WO2014071623A1 - 电子烟装置、电子烟及其雾化装置 - Google Patents

电子烟装置、电子烟及其雾化装置 Download PDF

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Publication number
WO2014071623A1
WO2014071623A1 PCT/CN2012/084441 CN2012084441W WO2014071623A1 WO 2014071623 A1 WO2014071623 A1 WO 2014071623A1 CN 2012084441 W CN2012084441 W CN 2012084441W WO 2014071623 A1 WO2014071623 A1 WO 2014071623A1
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WO
WIPO (PCT)
Prior art keywords
atomizing
rod
electronic cigarette
liquid
electronic
Prior art date
Application number
PCT/CN2012/084441
Other languages
English (en)
French (fr)
Inventor
刘秋明
Original Assignee
Liu Qiuming
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 Liu Qiuming filed Critical Liu Qiuming
Priority to CN201280064219.7A priority Critical patent/CN104053372B/zh
Priority to US13/994,709 priority patent/US9439456B2/en
Priority to PCT/CN2012/084441 priority patent/WO2014071623A1/zh
Publication of WO2014071623A1 publication Critical patent/WO2014071623A1/zh

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Classifications

    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F40/00Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
    • A24F40/40Constructional details, e.g. connection of cartridges and battery parts
    • 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
    • A24F40/44Wicks
    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F15/00Receptacles or boxes specially adapted for cigars, cigarettes, simulated smoking devices or cigarettes therefor
    • A24F15/01Receptacles or boxes specially adapted for cigars, cigarettes, simulated smoking devices or cigarettes therefor specially adapted for simulated smoking devices or cigarettes therefor
    • 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

Definitions

  • the present invention relates to the field of electronic cigarettes and cigarette cases, and more particularly to an electronic cigarette and an electronic cigarette device thereof that do not use a glass fiber atomizing rod in an atomizing device.
  • the existing electronic cigarette generally consists of a suction rod and a power rod.
  • the suction rod is usually provided with a nozzle and an atomizing device for generating smoke from the liquid.
  • the power rod is usually provided with a battery and a control switch. Used to provide power, the control switch is used to control the overall operation of the electronic cigarette.
  • the atomization device of the existing electronic cigarette generally uses a glass fiber material as an atomizing rod for supplying the hot wire to wrap and providing the electric heating wire with the liquid smoke to heat the generated smoke, since the glass fiber material is heated by the electric heating wire to generate Glass fiber particles, when people use electronic cigarettes, tiny glass fiber particles will be inhaled with the smoke and cause harm to the human body.
  • An object of the present invention is to provide an electronic aerosolizing device which uses an atomizing rod and a liquid guiding rope made of a non-glass material to avoid the generation of glass fiber particles harmful to the human body.
  • an electronic aerosolization device includes an atomization cup and an atomizer fixed in the atomization cup, the atomizer including an atomizing rod and a winding unit
  • the electric heating wire on the atomizing rod wherein the atomizing rod is a medium-passing pipe structure made of a non-glass fiber material and a high-temperature resistant insulating material, wherein the portion is provided with a guide made of a non-glass material
  • the liquid crystal rope has a plurality of liquid guiding holes on the side wall of the atomizing rod which are radially penetrated through the atomizing rod and overflows to discharge the smoke through the electric heating wire to generate smoke.
  • non-glass material used for manufacturing the liquid guiding cord is any one of the following materials: high temperature cotton, chemical fiber cotton, mixed cotton, pure cotton or non-woven fabric.
  • liquid guiding holes are arranged in a rectangular array along the axial direction of the atomizing rod.
  • liquid guiding holes are arranged along the radial direction of the atomizing rod in an annular array centered on the axis of the atomizing rod.
  • the atomizing rod has a circular, polygonal or petal shape in cross section.
  • liquid guiding hole has an elliptical shape, a polygonal shape or a flat shape.
  • the atomization cup comprises a liquid storage component and a support member sleeved inside the liquid storage component
  • the support component has a tube structure in a middle passage, and the middle portion is formed for receiving An atomization chamber of the atomizer.
  • a sidewall of the support member is correspondingly provided with a bayonet penetrating through the sidewall for the atomizing rod to be inserted.
  • Another object of the present invention is to provide an electronic cigarette, wherein the atomizing rod and the liquid guiding rope in the atomizing device are made of non-glass materials, thereby preventing the human body from inhaling the glass fiber particles and causing the human body. hurt.
  • the present invention also discloses an electronic cigarette comprising a main rod body, the main rod body is provided with a suction nozzle at one end, and a battery is built in the other end, and the main rod body is disposed at one end of the suction nozzle An atomizing device electrically connected to the battery, wherein the atomizing device is an electronic aerosolizing device as described above.
  • the atomization device is provided with a connection assembly electrically connected to the atomization device and the battery at one end of the battery, and the connection assembly includes a first electrode as a first electrode of the atomization device And a second electrode member as a second electrode of the atomizing device, wherein the first electrode member and the second electrode member are fixed by an insulating ring.
  • two ends of the heating wire are electrically connected to the first electrode member and the second electrode member, respectively.
  • the electronic cigarette further comprises a control system electrically connected to the battery to control the powering device to be powered on or off; the control system is disposed between the atomizing device and the battery, or The control system is disposed at an end of the battery that is remote from the atomizing device.
  • a further object of the present invention is to provide an electronic cigarette device in which an electronic cigarette does not generate glass fiber particles which are harmful to the human body and can enter the human body with smoke.
  • an electronic cigarette device includes an electronic cigarette case and an electronic cigarette housed in the electronic cigarette case, wherein the electronic cigarette is an electronic cigarette as described above.
  • the beneficial effects of the embodiments of the present invention are: due to the use of a non-glass material made of high temperature insulating material, the atomizing rod, and the liquid crystal rod is made of non-glass material in the atomizing rod, The heating wire is heated and atomized to generate smoke, while avoiding the production of glass fiber particles, and the use is healthier and safer.
  • FIG. 1 is a schematic structural view of an electronic aerosolization device according to an embodiment of the present invention.
  • FIG. 2 is a schematic view showing a first embodiment of an axial side of an atomizing rod according to an embodiment of the present invention.
  • FIG 3 is a schematic view showing a second embodiment of the axial side of the atomizing rod according to the embodiment of the present invention.
