WO2019174033A1 - 一种加热组件、烤烟器以及电子烟 - Google Patents

一种加热组件、烤烟器以及电子烟 Download PDF

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Publication number
WO2019174033A1
WO2019174033A1 PCT/CN2018/079282 CN2018079282W WO2019174033A1 WO 2019174033 A1 WO2019174033 A1 WO 2019174033A1 CN 2018079282 W CN2018079282 W CN 2018079282W WO 2019174033 A1 WO2019174033 A1 WO 2019174033A1
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Prior art keywords
tobacco
heating
cavity
flue
heating assembly
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PCT/CN2018/079282
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English (en)
French (fr)
Inventor
刘秋明
向智勇
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惠州市吉瑞科技有限公司深圳分公司
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Priority to PCT/CN2018/079282 priority Critical patent/WO2019174033A1/zh
Publication of WO2019174033A1 publication Critical patent/WO2019174033A1/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
    • A24F40/46Shape or structure of electric heating means
    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F40/00Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
    • A24F40/50Control or monitoring
    • 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
    • A24F40/20Devices using solid inhalable precursors

Definitions

  • the present application relates to the field of tobacco products, and in particular to a heating member, a related product of a heating member, and a processing method.
  • the flue-cured electronic cigarette can be understood as an electronic cigarette product that heats the tobacco component in the cigarette by the tobacco grill to form a smoke for the user to smoke.
  • the cigarette is usually inserted into the heating element on the flue-curing device to complete the installation of the cigarette.
  • the flue-curing device can perform the heating and heating work of the heating member, and the tobacco material of the cigarette is carried out. Heat to form smoke for the user to smoke.
  • the heating element is usually inserted into the interior of the cigarette so that when the heating element is energized, the heating element located inside the cigarette can heat the cigarette to generate smoke, but
  • the heating element is inserted inside the cigarette, the whole structure of the cigarette is damaged, so that when the heating element is pulled out from the cigarette, the tobacco of the cigarette will remain in the tobacco grill, thereby causing the flue-cured tobacco
  • the difficulty of cleaning the device reduces the efficiency of the user to clean the tobacco hood.
  • Embodiments of the present invention provide a heating assembly, a flue-cured tobacco, and an electronic cigarette for avoiding damage to the overall shape of the tobacco article and for improving the efficiency of heating the tobacco article to generate smoke.
  • An embodiment of the present invention provides a heating assembly, the heating assembly is inserted into a flue-curing device, the heating assembly has a receiving cavity, and the receiving cavity is configured to insert and fix a tobacco article, wherein the receiving cavity a cavity wall extending along an axial direction of the tobacco smog, an end of the cavity wall of the accommodating cavity is extended with a cavity bottom, and the cavity bottom extends along a radial direction of the tobacco smog, the cavity wall The tobacco article is simultaneously heated to generate smoke while the chamber bottom is energized.
  • the cavity wall includes a heating member made of a conductive material.
  • the cavity wall includes a plurality of heating members made of a conductive material, and the plurality of heating members are sequentially connected along an axial direction of the tobacco smog.
  • the heating assembly includes at least one positive lead and at least one negative lead, and the positive lead and the negative lead are electrically connected to the flue-cured electrode.
  • An embodiment of the present invention provides a flue-curing device comprising an atomizing sleeve, wherein the atomizing sleeve is internally inserted and fixed with a heating assembly, and the receiving chamber of the heating assembly is used for inserting and fixing a tobacco article, wherein the receiving portion a cavity wall of the cavity extends along an axial direction of the tobacco smog, an end of the cavity wall of the accommodating cavity is extended with a cavity bottom, and the cavity bottom extends along a radial direction of the tobacco smog, The chamber wall and the chamber bottom are energized while simultaneously heating the tobacco article to generate smoke.
  • the cavity wall includes a heating member made of a conductive material.
  • the cavity wall includes a plurality of heating members made of a conductive material, and the plurality of heating members are sequentially connected along an axial direction of the tobacco smog.
  • an insulation gap is disposed between the heating assembly and the atomization sleeve, and the insulation gap is used to block heat emitted by the heating assembly from being transmitted to the atomization sleeve.
  • the end surface of the first end of the atomization sleeve is provided with a first through hole, so that a user can suck the smoke atomized by the tobacco smog through the first through hole;
  • a fixing bracket is disposed at an end of the atomizing sleeve, a second through hole is disposed through the fixing bracket, and the first through hole and the second pass are along a direction of the axial direction of the atomizing sleeve a hole and a cavity of the accommodating cavity are oppositely disposed, so that the tobacco article is inserted into the accommodating cavity through the first through hole, the second through hole and the cavity of the accommodating cavity;
  • the receiving bracket is recessed from the end surface of the first through hole, and the receiving groove is internally fixed with a heat insulating tube, and the inner cavity of the heat insulating tube is the heat insulating gap.
  • the heat insulating tube is filled with a heat insulating material for performing heat insulation.
  • the end of the atomization sleeve away from the first through hole is provided with a preheating member, and the preheating member is disposed opposite to the rotommer electrode, and the rotomette electrode is used for the heating Powering the assembly and the preheating member;
  • a third through hole is disposed through the preheating member along the axial direction of the tobacco smog, and the opening of the third through hole is disposed against the cavity bottom, and the preheating member is energized. Next, the preheating member heats the airflow inside the third through hole, so that the heated airflow is conducted to the inside of the heating assembly.
