WO2019014886A1 - 一种雾化器 - Google Patents

一种雾化器 Download PDF

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Publication number
WO2019014886A1
WO2019014886A1 PCT/CN2017/093634 CN2017093634W WO2019014886A1 WO 2019014886 A1 WO2019014886 A1 WO 2019014886A1 CN 2017093634 W CN2017093634 W CN 2017093634W WO 2019014886 A1 WO2019014886 A1 WO 2019014886A1
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WO
WIPO (PCT)
Prior art keywords
oil
smoke
assembly
atomizer
opening
Prior art date
Application number
PCT/CN2017/093634
Other languages
English (en)
French (fr)
Inventor
刘秋明
向智勇
Original Assignee
惠州市吉瑞科技有限公司深圳分公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 惠州市吉瑞科技有限公司深圳分公司 filed Critical 惠州市吉瑞科技有限公司深圳分公司
Priority to PCT/CN2017/093634 priority Critical patent/WO2019014886A1/zh
Publication of WO2019014886A1 publication Critical patent/WO2019014886A1/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
    • A24F40/40Constructional details, e.g. connection of cartridges and battery parts
    • A24F40/48Fluid transfer means, e.g. pumps
    • A24F40/485Valves; Apertures
    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • 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
    • A24F15/015Receptacles or boxes specially adapted for cigars, cigarettes, simulated smoking devices or cigarettes therefor specially adapted for simulated smoking devices or cigarettes therefor with means for refilling of 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
    • A24F40/10Devices using liquid inhalable precursors

Definitions

  • the invention relates to the field of electronic cigarettes, and in particular to an atomizer for preventing splashing of smoke oil when frying oil.
  • the atomizer for atomizing smoke in the prior art includes an atomizing assembly, the atomizing assembly is internally provided with a heating wire and an oil storage device for storing the tobacco oil, and the heating wire and the storage The oil device is connected such that the heating wire can atomize the oil in the oil storage device to generate smoke that can be sucked by the user, and introduce the smoke into the nozzle through the smoke passage to For users to take.
  • the drawback of the prior art is that the conventional electronic cigarette atomizer mostly adopts a vertical heating wire structure, and the smoke oil and the condensate easily leak along the air inlet hole, and the frying oil phenomenon is easy to directly fry into the mouth when used. In, affect the user experience.
  • the present invention provides an atomizer for preventing splashing of smoke oil when frying oil.
  • An atomizer comprising an atomizer body, wherein the atomizer body is provided with a smoke outlet for discharging smoke for the user to take, characterized in that the atomizer body is provided with a smoke storage for storing smoke oil.
  • the stored soot oil flows to the heating assembly, and the side wall of the receiving cavity is provided with an air guiding opening to allow airflow to flow through the air guiding opening to the receiving cavity, the heating assembly
  • the smoke oil is atomized to form a smoke, and the smoke is circulated through the second opening to the smoke outlet through the second opening under the driving of the air flow.
  • the atomizer body is further provided with an air inlet passage communicating with the receiving cavity and the smoke outlet, and for introducing outside air into the receiving cavity.
  • the atomizer body comprises an oil cup assembly and an end cap assembly
  • the oil cup assembly comprises an oil cup, a gas blocking component and an oil blocking component
  • the oil cup is provided with a receiving chamber, an oil storage bin and Air intake hole
  • the gas blocking member and the oil blocking member are oppositely disposed in the accommodating chamber to space the air inlet passage from the air outlet passage, and the air inlet hole is disposed on a side wall of the accommodating chamber Up and communicating with the intake passage to conduct external air to the intake passage
  • the end cap assembly including an end cap, an electrode sleeve, and a first sealing member, the end cap being adjacent to the oil
  • One end of the cup assembly is provided with a insertion slot, the oil cup assembly is detachably inserted into the insertion slot, and the electrode assembly is inserted on the end cover assembly to communicate with the heating assembly.
  • the first sealing member is inserted into the oiling hole opened in the end cover to seal the oiling hole, and the oiling hole is connected to the oil storage tank Passing so that when the smoke oil is added to the atomizer, the smoke oil flows into the oil storage tank through the oil filler hole.
  • the heating assembly is placed within the receiving cavity at an angle of 0[deg.] to the end cap assembly.
  • the heating assembly is placed within the receiving cavity at an angle of less than 90[deg.] with the end cap assembly.
  • the oil storage member includes an oil guiding member and an oil passing member, and the oil guiding member is inserted into the oil storage tank to conduct the oil of the oil storage tank to the oil a component that is in opposition to the heating component such that the heating component atomizes the soot in the oil reservoir.
  • an end of the end cover adjacent to the oil cup is fixedly provided with an oil inlet passage, a first groove, and a second groove disposed along an inner wall of the end cover, the first groove and the first groove
  • the oil inlet passage is oppositely disposed, the oil inlet passage is in communication with the oil storage tank, and the oil passing member is placed in the first groove to abut against the heating assembly, and the oil guiding member is placed
  • the tobacco oil of the oil storage tank is introduced into the oil passage member, and the second groove is used for placing an elastic member to make the oil cup assembly and the end cap assembly When combined, they abut each other with the oil cup assembly.
  • the receiving chamber is provided with a limit groove near the smoke outlet
  • the gas blocking component comprises a first latching protrusion, a second latching protrusion and a bow
  • the first card position a protrusion is inserted in the limiting groove
  • the second latching protrusion and the air guiding member abut each other
  • the bow is opposite to the position of the air inlet hole to a vent hole communicating with the air guiding opening of the air guiding member to pass outside air through the air inlet hole, flowing into the atomizing chamber through the bow member
  • the gas blocking member and the gas blocking member The oil blocking member cooperates to block the air inlet passage from the air outlet passage
  • the oil blocking member is a U-shaped groove
  • the U-row groove is provided with at least two resisting members.
  • One end of the oil repellent member abuts a portion of the accommodating chamber adjacent to the smoke outlet, the at least two resisting members and the chamber wall of the accommodating chamber are mutually abutted, and the oil damper member is further One end and an elastic member disposed on the end cover abut each other to block the air outlet passage from the oil inlet passage.
  • one end of the elastic member abuts on the oil cup assembly, and abuts one end of the accommodating chamber away from the smoke outlet, and the other end of the elastic member is placed on the second The groove and the inner wall of the second groove abut against each other to prevent the end cap from sealing with the oil cup assembly.
