WO2018039876A1 - 一种烟油瓶以及电子烟雾化器 - Google Patents

一种烟油瓶以及电子烟雾化器 Download PDF

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Publication number
WO2018039876A1
WO2018039876A1 PCT/CN2016/097186 CN2016097186W WO2018039876A1 WO 2018039876 A1 WO2018039876 A1 WO 2018039876A1 CN 2016097186 W CN2016097186 W CN 2016097186W WO 2018039876 A1 WO2018039876 A1 WO 2018039876A1
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WO
WIPO (PCT)
Prior art keywords
oil
hole
cavity
disposed
bottle
Prior art date
Application number
PCT/CN2016/097186
Other languages
English (en)
French (fr)
Inventor
刘秋明
向智勇
牛建华
韦志林
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.)
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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/CN2016/097186 priority Critical patent/WO2018039876A1/zh
Publication of WO2018039876A1 publication Critical patent/WO2018039876A1/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
    • A24F40/48Fluid 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, in particular to a smoke oil bottle and an electronic cigarette atomizer.
  • the prior art provides an atomizing assembly capable of atomizing smoke oil to form a smoke.
  • the specific structure of the atomizing assembly provided by the prior art is described in detail below with reference to FIG. 1 .
  • An oil storage chamber 104 capable of storing smoke oil is formed between the vent pipe 101 and the atomization sleeve 103, and the atomization core assembly 105 is inserted into the end portion of the vent pipe 101 away from the upper cover 102,
  • the oil reservoir 104 is electrically connected to the oil hole 106.
  • the atomization core assembly 105 When applying the atomization assembly provided by the prior art, it is necessary to fill the oil storage chamber 104 with the oil, and in the process of filling the oil, the atomization core assembly 105 needs to be disassembled to expose the oil filling.
  • the hole 106 is such that the soot oil is injected into the oil reservoir 104 via the oil hole 106.
  • the defect of the atomization assembly shown in the prior art is that the smoke oil is easily leaked through the atomization core assembly 105, so that the user can easily smoke the smoke oil and the smoke oil; the smoke is easy to add when adding the smoke oil.
  • the oil is poured into the snorkel 101, the user can easily inhale the smoke oil located in the snorkel 101, which poses a hidden danger to the user's health; the end surface of the snorkel 101 is lower than the atomization sleeve 103.
  • the end face, the smoke oil easily leaks into the vent pipe 101 after being dropped into the oil storage chamber 104; when the atomizing core assembly 105 is squirted with smoke oil, a lot of smoke oil adheres to the atomization.
  • the core assembly 105 is easy to leak oil, which causes the user to have smoke oil on the hand during the disassembly process, which is inconvenient to use and affects the user experience.
  • the present invention provides a soot bottle and an electronic aerosolizer capable of storing a large amount of smoke oil and being convenient for use by a user.
  • the invention provides a smoke oil bottle for forming an electronic cigarette atomizer with an atomizing core assembly, comprising an oil bottle body and a sealing plug, wherein the oil bottle body is provided with an air outlet passage, an oil storage chamber and a receiving cavity
  • the gas outlet passage communicates with the accommodating chamber and the outer surface of the oil bottle body, and the oil chamber is disposed on the chamber wall of the accommodating chamber, and the accommodating chamber passes through the oil outlet hole and the reservoir
  • the oil chamber is electrically connected to enable the oil in the oil storage chamber to be led out to the accommodating chamber through the oil outlet hole, the sealing plug being detachably inserted in the Having a hole for accommodating the oil outlet hole, the sealing plug is for blocking the flow of the oil in the oil storage chamber into the accommodating cavity, and when atomizing the smoky oil is required, Removing the sealing plug from the accommodating cavity, and then inserting the atomizing core assembly into the accommodating cavity, and the smoke oil in the oil sump flows into the atomizing hole through the oil outlet hole Within the core
  • the oil bottle further includes an intake passage and an intake hole, wherein the intake passage and the oil storage chamber are respectively located on opposite sides of the outlet passage, and the intake passage and the inlet are respectively
  • the chamber is in communication with the intake passage and the outer surface of the oil bottle body such that the airflow outside the soot bottle can be used when smoking using the oil bottle
  • the atomizing orifice is then passed into the atomizing core assembly via the inlet passage to carry the mist atomized by the atomizing core assembly out of the outlet passage.
  • the oil bottle body comprises an upper cover, a lower cover, a filling block and a sealing member, wherein an end surface of the upper cover is connected to an end surface of the lower cover, and the upper cover is provided with the oil storage chamber
  • the inlet passage and the outlet passage, the oil reservoir extends to an end surface of the upper cover facing the lower cover
  • the lower cover is provided with the receiving cavity
  • the receiving cavity is
  • the opposite ends of the lower cover are in communication with each other, and one end surface of the accommodating cavity faces the air inlet passage and the air outlet passage, and the sealing member is clamped between the upper cover and the lower cover At the end face, the filling block is inserted in the lower cover.
  • the lower cover is disposed with an oil barrier wall toward an end surface of the upper cover, and the oil barrier wall is configured to divide the lower cover toward the end of the upper cover into the accommodating cavity and the guide
  • An oil chamber the oil guiding chamber is in communication with the oil storage chamber, a bottom of the chamber of the oil guiding chamber is provided with a positioning column, and the filling block is provided with a positioning hole corresponding to the position of the positioning rod, so as to When the positioning post is inserted inside the positioning hole, the filling block is disposed inside the oil guiding cavity.
  • the oil outlet hole is disposed through the oil barrier wall
  • the filling block is disposed with a first receiving cavity in a direction of the oil outlet hole, and a cavity of the first receiving cavity is opposite to the oil discharging hole, the first receiving cavity
  • the oil storage chamber is electrically connected to be disposed such that the oil in the oil storage chamber is electrically connected to the inside of the accommodating chamber via the first accommodating cavity and the oil outlet hole.
  • the lower cover is concavely disposed toward the end surface of the upper cover and the oil-retaining wall toward the end surface of the upper cover, and the upper cover protrudes toward the end surface of the lower cover Have a first resistance, and The first abutting portion can be inserted inside the second receiving cavity;
  • the seal is located inside the second receiving cavity, and the seal between the first abutting portion of the upper cover and the second receiving cavity of the lower cover is passed through the seal Cooperate.
  • the oil bottle further includes a suction nozzle, the suction nozzle includes a third receiving cavity disposed concavely, and an air outlet cavity communicating with the third receiving cavity, the air outlet cavity Determining an air passage conduction setting such that smoke atomized by the atomizing core assembly can be sucked by a user via the outlet passage and the outlet chamber;
  • the chamber wall of the third receiving cavity is disposed to abut against the outer peripheral surface of the upper cover away from the end of the lower cover.
  • the upper cover protrudes from the third receiving cavity with a second abutting portion, and the third abutting portion is convexly disposed opposite to the second abutting portion.
  • the second abutting portion and the third abutting portion are disposed to abut each other.
  • the air outlet of the air outlet is inserted into the air outlet, and the outer circumferential surface of the air outlet is concavely disposed with a first annular groove, and the first annular groove is internally provided with a first Sealing ring such that the first sealing ring is located between the first annular groove and the chamber wall of the outlet chamber to provide an interference fit between the first annular groove and the outlet chamber.
  • the air inlet hole includes a first sub-inlet hole and a second sub-inlet hole, and the first sub-inlet hole is located at an end of the nozzle away from the air outlet, the second a sub-inlet hole is located at an end of the upper cover near the lower cover, the first sub-inlet hole is electrically connected to the second sub-inlet hole, and the second sub-inlet hole is The inlet passage is set.
  • the nozzle rotates under the action of an external force, so that when the first sub-inlet hole and the second sub-inlet hole position are staggered from each other, the airflow outside the soot bottle cannot be Flowing through the first sub-inlet hole and the second sub-inlet hole to the inside of the intake passage to make the first sub-inlet hole and the second sub-inlet hole position correspond to each other
  • the airflow outside the oil-tank bottle sequentially flows through the first sub-inlet hole and the second sub-inlet hole to the inside of the intake passage.
  • the lower cover protrudes from the outer circumferential surface of the upper cover with a fourth abutting portion
  • the upper cover is concavely disposed with an abutting groove toward the outer circumferential surface of the lower cover, and the fourth The abutting portion is matched with the abutting groove, so that when the first abutting portion is inserted inside the second receiving cavity, the fourth abutting portion is inserted in the abutting Inside the groove.
  • the sealing plug includes a cylindrical body portion and a limiting ring extending from an outer circumferential surface of the body portion, the body portion is inserted into the receiving cavity, and the body portion is Resisting on the oil outlet hole, the limiting ring abuts on one end surface of the lower cover.
  • an oil passage gap is formed between the filling block and the lower cover, and at least one oil filling port is disposed through the lower cover, so that the smoke oil passes through the fuel filler port in sequence when adding the oil Illustrating an oil gap and flowing the oil guiding chamber into the oil reservoir;
  • the oil bottle body further includes a plug plug, and the plug plug is disposed with a plug made of an elastic material extending in a direction toward the fuel filler port, and the plug is disposed corresponding to the position of the fuel filler port. So that when the plug is inserted inside the fuel filler, the plug is in interference fit with the fuel filler, the plug is used to prevent the oil in the oil reservoir from passing through the fueling The mouth leaks to the outside of the oil bottle.
  • the present invention provides an electronic cigarette atomizer comprising the oil bottle of any one of claims 1 to 14 and an atomizing core assembly interposed in the accommodating cavity, the atomizing core assembly comprising a mist a fourth receiving cavity is disposed at an end of the air outlet passage, and the fourth receiving cavity is respectively disposed to be electrically connected to the air outlet channel and the air inlet channel, A heating wire assembly is fixedly inserted into the fourth receiving cavity.
