole 705 to facilitate air intake.
  • the air outlet 901 is connected with the second through hole 706 to facilitate air outlet; the circuit component is used to control the atomization of the atomizing core 1.
  • the cigarette holder 9 is provided with a cigarette holder cover 13.
  • the cigarette holder cover 13 can be covered to protect the cigarette holder 9 and prevent it from being contaminated.
  • a mounting bracket 14 is provided in the lower part of the housing 8 , the atomizing core component is arranged on the top of the mounting bracket 14 , and the circuit component is arranged on the mounting bracket 14 .
  • a bottom cover 15 is set on the bottom of the mounting bracket 14 , and the bottom cover 15 is in close contact with the bottom of the housing 8 .
  • the circuit assembly includes a circuit board 10, a battery 11 and a microphone switch 12.
  • the circuit board 10 is connected to the lead 103 of the atomizing core 1, and the battery 11 is connected to the circuit board. 10 is connected, and the microphone switch 12 is connected with the circuit board 10 .
  • the mounting frame 14 is formed with an air chamber 141, which is connected with the air inlet hole 801 of the housing 8.
  • the microphone switch 12 is disposed close to the air chamber 141 for sensing changes in air pressure.
  • the aerosol generating device has the characteristics of simple structure, convenient disassembly and assembly, and the like.
  • the working principle of the aerosol generating device provided by the present invention is described below, which generally includes:
  • the oil circuit is as follows: the e-liquid in the oil storage cotton 6 enters the middle position of the oil-conducting cotton core 101 through the oil-conducting cotton core 101.
  • the heating wire 102 is energized to generate heat to heat and atomize the e-liquid adsorbed by the oil-conducting cotton core 101.
  • the melted smoke flows upward and flows out from the cigarette holder 9.
  • the air path is as follows: outside air flows in through the air inlet hole 801 of the housing 8, flows annularly along the horizontal direction, then enters the first through hole 705 of the silicone base 702, and then enters the first conduit 3 to flow upward, and the heating wire 102
  • the heated smoke is taken away and continues to flow upward into the second conduit 4, and then upward into the second through hole 706 of the silicone cover 703, and then flows out through the air outlet 901 of the cigarette holder 9.
  • the outside air continues to enter and atomize. The smoke continues to flow out.
  • the circuit is as follows: when a person inhales into the cigarette holder 9 and allows outside air to enter, the air cavity 141 of the mounting frame 14 produces air pressure changes, causing air pressure changes at the microphone switch 12, the microphone switch 12 sends a start signal, and the circuit board 10 controls The heating wire 102 is energized to work, and the heating wire 102 generates heat. When the air pressure of the air chamber 141 does not change, the microphone switch 12 is not activated and the heating wire 102 does not work.
  • this embodiment relates to an aerosol generating device, which can be used in atomization treatment or electronic cigarette equipment.
  • the aerosol generating device includes a housing 200 and an atomization core assembly 100 (also called an atomization assembly) with fixed pins provided in the housing 200.
  • a bracket 210 is provided in the housing, and the bracket 210 separates the housing into a lower battery.
  • the atomizer core assembly 100 with fixed pins is fixed on the bracket 210 and located in the upper oil storage area 220.
  • An oil storage cotton is provided in the upper oil storage area 220 to wrap the atomizer with fixed pins.
  • Atomizer core assembly 100 is provided in the upper oil storage area 220 to wrap the atomizer with fixed pins.
  • the upper and lower ends of the upper oil storage area 220 are sealed by the upper silica gel 240 and the lower silica gel 250.
  • the lower silica gel 250 is provided with a through hole 251 connected to the atomization core assembly 100 with fixed pins
  • the upper silica gel 240 is provided with an air outlet 241 connected with a fixed pin.
  • the air outlet 241 is connected to the suction nozzle 202
  • the casing 200 is also provided with an air inlet 201 communicating with the lower battery area 230.
  • the bracket 210 is provided with a microphone and a circuit board (not marked in the figure) connected to the battery.
  • the atomization core assembly 100 with fixed pins includes: an oil conductor 110 , a heating wire 120 , and a glass fiber tube 130 .
  • the heating wire 120 is wound around the The oil conductor 110, the two ends of the heating wire 120 are respectively connected with leads 121, and the leads 121 are connected to the microphone; the side wall of the glass fiber tube 130 is provided with two oppositely arranged first mounting holes 131, The oil conductor 110 is installed in the first installation hole 131.
  • the fiberglass tube 130 is provided with a first protection tube 132 for the lead wire 121 to pass through.
  • the utility model places the lead 121 in the first protection tube 132, which can separate the lead 121 from the oil storage cotton, prevent the smoke oil in the oil storage cotton from corroding and damaging the lead 121, and have a certain protective effect on the lead 121.
  • the fiberglass tube 130 is an elastic tube.
  • the fiberglass tube 130 is provided with a connecting groove 133 that penetrates the side wall of the fiberglass tube 130 . Both ends of the connecting groove 133 are respectively connected to the first Mounting hole 131.
  • the fiberglass tube 130 has good elasticity, a high melting point, and is not easily corroded.