  • the electrode assembly includes a first electrode and a second electrode inserted at an end of the end cover away from the smoke outlet, and a first elastic fixing sleeve and a sleeve sleeved outside the first electrode a second elastic fixing sleeve disposed outside the second electrode;
  • One end of the heating wire is electrically connected to the first electrode, and the other end of the heating wire is electrically connected to the second electrode.
  • the heating assembly comprises a hollow ceramic member and a spiral heating wire, the heating wire being transverse to the ceramic member, such that the airflow accommodating the cavity, The smoke formed by the heating wire heating the smoke oil moves to the outlet passage via the spiral heat-generating ribbon, and further flows into the smoke outlet.
  • the oil cup is provided with a light-transmitting area for observing the remaining amount of the smoke oil in the oil storage tank.
  • the atomizer further includes a second sealing member and a third sealing member, the second sealing of the smoke outlet is hollow, when the atomizer needs to be sealed, a second sealing member is placed at the smoke outlet, and a force to the smoke outlet is applied to the second sealing member to place the second sealing member at the smoke outlet to cause the second seal
  • the component seals the smoke outlet, places the third sealing member at the intake hole, and applies a force to the third sealing member toward the intake hole to cause the third sealing member
  • the intake port is sealed.
  • the present invention provides an atomizer comprising: by the above, the heating assembly of the atomizer provided by the present invention is placed in the accommodating cavity, and the smoke oil can be prevented compared to the conventional vertical structure. Leakage can also prevent the splash of smoke caused by overheating of the smoke oil during the heating process of the smoke oil, thereby improving the user experience.
  • FIG. 1 is a schematic view showing an explosive connection structure of an atomizer provided by the present invention
  • FIG. 2 is a schematic structural view of a gas guiding member provided by the present invention.
  • FIG. 3 is another schematic structural view of a gas guiding component provided by the present invention.
  • FIG. 4 is a schematic view showing another explosive structure of the atomizer provided by the present invention.
  • Figure 5 is a schematic exploded view of the oil cup assembly provided by the present invention.
  • FIG. 6 is a schematic cross-sectional structural view of an atomizer provided by the present invention.
  • Figure 7 is a schematic exploded view of the end cap assembly provided by the present invention.
  • Figure 8 is a schematic structural view of an oil storage member provided by the present invention.
  • 9a is a schematic cross-sectional structural view of another atomizer according to the present invention.
  • 9b is a schematic cross-sectional structural view of another atomizer according to the present invention.
  • FIG. 10 is a schematic cross-sectional structural view of another atomizer according to the present invention.
  • Figure 11 is a schematic exploded view of a heating assembly provided by the present invention.
  • FIG. 12 is a schematic structural view of a sealed state of an atomizer according to the present invention.
  • Figure 13 is a schematic view showing the explosion structure of the atomizer in an unsealed state according to the present invention.
  • Embodiment 1 The specific structure of the atomizer provided in this embodiment is described in detail below with reference to the accompanying drawings;
  • the atomizer provided in this embodiment is combined with a battery assembly to form an electronic cigarette, and the battery assembly is used to supply power to the atomizer to enable the atomizer to atomize the smoke oil.
  • the battery assembly is used to supply power to the atomizer to enable the atomizer to atomize the smoke oil.
  • FIG. 1 is a schematic diagram of an explosive connection structure of the atomizer provided by the present invention
  • FIG. 2 is a guide provided by the present invention.
  • the atomizer includes an atomizer body 100, and the atomizer body is provided with a smoke outlet 100-A for removing smoke for the user to smoke;
  • the atomizer further includes: an oil storage member 200, a heating assembly 300, and a gas guiding member 400;
  • a first opening 401 and a second opening 402 are disposed along a lateral direction of the air guiding member 400, and the first opening 401 and the second opening 402 are oppositely positioned, the first opening 401 and the second opening A receiving cavity 403 is formed between the openings 402 for accommodating the heating
  • the assembly 300 is disposed at a position opposite to the oil reservoir 200 such that the oil stored in the oil reservoir 200 flows to the heating assembly 300, the receiving cavity
  • the side wall of the 403 is provided with an air guiding opening 404 for circulating airflow to the receiving cavity 403 via the air guiding opening 404, and the heating assembly 300 is used for atomizing the oil of the oil storage member 200 to form
  • the smoke is circulated to the smoke outlet 100-A via the outlet passage 500 through the second opening 402 by the airflow flowing into the accommodating cavity 403 via the air guiding opening 404.
  • the heating component is placed inside the accommodating cavity of the air guiding component, and the heating component and the oil absorbing component abut each other to atomize the oil in the oil storage component, thereby forming smoke, and passing the smoke to the air guiding body.
  • the opening flows into the accommodating cavity and flows through the second opening of the air guiding member through the air outlet passage to the smoke outlet. Since the heating assembly is placed inside the accommodating cavity of the air guiding member, and the oil storage member is disposed at the lower portion of the heating assembly, And the heating component is mutually resisted, and the air guiding component can completely cover the heating component, and can prevent the smoke component of the oil storage component from splashing due to the excessive temperature when the heating component heats the oil stored in the oil storage component.
  • FIG. 2 is only a schematic structural view of the air guiding component, and may be other structures.
  • FIG. 3 is another structure of the air guiding component provided by the present invention.
  • FIG. 4 is a schematic view showing another explosive structure of the atomizer provided by the present invention.
  • the atomizer shown in FIG. 4 is an atomizer combined with the gas guiding member shown in FIG. 3, as shown in FIG.
  • the structure of the air guiding member and the manner of connection with other components in the atomizer are described in detail above and will not be described herein.
  • the atomizer may further include an air bearing seat (not shown) that cooperates with the air guiding component, and the air guiding device.
  • the seat may include an annular through hole in which the heat generating component is placed, and a protrusion provided on the annular through hole, the protrusion being used when the air guiding seat is inserted into the air guiding member, The chamber walls of the air guiding member accommodating the cavities abut against each other to fix the heat generating component.
  • the atomizer body 100 is further provided with an air inlet passage 600, and the air inlet passage communicates with the receiving cavity 403 and the smoke outlet 100-A, and is used for introducing outside air into the accommodation.