  • the heating assembly includes at least one positive lead and at least one negative lead, and the positive lead and the negative lead are electrically connected to the flue-cured electrode.
  • the inside of the tobacco smoulder further includes a control circuit, wherein the positive lead and the negative lead are respectively connected to a positive output end and a negative output end of the control circuit;
  • the control circuit is configured to perform at least one of the following operations:
  • the control circuit is configured to control a power input to the heating component, if the heating component includes a plurality of heating components, the control circuit is configured to respectively control a power input to each of the heating components, A control circuit is used to control the amount of power input to the preheater.
  • An embodiment of the present invention provides an electronic cigarette, wherein the electronic cigarette includes a tobacco smog and a battery assembly, and the battery assembly is used to supply power to the tobacco smog, the smog device being as shown in any one of the above.
  • Embodiments of the present invention provide a heating assembly, a flue-cured tobacco device, and an electronic cigarette, the heating assembly having a receiving cavity for inserting and fixing a tobacco article, the cavity wall and the cavity bottom being energized
  • the tobacco article is simultaneously heated to generate smoke.
  • the tobacco hood shown in this embodiment the tobacco article can be placed inside the accommodating cavity, and the overall structure of the tobacco component is not required to be destroyed, thereby effectively improving the tobacco system.
  • the chamber wall and the bottom of the chamber shown in the embodiment simultaneously heat the tobacco article, thereby increasing the heating area for heating the tobacco article, thereby improving the heating efficiency of heating the tobacco article, thereby
  • the tobacco component is heated more fully and effectively, and the tobacco component contained in the tobacco component can be fully heated, thereby improving the service life of the tobacco component.
  • FIG. 1 is a schematic view showing the overall structure of an embodiment of a flue-curing device provided by the present invention
  • FIG. 2 is a schematic view showing the overall structure of another embodiment of the flue-curing device provided by the present invention.
  • FIG. 3 is a cross-sectional structural view showing an embodiment of a flue-curing device provided by the present invention.
  • FIG. 4 is a schematic overall structural view of an embodiment of a heating assembly provided by the present invention.
  • FIG. 5 is a schematic overall structural view of another embodiment of a heating assembly according to the present invention.
  • FIG. 6 is a schematic overall structural view of another embodiment of a heating assembly provided by the present invention.
  • Fig. 7 is a schematic view showing the electrical connection structure inside the toaster of the present invention.
  • the invention provides a heating assembly, a flue-cured tobacco device and an electronic cigarette.
  • the heating assembly is disposed in the flue-cured tobacco device.
  • the use of the flue-curing device shown in this embodiment can avoid damage to the cigarette structure.
  • FIG. 1 and FIG. 2 are schematic diagrams showing an overall structure of an embodiment of a flue-curing device according to the present invention.
  • the embodiment of the present invention does not limit the overall structure of the flue-curing device 100, as long as the flue-cured tobacco device 100 can heat the tobacco parts located inside the flue-curing device 100, optionally, as shown in this embodiment.
  • the tobacco-making device is a cylindrical cigarette, and the tobacco-making device 100 can also have a cylindrical structure, which is not limited in this embodiment.
  • FIG. 3 is a schematic cross-sectional structural view of an embodiment of a flue-curing device provided by the present invention.
  • the tobacco hood 100 includes an atomization sleeve 301. If the tobacco hood 100 is cylindrical in the embodiment, the atomization sleeve 301 provided in this embodiment is Cylindrical structure.
  • a heating assembly 302 is inserted into the atomization sleeve 301, and the receiving chamber 303 of the heating assembly 302 is used for inserting and fixing the tobacco article.
  • FIG. 4 and FIG. 5 are the ones of the heating assembly provided by the present invention.
  • FIG. 4 and FIG. 5 are the ones of the heating assembly provided by the present invention.
  • the cavity wall 305 of the accommodating cavity 303 extends along the axial direction of the tobacco hood 100, the end of the cavity wall 305 of the accommodating cavity 303 is extended with a cavity bottom 304, and the cavity bottom 304 is along
  • the radial direction of the flue-curing device 100 extends, and the chamber wall 304 and the chamber bottom 305, while energized, simultaneously heat the tobacco article to generate smoke.
  • the tobacco article shown in this embodiment can be a cigarette having a fixed shape, and when the user needs to smoke the smoke, the user can directly insert the cigarette into the interior of the accommodating cavity 303;
  • the tobacco article shown in this embodiment may also be a tobacco having no fixed shape.
  • the user may directly place the tobacco inside the accommodating cavity 303, and the heating component 302.
  • the tobacco article located inside the accommodating chamber 303 can be directly heated.
  • the cavity wall 305 of the accommodating cavity 303 and the cavity bottom 305 are all in contact with the tobacco article, and the heating component 302 is In the case of energization, the heating assembly 302 can heat the attached tobacco articles to generate smoke.
  • the tobacco article is exemplified as an example. It can be seen that, with the tobacco hood shown in this embodiment, the tobacco article can be placed inside the accommodating cavity 303 without Destroying the overall structure of the tobacco article effectively improves the efficiency of heating the tobacco article, and the tobacco of the tobacco article does not scatter in the interior of the flue-cured tobacco, thereby reducing the flue-cured tobacco The difficulty of cleaning is improved, and the efficiency of cleaning the tobacco hood is improved.
