WO2015161553A1 - 一种电子烟 - Google Patents

一种电子烟 Download PDF

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Publication number
WO2015161553A1
WO2015161553A1 PCT/CN2014/080186 CN2014080186W WO2015161553A1 WO 2015161553 A1 WO2015161553 A1 WO 2015161553A1 CN 2014080186 W CN2014080186 W CN 2014080186W WO 2015161553 A1 WO2015161553 A1 WO 2015161553A1
Authority
WO
WIPO (PCT)
Prior art keywords
electronic cigarette
tube
smoke
oil
oil storage
Prior art date
Application number
PCT/CN2014/080186
Other languages
English (en)
French (fr)
Inventor
刘秋明
Original Assignee
吉瑞高新科技股份有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 吉瑞高新科技股份有限公司 filed Critical 吉瑞高新科技股份有限公司
Publication of WO2015161553A1 publication Critical patent/WO2015161553A1/zh

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Classifications

    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F40/00Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
    • A24F40/40Constructional details, e.g. connection of cartridges and battery parts
    • 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
    • A24F40/50Control or monitoring

Definitions

  • the utility model relates to the technical field of electronic cigarettes, in particular to an electronic cigarette for preventing smoke condensation. Background technique
  • the electronic cigarette in the prior art includes an atomizing assembly 110 and a battery rod assembly 120 fixedly connected to each other, and the atomizing assembly 110 is far away.
  • One end of the battery rod assembly 120 serves as a smoking end 100 for the user to smoke.
  • the atomization assembly 110 is further provided with an oil storage cotton 112 for storing smoke oil and a heating wire assembly 113 for atomizing the smoke oil to generate smoke, and a smoke passage is formed inside the electronic cigarette. 130, causing the user to suck the smoke that has been atomized by the heating wire assembly 113 through the smoke passage 130.
  • the position of the oil storage cotton 112 is close to the smoking end 100, so that the oil in the oil storage cotton 112 is easily leaked into the smoke passage 130, so that the un-atomized smoke oil is The user smokes.
  • the smoke passage 130 is made of a material such as plastic or metal, so that the smoke passage 130 can absorb the heat of the smoke, and the smoke is easily cooled and condensed into smoke oil after being absorbed by the smoke passage 130, and the smoke oil flows into the airflow direction.
  • the smoking end 100 so that the user can suck the smoke oil through the smoking end 100, greatly reducing the experience during the user's use.
  • the present invention provides an electronic cigarette that prevents condensation of smoke.
  • the electronic cigarette body is provided with a smoking end, an atomizing assembly for atomizing the oil to form a smoke, and a battery rod assembly for supplying power to the atomizing assembly;
  • the atomizing component is disposed at an end of the electronic cigarette body away from the smoking end;
  • the battery rod assembly is internally provided with a smoke passage for conducting with the smoking end;
  • a heat insulating tube is disposed in the smoke passage, and the heat insulating tube is electrically connected to the smoking end, and the partition is The heat pipe is disposed coaxially with the smoke passage.
  • the electronic cigarette wherein the heat insulating tube is a foam tube, a glass fiber tube, a wood pulp fiber tube or a chemical fiber tube.
  • the electronic cigarette wherein the heat insulating tube is sequentially provided with a plurality of inner layer heat insulating tubes; the heat insulating tube is sleeved outside the inner layer heat insulating tube;
  • a plurality of the inner insulating tubes are respectively electrically connected to the smoking end, and a plurality of the inner insulating tubes are respectively disposed coaxially with the smoke passage;
  • the electronic cigarette wherein the heat insulating tube is provided with an inner layer heat insulating tube;
  • the heat insulating tube is sleeved outside the inner layer heat insulating tube;
  • the inner insulation tube is electrically connected to the smoking end, and the inner insulation tube is disposed coaxially with the smoke passage.
  • the electronic cigarette wherein the heat insulating tube is the foam tube, and the inner layer heat insulating tube is the glass fiber tube.
  • a heat insulating material is filled between the heat insulating tube and the smoke passage.
  • the electronic cigarette wherein the heat insulating material comprises: a foam material, a glass fiber material, a wood pulp material and/or a chemical fiber material.
  • the electronic cigarette wherein the electronic cigarette body is further provided with an oil storage bottle for storing the oil to supply oil to the atomizing component, and the oil storage bottle is disposed on the electronic cigarette body away from the One end of the smoking end.
  • the electronic cigarette wherein the atomizing component is located between the battery rod assembly and the oil storage bottle, and the smoking end is disposed at an end of the battery rod assembly away from the atomizing component, and The atomizing assembly, the battery rod assembly, and the oil storage bottle are coaxially disposed.
  • the electronic cigarette wherein an air inlet is disposed in communication with the smoke passage;
  • the air inlet is disposed at a surface of the atomization assembly and corresponding to a heating wire for atomizing the smoke oil;
  • the air inlet is disposed on the abutting surface of the atomizing assembly and the oil storage bottle.
  • the electronic cigarette wherein the atomizing component comprises:
  • An atomizing tube inserted into the oil storage bottle at one end;
  • An atomizer electrode disposed at one end of the atomization tube and electrically connected to the battery rod assembly; a heating wire housed in the atomization tube and electrically connected to the atomizer electrode;
  • An oil guiding member made of an oil absorbing material disposed in the atomizing tube, an outer peripheral surface of the oil guiding member and the electronic cigarette, wherein the atomizing assembly and the oil storage bottle are disposed at a joint
  • the electronic cigarette, wherein the battery rod assembly comprises:
  • the battery Electrically connected to the battery is provided with a battery electrode, and the battery electrode is electrically connected to the atomizer electrode;
  • a sensing module for generating a trigger signal
  • Electrically coupled to the sensing module is provided with a microcontroller for controlling the battery to supply power to the heating wire in accordance with the trigger signal.
  • the electronic cigarette wherein the sensing module is an airflow sensing switch for generating the pulse signal according to a smoking action of a user.
  • the electronic cigarette wherein the battery rod assembly is further provided with a push button switch for controlling the battery to supply power to the electric heating wire.
  • the electronic cigarette wherein the oil storage bottle is a light-transmitting container.
  • the electronic cigarette wherein the oil storage bottle is a glass bottle.
  • the electronic cigarette wherein the battery rod assembly and the atomizing assembly are detachably connected, or/and the atomizing assembly and the bottle opening of the oil storage bottle are detachably connected.
  • the electronic cigarette provided by the present invention includes: an electronic cigarette body, the electronic cigarette body is provided with a smoking end, an atomizing component and a battery rod assembly, and the atomizing component is disposed at an end of the electronic cigarette body away from the smoking end
  • the battery rod assembly is internally provided with a smoke passage for conducting with the smoking end; the smoke passage is provided with a heat insulating tube, and the heat insulating tube is electrically connected to the smoking end, and the partition is
  • the heat pipe is disposed coaxially with the smoke passage.
  • the heat insulating tube provided by the embodiment has poor heat conduction performance, and has good heat insulating performance, thereby reducing the occurrence of condensation of smoke in the smoke passage and reducing the possibility of the user sucking the smoke oil.
  • the amount of smoke that is condensed is greatly reduced, thereby increasing the amount of smoke that the user can smoke. Allowing the user to smoke more smoke; furthermore, since the atomizing assembly is disposed at an end of the electronic cigarette body away from the smoking end, the smoke passage located in the electronic cigarette body does not pass through the oil storage area, thereby The smoke oil is not easily leaked into the smoke passage, so that the user does not easily suck the un-atomized smoke oil, thereby effectively reducing the probability of smoke leakage, and avoiding condensation of smoke in the smoke passage, thereby effectively The condensed smoky oil is prevented from clogging the smoke passage, and the hand can be held or clamped on the battery rod assembly when smoking, so as to better prevent the atomizing assembly from being hot.
