WO2017024478A1 - 一种雾化组件 - Google Patents

一种雾化组件 Download PDF

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Publication number
WO2017024478A1
WO2017024478A1 PCT/CN2015/086548 CN2015086548W WO2017024478A1 WO 2017024478 A1 WO2017024478 A1 WO 2017024478A1 CN 2015086548 W CN2015086548 W CN 2015086548W WO 2017024478 A1 WO2017024478 A1 WO 2017024478A1
Authority
WO
WIPO (PCT)
Prior art keywords
assembly
oil
ring
atomizing
hole
Prior art date
Application number
PCT/CN2015/086548
Other languages
English (en)
French (fr)
Inventor
刘秋明
向智勇
韦志林
丁建军
牛建华
Original Assignee
惠州市吉瑞科技有限公司深圳分公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 惠州市吉瑞科技有限公司深圳分公司 filed Critical 惠州市吉瑞科技有限公司深圳分公司
Priority to CN201590000036.8U priority Critical patent/CN205794803U/zh
Priority to PCT/CN2015/086548 priority patent/WO2017024478A1/zh
Publication of WO2017024478A1 publication Critical patent/WO2017024478A1/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
    • A24F40/42Cartridges or containers for 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
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61MDEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
    • A61M2209/00Ancillary equipment
    • A61M2209/04Tools for specific apparatus
    • A61M2209/045Tools for specific apparatus for filling, e.g. for filling reservoirs

Definitions

  • the present invention relates to the field of electronic cigarette technology, and in particular, to an atomizing assembly.
  • Electronic cigarettes are a relatively common simulated cigarette electronic product, mainly used to quit smoking and replace cigarettes.
  • the structure of the existing electronic cigarette mainly includes: an atomizing component and a battery component connected to each other.
  • the atomizing component is the core component of the electronic cigarette, and mainly comprises: a nozzle assembly, an oil storage component and an atomizing core component which are arranged in order from top to bottom, and further comprises: being disposed in the oil storage component, connecting the nozzle component and atomizing The vent tube of the core assembly.
  • the oil storage component provides the smoke oil for the atomization core assembly.
  • the battery assembly supplies power to the atomization core assembly to make the atomization core assembly in a working state; when the atomization core assembly works, the heating wire heats up.
  • the smoke oil is atomized by heat evaporation to form an aerosol that simulates the smoke, and flows through the vent pipe to the nozzle assembly, so that the smoker absorbs the gas mist from the nozzle assembly, and thus has a feeling similar to the smoke absorption.
  • the smoke oil in the atomizing core assembly is supersaturated, and then flows into the battery assembly, causing corrosion of the battery; in addition, when the user smokes, the smoke oil in the atomizing assembly easily flows into the mouth of the smoker along with the smoke passage, causing the user to smoke. To the smoke oil.
  • the present invention is directed to the prior art, in the case of adding smoke oil to the electronic cigarette, the smoke oil will flow from the oil inlet hole on the atomization core assembly into the atomization core assembly, and then into the battery assembly, resulting in
  • the technical problem of corrosion of the battery and easy absorption of the un-atomized smoke oil provides an atomization assembly, which realizes the addition of the oil mist to the electronic cigarette, and blocks the oil inlet hole on the atomization core assembly to avoid the smoke. Oil penetrates into the oil inlet hole A problem that causes oil leakage inside the atomizing core assembly.