  • the air inlet passage 600 communicates with the receiving cavity 403 and the smoke outlet 100-A, and is used for introducing outside air into the accommodation.
  • the atomizer body 100 includes an oil cup assembly 101 and an end cap assembly 102.
  • FIG. 6 is a schematic cross-sectional structural view of an atomizer according to the present invention
  • FIG. 7 is a schematic exploded view of the end cap assembly provided by the present invention
  • An end of the end cap assembly 102 adjacent to the oil cup assembly 101 is provided with a insertion slot 1021-A (not shown), and the oil cup assembly 101 is disposed at an end away from the smoke outlet 100-A.
  • the protrusions 1011-C are used to cooperate with the insertion slots 1021-A, so that the oil cup assembly 101 is detachably coupled to the end cap assembly 102.
  • end cap assembly 102 and the oil cup assembly 101 can also be connected together in other detachable manners, such as a threaded connection, and are not specifically limited.
  • the oil cup assembly 101 includes an oil cup 1011, a gas blocking member 1012, and an oil blocking member 1013, wherein the oil cup 1011 is provided with a housing chamber 1011-A, an oil storage chamber 1011-B, and an air inlet hole 100-B.
  • the gas blocking member 1012 and the oil blocking member 1013 are oppositely disposed in the accommodating chamber 1011-A to space the air inlet passage 600 from the air outlet passage 500, and the air inlet hole 100-B
  • a sidewall disposed in the accommodating chamber 1011-A is disposed in communication with the intake passage 600 to allow outside air to enter the intake passage 600 through the intake hole 100-B.
  • a limit groove 1011-D is disposed near the smoke outlet 100-A of the accommodation chamber 1011-A, and the gas barrier member 1012 includes a card position protrusion 1012-A, a second card position protrusion 1012-B, and a bow member 1012-C, the first card position protrusion 1012-A being inserted in the limiting groove 1011-D,
  • the second latching protrusion 1012-B and the air guiding component 400 are mutually abutted, and the bowing member 1012-C is opposite to the position of the air inlet hole 1011-C to pass the air inlet hole 100.
  • the oil-repellent member 1013 is a U-shaped groove, and the U-shaped groove is provided with at least two resisting members 1013-A, and one end of the oil-repellent member 1013 is close to the smoke from the accommodating chamber 1011.
  • One end of the outlet 100-A is abutted, and the at least two resisting members 1013-A and the cavity wall of the accommodating chamber 1011 are mutually abutted, and the U-shaped groove and the gas-blocking member 1012 abut each other.
  • the gas barrier The member 1012 cooperates with the oil blocking member 1013 to block the air inlet passage 600 from the air outlet passage 500.
  • the other end of the oil blocking member 1013 is disposed at the end cover assembly 102.
  • the elastic members abut each other to block the air outlet passage 600 from the oil inlet passage 700, and prevent the oil in the oil inlet passage 700 from flowing into the air outlet passage 600.
  • the end cap assembly 102 includes an end cap 1021, an electrode sleeve 1022, and a first sealing component 1023.
  • the electrode kit 1022 is inserted into the end cap assembly 1021 to communicate with the heating assembly 300.
  • the first sealing member is inserted into the oil filling hole 1021-B of the end cover 1021 to seal the oil filling hole 1021-B, and the oiling hole 1021 is sealed.
  • -B is in communication with the oil storage tank 1011-B such that when the smoke oil is added to the atomizer, the smoke oil flows into the oil storage tank 1011 through the oiling hole 1021-B -B.
  • the end of the end cap 1021 adjacent to the oil cup 1011 is fixedly provided with an oil inlet passage 1021-C, a first groove 1021-D, and a second groove 1021-E disposed along an inner wall of the end cover 1021.
  • the first groove 1021-D is disposed opposite to the oil inlet passage 1021-C, the oil inlet passage 1021-C is in communication with the oil storage tank 1011-B, and the oil passing component 202 is placed on
  • the first groove 1021-D is in abutment with the heating assembly 300, and the oil guiding member 201 is placed in the oil inlet passage 1021-C to smoke the oil storage tank 1011-B.
  • Oil is introduced into the oil reservoir 200, and the second groove 1021-E is used to place the elastic member 700 such that when the oil cup assembly 101 is combined with the end cap assembly 102, the end cap The assembly 102 and the oil cup assembly 101 abut each other.
  • one end of the elastic member 700 abuts against the oil cup assembly 101, and abuts one end of the accommodating chamber 403 away from the smoke outlet 100-A, and the other end of the elastic member 700 is placed.
  • the inner wall of the second groove 1021-D and the second groove 1021-D are abutted against each other to prevent the end cap 1021 from sealing with the oil cup assembly 101.
  • FIG. 8 is a schematic structural view of the oil storage member shown in FIG. ;
  • the oil storage member 200 includes an oil guiding member 201 and an oil passing member 202, and the oil guiding member 201 is inserted into the oil storage chamber 1011-A to make the oil storage chamber 1011-A internal.
  • the smoky oil is conducted to the oil passing component 202, and the oil passing component 202 is abutted against the heating component 300, so that the heating component 300 atomizes the smoky oil in the oil sump 200, To form smoke.
  • the atomizer body 100 may further be provided with an intake passage 600, and the lower passage is The airflow in the intake passage and the atomizer is illustrated in Figures 9a and 9b:
  • FIG. 9a is a schematic cross-sectional structural view of another atomizer according to the present invention
  • FIG. 9b is another schematic cross-sectional structural view of the atomizer provided by the present invention
  • the intake passage 600 communicates with the accommodating cavity 403 and the smoke outlet 100-A, and is configured to introduce outside air into the accommodating cavity 403 to drive the heating assembly 300 to atomize the reservoir.
  • the smoke oil stored in the oil member 200 forms a smoke flow to the smoke outlet 100-A.
  • the heating assembly atomizes the smoke oil stored in the oil storage member to form smoke, passes through the heating assembly, and flows into the gas guiding member under the driving of the airflow entering the interior of the receiving cavity.
  • the first opening which in turn flows into the outlet passage, eventually flows into the smoke outlet so that the user can smoke.
  • the heating assembly 300 is transversely disposed in the receiving cavity 403, that is, the heating assembly 300 is placed at an angle of 0° with the end cap assembly 102.
  • the heating assembly 300 can also be placed in the receiving cavity 403 at other angles as long as the heating assembly 300 is placed at an angle of less than 90° to the end cap assembly 102.