  • FIG. 4 is a schematic view showing a third embodiment of the axial side of the atomizing rod according to the embodiment of the present invention.
  • 5 is a schematic view showing a first embodiment of a radial bottom surface of an atomizing rod according to an embodiment of the present invention.
  • FIG. 6 is a schematic view showing a second embodiment of the radial bottom surface of the atomizing rod according to the embodiment of the present invention.
  • FIG. 7 is a schematic view showing a third embodiment of the radial bottom surface of the atomizing rod according to the embodiment of the present invention.
  • FIG. 8 is a schematic structural view of a first embodiment of an electronic cigarette according to an embodiment of the present invention.
  • FIG. 9 is a schematic structural view of a second embodiment of an electronic cigarette according to an embodiment of the present invention.
  • FIG. 10 is a schematic structural view of a third embodiment of an electronic cigarette according to an embodiment of the present invention.
  • FIG. 11 is a perspective view of an electronic cigarette device according to an embodiment of the present invention.
  • an embodiment of the present invention provides an electronic cigarette device including an electronic cigarette 100 and an electronic cigarette case 200 for accommodating the electronic cigarette 100.
  • the electronic cigarette 100 includes a main rod body 10 which is provided as a cylindrical tubular body structure which is hollow inside to form a receiving cavity of each internal member. It can be understood that the main rod body 10 can also be provided as any other tubular body structure having a hollow cavity body, and is not limited to the cylindrical shape shown in this embodiment. In this embodiment, the main rod body 10 can be made of stainless steel or plastic or other applicable materials.
  • the main rod body 10 is provided with a suction nozzle 20 at a distal end thereof, and the battery 30 is disposed away from the other end of the suction nozzle 20. Therefore, according to the composition and function of the internal components of the main rod body 10,
  • the main rod body 10 is divided into two parts, a suction rod 11 and a power rod 12, that is, the main rod body 10 is composed of a suction rod 11 and a power rod 12 which are butted together.
  • the suction rod 11 and the power pole 12 can be designed as a non-detachable unitary structure; as an embodiment, the suction rod 11 and the power rod 12 can also be configured to be detachably connected, for example: The two are stuck, plugged or screwed.
  • the battery 30 is disposed in the power pole 12 to provide power for each functional module of the electronic cigarette 100.
  • the suction nozzle 20 is disposed at the other end of the suction rod 11 away from the battery 30.
  • the suction nozzle 20 and the main rod body 10 are disposed in a split manner, and the sleeve is disposed at the same.
  • the nozzle cover 21 at the end of the suction rod 11 is provided with an air suction hole 22 in the axial direction.
  • the suction nozzle 20 and the main rod body 10 may also be integrally formed.
  • the main rod body 10 is provided with an atomizing device 40 for atomizing the liquid smoke into smoke, which is disposed at the suction rod 11 of the main rod body 10,
  • the nozzle 20 is between the battery 30 and the battery 30.
  • the atomizing device 40 includes an atomizing cup 41 and an atomizer 42 fixed in the atomizing cup 41.
  • the atomizing cup 41 includes a support member 411 and a liquid storage member 412 sleeved outside the support member 411.
  • the liquid storage component 412 is a medium-passing tubular structure, which can absorb and store liquid like a sponge, and is used for absorbing and storing the liquid smoke to facilitate atomization of the liquid atom by the atomizer 42.
  • the liquid storage component 412 can be sucked
  • the liquid and the liquid are made of glass fiber, liquid absorbent cotton, foamed nickel and the like.
  • the support member 411 is also a middle-passing tubular structure, which is sleeved inside the liquid storage member 412 and is tightly fitted with the inner wall of the liquid storage member 412 by the outer wall thereof to The liquid member 412 is fixed in the main rod body 10.
  • the intermediate passage structure in the middle of the support member 411 forms the air passage of the atomizing device 40, and at the same time constitutes an atomizing chamber 413 for accommodating the atomizer 42.
  • the atomizer 42 is used to atomize the smoke liquid into smoke, and includes an atomizing rod 421 and a heating wire 422.
  • the heating wire 422 is wound around the atomizing rod 421, and the mist is utilized.
  • the rod 421 is received and fixed in the atomization cup 41.
  • the atomizing rod 421 has a tubular structure in which a liquid guiding shaft 423 is disposed, and a plurality of liquid guiding holes 424 are radially opened in the side wall.
  • the atomizing rod 421 is made of a high temperature resistant insulating material of non-glass material, such as various high temperature resistant insulating metal materials such as aluminum after surface oxidation treatment, or various high temperature resistant materials such as ceramics. Non-metallic materials.
  • the cross section of the atomizing rod 421 may be set to a tubular structure having a medium through hole, such as a circular shape, a polygonal shape, or a petal shape, and
  • the shape of the outer contour and the inner contour of the middle through hole may be set to be the same or different.
  • the liquid guiding hole 424 is a through hole extending through the atomizing rod 421 in a radial direction for overflowing the liquid smoke on the liquid guiding cord 423 to atomize the electric heating wire 422 to generate smoke.
  • the cross section of the liquid guiding hole 424 can be set to various shapes such as an ellipse, a polygon, a shape, and the like.
  • the liquid guiding hole 424 of each portion of the atomizing rod 421 is formed radially along the atomizing rod 421 with the axis of the atomizing rod 421 as the center.
  • the annular arrays are arranged and arranged in a rectangular array along the axial direction of the atomizing rod 421 at the same time.
  • the liquid guiding cord 423 is configured to absorb the liquid smoke and penetrate into the vicinity of the heating wire 422 so that the heating wire 422 atomizes the liquid smoke into the smoke, and the two ends thereof penetrate the atomizing rod 421 and respectively
  • the liquid storage member 412 abuts to facilitate penetration of the liquid smoke from the liquid storage member 412 thereto.
  • the liquid guiding cord 423 can adopt a non-glass fiber material such as high temperature cotton, chemical fiber cotton, mixed cotton, pure cotton, non-woven fabric, etc., which has a strong liquid absorption capacity in a rope shape or a column shape. Made of material.
  • the atomization device 40 is provided with a connection assembly 50 electrically connected to the atomization device 40 and the battery 30, and the connection assembly 50 is sucked.