  • FIG. 1 is a schematic cross-sectional view showing the structure of an electronic cigarette of the prior art
  • FIG. 2 is a schematic view showing the overall structure of a preferred embodiment of the electronic cigarette provided by the present invention
  • FIG. 3 is a schematic cross-sectional view showing another preferred embodiment of the electronic cigarette provided by the present invention
  • Figure 4 is a cross-sectional view showing the overall structure of another preferred embodiment of the electronic cigarette provided by the present invention.
  • Figure 5 is a cross-sectional view showing the overall structure of another preferred embodiment of the electronic cigarette provided by the present invention.
  • Fig. 6 is a schematic cross-sectional view showing a preferred embodiment of an oil storage bottle for an electronic cigarette according to the present invention.
  • Embodiment 1 The present invention discloses an electronic cigarette.
  • the structure of the electronic cigarette is shown in FIG. 2 .
  • the electronic cigarette includes: The electronic cigarette body is provided with a smoking end 201 through which the user can smoke.
  • the atomizing assembly 202 for atomizing the smoke oil, i.e., atomizing the oil through the atomizing assembly 202 to generate smoke that can be pumped by the user.
  • the electronic cigarette body also includes a battery rod assembly 203 for powering the atomizing assembly 202.
  • a gas passage for venting smoke is formed in the battery rod assembly 203.
  • the specific structure of the smoke passage is shown in FIG. 3.
  • FIG. 3 is a schematic cross-sectional view of the electronic cigarette provided in the embodiment.
  • the battery rod assembly 203 is internally provided with a smoke passage 2031 for circulating smoke so that the user sucks the smoke flowing through the smoke passage 2031 through the smoking end 201.
  • the atomizing component 202 is disposed on one end of the electronic cigarette body away from the smoking end 201.
  • the advantage of using this arrangement is that the atomizing component 202 is provided. Positioned away from the smoking end 201, so that the smoke passage 2031 located in the electronic cigarette body does not pass through the oil storage area (the direction of the airflow inside the electronic cigarette by the atomization of the atomizing component 202 is shown in the direction of the arrow shown in FIG. 3) Therefore, the smoke oil stored in the electronic cigarette is not easily leaked into the smoke passage 2031, thereby making it difficult for the user to suck the un-atomized smoke oil, thereby effectively reducing the probability of smoke leakage, and avoiding smoke. Condensation in the smoke passage 2031, thereby effectively preventing the condensed soot from clogging the smoke passage 2031.
  • the atomizing component 202 is located at one end of the battery rod assembly 203 away from the smoking end 201, and the smoking end 201 is located.
  • One end of the battery rod assembly 203, or the smoking end 201 is located in the middle of the battery rod assembly 203, or the smoking end 201 is located on the battery rod assembly 203 away from the atomizing assembly 202.
  • the smoking end 201 located outside one end of the battery rod assembly 203 can be disposed coaxially with the battery rod assembly 203.
  • the shape of the electronic cigarette can intuitively simulate a real cigarette, and
  • the overall smoke channel 2031 is relatively straight, which can effectively reduce the phenomenon of oil accumulation.
  • the smoking end 201 is disposed in the middle of the battery rod assembly 203, or the smoking end 201 is located on the battery rod assembly 203 away from the atomizing assembly 202.
  • the specific position of the smoking end 201 is not limited. More specifically, a heat insulating tube 2032 is formed in the smoke passage 2031, and the heat insulating tube 2032 is electrically connected to the smoking end 201, and the heat insulating tube 2032 is coaxially disposed with the smoke passage 2031.
  • the heat insulating tube 2032 is disposed between the smoke flowing through the smoke passage 2031 and the smoke passage 2031, and the heat insulating tube 2032 has good heat insulating performance, so that the The smoke passage 2031 absorbs the heat of the smoke to reduce the likelihood of liquefaction of the smoke, thereby reducing the likelihood of the user pumping to the smoke.
  • the use of the insulated pipe 2032 provided in this embodiment greatly reduces the amount of smoke liquefied, thereby increasing the amount of smoke smoked by the user, thereby ensuring the concentration of smoke smoked by the user, thereby improving the concentration of the smoke.
  • the taste of the smoke drawn by the user greatly reduces the amount of smoke liquefied, thereby increasing the amount of smoke smoked by the user, thereby ensuring the concentration of smoke smoked by the user, thereby improving the concentration of the smoke.
  • Embodiment 2 In this embodiment, the specific structure of the heat insulating tube 2032 is described in detail:
  • the heat insulating tube 2032 is arranged in the following manners:
  • the heat insulating tube 2032 is a foam tube, a fiberglass tube, Wood pulp fiber tube or chemical fiber tube.
  • the heat insulating tube 2032 is a fiberglass tube.
  • the glass fiber tube not only has good heat insulating properties, it also has better hygroscopicity, so that the heat insulating tube 2032 can absorb the liquefied smoke oil, further preventing the user from sucking the smoke oil.
  • a heat insulating layer is formed on the inner side surface of the smoke passage 2031, i.e., the surface in direct contact with the smoke to form the heat insulating tube 2032.
  • the heat insulating tube 2032 is plated on the inner surface of the smoke passage 2031 so that the smoke passage is
  • the plastic or metal casing of 2031 does not directly contact the smoke, thereby reducing the possibility of liquefaction of the smoke, and because the plated insulated pipe 2032 is disposed integrally with the smoke passage 2031, the stability of the electronic cigarette is increased, and Smoke oil can be prevented from accumulating in the smoke passage 2031.
  • a plurality of inner heat insulating tubes are sequentially disposed in the heat insulating tubes 2032 shown in the first and second types;
  • the inner insulating tube may be made of a foam tube, a fiberglass tube, a wood pulp fiber tube or a chemical fiber tube.
  • the inner insulating tube is a glass fiber tube. Because the fiberglass tube is not only good The thermal insulation property also has better hygroscopicity, so that the inner insulation tube can absorb the liquefied smoke oil, further preventing the user from sucking the smoke oil.
  • this method further strengthens the heat insulation performance of the heat insulating tube, thereby further reducing the possibility of smoke liquefaction.
  • the heat insulating tube 2032 is sleeved outside the inner layer heat insulating tube;
  • a plurality of the inner insulating tubes are respectively electrically connected to the smoking end 201, and a plurality of the inner insulating tubes are disposed coaxially with the smoke passage 2031;
  • the cross-sectional areas of the plurality of inner heat-insulating tubes which are sequentially disposed inside the heat-insulating tube 2032 are sequentially decreased toward the axis of the heat-insulating tube.
  • a plurality of inner heat insulating tubes are disposed in the heat insulating tube 2032, so that the possibility that the smoke is liquefied is further reduced, and the amount of smoke is further increased.
  • an inner layer heat insulating tube 2033 is disposed in the heat insulating tube 2032; the material of the inner layer heat insulating tube 2033 is shown in the third type, in this manner Do not make a comment.
  • the heat insulating tube 2032 is sleeved outside the inner heat insulating tube 2033;
  • the inner insulating tube 2033 is electrically connected to the smoking end 201, and the inner insulating tube 2033 is coaxially disposed with the smoke passage 2031;
  • the heat insulating tube 2032 is the foam tube, and the inner layer heat insulating tube 2033 is the glass fiber tube. Thereby, the heat insulating tube 2032 has good heat insulation and good hygroscopicity.
  • the fifth type is provided with a heat insulating material between the heat insulating tube 2032 and the smoke passage 2031 on the basis of the heat insulating tubes 2032 shown in the first, third and fourth types. .