  • an atomizing cover is inserted and fixed to the cavity of the fourth receiving cavity, and a first through hole is disposed through the atomizing cover, and the first through hole of the atomizing cover is respectively Determining that the air passage and the intake passage are conductively disposed such that a flow of air outside the oil sump is sequentially passed through the intake passage and the first through hole is electrically connected to the inside of the fourth accommodating cavity to And causing the airflow to drive the mist atomized by the heating wire assembly to conduct to the air outlet passage through the first through hole.
  • the atomizing core assembly further includes an oil guiding cotton, the oil guiding cotton is inserted at a bottom of the atomizing sleeve, and the oil guiding cotton is disposed opposite to the electric heating wire assembly, and the The oil guiding cotton is disposed opposite to the oil outlet hole such that the oil in the oil storage chamber can be electrically connected to the oil guiding cotton via the oil outlet hole.
  • the atomizing sleeve is disposed with a second through hole in a direction of the oil outlet hole, and an aperture of the second through hole is opposite to an aperture of the oil outlet hole, and the oil guiding
  • An extension arm is disposed in a direction of the oil outlet hole, and the extension arm is inserted through the second through hole and fixed inside the orifice of the oil outlet hole to be located in the oil storage chamber Internal smoke oil can be conducted to the oil guiding cotton via the extension arm.
  • the outer circumferential surface of the atomization sleeve is provided with a second annular groove, and the second annular groove is internally inserted and fixed with a second sealing ring, so that the second sealing ring is located at the Between the two annular grooves and the cavity wall of the accommodating cavity, an interference fit between the atomizing sleeve and the accommodating cavity.
  • a bottom portion of the fourth receiving cavity of the atomization sleeve is provided with a third through hole and a fourth through hole, and the third through hole is internally inserted and fixed with a first electrode, and the fourth a second electrode is inserted into the through hole, and a first insulating ring is interposed between the third through hole and the first electrode, and the fourth through hole and the second electrode are interposed therebetween.
  • a second insulating ring is fixed, and the first electrode and the second electrode are electrically connected to the heating wire assembly, respectively.
  • the invention provides a smoke oil bottle and an electronic cigarette atomizer
  • the oil bottle includes an oil bottle body and a sealing plug, wherein the oil bottle body is provided with an air outlet passage, an oil storage chamber and a receiving cavity, wherein the volume is provided
  • An oil outlet hole is disposed on the cavity wall of the cavity, and the accommodating cavity is electrically connected to the oil storage cavity through the oil outlet hole, and the sealing plug is detachably inserted into the accommodating cavity and covered
  • the sealing plug is configured to block the oil in the oil storage chamber from flowing into the accommodating cavity
  • the tobacco oil bottle shown in the invention can be used to seal and store the smoke oil
  • the sealing plug can be taken out, and then the atomizing core assembly is inserted into the oil bottle to enable the atomizing core assembly to atomize the oil to form
  • the smoke, the smoke oil bottle shown in the present invention cooperates with the atomizing core assembly to form an electronic cigarette atomizer, and the user does not need to carry an additional oil storage
  • FIG. 1 is a schematic cross-sectional structural view of an atomizing assembly provided by the prior art
  • FIG. 2 is a schematic view showing an explosive connection structure of an atomizing assembly provided by the prior art
  • FIG. 3 is a schematic view showing the overall structure of an embodiment of a smoke oil bottle provided by the present invention.
  • FIG. 4 is a schematic cross-sectional structural view showing an embodiment of a smoke oil bottle provided by the present invention.
  • FIG. 5 is a schematic cross-sectional exploded connection structure of an embodiment of the present invention.
  • Figure 6 is a schematic view showing an explosion connection structure of an embodiment of the tobacco oil bottle provided by the present invention:
  • FIG. 7 is a schematic cross-sectional view of an exploded connection structure of an embodiment of an electronic cigarette atomizer provided by the present invention.
  • FIG. 8 is a schematic diagram of an explosion connection structure of an embodiment of an electronic cigarette atomizer according to the present invention:
  • FIG. 9 is a schematic cross-sectional view showing an overall structure of an embodiment of an electronic cigarette atomizer according to the present invention.
  • FIG. 10 is a schematic overall structural view of an embodiment of an electronic cigarette atomizer provided by the present invention.
  • FIG. 11 is a schematic view showing an explosion connection structure of another embodiment of the tobacco oil bottle provided by the present invention.
  • FIG. 12 is a cross-sectional structural view showing another embodiment of an electronic cigarette atomizer according to the present invention.
  • FIG. 13 is a schematic view showing an explosion connection structure of an embodiment of an atomization core assembly provided by the present invention.
  • FIG. 14 is a cross-sectional structural view showing another embodiment of an electronic cigarette atomizer according to the present invention.
  • Embodiment 1 This embodiment provides an oil bottle that can facilitate the user to add smoke oil.
  • FIG. 3 is a schematic view showing the overall structure of an embodiment of the present invention.
  • FIG. 5 is a schematic cross-sectional view showing an embodiment of a smoke oil bottle according to an embodiment of the present invention.
  • the soot bottle provided by the present invention is used to cooperate with an atomizing core assembly to form an electronic aerosolizer.
  • the soot bottle is capable of storing the soot oil
  • the atomizing core assembly is capable of atomizing the soot bottle when the soot bottle is engaged with the atomizing core assembly to form the electronic aerosolizer
  • the smoke oil forms a smoke that can be used by the user.
  • the oil bottle includes an oil bottle body 200 and a sealing plug 201.
  • the overall shape of the oil bottle body 200 shown in this embodiment can be seen in FIG. 3. It should be clarified that the overall shape of the oil bottle body 200 is not limited in this embodiment, for example, the oil bottle body.
  • the 200 may be a regular shape or an irregular shape or the like as long as the oil bottle can be combined with the atomizing core assembly to form an electronic aerosolizer.
  • an air outlet passage 202, an oil storage chamber 203, and a receiving cavity 204 are disposed in the oil bottle body 200.
  • the air outlet passage 202 communicates with the accommodating cavity 204 and the outer surface of the oil bottle body 200.
  • one end of the air outlet channel 202 is electrically connected to the accommodating cavity 204, and the air outlet channel The other end of the 202 is electrically connected to the outer surface of the oil bottle body 200.
  • the specific structure of the oil storage chamber 203 is not limited in this embodiment, as long as the oil storage chamber 203 can store the oil.
  • An oil outlet hole 205 is defined in the cavity wall of the accommodating cavity 204, and the accommodating cavity 204 is electrically connected to the oil reservoir 203 through the oil outlet hole 205, that is, through the oil outlet hole 205.
  • the accommodating cavity 204 is in communication with the oil reservoir 203.
  • the soot bottle shown in this embodiment has four states of use, and one state of use is shown in Figure 4:
  • the sealing plug 201 is detachably inserted into the accommodating cavity 204 and covers the opening of the oil outlet 205.
  • the sealing plug 201 when the sealing plug 201 is inserted into the accommodating cavity 204, the outer peripheral wall of the sealing plug 201 is abutted on the opening of the oil discharging hole 205, that is, the sealing. There is no gap between the plug 201 and the orifice of the oil outlet 205, which can be electrically connected to the outlet passage 202, so that the sealing plug 201 can block the flow of the oil in the oil reservoir 203 into the capacity.
  • the chamber 204 and the outlet passage 202 are disposed.
  • FIG. 6 is a schematic diagram of an explosion connection structure of an embodiment of the smoke oil bottle provided by the present invention:
  • the user can take out the sealing plug 201 from the accommodating cavity 204 to make the accommodating cavity 204 vacate.
  • FIG. 7 is a schematic cross-sectional exploded connection structure of an embodiment of the electronic cigarette atomizer provided by the present invention
  • FIG. 8 is an electronic aerosolization provided by the present invention.
  • the user can move the atomizing core assembly 300 in a direction toward the accommodating cavity 204 until the atomizing core assembly 300 is inserted into the device.
  • the interior of the cavity 204 is described.
  • FIG. 9 is a schematic overall cross-sectional structural view of an embodiment of the electronic cigarette atomizer provided by the present invention
  • FIG. 10 is an electronic aerosolization provided by the present invention.
  • the oil stored in the oil storage chamber 203 can flow into the atomizing core assembly 300 via the oil outlet hole 205, and the atomizing core assembly 300 can atomize the oil to form smoke, and The mist atomized by the atomizing core assembly 300 can be exported via the outlet passage 202 to be sucked by the user.
  • the smoke oil can be sealed and stored, and when the user needs to smoke the smoke, the sealing plug 201 can be taken out, and then the atomization core assembly 300 is inserted into the smoke oil.
  • the oil bottle shown in this embodiment can increase the amount of stored soot, when the user does not need to smoke the smoke.
  • the soot oil bottle can be used for storing the soot oil.
  • the soot oil stored in the soot bottle can increase the duration of the user's use, avoid frequent addition of the smoke oil by the user, and is convenient to use and better. Avoid smoke leaks.
  • Embodiment 2 This embodiment describes in detail the specific structure of the oil bottle.
  • the oil bottle also includes an intake passage 206 and an intake hole 207.
  • the intake passage 206 and the oil storage chamber 203 are respectively located on opposite sides of the air outlet passage 202, and the intake passage 206 communicates with the accommodating cavity 204, and the air inlet hole 207 It is in communication with the intake passage 206 and the outer surface of the oil bottle body 200.
