WO2021120965A1 - 一种气溶胶成分稳定的雾化装置及其应用 - Google Patents

一种气溶胶成分稳定的雾化装置及其应用 Download PDF

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WO2021120965A1
WO2021120965A1 PCT/CN2020/129693 CN2020129693W WO2021120965A1 WO 2021120965 A1 WO2021120965 A1 WO 2021120965A1 CN 2020129693 W CN2020129693 W CN 2020129693W WO 2021120965 A1 WO2021120965 A1 WO 2021120965A1
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atomization
chamber
oil
wall
oil guide
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PCT/CN2020/129693
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English (en)
French (fr)
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杨淼文
郭怀建
江浩盛
李小彪
帅辉福
林永辉
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深圳尊一品科技有限公司
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Publication of WO2021120965A1 publication Critical patent/WO2021120965A1/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
    • A24F40/10Devices 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
    • A24F40/46Shape or structure of electric heating means

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  • the invention relates to the field of electronic technology, in particular to an atomization device with stable aerosol composition and its application.
  • the electronic cigarette is mainly composed of a cigarette stick with a battery and a chip, an atomizer, and a bomb/oil (as shown in Figure 1 below). Its working principle: controls the electronics through the air switch controller (air flow sensor) inside the battery When smoking, the switch is turned on, and the battery supplies power to the heating wire in the atomizer. The heating wire heats up and atomizes the cigarette oil attached to it. The smoke produced enters the user’s mouth along with the airflow. Complete the simulation of the real smoking process.
  • the atomizer as the most important component of the electronic cigarette, includes an inner core heating wire and an e-liquid bin (also known as an oil bin), where the heating wire is a replaceable part.
  • the working principle of the atomizer It is powered by the host, heating the heating coil (or atomizing core) in the atomizer, heating the heating coil, evaporating the smoke oil adsorbed on the oil-conducting cotton outside (or inside) the coil, and then using it
  • the airflow inhaled by the user takes away the atomized smoke. Any change in the above process will affect the taste of the atomizer. Therefore, researchers have developed many atomizer technologies that can prevent oil leakage from the atomizer to improve the efficiency of the atomizer.
  • Existing detachable electronic cigarettes generally include an atomizer and a battery rod.
  • the atomizer is equipped with a liquid storage cavity to store the e-cigarette liquid, and is also equipped with an atomizing device to heat and atomize the e-cigarette liquid.
  • the smoking power is too strong, part of the e-cigarette liquid or moisture will not be completely atomized when the e-cigarette liquid is atomized to form small droplets that are entrained in the smoke, or part of the water vapor contained in the smoke is
  • the wall of the flue is in contact, and the colder flue wall can condense the water vapor to form small droplets.
  • the small droplets form larger droplets during the flow process, which will continue to be entrained by the outgoing smoke, and will be easily sucked out into it.
  • the liquid droplets are sucked into the user's mouth, making the user's smoking experience and taste bad.
  • the inhalation is too hard, so that the atomization liquid is not sufficiently heated on the atomization core, and a part of the atomization aerosol with a lower temperature is generated; this part of the The aerosol condenses into small water droplets when it is cold during the ascent process, which causes the aerosol generated by the atomization device to heat the atomizing liquid, mixed with the condensate, and also greatly changes the stability of the aerosol composition, making the aerosol
  • concentration of active ingredients, such as nicotine is significantly reduced, which is equivalent to a dilution of the aerosol active ingredients that needs to be avoided. Therefore, it is necessary to develop a new type of atomization device that can prevent the condensate from entering the aerosol and maintain the stability of the aerosol composition.
  • the present invention provides an atomization device with stable aerosol composition and its application, which solves the above-mentioned technical problems.
  • an atomization device with stable aerosol composition and the atomization device includes:
  • An atomization chamber is a hollow chamber with an atomization chamber wall and is arranged in the support shell;
  • a flue the inlet end of which is communicated with the atomization chamber for passing smoke, and the outlet end is used for suction;
  • the air inlet channel is located below the atomization chamber, the air inlet of which is used for passing in outside air, and the outlet is connected with the atomizing chamber to pass into the outside air;
  • An oil tank which is surrounded by the outer wall of the flue, the outer wall of the atomization and the inner wall of the support shell;
  • the oil guide is arranged inside the atomization chamber and communicates with the oil bin, and is used to guide the smoke oil in the oil bin to the atomization chamber.