  • the chamber wall 305 and the cavity bottom 304 shown in the embodiment simultaneously heat the tobacco article, thereby increasing the heating area for heating the tobacco article, thereby improving the heating efficiency of heating the tobacco article. Therefore, the tobacco article is heated more fully, and the tobacco component contained in the tobacco article can be sufficiently heated to improve the service life of the tobacco article.
  • the cavity wall 305 includes a heating member 401 made of a conductive material, so that when the tobacco article is inserted inside the receiving cavity 303, The heating member 401 is attached to the tobacco article.
  • the cavity wall 305 includes a plurality of heating elements 402 made of a conductive material, and the plurality of heating elements 402 are sequentially connected along the axial direction of the cigarette lighter.
  • the tobacco hood shown in this embodiment employs a plurality of heating members 402, a plurality of the heating members 402 simultaneously heat the tobacco articles, thereby further increasing the heating area capable of heating the tobacco articles.
  • the efficiency of heating the tobacco article is enhanced so that the tobacco component included in the tobacco article can be better heated.
  • a heat insulating gap 403 is disposed between the heating assembly 302 and the atomizing sleeve 301 shown in the embodiment.
  • the heating component 302 When the heating component 302 is energized, the heating component 302 generates heat, and the heat generated by the heating component 302 is blocked by the thermal insulation gap 403, and the thermal insulation gap 403 can effectively avoid the heating component.
  • the heat dissipated by 302 is transmitted to the atomizing sleeve 301, thereby avoiding the situation in which the user holds the atomizing sleeve 301 to perform hot smoking when smoking.
  • the cigarette lighter shown in this embodiment may include a fixing bracket 500, and the fixing bracket 500 is recessed with a fixing slot 501, and the fixing slot 501 is configured to insert and fix the heating component 302, thereby
  • the heat insulating gap 403 is between the heating assembly 302 and the atomizing sleeve 301.
  • the end surface of the first end of the atomization sleeve 301 is provided with a first through hole 310, and the first through hole 310 communicates with the receiving cavity 303 of the heating assembly 302, so that the user passes The first through hole 310 can suck the smoke atomized by the heating assembly 302.
  • the fixing bracket 500 is inserted into the end of the atomizing sleeve 301, and the second through hole 502 is disposed through the fixing bracket 500, and the first passage is along the axial direction of the atomizing sleeve 301.
  • the hole 310, the second through hole 502, and the cavity of the receiving cavity 303 are oppositely disposed such that the tobacco article sequentially passes through the first through hole 310, the second through hole 502, and the receiving A cavity of the cavity 303 is inserted into the interior of the receiving cavity 303 to cause the heating element 402 to heat the tobacco article.
  • the receiving bracket 500 is recessed from the end surface of the first through hole 310 to receive a receiving groove 503.
  • the receiving groove 503 is internally inserted and fixed with a hollow heat insulating tube 504, and the inner cavity of the heat insulating tube 504 It is the heat insulation gap 403.
  • the thermal insulation gap 403 shown in this embodiment may block heat generated by the heating component 302 through air inside the thermal insulation gap 403.
  • the specific material of the heat insulating tube 504 is not limited in this embodiment, as long as the heat insulating tube 504 can block the heat generated by the heating component 302.
  • the heating component 302 can be ceramic. Parts, fiberglass parts, etc.
  • the heat insulating tube 504 is filled with a heat insulating material for performing heat insulation.
  • the specific material of the heat insulating material is not limited in this embodiment, as long as the heat insulating material is capable of blocking heat flow.
  • the material may be optional.
  • the heat insulating tube 504 may be filled with glass fiber, asbestos, rock wool, silicate, aerogel felt or the like.
  • the use of the tobacco hood shown in this embodiment can block the heat generated by the heating component 302 when the tobacco article is heated and conduct the heat to the atomizing sleeve 301, thereby preventing the tobacco smog from being atomized during use.
  • the case of the set 301 is hot, which improves the comfort of the user during the use of the flue-curing device.
  • the tobacco hood shown in this embodiment can block the heat generated by the heating of the heating component 302 inside the accommodating cavity 303, thereby increasing the temperature of the heating component 302 due to effective reduction.
  • the dissipation of heat generated by the heating assembly 302 further enhances the efficiency of heating the tobacco article.
  • the end of the atomization sleeve 301 away from the first through hole 310 is provided with a preheating member 510, and the preheating member 510 is provided with a flue-cured tobacco.
  • the electrode 511 is used to supply power to the heating assembly 302 and the preheating member 510.
  • a third through hole 512 is disposed through the preheating member 510 along the axial direction of the tobacco hood, and the opening 513 of the third through hole 512 is disposed against the cavity bottom 304.
  • the preheating member 510 heats the airflow inside the third through hole 512.
  • the cavity bottom 304 shown in this embodiment has a gap.
  • the airflow heated by the preheating member 510 is guided along the third through hole 512, and has a gap through the cavity bottom 304 to flow into the interior of the receiving cavity 303, thereby generating the heating component 302.
  • the heat only needs to heat the tobacco article without heating the airflow inside the accommodating chamber 303, thereby improving the efficiency with which the accommodating chamber 303 heats the tobacco article.
  • the specific structure of the flue-cured tobacco electrode 511 shown in this embodiment is exemplarily illustrated.
  • the flue-cured tobacco electrode 511 shown in this embodiment includes an outer electrode 520 and an inner electrode 521 inserted inside the outer electrode 520. And an insulating ring 523 interposed between the outer electrode 520 and the inner electrode 521, the insulating ring 523 shown in this embodiment is used for electrically isolating the outer electrode 520 and the inner electrode 521 .