  • the housing cavity 403 can be accommodated, and is not limited in specific terms.
  • the heating assembly 300 When the heating assembly 300 is placed in the receiving cavity 403 at an angle of less than 90° with the end cap assembly 102, the heating assembly 300 abuts the oil reservoir 200, the heating The assembly 300 atomizes the smoke oil stored in the oil storage member 200 to form a smoke, and the structure can prevent the smoke oil in the oil storage member 200 from being splashed by the smoke oil when the high temperature is broken, thereby improving the user experience.
  • FIG. 10 is a schematic cross-sectional structural view of the atomizer provided by the present invention
  • FIG. 11 is a schematic exploded view of the heating assembly of FIG.
  • the heating assembly 300 includes a hollow ceramic member 1031 and a spiral heating wire 1032.
  • the heating wire 1032 is disposed in the ceramic member 1031 so that the airflow of the receiving cavity 403 is The smoke formed by heating the heating wire 1032 to the smoky oil is carried to the outlet passage via a passage in the ceramic member 1031, thereby flowing into the smog outlet.
  • the electrode assembly 1022 includes a plugged in the end cover 1021 away from the smoke outlet a first electrode 1022-A and a second electrode 1022-C at one end, and a first elastic fixing sleeve 1022-B sleeved on the outside of the first electrode 1022-A and sleeved on the second electrode 1022-C External second elastic fixing sleeve 1022-D;
  • One end of the heating wire 1032 is electrically connected to the first electrode 1022-A, and the other end of the heating wire 1032 is electrically connected to the second electrode 1022-B.
  • the oil cup may further be provided with a light-transmitting area for observing the remaining amount of the smoke oil in the oil storage tank, and the smoke oil inside the oil storage tank may be reduced to a certain degree in time.
  • the smoke oil is added to prevent the oil of the oil storage bin from being used without the user's knowledge, so that the heating component cannot atomize the smoke oil and cause damage.
  • FIG. 12 is a schematic structural view of a sealed state of an atomizer according to the present invention
  • FIG. 13 is a schematic exploded view of an atomizer in an unsealed state according to the present invention
  • the atomizer further includes two sealing members, namely: a second sealing member 800 and a third sealing member 900, and the second sealing member 800 and the hollow portion of the smoke outlet 100-A Cooperating to seal the smoke outlet 100-A, the third sealing member 900 mates with the inlet aperture 100-B to seal the inlet aperture 100-B.