  • the oil guide is connected to the smoke in the oil guide A heating element for heating and atomizing oil.
  • the area on the wall of the atomization chamber that contacts the oil bin is provided with a plurality of oil guide holes, and the oil guide member is filled in each of the oil guide holes and extends to the mist. Chemical indoor.
  • the present invention further includes a connecting base, the air inlet of the air inlet channel is provided on the connecting base, and the contact surface of the atomizing chamber wall and the connecting base is provided with the air inlet of the air inlet channel.
  • the air outlet is further provided with a connecting channel connecting the air inlet and the air outlet on the connecting base.
  • the air inlet channel composed of the air inlet, the connecting channel and the air outlet has a U-shaped structure.
  • the atomization chamber is movably connected with the support shell, and a sealing rubber ring is provided at the connection between the atomization chamber and the support shell.
  • the oil guide member includes a ceramic oil guide rod.
  • the heating assembly includes a heating wire, and the heating wire is wound on the oil guide member.
  • the heating assembly further includes an electrode needle, and the electrode needle is connected with the heating wire.
  • the air outlet provided on the contact surface further includes a first air outlet provided on the wall of the atomization chamber and a second air outlet provided on the connecting base.
  • the air outlet is separated from the second air outlet, the connection base and the atomization chamber wall are connected to form a buffer chamber, and the connection base extends a part of the buffer chamber to form a truncated cone structure.
  • An electronic cigarette includes the atomization device described above.
  • the present invention has the following technical effects:
  • the present invention provides an atomization device with stable aerosol composition and its application.
  • the air inlet channel of the atomization device is in a U-shaped structure to control the speed of the airflow.
  • the flue is directly connected with the atomization chamber, reducing the working process of the atomization device.
  • the airflow changes in the airflow can effectively maintain the aerosol generated by the atomization device heating the atomization liquid.
  • the condensate generated by the atomization device will fall into the buffer chamber through the first air outlet, further reducing the aerosol mixing condensate.
  • Fig. 1 is a structural diagram of an atomization device with stable aerosol composition and its application according to the present invention.
  • the present invention provides a schematic diagram of an atomization device with stable aerosol composition.
  • the atomization device includes a support housing 1 which is used to define the internal space of the atomization device and protect the internal components of the atomization device.
  • An atomization chamber 2 which is a hollow chamber with a wall of the atomization chamber 2 and is arranged in the support housing 1;
  • the flue 3 is arranged in the support shell 1, and its inlet end 31 is connected with the atomization chamber 2 for the air mixed with aerosol to flow out of the atomization chamber 2, and the outlet end 32 is used for sucking the mixed aerosol Air, in this embodiment, the flue 3 and the atomization chamber 2 are integrally formed, and the outlet end 32 is connected to the suction nozzle 12 connected to the atomization device;
  • the air inlet passage 4 is located below the atomization chamber 2, and the air inlet 41 is used for ambient air to enter the air inlet passage 4, and the air outlet is connected with the atomization chamber 2 for connecting the air in the air inlet passage 4 Ambient air enters the atomization chamber 2;
  • the oil bin 5 is used to store e-liquid.
  • the oil bin 5 is enclosed by the outer wall of the flue 3, the outer wall of the atomization chamber 2 and the inner wall of the support shell 1;
  • the oil guide 6 is arranged inside the atomization chamber 2 and communicates with the oil bin 5, and is used to guide the smoke oil in the oil bin 5 into the atomization chamber 2, and the oil guide 6 is connected with A heating assembly for heating and atomizing the e-liquid in the oil guide 6.
  • the area on the wall of the atomization chamber 2 that is in contact with the oil bin 5 is provided with a plurality of oil guide holes 7, and the oil guide member 6 is filled in each of the oil guide holes 7 and extends to In the atomization chamber 2, the smoke oil in the oil bin 5 penetrates to the oil guide 6 through the oil guide hole 7.
  • the area on the wall of the atomization chamber 2 that is in contact with the oil bin 5 is evenly provided with three oil guide holes 7, and each oil guide hole 7 is filled with an oil guide 6, and each oil guide Parts 6 are all connected with heating components.