  • the nozzles 20 are provided at both ends of the suction rod 11 to seal and fix the atomizing device 40 in the suction rod 11.
  • the connecting component 50 includes a first electrode member 51 as a first electrode of the atomizing device 40 and a second electrode member 52 as a second electrode of the atomizing device 40, the first electrode member The second electrode member 52 is fixed to the second electrode member 52 via an insulating ring 53.
  • the first electrode member 51 has a hollow tubular structure, and is fastened and fixed to an end of the suction rod 11 away from the end of the nozzle 20 and abuts against the atomizing device 40, wherein The portion extends radially inwardly to form a flange for fixing the second electrode member 52.
  • the second electrode member 52 is matched with the first electrode member 51, and is locked in the first electrode member 51 by the insulating ring 53 and insulated from the first electrode member 51.
  • the second electrode member 52 also has a hollow tubular structure, and a hollow portion therebetween forms an air inlet hole for the outside air to enter the atomizing device 40.
  • the first electrode member 51 is connected as a negative electrode of the atomizing device 40 to a negative electrode of the battery 30, and the second electrode member 52 is used as the atomizing device 40.
  • the positive electrode is connected to the positive electrode of the battery 30, and the two ends of the heating wire 422 are electrically connected to the first electrode member 51 and the second electrode member 52 by welding, riveting, snapping or the like. .
  • the atomizer 42 may be fixed in the atomization cup 41 in different manners.
  • the atomizing rod 421 is radially fixed in the atomizing cup 41, and two ends of the liquid guiding rope 423 are respectively connected to the oil storage member. 412.
  • the nozzle 20 and the connecting component 50 are disposed at two ends of the suction rod 11, and the atomizing device 40 is fixed to the suction rod 11 by the connecting component 50.
  • the first electrode member 51 abuts against the bottom of the liquid storage member 412 and the support member 411.
  • An end surface of the second electrode member 52 at the end of the nozzle 20 is beyond an appropriate height of the end surface of the first electrode member 51 at the end of the nozzle 20 and forms a positioning post of the support member 411.
  • the end surface of the first electrode member 51 at the end of the nozzle 20 should be far lower than the end surface of the support member 411 at the end of the nozzle 20 to ensure that the heating wire 422 is in the mist. There is sufficient working space in the chamber 413.
  • the support member 411 is made of a ceramic material, and the outer wall is tightly fitted with the inner wall of the liquid storage member 412, and is used as a support skeleton of the liquid storage member 412.
  • the liquid storage member 412 is fastened and fixed in the main rod body 10.
  • the side wall of the supporting member 411 is provided with a bayonet opening through the side wall, and two ends of the atomizing rod 421 are respectively fastened and fixed in the bayonet to realize radial positioning of the atomizing rod 421 And the two ends of the liquid guiding cord 423 protrude from the bayonet to the supporting member 411 and abut against the inner wall of the liquid storage member 412 to absorb the liquid smoke in the liquid storage member 412 for supply.
  • the heating wire 422 is heated and atomized.
  • the heating wire 422 is wound on the atomizing rod 421 and protrudes from the bayonet with the supporting wire 423 into the liquid storage part 412, the storage
  • the liquid component 412 is correspondingly provided with a threading hole for the electric heating wire 422 to penetrate.
  • the two ends of the heating wire 422 are respectively connected to the first electrode member 51 and the second electrode member 52 after passing through the threading hole.
  • the atomizing rod 421 is axially fixed in the atomizing cup 41, and two ends of the liquid guiding rope 423 are respectively connected to the same.
  • the oil storage member 412 is described.
  • the nozzle 20 and the connecting component 50 are disposed at two ends of the suction rod 11, and the atomizing device 40 is fixed to the suction rod 11 by the connecting component 50.
  • the first electrode member 51 abuts against the bottom of the liquid storage member 412 and the support member 411.
  • An end surface of the second electrode member 52 at the end of the nozzle 20 is beyond an appropriate height of the end surface of the first electrode member 51 at the end of the nozzle 20 and forms a positioning post of the support member 411.
  • the end surface of the first electrode member 51 at the end of the nozzle 20 should be far lower than the end surface of the support member 411 at the end of the nozzle 20 to ensure that the heating wire 422 is in the mist. There is sufficient working space in the chamber 413.
  • the support member 411 is made of a material such as high-temperature cotton or chemical fiber cotton capable of absorbing liquid and storing liquid, and is closely attached to the inner wall of the liquid storage member 412 to absorb the liquid storage member 412.
  • the liquid liquid inside is simultaneously tightened and fixed in the main rod body 10 by the tensioning fit of the outer wall thereof and the inner wall of the liquid storage member 412 as a supporting skeleton of the liquid storage member 412.
  • the liquid guiding cord 423 is not directly in contact with the liquid storage component 412, and is fastened to the support member by a ceramic tube 414 passing through the middle of the nozzle 20
  • the inner end of the 411 is fixed to the lower end of the inner side of the support member 411 by the outer wall of the second electrode member 52 to axially position the atomizing rod 421.
  • the support member 411 in the embodiment is made of a material with high temperature resistance such as high temperature cotton or chemical fiber cotton
  • the liquid guide cord 423 can abut against the support member 411 without directly contacting the support member 411.
  • the liquid storage member 412 is in contact, and the support member 411 will infiltrate the smoke liquid in the liquid storage member 412 into the support member 411 as the liquid permeation member of the atomization device 40, and the liquid guide rope 423 is osmotic absorption, and the structure of the electronic cigarette 100 can be made to have a good effect, and the assembly is more convenient and quick.
  • the heating wire 422 is wound on the atomizing rod 421, and the end of the nozzle 20 is bent and fixed to the support member 411 and the liquid storage member. Between the 412 and finally electrically connected to the first electrode member 51, the other end of the nozzle 20 is directly electrically connected to the second electrode member 52.
  • the support member 411 is made of a ceramic material in the embodiment shown in FIG. 8, and is not made of a material capable of aspirating and liquid storage in the embodiment shown in FIG.
  • the atomizing rod 421 can also be arranged to be axially fixed in the atomizing cup 41.
  • a bayonet for the liquid guiding cord 423 to be connected to the liquid storage component 412 can be respectively opened at the two ends of the supporting member 411 to ensure that the liquid guiding cord 423 can properly absorb the liquid smoke.