  • the present invention provides an atomizing assembly for forming an electronic cigarette in combination with a battery assembly, the atomizing assembly including a nozzle assembly, an oil storage assembly, a rotating assembly, an atomizing core assembly, and a connecting assembly, The nozzle assembly and the connecting component are respectively connected to opposite ends of the oil storage component, and an end of the connecting component facing away from the oil storage component is connected to the battery component;
  • the rotating assembly includes a snorkel assembly and a rotating member coupled to the vent assembly, the vent assembly being inserted into the oil storage assembly and in communication with the nozzle assembly, the passage An oil storage chamber for storing the smoke oil is formed between the air pipe assembly and the oil storage assembly, and a lubricating hole communicating with the oil storage chamber is disposed on a sidewall of the oil storage assembly; the rotating member is rotatable a sleeve is disposed on an outer circumferential surface of the oil storage assembly, and is disposed in cooperation with the oiling hole to enable or close the oiling hole when rotating;
  • At least one end of the atomizing core assembly is inserted into the snorkel assembly, an oil inlet hole is disposed on a sidewall of the atomizing core assembly, and the oil inlet hole and the snorkel assembly
  • the side wall is configured to be configured such that when the rotating member is rotated to expose the oiling hole, the oil smear can be added through the oiling hole, and the rotating member drives the snorkel assembly to rotate, so that the snorkel
  • the assembly is disposed on the oil inlet hole to block the smoke oil in the oil storage chamber from entering the atomization core assembly.
  • the atomizing assembly of the electronic cigarette includes: a nozzle assembly, an oil storage assembly, a rotating assembly, an atomizing core assembly, and a connecting assembly, wherein the nozzle assembly and the connecting assembly are respectively connected to An opposite end of the oil storage assembly, an end of the connecting assembly facing away from the oil storage assembly is configured to be coupled to the battery assembly;
  • the rotating assembly includes a snorkel assembly and a rotation coupled to the snorkel assembly The snorkel assembly is inserted into the oil storage assembly and communicates with the nozzle assembly, and an oil storage chamber for storing smoke oil is formed between the snorkel assembly and the oil storage assembly.
  • An oil supply hole communicating with the oil storage chamber is disposed on a sidewall of the oil storage assembly; the rotating member is rotatably sleeved on an outer circumferential surface of the oil storage assembly, and is disposed in cooperation with the oil filler hole.
  • the oiling hole can be opened or closed during rotation; at least one end of the atomizing core assembly is inserted into the snorkel assembly, the atomizing core assembly
  • An oil inlet hole is disposed on the side wall, and the oil inlet hole is disposed to cooperate with a sidewall of the snorkel assembly to allow the oiling hole to be exposed when the rotating member is rotated, and can be added through the oil hole
  • the rotating oil member drives the vent tube to rotate, so that the snorkel assembly is disposed on the oiling hole to block the smoke oil in the oil storage chamber from entering the atomizing core assembly.
  • FIG. 1 is a schematic structural diagram of an atomization assembly according to an embodiment of the present invention.
  • FIG. 2 is a schematic exploded view of an electronic cigarette according to an embodiment of the present invention.
  • FIG. 3 is a schematic structural diagram of another atomization assembly according to an embodiment of the present invention.
  • FIG. 4A is a schematic structural view of a snorkel assembly according to an embodiment of the present invention.
  • FIG. 4B is a schematic structural view of another snorkel assembly according to an embodiment of the present invention.
  • FIG. 5 is a schematic diagram of a snap-fit structure of an oil storage assembly and an atomizing core assembly and a rotating assembly according to an embodiment of the present invention
  • 6A is a bottom view of a limiting seat of an oil storage assembly according to an embodiment of the present invention.
  • 6B is a top view of a limiting seat of an oil storage assembly according to an embodiment of the present invention.
  • FIG. 7A is a schematic cross-sectional structural view of a nozzle assembly of an atomizing assembly according to an embodiment of the present invention.
  • FIG. 7B is a cross-sectional structural diagram of a rotating component of an atomizing assembly according to an embodiment of the present invention.
  • FIG. 7C is a schematic cross-sectional structural view of an oil storage assembly of an atomizing assembly according to an embodiment of the present invention.
  • FIG. 7D is a schematic cross-sectional structural view of an atomizing core assembly of an atomizing assembly according to an embodiment of the present invention.
  • FIG. 7E is a cross-sectional structural diagram of a connection assembly of an atomization assembly according to an embodiment of the present invention.