  • it further includes a connecting base 13 provided with an air inlet 41 of the air inlet passage 4, and the contact surface between the wall of the atomization chamber 2 and the connecting base 13 is provided with the air inlet 41.
  • the air outlet of the channel 4 is further provided with a connecting channel 44 on the connecting base 13 that communicates the air inlet 41 and the air outlet.
  • the air inlet passage 4 composed of the air inlet 41, the connecting passage 44 and the air outlet has a U-shaped structure.
  • the connecting passage 44 provided on the connecting base 13 is a hollow structure
  • the air inlet 41 is a hollow structure. It is arranged on the side wall of the bottom of the connection.
  • four air inlets 41 are evenly provided around the side wall of the bottom of the connection, which ensures the stability of the inlet air flow.
  • the atomization chamber 2 is movably connected to the support shell 1.
  • the atomization chamber 2 and the support shell 1 are connected by threads, and A sealing rubber ring 10 is provided at the connection between the atomization chamber 2 and the support shell 1.
  • the oil guiding member 6 includes a ceramic oil guiding rod, which has a porous structure and can contain e-liquid.
  • the heating assembly includes a heating wire, and a single heating wire is used to wind around the oil guide member 6, which can effectively prevent the e-liquid on the atomized oil guide member 6 from flowing on the coil, and the heating wire heats up
  • the oil guiding member 6 containing the e-liquid, the e-liquid is heated by the heating member to evaporate and atomize, mix with the air, and then enter the flue 3.
  • the user obtains the aerosol component through the smoking nozzle, which has reached the satisfaction of smoking.
  • the heating assembly further includes an electrode needle 9 and an insulating sleeve.
  • the insulating sleeve wraps the electrode needle 9, and the wrapped electrode needle 9 is connected to the heating wire.
  • the heating wire is connected to the battery assembly through the electrode needle 9. The components are used to provide power to the heating wire.
  • the air outlet provided on the contact surface further includes a first air outlet 42 provided on the wall of the atomization chamber 2 and a second air outlet 43 provided on the connecting base 13.
  • first air outlet 42 is separated from the second air outlet 43, the connection base 13 and the wall of the atomization chamber 2 form a buffer chamber 11, and the connection base 13 faces the buffer chamber.
  • a part of the chamber 11 is extended and has a truncated cone structure. The smoke oil generated in the atomization device can flow into the buffer chamber 11 through the first air outlet 42.
  • An electronic cigarette includes the atomization device described above.
  • the present invention has the following technical effects:
  • the present invention is an atomization device with stable aerosol composition and its application.
  • the air inlet channel 4 of the atomization device has a U-shaped structure to control the speed of the airflow.
  • the flue 3 is directly connected with the atomization chamber 2 to reduce atomization.
  • the airflow changes during the working process of the device can effectively maintain the aerosol generated by the atomizing device heating the atomized liquid to be stable, and at the same time, the condensate generated by the atomizing device will fall into the buffer chamber 11 through the first air outlet 42 , To further reduce the mixing of aerosol into the condensate.