  • the second sealing member 800 When it is desired to seal the atomizer, the second sealing member 800 is placed at the smoke outlet 100-A, and the force to the smoke outlet 100-A is applied to the second sealing member 800 to Pushing the second sealing member 800 into the smoke outlet 100-A such that the second sealing member 800 seals the smoke outlet 100-A, and the third sealing member 900 is placed in the At the intake hole 100-B, a force in the direction of the intake hole 100-B is applied to the third sealing member 900, so that the third sealing member 900 seals the intake hole 100-B,
  • the smoke outlet and the intake hole may be sealed by the second sealing member and the third sealing member to prevent dust from entering the atomizer.
  • the structures of the second sealing member and the third sealing member are not limited as long as the second sealing member can seal the smoke outlet and the third sealing member
  • the air inlet hole can be sealed, and is not limited.

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  • Disinfection, Sterilisation Or Deodorisation Of Air (AREA)

Abstract

一种雾化器,包括雾化器本体(100),雾化器本体上设置有供烟雾排出以供用户吸食的烟雾出口(100-A),雾化器本体内设置有用于存储烟油的储油件(200)、加热组件(300)以及导气部件(400),沿导气部件横向方向设置有第一开口(401)和第二开口(402),第一开口和第二开口位置相对,第一开口和第二开口之间形成为容纳凹腔(403),容纳凹腔用于容纳设置加热组件,容纳凹腔的腔口与储油件位置相对设置,以使储油件所存储的烟油流通至加热组件上,容纳凹腔的侧壁设置有导气开口(404),以使气流经由导气开口流通至容纳凹腔,加热组件用于雾化烟油以形成烟雾,且烟雾在气流的带动下通过第二开口经由出气通道(500)流通至烟雾出口。由于加热组件放置于容纳凹腔内,相对于传统的立式结构,可以防止烟油漏出,还可以防止在烟油加热过程中由于烟油过热而引起的烟油飞溅,提高用户体验。

Description

一种雾化器 技术领域
本发明涉及电子烟领域,尤其涉及的是一种防止炸油时烟油飞溅的雾化器。
背景技术
现有技术中的电子烟用于雾化烟雾的雾化器包含有雾化组件,雾化组件内部设置有电热丝以及用于存储烟油的储油装置,且所述电热丝与所述储油装置相连接,以使所述电热丝能够将所述储油装置内的烟油进行雾化,以生成可供用户吸食的烟雾,并将所述烟雾通过烟雾通道导入到吸嘴处,以供用户吸食。
但是,现有技术的缺陷在于,传统电子烟雾化器大都采用立式发热丝结构,烟油和冷凝液容易顺着进气孔漏出,且使用时一旦发生炸油现象容易直接把油炸进嘴里,影响用户体验。
发明内容
本发明提供了一种防止炸油时烟油飞溅的雾化器。
一种雾化器,包括雾化器本体,所述雾化器本体上设置有供烟雾排出以供用户吸食的烟雾出口,其特征在于,所述雾化器本体内设置有用于存储烟油的储油件、加热组件以及导气部件,沿所述导气部件横向方向设置有第一开口和第二开口,所述第一开口和所述第二开口位置相对,所述第一开口和所述第二开口之间形成为容纳凹腔,所述容纳凹腔用于容纳设置所述加热组件,所述容纳凹腔的腔口与所述储油件位置相对设置,以使所述储油件所存储的烟油流通至所述加热组件上,所述容纳凹腔的侧壁设置有导气开口,以使气流经由所述导气开口流通至所述容纳凹腔,所述加热组件用于雾化烟油以形成烟雾,且所述烟雾在所述气流的带动下通过所述第二开口经由出气通道流通至所述烟雾出口。
可选地,所述雾化器本体内还设置有进气通道,所述进气通道与所述容纳凹腔以及所述烟雾出口相连通,并用于将外部空气导入所述容纳凹腔内。
可选地,所述雾化器本体包括油杯组件以及端盖组件,所述油杯组件包括油杯、阻气部件以及阻油部件,所述油杯设置有容纳腔室、储油仓以及进气孔, 所述阻气部件以及所述阻油部件相对设置于所述容纳腔室内,以将所述进气通道与所述出气通道间隔开,所述进气孔设置于所述容纳腔室的侧壁上,并与所述进气通道相连通,以将外部空气导通至所述进气通道,所述端盖组件包括端盖、电极套件以及第一密封部件,所述端盖靠近所述油杯组件的一端设置有插接槽,所述油杯组件可拆卸的插设在所述插接槽内,所述电极套件插设在所述端盖组件上,与所述加热组件相连通,以导通所述电池与所述加热组件,所述第一密封部件插设在所述端盖开设的加油孔中,以将所述加油孔密封,所述加油孔与所述储油仓相连通,以使在将所述烟油加入所述雾化器时,将所述烟油通过所述加油孔流入所述储油仓中。
可选地,所述加热组件以与所述端盖组件的角度为0°的角度放置于所述容纳凹腔内。
可选地,所述加热组件以与所述端盖组件的角度小于90°的角度放置于所述容纳凹腔内。
可选地,所述储油件包括导油部件以及过油部件,所述导油部件插设在所述储油仓内,以使所述储油仓的烟油导通至所述过油部件,所述过油部件与所述加热组件相抵持,以使所述加热组件将所述储油件中的烟油进行雾化。
可选地,所述端盖靠近所述油杯的一端固定设置有进油通道、第一凹槽以及沿所述端盖的内壁设置的第二凹槽,所述第一凹槽与所述进油通道相对设置,所述进油通道与所述储油仓相连通,所述过油部件放置于所述第一凹槽内,以与所述加热组件相抵持,所述导油部件放置于所述进油通道,以将所述储油仓的烟油导入所述过油部件中,所述第二凹槽用于放置弹性件,以使所述油杯组件与所述端盖组件组合在一起时,与所述油杯组件相互抵持。
可选地,所述容纳腔室靠近所述烟雾出口处设置有限位凹槽,所述阻气部件包括第一卡位凸起、第二卡位凸起以及弓形件,所述第一卡位凸起插设在所述限位凹槽内,所述第二卡位凸起与所述导气部件相互抵持,所述弓形件与所述进气孔的位置相对,以将所述进气孔与所述导气部件的所述导气开口相连通,以将外部空气通过所述进气孔,经过所述弓形件流入所述雾化腔内,且所述阻气部件与所述阻油部件相配合,以将所述进气通道与所述出气通道阻隔开,所述阻油部件为U型凹槽,所述U行凹槽内设置有至少两个抵持件,所 述阻油部件的一端与所述容纳腔室靠近所述烟雾出口的一段相抵持,所述至少两个抵持件与所述容纳腔室的腔壁相互抵持,所述阻油部件的另一端与盖设在所述端盖的弹性件相互抵持,以将所述出气通道与所述进油通道阻隔开。