  • the smoke passage 2031 of the present mode is separated from the smoke by a heat insulating tube 2032 and a heat insulating material, thereby further reducing the heat of the smoke passage 2031 to absorb the smoke, thereby further reducing the possibility of smoke liquefaction.
  • the heat insulating material comprises: a foam material, a glass fiber material, a wood pulp material and/or a chemical fiber material.
  • the specific material of the heat insulating tube 2032 and the heat insulating material is not limited in this embodiment as long as it has good heat insulating properties.
  • the structure of the electronic cigarette is further described in detail: As shown in FIG. 3, in the embodiment, the electronic cigarette body further includes: an oil storage bottle 204 for storing the oil to supply oil to the atomizing component 202, wherein the oil storage bottle 204 is disposed on The electronic cigarette body is away from one end of the smoking end 201.
  • the atomizing component 202 is located between the battery rod assembly 203 and the oil storage bottle 204, and the smoking end 201 is disposed at an end of the battery rod assembly 203 away from the atomizing component 202, and the The atomizing assembly 202, the battery rod assembly 203, and the oil storage bottle 204 are coaxially disposed.
  • the atomizing assembly 202, the battery rod assembly 203, and the oil storage bottle 204 are coaxially disposed such that the overall structure of the electronic cigarette mimics real cigarettes, conforms to user's usage habits, and reduces oil accumulation.
  • the atomizing component 202 is located between the battery rod assembly 203 and the oil storage bottle 204, that is, the atomizing component 202 is far from the smoking end 201, and the user uses the present embodiment.
  • the position of the atomizing component 202 is far from the position of the user's mouth, so that the heat generated when the atomizing component 202 atomizes the smoke oil does not burn the user, thereby effectively improving the electron.
  • the use of the smoke is safe, and the user usually wears the battery rod assembly 203 for smoking during smoking, and avoids the smoking of the atomizing assembly 202 that is hot in the prior art, so that the user uses the electrons provided by the embodiment.
  • the smoke is smoked, there is no burn in the hand, which effectively simulates the temperature of the real cigarette and improves the user experience during smoking.
  • the structure of the electronic cigarette is an example, which is not limited.
  • the battery rod assembly 203, the atomizing assembly 202 and the oil storage bottle 204 which are sequentially connected may be staggered so that the electronic
  • the overall shape of the smoke is a profile, and the specific shape of the profile can be any shape.
  • the atomizing assembly 202 and the battery rod assembly 203 may also be disposed non-coaxially, that is, the oil storage bottle 204 and the atomizing assembly 202 are arranged side by side such that the oil storage bottle 204 and the atomizing assembly 202 are respectively connected to the battery rod
  • the assembly 203 is connected such that the overall structure of the electronic cigarette is T-shaped.
  • the overall outer shape of the electronic cigarette is not limited as long as a heat insulating tube is provided in the smoke passage inside the battery rod assembly.
  • the oil reservoir 204 is detachably coupled to the atomizing assembly 202 and/or the atomizing assembly 202 is detachably coupled to the battery rod assembly 203.
  • the detachable connection manner between the oil storage bottle 204 and the atomizing component 202 and/or the atomizing component 202 and the battery rod assembly 203 may be a screw connection or a snap connection, etc., specifically The connection manner is not limited in this embodiment, as long as the oil storage bottle 204 and the atomization assembly 202 and/or the atomization assembly 202 are detachably connected to the battery rod assembly 203.
  • the advantage of using the above detachable connection method is that the user can replace the atomization assembly 202 at any time or disassemble the oil storage bottle 204 at any time, thereby facilitating the user to add the oil to the oil storage bottle 204 or replace the oil storage bottle 204 to avoid
  • the smoke oil is directly injected into the atomization assembly, so that the smoke oil is easily injected into the atomization channel, causing the user to smoke the smoke oil.
  • the connection between the oil storage bottle 204 and the atomization assembly 202 and/or the atomization assembly 202 and the battery rod assembly 203 may be non-removable.
  • the manner in which the electronic cigarette stores the soot oil in the embodiment is that the oil storage bottle 204 is provided as an example, and is not limited thereto, and other oil storage methods may be used as long as it is inside the smoke passage 2031 inside the battery rod assembly 203.
  • the heat insulating tube 2032 can be worn.
  • a manner in which the oil slick is stored inside the atomizing unit 202 may be provided.
  • Embodiment 4 This embodiment describes in detail the specific structure of the battery rod assembly 203 of the electronic cigarette:
  • the battery rod assembly 203 specifically includes:
  • the smoking end 201 shown in FIG. 3 can be integrally formed by extending the end of the battery sleeve 2034, or the nozzle as the smoking end 201 can be detachably connected to the battery sleeve 2034.
  • the specific arrangement is in this embodiment. There is no limit in it.
  • the detachable connecting nozzle in the embodiment as the smoking end 201 allows the user to change the nozzle or the cleaning nozzle at any time, so as to avoid smoking the tobacco in the nozzle as much as possible, and also better clean the inside of the battery rod assembly. Smoke oil.
  • the battery electrode 2036 is electrically connected to the battery 2035, and the battery electrode 2036 is electrically connected to the atomizer electrode;
  • the sensing module 2037 is preferably an airflow sensing switch, so that the airflow sensing switch can reduce the pressure inside the electronic cigarette when the user smokes the electronic cigarette, so that the airflow sensing switch senses the state of the pressure reduction to generate a trigger signal.
  • the microcontroller is electrically connected to the sensing module 2037 and is provided with a microcontroller for controlling the battery 2035 to supply power to the heating wire of the atomizing component 203 according to the trigger signal.
  • the battery rod assembly may also be provided with a push button switch for controlling the battery 2035 to supply the heating wire. That is, if the user wishes to smoke the smoke, it is only necessary to press the button switch to avoid the situation that the air flow sensor is damaged and the electronic cigarette cannot be used.
  • the battery rod assembly 203 is internally provided with a smoke passage 2031 for conducting the smoking end 201 and the air inlet.
  • the smoke passage 2031 is sealed within the battery rod assembly 203, i.e., from other electronic components within the battery rod assembly 203.
  • the air inlets that are connected to the smoke channel 2031 can be set in two ways. It should be clarified that the following air inlets are arranged for the sake of example only, and are not limited, as long as they are disposed on the electronic cigarette body.
  • the air inlet is electrically connected to the smoking end 201 through the smoke passage 2031.
  • the first setting manner is as follows: Referring to FIG. 5, the air inlet 501 can be disposed on the abutting surface of the atomizing assembly 202 and the oil storage bottle 204;
  • the chemical component 202 is provided with a bump or a rib on the abutting surface of the oil storage bottle 204, so that an air inlet 501 for allowing air to flow is formed between the screwed atomizing assembly 202 and the oil storage bottle 204, so that Air flows into the smoke passage 2031 through the air inlet 501.
  • the air inlet 501 disposed on the abutting surface of the atomizing assembly 202 and the oil storage bottle 204 is electrically connected to the smoking end 201 through the smoke passage 2031.
  • the airflow direction inside the electronic cigarette is the direction indicated by the arrow. As shown in FIG. 5, the airflow direction does not pass through the oil storage bottle 204, so that the mist atomized by the atomizing component 202 does not need to pass through the oil storage.
  • the bottle 204 can flow to the smoking end 201 so that the smoke does not condense due to the smoking of the oil storage bottle 204, and thus does not block the smoke passage 2031.
  • the second way of the air inlet may be that the air inlet may also be disposed on the outer wall of the atomizing assembly 202, and the specific position and quantity are not limited.
  • the smoking end 201 and the air inlet 502 can be turned through the smoke passage 2031.
  • the air inlet 502 disposed on the outer wall of the atomizing assembly 202 passes through the smoke passage 2031 and the smoking end. 201 is turned on.