  • the flue-cured tobacco electrode 511 shown in this embodiment is used for supplying power to the accommodating cavity 303 of the heating assembly 302, so that the accommodating cavity 303 heats the tobacco article, and the accommodating cavity 303 and the present embodiment are realized.
  • the electrical connection relationship of the flue gas electrode 511 is such that the receiving cavity 303 leads at least one positive lead and at least one negative lead.
  • the accommodating cavity 303 can lead to a positive electrode lead 411 and a negative electrode lead 412, and the positive electrode lead 411 and the negative electrode lead 412 simultaneously with the heating
  • the 401 and the cavity bottom 304 are electrically connected, and the positive electrode lead 411 is interposed between the outer electrode 520 and the insulating ring 523, and the negative electrode lead 412 is inserted into the inner electrode 521 and the
  • the insulating ring 523 is disposed between the insulating ring 523, thereby achieving the purpose of supplying power to the heating assembly 302.
  • the accommodating cavity 303 shown in this embodiment includes a plurality of heating elements 401
  • the accommodating cavity 303 can lead to a plurality of positive lead wires 411 and a plurality of negative electrode leads 412, and different heating members 401
  • the positive electrode lead 411 and the negative electrode lead 412 are electrically connected to each other, and each of the positive electrode leads 411 is electrically connected to the outer electrode 520, and each of the negative electrode leads 412 is electrically connected to the inner electrode 521.
  • FIG. 7 is a schematic diagram of an electrical connection structure inside the toaster of the present invention.
  • the heating assembly 302 is electrically connected to the control circuit 701.
  • the positive lead 411 led from the heating assembly 302 is connected to the positive output terminal of the control circuit 701, and the negative lead 412 led from the heating assembly is connected to the control.
  • the control circuit 701 is electrically connected to the griller electrode 511, and the control circuit 701 shown in this embodiment includes a circuit board, an integrated circuit or a chip to control the flue-cured tobacco. The work of each component.
  • the control circuit 701 is configured to perform at least one of the following operations:
  • the control circuit 701 is configured to control the power input to the heating component 302.
  • the power input to the heating component 302 can be controlled by the control circuit 701 to control the heating component.