  • one end of the air inlet hole 207 is electrically connected to the air inlet passage 206, and the other end of the air inlet hole 207 is electrically connected to an outer surface of the oil bottle body 200.
  • the airflow outside the oil bottle can flow into the intake passage 206 through the air inlet 207. And then entering the atomizing core assembly 300 via the intake passage 206 for taking the mist atomized by the atomizing core assembly 300 out of the outlet passage 202.
  • FIG. 11 is a schematic diagram of an explosion connection structure of another embodiment of the tobacco oil bottle provided by the present invention.
  • the oil bottle includes: an upper cover 208, a lower cover 209, a filling block 210, and a sealing member 211.
  • One end surface of the upper cover 208 is connected to one end surface of the lower cover 209.
  • the manner of connecting the upper cover 208 and the lower cover 209 is not limited.
  • the upper cover 208 and the lower cover 209 may be connected in a plug-in manner, or the upper cover 208 and The lower cover 209 can be connected by screwing, or the upper cover 208 and the lower cover 209 can pass the snap card
  • the upper cover 208 and the lower cover 209 may be integrally formed.
  • the upper cover 208 is provided with the oil storage chamber 203, the air inlet passage 206 and the air outlet passage 202, and the oil storage chamber 203 extends to an end surface of the upper cover 208 facing the lower cover 209.
  • the lower cover 209 is provided with the accommodating cavity 204.
  • the accommodating cavity 204 is disposed through the lower cover 209 in the longitudinal direction of the oil sump so that the accommodating cavity 204 and the lower cover are disposed along the longitudinal direction of the oil bottle The opposite ends of the position of 209 are in communication.
  • One end surface of the accommodating cavity 204 faces the intake passage 206 and the outlet passage 202.
  • the sealing member 211 is clamped at the end surface of the upper cover 208 and the lower cover 209, and the sealing member 211 is configured to prevent the oil stored in the oil storage chamber 203 from leaking to the accommodating cavity 204. Leak inside or leak to the outside of the oil bottle.
  • the filler block 210 is inserted into the lower cover 209.
  • the lower cover 209 is disposed with an oil barrier wall 212 facing the end surface of the upper cover 208, and the oil barrier wall 212 is configured to divide the lower cover 209 toward the end of the upper cover 208 into the receiving cavity. 204 and oil guiding chamber 213.
  • the cavity of the oil guiding chamber 213 faces the oil reservoir 203 to communicate the oil guiding chamber 213 with the oil reservoir 203.
  • the bottom of the cavity of the oil guiding chamber 213 is provided with a positioning post 214, and the positioning post 214 extends along the longitudinal direction of the oil bottle.
  • the filling block 210 is provided with a positioning hole 215 corresponding to the position of the positioning post 214, so that when the positioning post 214 is inserted inside the positioning hole 215, the filling block 210 is disposed at the oil guiding Inside the cavity 213.
  • the oil drain hole 205 is provided through the oil barrier wall 212;
  • a first receiving cavity 216 is disposed in a direction of the oil-filling hole 205, and a cavity of the first receiving cavity 216 is opposite to the oil-dissipating hole 205.
  • An accommodating cavity 216 is electrically connected to the oil reservoir 203, so that the smog in the oil reservoir 203 is sequentially connected to the first accommodating cavity 216 and the oil outlet 205 to The accommodating cavity 204 is inside.
  • the oil that is located in the oil reservoir 203 does not directly flow to the oil outlet. 205, but need to pass through the first accommodating cavity 216, so that the smoky oil is not excessively transferred into the accommodating cavity 204, and the first accommodating cavity can ensure uniform and proper delivery of the smoky oil to the smog
  • the inside of the accommodating cavity 204 is configured to enable the atomizing core assembly 300 to be atomized to carry out atomization, thereby avoiding the situation that the atomizing core component cannot be completely atomized due to excessive smoky oil, and the smoke leakage occurs, thereby avoiding the situation.
  • the user smokes the smoke oil.
  • the lower cover 209 of the embodiment has a second receiving cavity 217 recessed toward the end surface of the upper cover 208 and the oil-retaining wall 212 toward the end surface of the upper cover 208.
  • the upper cover 208 a first abutting portion 218 is protruded toward the end surface of the lower cover 209, and the first abutting portion 218 can be inserted inside the second receiving cavity 217;
  • the seal 211 is located inside the second receiving cavity 217, and the first abutting portion 218 of the upper cover 208 and the second receiving portion of the lower cover 209 are caused by the sealing member 211 An interference fit between the cavities 217.
  • the oil bottle further includes a suction nozzle 219 including a third receiving cavity 220 disposed concavely and an air outlet cavity 221 communicating with the third receiving cavity 220.
  • the air outlet chamber 221 is electrically connected to the air outlet passage 202 to enable the mist atomized by the atomizing core assembly 300 located in the receiving cavity 204 to pass through the air outlet passage 202 and the air outlet.
  • the cavity 221 is ingested by the user.
  • the chamber wall of the third receiving cavity 220 is disposed to abut against the outer peripheral surface of the upper cover 208 away from the end of the lower cover 209.
  • a second abutting portion 222 is protruded from the upper cover 208 toward the third receiving cavity 220.
  • the third abutting portion 223 is convexly disposed opposite to the second abutting portion 222.
  • the second abutting portion 222 and the third abutting portion 223 are disposed to abut each other when the suction nozzle 219 is sleeved on the outer circumferential surface of the upper cover 208.
  • the air outlet 224 of the air outlet passage 202 is inserted into the air outlet chamber 221, and the outer circumferential surface of the air outlet 224 is concavely disposed with a first annular groove 225, and the first annular groove 225 is internally provided with a first seal ring 226 such that the first seal ring 226 is located between the first annular groove 225 and the outlet chamber 221 such that the first annular groove 225 and the outlet chamber 221 An interference fit between the walls of the cavity.
  • the intake hole 207 includes a first sub-inlet hole 2071 and a second sub-inlet hole 2072.
  • the first sub-inlet hole 2071 is located at an end of the nozzle 219 away from the air outlet 224, and the second sub-inlet hole 2072 is located at an end of the upper cover 208 near the lower cover 209.
  • the first sub-inlet hole 2071 is electrically connected to the second sub-inlet hole 2072, and the second sub-inlet hole 2072 is electrically connected to the intake passage 206.
  • the external The airflow can be electrically conducted to the atomizing core assembly 300 located in the accommodating cavity 204 via the first sub-inlet hole 2071, the second sub-inlet hole 2072, and the intake passage 206 in order to The airflow is enabled to circulate the mist atomized by the atomizing core assembly 300 along the guide of the air outlet passage 202 to be smoked by the user through the air outlet chamber 221.
  • the suction nozzle 219 is rotatable under the action of an external force, so that when the positions of the first sub-inlet hole 2071 and the second sub-inlet hole 2072 are offset from each other, the soot bottle An external airflow cannot flow through the first sub-inlet hole 2071 and the second sub-inlet hole 2072 to the inside of the intake passage 206.
  • the user can rotate the suction nozzle 219 to make the first sub-inlet hole 2071 and the first portion without the need for suction of smoke.
  • the positions of the two sub-inlet holes 2072 are offset from each other, so that even if the atomizing core assembly 300 is disposed in the accommodating cavity 204, the atomizing core assembly 300 does not atomize the smoke oil, thereby avoiding mistakes.
  • a fourth abutting portion 227 is protruded from the outer cover surface of the lower cover 208 toward the outer peripheral surface of the upper cover 208, and the upper cover 208 is concavely disposed with a resisting recess 228 toward the outer peripheral surface of the lower cover 209, and the The fourth abutting portion 227 is matched with the abutting groove 228 such that when the first abutting portion 218 is inserted inside the second receiving cavity 217, the fourth abutting portion 227 The inside of the resisting groove 228 is inserted.
  • the sealing plug 201 includes a cylindrical body portion 2011 and a retaining ring 2012 extending from an outer peripheral surface of one end of the body portion 2011.
  • the body portion 2011 is inserted into the accommodating cavity 204, and the body portion 2011 is abutted on the oil outlet hole 205, and the body portion 2011 can prevent the oil storage portion.
  • the smoke oil in the cavity 203 leaks into the accommodating cavity 204.
  • the limiting ring 2012 is abutted on one end surface of the lower cover 209.
  • the limiting ring 2012 protrudes from one end surface of the lower cover 209, it is convenient for the user to An external force is applied to the limiting ring 2012 to insert the sealing plug 201 into or out of the accommodating cavity 204.
  • an oil passage gap 229 is formed between the filling block 210 and the lower cover 209, and at least one fuel filler port 230 is disposed through the lower cover 209.
  • the bottle mouth of the fuel bottle may be aligned with the fuel filler port 230, so that the smoke oil in the fuel bottle is sequentially passed through the fuel filler port 230, the oil passage gap 229, and the The oil guiding chamber 213 is circulated into the oil reservoir 203.
  • the use of the oil-tank bottle shown in this embodiment does not leak the smoke oil into the air outlet passage 202 during the process of adding the smoke oil, thereby effectively avoiding the possibility of the user smoking the smoke oil, and adding the smoke oil.
  • the user does not need to operate the atomizing core assembly 300, thereby improving the convenience in adding the smoke oil, and in the process of adding the smoke oil, the user does not touch the smoke oil, thereby improving the user experience. .
  • the oil bottle body 200 further includes a plug 231.
  • the oil plug 231 is disposed with a plug 232 made of an elastic material extending in a direction toward the fuel filler port 230, and the plug 232 is disposed corresponding to the position of the fuel filler port 230, and the plug 232 is disposed.
  • the number is equal to the number of the fuel filler ports 230.