  • the position of the air inlet 502 is set to the position of the heating wire 2021 inside the atomizing assembly 202.
  • the specific structure of the heating wire 2021 can be seen in the fifth embodiment.
  • the airflow direction inside the electronic cigarette in the embodiment is a direction indicated by an arrow.
  • the airflow direction does not pass through the oil storage bottle 204, so that the mist atomized by the atomizing component 202 does not need to pass through the oil storage.
  • the bottle 204 can flow to the smoking end 201, so that the smoke does not condense due to the smoking of the oil storage bottle 204, and thus does not block the smoke passage 2031, thereby avoiding the smog condensation and blocking fog of the prior art smoke passing through the oil storage area. The situation of the channel.
  • the atomizing component 202 specifically includes:
  • An atomizing tube 2022 inserted into the oil storage bottle 204 at one end;
  • mister electrode 2023 disposed at one end of the atomizing tube 2022 and electrically connected to the battery rod assembly 203;
  • An oil guiding member made of an oil absorbing material is disposed inside the atomizing tube 2022, and an outer peripheral surface of the oil guiding member is atomized.
  • the heating wire 2021 is wound around the oil guiding member, so that the oil guiding member can supply the oil to the heating wire 2021.
  • the oil guiding effect of the structure shown in this embodiment is good, and the backflow of the oil when the electronic cigarette body is inverted is effectively avoided.
  • the specific setting manner of how to output the smoke oil to the heating wire 2021 is not limited in this embodiment, as long as the heating wire 2021 can atomize the smoke oil.
  • an oil guiding cloth may be disposed on an end surface of the atomizing component 202 adjacent to the oil storage bottle 204.
  • the oil guiding cloth may be made of a glass fiber material, and the heating oil wire is disposed on the oil guiding cloth, and the heating wire is disposed.
  • the oil guiding cloth can evenly dissipate the heat on the heating wire, and avoid the excessive temperature of the heating wire to burn the device inside the oil storage bottle 204, effectively increasing the a length of the heating wire and a contact area of the heating wire and the tarpaulin, that is, in a space of a small tarpaulin A large area of electric heating wire is arranged, so that the amount of smoke that can be atomized by the working electric heating wire is large, so that the user can suck enough smoke to ensure the user's use experience. Since the heating wire is disposed laterally on the atomizing assembly 202, even adjacent heating wires that are bent by gravity or vibration do not contact, thereby avoiding smoke caused by gravity or vibration
  • Embodiment 7 This embodiment describes in detail the specific structure of the oil storage bottle 204:
  • the oil storage bottle 204 is internally provided with a sealed cavity, and the sealed cavity is internally sealed and stored with smoke oil.
  • the oil storage bottle 204 is a light-transmissive container, that is, the user can grasp the remaining amount of the smoke oil of the electronic cigarette through the transparent oil storage bottle 204. It is convenient for the user to replace the oil storage bottle 204 in time.
  • the oil storage bottle 204 is a glass bottle. Due to the stable nature of the glass material, it is avoided to affect the smell of smoke due to chemical reactions.
  • the outer wall of the oil storage bottle 204 made of glass is provided with a scale, so that the user can estimate the amount of time that the remaining amount of oil can be used for smoking, which is convenient for the user.