  • the concentration of the atomized smoke, i.e., the strategy input to the heating assembly 302, is proportional to the concentration of the aerosol atomized by the heating assembly;
  • the control circuit 701 can control the input as shown in this embodiment.
  • the power of each of the heating elements 401 is such that segmental heating of the tobacco article is achieved.
  • the control circuit 701 is configured to control the power input to the preheating member 510.
  • the temperature of the airflow flowing to the heating component 302 can be controlled by the control circuit 701 as shown in this embodiment.
  • the tobacco article of the present embodiment may include different tobacco regions, and different tobacco regions have different tastes, and different tobacco regions correspond to different heating members 401 along the radial direction of the tobacco smog,
  • the control circuit 701 can control the different heating elements 401 to be energized, so that the tobacco smog can generate different flavors of smoke, and then the atomizer can be atomized without the user replacing the tobacco parts.
  • the purpose of the smoke of different flavors is such that the tobacco hood shown in this embodiment can satisfy the diversified demand of the user for the taste of smoke.
  • the embodiment of the present invention further provides an electronic cigarette, and the electronic cigarette includes the tobacco smoker shown in the above embodiment. This embodiment does not describe the specific structure of the tobacco smoker.
  • the electronic cigarette provided by the embodiment of the present invention further includes a battery component.
  • the specific structure of the battery component is not limited in this embodiment, as long as the battery component can supply power to the cigarette lighter.

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Abstract

本发明实施例提供了一种加热组件、烤烟器以及电子烟,所述加热组件具有容纳腔,所述容纳腔用于插设固定烟草制件,所述腔壁和所述腔底在通电的情况下,同时对所述烟草制件进行加热以生成烟雾。采用本实施例所示的烤烟器,无需对所述烟草制件的整体结构进行破坏,则有效的提升了对所述烟草制件进行加热的效率,而且因烟草制件的烟丝不会散落在所述烤烟器内部,则降低了对烤烟器进行清理难度,提升了对烤烟器进行清理的效率。

Description

一种加热组件、烤烟器以及电子烟 技术领域
本申请涉及烟草制品领域,尤其涉及一种加热件、加热件的相关产品及加工方法。
背景技术
烤烟型电子烟可以理解为,是一种通过烤烟器对烟支里的烟草成分进行加热以形成烟雾供用户吸食的电子烟产品。
在传统的烤烟型电子烟中,烟支通常插进烤烟器上的加热件以完成烟支的安装,安装好后,烤烟器即可进行加热件的通电加热工作,对烟支的烟草材料进行加热,以形成烟雾,供用户吸食。
然而在实际中发现,通常是采用将加热件插设于烟支内部设置,以使在加热件通电时,位于烟支内部的加热件能够对烟支进行加热以生成烟雾,但是,因需要将加热件插设于烟支内部设置,则会对烟支的整体结构造成破坏,从而使得在将加热件从烟支内部拔出时,烟支的烟丝会残留至烤烟器内,从而造成对烤烟器清理的困难,降低用户对烤烟器进行清理的效率。
发明内容
本发明实施例提供了一种加热组件、烤烟器以及电子烟,其用于避免对烟草制件的整体形状造成破坏,且能够提高对所述烟草制件进行加热以生成烟雾的效率。
本发明实施例提供了一种加热组件,所述加热组件插设于烤烟器中,所述加热组件具有容纳腔,所述容纳腔用于插设固定烟草制件,其中,所述容纳腔的腔壁沿所述烤烟器的轴向延伸设置,所述容纳腔的腔壁的端部延伸设置有腔底,且所述腔底沿所述烤烟器的径向方向延伸设置,所述腔壁和所述腔底在通电的情况下,同时对所述烟草制件进行加热以生成烟雾。
可选的,所述腔壁包括有一个由导电材质制成的加热件。
可选的,所述腔壁包括有多个由导电材质制成的加热件,且多个所述加热件沿所述烤烟器的轴向依次连接设置。
可选的,所述加热组件包括至少一个正极引线以及至少一个负极引线,所述正极引线与所述负极引线均与烤烟器电极电连接。