  • Embodiments of the present invention provide an atomizing assembly, which solves the problem of adding smoke oil to an electronic cigarette in the prior art, and the smoke oil flows into the atomizing core assembly from the oil inlet hole on the atomizing core assembly. Further flowing into the battery assembly, causing corrosion of the battery and the user's technical problem of easily absorbing the un-atomized smoky oil, thereby realizing the addition of smoky oil to the electronic cigarette, blocking the oil inlet hole on the atomizing core assembly to avoid the smoke Oil penetrates into the atomizing core assembly through the oil inlet hole, causing a problem of oil leakage.
  • Embodiments of the present invention provide an atomizing assembly for forming an electronic cigarette in combination with a battery assembly, the atomizing assembly including a nozzle assembly, an oil storage assembly, a rotating assembly, an atomizing core assembly, and a connecting assembly.
  • the nozzle assembly and the connecting component are respectively connected to opposite ends of the oil storage assembly, and an end of the connecting component facing away from the oil storage component is connected to the battery component;
  • the rotating component comprises a vent assembly and a rotating member coupled to the snorkel assembly, the snorkel assembly being inserted into the oil storage assembly and in communication with the nozzle assembly, the snorkel assembly and the oil storage assembly
  • An oil storage chamber for storing the smoke oil is formed between the oil storage assembly, and a lubricating hole communicating with the oil storage chamber is disposed on the side wall of the oil storage assembly;
  • the rotating member is rotatably sleeved on the oil storage body An outer peripheral surface of the assembly, and is disposed in cooperation with the oiling hole to enable or close the oiling hole during rotation; at least one end of the atomizing core assembly is inserted into the snorkel assembly, Atomization An oil inlet hole is disposed on a sidewall of the assembly, and the oil inlet hole is disposed to cooperate with a sidewall of the snorkel assembly to enable the oiling hole to be
  • an embodiment of the present invention provides an atomization assembly 1 for combining with a battery assembly 2 to form an electronic cigarette.
  • the atomization assembly 1 includes a nozzle assembly 11 and an oil storage assembly. 12.
  • the rotating assembly 13, the atomizing core assembly 14 and the connecting assembly 15, the nozzle assembly 11 and the connecting assembly 15 are respectively connected to opposite ends of the oil storage assembly 12, and an end of the connecting assembly 15 facing away from the oil storage assembly 12 is used for
  • the battery assembly 2 is connected;
  • the rotating assembly 13 includes a snorkel assembly 131 and a rotating member 132 coupled to the vent assembly 131, the vent assembly 131 being inserted into the oil storage assembly 12 and with the nozzle assembly
  • An oil storage chamber 121 for storing the oil and smoke is formed between the vent pipe assembly 131 and the oil storage assembly 12, and the oil storage chamber 121 is disposed on the side wall of the oil storage assembly 12
  • the rotating oil hole 122 is rotatably sleeved on the outer circumferential surface of the oil storage assembly 12, and is disposed in cooperation with the oiling hole 122 to open or close the oil hole in the rotating hole 122;
  • At least one end of the atomizing core assembly 14 is inserted into the vent pipe assembly 131, and an oil inlet hole 141 is disposed on a sidewall of the atomizing core assembly 14, and the oil inlet hole 141 is
  • the side wall of the snorkel assembly 131 is cooperatively disposed such that when the rotating member 132 is rotated to expose the oiling hole 122, the oil smear can be added through the oiling hole 122, and the rotating member 132 drives the The vent pipe assembly 131 is rotated to cover the vent pipe assembly 131 on the oil inlet hole 141 to block the smoke oil in the oil storage chamber 121 from entering the atomizing core assembly 14.
  • the snorkel assembly 131 includes a vent tube 1311 and an elastic seal 1312, and one end of the vent tube 1311 is connected to the rotating member 132.
  • the other end of the vent pipe 13 11 is sleeved on the atomizing core assembly 14.
  • the elastic sealing member 1312 is fixed on the side wall of the vent pipe 1311, and the elastic sealing member 1312 and the oil inlet hole 141.