  • the two ends of the liquid guiding cord 423 are respectively bent and then clamped to the upper and lower ends of the supporting member and the liquid storage member, and the axial fixing of the atomizing rod 421 can also be achieved.
  • the atomizing rod 421 is also radially fixed in the atomizing cup 41, and the two ends of the liquid guiding rope 423 are respectively connected.
  • the suction rod 11 is disposed as a tubular structure having a predetermined taper with a diameter gradually decreasing toward the end of the nozzle 20, and the nozzle 20 and the connecting assembly 50 are separately disposed in the
  • the atomizing device 40 is fixed in the suction rod 11 by the connecting assembly 50, and a liquid medicine cup 60 is further disposed between the suction nozzle 20 and the atomizing device 40.
  • a liquid guiding assembly 70 for introducing the liquid smoke into the liquid storage assembly 412 is disposed between the liquid cup 60 and the atomizing device 40.
  • the liquid storage member 412 is also a hollow tubular structure, and a central portion of the bottom end extends toward the top end to form a positioning post having a proper height, wherein the hollow portion is formed to penetrate the liquid storage member 412.
  • the middle through hole has a receiving cavity for receiving the support member 411 at an upper end thereof.
  • the support member 411 is sleeved on the positioning post of the liquid storage member 412 by the inner wall thereof, and is fastened and fixed with the inner wall of the liquid storage member 412 by the outer wall thereof.
  • the side wall of the supporting member 411 is provided with a bayonet opening through the side wall, and the two ends of the atomizing rod 421 are respectively fastened and fixed in the bayonet, and the liquid guiding cord 423 is The two ends project the support member 411 from the bayonet and abut against the inner wall of the liquid storage member 412 to absorb the liquid smoke in the liquid storage member 412 for heating and atomizing the electric heating wire 422.
  • the heating wire 422 is wound on the atomizing rod 421, and the two ends thereof directly pass through the corresponding threading holes of the liquid storage member 412 and respectively respectively with the first electrode member 51 and the The two electrode members 52 are electrically connected.
  • the atomizing cup 41 has a separate cup 415 such that the liquid storage member 412 does not directly contact the inner wall of the main rod body 10, and the middle portion of the first electrode member 51 is upward. Extending to form a flange that fits the cup 415 and the cup 415 is tensioned and secured within the main shaft 10 by the flange.
  • an end of the main rod body 10 remote from the suction nozzle 20 is provided with an electric connection with the battery 30 for controlling the atomization device 40 to be energized or de-energized.
  • Control system 80 the control system 80 includes an atomization control circuit and an atomization control switch coupled to the atomization control circuit.