  • a protective cover (not shown) is disposed on the oil storage bottle 204 to prevent the glass oil bottle 204 from being broken due to dropping.
  • the protective cover is provided with a smoke oil observation window for the user to observe the smoke oil.
  • the setting method used in the embodiment can be two types:
  • the atomization assembly 202 and the oil storage bottle 204 are connected at a joint with a sealing ring 2041 that is sleeved on the atomizing tube 2022 and used to seal the oil storage bottle 204. .
  • the seal of the oil storage bottle 204 can be effectively ensured by the seal ring 2041.
  • the second arrangement is shown in Fig. 6, that is, an annular sealing plug 601 with a through hole is provided in sealing engagement with the mouth of the oil storage bottle 204.
  • a rupturable film 602 for sealing the oil reservoir 204 is disposed inside the through hole of the annular sealing plug 601.
  • a rupturable film 602 for sealing the oil reservoir 204 is disposed inside the through hole of the annular sealing plug 601. That is, when the atomizing tube 2022 is inserted into the sealed cavity of the oil storage bottle 204, the atomizing tube 2022 passes through the rupturable film 602, and the oil storage bottle 204 that has been inserted into the atomizing tube 2022 is passed through the rupturable film 602. It still has good sealing properties, thus effectively preventing the leakage of smoke oil.
  • the oil storage bottle 204 provided in this embodiment is provided with an annular sealing plug 601 with a rupturable film 602, so that the oil storage bottle 204 has a good sealing property, thereby effectively preventing the leakage of the oil smoke and prolonging the electronic cigarette. The use time and the service life of the electronic cigarette are guaranteed.

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Abstract

一种电子烟,该电子烟包括:电子烟本体,所述电子烟本体设置有吸烟端(201)、雾化组件(202)以及电池杆组件(203),所述雾化组件(202)设置于所述电子烟本体远离所述吸烟端(201)的一端;所述电池杆组件(203)内部设置有用于与所述吸烟端(201)导通的烟雾通道(2031);所述烟雾通道(2031)内穿设有隔热管(2032),所述隔热管(2032)与所述吸烟端(201)导通,且所述隔热管(2032)与所述烟雾通道(2031)同轴设置。该隔热管(2032)具有导热差的性能,其具有良好的隔热性能,从而降低在所述烟雾通道(2031)内的烟雾受到吸热而冷凝情况的发生,降低用户抽吸到烟油的可能,提升用户的使用体验。而且因发生冷凝的烟雾量大大的减少,从而增加了用户可吸食的烟雾量,让用户可吸食到更多的烟雾,且避免雾化组件(202)工作时烫手。

Description

一种电子烟
本申请要求于 2014年 04月 24 日 提交中 国专利局、 申请号为 201420204107.3、 发明名称为 "一种电子烟" 的中国专利申请的优先权, 其全 部内容通过引用结合在本申请中。 技术领域
本实用新型涉及电子烟技术领域, 特别涉及一种防止烟雾冷凝的电子烟。 背景技术
现有技术的电子烟的结构请参见图 1所示, 由图 1可知,现有技术中的电子 烟中包括相互固定连接的雾化组件 110和电池杆组件 120 , 所述雾化组件 110远 离所述电池杆组件 120的一端作为供用户吸食烟雾的吸烟端 100。进一步参见图 1可知, 所述雾化组件 110内部还设置有用于存储烟油的储油棉 112以及用于雾 化烟油以生成烟雾的电热丝组件 113 ,在该电子烟内部形成有烟雾通道 130 ,使 得用户通过该烟雾通道 130吸食到已被电热丝组件 113雾化的烟雾。
因图 1所示的电子烟中, 所述储油棉 112的位置靠近吸烟端 100, 使得储油棉 112内的烟油容易泄露到烟雾通道 130内,使得未经雾化的烟油会被用户吸食。 而且烟雾通道 130为由塑胶或金属等材料制成,使得烟雾通道 130能够吸收烟 雾的热量, 烟雾被烟雾通道 130吸热后容易快速冷却凝结成烟油, 烟油会顺着 气流方向流入所述吸烟端 100, 以使用户通过所述吸烟端 100会抽吸到烟油, 大大降低了用户使用过程中的体验。
发明内容
有鉴于此, 本实用新型提供了一种防止烟雾冷凝的电子烟。
一种电子烟, 其中, 包括:
电子烟本体;
所述电子烟本体设置有吸烟端、用于雾化烟油以形成烟雾的雾化组件以及 用于给所述雾化组件供电的电池杆组件;
所述雾化组件设置于所述电子烟本体远离所述吸烟端的一端;
所述电池杆组件内部设置有用于与所述吸烟端导通的烟雾通道;
所述烟雾通道内穿设有隔热管, 所述隔热管与所述吸烟端导通,且所述隔 热管与所述烟雾通道同轴设置。
所述的电子烟, 其中, 所述隔热管为泡沫管、 玻璃纤维管、 木浆纤维管或 化学纤维管。
所述的电子烟, 其中于, 所述隔热管内依次穿设有多个内层隔热管; 所述隔热管套设在所述内层隔热管外部;
多个所述内层隔热管分别与所述吸烟端导通,多个所述内层隔热管分别与 所述烟雾通道同轴设置;
且依次穿设于所述隔热管内部的多个所述内层隔热管的横截面积沿朝向 所述隔热管轴线方向依次减小。
所述的电子烟, 其中, 所述隔热管内穿设有一个内层隔热管;
所述隔热管套设在所述内层隔热管外部;
所述内层隔热管与所述吸烟端导通,且所述内层隔热管与所述烟雾通道同 轴设置。
所述的电子烟, 其中, 所述隔热管为所述泡沫管, 所述内层隔热管为所述 玻璃纤维管。
所述的电子烟, 其中, 所述隔热管与所述烟雾通道之间填充设置有隔热材 料。
所述的电子烟, 其中, 所述隔热材料包括: 泡沫材料、 玻璃纤维材料、 木 浆材料和 /或化学纤维材料。
所述的电子烟, 其中, 所述电子烟本体还设置有用于存储所述烟油以为所 述雾化组件供油的储油瓶,所述储油瓶设置于所述电子烟本体上远离所述吸烟 端的一端。
所述的电子烟, 其中, 所述雾化组件位于所述电池杆组件及所述储油瓶之 间, 所述吸烟端设置于所述电池杆组件远离所述雾化组件的一端,且所述雾化 组件、 所述电池杆组件、 所述储油瓶同轴设置。