  • the two first mounting holes 131 are connected through the connecting groove 133, and the fiberglass tube 130 can be easily bent from the connecting groove 133 to facilitate placing the oil conductor 110 into the first mounting hole 131, and then the fiberglass tube 130 Can be restored under its own elasticity.
  • the oil conductor 110 has an interference fit with the first mounting hole 131. After the glass fiber tube 130 is restored, the oil conductor 110 can be clamped.
  • the oil conductor 110 is not easy to loosen and has better stability. After the installation is completed, both ends of the oil guide 110 are inserted into the oil storage cotton. The smoke oil on the oil storage cotton enters the glass fiber tube 130 through the oil guide 110. The heating wire 120 heats and atomizes it, and the atomized gas is The sol then flows out from the suction nozzle 202.
  • the first protection tube 132 is disposed inside the glass fiber tube 130 .
  • the first protection tube 132 may be integrally formed with the fiberglass tube 130 , or may be formed by opening a hole in the side wall of the fiberglass tube 130 .
  • There are two first protection tubes 132 the top end of the first protection tube 132 is located at the bottom of the first mounting hole 131 , and the bottom end of the first protection tube 132 extends to the bracket 210 .
  • the lead wire 121 is fixed through the first protective tube 132 to prevent the lead wire 121 from loosening or even being broken during the assembly process of the oil conductor 110 and the glass fiber tube 130 .
  • Two first protection tubes 132 are provided inside the glass fiber tube 130.
  • the two first protection tubes 132 are arranged oppositely, and the top ends of the two first protection tubes 132 are close to the first installation hole. , the bottom ends of the two first protection tubes 132 are flush with the bottom ends of the glass fiber tubes 130 .
  • the oil circuit is as follows: the e-liquid in the oil storage cotton enters the middle position of the oil conductor 110 through the oil conductor 110.
  • the heating wire 120 is energized to generate heat to heat and atomize the e-liquid adsorbed by the oil conductor 110.
  • the atomized gas The sol flows upward and flows out from the suction nozzle 202.
  • the air path is as follows: outside air flows in through the air inlet hole 201 of the housing 200, flows annularly along the horizontal direction, then enters the battery area, passes through the through hole 251 of the lower silica gel 250, enters the glass fiber tube 130, flows upward, and The aerosol heated by the heating wire 120 moves away, continues to flow upward, enters the air outlet 241 of the upper silicone 240 through the fiberglass tube 130, and then flows out through the air outlet of the suction nozzle 202. The outside air continues to enter, and after atomization aerosols continue to flow out.
  • the circuit is as follows: the heating wire 120 is connected to the circuit board through the lead 121, the circuit board is connected to the battery, and the circuit board is also connected to the microphone.
  • the air pressure in the air cavity changes.
  • the support 210 The air pressure in the air cavity changes, causing the air pressure at the microphone to change.
  • the microphone sends out a start signal.
  • the circuit board controls the heating wire 120 to start working.
  • the heating wire 120 generates heat.
  • the air pressure in the air cavity of the bracket 210 does not change, the microphone If it does not start, the heating wire 120 does not work.
  • An atomizer core assembly 100 with fixed pins as shown in FIG. 14 , the difference between this embodiment and Embodiment 1 is that the first protection tube 132 is arranged outside the glass fiber tube 130 .
  • the first protection tube 132 is located outside the fiberglass tube 130, which makes it easier to install the lead wire 121.
  • There are two first protection tubes 132 the top end of the first protection tube 132 is located at the bottom of the first mounting hole 131 , and the bottom end of the first protection tube 132 extends to the bracket 210 .
  • the lead wire 121 is fixed through the first protective tube 132 to prevent the lead wire 121 from loosening or even being broken during the assembly process of the oil conductor 110 and the glass fiber tube 130 .
  • a first protection tube 132 for the lead wire to pass through is provided on the inside or/and outside of the glass fiber tube.
  • the atomization core assembly 100 with fixed pins includes an oil conductor 110, a heating wire 120, and a glass fiber tube 130.
  • the wire 120 is wound around the oil conductor 110, and the two ends of the heating wire 120 are respectively connected with leads 121;
  • the glass fiber tube 130 includes a first sub-tube 136 and a second sub-tube 137 that are detachably connected, so The side wall of one end of the first sub-tube 136 is provided with two opposite first notches 138, and the side wall of one end of the second sub-tube 137 is provided with two opposite second notches 139; the first sub-tube 137 is provided with two opposite second notches 139;
  • the pipe 136 is connected to the second sub-pipe 137 so that the first notch 138 and the second notch 139 are relatively arranged to form a second mounting hole 134, and the oil conductor 110 is penetrated in the second mounting hole 134;
  • the first sub-pipe 136 and the second sub-pipe 137 are detachably connected.
  • the first sub-pipe 136 is connected to the second sub-pipe 137 so that the first notch 138 and the second notch 139 are relatively arranged to form the second installation hole 134.
  • Installation There is no need to bend the fiberglass tube 130, and the assembly is very convenient; at the same time, placing the lead 121 in the second protective tube can separate the lead 121 from the oil storage cotton to prevent the smoke oil in the oil storage cotton from corroding and damaging the lead 121. It has a certain protective effect on the lead 121.