  • the control system 80 can be disposed between the battery 30 and the atomizing device 40, or can be disposed at the other end of the battery 30 away from the atomizing device 40.
  • the atomization control switch may be configured as a sensor switch.
  • the sensor switch is a capacitive sensor switch.
  • the capacitive sensor After the switch senses the suction airflow, the capacitance changes to control the atomization control circuit to turn on the power supply, so that the electronic cigarette 100 enters a working state.
  • the sensor switch can also be configured as an air flow sensor switch, that is, when the user inhales through the suction nozzle 20, a negative pressure is generated in the cavity of the electronic cigarette 100, so that the airflow sensor switch generates a pulse signal. No. to control the atomization control circuit to turn on the power supply.
  • the atomization control circuit in this embodiment can be directly integrated into the controller in the sensor switch, as a
  • the atomization control circuit can also be integrated on an atomization control circuit board that is independently disposed outside the sensor switch and is respectively connected to the sensor switch and the battery 30.
  • the atomization control switch can also be set as a conventional button switch or a touch switch.
  • the electronic cigarette 100 according to the embodiment of the present invention is not only the three embodiments shown in FIG. 8 and FIG. 10, but the technical features in the respective embodiments can be combined with each other to form a new embodiment.
  • the electronic cigarette 100 is generally disposed in the electronic cigarette case 200, and the electronic cigarette case 200 includes a bottom case 91 for accommodating the electronic cigarette 100 and is covered by a cover 92 on the bottom case 91.
  • the bottom case 91 has a square housing structure.
  • the shape is not limited to a square shape, and may be circular, elliptical, multi-deformed, etc., and the cover 92 is only required to be provided when the cover 92 is disposed. It can be adapted to it.

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Abstract

一种电子烟雾化装置,包括雾化杯(41)及固设于所述雾化杯(41)内的雾化器(42),所述雾化器(42)包括雾化杆(421)及缠绕于所述雾化杆(421)上的电热丝(422),其中,所述雾化杆(421)是采用非玻纤材质且耐高温绝缘材料制成的中通管体结构,其中部穿设有采用非玻纤材料制成的导液绳(423),所述雾化杆(421)的侧壁上开设有若干径向贯通所述雾化杆(421)的供导液绳上烟液溢出以通过电热丝(422)雾化产生烟雾的导液孔(424)。所述电子烟包括主杆体(10)、分设于所述主杆体(10)两端的吸嘴(20)及电池(30),以及固设于所述吸嘴(20)与电池(30)之间的如上所述的雾化装置。所述电子烟采用非玻纤材料作为雾化器的引液部件,避免产生并被人体吸入对人体有害的玻纤颗粒。

Description

电子烟装置、 电子烟及其雾化装置 技术领域
[0001] 本发明涉及电子烟和烟盒领域, 尤其是一种雾化装置中不使用玻纤雾化杆的电子烟 及其电子烟装置。
背景技术
[0002] 现有的电子烟一般由吸杆和电源杆两部分组成, 其吸杆通常设置有吸嘴及将烟液生 成烟雾的雾化装置, 电源杆内通常设置有电池及控制开关, 电池用于提供电源, 控制开关用 于控制电子烟的整体运作。
[0003] 现有电子烟的雾化装置通常采用玻纤材料作为雾化杆, 用以供电热丝缠绕并为电热 丝提供烟液以加热生成烟雾, 由于玻纤材料经电热丝加热后会产生玻纤颗粒, 人们在使用电 子烟时, 微小的玻纤颗粒会随同烟雾被吸入人体进而对人体造成伤害。
发明内容
[0004] 本发明的目的在于: 提供一种电子烟雾化装置, 采用非玻纤材料制作的雾化杆及导 液绳, 避免产生对人体有害的玻纤颗粒。
[0005] 为达到上述目的, 本发明揭露一种电子烟雾化装置, 包括雾化杯及固设于所述雾化 杯内的雾化器, 所述雾化器包括雾化杆及缠绕于所述雾化杆上的电热丝, 其中, 所述雾化杆 是采用非玻纤材质且耐高温绝缘材料制成的中通管体结构, 其中部穿设有采用非玻纤材料制 成的导液绳, 所述雾化杆的侧壁上开设有若干径向贯通所述雾化杆的供导液绳上烟液溢出以 通过电热丝雾化产生烟雾的导液孔。
[0006] 进一步地, 其中, 所述用于制造导液绳的非玻纤材料为如下材料中的任一种: 高温 棉、 化纤棉、 混合棉、 纯棉或无纺布。