可选地,所述弹性件的一端抵持在所述油杯组件上,与所述容纳腔室的远离所述烟雾出口的一端相抵持,所述弹性件的另一端放置于所述第二凹槽内,且与所述第二凹槽的内壁相互抵持,以阻止所述端盖与所述油杯组件密封。
可选地,所述电极套件包括插设在所述端盖远离所述烟雾出口的一端的第一电极以及第二电极,以及套设在所述第一电极外部的第一弹性固定套和套设在所述第二电极外部的第二弹性固定套;
所述发热丝的一端与所述第一电极电连接,所述发热丝的另一端与所述第二电极电连接。
可选地,其特征在于,所述加热组件包括中空的陶瓷件以及螺旋状的发热丝,所述发热丝横置于所述陶瓷件内,以使所述容纳凹腔的气流,将所述发热丝加热所述烟油形成的烟雾经由所述螺旋状的发热丝带动至所述出气通道,进而流入所述烟雾出口。
可选地,其特征在于,所述油杯上设置有用于观察所述储油仓内烟油余量的透光区域。
可选地,其特征在于,所述雾化器还包括第二密封部件以及第三密封部件,所述第二密封所述烟雾出口中空设置,当需要密封所述雾化器时,将所述第二密封部件放置于所述烟雾出口处,向所述第二密封部件施加向所述烟雾出口的力,以将所述第二密封部件放置于所述烟雾出口,以使所述第二密封部件将所述烟雾出口密封,将所述第三密封部件放置于所述进气孔处,向所述第三密封部件施加向所述进气孔方向的力,以使所述第三密封部件将所述进气孔密封。
本发明提供了一种雾化器,其包括;通过以上可知本发明所提供的雾化器的所述加热组件放置于所述容纳凹腔内,相对于传统的立式结构,可以防止烟油漏出,还可以防止在烟油加热过程中由于烟油过热而引起的烟油飞溅,提高用户体验。
附图说明
图1为本发明所提供的雾化器的一种爆炸连接结构示意图;
图2为本发明所提供的导气部件的一种结构示意图;
图3为本发明所提供的导气部件的另一种结构示意图;
图4为本发明所提供的雾化器的另一种爆炸结构示意图;
图5为本发明所提供的油杯组件的爆炸结构示意图;
图6为本发明所提供的雾化器的一种剖面结构示意图;
图7为本发明所提供的端盖组件的爆炸结构示意图;
图8为本发明所提供的储油件的结构示意图;
图9a为本发明所提供的雾化器的另一种剖面结构示意图;
图9b为本发明所提供的雾化器的另一种剖面结构示意图;
图10为本发明所提供的雾化器的另一种剖面结构示意图;
图11为本发明所提供的加热组件的一种爆炸结构示意图;
图12为本发明所提供的雾化器密封状态的结构示意图;
图13为本发明所提供的雾化器未密封状态的爆炸结构示意图。
具体实施方式
实施例一:以下结合附图对本实施例所提供的雾化器的具体结构进行详细说明;
需明确的是,本实施例所提供的雾化器与电池组件组合以形成电子烟,且所述电池组件用于为所述雾化器供电,以使所述雾化器能够雾化烟油以形成烟雾;
以图1和图2所示对所述雾化器的结构进行详细说明,其中,图1为本发明所提供的雾化器的一种爆炸连接结构示意图,图2为本发明所提供的导气部件的一种结构示意图;
所述雾化器,包括雾化器本体100,所述雾化器本体上设置有供烟雾排除以供用户吸食的烟雾出口100-A;
所述雾化器还包括:储油件200、加热组件300以及导气部件400;
其中,沿所述导气部件400横向方向设置有第一开口401和第二开口402,所述第一开口401和所述第二开口402位置相对,所述第一开口401和所述第二开口402之间形成容纳凹腔403,所述容纳凹腔403用于容纳设置所述加热 组件300,所述容纳凹腔403的腔口与所述储油件200位置相对设置,以使所述储油件200所存储的烟油流通至所述加热组件300上,所述容纳凹腔403的侧壁设置有导气开口404,以使气流经由所述导气开口404流通至所述容纳凹腔403,所述加热组件300用于雾化所述储油件200的烟油以形成烟雾,且所述烟雾在经由所述导气开口404流入所述容纳凹腔403的气流的带动下通过所述第二开口402经由出气通道500流通至所述烟雾出口100-A。
本实施例中,加热组件放置于导气部件的容纳凹腔内部,加热组件与储油件相互抵持,将储油件中的烟油进行雾化,进而形成烟雾,将烟雾经由到导气开口流入容纳凹腔的气流的带动下经过导气部件的第二开口经过出气通道流通至烟雾出口,由于加热组件放置于导气部件的容纳凹腔内部,且储油件设置于加热组件下部,且与加热组件相互抵持,导气部件可以将加热组件全部覆盖,可以防止加热组件在加热储油件中存储的烟油时,由于温度过高而导致储油件里面的烟油飞溅。
需要说明的是,上述图2仅为导气部件的一种结构示意图,还可以是其他的结构,请参阅图3以及图4,图3为本发明所提供的导气部件的另一种结构示意图,图4为本发明所提供的雾化器的另一种爆炸结构示意图,图4所示的雾化器为与图3所示的导气部件相结合的雾化器,图3所示的导气部件的结构以及与所述雾化器中其他部件的连接方式在上述已进行详细说明,此处不再赘述。
需要说明的是,在使用如图2所示的导气部件时,所述雾化器还可以包括与所述导气部件相配合的导气座(图中未示出),所述导气座可以包括放置所述发热组件的环状通孔,以及设置在所述环状通孔上的凸起,所述凸起用于在所述导气座插入所述导气部件时,与所述导气部件的容纳凹腔的腔壁相互抵持,以固定所述发热组件。
其中,所述雾化器本体100内部还设置有进气通道600,所述进气通道与所述容纳凹腔403以及所述烟雾出口100-A相连通,并用于将外部空气导入所述容纳凹腔403内。
本实施例中,所述雾化器本体100包括油杯组件101以及端盖组件102。
为了便于理解,下面请结合参阅图1、图5、图6以及图7,图5为本发 明实施例所提供的油杯组件的爆炸结构示意图,图6为本发明所提供的雾化器的一种剖面结构示意图,图7为本发明所提供的端盖组件的爆炸结构示意图;
所述端盖组件102靠近所述油杯组件101的一端设置有插接槽1021-A(图中未示出),所述油杯组件101远离所述烟雾出口100-A的一端设置有插接凸起1011-C,所述插接凸起1011-C用于与所述插接槽1021-A相配合,以是所述油杯组件101与所述端盖组件102可拆卸连接。向所述油杯组件101施加向所述端盖组件102方向的力,以将所述油杯101与所端盖组件102插接在一起,当需要将所述雾化器拆开时,可以向所述油杯组件101施加远离所述端盖组件102的方向的力,以将所述油杯组件101与所述端盖组件102分开,方便所述雾化器的拆装,以方便当所述雾化器内部有零件损坏时,进行更换或者维修。
需要说明的是,所述端盖组件102与所述油杯组件101还可以以其他可拆卸的方式连接在一起,例如螺纹连接,具体不做限定。