本发明实施例提供了一种烤烟器,包括雾化套,所述雾化套内部插设固定有加热组件,所述加热组件的容纳腔用于插设固定烟草制件,其中,所述容纳腔的腔壁沿所述烤烟器的轴向延伸设置,所述容纳腔的腔壁的端部延伸设置有腔底,且所述腔底沿所述烤烟器的径向方向延伸设置,所述腔壁和所述腔底在通电的情况下,同时对所述烟草制件进行加热以生成烟雾。
可选的,所述腔壁包括有一个由导电材质制成的加热件。
可选的,所述腔壁包括有多个由导电材质制成的加热件,且多个所述加热件沿所述烤烟器的轴向依次连接设置。
可选的,所述加热组件和所述雾化套之间设置有隔热间隙,所述隔热间隙用于阻隔所述加热组件所散发的热量向所述雾化套传递。
可选的,所述雾化套的第一端的端面设置有第一通孔,以使用户通过所述第一通孔吸食所述烤烟器所雾化的烟雾;
所述雾化套的端部插设有固定支架,贯穿所述固定支架设置有第二通孔,且沿所述雾化套轴向的方向,所述第一通孔、所述第二通孔以及所述容纳腔的腔口相对设置,以使所述烟草制件依次经由所述第一通孔、所述第二通孔以及所述容纳腔的腔口插入至所述容纳腔内部;
所述固定支架背离所述第一通孔的端面凹设有容纳凹槽,所述容纳凹槽内部插设固定有隔热管,所述隔热管的内腔为所述隔热间隙。
可选的,所述隔热管内部填充有用于进行隔热的隔热材料。
可选的,所述雾化套远离所述第一通孔的端部设置有预加热件,与所述预加热件抵持设置有烤烟器电极,所述烤烟器电极用于为所述加热组件以及所述预加热件供电;
沿所述烤烟器的轴向,贯穿所述预加热件设置有第三通孔,且所述第三通孔的孔口与所述腔底相抵持设置,在所述预加热件通电的情况下,所述预加热件对所述第三通孔内部的气流进行加热,从而使得加热后的气流导通至所述加热组件内部。
可选的,所述加热组件包括至少一个正极引线以及至少一个负极引线,所述正极引线与所述负极引线均与烤烟器电极电连接。
可选的,所述烤烟器内部还包括有控制电路,所述正极引线以及所述负极引线分别连接至所述控制电路的正极输出端以及负极输出端;
所述控制电路用于执行如下操作中的至少一项:
所述控制电路用于控制输入至所述加热组件的功率大小、若所述加热组件包括有多个加热件,所述控制电路用于分别控制输入至各所述加热件的功率大小、所述控制电路用于控制输入至所述预加热件的功率大小。
本发明实施例提供了一种电子烟,,所述电子烟包括烤烟器和电池组件,所述电池组件用于为所述烤烟器供电,所述烤烟器如上述任一项所示。
本发明实施例提供了一种加热组件、烤烟器以及电子烟,所述加热组件具有容纳腔,所述容纳腔用于插设固定烟草制件,所述腔壁和所述腔底在通电的情况下,同时对所述烟草制件进行加热以生成烟雾。采用本实施例所示的烤烟器,只要将所述烟草制件放置于所述容纳腔内部即可,无需对所述烟草制件的整体结构进行破坏,则有效的提升了对所述烟草制件进行加热的效率,而且因烟草制件的烟丝不会散落在所述烤烟器内部,则降低了对烤烟器进行清理难度,提升了对烤烟器进行清理的效率。而且因本实施例所示的腔壁以及腔底同时对所述烟草制件进行加热,从而提升了对烟草制件进行加热的加热面积,进而提升了对烟草制件进行加热的加热效率,从而使得对烟草制件加热的更为充分,有效的将烟草制件所含的烟草成分能够充分的被加热出,提升了烟草制件的使用寿命。
附图说明
图1为本发明所提供的烤烟器的一种实施例整体结构示意图;
图2为本发明所提供的烤烟器的另一种实施例整体结构示意图;
图3为本发明所提供的烤烟器的一种实施例剖面结构示意图;
图4为本发明所提供的加热组件的一种实施例整体结构示意图;
图5为本发明所提供的加热组件的另一种实施例整体结构示意图;
图6为本发明所提供的加热组件的另一种实施例整体结构示意图;
图7为本发明所提供的烤烟器内部的电连接结构示意图。
具体实施方式
本发明提供一种加热组件、烤烟器以及电子烟,所述加热组件设置于所述烤烟器内,采用本实施例所示的烤烟器能够避免对烟支结构的破坏。
以下对本实施例所提供的烤烟器的具体结构进行详细说明:
首先如图1以及图2所示,图1以及图2为本发明所提供的烤烟器的一种实施例整体结构示意图。
本实施例对所述烤烟器100的整体结构不做限定,只要所述烤烟器100能够对位于所述烤烟器100内部的烟草制件进行加热即可,可选的,若本实施例所示的所述烟草制件为呈圆柱形的烟支,则所述烤烟器100也可呈圆柱形结构,具体在本实施例中不做限定。
以下结合图3所示对本实施例所示的所述烤烟器的具体结构进行进一步的详细说明。其中,图3为本发明所提供的烤烟器的一种实施例剖面结构示意图。
如图3所示,所述烤烟器100包括雾化套301,若以本实施例所示的所述烤烟器100呈圆柱形为例,则本实施例所提供的所述雾化套301呈圆柱形结构。
所述雾化套301内部插设固定有加热组件302,所述加热组件302的容纳腔303用于插设固定烟草制件。
为更好的理解本发明实施例所示的加热组件302的具体结构,以下结合图4以及图5所示进行示例性说明,其中,图4以及图5为本发明所提供的加热组件的一种实施例整体结构示意图。
其中,所述容纳腔303的腔壁305沿所述烤烟器100的轴向延伸设置,所述容纳腔303的腔壁305的端部延伸设置有腔底304,且所述腔底304沿所述烤烟器100的径向方向延伸设置,所述腔壁304和所述腔底305在通电的情况下,同时对所述烟草制件进行加热以生成烟雾。
本实施例所示的烟草制件可为具有固定形状的烟支,则在用户需要吸食烟 雾时,则用户可直接将烟支插入至所述容纳腔303内部即可;
又如,本实施例所示的烟草制件还可为不具有固定形状烟草,则在用户需要吸食烟雾时,则用户可直接将烟草放置于所述容纳腔303内部,则所述加热组件302即可直接对位于所述容纳腔303内部的烟草制件进行加热。
可见,采用本实施例所示的烤烟器的结构,则所述容纳腔303的所述腔壁305以及所述腔底305均与所述烟草制件相贴合,则所述加热组件302在通电的情况下,所述加热组件302即可对相贴合的烟草制件进行加热以生成烟雾。
本实施例以所述烟草制件为烟支为例进行示例性说明,可见,采用本实施例所示的烤烟器,只要将所述烟草制件放置于所述容纳腔303内部即可,无需对所述烟草制件的整体结构进行破坏,则有效的提升了对所述烟草制件进行加热的效率,而且因烟草制件的烟丝不会散落在所述烤烟器内部,则降低了对烤烟器进行清理难度,提升了对烤烟器进行清理的效率。
而且因本实施例所示的腔壁305以及腔底304同时对所述烟草制件进行加热,从而提升了对烟草制件进行加热的加热面积,进而提升了对烟草制件进行加热的加热效率,从而使得对烟草制件加热的更为充分,有效的将烟草制件所含的烟草成分能够充分的被加热出,提升了烟草制件的使用寿命。