所述的电子烟, 其中, 与所述烟雾通道导通设置有进气口;
所述进气口设置于所述雾化组件表面且与用于雾化烟油的电热丝对应的 位置;
或, 所述进气口设置于所述雾化组件和所述储油瓶抵合面上。
所述的电子烟, 其中, 所述雾化组件包括:
一端插设于所述储油瓶内的雾化管;
设置于所述雾化管的一端并用于与所述电池杆组件电连接的雾化器电极; 收容在所述雾化管内并与所述雾化器电极电连接的电热丝;
套设在雾化管内的由吸油材料制成的导油件,所述导油件的外周面与所述 所述的电子烟, 其中, 所述雾化组件和所述储油瓶连接处设置有套设在所 述雾化管上并用于密封所述储油瓶的密封环。
所述的电子烟, 其中, 所述电池杆组件包括:
电池套;
容置在所述电池套内部的电池;
与所述电池电连接设置有电池电极,且所述电池电极与所述雾化器电极电 连接;
用于生成触发信号的感应模块;
与所述感应模块电连接设置有用于根据所述触发信号控制所述电池为所 述电热丝供电的微控制器。
所述的电子烟, 其中, 所述感应模块为用于才艮据用户的吸烟动作生成所述 脉冲信号的气流感应开关。
所述的电子烟, 其中, 所述电池杆组件还设置有用于控制所述电池为所述 电热丝供电的按键开关。
所述的电子烟, 其中, 所述储油瓶为透光容器。
所述的电子烟, 其中, 所述储油瓶为玻璃瓶。
所述的电子烟,其中 ,所述电池杆组件与所述雾化组件之间为可拆卸连接, 或 /和所述雾化组件与所述储油瓶的瓶口之间为可拆卸连接。
本实用新型所提供的电子烟包括: 电子烟本体, 所述电子烟本体设置有吸 烟端、 雾化组件以及电池杆组件, 所述雾化组件设置于所述电子烟本体远离所 述吸烟端的一端;所述电池杆组件内部设置有用于与所述吸烟端导通的烟雾通 道; 所述烟雾通道内穿设有隔热管, 所述隔热管与所述吸烟端导通, 且所述隔 热管与所述烟雾通道同轴设置。 本实施例所提供的隔热管具有导热差的性能, 其具有良好的隔热性能,从而使降低所述烟雾通道内的烟雾吸热而冷凝情况的 发生, 降低用户抽吸到烟油的可能, 提升用户的使用体验。 而且因发生冷凝的 烟雾量大大的减少,从而增加了用户可吸食的烟雾量。让用户可吸食到更多的 烟雾;此外,由于所述雾化组件设置于所述电子烟本体远离所述吸烟端的一端, 使得位于该电子烟本体内的烟雾通道不穿过储油区域,从而使得烟油不容易泄 露到烟雾通道内, 进而使得用户不容易吸食到未经雾化的烟油,从而有效的降 低了烟油泄露的概率, 而且可避免烟雾在烟雾通道内冷凝,从而有效的避免冷 凝后的烟油堵塞烟雾通道,且吸烟时手可握持或夹持在所述电池杆组件上, 更 好地避免雾化组件烫手。
附图说明
为了更清楚地说明本实用新型实施例或现有技术中的技术方案,下面将对 实施例或现有技术描述中所需要使用的附图作简单地介绍,显而易见地, 下面 描述中的附图仅仅是本实用新型的一些实施例, 对于本领域普通技术人员来 讲, 在不付出创造性劳动的前提下, 还可以根据这些附图获得其他的附图。
图 1为现有技术的电子烟的结构剖面示意图;
图 2为本实用新型所提供的电子烟的一种较佳实施例整体结构示意图; 图 3 为本实用新型所提供的电子烟的另一种较佳实施例整体结构剖面示 意图;
图 4 为本实用新型所提供的电子烟的另一种较佳实施例整体结构剖面示 意图;
图 5 为本实用新型所提供的电子烟的另一种较佳实施例整体结构剖面示 意图;
图 6 为本实用新型所提供的电子烟的储油瓶的一种较佳实施例剖面结构 示意图。
具体实施方式
实施例一, 本实用新型公开了一种电子烟, 该电子烟的结构请参见图 2 所示。
由图 2所示可知, 该电子烟包括: 电子烟本体,且所述电子烟本体设置有吸烟端 201 ,用户通过该吸烟端 201 即可进行吸烟。
用于雾化烟油的雾化组件 202, 即通过雾化组件 202将烟油雾化以生成可 供用户抽吸的烟雾。
该电子烟本体还包括用于给所述雾化组件 202供电的电池杆组件 203。 在该电池杆组件 203内还形成有用于流通烟雾的烟雾通道, 其中, 该烟雾 通道的具体结构请见图 3所示,图 3为本实施例所提供的电子烟的剖面结构示 意图。
如图 3所示, 电池杆组件 203内部设置有用于流通烟雾的烟雾通道 2031 , 使得用户通过吸烟端 201吸食流经该烟雾通道 2031内的烟雾。
结合图 2和图 3所示可知,所述雾化组件 202设置于所述电子烟本体上远 离所述吸烟端 201 的一端, 釆用此种设置方式的优势在于, 因雾化组件 202 设置的位置远离吸烟端 201 , 使得位于该电子烟本体内的烟雾通道 2031 不穿 过储油区域(雾化组件 202 所雾化的烟雾在电子烟内部的气流方向请见图 3 所示的箭头方向), 从而使得电子烟内所存储的烟油不容易泄露到烟雾通道 2031 内, 进而使得用户不容易吸食到未经雾化的烟油, 从而有效的降低了烟 油泄露的概率, 而且可避免烟雾在烟雾通道 2031 内冷凝, 从而有效的避免冷 凝后的烟油堵塞烟雾通道 2031。
进一步结合图 3 对本实施例所提供的电子烟的具体结构进行进一步的详 细说明 ,所述雾化组件 202位于所述电池杆组件 203远离所述吸烟端 201的一 端, 且所述吸烟端 201位于所述电池杆组件 203 的一端外侧、 或所述吸烟端 201位于所述电池杆组件 203的中部、 或所述吸烟端 201位于所述电池杆组件 203上远离所述雾化组件 202的位置。
具体的,位于所述电池杆组件 203的一端外侧的该吸烟端 201可与电池杆 组件 203同轴设置,釆用该种设置方式可使得电子烟的外形直观的模拟了真实 的香烟, 且使整体的烟雾通道 2031较直, 可有效减少积油的现象。
或将吸烟端 201设置在电池杆组件 203的中部、或所述吸烟端 201位于所 述电池杆组件 203上远离所述雾化组件 202的位置。在本实用新型中, 该吸烟 端 201的具体位置不作限定。 更具体的, 在所述烟雾通道 2031 内穿设有隔热管 2032, 该隔热管 2032 与所述吸烟端 201导通, 且所述隔热管 2032与所述烟雾通道 2031同轴设置。
因本实施例中, 流经所述烟雾通道 2031 内的烟雾与所述烟雾通道 2031 之间间隔设置有所述隔热管 2032, 且该隔热管 2032具有良好的隔热性能, 使 得所述烟雾通道 2031吸收所述烟雾的热量以使所述烟雾液化的可能性降低, 从而降低了用户抽吸到烟油的可能性。
更佳的是, 因釆用本实施例所提供的隔热管 2032使得烟雾被液化的量大 大减少, 进而增加了用户抽吸到的烟雾量, 保障了用户抽吸到烟雾的浓度, 提 升了用户抽吸到烟雾的口感。
实施例二, 本实施例对隔热管 2032的具体结构进行详细说明:
所述隔热管 2032的设置方式有如下几种:
第一种, 为使得所述隔热管 2032具有良好的隔热性能, 进而降低流经所 述烟雾通道 2031内的烟雾液化的可能, 则所述隔热管 2032为泡沫管、玻璃纤 维管、 木浆纤维管或化学纤维管。
较佳的是, 所述隔热管 2032为玻璃纤维管。
因玻璃纤维管不仅仅具有良好的隔热性能, 其还具有较佳的吸湿性,从而 使得该隔热管 2032能够吸收液化的烟油, 进一步的防止用户抽吸到烟油。
第二种, 在所述烟雾通道 2031 内侧表面, 即与烟雾直接接触的表面镀设 有隔热层以形成所述隔热管 2032。
在所述烟雾通道 2031 内侧表面镀设所述隔热管 2032, 使得在烟雾通道
2031 的塑料或金属壳体不会直接与烟雾接触, 从而降低了烟雾液化的可能, 而且因镀设的隔热管 2032与所述烟雾通道 2031—体设置,该电子烟的稳固性 增加, 且可防止烟油积存在所述烟雾通道 2031内。
第三种, 在第一种和第二种所示的所述隔热管 2032内依次穿设有多个内 层隔热管;
所述内层隔热管的材质可为泡沫管、玻璃纤维管、木浆纤维管或化学纤维 管。
较佳的是, 所述内层隔热管为玻璃纤维管。 因玻璃纤维管不仅仅具有良好 的隔热性能, 其还具有较佳的吸湿性,从而使得该内层隔热管能够吸收液化的 烟油, 进一步的防止用户抽吸到烟油。
本种方式在第一种设置方式的基础上, 进一步的强化了隔热管的隔热性 能, 从而进一步的降低了烟雾液化的可能。
具体的, 所述隔热管 2032套设在所述内层隔热管外部;
多个所述内层隔热管分别与所述吸烟端 201导通,多个所述内层隔热管分 别与所述烟雾通道 2031同轴设置;
且依次穿设于所述隔热管 2032内部的多个所述内层隔热管的横截面积沿 朝向所述隔热管轴线方向依次减小。
因本种设置方式中隔热管 2032内设置有多个内层隔热管, 从而使得所述 烟雾被液化的可能性进一步的降低, 进一步的提升了烟雾量。