所述油杯组件101包括油杯1011、阻气部件1012以及阻油部件1013,其中,所述油杯1011设置有容纳腔室1011-A、储油仓1011-B以及进气孔100-B,所述阻气部件1012以及所述阻油部件1013相对设置于所述容纳腔室1011-A内,以将所述进气通道600与出气通道500间隔开,所述进气孔100-B设置于所述容纳腔室1011-A内的侧壁上,并与所述进气通道600相连通,以将外部空气经过所述进气孔100-B进入所述进气通道600。
为了将所述进气通道与所述出气通道隔开,在所述容纳腔室1011-A靠近所述烟雾出口100-A处设置有限位凹槽1011-D,所述阻气部件1012包括第一卡位凸起1012-A、第二卡位凸起1012-B以及弓形件1012-C,所述第一卡位凸起1012-A插设在所述限位凹槽1011-D内,所述第二卡位凸起1012-B与所述导气部件400相互抵持,所述弓形件1012-C与所述进气孔1011-C的位置相对,以将所述进气孔100-B与所述导气部件400的所述导气开口404相连通,以将外部空气通过所述进气孔100-B,经过所述弓形件1012-C流入所述容纳凹腔403内,所述阻油部件1013为U型凹槽,所述U型凹槽内设置有至少两个抵持件1013-A,所述阻油部件1013的一端与所述容纳腔室1011靠近所述烟雾出口100-A的一端相抵持,所述至少两个抵持件1013-A与所述容纳腔室1011的腔壁相互抵持,所述U型凹槽与所述阻气部件1012相互抵持,所述阻气部 件1012与所述阻油部件1013相配合,以将所述进气通道600与所述出气通500道阻隔开,所述阻油部件1013的另一端与盖设在所述端盖组件102的弹性件相互抵持,以将所述出气通道600与所述进油通道700阻隔开,防止所述进油通道700中的烟油流入所述出气通道600中。
其中,所述端盖组件102包括端盖1021、电极套件1022以及第一密封部件1023,所述电极套件1022插设在所述端盖组件1021上,与所述加热组件300相连通,以导通所述电池与所述加热组件300,所述第一密封部件插设在所述端盖1021开设的加油孔1021-B中,以将所述加油孔1021-B密封,所述加油孔1021-B与所述储油仓1011-B相连通,以使在将所述烟油加入所述雾化器时,将所述烟油通过所述加油孔1021-B流入所述储油仓1011-B中。
其中,所述端盖1021靠近所述油杯1011的一端固定设置有进油通道1021-C、第一凹槽1021-D以及沿所述端盖1021的内壁设置的第二凹槽1021-E,所述第一凹槽1021-D与所述进油通道1021-C相对设置,所述进油通道1021-C与所述储油仓1011-B相连通,所述过油部件202放置于所述第一凹槽1021-D内,以与所述加热组件300相抵持,所述导油部件201放置于所述进油通道1021-C,以将所述储油仓1011-B的烟油导入所述储油件200中,所述第二凹槽1021-E用于放置弹性件700,以使所述油杯组件101与所述端盖组件102组合在一起时,所述端盖组件102与所述油杯组件101相互抵持。
其中,所述弹性件700的一端抵持在所述油杯组件101上,与所述容纳腔室403的远离所述烟雾出口100-A的一端相抵持,所述弹性件700的另一端放置于所述第二凹槽1021-D内,且与所述第二凹槽1021-D的内壁相互抵持,以阻止所述端盖1021与所述油杯组件101密封。
本实施例中,所述储油件的结构可以有多种形式,下面结合图6以及图8对所述储油件的结构进行说明,图8为图6中所示储油件的结构示意图;
优选地,所述储油件200包括导油部件201以及过油部件202,所述导油部件201插设在所述储油仓1011-A内,以使所述储油仓1011-A内部的烟油导通至所述过油部件202,所述过油部件202与所述加热组件300相抵持,以使所述加热组件300将所述储油件200中的烟油进行雾化,以形成烟雾。
本实施例中,所述雾化器本体100内还可以设置有进气通道600,下面通 过图9a以及图9b对所述进气通道以及所述雾化器中的气流流通进行说明:
请结合参阅图9a和图9b,图9a为本发明所提供的雾化器的另一种剖面结构示意图,图9b为本发明所提供的雾化器的另一种剖面结构示意图;
所述进气通道600与所述容纳凹腔403以及所述烟雾出口100-A相连通,并用于将外部空气导入所述容纳凹腔403内,以带动所述加热组件300雾化所述储油件200储存的烟油形成烟雾流通至所述烟雾出口100-A。
其中,请参阅图9a和图9b中的箭头指示,外部空气通过经由所述进气孔100-B进入所述进气通道600,通过所述导气部件的导气卡扣进入导气部件的容纳凹腔内部,加热组件将储油件内存储的烟油进行雾化,以形成烟雾,在进入容纳凹腔内部的气流的带动下,通过所述加热组件,并流入所述导气部件的第一开口,进而流入出气通道,最终流入烟雾出口,以使用户可以吸食到烟雾。
请参阅图9b,本实施例中,所述加热组件300横置在所述容纳凹腔403内,即所述加热组件300以与所述端盖组件102的角度为0°的角度放置于所述容纳凹腔403内,所述加热组件300还可以其他的角度放置于所述容纳凹腔403内,只要所述加热组件300与所述端盖组件102的角度小于90°的角度放置于所述容纳凹腔403内即可,具体不做限定。
当所述加热组件300以与所述端盖组件102的角度小于90°的角度放置于所述容纳凹腔403内时,所述加热组件300与所述储油件200相抵持,所述加热组件300雾化所述储油件200内储存的烟油,以形成烟雾,此种结构可以防止所述储油件200内的烟油由于受到高温炸裂时的烟油飞溅,提高用户体验。
上面对所述雾化器的油杯组件以及端盖组件进行了详细说明,下面结合图7、图10以及图11对所述雾化器中的加热组件以及电极套件进行说明。
请结合参图7、阅图10以及图11,图10为本发明所提供的雾化器的一种剖面结构示意图,图11为图10中的加热组件的爆炸结构示意图;
本实施例中,所述加热组件300包括中空的陶瓷件1031以及螺旋状的发热丝1032,所述发热丝1032横置于所述陶瓷件1031内,以使所述容纳凹腔403的气流,将所述发热丝1032加热所述烟油形成的烟雾经由所述陶瓷件1031中的通道带动至所述出气通道,进而流入所述烟雾出口。
其中,所述电极套件1022包括插设在所述端盖1021远离所述烟雾出口的 一端的第一电极1022-A以及第二电极1022-C,以及套设在所述第一电极1022-A外部的第一弹性固定套1022-B和套设在所述第二电极1022-C外部的第二弹性固定套1022-D;
所述发热丝1032的一端与所述第一电极1022-A电连接,所述发热丝1032的另一端与所述第二电极1022-B电连接。
需要说明的是,所述油杯上还可以设置有用于观察所述储油仓内烟油余量的透光区域,可以在所述储油仓内部的烟油减少至一定程度时,及时的添加烟油,防止储油仓的烟油在用户不知情的情况下使用完,进而使加热组件不能雾化烟油而造成的损伤。
为了使雾化器得到更好的密封效果,下面结合图12以及图13对雾化器的密封结构进行说明。