  • the plug 232 When the plug 232 is inserted inside the fuel filler port 230, the plug 232 is interference fit with the fuel filler port 230, and the plug 232 is used to prevent the oil in the oil reservoir 203. Leakage to the outside of the soot bottle via the fuel filler port 230.
  • the oil plug 231 can be detached from the fuel filler port 230, and after the smoke oil is added, the The oil plug 231 is inserted into the fuel filler port 230 to effectively prevent leakage of the oil.
  • soot bottle body 200 is not limited to the above structure, and as long as the outlet passage, the oil storage chamber and the accommodating chamber are provided, the chamber wall of the accommodating chamber is provided with an oil outlet hole, which will The sealing plug is taken out from the accommodating cavity, and then the atomizing core assembly is inserted into the accommodating cavity to atomize the smoky oil. Therefore, the structure thereof is not specifically limited.
  • Embodiment 3 This embodiment provides an electronic cigarette atomizer, the electronic cigarette atomizer including smoke An oil bottle and an atomizing core assembly 300 interposed in the accommodating cavity 204.
  • FIG. 9 is a schematic cross-sectional structural view of another embodiment of the electronic aerosolizer according to the present invention
  • FIG. 13 is a schematic diagram of the atomization core assembly provided by the present invention.
  • Embodiments A schematic diagram of an explosive connection structure.
  • the atomizing core assembly 300 includes an atomizing sleeve 301, the atomizing sleeve 301 is provided with a fourth receiving cavity 302 toward the end of the air outlet passage 202, and the fourth receiving cavity 302 is respectively associated with the The air outlet passage 202 and the air inlet passage 206 are electrically connected, and the electric heating wire assembly 303 is fixedly inserted into the fourth receiving cavity 302.
  • the heating wire assembly 303 shown in this embodiment includes a glass fiber line 3031 and a heating wire 3032 wound around the glass fiber line 3031.
  • an atomizing cover 304 is inserted and fixed at a cavity of the fourth receiving cavity 302.
  • FIG. 14 is a schematic cross-sectional structural view of the electronic aerosolizer when the atomizing cover 304 is not disposed.
  • the electronic cigarette atomizer is provided with the atomizing cover 304 as an example for exemplary explanation.
  • a first through hole 305 is disposed through the atomizing cover 304, and the first through hole 305 of the atomizing cover 304 is respectively disposed to be electrically connected to the air outlet passage 202 and the air inlet passage 206 to make the smoke
  • the airflow outside the oil bottle is sequentially conducted to the inside of the fourth receiving cavity 302 through the air inlet passage 206 and the first through hole 305, so that the airflow drives the smoke atomized by the heating wire assembly 303 to pass through.
  • the first through hole 305 is electrically connected to the air outlet passage 202.
  • the atomizing core assembly 300 further includes an oil guiding cotton 306, the oil guiding cotton 306 is inserted at the bottom of the atomizing sleeve 301, and the oil guiding cotton 306 is placed against the heating wire assembly 303, and The oil guiding cotton 306 is disposed opposite to the oil outlet hole 205 such that the oil in the oil storage chamber 203 can be electrically connected to the oil guiding cotton 306 via the oil outlet hole 205.
  • the smoke oil discharged through the oil outlet hole 205 is first transmitted to the oil guiding cotton 306, thereby further preventing excessive smoke oil from being transmitted to the heating wire assembly. 303, further preventing the leakage of the soot oil to the outlet passage 202, and the guiding oil
  • the cotton 306 is in uniform contact with the electric heating wire assembly 303, so that the oil guiding cotton 306 can uniformly conduct the lubricating oil to the electric heating wire assembly 303, thereby causing the electric heating wire assembly 303 to be atomized.
  • the smoke is even, which enhances the taste of the smoke smoked by the user.
  • a second through hole 307 is disposed in the direction of the oil outlet 205, and an aperture of the second through hole 307 is opposite to the aperture of the oil outlet 205.