可选的,如图3以及图4所示,所述腔壁305包括有一个由导电材质制成的加热件401,以使在烟草制件插设在所述容纳腔303内部时,所述加热件401与所述烟草制件相贴合。
可选的,如图6所示,所述腔壁305包括有多个由导电材质制成的加热件402,且多个所述加热件402沿所述烤烟器的轴向依次连接设置。
若本实施例所示的烤烟器采用多个加热件402,则多个所述加热件402同时对所述烟草制件进行加热,则进一步提高了能够对烟草制件进行加热的加热面积,则提升了对烟草制件进行加热的效率,从而使得所述烟草制件所包括的烟草成分能够更好的被加热出来。
为避免用户使用时,出现用户手持雾化套301时出现烫手的情况,则本实施例所示的所述加热组件302和所述雾化套301之间设置有隔热间隙403,在所述加热组件302通电时,所述加热组件302会生成热量,而所述加热组件302所生成的热量会被所述隔热间隙403阻隔,则所述隔热间隙403能够有效 得到避免所述加热组件302所散发的热量向所述雾化套301传递,从而避免了用户手持所述雾化套301进行烟雾吸食时出现烫手的情况。
可选的,本实施例所示所述烤烟器可包括有固定支架500,所述固定支架500凹槽有固定槽501,所述固定槽501用于插设固定所述加热组件302,从而使得所述加热组件302和所述雾化套301之间具有所述隔热间隙403。
可选的,所述雾化套301的第一端的端面设置有第一通孔310,所述第一通孔310与所述加热组件302的所述容纳腔303相连通,从而使得用户通过所述第一通孔310能够吸食所述加热组件302所雾化的烟雾。
所述雾化套301的端部插设有所述固定支架500,贯穿所述固定支架500设置有第二通孔502,且沿所述雾化套301轴向的方向,所述第一通孔310、所述第二通孔502以及所述容纳腔303的腔口相对设置,以使所述烟草制件依次经由所述第一通孔310、所述第二通孔502以及所述容纳腔303的腔口插入至所述容纳腔303内部,以使所述加热件402对所述烟草制件进行加热。
所述固定支架500背离所述第一通孔310的端面凹设有容纳凹槽503,所述容纳凹槽503内部插设固定有中空的隔热管504,所述隔热管504的内腔为所述隔热间隙403。
可选的,本实施例所示的所述隔热间隙403可通过所述隔热间隙403内部的空气对所述加热组件302所生成的热量进行阻隔。
本实施例对所述隔热管504的具体材质不做限定,只要所述隔热管504能够对所述加热组件302所生成的热量进行阻隔即可,例如,所述加热组件302可为陶瓷制件、玻璃纤维制件等。
可选的,所述隔热管504内部填充有用于进行隔热的隔热材料,本实施例对所述隔热材料的具体材质不做限定,只要所述隔热材料为能够阻滞热流传递的材料即可,可选的,本实施例可在所述隔热管504内部填充玻璃纤维、石棉、岩棉、硅酸盐、气凝胶毡等。
可见,采用本实施例所示的烤烟器,能够阻隔所述加热组件302对所述烟草制件进行加热时所生成的热量向雾化套301传导,从而避免了烤烟器在使用过程中雾化套301烫手的情况,提升了用户使用烤烟器过程中的舒适度。
而且通过上述所示,本实施例所示的烤烟器能够将所述加热组件302通电 所生成的热量阻隔在所述容纳腔303内部,从而提升了所述加热组件302的温度,因有效的降低了所述加热组件302所生成的热量的流散,则进一步的提升了对所述烟草制件进行加热的效率。
为提升对所述烟草制件进行加热的效率,则所述雾化套301远离所述第一通孔310的端部设置有预加热件510,与所述预加热件510抵持设置有烤烟器电极511,所述烤烟器电极511用于为所述加热组件302以及所述预加热件510供电。
沿所述烤烟器的轴向,贯穿所述预加热件510设置有第三通孔512,且所述第三通孔512的孔口513与所述腔底304相抵持设置,在所述预加热件510通电的情况下,所述预加热件510对所述第三通孔512内部的气流进行加热,由图5所示可知,本实施例所示的所述腔底304具有间隙,则被所述预加热件510加热后的气流会沿所述第三通孔512的导向,经由所述腔底304所具有间隙流通至所述容纳腔303内部,从而使得所述加热组件302所生成的热量仅需要对所述烟草制件加热即可,而无需对容纳腔303内部的气流进行加热,从而提升了所述容纳腔303对烟草制件进行加热的效率。
可选的,以下对本实施例所示的烤烟器内部的电连接关系进行示例性说明:
首先对本实施例所示的烤烟器电极511的具体结构进行示例性说明,本实施例所示的所述烤烟器电极511包括有外电极520,插设在所述外电极520内部的内电极521,以及插设于所述外电极520以及所述内电极521之间的绝缘环523,本实施例所示的所述绝缘环523用于电性隔离所述外电极520以及所述内电极521。
本实施例所示的所述烤烟器电极511用于为所述加热组件302的容纳腔303进行供电,以使所述容纳腔303对烟草制件进行加热,本实现所述容纳腔303与所述烤烟器电极511的电连接关系,则所述容纳腔303引出至少一个正极引线以及至少一个负极引线。
具体的,若所述容纳腔303包括有一个加热件401,则所述容纳腔303可引出一个正极引线411以及一个负极引线412,所述正极引线411以及所述负极引线412同时与所述加热件401以及所述腔底304电连接,而所述正极引线 411可插设于所述外电极520以及所述绝缘环523之间,所述负极引线412插设于所述内电极521以及所述绝缘环523之间,从而实现了所述烤烟器电极511为所述加热组件302进行供电的目的。
可选的,若本实施例所示的所述容纳腔303包括有多个加热件401,则所述容纳腔303可引出多个正极引线411以及多个负极引线412,且不同的加热件401与不同的所述正极引线411以及所述负极引线412电连接,且各所述正极引线411均与所述外电极520电连接,各所述负极引线412均与所述内电极521电连接。
可选的,如图7所示,其中,图7为本发明所提供的烤烟器内部的电连接结构示意图。
如图7所示,所述加热组件302与控制电路701电连接,所述加热组件302引出的正极引线411连接至控制电路701的正极输出端,所述加热组件引出的负极引线412连接至控制电路701的负极输出端,所述控制电路701与所述烤烟器电极511电连接,而本实施例所示的所述控制电路701包括电路板、集成电路或者芯片等等元器件,以便控制烤烟器各组件的工作。
所述控制电路701用于执行如下操作中的至少一项:
所述控制电路701用于控制输入至所述加热组件302的功率大小,本实施例所示可通过所述控制电路701控制输入至所述加热组件302上的功率大小,进而控制所述加热组件所雾化的烟雾的浓度,即输入至所述加热组件302上的攻略和所述加热组件所雾化的烟雾的浓度成正比;
若所述加热组件302包括有多个加热件401,所述控制电路701用于分别控制输入至各所述加热件401的功率大小,则本实施例所示可通过所述控制电路701控制输入各所述加热件401的功率大小,从而实现了对所述烟草制件的分段加热。
所述控制电路701用于控制输入至所述预加热件510的功率大小,则本实施例所示可通过所述控制电路701控制流通至所述加热组件302内部气流的温度。
本实施例所示的烟草制件可包括有不同的烟草区域,且不同的烟草区域具有不同的口味,且沿所述烤烟器的径向,不同的烟草区域与不同的加热件401 对应,则所述控制电路701在控制不同的加热件401进行通电的情况下,即可使得所述烤烟器生成不同口味的烟雾,进而在无需用户更换烟草制件的情况下,即可实现烤烟器雾化出不同口味的烟雾的目的,从而使得本实施例所示的烤烟器能够满足用户对烟雾口味的多样化需求。
本发明实施例还提供了一种电子烟,所述电子烟包括上述实施例所示的所述烤烟器,本实施例对所述烤烟器的具体结构不做赘述。
本发明实施例所提供的电子烟还包括有电池组件,本实施例对所述电池组件的具体结构不做限定,只要所述电池组件能够为所述烤烟器进行供电即可。
以上所述,以上实施例仅用以说明本发明的技术方案,而非对其限制;尽管参照前述实施例对本发明进行了详细的说明,本领域的普通技术人员应当理解: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;而这些修改或者替换,并不使相应技术方案的本质脱离本发明各实施例技术方案的精神和范围。

Claims (14)

  1. 一种加热组件,所述加热组件插设于烤烟器中,其特征在于,所述加热组件具有容纳腔,所述容纳腔用于插设固定烟草制件,其中,所述容纳腔的腔壁沿所述烤烟器的轴向延伸设置,所述容纳腔的腔壁的端部延伸设置有腔底,且所述腔底沿所述烤烟器的径向方向延伸设置,所述腔壁和所述腔底在通电的情况下,同时对所述烟草制件进行加热以生成烟雾。
  2. 根据权利要求1所述的加热组件,其特征在于,所述腔壁包括有一个由导电材质制成的加热件。
  3. 根据权利要求1所述的加热组件,其特征在于,所述腔壁包括有多个由导电材质制成的加热件,且多个所述加热件沿所述烤烟器的轴向依次连接设置。
  4. 根据权利要求1所述的加热组件,其特征在于,所述加热组件包括至少一个正极引线以及至少一个负极引线,所述正极引线与所述负极引线均与烤烟器电极电连接。
  5. 一种烤烟器,其特征在于,包括雾化套,所述雾化套内部插设固定有加热组件,所述加热组件的容纳腔用于插设固定烟草制件,其中,所述容纳腔的腔壁沿所述烤烟器的轴向延伸设置,所述容纳腔的腔壁的端部延伸设置有腔底,且所述腔底沿所述烤烟器的径向方向延伸设置,所述腔壁和所述腔底在通电的情况下,同时对所述烟草制件进行加热以生成烟雾。
  6. 根据权利要求5所述的烤烟器,其特征在于,所述腔壁包括有一个由导电材质制成的加热件。
  7. 根据权利要求5所述的烤烟器,其特征在于,所述腔壁包括有多个由导电材质制成的加热件,且多个所述加热件沿所述烤烟器的轴向依次连接设置。
  8. 根据权利要求5至7任一项所述的烤烟器,其特征在于,所述加热组件和所述雾化套之间设置有隔热间隙,所述隔热间隙用于阻隔所述加热组件所散发的热量向所述雾化套传递。
  9. 根据权利要求8所述的烤烟器,其特征在于,所述雾化套的第一端的端面设置有第一通孔,以使用户通过所述第一通孔吸食所述烤烟器所雾化的烟 雾;
    所述雾化套的端部插设有固定支架,贯穿所述固定支架设置有第二通孔,且沿所述雾化套轴向的方向,所述第一通孔、所述第二通孔以及所述容纳腔的腔口相对设置,以使所述烟草制件依次经由所述第一通孔、所述第二通孔以及所述容纳腔的腔口插入至所述容纳腔内部;
    所述固定支架背离所述第一通孔的端面凹设有容纳凹槽,所述容纳凹槽内部插设固定有隔热管,所述隔热管的内腔为所述隔热间隙。
  10. 根据权利要求9所述的烤烟器,其特征在于,所述隔热管内部填充有用于进行隔热的隔热材料。
  11. 根据权利要求5所述的烤烟器,其特征在于,所述雾化套远离所述第一通孔的端部设置有预加热件,与所述预加热件抵持设置有烤烟器电极,所述烤烟器电极用于为所述加热组件以及所述预加热件供电;
    沿所述烤烟器的轴向,贯穿所述预加热件设置有第三通孔,且所述第三通孔的孔口与所述腔底相抵持设置,在所述预加热件通电的情况下,所述预加热件对所述第三通孔内部的气流进行加热,从而使得加热后的气流导通至所述加热组件内部。
  12. 根据权利要求11所述的烤烟器,其特征在于,所述加热组件包括至少一个正极引线以及至少一个负极引线,所述正极引线与所述负极引线均与烤烟器电极电连接。
  13. 根据权利要求12所述的烤烟器,其特征在于,所述烤烟器内部还包括有控制电路,所述正极引线以及所述负极引线分别连接至所述控制电路的正极输出端以及负极输出端;
    所述控制电路用于执行如下操作中的至少一项:
    所述控制电路用于控制输入至所述加热组件的功率大小、若所述加热组件包括有多个加热件,所述控制电路用于分别控制输入至各所述加热件的功率大小、所述控制电路用于控制输入至所述预加热件的功率大小。
  14. 一种电子烟,其特征在于,所述电子烟包括烤烟器和电池组件,所述电池组件用于为所述烤烟器供电,所述烤烟器如权利要求5至权利要求13任一项所示。
PCT/CN2018/079282 2018-03-16 2018-03-16 一种加热组件、烤烟器以及电子烟 WO2019174033A1 (zh)

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US9744320B2 (en) * 2014-02-04 2017-08-29 George Wakalopulos Electric wick and heater for portable vaporizer
CN104082858A (zh) * 2014-07-18 2014-10-08 云南中烟工业有限责任公司 一种具有多个干馏腔的电加热型卷烟
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