  • the second protection tube is located inside or outside the first sub-tube 136 or the second sub-tube 137 . In this embodiment, it is arranged inside the second sub-pipe 137 .
  • the first sub-pipe 136 and the second sub-pipe 137 are plug-fitted, and the second sub-pipe 137 is sleeved on the outside of the first sub-pipe 136 .
  • the first sub-pipe 136 and the second sub-pipe 137 are plug-fitted and can clamp the oil conductor 110, and the first sub-pipe 136 and the second sub-pipe 137 have an interference fit and have good sealing performance, or the first sub-pipe 136 and the second sub-pipe 137 have an interference fit.
  • the tube 136 and the second sub-tube 137 are plug-fitted, and the first sub-tube 136 is sleeved on the outside of the second sub-tube 137 .
  • a first conduit also called a second sub-pipe 137
  • the first end (also called an upper end) of the first conduit is shaped with a placement groove (also called a second notch 139) ), used to place the atomization core (atomization core assembly 100) along the radial direction of the first conduit.
  • the atomization core includes an oil conductor 110 and a heating wire 120.
  • the heating wire 120 is wound around the
  • the oil conductor 110 has lead wires 121 connected to both ends of the heating wire, and a first protection tube 135 is provided on the inside and/or outside of the first conduit for the lead wires to pass through;
  • the second conduit also called the first sub-pipe 136
  • the first end (also called the lower end) of the second conduit is sleeved on the first end (also called the upper end) of the first conduit, for Press the atomizer core tightly into the placement slot.
  • a first protection tube is provided inside the first conduit for the lead wire to pass through.
  • the two first protection tubes are arranged oppositely, and the top ends of the two first protection tubes are close to the placement groove.
  • the bottom end of the first protection tube is flush with the bottom end of the first conduit.
  • the first protection tube is disposed outside the first conduit, and the bottom end of the first protection tube is flush with the bottom end of the first conduit.
  • An atomizer core assembly 100 with fixed pins as shown in Figure 17.
  • the difference between this embodiment and the third embodiment is that the first sub-tube 136 and the second sub-tube 137 are plug-fitted, and the The first sub-tube 136 is sleeved on the outside of the second sub-tube 137 .