第四种, 如图 4所示, 在所述隔热管 2032内设有一个内层隔热管 2033; 所述内层隔热管 2033的材质请见第三种所示, 在本种方式中不做赞述。
所述隔热管 2032套设在所述内层隔热管 2033外部;
所述内层隔热管 2033与所述吸烟端 201 导通, 且所述内层隔热管 2033 与所述烟雾通道 2031同轴设置;
且在本种设置方式中, 较佳的可为, 所述隔热管 2032为所述泡沫管, 所 述内层隔热管 2033为所述玻璃纤维管。从而使得该隔热管 2032具有良好的隔 热性以及具有良好的吸湿性。
第五种, 在第一种、 第三种和第四种所示的所述隔热管 2032的基础上, 在所述隔热管 2032与所述烟雾通道 2031之间填充设置有隔热材料。
从而使得本种方式的烟雾通道 2031 与所述烟雾之间间隔有隔热管 2032 以及隔热材料, 从而进一步的降低烟雾通道 2031吸收烟雾的热量, 从而更进 一步降低了烟雾液化的可能。
具体的, 所述隔热材料包括: 泡沫材料、 玻璃纤维材料、 木浆材料和 /或 化学纤维材料。
需明确的是, 所述隔热管 2032和所述隔热材料的具体材质在本实施例中 不作限定, 只要具有良好的隔热性能即可。
实施例三, 本实施例对电子烟的结构进行进一步的详细说明: 请参见图 3所示, 本实施例中, 所述电子烟本体还包括: 有用于存储所述 烟油以为所述雾化组件 202供油的储油瓶 204 , 所述储油瓶 204设置于所述电 子烟本体上远离所述吸烟端 201的一端。
且所述雾化组件 202位于所述电池杆组件 203及所述储油瓶 204之间 ,所 述吸烟端 201设置于所述电池杆组件 203远离所述雾化组件 202的一端,且所 述雾化组件 202、 所述电池杆组件 203、 所述储油瓶 204同轴设置。
将所述雾化组件 202、 所述电池杆组件 203、 所述储油瓶 204同轴设置, 使得该电子烟的整体结构模仿真实的香烟、 符合用户的使用习惯以及减少积 油。
因在本实施例中 ,所述雾化组件 202位于所述电池杆组件 203和所述储油 瓶 204之间, 即雾化组件 202离吸烟端 201的位置较远, 而用户釆用本实施例 所提供的电子烟进行吸烟时, 雾化组件 202的位置离用户口腔的位置较远, 即 可使得雾化组件 202雾化烟油时所产生的热量不会烫伤用户,有效的提升了电 子烟的使用安全, 而且用户吸烟过程中通常会夹持电池杆组件 203进行吸烟, 而避免了现有技术中夹持发热的雾化组件 202进行吸烟,使得用户在使用本实 施例所提供的电子烟进行吸烟时手部不会出现烫伤的情况,有效的模拟了真实 香烟的温度, 提升用户吸烟过程中的使用体验。
需明确的是, 本实施例对电子烟的结构为一种举例, 不作限定, 例如依次 连接的所述电池杆组件 203、 雾化组件 202和所述储油瓶 204可交错设置, 使 得该电子烟整体的外形为异形, 该异形的具体形状可为任意形状。
该雾化组件 202与所述电池杆组件 203还可非同轴设置, 即将储油瓶 204 和雾化组件 202釆用并列设置的方式,使得储油瓶 204和雾化组件 202分别与 电池杆组件 203连接, 使得该电子烟的整体结构呈 T型。
即在本实施例中, 该电子烟的整体的外形结构并不做限定, 只要在所述电 池杆组件内部的烟雾通道内穿设有隔热管即可。
较佳的是, 所述储油瓶 204与所述雾化组件 202为可拆卸连接和 /或所述 雾化组件 202与所述电池杆组件 203为可拆卸连接。
具体的, 所述储油瓶 204与所述雾化组件 202和 /或所述雾化组件 202与 所述电池杆组件 203的可拆卸的连接方式可为螺紋连接或卡合连接等,具体的 连接方式在本实施例中不作限定, 只要使得所述储油瓶 204 与所述雾化组件 202和 /或所述雾化组件 202与所述电池杆组件 203的可拆卸连接即可。
釆用上述可拆卸的连接方式的优势在于, 方便用户随时更换雾化组件 202 或以及随时拆卸储油瓶 204, 从而方便用户往储油瓶 204内加烟油或更换该储 油瓶 204 , 避免了现有技术中加油时直接向雾化组件内注入烟油而使烟油容易 注入雾化通道内, 导致用户吸食到烟油的情况。 当然, 所述储油瓶 204与所述 雾化组件 202之间和 /或所述雾化组件 202与所述电池杆组件 203的连接方式 可为不可拆卸的连接方式, 在此不作限定。
本实施例中电子烟存储烟油的方式为设置有储油瓶 204只是一种举例,不 作限定,还可釆用其他的储油方式, 只要在所述电池杆组件 203内部的烟雾通 道 2031内穿设有隔热管 2032即可。例如可在所述雾化组件 202内部设置有存 储有所述烟油的储油棉等方式。
实施例四,本实施例对所述电子烟的电池杆组件 203的具体结构进行详细 说明:
进一步参见图 3所示可知, 所述电池杆组件 203具体包括:
电池套 2034。
其中,图 3所示的吸烟端 201可由该电池套 2034的端部延伸一体化形成, 或, 将作为吸烟端 201的吸嘴与所述电池套 2034可拆卸连接, 具体设置方式 在本实施例中不作限定。
本实施例中的可拆卸连接的吸嘴作为吸烟端 201 可使得用户随时更换吸 嘴或清洗吸嘴, 以实现尽量避免吸食到吸嘴内的烟油, 同时也更好地清理电池 杆组件内的烟油。
容置在所述电池套 2034内部的电池 2035。
与所述电池 2035电连接设置有电池电极 2036, 且所述电池电极 2036与 所述雾化器电极电连接;
用于生成触发信号的感应模块 2037;
该感应模块 2037较佳的可为气流感应开关, 以使该气流感应开关可根据 用户抽吸电子烟时, 电子烟内部的压强减少, 进而使得气流感应开关感应到压 强减少的状态进而生成触发信号; 与所述感应模块 2037电连接设置有用于根据所述触发信号控制所述电池 2035为雾化组件 203的电热丝供电的微控制器。
当然, 所述电池杆组件还可设置用于控制所述电池 2035为所述电热丝供 电的按键开关。 即若用户希望抽吸到烟雾, 只需要按下所述按键开关即可, 避 免了所述气流传感器损坏后而不能使用电子烟的情况。
进一步参见图 3可知,所述电池杆组件 203内部设置用于导通所述吸烟端 201和进气口的烟雾通道 2031。
较佳的是, 该烟雾通道 2031在电池杆组件 203内部密封设置, 即与电池 杆组件 203内部的其他电子元器件隔离。
具体的, 与烟雾通道 2031导通的进气口的设置方式可为两种, 需明确的 是, 以下进气口的设置方式仅为举例进行说明, 并不作限定, 只要设置在电子 烟本体的进气口通过烟雾通道 2031与吸烟端 201导通即可。
第一种设置方式为: 请参见图 5所示, 所述进气口 501可设置在所述雾化 组件 202和所述储油瓶 204抵合面上; 其具体的设置方式为可在雾化组件 202 与储油瓶 204抵合面上设置有凸块或凸棱部, 使得螺紋连接后的雾化组件 202 和储油瓶 204之间形成可供空气流入的进气口 501 , 以使得空气通过该进气口 501流入烟雾通道 2031中。
如图 5所示可知,设置在所述雾化组件 202和所述储油瓶 204抵合面上进 气口 501通过烟雾通道 2031与吸烟端 201导通。
具体的本实施例中电子烟内部的气流方向为箭头所示的方向,由图 5所示 可知, 该气流方向不经过储油瓶 204, 使得经过雾化组件 202雾化的烟雾无需 经过储油瓶 204即可流向吸烟端 201 , 从而使得烟雾不会因储油瓶 204的吸烟 而冷凝, 进而不会阻塞烟雾通道 2031。
该进气口的第二种方式可为, 将该进气口还可设置在所述雾化组件 202 外壁上, 具体位置以及数量不作限定。
通过烟雾通道 2031可导通吸烟端 201和进气口 502, 具体请参见 3所示; 如图 3所示可知,设置在雾化组件 202外壁上的进气口 502通过烟雾通道 2031与吸烟端 201导通。
较佳的, 该进气口 502设置的位置与雾化组件 202内部的电热丝 2021位 置对应; 该电热丝 2021的具体结构请见实施例五。
具体的本实施例中电子烟内部的气流方向为箭头所示的方向,由图 3所示 可知, 该气流方向不经过储油瓶 204, 使得经过雾化组件 202雾化的烟雾无需 经过储油瓶 204即可流向吸烟端 201 , 从而使得烟雾不会因储油瓶 204的吸烟 而冷凝, 进而不会阻塞烟雾通道 2031 , 避免了现有技术中烟雾经过储油区域 而使烟雾冷凝及阻塞雾化通道的情况。
实施例六, 本实施例对雾化组件 202的具体结构进行详细说明: 如图 3所示, 该雾化组件 202具体包括:
一端插设于所述储油瓶 204内的雾化管 2022;
设置于所述雾化管 2022的一端并用于与所述电池杆组件 203电连接的雾 化器电极 2023;