  • An extension arm 308 is disposed in the direction of the oil vent 205, and the extension arm 308 is inserted into the aperture of the oil outlet 205 through the second through hole 307 to
  • the smoke oil located inside the oil reservoir 203 can be electrically connected to the oil guide 306 via the extension arm 308.
  • the outer circumferential surface of the atomization sleeve 301 is provided with a second annular groove 309, and the second annular groove 309 is internally inserted with a second sealing ring 310 so that the second sealing ring 310 is located
  • the second annular groove 309 and the cavity wall of the accommodating cavity 204 are arranged to provide an interference fit between the atomization sleeve 301 and the accommodating cavity 204.
  • the bottom of the fourth receiving cavity 302 of the atomizing sleeve 301 is provided with a third through hole 311 and a fourth through hole 312 , and the third through hole 311 .
  • the first electrode 313 is fixed to the internal insertion, and the second electrode 314 is inserted into the fourth through hole 312.
  • a first insulating ring 315 is interposed between the third through hole 311 and the first electrode 313, and a second insulating ring is interposed between the fourth through hole 312 and the second electrode 314. 316, and the first electrode 313 and the second electrode 314 are electrically connected to the heating wire assembly 303, respectively.
  • the first electrode 313 and the second electrode 314 are electrically connected to the power supply assembly to obtain electrical energy.

Abstract

一种烟油瓶以及电子烟雾化器,烟油瓶包括油瓶本体(200)及密封塞(201),油瓶本体(200)内设置有出气通道(202)、储油腔(203)及容置腔(204),容置腔(204)的腔壁上设置有出油孔(205),容置腔(204)通过出油孔(205)与储油腔(203)导通,密封塞(201)可拆卸地插设在容置腔(204)内并盖设出油孔(205)的孔口,在用户需要吸食烟雾时,可将密封塞(201)取出,然后将雾化芯组件(300)插设在烟油瓶内,以使雾化芯组件(300)能够将烟油雾化以形成烟雾。烟油瓶能够提升所存储的烟油量,在用户不需要抽吸烟雾时,烟油瓶可用于存储烟油,在用户需要抽吸烟雾时,烟油瓶所存储的烟油能够提升用户使用的时长,避免用户频繁的添加烟油,便于使用及较好地避免烟油泄露。

Description

一种烟油瓶以及电子烟雾化器 技术领域
本发明涉及电子烟领域,尤其涉及的是一种烟油瓶以及电子烟雾化器。
背景技术
现有技术提供了一种能够雾化烟油以形成烟雾的雾化组件,以下结合图1所示对现有技术所提供的雾化组件的具体结构进行详细说明,所述雾化组件包括吸嘴100、与所述吸嘴100导通设置的通气管101,与所述通气管101端部涨紧配合的上盖102,所述通气管101插设在雾化套103内部,且所述通气管101和所述雾化套103之间形成有能够存储烟油的储油腔104,所述通气管101远离所述上盖102的端部插设有雾化芯组件105,与所述储油腔104导通设置有注油孔106。
在应用现有技术所提供的雾化组件时,需要往所述储油腔104内填充烟油,在填充烟油的过程中,需要将所述雾化芯组件105进行拆卸以露出所述注油孔106,从而使得烟油经由所述注油孔106注入所述储油腔104。
现有技术所示的雾化组件的缺陷在于:烟油容易通过所述雾化芯组件105渗漏出来,以使用户容易吸食到烟油以及沾到烟油;在添加烟油时容易将烟油倒入所述通气管101,则用户极易吸食到位于所述通气管101内的烟油,对用户的身体健康造成隐患;所述通气管101的端面低于所述雾化套103的端面,则烟油滴入所述储油腔104内后容易溢出流入所述通气管101中;旋出所述雾化芯组件105加烟油时,会有很多烟油附着在所述雾化芯组件105上,且容易漏油,造成客户拆卸过程中手上沾有烟油,不方便使用,影响用户体验。
发明内容
本发明提供了一种能够存储大量烟油且能够便于用户使用的烟油瓶以及电子烟雾化器。
本发明提供了一种烟油瓶,用于与雾化芯组件配合形成电子烟雾化器,包括油瓶本体及密封塞,所述油瓶本体内设置有出气通道、储油腔及容置腔,所述出气通道与所述容置腔及油瓶本体外表面相连通,所述容置腔的腔壁上设置有出油孔,所述容置腔通过所述出油孔与所述储油腔导通,以使通过所述出油孔能够将储油腔内的烟油导出至所述容置腔,所述密封塞可拆卸地插设在所述 容置腔内并盖设所述出油孔的孔口,所述密封塞用于阻碍所述储油腔内的烟油流入所述容置腔内,并在当需要雾化烟油时,将所述密封塞从所述容置腔内取出,然后将所述雾化芯组件插入所述容置腔内,所述储油腔内的烟油经所述出油孔流入所述雾化芯组件内,烟油经所述雾化芯组件雾化后从所述出气通道排出。
可选的:所述烟油瓶还包括进气通道以及进气孔,所述进气通道及所述储油腔分别位于所述出气通道的相对两侧,所述进气通道与所述容置腔相连通,所述进气孔与所述进气通道及所述油瓶本体的外表面相连通,以使在使用所述烟油瓶吸烟时,位于所述烟油瓶外部的气流能够通过所述进气孔,然后经由所述进气通道进入所述雾化芯组件内,以将所述雾化芯组件所雾化的烟雾从所述出气通道带出。
可选的:所述油瓶本体包括上盖、下盖、填充块及密封件,所述上盖的一端端面与所述下盖的一端端面相连,所述上盖设置有所述储油腔、所述进气通道及所述出气通道,所述储油腔延伸至所述上盖面向所述下盖的一端端面,所述下盖设置有所述容置腔,所述容置腔与所述下盖的位置相对的两端面相连通,所述容置腔的一端端面面向所述进气通道及所述出气通道,所述密封件夹持在所述上盖与所述下盖的端面处,所述填充块插设在所述下盖内。
可选的:所述下盖朝向所述上盖的端面设置有隔油壁,所述隔油壁用于将所述下盖朝向所述上盖的端部划分为所述容置腔和导油腔,所述导油腔与所述储油腔连通,所述导油腔的腔底部设置有定位柱,所述填充块设置有与所述定位柱位置对应的定位孔,以使当所述定位柱插设在所述定位孔内部时,所述填充块设置在所述导油腔内部。
可选的:贯穿所述隔油壁设置有所述出油孔;
所述填充块朝向所述出油孔的方向设置有第一容置凹腔,且所述第一容置凹腔的腔口与所述出油孔位置相对,所述第一容置凹腔与所述储油腔导通设置,以使所述储油腔内的烟油依次经由所述第一容置凹腔以及所述出油孔导通至所述容置腔内部。
可选的:所述下盖朝向所述上盖的端面以及所述隔油壁朝向所述上盖的端面凹设有第二容纳凹腔,所述上盖朝向所述下盖的端面凸设有第一抵持部,且 所述第一抵持部能够插设在所述第二容纳凹腔内部;
所述密封件位于所述第二容纳凹腔内部,且通过所述密封件使得所述上盖的所述第一抵持部与所述下盖的所述第二容纳凹腔之间过盈配合。
可选的:所述烟油瓶还包括有吸嘴,所述吸嘴包括内凹设置的第三容纳凹腔以及与所述第三容纳凹腔相连通的出气腔,所述出气腔与所述出气通道导通设置,以使所述雾化芯组件所雾化的烟雾能够以及经由所述出气通道以及所述出气腔被用户吸食;
所述第三容纳凹腔的腔壁与所述上盖远离所述下盖的端部的外周面抵持设置。
可选的:所述上盖朝向所述第三容纳凹腔凸设有第二抵持部,所述吸嘴与所述第二抵持部位置相对处凸设有第三抵持部,以使当所述吸嘴套设在所述上盖的外周面上时,所述第二抵持部和所述第三抵持部相互抵持设置。
可选的:所述出气通道的出气口插设在所述出气腔内部,且所述出气口的外周面内凹设置有第一环形凹槽,所述第一环形凹槽内部设置有第一密封环,以使所述第一密封环位于所述第一环形凹槽和所述出气腔的腔壁之间,以使所述第一环形凹槽和所述出气腔之间过盈配合。
可选的:所述进气孔包括第一子进气孔和第二子进气孔,所述第一子进气孔位于所述吸嘴远离所述出气口的端部,所述第二子进气孔位于所述上盖靠近所述下盖的端部,所述第一子进气孔与所述第二子进气孔导通设置,且所述第二子进气孔与所述进气通道导通设置。
可选的:所述吸嘴在外力的作用下旋转,以使当所述第一子进气孔和所述第二子进气孔位置相互错开时,则所述烟油瓶外部的气流无法通过所述第一子进气孔和所述第二子进气孔流通至所述进气通道内部,以使当所述第一子进气孔和所述第二子进气孔位置相互对应时,则所述烟油瓶外部的气流依次通过所述第一子进气孔和所述第二子进气孔流通至所述进气通道内部。
可选的:所述下盖朝向所述上盖的外周面凸设有第四抵持部,所述上盖朝向所述下盖的外周面凹设有抵持凹槽,且所述第四抵持部与所述抵持凹槽匹配设置,以使当所述第一抵持部插设在所述第二容纳凹腔内部时,所述第四抵持部插设在所述抵持凹槽内部。
可选的:所述密封塞包括柱形的本体部以及由所述本体部的一端外周面延伸形成的限位环,所述本体部插设在所述容置腔内,且所述本体部抵持在所述出油孔上,所述限位环抵持在所述下盖的一端端面上。