  • the first sub-pipe 136 and the second sub-pipe 137 are plug-fitted to clamp the oil conductor 110, and the first sub-pipe 136 and the second sub-pipe 137 have an interference fit and have good sealing performance.
  • the utility model places the lead in the first protective tube, which can separate the lead from the oil storage cotton, prevent the smoke oil in the oil storage cotton from corroding and damaging the lead, and have a certain protective effect on the lead.
  • the first sub-pipe and the second sub-pipe are detachably connected.
  • the first sub-pipe is connected to the second sub-pipe so that the first notch and the second notch are relatively arranged to form a second installation hole, which is not required during installation.
  • the fiberglass tube By bending the fiberglass tube, the oil conductor can be fixed in the second installation hole.
  • the installation stability is very high and the assembly is very convenient.
  • placing the lead wire in the second protective tube can separate the lead wire from the oil storage cotton. It prevents the smoke oil in the oil storage cotton from corroding and damaging the leads, and has a certain protective effect on the leads.

Abstract

一种雾化组件及使用其的气雾发生装置,其中雾化组件包括:第一导管(3),第一导管(3)的第一端形成有放置槽(301),用于沿第一导管(3)的径向贯穿放置雾化芯(1);第二导管(4),第二导管(4)的第一端套接于第一导管(3)的第一端,用于将雾化芯(1)压紧于放置槽内(301),使得雾化组件具有分体设计,结构简单、紧凑,装配方便的特性。

Description

雾化组件及气雾发生装置 技术领域
本发明涉及一种电子烟领域,尤其涉及一种雾化组件及气雾发生装置。
背景技术
气雾发生装置的雾化芯1一般包括导油棉芯101和发热丝102,如图1和图2所示,发热丝102的两端连接有引线103,发热丝102缠绕在柱状的导油棉芯101上,然后横放在玻纤管2上,通过发热丝102加热使烟油雾化,产生的烟气通过玻纤管2导出。
玻纤管2为一体成型结构,制作中需要将玻纤管2的中部进行打孔,切割出一条裂缝201,便于将玻纤管2掰开,然后再将雾化芯1装入玻纤管2的安装孔202中,再依靠玻纤管2自身的弹性恢复力,自行恢复呈圆筒状,以夹紧雾化芯1,但装配过程中,常出现因玻纤管2弹力不足导致无法夹紧雾化芯1的现象发生,雾化芯1容易松动,并且玻纤管2受力弯折时,还容易导致雾化芯2从安装孔202中脱离,从而影响雾化效果。
发明内容
本发明提供一种雾化组件,可以有效夹紧雾化芯,保证雾化效果,并且具有结构简单、装配方便和结构紧凑等特点。
本发明是这样实现的:一种雾化组件,其包括:
第一导管,所述第一导管的第一端形成有放置槽,用于沿所述第一导管的径向贯穿放置雾化芯;
第二导管,所述第二导管的第一端套接于所述第一导管的第一端,用于将 雾化芯压紧于所述放置槽内。
所述第二导管的第一端形成有与所述放置槽相对设置的压紧槽。
所述雾化芯用管组件还包括套管,所述套管套设于所述第一导管的外壁,第一导管与所述第二导管分别位于所述雾化芯的两侧,所述套管与所述第一导管之间具有过线间隙,用于雾化芯的引线穿过。
所述第一导管的管径大于或小于所述第二导管的管径。
一种气雾发生装置,包括所述的雾化组件,还包括:
雾化芯,沿所述第一导管的径向贯穿设置于所述放置槽;
储油组件,包括储油棉和储油仓,所述雾化芯用管组件设置于所述储油棉内,所述储油棉设置于所述储油仓内,且所述雾化芯的引线伸出所述储油仓;所述储油仓的两端形成有第一通孔和第二通孔,所述第一通孔与所述第一导管连通,所述第二通孔与所述第二导管连通。
所述储油仓包括仓体,所述仓体的两端密封连接有硅胶座和硅胶盖,所述硅胶座设有所述第一通孔,所述硅胶盖设有所述第二通孔,且所述硅胶盖与所述储油棉之间设有垫片,所述垫片设有与所述第二通孔连通的第三通孔。