  • Correspondingly disposed, and elastically resisting on the outer wall of the atomizing core assembly 14 so that when the oiling hole 122 is opened, the elastic sealing member 1312 is disposed on the oil inlet hole 141 to The oil in the oil storage chamber 121 is prevented from entering the atomizing core assembly 14.
  • the elastic sealing member 1312 and the oil inlet hole 141 are misaligned, that is, when the oil is added.
  • the oiling hole 122 is closed by rotating the rotating member 132, and the rotating member 132 is driven to pass.
  • the air tube assembly 131 is rotated to align the elastic seal 1312 with the oil inlet hole 141, and the weir is passed into the oil hole 141 so that the oil in the oil reservoir 121 can flow into the atomizing core assembly 14 through the oil inlet hole 141.
  • annular gap 123 located outside the oil inlet hole 141 is formed between the inner circumferential surface of the vent pipe 1311 and the outer circumferential surface of the atomization core assembly 14 .
  • the annular gap 123 is in communication with the oil reservoir 121, and the oil in the oil reservoir 121 enters the oil inlet hole 141 through the annular gap 123 to be able to supply the atomizing core assembly 14
  • An end of the atomizing core assembly 14 adjacent to the nozzle assembly 11 is provided with a first sealing ring 16 elastically abutting against an inner wall of the vent pipe 1311 to block the smoke oil in the annular gap 123 Flows in the direction of the nozzle assembly 11.
  • an inner circumferential surface of the vent pipe 13 11 is provided with an annular groove 1311-1 extending to an end surface of the vent pipe 1311 facing the connecting component 15, the annular groove 1311-1 and the fog
  • the annular gap 123 is formed between the core assemblies 14
  • the side wall of the vent pipe 1311 is provided with a through hole 1311 which communicates with the oil reservoir 121 and the annular gap 123. 2.
  • the distance between the through hole 1311-2 and the nozzle assembly 11 is smaller than the distance between the oil inlet hole 141 and the nozzle assembly 11.
  • the through hole 13 11-2 is higher than the oil inlet hole 141, it is convenient for the soot liquid to flow into the same on the oil storage cotton in the atomizing core assembly 14, and is also convenient for exchange with the air flow in the oil storage chamber 121, and the atomizing core assembly 14
  • the hot air bubbles generated by the inner heating atomized smoke oil enters the oil storage chamber 121 through the through holes 1311-2, thereby ensuring that the air pressure in the oil storage chamber 121 is balanced with the outside, so that the electronic cigarette works normally.
  • the side wall of the vent pipe 1311 is further provided with a fixing hole 1311-3, and the fixing hole 1311-3 is disposed corresponding to the position of the oil inlet hole 141;
  • the sealing member 1 312 is sleeved on the vent pipe 1311 and blocks the fixing hole 1311-3 so that the elastic sealing member 1312 is covered in the fixing hole 1311-3 when the oiling hole 1 22 is opened.
  • the elastic sealing member 1312 and the oil inlet hole 141 wrong.
  • the shape of the through hole 1311-2 and the fixing hole 1311-3 is indefinite.
  • the through hole 1311-2 is an elliptical slot
  • the fixing hole 1311-3 is a circular slot
  • the elastic sealing member 1312 is a sealing ring
  • the ring includes an annular body 1312-1 and a sealing cover 1312-2 formed by an inner circumferential surface of the annular body 1312-1.
  • the annular body 1312-1 is sleeved on the ventilation tube 1311, and the sealing The cover 1312-2 passes through the fixing hole 1311-3 and is atomized
  • the outer wall of the core assembly 14 is elastically resisted so that when the oiling hole 122 is opened, the sealing cover 1312-2 is covered on the oil inlet hole 141.
  • FIG. 4A the through hole 1311-2 is an elliptical slot
  • the fixing hole 1311-3 is a circular slot
  • the elastic sealing member 1312 is a sealing ring
  • the through hole 1311-2 and the fixing hole 1311-3 are both circular slots, and the through hole 1311-2 is larger than the fixing hole 1311-3, and the elastic sealing member 1312 is a sealing piece
  • the sealing sheet includes a cover portion 1312-3 and a connecting portion 1312-4.