可选的:所述填充块和所述下盖之间形成有过油间隙,贯穿所述下盖设置有至少一个加油口,以使在添加烟油时烟油依次经由所述加油口、所述过油间隙以及所述导油腔流通至所述储油腔内;
所述油瓶本体还包括堵油塞,所述堵油塞沿朝向所述加油口的方向延伸设置有由弹性材质制成的堵头,且所述堵头与所述加油口位置对应设置,以使当所述堵头插设在所述加油口内部时,所述堵头与所述加油口过盈配合,所述堵头用于防止所述储油腔内的烟油经由所述加油口泄漏至所述烟油瓶的外部。
本发明提供了一种电子烟雾化器,包括权利要求1至14任一项所述的烟油瓶以及插设在所述容置腔内的雾化芯组件,所述雾化芯组件包括雾化套,所述雾化套朝向所述出气通道的端部设置有第四容纳凹腔,且所述第四容纳凹腔分别与所述出气通道和所述进气通道导通设置,所述第四容纳凹腔内部插设固定有电热丝组件。
可选的:所述第四容纳凹腔的腔口处插设固定有雾化盖,且贯穿所述雾化盖设置有第一通孔,所述雾化盖的第一通孔分别与所述出气通道和所述进气通道导通设置,以使所述烟油瓶外部的气流依次经过所述进气通道以及所述第一通孔导通至所述第四容纳凹腔内部,以使气流带动所述电热丝组件所雾化的烟雾经过所述第一通孔导通至所述出气通道。
可选的:所述雾化芯组件还包括导油棉,所述导油棉插设在所述雾化套底部,且所述导油棉与所述电热丝组件抵持设置,且所述导油棉与所述出油孔位置相对设置,以使位于所述储油腔内的烟油能够经由所述出油孔导通至所述导油棉上。
可选的:所述雾化套朝向所述出油孔的方向设置有第二通孔,且所述第二通孔的孔口与所述出油孔的孔口相对设置,所述导油棉朝向所述出油孔的方向延伸设置有延伸臂,且所述延伸臂穿过所述第二通孔插设固定在所述出油孔的孔口内部,以使位于所述储油腔内部的烟油能够经由所述延伸臂导通至所述导油棉上。
可选的:所述雾化套的外周面设置有第二环形凹槽,且所述第二环形凹槽内部插设固定有第二密封环,以使所述第二密封环位于所述第二环形凹槽和容置腔的腔壁之间,以使所述雾化套和所述容置腔之间过盈配合。
可选的:所述雾化套的所述第四容纳凹腔的底部设置有第三通孔和第四通孔,所述第三通孔内部插设固定有第一电极,所述第四通孔内部插设有第二电极,且所述第三通孔和所述第一电极之间插设固定有第一绝缘环,所述第四通孔和所述第二电极之间插设固定有第二绝缘环,且所述第一电极和所述第二电极分别与所述电热丝组件电连接。
本发明提供了一种烟油瓶以及电子烟雾化器,所述烟油瓶包括油瓶本体及密封塞,所述油瓶本体内设置有出气通道、储油腔及容置腔,所述容置腔的腔壁上设置有出油孔,所述容置腔通过所述出油孔与所述储油腔导通,所述密封塞可拆卸地插设在所述容置腔内并盖设所述出油孔的孔口,所述密封塞用于阻碍所述储油腔内的烟油流入所述容置腔内、采用本发明所示的烟油瓶,能够密封存储有烟油,在用户需要吸食烟雾时,可将所述密封塞取出,然后将所述雾化芯组件插设在所述烟油瓶内,以使所述雾化芯组件能够将烟油雾化以形成烟雾,本发明所示的烟油瓶与雾化芯组件配合便组成电子烟雾化器,用户无需携带额外的烟油存储装置,因而便于用户使用;由于在使用前烟油瓶没有插入雾化芯组件,并通过可拆卸的密封塞插设在所述容置腔内以密封烟油,因而避免了在非使用状态时,烟油容易通过所述雾化芯渗漏出来的情况;此外,本发明能够提升所存储的烟油量,在用户不需要抽吸烟雾时,所述烟油瓶可用于存储烟油,在用户需要抽吸烟雾时,所述烟油瓶所存储的烟油能够提升用户使用的时长,避免用户频繁的添加烟油。
附图说明
图1为现有技术所提供的雾化组件的剖面结构示意图;
图2为现有技术所提供的雾化组件的爆炸连接结构示意图;
图3为本发明所提供的烟油瓶的一种实施例整体结构示意图;
图4为本发明所提供的烟油瓶的一种实施例剖面结构示意图;
图5为本发明所提供的烟油瓶的一种实施例剖面爆炸连接结构示意图;
图6本发明所提供的烟油瓶的一种实施例爆炸连接结构示意图:
图7本发明所提供的电子烟雾化器的一种实施例剖面爆炸连接结构示意图;
图8为本发明所提供的电子烟雾化器的一种实施例爆炸连接结构示意图:
图9为本发明所提供的电子烟雾化器的一种实施例整体剖面结构示意图;
图10为本发明所提供的电子烟雾化器的一种实施例整体结构示意图;
图11为本发明所提供的烟油瓶的另一种实施例爆炸连接结构示意图;
图12为本发明所提供的电子烟雾化器的另一种实施例剖面结构示意图;
图13为本发明所提供的雾化芯组件的一种实施例爆炸连接结构示意图;
图14为本发明所提供的电子烟雾化器的另一种实施例剖面结构示意图。
具体实施方式
实施例一,本实施例提供了一种能够便于用户添加烟油的烟油瓶。
本实施例所示的烟油瓶的的结构请详见图3至图5所示,图3为本发明所提供的烟油瓶的一种实施例整体结构示意图,图4为本发明所提供的烟油瓶的一种实施例剖面结构示意图,图5为本发明所提供的烟油瓶的一种实施例剖面爆炸连接结构示意图。
本发明所提供的烟油瓶用于与雾化芯组件配合形成电子烟雾化器。
所述烟油瓶能够存储烟油,在所述烟油瓶与所述雾化芯组件配合以形成所述电子烟雾化器时,所述雾化芯组件能够雾化所述烟油瓶所存储的烟油并形成可供用户吸食的烟雾。
所述烟油瓶包括油瓶本体200及密封塞201。
本实施例所示的油瓶本体200的整体的形状可参见图3所示,需明确的是,本实施例对所述油瓶本体200的整体形状不做限定,例如,所述油瓶本体200可为规则形状或不规则形状等,只要所述烟油瓶能够与雾化芯组件配合形成电子烟雾化器即可。
具体的,所述油瓶本体200内设置有出气通道202、储油腔203及容置腔204。
本实施例中,所述出气通道202与所述容置腔204及油瓶本体200外表面相连通。
具体的,所述出气通道202的一端与所述容置腔204导通,所述出气通道 202的另一端与所述油瓶本体200的外表面导通。
本实施例对所述储油腔203的具体结构不做限定,只要所述储油腔203能够存储烟油即可。
所述容置腔204的腔壁上设置有出油孔205,所述容置腔204通过所述出油孔205与所述储油腔203导通,即通过所述出油孔205实现了所述容置腔204与所述储油腔203的连通。
本实施例所示的烟油瓶有四种使用状态,一种使用状态请见图4所示:
在本种使用状态中,所述密封塞201可拆卸地插设在所述容置腔204内并盖设所述出油孔205的孔口。
具体如图4所示,当所述密封塞201插设在所述容置腔204内时,所述密封塞201的外周壁抵持在所述出油孔205的孔口上,即所述密封塞201与所述出油孔205的孔口之间没有能够与所述出气通道202导通的间隙,以使所述密封塞201能够阻碍所述储油腔203内的烟油流入所述容置腔204以及所述出气通道202内。
第二种使用状态请见图5和图6所示,其中,图6本发明所提供的烟油瓶的一种实施例爆炸连接结构示意图:
在本种使用状态中,若用户需要抽吸烟雾时,则用户可将所述密封塞201从所述容置腔204内取出,以使所述容置腔204空出。
第三种使用状态请参见图7和图8所示,其中,图7本发明所提供的电子烟雾化器的一种实施例剖面爆炸连接结构示意图,图8为本发明所提供的电子烟雾化器的一种实施例爆炸连接结构示意图:
在本种使用状态中,当所述容置腔204空出时,用户可将雾化芯组件300沿朝向所述容置腔204的方向运动,直至所述雾化芯组件300插设入所述容置腔204内部。
第四种使用状态请参见图9和图10所示,其中,图9为本发明所提供的电子烟雾化器的一种实施例整体剖面结构示意图,图10为本发明所提供的电子烟雾化器的一种实施例整体结构示意图。
在本种使用状态中,当所述雾化芯组件300位于所述容置腔204时,所述雾化芯组件300和所述烟油瓶组合形成所述电子烟雾化器。
所述储油腔203内所存储的烟油能够经由所述出油孔205流入所述雾化芯组件300内,所述雾化芯组件300即可将烟油进行雾化以形成烟雾,且所述雾化芯组件300所雾化的烟雾能够经由所述出气通道202导出以被用户吸食。
采用本实施例所示的烟油瓶,能够密封存储有烟油,在用户需要吸食烟雾时,可将所述密封塞201取出,然后将所述雾化芯组件300插设在所述烟油瓶内,以使所述雾化芯组件300能够将烟油雾化以形成烟雾,本实施例所示的烟油瓶能够提升所存储的烟油量,在用户不需要抽吸烟雾时,所述烟油瓶可用于存储烟油,在用户需要抽吸烟雾时,所述烟油瓶所存储的烟油能够提升用户使用的时长,避免用户频繁的添加烟油,且便于使用及较好地避免烟油泄露。
实施例二,本实施例对所述烟油瓶的具体结构进行详细说明。
如图4、图5以及图9所示,所述烟油瓶还包括进气通道206以及进气孔207。
具体的,所述进气通道206及所述储油腔203分别位于所述出气通道202的相对两侧,所述进气通道206与所述容置腔204相连通,所述进气孔207与所述进气通道206及所述油瓶本体200的外表面相连通。
具体的,所述进气孔207的一端与所述进气通道206相导通,所述进气孔207的另一端与所述油瓶本体200的外表面相导通。
以图9所示为例,在使用本实施例所示的烟油瓶抽吸烟雾时,位于所述烟油瓶外部的气流能够通过所述进气孔207流通至所述进气通道206内,然后经由所述进气通道206进入所述雾化芯组件300内,所述气流用于将所述雾化芯组件300所雾化的烟雾从所述出气通道202带出。
以下对油瓶本体200的具体结构进行详细说明:
继续参见图5和图11所示,图11为本发明所提供的烟油瓶的另一种实施例爆炸连接结构示意图。
所述烟油瓶包括:包括上盖208、下盖209、填充块210及密封件211。
所述上盖208的一端端面与所述下盖209的一端端面相连。
本实施例对所述上盖208与所述下盖209之前的连接方式不做限定,例如,所述上盖208与所述下盖209之间可插接相连,或所述上盖208与所述下盖209之间可通过螺纹连接,或所述上盖208与所述下盖209之间可通过卡扣卡 合连接等,还例如,所述上盖208与所述下盖209可一体成型设置。
所述上盖208设置有所述储油腔203、所述进气通道206及所述出气通道202,所述储油腔203延伸至所述上盖208面向所述下盖209的一端端面,所述下盖209设置有所述容置腔204。
具体的,沿所述烟油瓶纵向方向贯穿所述下盖209设置有所述容置腔204,以使沿所述烟油瓶的纵向方向设置的所述容置腔204与所述下盖209的位置相对的两端面相连通。
所述容置腔204的一端端面面向所述进气通道206及所述出气通道202。
所述密封件211夹持在所述上盖208与所述下盖209的端面处,所述密封件211用于避免所述储油腔203所存储的烟油泄漏至所述容置腔204内或泄漏至所述烟油瓶的外部。
所述填充块210插设在所述下盖209内。