[0007] 进一步地, 其中, 所述导液孔沿所述雾化杆轴向呈矩形阵列排布。
[0008] 进一步地, 其中, 所述导液孔沿所述雾化杆径向呈以所述雾化杆轴心为圆心的环形 阵列排布。
[0009] 进一步地, 其中, 所述雾化杆横截面呈圆形、 多边形或者花瓣形。
[0010] 进一步地, 其中, 所述导液孔横截面呈椭圆形、 多边形或者一字形。
[0011] 进一步地, 其中, 所述雾化杯包括储液部件及套设于所述储液部件内部的支撑件, 所 述支撑件呈中通的管体结构, 其中部形成用于容置所述雾化器的雾化腔。
[0012] 进一步地, 其中, 所述雾化器径向固设于所述雾化杯内且所述导液绳的两端分别连 接至所述储油部件。
[0013] 进一步地, 其中, 所述支撑件侧壁上对应开设有径向贯通侧壁的以供所述雾化杆穿 设的卡口。
[0014] 进一步地, 其中, 所述雾化器轴向固设于所述雾化杯内且所述导液绳的两端分别连 接至所述储油部件。
[0015] 本发明的又一目的在于: 提供一种电子烟, 其内设的雾化装置中的雾化杆及导液绳 采用非玻纤材料制作, 避免人体吸入玻纤颗粒而对人体造成伤害。
[0016] 为达到上述目的, 本发明还揭露一种电子烟, 包括主杆体, 所述主杆体一端设置有 吸嘴, 另一端内置有电池, 所述主杆体内靠所述吸嘴一端设置有与所述电池电连接的雾化装 置, 其中, 所述雾化装置为如上所述的电子烟雾化装置。
[0017] 进一步地, 其中, 所述雾化装置的靠所述电池一端设置有电连接所述雾化装置及电 池的连接组件, 所述连接组件包括作为雾化装置第一电极的第一电极件及作为雾化装置第二 电极的第二电极件, 所述第一电极件与第二电极件通过一绝缘环相固接。
[0018] 进一步地, 其中, 所述电热丝的两端分别与所述第一电极件及第二电极件电连接。
[0019] 进一步地, 其中, 所述电子烟还包括与所述电池电连接以控制雾化装置通电或断电 的控制系统; 所述控制系统设置于所述雾化装置与电池之间, 或者所述控制系统设置于所述 电池远离于所述雾化装置的一端。
[0020] 本发明的再一目的在于: 提供一种电子烟装置, 其内设的电子烟不会产生对人体有 害的可随烟雾进入人体的玻纤颗粒。
[0021] 为达到上述目的, 本发明还揭露一种电子烟装置, 包括电子烟盒及容置于所述电子 烟盒内的电子烟, 其中, 所述电子烟为如上所述的电子烟。
[0022] 本发明实施例的有益效果是: 由于采用非玻纤材料的耐高温绝缘材质制成的雾化 杆, 并于雾化杆内穿设非玻纤材料制成的导液绳, 在电热丝加热雾化产生烟雾的同时, 避免 产生玻纤颗粒, 使用更健康安全。
[0023] 下面结合附图对本发明实施例作进一步的详细描述。
附图说明
[0024] 图 1是本发明实施例电子烟雾化装置的结构示意图。
[0025] 图 2是本发明实施例雾化杆轴向侧面的第一种实施例示意图。
[0026] 图 3是本发明实施例雾化杆轴向侧面的第二种实施例示意图。
[0027] 图 4是本发明实施例雾化杆轴向侧面的第三种实施例示意图。 [0028] 图 5是本发明实施例雾化杆径向底面的第一种实施例示意图。
[0029] 图 6是本发明实施例雾化杆径向底面的第二种实施例示意图。
[0030] 图 7是本发明实施例雾化杆径向底面的第三种实施例示意图。
[0031] 图 8是本发明实施例电子烟的第一种实施例的结构示意图。
[0032] 图 9是本发明实施例电子烟的第二种实施例的结构示意图。
[0033] 图 10是本发明实施例电子烟的第三种实施例的结构示意图。
[0034] 图 11是本发明实施例电子烟装置的立体图。
具体实施方式
[0035] 如图 1至图 11所示, 本发明实施例提供一种电子烟装置, 其包括电子烟 100和用于 容置所述电子烟 100的电子烟盒 200。
[0036] 如图 8至图 10所示, 所述电子烟 100包括主杆体 10, 所述主杆体 10设置为圆柱形 管体结构, 其内部中空以形成各内部构件的容置腔。 可以理解的, 所述主杆体 10 还可设置 为其他任意具有中空腔体的管状体结构, 而不仅限于本实施例所示的圆柱形。 本实施例中, 所述主杆体 10可采用不锈钢材质制成, 也可采用塑胶或其它可适用的材质制成。
[0037] 所述主杆体 10—端设置有吸嘴 20, 其远离于所述吸嘴 20的另一端设置有电池 30, 故, 根据所述主杆体 10内部构件的组成及其功能, 可将所述主杆体 10分为吸杆 11及电源 杆 12两部分, 即所述主杆体 10由相互对接的吸杆 11及电源杆 12共同构成。 本实施例中, 所述吸杆 11 和电源杆 12可设计为不可拆的一体式结构; 作为一种实施方式, 所述吸杆 11 和电源杆 12还可设置为可拆式连接, 例如: 两者为卡接、 插接或螺接等。
[0038] 所述电池 30设置于所述电源杆 12 内, 为所述电子烟 100 的各功能模块提供电源。 所述吸嘴 20设置于所述吸杆 11的远离于所述电池 30的另一端, 本实施例中, 所述吸嘴 20 与所述主杆体 10采用分体式设置, 其包括套设于所述吸杆 11 端部的吸嘴盖 21, 所述吸嘴 盖 21上轴向开设有吸气孔 22。 作为一种实施方式, 所述吸嘴 20与所述主杆体 10也可一体 成型。
[0039] 请继续参考图 8至图 10, 所述主杆体 10内设置有用于将烟液雾化变成烟雾的雾化装 置 40, 其设置于所述主杆体 10的吸杆 11处, 位于所述吸嘴 20与电池 30之间。 所述雾化 装置 40包括雾化杯 41及固设于所述雾化杯 41内的雾化器 42。
[0040] 所述雾化杯 41包括支撑件 411及套设于所述支撑件 411外部的储液部件 412。
[0041] 所述储液部件 412 为中通的管体结构, 其能像海绵一样能吸液和蓄液, 用于吸收并 储存烟液以便于所述雾化器 42后续将烟液雾化, 本实施例中, 所述储液部件 412可由能吸 液和储液的玻璃纤维、 吸液棉、 泡沫镍等材质制成。
[0042] 所述支撑件 411亦为中通的管体结构, 其套设于所述储液部件 412内部并利用其外壁 与所述储液部件 412的内壁相涨紧配合以将所述储液部件 412固定于所述主杆体 10内。 所 述支撑件 411 中部的中通结构形成所述雾化装置 40 的导通气路, 同时构成用于容置所述雾 化器 42的雾化腔 413。
[0043] 所述雾化器 42用于将烟液雾化转变成烟雾, 其包括雾化杆 421及电热丝 422, 所述 电热丝 422缠绕于所述雾化杆 421上, 并利用该雾化杆 421容置固定于所述雾化杯 41内。
[0044] 请参考图 1, 所述雾化杆 421呈中通的管体结构, 其中部穿设有导液绳 423, 侧壁上 径向开设有若干导液孔 424。 本实施例中, 所述雾化杆 421采用非玻纤材料的耐高温绝缘材 质制成, 如经表面氧化处理后的铝等各种耐高温的绝缘金属材料, 或者陶瓷等各种耐高温的 非金属材料。
[0045] 如图 5至图 7所示, 本实施例中, 所述雾化杆 421 的横截面可设置为圆形、 多边形 或者花瓣形等任意一种具有中通孔的管体结构, 且其外轮廓与中通孔内轮廓的形状可设置为 相同或不同。