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Abstract

一种气溶胶成分稳定的雾化装置及其应用,雾化装置包括:支撑壳体(1);雾化室(2),雾化室(2)是具有雾化室壁的中空腔室并设于支撑壳体(1)内;烟道(3),其进口端(31)与雾化室(2)连通用于通入烟雾,出口端(32)用于抽吸;进气通道(4),位于雾化室(2)的下方,其进气口(41)用于通入外界空气,出气口与雾化室(2)连通,用于通入外界空气;油仓(5),油仓(5)由烟道(3)的外壁、雾化室(2)外壁及支撑壳体(1)内壁所围成;导油件(6),设于雾化室(2)的内部,并与油仓(5)连通,用于将油仓(5)内的烟油导向雾化室(2)内,导油件(6)连接有对导油件(6)内的烟油进行加热雾化的加热组件,雾化装置可以有效地维持气溶胶成分稳定性。

Description

一种气溶胶成分稳定的雾化装置及其应用 技术领域
本发明涉及电子技术领域,特别涉及一种气溶胶成分稳定的雾化装置及其应用。
背景技术
电子烟主要由带电池和芯片的烟杆、雾化器、烟弹/油三部分构成(如下图1所示),其工作原理:通过其电池内部的空气开关控制器(气流传感器)控制电子烟工作状态,在吸烟时,开关打开,电池为雾化器内的电热丝供电,电热丝发热,将附在其周围的烟油雾化,产生的烟雾随着气流进入使用者的口腔,从而完成对真实吸烟过程的模拟。
其中,雾化器(Atomizer)作为电子烟最重要的组成部分,包括内芯发热丝与烟液仓(又被称为油仓),其中发热丝为可更换型零件。
雾化器工作原理:通过主机供电,加热雾化器内的发热丝圈(或者叫雾化芯),发热线圈发热,蒸发线圈外部(或内部)导油棉上吸附的烟油,再通过使用者吸入的气流带走雾化后的烟雾。以上过程中的任何一点有所改变,都会影响雾化器的口感。因此,研究人员开发了很多可以防止雾化器发生漏油等雾化器技术,以提高雾化器的工作效率。
现有的可拆装的电子烟,一般包括雾化器和电池杆,雾化器中设有储液腔储存电子烟烟液,还设有雾化装置将电子烟烟液进行加热雾化。
用户吸烟过程中,如果吸烟力度过大,电子烟烟液在雾化时,部分烟液或水分来不及彻底被雾化而形成小液滴被夹带在烟雾中,或者烟雾中含有的部分水汽与出烟道的壁部接触,较冷的烟道壁部可以使水汽冷凝形成小液滴,小液滴在流动的过程中形成较大的液滴,继续被流出的烟雾夹带,最后容易被吸出进入用户的口中,液滴被吸到用户口中使得用户吸烟体验不良、口感不佳。
从另一方面来说,由于使用者在使用雾化装置时,吸气过于用力,令雾化液在雾化芯上的加热不够充分,产生一部分温度较低的雾化气溶胶;这部分的气溶胶在上升过程中遇冷后凝结成小水珠,导致雾化装置加热雾化液产生的气溶胶中,混入了冷凝液,也会大大改变气溶胶成分的稳定性,使得气溶胶中的有效成分,例如尼古丁的浓度发生显著的降低,相当于对气溶胶有效成分进行了一次需要避免的稀释。因此,有必要开发一种可以避免冷凝液进入气溶胶、维持气溶胶成分稳定的新型雾化装置。
发明内容
为了克服现有技术的上述缺陷,本发明提供一种气溶胶成分稳定的雾化装置及其应用,解决了上述所提到的技术问题。
本发明解决现有技术中的问题所采用的技术方案为:一种气溶胶成分稳定的雾化装置,所述雾化装置包括:
支撑壳体;
雾化室,所述雾化室是具有雾化室壁的中空腔室并设于所述支撑壳体内;
烟道,其进口端与所述雾化室连通用于通入烟雾,出口端用于抽吸;
进气通道,位于所述雾化室的下方,其进气口用于通入外界空气,出气口与所述雾化室连通,通入外界空气;
油仓,所述油仓由烟道的外壁、雾化室外壁及支撑壳体内壁所围成;
导油件,设于所述雾化室的内部,并与所述油仓连通,用于将油仓内的烟油导向雾化室内,所述导油件连接有对导油件内的烟油进行加热雾化的加热组件。
作为本发明的优选方案,所述雾化室壁上与所述油仓接触的区域设有若干个导油孔,所述导油件填充于每一所述导油孔内,并延伸至雾化室内。
作为本发明的优选方案,还包括连接底座,所述连接底座上设有所述进气通道的进气口,所述雾化室壁与所述连接底座的接触面设置所述进气通道的出气口,在所述连接底座上还设有连通所述进气口和所述出气口的连接通道。