还包括外壳和电路组件,所述雾化芯用管组件、所述雾化芯、所述储油组件和所述电路组件设置于所述外壳内,所述外壳的侧壁设有进气孔,所述进气孔与所述第一通孔连通,所述外壳的端部设有烟嘴,所述烟嘴内设有出气道,所述出气道与所述第二通孔连通;所述电路组件用于控制所述雾化芯的雾化,所述烟嘴的上部设有烟嘴盖。
所述电路组件包括电路板、电池和咪头开关,所述电路板与所述雾化芯的引线相连,所述电池与所述电路板相连,所述咪头开关与所述电路板相连。
一种雾化组件,其包括:
第一导管,所述第一导管的第一端形成有放置槽,用于沿所述第一导管的径向贯穿放置雾化芯,所述雾化芯包括导油体和发热丝,所述发热丝绕设于所述导油体,所述发热丝的两端分别连接有引线,所述第一导管的内侧和/或外侧设置有用于供引线穿过的第一保护管;
第二导管,所述第二导管的第一端套接于所述第一导管的第一端,用于将雾化芯压紧于所述放置槽内。
所述第一导管的内侧设置有用于供引线穿过的第一保护管,两个所述第一保护管相对设置,两个所述第一保护管的顶端靠近所述放置槽,两个所述第一保护管的底端与所述第一导管的底端齐平。
所述第一保护管设置于所述第一导管的外侧,所述第一保护管的底端与所述第一导管的底端齐平。
本发明通过第一导管的第一端形成的放置槽,可以沿第一导管的径向贯穿放置雾化芯,即可以将雾化芯横放在放置槽内;通过第二导管的第一端套接于第一导管的第一端,可以将雾化芯压紧于放置槽内,实现雾化芯的夹紧,保证雾化效果,并且具有结构简单、拆装方便和成本低等特点。
附图说明
为了更清楚地说明本发明实施例或现有技术中的技术方案,下面将对实施例或现有技术描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本发明的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动性的前提下,还可以根据这些附图获得其他的附图。
图1是相关技术玻纤管的结构示意图;
图2是相关技术玻纤管与雾化芯的装配示意图;
图3是本发明提供的雾化芯用管组件的装配爆炸图之一;
图4是本发明提供的雾化芯用管组件的装配爆炸图之二;
图5是本发明提供的雾化芯组件的爆炸图;
图6是本发明提供的气雾发生装置的结构示意图;
图7是本发明提供的气雾发生装置的爆炸图;
图8是本发明提供的气雾发生装置的剖面图之一;
图9是本发明提供的气雾发生装置的剖面图之二;
图10为本本发明提供的另一种设计的气雾发生装置的立体结构示意图;
图11为图10的半剖示意图;
图12为图11中具有固定引脚的雾化芯组件的结构示意图;
图13为图12的具有固定引脚的雾化芯组件的内部结构示意图;
图14为另一种设计的实施例二的内部结构示意图;
图15为另一种设计的实施例三的结构示意图;
图16为图15分解结构示意图;
图17为另一种设计的实施例四的结构示意图。
具体实施方式
下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本发明一部分实施例,而不是全部的实施例。基于本发明中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本发明保护的范围。
本发明实施例提供一种雾化组件及气雾发生装置,如图3-9所示,本发明提供的气雾发生装置包括雾化组件,雾化组件也称为雾化芯用管组件,其具有分体式结构的特点,雾化组件包括:第一导管3和第二导管4。其中,第一导管3的第一端(上端)形成有放置槽301,用于沿第一导管3的径向贯穿放置雾化芯 1,即可以将雾化芯1横向装配在放置槽301内;第二导管4的第一端(下端)套接于第一导管3的第一端,用于将雾化芯1压紧于放置槽301内。装配时,将雾化芯1横放在放置槽301内,然后将第二导管4与第一导管3紧密套接,从而可以将雾化芯1夹紧于两根导管之间,防止雾化芯1松动,并且拆卸时,只需将两根导管分离即可。
因此,本发明实施例提供的具有分体式结构的气雾发生装置的分体式结构为可拆装的雾化芯用管组件,通过第一导管3的第一端形成的放置槽301,可以沿第一导管3的径向贯穿放置雾化芯1;通过第二导管4的第一端套接于第一导管3的第一端,可以将雾化芯1压紧于放置槽301内,实现雾化芯1的夹紧,保证雾化效果,并且具有结构简单、拆装方便和成本低等特点。
一般的,雾化芯1的导油棉芯101为柱状,因此,放置槽301应设计成与导油棉芯101相适配的弧形槽,具体可以为U型槽。
根据本发明的一个实施例,如图3所示,当第一导管3的上端与第二导管4的下端套接时,第二导管4的下端面与雾化芯1的上侧弧面抵接,此时为平面与弧面的接触,可以将雾化芯1压紧于第一导管3的放置槽301内。
根据本发明的一个实施例,如图4所示,第二导管4的第一端(下端)形成有与放置槽301相对设置的压紧槽401,压紧槽401的形状与导油棉芯101的形状相适配,即为弧形槽,具体可以为U型槽。当第一导管3的上端与第二导管4的下端套接时,第二导管4的压紧槽401与雾化芯1的上侧弧面抵接,此时为弧面配合,可以进一步增大接触面积,提高压紧效果,从而将雾化芯1有效压紧于第一导管3的放置槽301内。
根据本发明的一个实施例,如图3所示,本发明雾化芯用管组件还包括套管5,套管5套设于第一导管3的外壁且与第二导管4分别位于雾化芯1的两侧。 本发明实施例通过套管5,一方面可以保护第一导管3;另一方面,通过第一导管3与第二导管4实现一级夹紧,通过套管5与第二导管4配合,实现二级夹紧,即通过两级夹紧,可以提高夹紧效果,有效防止雾化芯1松动。