以下对所述填充块210如何设置在所述下盖209内的进行说明:
所述下盖209朝向所述上盖208的端面设置有隔油壁212,所述隔油壁212用于将所述下盖209朝向所述上盖208的端部划分为所述容置腔204和导油腔213。
所述导油腔213的腔口面向所述储油腔203设置,以使所述导油腔213与所述储油腔203连通。
所述导油腔213的腔底部设置有定位柱214,所述定位柱214沿所述烟油瓶的纵向方向延伸设置。
所述填充块210设置有与所述定位柱214位置对应的定位孔215,以使当所述定位柱214插设在所述定位孔215内部时,所述填充块210设置在所述导油腔213内部。
本实施例中,贯穿所述隔油壁212设置有所述出油孔205;
所述填充块210朝向所述出油孔205的方向设置有第一容置凹腔216,且所述第一容置凹腔216的腔口与所述出油孔205位置相对,所述第一容置凹腔216与所述储油腔203导通设置,以使所述储油腔203内的烟油依次经由所述第一容置凹腔216以及所述出油孔205导通至所述容置腔204内部。
本实施例中,因位于所述储油腔203内的烟油不会直接流通至所述出油孔 205,而是需要经过所述第一容纳凹腔216,从而使得烟油不会过量的传送至所述容纳腔204内,经由所述第一容纳凹腔能够保证烟油均匀适量的传送至所述容纳腔204内,从而使得雾化芯组件300能够传送过来的烟油进行雾化,避免了因烟油过量而使得雾化芯组件无法完全雾化而出现烟油泄漏的情况,进而避免了用户吸食到烟油的情况。
可选的,本实施例所述下盖209朝向所述上盖208的端面以及所述隔油壁212朝向所述上盖208的端面凹设有第二容纳凹腔217,所述上盖208朝向所述下盖209的端面凸设有第一抵持部218,且所述第一抵持部218能够插设在所述第二容纳凹腔217内部;
所述密封件211位于所述第二容纳凹腔217内部,且通过所述密封件211使得所述上盖208的所述第一抵持部218与所述下盖209的所述第二容纳凹腔217之间过盈配合。
所述烟油瓶还包括有吸嘴219,所述吸嘴219包括内凹设置的第三容纳凹腔220以及与所述第三容纳凹腔220相连通的出气腔221。
所述出气腔221与所述出气通道202导通设置,以使位于所述容置腔204内的所述雾化芯组件300所雾化的烟雾能够以及经由所述出气通道202以及所述出气腔221被用户吸食。
所述第三容纳凹腔220的腔壁与所述上盖208远离所述下盖209的端部的外周面抵持设置。
所述上盖208朝向所述第三容纳凹腔220凸设有第二抵持部222,所述吸嘴219与所述第二抵持部222位置相对处凸设有第三抵持部223,以使当所述吸嘴219套设在所述上盖208的外周面上时,所述第二抵持部222和所述第三抵持部223相互抵持设置。
所述出气通道202的出气口224插设在所述出气腔221内部,且所述出气口224的外周面内凹设置有第一环形凹槽225,所述第一环形凹槽225内部设置有第一密封环226,以使所述第一密封环226位于所述第一环形凹槽225和所述出气腔221之间,以使所述第一环形凹槽225和所述出气腔221的腔壁之间过盈配合。
所述进气孔207包括第一子进气孔2071和第二子进气孔2072。
所述第一子进气孔2071位于所述吸嘴219远离所述出气口224的端部,所述第二子进气孔2072位于所述上盖208靠近所述下盖209的端部,所述第一子进气孔2071与所述第二子进气孔2072导通设置,且所述第二子进气孔2072与所述进气通道206导通设置。
本实施例中,在所述容置腔204内设置有所述雾化芯组件300时,为保障位于所述烟油瓶外部的气流能够导通至所述雾化芯组件300上,则外部的气流能够依次经由所述第一子进气孔2071、第二子进气孔2072以及所述进气通道206导通至位于所述容置腔204内的所述雾化芯组件300,以使气流能够带动所述雾化芯组件300所雾化的烟雾沿所述出气通道202的导向进行流通,以被用户通过所述出气腔221进行烟雾的吸食。
可选的,所述吸嘴219在外力的作用下能够旋转,以使当所述第一子进气孔2071和所述第二子进气孔2072位置相互错开时,则所述烟油瓶外部的气流无法通过所述第一子进气孔2071和所述第二子进气孔2072流通至所述进气通道206内部。
采用本实施例所示的所述烟油瓶的结构,用户在不需要进行烟雾的抽吸的情况下,可旋转所述吸嘴219以使所述第一子进气孔2071和所述第二子进气孔2072位置相互错开,从而使得即便所述容置腔204内设置有所述雾化芯组件300,所述雾化芯组件300也不会进行烟油的雾化,避免了误吸的可能。
所述下盖209朝向所述上盖208的外周面凸设有第四抵持部227,所述上盖208朝向所述下盖209的外周面凹设有抵持凹槽228,且所述第四抵持部227与所述抵持凹槽228匹配设置,以使当所述第一抵持部218插设在所述第二容纳凹腔217内部时,所述第四抵持部227插设在所述抵持凹槽228内部。
所述密封塞201包括柱形的本体部2011以及由所述本体部2011的一端外周面延伸形成的限位环2012。
结合如4所示,所述本体部2011插设在所述容置腔204内,且所述本体部2011抵持在所述出油孔205上,所述本体部2011能够防止所述储油腔203内的烟油泄漏至所述容置腔204内。
所述限位环2012抵持在所述下盖209的一端端面上。
因所述限位环2012凸设在所述下盖209的一端端面上,则便于用户在所 述限位环2012上施加外力,从而将所述密封塞201插设在所述容置腔204内或从所述容置腔204内取出。
通过本实施例所示的烟油瓶,能够便于用户向所述储油腔203内添加烟油,以下对如何添加烟油进行说明:
结合图4和图10所示,所述填充块210和所述下盖209之间形成有过油间隙229,贯穿所述下盖209设置有至少一个加油口230。
在添加烟油的过程中,可将加油瓶的瓶口对准所述加油口230,以使所述加油瓶内的烟油依次经由所述加油口230、所述过油间隙229以及所述导油腔213流通至所述储油腔203内。
采用本实施例所示的烟油瓶在添加烟油的过程中,不会将烟油泄漏至所述出气通道202内,则有效的避免了用户吸食到烟油的可能,而且在添加烟油的过程中,用户无需要对雾化芯组件300进行操作,从而提升了添加烟油过程中的便利,而且在添加烟油的过程中,用户也不会触摸到烟油,提升了用户的体验。
可选的,所述油瓶本体200还包括堵油塞231。
所述堵油塞231沿朝向所述加油口230的方向延伸设置有由弹性材质制成的堵头232,且所述堵头232与所述加油口230位置对应设置,且所述堵头232的数目与所述加油口230的数目相等。
当所述堵头232插设在所述加油口230内部时,所述堵头232与所述加油口230过盈配合,所述堵头232用于防止所述储油腔203内的烟油经由所述加油口230泄漏至所述烟油瓶的外部。
在具体应用中,若需要往所述储油腔203内添加烟油,则可将所述述堵油塞231从所述加油口230拆卸下来,在烟油添加完成后,即可将所述堵油塞231插设在所述加油口230内,有效的防止烟油的泄漏。
可以理解的是,所述烟油瓶本体200不限于上述结构,其只要设置有所述出气通道、储油腔及容置腔,所述容置腔的腔壁上设置有出油孔,将所述密封塞从所述容置腔内取出,然后将所述雾化芯组件插入所述容置腔内能够雾化烟油即可,因此,其结构不作具体限定。
实施例三,本实施例提供了一种电子烟雾化器,所述电子烟雾化器包括烟 油瓶以及插设在所述容置腔204内的雾化芯组件300。
本实施例所提供的烟油瓶的具体结构请详见实施例一和实施例二所示,具体在本实施例中不再赘述。
以下对本实施例所提供的所述雾化芯组件300的具体结构进行说明。
结合图9、图12和图13所示,其中图12为本发明所提供的电子烟雾化器的另一种实施例剖面结构示意图,图13为本发明所提供的雾化芯组件的一种实施例爆炸连接结构示意图。
所述雾化芯组件300包括雾化套301,所述雾化套301朝向所述出气通道202的端部设置有第四容纳凹腔302,且所述第四容纳凹腔302分别与所述出气通道202和所述进气通道206导通设置,所述第四容纳凹腔302内部插设固定有电热丝组件303。
具体的,本实施例所示的电热丝组件303包括玻纤线3031和缠绕设置在所述玻纤线3031上的电热丝3032。
可选的,所述第四容纳凹腔302的腔口处插设固定有雾化盖304。
需明确的是,本实施例对是否设置有所述雾化盖304不做限定,例如图14所示为所述电子烟雾化器不设置所述雾化盖304时的剖面结构示意图,本实施例以所述电子烟雾化器设置有所述雾化盖304为例进行示例性说明。
贯穿所述雾化盖304设置有第一通孔305,所述雾化盖304的第一通孔305分别与所述出气通道202和所述进气通道206导通设置,以使所述烟油瓶外部的气流依次经过所述进气通道206以及所述第一通孔305导通至所述第四容纳凹腔302内部,以使气流带动所述电热丝组件303所雾化的烟雾经过所述第一通孔305导通至所述出气通道202。
所述雾化芯组件300还包括导油棉306,所述导油棉306插设在所述雾化套301底部,且所述导油棉306与所述电热丝组件303抵持设置,且所述导油棉306与所述出油孔205位置相对设置,以使位于所述储油腔203内的烟油能够经由所述出油孔205导通至所述导油棉306上。
可见,采用本实施例所示的方式,经由所述出油孔205导出的烟油会首先传到至所述导油棉306上,从而进一步的防止过量的烟油传导至所述电热丝组件303,进一步的防止了烟油泄漏至所述出气通道202的情况,而且所述导油 棉306与所述电热丝组件303能够均匀的接触,从而使得所述导油棉306能够将烟油均匀的传导至所述电热丝组件303上,从而使得所述电热丝组件303所雾化的烟雾均匀,提升了用户所抽吸到的烟雾的口感。
所述雾化套301朝向所述出油孔205的方向设置有第二通孔307,且所述第二通孔307的孔口与所述出油孔205的孔口相对设置,所述导油棉306朝向所述出油孔205的方向延伸设置有延伸臂308,且所述延伸臂308穿过所述第二通孔307插设固定在所述出油孔205的孔口内部,以使位于所述储油腔203内部的烟油能够经由所述延伸臂308导通至所述导油棉306上。
所述雾化套301的外周面设置有第二环形凹槽309,且所述第二环形凹槽309内部插设固定有第二密封环310,以使所述第二密封环310位于所述第二环形凹槽309和容置腔204的腔壁之间,以使所述雾化套301和所述容置腔204之间过盈配合。
如图8、图12和图13所示,所述雾化套301的所述第四容纳凹腔302的底部设置有第三通孔311和第四通孔312,所述第三通孔311内部插设固定有第一电极313,所述第四通孔312内部插设有第二电极314。