作为本发明的优选方案,所述进气口、连接通道与出气口所组成的进气通道呈U型结构。
作为本发明的优选方案,所述雾化室与所述支撑壳体活动连接,并且在所述雾化室与支撑壳体的连接处设有密封胶圈。
作为本发明的优选方案,所述导油件包括陶瓷导油棒。
作为本发明的优选方案,所述加热组件包括加热丝,所述加热丝缠绕在所述导油件上。
作为本发明的优选方案,所述加热组件还包括电极针,所述电极针与所述加热丝连接。
作为本发明的优选方案,设置在接触面的所述出气口还包括设于所述雾化室壁上的第一出气口以及设于所述连接底座上的第二出气口,所述第一出气口与第二出气口相离设置,所述连接底座与所述雾化室壁连接处形成一个缓冲腔室,并且所述连接底座向该缓冲腔室延伸出一部分,呈圆台结构。
一种电子烟,包括以上所述的雾化装置。
与现有技术相比,本发明具有以下技术效果:
本发明一种气溶胶成分稳定的雾化装置及其应用,该雾化装置的进气通道呈U型结构,控制气流的速度,烟道直接与雾化室连通,减少了雾化装置工作过程中的气流变化,可以有效地维持雾化装置加热雾化液产生的气溶胶稳定,同时,雾化装置所产生的冷凝液会通过第一出气口落入到缓冲腔室内,进一步减少气溶胶混入冷凝液。
附图说明
图1是本发明一种气溶胶成分稳定的雾化装置及其应用的结构图。
图中标号:1、支撑壳体;2、雾化室;3、烟道;4、进气通道;5、油仓;6、导油件;7、导油孔;8、发热丝;9、电极针;10、密封胶圈;11、缓冲腔室;12、吸嘴;13、连接底座;31、进口端;32、出口端;41、进气口;42、第一出气口;43、第二出气口;44、连接通道。
具体实施方式
下面结合附图对本发明的具体实施方式作进一步说明。在此需要说明的是,对于这些实施方式的说明用于帮助理解本发明,但并不构成对本发明的限定。此外,下面所描述的本发明实施方式中所涉及的技术特征只要彼此之间未构成冲突就可以相互组合。
如图1所示:本发明提供一种气溶胶成分稳定的雾化装置的示意图。
雾化装置包括支撑壳体1,支撑壳体1用于限定该雾化装置的内部空间,并保护雾化装置的内部构件。
雾化室2,所述雾化室2是具有雾化室2壁的中空腔室并设于所述支撑壳体1内;
烟道3,设于支撑壳体1内,其进口端31与所述雾化室2连通用于混合有气雾的空气流出雾化室2,出口端32用于抽吸混合有气雾的空气,在本实施例中,该烟道3与雾化室2一体成型,其出口端32与连接该雾化装置的吸嘴12连接;
进气通道4,位于所述雾化室2的下方,其进气口41用于环境空气进入进气通道4内,出气口与所述雾化室2连通用于将进气通道4内的环境空气进入到雾化室2内;
油仓5,用于存储烟油,所述油仓5由烟道3的外壁、雾化室2外壁及支撑壳体1内壁所围成;
导油件6,设于所述雾化室2的内部,并与所述油仓5连通,用于将油仓5内的烟油导向雾化室2内,所述导油件6连接有对导油件6内的烟油进行加热雾化的加热组件。
优选地,所述雾化室2壁上与所述油仓5接触的区域设有若干个导油孔7,所述导油件6填充于每一所述导油孔7内,并延伸至雾化室2内,油仓5内的烟油经导油孔7渗透至导油件6。在本实施例中,雾化室2壁上与所述油仓5接触的区域均匀设置有三个导油孔7,并且每一导油孔7上均填充有导油件6,每一导油件6均连接有加热组件。
优选地,还包括连接底座13,所述连接底座13上设有所述进气通道4的进气口41,所述雾化室2壁与所述连接底座13的接触面设置所述进气通道4的出气口,在所述连接底座13上还设有连通所述进气口41和所述出气口的连接通道44。
优选地,所述进气口41、连接通道44与出气口所组成的进气通道4呈U型结构,具体地,在连接底座13上设置的连接通道44为一中空结构,进气口41设于该连接底部的侧壁上,在本实施例中,环绕该连接底部的侧壁均匀设置有四个进气口41,保证了进气气流的稳定性。
优选地,为了组装方便,并且可以添加烟油,所述雾化室2与所述支撑壳体1活动连接,在本实施例中,雾化室2与支撑壳体1通过螺纹连接,并且在所述雾化室2与支撑壳体1的连接处设有密封胶圈10。
优选地,所述导油件6包括陶瓷导油棒,该陶瓷导油棒为多孔结构,能容纳烟油。