[0046] 所述导液孔 424为径向贯通所述雾化杆 421 的通孔, 其用于供所述导液绳 423上的 烟液溢出以通过所述电热丝 422雾化产生烟雾。 如图 2至图 4所示, 本实施例中, 所述导液 孔 424的横截面可设置为椭圆形、 多边形、 一字形等各种形状。
[0047] 为使所述雾化杆 421 上各部位导液孔 424导液均匀充足, 所述导液孔 424沿所述雾 化杆 421径向形成以所述雾化杆 421轴心为圆心的环形阵列排布, 且同时沿所述雾化杆 421 轴向上呈矩形阵列排布。
[0048] 所述导液绳 423用于吸收烟液并渗透至电热丝 422附近以便于电热丝 422将烟液雾 化转变为烟雾, 其两端贯通所述雾化杆 421并分别与所述储液部件 412相抵接以便于烟液从 储液部件 412渗透至其内。 本实施例中, 所述导液绳 423可采用高温棉、 化纤棉、 混合棉、 纯棉、 无纺布等任意一种非玻纤材料的呈绳形或柱形的具有较强液体吸收能力的材质制成。
[0049] 请参考图 8至图 10, 所述雾化装置 40的靠所述电池 30—端设置有电连接所述雾化 装置 40及电池 30的连接组件 50, 所述连接组件 50与吸嘴 20分设于所述吸杆 11的两端以 将所述雾化装置 40密封固定于所述吸杆 11内。
[0050] 本实施例中, 所述连接组件 50包括作为雾化装置 40第一电极的第一电极件 51及作 为雾化装置 40第二电极的第二电极件 52, 所述第一电极件 51与第二电极件 52通过一绝缘 环 53相固接。 [0051] 所述第一电极件 51呈中空的管体结构, 其涨紧固定于所述吸杆 11的远离于所述吸嘴 20一端的末端并与所述雾化装置 40相抵接, 其中部向内径向延伸形成用于固定所述第二电 极件 52的凸缘。
[0052] 所述第二电极件 52与所述第一电极件 51匹配设置, 其利用所述绝缘环 53卡设于所 述第一电极件 51 内并与所述第一电极件 51绝缘。 本实施例中, 所述第二电极件 52同样呈 中空的管体结构, 其中间的中空部位形成供外部空气进入所述雾化装置 40内的进气孔。
[0053] 本实施例中, 所述第一电极件 51作为所述雾化装置 40的负电极与所述电池 30的负 电极相连接, 所述第二电极件 52作为所述雾化装置 40的正电极与所述电池 30的正电极相 连接, 所述电热丝 422 的两端分别采用焊接、 铆接、 卡接等固接方式与所述第一电极件 51 及第二电极件 52电连接。
[0054] 请继续参考图 8至图 10, 在具体设置所述电子烟 100时, 可采取不同的设置方式将 所述雾化器 42固设于所述雾化杯 41内。
[0055] 如图 8所示的实施例中, 所述雾化杆 421径向固设于所述雾化杯 41 内, 且所述导液 绳 423的两端分别连接至所述储油部件 412。
[0056] 具体的, 本实施例中, 所述吸嘴 20和连接组件 50分设于所述吸杆 11的两端, 所述 雾化装置 40利用所述连接组件 50固定于所述吸杆 11内。 所述第一电极件 51与所述储液部 件 412及支撑件 411的底部相抵接。 所述第二电极件 52的靠所述吸嘴 20—端的端面超出所 述第一电极件 51的靠所述吸嘴 20—端的端面适当高度并形成所述支撑件 411的定位柱, 具 体设置时, 所述第一电极件 51的靠所述吸嘴 20—端的端面应远低于所述支撑件 411的靠所 述吸嘴 20—端的端面, 以保证所述电热丝 422在所述雾化腔 413内具有足够的工作空间。
[0057] 本实施例中, 所述支撑件 411采用陶瓷材质制成, 其利用外壁与所述储液部件 412的 内壁相涨紧配合, 并作为所述储液部件 412的支撑骨架将所述储液部件 412涨紧固定于所述 主杆体 10内。 所述支撑件 411 的侧壁上开设有径向贯通侧壁的卡口, 所述雾化杆 421 的两 端分别卡紧固定于所述卡口内以实现所述雾化杆 421的径向定位, 而所述导液绳 423的两端 则从卡口处伸出所述支撑件 411并与所述储液部件 412的内壁相抵接从而吸收所述储液部件 412内的烟液以供所述电热丝 422进行加热雾化。
[0058] 所述电热丝 422缠绕于所述雾化杆 421 上并随同所述导液绳 423从所述卡口处伸出 所述支撑件 411进入所述储液部件 412内, 所述储液部件 412对应开设有供所述电热丝 422 穿透的穿线孔, 所述电热丝 422的两端分别穿过所述穿线孔后与所述第一电极件 51及第二 电极件 52电连接。 [0059] 请参考图 9, 图 9所示的实施例中, 所述雾化杆 421轴向固设于所述雾化杯 41 内, 且所述导液绳 423的两端分别连接至所述储油部件 412。
[0060] 具体的, 本实施例中, 所述吸嘴 20和连接组件 50分设于所述吸杆 11的两端, 所述 雾化装置 40利用所述连接组件 50固定于所述吸杆 11内。 所述第一电极件 51与所述储液部 件 412及支撑件 411的底部相抵接。 所述第二电极件 52的靠所述吸嘴 20—端的端面超出所 述第一电极件 51的靠所述吸嘴 20—端的端面适当高度并形成所述支撑件 411的定位柱, 具 体设置时, 所述第一电极件 51的靠所述吸嘴 20—端的端面应远低于所述支撑件 411的靠所 述吸嘴 20—端的端面, 以保证所述电热丝 422在所述雾化腔 413内具有足够的工作空间。
[0061] 本实施例中, 所述支撑件 411采用高温棉或化纤棉等能吸液及蓄液的材料制成, 其紧 贴套设于所述储液部件 412内壁以吸收储液部件 412内的烟液, 同时利用其外壁与所述储液 部件 412内壁的涨紧配合作为所述储液部件 412的支撑骨架将所述储液部件 412涨紧固定于 所述主杆体 10内。
[0062] 本实施例中, 所述导液绳 423不直接与所述储液部件 412相抵接, 其靠所述吸嘴 20 一端通过一中通的陶瓷管 414涨紧固定于所述支撑件 411内部上端, 其另一端则利用所述第 二电极件 52的外壁涨紧固定于所述支撑件 411 内部下端, 以对所述雾化杆 421进行轴向定 位。
[0063] 由于本实施例中的支撑件 411采用高温棉或化纤棉等耐高温浸透性好的材质制成, 故 所述导液绳 423可抵接于所述支撑件 411而不直接与所述储液部件 412接触, 而所述支撑件 411将作为所述雾化装置 40的烟液浸透部件将储液部件 412内的烟液渗透至所述支撑件 411 内进而被所述导液绳 423渗透吸收, 采用此种结构可使所述电子烟 100的引烟液效果好, 且 组装更为方便快捷。
[0064] 本实施例中, 所述电热丝 422缠绕于所述雾化杆 421上, 其靠所述吸嘴 20的一端经 弯折后被夹紧固定于所述支撑件 411与储液部件 412之间并最终与所述第一电极件 51 电连 接, 其远离于所述吸嘴 20的另一端则直接与所述第二电极件 52电连接。
[0065] 可以理解的, 当所述支撑件 411如图 8所示的实施例中采用陶瓷材质制成而非图 9所 示的实施例中采用能吸液及蓄液的材质制成时, 所述雾化杆 421同样可设置为轴向固定于所 述雾化杯 41 内。 具体设置时, 可于所述支撑件 411 的两端分别开设供所述导液绳 423穿出 以与所述储液部件 412相连的卡口以保证所述导液绳 423可正常吸收烟液, 或者将所述导液 绳 423的两端分别弯折后卡紧于所述支撑件与储液部件的上下两端, 同样能实现所述雾化杆 421的轴向固定。 [0066] 请参考图 10, 如图 10所示的实施例中, 所述雾化杆 421同样径向固设于所述雾化杯 41内, 且所述导液绳 423的两端分别连接至所述储油部件 412。