根据本发明的一个实施例,套管5与第一导管3之间具有过线间隙,用于雾化芯1的引线103穿过。通过套管5可以在一定程度上固定雾化芯1的引线103,防止其松动。
在一些实施例中,雾化芯1的引线103可以从第一导管3内部穿出;也可以外露于雾化芯用管组件,这样设计的话,可以避免对导管内的气体流动造成干涉。
根据本发明的一个实施例,第一导管3的管径可以大于第二导管4的管径,即第二导管4套接于第一导管3的内侧;第一导管3的管径也可以小于第二导管4的管径,即第二导管4套接于第一导管3的外侧,具体可根据实际装配需求进行设计。
本发明第一导管3、第二导管4和套管5的具体类型不做特别限制,例如可以为玻纤管。
根据本发明的一个实施例,如图5所示,本发明还提供一种雾化芯组件,包括雾化芯1、储油组件和上述实施例的雾化芯用管组件。其中,雾化芯1沿第一导管3的径向横向贯穿设置于放置槽301内;储油组件包括储油棉6和储油仓7,雾化芯用管组件设置于储油棉6内,储油棉6设置于储油仓7内,且雾化芯1的引线103伸出储油仓7,便于与电路组件连接;储油仓7的两端形成有第一通孔705和第二通孔706,第一通孔705与第一导管3连通,第二通孔706与第二导管4连通。
根据本发明的一个实施例,储油仓7包括仓体701、硅胶座702、硅胶盖703 和垫片704,仓体701的两端密封连接有硅胶座702和硅胶盖703,以提高密封性能;硅胶座702设有第一通孔705,硅胶盖703设有第二通孔706,且硅胶盖703与储油棉6之间设有垫片704,用于压紧储油棉6,垫片704设有与第二通孔706连通的第三通孔707,以保证烟气流通。
下面对本发明实施例雾化芯组件的工作原理进行描述,大致包括:通过第一通孔705进气,储油棉6内的烟油通过雾化芯1的导油棉芯101进入到导油棉芯101的中间位置,即第一导管3内,雾化芯1的发热丝102通电产生热量将导油棉芯101吸附的烟油加热雾化,雾化产生的烟气在气流的带动下经从第一导管3流至第二导管4,再经第二通孔706流出。
根据本发明的一个实施例,如图6-图9所示,本发明气雾发生装置包括:外壳8、电路组件和上述实施例的雾化芯组件,电路组件和雾化芯组件设置于外壳8内,雾化芯组件位于外壳8的上部,电路组件位于外壳8的下部,外壳8的侧壁设有进气孔801,进气孔801与第一通孔705连通,便于进气,外壳8的端部设有烟嘴9,烟嘴9内设有出气道901,出气道901与第二通孔706连通,便于出气;电路组件用于控制雾化芯1的雾化。
根据本发明的一个实施例,如图6所示,烟嘴9设有烟嘴盖13,不使用气雾发生装置时,可以盖上烟嘴盖13,保护烟嘴9,防止其被污染。
根据本发明的一个实施例,如图7所示,外壳8内的下部设有安装架14,雾化芯组件设置于安装架14的顶部,电路组件设置于安装架14上。
根据本发明的一个实施例,安装架14的底部套设有底盖15,且底盖15与外壳8的底部紧密抵接。
根据本发明的一个实施例,如图8和图9所示,电路组件包括电路板10、电池11和咪头开关12,电路板10与雾化芯1的引线103相连,电池11与电路 板10相连,咪头开关12与电路板10相连。具体地,安装架14形成有气腔141,气腔141与外壳8的进气孔801连通,咪头开关12靠近气腔141设置,用于感应气压变化。
本发明实施例的气雾发生装置具有结构简单、拆装方便等特点。下面对本发明提供的气雾发生装置的工作原理进行描述,大致包括:
油路如下:储油棉6内的烟油通过导油棉芯101进入到导油棉芯101的中间位置,发热丝102通电产生热量将导油棉芯101吸附的烟油加热雾化,雾化后的烟气向上流动,从烟嘴9流出。
气路如下:外界气体通过外壳8的进气孔801流入,沿着水平方向环形流动,然后进入硅胶座702的第一通孔705,再进入到第一导管3中向上流动,将发热丝102加热后的烟气带走,继续向上流动至第二导管4内,再向上进入到硅胶盖703的第二通孔706,然后通过烟嘴9的出气道901流出,外界空气持续的进入,雾化后的烟气持续的流出。
电路如下:人在对烟嘴9吸气,使外界气体进入时,安装架14的气腔141产生气压变化,引起咪头开关12处的气压变化,咪头开关12发出启动信号,电路板10控制发热丝102通电工作,发热丝102产生热量,气腔141的气压无变化时,咪头开关12不启动,发热丝102不工作。
另外本设计还提供了其它设计方式,请参见图10-17,具体介绍如下。
实施例一
如图10至图13所示,本实施例涉及一种气雾发生装置,该气雾发生装置可以用于雾化治疗或者电子烟设备上,本实施例以电子烟为例。气雾发生装置包括壳体200和设置于壳体200的具有固定引脚的雾化芯组件100(也称为雾化组件),壳体内设置有支架210,支架210将壳体分隔呈下部电池区230和上部 储油区220,具有固定引脚的雾化芯组件100固定于支架210且位于上部储油区220内,上部储油区220内设置有储油棉包裹住具有固定引脚的雾化芯组件100。上部储油区220上下两端通过上硅胶240和下硅胶250进行密封,下硅胶250设置有通孔251连接具有固定引脚的雾化芯组件100,上硅胶240设置有出气孔241连接具有固定引脚的雾化芯组件100,出气孔241连接吸嘴202,壳体200还开设有与下部电池区230相通的进气孔201。支架210上设置有连接电池的咪头及电路板(图中没有标注)。具体工作时,储油棉上的烟油进入具有固定引脚的雾化芯组件100内加热雾化,雾化后的气溶胶再从吸嘴202流出。