优选地,所述加热组件包括加热丝,并且均采用单股加热丝缠绕在所述导油件6上,可以有效地避免雾化导油件6上的烟油在线圈上流动,加热丝加热容纳有烟油的导油件6,烟油被加热件加热蒸发雾化后与空气混合后进入烟道3,使用者通过抽吸烟嘴获得气溶胶成分,已达到抽吸满足感。
优选地,所述加热组件还包括电极针9和绝缘套,所述绝缘套包裹着电极针9,包裹着的电极针9与所述加热丝连接,加热丝通过电极针9连接电池组件,电池组件用于向加热丝提供电源。
优选地,设置在接触面的所述出气口还包括设于所述雾化室2壁上的第一出气口42以及设于所述连接底座13上的第二出气口43。
进一步地,第一出气口42与第二出气口43相离设置,所述连接底座13与所述雾化室2 壁连接处形成一个缓冲腔室11,并且所述连接底座13向该缓冲腔室11延伸出一部分,呈圆台结构,雾化装置内产生烟油可通过第一出气口42流入到缓冲腔室11内。
一种电子烟,包括以上所述的雾化装置。
与现有技术相比,本发明具有以下技术效果:
本发明一种气溶胶成分稳定的雾化装置及其应用,该雾化装置的进气通道4呈U型结构,控制气流的速度,烟道3直接与雾化室2连通,减少了雾化装置工作过程中的气流变化,可以有效地维持雾化装置加热雾化液产生的气溶胶稳定,同时,雾化装置所产生的冷凝液会通过第一出气口42落入到缓冲腔室11内,进一步减少气溶胶混入冷凝液。
最后应说明的是:以上所述仅为本发明的优选实施例而已,并不用于限制本发明,尽管参照前述实施例对本发明进行了详细的说明,对于本领域的技术人员来说,其依然可以对前述各实施例所记载的技术方案进行修改,或者对其中部分技术特征进行等同替换。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 (10)

  1. 一种气溶胶成分稳定的雾化装置,其特征在于,所述雾化装置包括:
    支撑壳体;
    雾化室,所述雾化室是具有雾化室壁的中空腔室并设于所述支撑壳体内;
    烟道,其进口端与所述雾化室连通用于通入烟雾,出口端用于抽吸;
    进气通道,位于所述雾化室的下方,其进气口用于通入外界空气,出气口与所述雾化室连通,通入外界空气;
    油仓,所述油仓由烟道的外壁、雾化室外壁及支撑壳体内壁所围成;
    导油件,设于所述雾化室的内部,并与所述油仓连通,用于将油仓内的烟油导向雾化室内,所述导油件连接有对导油件内的烟油进行加热雾化的加热组件。
  2. 根据权利要求1所述的的雾化装置,其特征在于:所述雾化室壁上与所述油仓接触的区域设有若干个导油孔,所述导油件填充于所述每一导油孔内,并延伸至所述雾化室内。
  3. 根据权利要求1所述的的雾化装置,其特征在于:还包括连接底座,所述连接底座上设有所述进气通道的进气口,所述雾化室壁与所述连接底座的接触面设置所述进气通道的出气口,在所述连接底座上还设有连通所述进气口和所述出气口的连接通道。
  4. 根据权利要求3所述的雾化装置,其特征在于:所述进气口、连接通道与出气口所组成的进气通道呈U型结构。
  5. 根据权利要求1所述的雾化装置,其特征在于:所述雾化室与所述支撑壳体活动连接,并且在所述雾化室与支撑壳体的连接处设有密封胶圈。
  6. 根据权利要求2所述的雾化装置,其特征在于:所述导油件包括陶瓷导油棒。
  7. 根据权利要求6所述的雾化装置,其特征在于:所述加热组件包括加热丝,所述加热丝缠绕在所述导油件上。
  8. 根据权利要求7所述的雾化装置,其特征在于:所述加热组件还包括电极针,所述电极针与所述加热丝连接。
  9. 根据权利要求3所述的雾化装置,其特征在于:设置在接触面的所述出气口还包括设于所述雾化室壁上的第一出气口以及设于所述连接底座上的第二出气口,所述第一出气口与第二出气口相离设置,所述连接底座与所述雾化室壁连接处形成一个缓冲腔室,并且所述连接底座向该缓冲腔室延伸出一部分,呈圆台结构。
  10. 一种电子烟,其特征在于:包括如权利要求1~9任意一项所述的雾化装置。
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