[0067] 该实施例中, 所述吸杆 11设置为外部向所述吸嘴 20—端直径逐渐变小的具有预定锥 度的管体结构, 所述吸嘴 20和连接组件 50分设于所述吸杆 11的两端, 所述雾化装置 40利 用所述连接组件 50固定于所述吸杆 11 内,所述吸嘴 20与雾化装置 40间还设置有一烟液杯 60, 所述烟液杯 60与所述雾化装置 40间设置有一用于将烟液导入至储液组件 412内的导液 组件 70。
[0068] 本实施例中, 所述储液部件 412 同样为中空的管体结构, 其底端中部向顶端延伸形 成具有适当高度的定位柱, 其中部中空部位形成贯通所述储液部件 412的中通孔, 且其上端 形成用于容置所述支撑件 411 的容置腔。 所述支撑件 411 利用其内壁套设于所述储液部件 412的定位柱上, 同时利用其外壁与所述储液部件 412的内壁涨紧配合固定。
[0069] 所述支撑件 411的侧壁上开设有径向贯通侧壁的卡口, 所述雾化杆 421的两端分别卡 紧固定于所述卡口内, 而所述导液绳 423的两端则从卡口处伸出所述支撑件 411并与所述储 液部件 412的内壁相抵接从而吸收所述储液部件 412内的烟液以供所述电热丝 422进行加热 雾化。
[0070] 所述电热丝 422缠绕于所述雾化杆 421 上, 且其两端直接穿过所述储液部件 412对 应开设的穿线孔并分别与所述所述第一电极件 51及第二电极件 52电连接。
[0071] 本实施例中, 所述雾化杯 41具有独立的杯体 415而使所述储液部件 412不直接与所 述主杆体 10内壁相抵接, 所述第一电极件 51的中部向上延伸形成与所述杯体 415相适配的 凸缘并通过该凸缘将所述杯体 415涨紧固定于所述主杆体 10内。
[0072] 请继续参考图 8至图 10, 所述主杆体 10的远离于所述吸嘴 20的一端设置有与所述 电池 30电连接的用于控制所述雾化装置 40通电或断电的控制系统 80, 所述控制系统 80包 括雾化控制电路及与所述雾化控制电路相连的雾化控制开关。 所述控制系统 80 可设置于所 述电池 30与所述雾化装置 40之间, 也可设置于所述电池 30远离于所述雾化装置 40的另一 端。
[0073] 本实施例中, 所述雾化控制开关可设置为传感器开关, 具体的, 所述传感器开关为 电容式传感器开关, 使用者使用所述电子烟 100进行吸烟时, 所述电容式传感器开关感应到 吸出气流后电容发生改变进而控制所述雾化控制电路接通供电电源, 使所述电子烟 100进入 工作状态。 作为一种实施方式, 所述传感器开关也可设置为气流传感器开关, 即当使用者通 过所述吸嘴 20吸气时, 所述电子烟 100腔体内产生负压进而使气流传感器开关产生脉冲信 号以控制所述雾化控制电路接通供电电源。
[0074] 由于所述传感器开关本身制作比较精密, 其一般内置有专门的控制器, 故本实施例 中的所述雾化控制电路可直接集成于所述传感器开关内的控制器上, 作为一种实施方式, 所 述雾化控制电路也可集成于一独立设置于所述传感器开关外部并分别与所述传感器开关及电 池 30相连的雾化控制电路板上。
[0075] 当然, 作为一种实施方式, 所述雾化控制开关也可设置为传统的按键开关或触控式 开关。
[0076] 可以理解的, 本发明实施例所述的电子烟 100 不仅于图 8 及图 10 所示的三种实施 例, 其各实施例中的各技术特征可相互结合组成新的实施例。
[0077] 如图 11所示, 所述电子烟 100通常置放于所述电子烟盒 200内, 所述电子烟盒 200 包括用于容置所述电子烟 100的底盒 91及盖合于所述底盒 91上的盒盖 92。 所述底盒 91为 呈方形的壳体结构, 当然, 其形状不限于方形, 也可为圆形、 椭圆形、 多变形等, 只需在设 置所述盒盖 92时保证所述盒盖 92与其相适配即可。
[0078] 以上所述是本发明的具体实施方式, 应当指出, 对于本技术领域的普通技术人员来 说, 在不脱离本发明原理的前提下, 还可以做出若干改进和润饰, 这些改进和润饰也视为本 发明的保护范围。

Claims

权 利 要 求 书
1. 一种电子烟雾化装置, 包括雾化杯及固设于所述雾化杯内的雾化器, 所述雾化器包括雾 化杆及缠绕于所述雾化杆上的电热丝, 其中, 所述雾化杆是采用非玻纤材质且耐高温绝缘材 料制成的中通管体结构, 其中部穿设有采用非玻纤材料制成的导液绳, 所述雾化杆的侧壁上 开设有若干径向贯通所述雾化杆的供导液绳上烟液溢出以通过电热丝雾化产生烟雾的导液 孔。
2. 如权利要求 1 所述的电子烟雾化装置, 其中, 所述用于制造导液绳的非玻纤材料为如下 材料中的任一种: 高温棉、 化纤棉、 混合棉、 纯棉或无纺布。
3. 如权利要求 1 所述的电子烟雾化装置, 其中, 所述导液孔沿所述雾化杆轴向呈矩形阵列 排布。
4. 如权利要求 1 所述的电子烟雾化装置, 其中, 所述导液孔沿所述雾化杆径向呈以所述雾 化杆轴心为圆心的环形阵列排布。
5. 如权利要求 1 所述的电子烟雾化装置, 其中, 所述雾化杆横截面呈圆形、 多边形或者花 瓣形。
6. 如权利要求 1 所述的电子烟雾化装置, 其中, 所述导液孔横截面呈椭圆形、 多边形或者 一字形。
7. 如权利要求 1 所述的电子烟雾化装置, 其中, 所述雾化杯包括储液部件及套设于所述储 液部件内部的支撑件, 所述支撑件呈中通的管体结构, 其中部形成用于容置所述雾化器的雾 化腔。
8. 如权利要求 7 所述的电子烟雾化装置, 其中, 所述雾化器径向固设于所述雾化杯内且所 述导液绳的两端分别连接至所述储油部件。
9. 如权利要求 8 所述的电子烟雾化装置, 其中, 所述支撑件侧壁上对应开设有径向贯通侧 壁的以供所述雾化杆穿设的卡口。
10. 如权利要求 7所述的电子烟雾化装置, 其中, 所述雾化器轴向固设于所述雾化杯内且所 述导液绳的两端分别连接至所述储油部件。
11. 一种电子烟, 包括主杆体, 所述主杆体一端设置有吸嘴, 另一端内置有电池, 所述主杆 体内靠所述吸嘴一端设置有与所述电池电连接的雾化装置, 其中, 所述雾化装置为如权利要 求 1至 10中任一项所述的电子烟雾化装置。
12. 如权利要求 11 所述的电子烟, 其中, 所述雾化装置的靠所述电池一端设置有电连接所 述雾化装置及电池的连接组件, 所述连接组件包括作为雾化装置第一电极的第一电极件及作 为雾化装置第二电极的第二电极件, 所述第一电极件与第二电极件通过一绝缘环相固接。 权 利 要 求 书
13. 如权利要求 12 所述的电子烟, 其中, 所述电热丝的两端分别与所述第一电极件及第二 电极件电连接。
14. 如权利要求 11 所述的电子烟, 其中, 所述电子烟还包括与所述电池电连接以控制雾化 装置通电或断电的控制系统; 所述控制系统设置于所述雾化装置与电池之间, 或者所述控制 系统设置于所述电池远离于所述雾化装置的一端。
15. 一种电子烟装置, 包括电子烟盒及容置于所述电子烟盒内的电子烟, 其中, 所述电子烟 为如权利要求 11至 14中任一项所述的电子烟。
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