在本实施例中,结合图2至图4所示,具有固定引脚的雾化芯组件100包括:导油体110、发热丝120、玻璃纤维管130,所述发热丝120绕设于所述导油体110,所述发热丝120的两端分别连接有引线121,引线121连接咪头;所述玻璃纤维管130上的侧壁上开设有两个相对设置的第一安装孔131,所述导油体110安装在所述第一安装孔131内,所述玻璃纤维管130设置有用于供引线121穿过的第一保护管132,第一保护管132的一端靠近所述第一安装孔131,所述第一保护管132的另一端位于玻璃纤维管130的端部,玻璃纤维管130的底端连接下硅胶250的通孔251,玻璃纤维管130的顶端连接上硅胶240的出气孔241。本实用新型将引线121放置在第一保护管132内,可以使引线121与储油棉分离,防止储油棉中的烟油将引线121腐蚀,损坏,对引线121有一定的保护作用。
在本实施例中,所述玻璃纤维管130为弹性管,所述玻璃纤维管130设置有贯穿玻璃纤维管130侧壁的连接槽133,所述连接槽133的两端分别连接所述第一安装孔131。具体地,玻璃纤维管130具有较好的弹性,且熔点较高,不易腐蚀。两个第一安装孔131之间通过连接槽133连接,可以方便从连接槽133 处弯折玻璃纤维管130,以方便将导油体110放入第一安装孔131内,之后玻璃纤维管130可以在自身弹力的作用下恢复。所述导油体110与所述第一安装孔131过盈配合,玻璃纤维管130恢复后,可以夹紧导油体110,导油体110不易松动,稳定性更好。安装完成后,导油体110的两端插入储油棉内,储油棉上的烟油通过导油体110进入玻璃纤维管130内,发热丝120对其加热雾化,雾化后的气溶胶再从吸嘴202流出。
结合图13所示,所述第一保护管132设置于所述玻璃纤维管130的内侧。具体地,第一保护管132可以与玻璃纤维管130一体成型,或者在玻璃纤维管130的侧壁上开孔而成。第一保护管132设置有两个,第一保护管132的顶端位于第一安装孔131的底部,第一保护管132的底端延伸至支架210。将引线121通过第一保护管132予以固定,防止导油体110和玻璃纤维管130装配的过程中,引线121松动,甚至拉断引线121。所述玻璃纤维管130的内侧设置有两个所述第一保护管132,两个所述第一保护管132相对设置,两个所述第一保护管132的顶端靠近所述第一安装孔,两个所述第一保护管132的底端与所述玻璃纤维管130的底端齐平。
工作原理:
油路如下:储油棉内的烟油通过导油体110进入到导油体110的中间位置,发热丝120通电产生热量将导油体110吸附的烟油加热雾化,雾化后的气溶胶向上流动,从吸嘴202流出。
气路如下:外界气体通过壳体200的进气孔201流入,沿着水平方向环形流动,然后进入电池区域,通过下硅胶250的通孔251,进入到玻璃纤维管130中,向上流动,将发热丝120加热后的气溶胶带走,向上流动继续,通过玻璃纤维管130向上进入到上硅胶240的出气孔241,然后通过吸嘴202的出气道流 出,外界空气持续的进入,雾化后的气溶胶持续的流出。
电路如下:发热丝120通过引线121连接电路板,电路板连接电池,电路板还连接咪头,人在吸嘴202吸气时,气腔内的气压产生变化,外界气体进入时,支架210的气腔产生气压变化,引起咪头处的气压变化,咪头发出启动的信号,电路板控制发热丝120通电开始工作,发热丝120产生热量,支架210的气腔产生气压无变化时,咪头不启动,发热丝120不工作。
实施例二
一种具有固定引脚的雾化芯组件100,如图14所示,本实施例与实施例一的不同之处在于:所述第一保护管132设置于所述玻璃纤维管130的外侧。第一保护管132位于玻璃纤维管130的外侧,可以更加方便安装引线121。第一保护管132设置有两个,第一保护管132的顶端位于第一安装孔131的底部,第一保护管132的底端延伸至支架210。将引线121通过第一保护管132予以固定,防止导油体110和玻璃纤维管130装配的过程中,引线121松动,甚至拉断引线121。由以上介绍可知,所述玻璃纤维管的内侧或/和外侧设置有用于供引线穿过的第一保护管132。
实施例三
一种具有固定引脚的雾化芯组件100,如图15和图16所示,具有固定引脚的雾化芯组件100包括导油体110、发热丝120、玻璃纤维管130,所述发热丝120绕设于所述导油体110,所述发热丝120的两端分别连接有引线121;所述玻璃纤维管130包括可拆卸连接的第一子管136和第二子管137,所述第一子管136一端的侧壁开设有两个相对设置的第一缺口138,所述第二子管137一端的侧壁开设有两个相对设置的第二缺口139;所述第一子管136连接所述第二子管137能使第一缺口138和第二缺口139相对设置以形成第二安装孔134,所述导 油体110穿设于所述第二安装孔134;所述第一子管136或第二子管137设置有用于供引线121穿过的第二保护管。采用可拆卸连接的第一子管136和第二子管137,第一子管136连接第二子管137能使第一缺口138和第二缺口139相对设置以形成第二安装孔134,安装时不需要弯折玻璃纤维管130,组装非常方便;同时将引线121放置在第二保护管内,可以使引线121与储油棉分离,防止储油棉中的烟油将引线121腐蚀,损坏,对引线121有一定的保护作用。
所述第二保护管位于第一子管136或第二子管137的内侧或外侧。本实施例设置于第二子管137的内侧。所述第一子管136和第二子管137插接配合,所述第二子管137套接在第一子管136的外侧。第一子管136和第二子管137插接配合,可以夹紧导油体110,且第一子管136和第二子管137过盈配合,密封性较好,或所述第一子管136和第二子管137插接配合,所述第一子管136套接在第二子管137的外侧。
本实施例的其他特征与实施例一相同,此处不在赘述。