所述第三通孔311和所述第一电极313之间插设固定有第一绝缘环315,所述第四通孔312和所述第二电极314之间插设固定有第二绝缘环316,且所述第一电极313和所述第二电极314分别与所述电热丝组件303电连接。当将电子烟雾化器与电源组件连接时,通过所述第一电极313和所述第二电极314与所述电源组件电连接以获取电能。
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 (20)

  1. 一种烟油瓶,用于与雾化芯组件配合形成电子烟雾化器,其特征在于:包括油瓶本体及密封塞,所述油瓶本体内设置有出气通道、储油腔及容置腔,所述出气通道与所述容置腔及油瓶本体外表面相连通,所述容置腔的腔壁上设置有出油孔,所述容置腔通过所述出油孔与所述储油腔导通,以使通过所述出油孔能够将储油腔内的烟油导出至所述容置腔,所述密封塞可拆卸地插设在所述容置腔内并盖设所述出油孔的孔口,所述密封塞用于阻碍所述储油腔内的烟油流入所述容置腔内,并在当需要雾化烟油时,将所述密封塞从所述容置腔内取出,然后将所述雾化芯组件插入所述容置腔内,所述储油腔内的烟油经所述出油孔流入所述雾化芯组件内,烟油经所述雾化芯组件雾化后从所述出气通道排出。
  2. 根据权利要求1所述的烟油瓶,其特征在于:所述烟油瓶还包括进气通道以及进气孔,所述进气通道及所述储油腔分别位于所述出气通道的相对两侧,所述进气通道与所述容置腔相连通,所述进气孔与所述进气通道及所述油瓶本体的外表面相连通,以使在使用所述烟油瓶吸烟时,位于所述烟油瓶外部的气流能够通过所述进气孔,然后经由所述进气通道进入所述雾化芯组件内,以将所述雾化芯组件所雾化的烟雾从所述出气通道带出。
  3. 根据权利要求2所述的烟油瓶,其特征在于:所述油瓶本体包括上盖、下盖、填充块及密封件,所述上盖的一端端面与所述下盖的一端端面相连,所述上盖设置有所述储油腔、所述进气通道及所述出气通道,所述储油腔延伸至所述上盖面向所述下盖的一端端面,所述下盖设置有所述容置腔,所述容置腔与所述下盖的位置相对的两端面相连通,所述容置腔的一端端面面向所述进气通道及所述出气通道,所述密封件夹持在所述上盖与所述下盖的端面处,所述填充块插设在所述下盖内。
  4. 根据权利要求3所述的烟油瓶,其特征在于:所述下盖朝向所述上盖的端面设置有隔油壁,所述隔油壁用于将所述下盖朝向所述上盖的端部划分为所述容置腔和导油腔,所述导油腔与所述储油腔连通,所述导油腔的腔底部设置有定位柱,所述填充块设置有与所述定位柱位置对应的定位孔,以使当所述定位柱插设在所述定位孔内部时,所述填充块设置在所述导油腔内部。
  5. 根据权利要求4所述的烟油瓶,其特征在于:贯穿所述隔油壁设置有所述出油孔;
    所述填充块朝向所述出油孔的方向设置有第一容置凹腔,且所述第一容置凹腔的腔口与所述出油孔位置相对,所述第一容置凹腔与所述储油腔导通设置,以使所述储油腔内的烟油依次经由所述第一容置凹腔以及所述出油孔导通至所述容置腔内部。
  6. 根据权利要求4所述的烟油瓶,其特征在于:所述下盖朝向所述上盖的端面以及所述隔油壁朝向所述上盖的端面凹设有第二容纳凹腔,所述上盖朝向所述下盖的端面凸设有第一抵持部,且所述第一抵持部能够插设在所述第二容纳凹腔内部;
    所述密封件位于所述第二容纳凹腔内部,且通过所述密封件使得所述上盖的所述第一抵持部与所述下盖的所述第二容纳凹腔之间过盈配合。
  7. 根据权利要求3所述的烟油瓶,其特征在于:所述烟油瓶还包括有吸嘴,所述吸嘴包括内凹设置的第三容纳凹腔以及与所述第三容纳凹腔相连通的出气腔,所述出气腔与所述出气通道导通设置,以使所述雾化芯组件所雾化的烟雾能够以及经由所述出气通道以及所述出气腔被用户吸食;
    所述第三容纳凹腔的腔壁与所述上盖远离所述下盖的端部的外周面抵持设置。
  8. 根据权利要求7所述的烟油瓶,其特征在于:所述上盖朝向所述第三容纳凹腔凸设有第二抵持部,所述吸嘴与所述第二抵持部位置相对处凸设有第三抵持部,以使当所述吸嘴套设在所述上盖的外周面上时,所述第二抵持部和所述第三抵持部相互抵持设置。
  9. 根据权利要求8所述的烟油瓶,其特征在于:所述出气通道的出气口插设在所述出气腔内部,且所述出气口的外周面内凹设置有第一环形凹槽,所述第一环形凹槽内部设置有第一密封环,以使所述第一密封环位于所述第一环形凹槽和所述出气腔之间,以使所述第一环形凹槽和所述出气腔的腔壁之间过盈配合。
  10. 根据权利要求9所述的烟油瓶,其特征在于:所述进气孔包括第一子进气孔和第二子进气孔,所述第一子进气孔位于所述吸嘴远离所述出气口的端 部,所述第二子进气孔位于所述上盖靠近所述下盖的端部,所述第一子进气孔与所述第二子进气孔导通设置,且所述第二子进气孔与所述进气通道导通设置。
  11. 根据权利要求10所述的烟油瓶,其特征在于:所述吸嘴在外力的作用下旋转,以使当所述第一子进气孔和所述第二子进气孔位置相互错开时,则所述烟油瓶外部的气流无法通过所述第一子进气孔和所述第二子进气孔流通至所述进气通道内部,以使当所述第一子进气孔和所述第二子进气孔位置相互对应时,则所述烟油瓶外部的气流依次通过所述第一子进气孔和所述第二子进气孔流通至所述进气通道内部。
  12. 根据权利要求6所述的烟油瓶,其特征在于:所述下盖朝向所述上盖的外周面凸设有第四抵持部,所述上盖朝向所述下盖的外周面凹设有抵持凹槽,且所述第四抵持部与所述抵持凹槽匹配设置,以使当所述第一抵持部插设在所述第二容纳凹腔内部时,所述第四抵持部插设在所述抵持凹槽内部。
  13. 根据权利要求3所述的烟油瓶,其特征在于:所述密封塞包括柱形的本体部以及由所述本体部的一端外周面延伸形成的限位环,所述本体部插设在所述容置腔内,且所述本体部抵持在所述出油孔上,所述限位环抵持在所述下盖的一端端面上。
  14. 根据权利要求5所述的烟油瓶,其特征在于:所述填充块和所述下盖之间形成有过油间隙,贯穿所述下盖设置有至少一个加油口,以使在添加烟油时烟油依次经由所述加油口、所述过油间隙以及所述导油腔流通至所述储油腔内;
    所述油瓶本体还包括堵油塞,所述堵油塞沿朝向所述加油口的方向延伸设置有由弹性材质制成的堵头,且所述堵头与所述加油口位置对应设置,以使当所述堵头插设在所述加油口内部时,所述堵头与所述加油口过盈配合,所述堵头用于防止所述储油腔内的烟油经由所述加油口泄漏至所述烟油瓶的外部。
  15. 一种电子烟雾化器,其特征在于:包括权利要求1至14任一项所述的烟油瓶以及插设在所述容置腔内的雾化芯组件,所述雾化芯组件包括雾化套,所述雾化套朝向所述出气通道的端部设置有第四容纳凹腔,且所述第四容纳凹腔分别与所述出气通道和所述进气通道导通设置,所述第四容纳凹腔内部 插设固定有电热丝组件。
  16. 根据权利要求15所述的电子烟雾化器,其特征在于:所述第四容纳凹腔的腔口处插设固定有雾化盖,且贯穿所述雾化盖设置有第一通孔,所述雾化盖的第一通孔分别与所述出气通道和所述进气通道导通设置,以使所述烟油瓶外部的气流依次经过所述进气通道以及所述第一通孔导通至所述第四容纳凹腔内部,以使气流带动所述电热丝组件所雾化的烟雾经过所述第一通孔导通至所述出气通道。
  17. 根据权利要求15所述的电子烟雾化器,其特征在于:所述雾化芯组件还包括导油棉,所述导油棉插设在所述雾化套底部,且所述导油棉与所述电热丝组件抵持设置,且所述导油棉与所述出油孔位置相对设置,以使位于所述储油腔内的烟油能够经由所述出油孔导通至所述导油棉上。
  18. 根据权利要求17所述的电子烟雾化器,其特征在于:所述雾化套朝向所述出油孔的方向设置有第二通孔,且所述第二通孔的孔口与所述出油孔的孔口相对设置,所述导油棉朝向所述出油孔的方向延伸设置有延伸臂,且所述延伸臂穿过所述第二通孔插设固定在所述出油孔的孔口内部,以使位于所述储油腔内部的烟油能够经由所述延伸臂导通至所述导油棉上。
  19. 根据权利要求17所述的电子烟雾化器,其特征在于:所述雾化套的外周面设置有第二环形凹槽,且所述第二环形凹槽内部插设固定有第二密封环,以使所述第二密封环位于所述第二环形凹槽和容置腔的腔壁之间,以使所述雾化套和所述容置腔之间过盈配合。
  20. 根据权利要求15所述的电子烟雾化器,其特征在于:所述雾化套的所述第四容纳凹腔的底部设置有第三通孔和第四通孔,所述第三通孔内部插设固定有第一电极,所述第四通孔内部插设有第二电极,且所述第三通孔和所述第一电极之间插设固定有第一绝缘环,所述第四通孔和所述第二电极之间插设固定有第二绝缘环,且所述第一电极和所述第二电极分别与所述电热丝组件电连接。
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CN109846089A (zh) * 2018-12-10 2019-06-07 深圳市新宜康科技股份有限公司 可换芯封闭系统及其换芯方法
CN109497624A (zh) * 2018-12-25 2019-03-22 东莞市美迪格电子科技有限公司 一种具有烟量计量功能的雾化器
CN109497624B (zh) * 2018-12-25 2024-02-13 东莞市美迪格电子科技有限公司 一种具有烟量计量功能的雾化器
CN109805456A (zh) * 2019-03-26 2019-05-28 深圳市金致远科技有限公司 一种雾化器及电子烟
CN109805456B (zh) * 2019-03-26 2024-04-16 深圳市你我网络科技有限公司 一种雾化器及电子烟
CN111000295A (zh) * 2019-11-07 2020-04-14 深圳市锐丽科技有限公司 电子烟雾化器及电子烟
CN111789294A (zh) * 2020-07-10 2020-10-20 东莞市昌瀚科技有限公司 一种电子烟烟杆及包括其的电子烟
CN111789294B (zh) * 2020-07-10 2023-03-14 东莞市昌瀚科技有限公司 一种电子烟烟杆及包括其的电子烟
CN113384001A (zh) * 2021-07-09 2021-09-14 深圳市艾蒂威肯科技有限公司 一种电子烟
CN113907419A (zh) * 2021-11-25 2022-01-11 深圳市汉清达科技有限公司 一种电子烟注油结构
CN113907419B (zh) * 2021-11-25 2024-01-16 深圳市汉清达科技有限公司 一种电子烟注油结构

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