请结合参阅图12以及图13,图12为本发明所提供的雾化器密封状态的结构示意图,图13为本发明所提供的雾化器未密封状态的爆炸结构示意图;
本实施例中,所述雾化器还包括两个密封部件,分别为:第二密封部件800以及第三密封部件900,所述第二密封部件800与所述烟雾出口100-A的中空部相配合,以将所述烟雾出口100-A密封,所述第三密封部件900与所述进气孔100-B相配合,以将所述进气孔100-B密封。当需要密封所述雾化器时,将所述第二密封部件800放置于所述烟雾出口处100-A,向所述第二密封部件800施加向所述烟雾出口100-A的力,以将所述第二密封部件800推动于所述烟雾出口100-A内,以使所述第二密封部件800将所述烟雾出口100-A密封,将所述第三密封部件900放置于所述进气孔100-B处,向所述第三密封部件900施加向所述进气孔100-B方向的力,以使所述第三密封部件900将所述进气孔100-B密封,这样,在用户不使用所述电子烟的情况,可以通过所述第二密封部件以及第三密封部件将所述烟雾出口以及所述进气孔进行密封,防止灰尘进入所述雾化器。
本实施例中,对所述第二密封部件以及所述第三密封部件的结构不做限定,只要所述第二密封部件能够将所述烟雾出口密封以及所述第三密封部件能够将所述进气孔密封即可,具体不做限定。
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 (13)

  1. 一种雾化器,包括雾化器本体,所述雾化器本体上设置有供烟雾排出以供用户吸食的烟雾出口,其特征在于,所述雾化器本体内设置有用于存储烟油的储油件、加热组件以及导气部件,沿所述导气部件横向方向设置有第一开口和第二开口,所述第一开口和所述第二开口位置相对,所述第一开口和所述第二开口之间形成为容纳凹腔,所述容纳凹腔用于容纳设置所述加热组件,所述容纳凹腔的腔口与所述储油件位置相对设置,以使所述储油件所存储的烟油流通至所述加热组件上,所述容纳凹腔的侧壁设置有导气开口,以使气流经由所述导气开口流通至所述容纳凹腔,所述加热组件用于雾化烟油以形成烟雾,且所述烟雾在所述气流的带动下通过所述第二开口经由出气通道流通至所述烟雾出口。
  2. 根据权利要求1所述的雾化器,其特征在于,所述雾化器本体内还设置有进气通道,所述进气通道与所述容纳凹腔以及所述烟雾出口相连通,并用于将外部空气导入所述容纳凹腔内。
  3. 根据权利要求2所述的雾化器,其特征在于,所述雾化器本体包括油杯组件以及端盖组件,所述油杯组件包括油杯、阻气部件以及阻油部件,所述油杯设置有容纳腔室、储油仓以及进气孔,所述阻气部件以及所述阻油部件相对设置于所述容纳腔室内,以将所述进气通道与所述出气通道间隔开,所述进气孔设置于所述容纳腔室的侧壁上,并与所述进气通道相连通,以将外部空气导通至所述进气通道,所述端盖组件包括端盖、电极套件以及第一密封部件,所述端盖靠近所述油杯组件的一端设置有插接槽,所述油杯组件可拆卸的插设在所述插接槽内,所述电极套件插设在所述端盖组件上,与所述加热组件相连通,以导通所述电池与所述加热组件,所述第一密封部件插设在所述端盖开设的加油孔中,以将所述加油孔密封,所述加油孔与所述储油仓相连通,以使在将所述烟油加入所述雾化器时,将所述烟油通过所述加油孔流入所述储油仓中。
  4. 根据权利要求3所述的雾化器,其特征在于,所述加热组件以与所述端盖组件的角度为0°的角度放置于所述容纳凹腔内。
  5. 根据权利要求3所述的雾化器,其特征在于,所述加热组件以与所述 端盖组件的角度小于90°的角度放置于所述容纳凹腔内。
  6. 根据权利要求3所述的雾化器,其特征在于,所述储油件包括导油部件以及过油部件,所述导油部件插设在所述储油仓内,以使所述储油仓的烟油导通至所述过油部件,所述过油部件与所述加热组件相抵持,以使所述加热组件将所述储油件中的烟油进行雾化。
  7. 根据权利要求6所述的雾化器,其特征在于,所述端盖靠近所述油杯的一端固定设置有进油通道、第一凹槽以及沿所述端盖的内壁设置的第二凹槽,所述第一凹槽与所述进油通道相对设置,所述进油通道与所述储油仓相连通,所述过油部件放置于所述第一凹槽内,以与所述加热组件相抵持,所述导油部件放置于所述进油通道,以将所述储油仓的烟油导入所述过油部件中,所述第二凹槽用于放置弹性件,以使所述油杯组件与所述端盖组件组合在一起时,与所述油杯组件相互抵持。
  8. 根据权利要求3所述的雾化器,其特征在于,所述容纳腔室靠近所述烟雾出口处设置有限位凹槽,所述阻气部件包括第一卡位凸起、第二卡位凸起以及弓形件,所述第一卡位凸起插设在所述限位凹槽内,所述第二卡位凸起与所述导气部件相互抵持,所述弓形件与所述进气孔的位置相对,以将所述进气孔与所述导气部件的所述导气开口相连通,以将外部空气通过所述进气孔,经过所述弓形件流入所述雾化腔内,且所述阻气部件与所述阻油部件相配合,以将所述进气通道与所述出气通道阻隔开,所述阻油部件为U型凹槽,所述U行凹槽内设置有至少两个抵持件,所述阻油部件的一端与所述容纳腔室靠近所述烟雾出口的一段相抵持,所述至少两个抵持件与所述容纳腔室的腔壁相互抵持,所述阻油部件的另一端与盖设在所述端盖的弹性件相互抵持,以将所述出气通道与所述进油通道阻隔开。
  9. 根据权利要求7所述的雾化器,其特征在于,所述弹性件的一端抵持在所述油杯组件上,与所述容纳腔室的远离所述烟雾出口的一端相抵持,所述弹性件的另一端放置于所述第二凹槽内,且与所述第二凹槽的内壁相互抵持,以阻止所述端盖与所述油杯组件密封。
  10. 根据权利要求3所述的雾化器,其特征在于,所述电极套件包括插设在所述端盖远离所述烟雾出口的一端的第一电极以及第二电极,以及套设在所 述第一电极外部的第一弹性固定套和套设在所述第二电极外部的第二弹性固定套;
    所述发热丝的一端与所述第一电极电连接,所述发热丝的另一端与所述第二电极电连接。
  11. 根据权利要求1至9中任一项所述的雾化器,其特征在于,所述加热组件包括中空的陶瓷件以及螺旋状的发热丝,所述发热丝横置于所述陶瓷件内,以使所述容纳凹腔的气流,将所述发热丝加热所述烟油形成的烟雾经由所述螺旋状的发热丝带动至所述出气通道,进而流入所述烟雾出口。
  12. 根据权利要求1至9中任一项所述的雾化器,其特征在于,所述油杯上设置有用于观察所述储油仓内烟油余量的透光区域。
  13. 根据权利要求1至9中任一项所述的雾化器,其特征在于,所述雾化器还包括第二密封部件以及第三密封部件,所述第二密封所述烟雾出口中空设置,当需要密封所述雾化器时,将所述第二密封部件放置于所述烟雾出口处,向所述第二密封部件施加向所述烟雾出口的力,以将所述第二密封部件放置于所述烟雾出口,以使所述第二密封部件将所述烟雾出口密封,将所述第三密封部件放置于所述进气孔处,向所述第三密封部件施加向所述进气孔方向的力,以使所述第三密封部件将所述进气孔密封。
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