收容在所述雾化管 2022 内并与所述雾化器电极 2023 电连接的电热丝 2021 ;
套设在雾化管 2022内的由吸油材料制成的导油件, 所述导油件的外周面 雾化。
具体的, 所述电热丝 2021缠绕设置在所述导油件上, 以使所述导油件可 将烟油输送给所述电热丝 2021。
釆用本实施例所示的结构导油效果好,且有效的避免电子烟本体倒立时烟 油的倒流。
其中, 本实施例对如何将烟油输出给所述电热丝 2021的具体设置方式不 作限定, 只要该电热丝 2021能够雾化烟油即可。
例如还可在所述雾化组件 202靠近所述储油瓶 204的端面设置有导油布, 该导油布可由玻纤材质制成,铺设在所述导油布上设置有电热丝,且该电热丝 压制成片状并盘旋缠绕成螺旋状或呈水平蛇状,以使所述电热丝所在的平面与 所述雾化组件 202的轴线垂直或成一定的角度,从而使得若电热丝在雾化烟油 的过程中温度较高时, 所述导油布可均匀的将电热丝上的热量散发出去,避免 温度过高的电热丝烧焦所述储油瓶 204内部的器件 ,有效的增加了所述电热丝 的长度及所述电热丝与所述导油布的接触面积,即在较小的导油布的空间内可 实现布置较大面积的电热丝, 进而使得工作的电热丝可雾化的烟雾量较大,从 而使得用户能够吸食到足够的烟雾,保障了用户的使用体验。 由于所述电热丝 横向设置在所述雾化组件 202上,即便因重力或震动的作用弯折的相邻所述电 热丝之间也不会接触,因而避免了因重力或震动的作用致烟雾量不均匀的问题 及烧焦的情况, 提高了产品的良率。
实施例七, 本实施例对储油瓶 204的具体结构进行详细说明:
由图 3至图 5所示, 该储油瓶 204内部设置有密封容腔, 该密封容腔内部 密封存储有烟油。
为使得用户能够掌握储油瓶 204 内部的烟油的剩余量, 则该储油瓶 204 为透光容器,即使得用户通过透明的储油瓶 204即可随时掌握电子烟的剩余烟 油量, 便于用户及时的更换储油瓶 204。
较佳的是, 所述储油瓶 204为玻璃瓶。 由于玻璃材质性质较稳定, 避免因 发生化学反应等情况而影响烟油味。
更佳的是,该玻璃制成的储油瓶 204的外周壁上设置有刻度,从而使得用 户可估计出剩余烟油量可供吸食的时长, 方便用户使用。
较佳的是, 在所述储油瓶 204套设有保护套(图中未示出), 以避免所述 玻璃材质的储油瓶 204因跌落而破碎的情况。
更佳的是, 所述保护套设置有烟油观察窗, 以供用户观察烟油。
为有效的保障储油瓶 204 具有良好的密封性, 从而有效的避免烟油的泄 露, 本实施例所釆用的设置方式可为两种:
第一种,如图 3所示, 所述雾化组件 202和所述储油瓶 204连接处设置有 套设在所述雾化管 2022上并用于密封所述储油瓶 204的密封环 2041。
通过该密封环 2041可有效的保障储油瓶 204的密封性。
第二种设置方式请参见图 6所示,即在与所述储油瓶 204的瓶口密封配合 设置带有通孔的环形密封塞 601。
在所述环形密封塞 601的通孔内部设置有用于密封所述储油瓶 204的可捅 破薄膜 602。
在所述环形密封塞 601的通孔内部设置有用于密封所述储油瓶 204的可捅 破薄膜 602。 即雾化管 2022插入储油瓶 204的密封容腔内部时,该雾化管 2022穿过该 可捅破薄膜 602 ,通过该可捅破薄膜 602使得已插入雾化管 2022的储油瓶 204 仍具有良好的密封性, 从而有效的防止烟油的泄露。
因本实施例所提供的储油瓶 204设置带有可捅破薄膜 602的环形密封塞 601 , 使得该储油瓶 204具有良好的密封性, 从而有效的避免烟油的泄露, 延 长电子烟的使用时间以及保障了电子烟的使用寿命。
下面将结合本实用新型实施例中的附图,对本实用新型实施例中的技术方 案进行清楚、 完整地描述, 显然, 所描述的实施例仅仅是本实用新型一部分实 施例, 而不是全部的实施例。 基于本实用新型中的实施例, 本领域普通技术人 员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本实用新型 保护的范围。
本说明书中各个实施例釆用递进的方式描述,每个实施例重点说明的都是 与其他实施例的不同之处, 各个实施例之间相同相似部分互相参见即可。
对所公开的实施例的上述说明,使本领域专业技术人员能够实现或使用本 实用新型。对这些实施例的多种修改对本领域的专业技术人员来说将是显而易 见的,本文中所定义的一般原理可以在不脱离本实用新型的精神或范围的情况 下, 在其它实施例中实现。 因此, 本实用新型将不会被限制于本文所示的这些 实施例, 而是要符合与本文所公开的原理和新颖特点相一致的最宽的范围。

Claims

权 利 要 求
1、 一种电子烟, 其特征在于, 包括:
电子烟本体;
所述电子烟本体设置有吸烟端、用于雾化烟油以形成烟雾的雾化组件以及 用于给所述雾化组件供电的电池杆组件;
所述雾化组件设置于所述电子烟本体远离所述吸烟端的一端;
所述电池杆组件内部设置有用于与所述吸烟端导通的烟雾通道; 所述烟雾通道内穿设有隔热管, 所述隔热管与所述吸烟端导通,且所述隔 热管与所述烟雾通道同轴设置。
2、 根据权利要求 1所述的电子烟, 其特征在于, 所述隔热管为泡沫管、 玻璃纤维管、 木浆纤维管或化学纤维管。
3、 根据权利要求 1或 2所述的电子烟, 其特征在于, 所述隔热管内依次 穿设有多个内层隔热管;
所述隔热管套设在所述内层隔热管外部;
多个所述内层隔热管分别与所述吸烟端导通,多个所述内层隔热管分别与 所述烟雾通道同轴设置;
且依次穿设于所述隔热管内部的多个所述内层隔热管的横截面积沿朝向 所述隔热管轴线方向依次减小。
4、 根据权利要求 1或 2所述的电子烟, 其特征在于, 所述隔热管内穿设 有一个内层隔热管;
所述隔热管套设在所述内层隔热管外部;
所述内层隔热管与所述吸烟端导通,且所述内层隔热管与所述烟雾通道同 轴设置。
5、 根据权利要求 4所述的电子烟, 其特征在于, 所述隔热管为所述泡沫 管, 所述内层隔热管为所述玻璃纤维管。
6、 根据权利要求 1所述的电子烟, 其特征在于, 所述隔热管与所述烟雾 通道之间填充设置有隔热材料。
7、 根据权利要求 6所述的电子烟, 其特征在于, 所述隔热材料包括: 泡 沫材料、 玻璃纤维材料、 木浆材料和 /或化学纤维材料。
8、 根据权利要求 1所述的电子烟, 其特征在于, 所述电子烟本体还设置 有用于存储所述烟油以为所述雾化组件供油的储油瓶,所述储油瓶设置于所述 电子烟本体上远离所述吸烟端的一端。
9、 根据权利要求 8所述的电子烟, 其特征在于, 所述雾化组件位于所述 电池杆组件及所述储油瓶之间 ,所述吸烟端设置于所述电池杆组件远离所述雾 化组件的一端, 且所述雾化组件、 所述电池杆组件、 所述储油瓶同轴设置。
10、 根据权利要求 8所述的电子烟, 其特征在于, 与所述烟雾通道导通设 置有进气口;
所述进气口设置于所述雾化组件表面且与用于雾化烟油的电热丝对应的 位置;
或,
所述进气口设置于所述雾化组件和所述储油瓶抵合面上。
11、 根据权利要求 8所述的电子烟, 其特征在于, 所述雾化组件包括: 一端插设于所述储油瓶内的雾化管;
设置于所述雾化管的一端并用于与所述电池杆组件电连接的雾化器电极; 收容在所述雾化管内并与所述雾化器电极电连接的电热丝;
套设在雾化管内的由吸油材料制成的导油件,所述导油件的外周面与所述
12、 根据权利要求 11所述的电子烟, 其特征在于, 所述雾化组件和所述 储油瓶连接处设置有套设在所述雾化管上并用于密封所述储油瓶的密封环。
13、 根据权利要求 11所述的电子烟, 其特征在于, 所述电池杆组件包括: 电池套;
容置在所述电池套内部的电池;
与所述电池电连接设置有电池电极,且所述电池电极与所述雾化器电极电 连接;
用于生成触发信号的感应模块;
与所述感应模块电连接设置有用于根据所述触发信号控制所述电池为所 述电热丝供电的微控制器。
14、 根据权利要求 13所述的电子烟, 其特征在于, 所述感应模块为用于 根据用户的吸烟动作生成所述脉冲信号的气流感应开关。
15、 根据权利要求 13所述的电子烟, 其特征在于, 所述电池杆组件还设 置有用于控制所述电池为所述电热丝供电的按键开关。
16、根据权利要求 8所述的电子烟,其特征在于,所述储油瓶为透光容器。
17、根据权利要求 16所述的电子烟, 其特征在于, 所述储油瓶为玻璃瓶。
18、 根据权利要求 8所述的电子烟, 其特征在于, 所述电池杆组件与所述 雾化组件之间为可拆卸连接, 或 /和所述雾化组件与所述储油瓶的瓶口之间为 可拆卸连接。
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