本实施例也可以参见如下介绍,第一导管(也称为第二子管137),所述第一导管的第一端(也称为上端)形有放置槽(也称为第二缺口139),用于沿所述第一导管的径向贯穿放置雾化芯(雾化芯组件100),所述雾化芯包括导油体110和发热丝120,所述发热丝120绕设于所述导油体110,所述发热丝的两端分别连接有引线121,所述第一导管的内侧和/或外侧设置有用于供引线穿过的第一保护管135;
第二导管(也称为第一子管136),所述第二导管的第一端(也称为下端)套接于所述第一导管的第一端(也称为上端),用于将雾化芯压紧于所述放置槽内。所述第一导管的内侧设置有用于供引线穿过的第一保护管,两个所述第一保护管相对设置,两个所述第一保护管的顶端靠近所述放置槽,两个所述第一 保护管的底端与所述第一导管的底端齐平。所述第一保护管设置于所述第一导管的外侧,所述第一保护管的底端与所述第一导管的底端齐平。
实施例四
一种具有固定引脚的雾化芯组件100,如图17所示,本实施例与实施三的不同之处在于:所述第一子管136和第二子管137插接配合,所述第一子管136套接在第二子管137的外侧。第一子管136和第二子管137插接配合,可以夹紧导油体110,且第一子管136和第二子管137过盈配合,密封性较好。
具体有益效果如下,其一、本实用新型将引线放置在第一保护管内,可以使引线与储油棉分离,防止储油棉中的烟油将引线腐蚀,损坏,对引线有一定的保护作用;其二、采用可拆卸连接的第一子管和第二子管,第一子管连接第二子管能使第一缺口和第二缺口相对设置以形成第二安装孔,安装时不需要弯折玻璃纤维管,便可以将导油体固定在第二安装孔内,安装的稳定性非常高,组装非常方便;同时将引线放置在第二保护管内,可以使引线与储油棉分离,防止储油棉中的烟油将引线腐蚀,损坏,对引线有一定的保护作用。
以上所述仅为本发明的较佳实施例而已,并不用以限制本发明,凡在本发明的精神和原则之内,所作的任何修改、等同替换、改进等,均应包含在本发明的保护范围之内。

Claims (12)

  1. 一种雾化组件,其特征在于,包括:
    第一导管,所述第一导管的第一端形成有放置槽,用于沿所述第一导管的径向贯穿放置雾化芯;
    第二导管,所述第二导管的第一端套接于所述第一导管的第一端,用于将雾化芯压紧于所述放置槽内。
  2. 如权利要求1所述的一种雾化组件,其特征在于:所述第二导管的第一端形成有与所述放置槽相对设置的压紧槽。
  3. 如权利要求1所述的一种雾化组件,其特征在于:所述雾化芯用管组件还包括套管,所述套管套设于所述第一导管的外壁,第一导管与所述第二导管分别位于所述雾化芯的两侧,所述套管与所述第一导管之间具有过线间隙,用于雾化芯的引线穿过。
  4. 如权利要求1所述的一种雾化组件,其特征在于:所述第一导管的管径大于或小于所述第二导管的管径。
  5. 一种气雾发生装置,包括权利要求1-4中任一项所述的雾化组件,其特征在于,还包括:
    雾化芯,沿所述第一导管的径向贯穿设置于所述放置槽;
    储油组件,包括储油棉和/或储油仓,所述雾化芯用管组件设置于所述储油棉内,所述储油棉设置于所述储油仓内,且所述雾化芯的引线伸出所述储油仓;所述储油仓的两端形成有第一通孔和第二通孔,所述第一通孔与所述第一导管连通,所述第二通孔与所述第二导管连通。
  6. 如权利要求5所述的一种气雾发生装置,其特征在于:所述储油仓包括仓体,所述仓体的两端密封连接有硅胶座和硅胶盖,所述硅胶座设有所述第一通孔,所述硅胶盖设有所述第二通孔,且所述硅胶盖与所述储油棉之间设有垫 片,所述垫片设有与所述第二通孔连通的第三通孔。
  7. 如权利要求6所述的一种气雾发生装置,其特征在于:还包括外壳和电路组件,所述雾化芯用管组件、所述雾化芯、所述储油组件和所述电路组件设置于所述外壳内,所述外壳的侧壁设有进气孔,所述进气孔与所述第一通孔连通,所述外壳的端部设有烟嘴,所述烟嘴内设有出气道,所述出气道与所述第二通孔连通;所述电路组件用于控制所述雾化芯的雾化,所述烟嘴的上部设有烟嘴盖。
  8. 如权利要求6所述的一种气雾发生装置,其特征在于:所述电路组件包括电路板、电池和咪头开关,所述电路板与所述雾化芯的引线相连,所述电池与所述电路板相连,所述咪头开关与所述电路板相连。
  9. 一种雾化组件,其特征在于,包括:
    第一导管,所述第一导管的第一端形成有放置槽,用于沿所述第一导管的径向贯穿放置雾化芯,所述雾化芯包括导油体和发热丝,所述发热丝绕设于所述导油体,所述发热丝的两端分别连接有引线,所述第一导管的内侧和/或外侧设置有用于供引线穿过的第一保护管;
    第二导管,所述第二导管的第一端套接于所述第一导管的第一端,用于将雾化芯压紧于所述放置槽内。
  10. 如权利要求9所述的一种雾化组件,其特征在于,所述第一导管的内侧设置有用于供引线穿过的第一保护管,两个所述第一保护管相对设置,两个所述第一保护管的顶端靠近所述放置槽,两个所述第一保护管的底端与所述第一导管的底端齐平。
  11. 如权利要求9所述的一种雾化组件,其特征在于,所述第一保护管设置于所述第一导管的外侧,所述第一保护管的底端与所述第一导管的底端齐平。
  12. 一种气雾发生装置,包括权利要求9-11中任一项所述的雾化组件,其特征在于,还包括:
    储油组件,包括储油棉和储油仓,所述雾化芯装配于所述储油棉内,所述储油棉设置于所述储油仓内;
    壳体,所述壳体内设置有支架,所述支架将所述壳体分隔呈下部电池区和上部储油区,储油组件位于储油区,所述上部储油区上下两端通过上硅胶和下硅胶进行密封,所述下硅胶设置有通孔,所述上硅胶设置有出气孔,所述壳体的顶端设置有吸嘴与所述出气孔连接;所述壳体还开设有与下部电池区相通的进气孔。
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