  • the cover portion 1312-3 elastically resists an outer wall of the atomizing core assembly 14, and the connecting portion 1312-4 passes through the fixing portion.
  • the hole 1311-3 is connected to the outer wall of the vent pipe 1311.
  • 4A and 4B are two specific embodiments of the elastic sealing member 1312. It should be noted that, in practical applications, the elastic sealing member 1312 may be in other forms, which is not specifically limited herein.
  • the snoring ie, bare
  • the fuel filler port 122 is completely closed after the smoky oil is added.
  • the air tube assembly 131 is provided with a first limiting portion
  • the oil storage assembly 12 is provided with a second limiting portion that cooperates with the first limiting portion, so that the rotating member 132 is rotated.
  • the second limiting portion can limit the rotation amplitude of the rotating member 132, so that the smear (ie, bare) is added to the smoky oil filler port 122 to the maximum extent or the fuel filler port 122 is completely closed after the smoky oil is added.
  • one of the first limiting portion and the second limiting portion is a limiting recess, and the other is a limiting protrusion inserted in the limiting recess, so as to be The limiting protrusion moves from one end of the limiting recess to the limiting recess to the other end of the limiting recess, and the oil inlet 141 is in a fully open or fully closed state.
  • the oil inlet 141 is in a fully open or fully closed state.
  • an end of the vent pipe 1311 on the vent pipe assembly 131 adjacent to the connecting component 15 is provided with a limiting groove 1311-4, and the oil storage assembly 12 is disposed in the arranging portion
  • the limiting protrusion 124 on the limiting groove 1311-4 enables the limiting protrusion 124 to limit the rotation amplitude of the rotating member 132 when the rotating member 132 is rotated.
  • the oil storage assembly 12 is provided with a limit seat 120. As shown in FIG. 6A and FIG. 6B, the limit seat 120 is provided with a finite position protrusion 124.
  • the atomizing core assembly 14 is provided with a third limiting portion 142, and the oil storage assembly 12 is provided with a fourth limiting portion 125 matching the third limiting portion 142 for rotating
  • the rotating member 132 ⁇ , the fourth limiting portion 125 can limit the radial movement of the atomizing core assembly 14 , that is, restrict the rotation of the atomizing core assembly 14 to ensure that the atomizing core assembly 14 is in the rotating member 132 rotating ⁇ , the atomizing core assembly 14 and the rotating member 132 Relative rotation occurs between them.
  • the rotating member 132 includes a rotating ring 1321 sleeved on an outer circumferential surface of the oil storage assembly 12, and the side wall of the rotating ring 1321.
  • a through hole 1321-1 is formed on the oil hole 122.
  • the fuel filler port 122 is added to the fuel filler port 122 or the fuel filler port 122 is closed. There is no oil leakage between the port 122 and the inner wall of the rotating ring 1321.
  • the outer peripheral surface of the oil storage assembly 12 is provided with a groove 126 disposed around the fueling port 122 and an elasticity embedded in the groove 126. The ring 127 elastically abuts against the inner wall of the rotating ring 1321.
  • the rotating member 132 further includes an annular end wall 1321-2 formed by bending inwardly from one end of the rotating ring 1321 and by the annular end wall.
  • An annular connecting wall 1321-3 extending from one side of the inner circumference of the 1321-2, the rotating ring 1321 is sleeved at an end of the oil storage assembly 12 connected to the nozzle assembly 11, the annular end wall 1321-2 is disposed on an end surface of the oil storage assembly 12, the annular connecting wall 1321-3 is connected to the vent pipe assembly 131, and one end of the nozzle assembly 11 is inserted in the annular connecting wall 1321. In the space enclosed by -3, the other end of the nozzle assembly 11 extends outside the rotating member 132.
  • the nozzle assembly 11 includes a hollow first connecting seat 111, a second sealing ring 112, a suction nozzle 113, a first elastic ring 114, and a first air conditioning ring. 115.
  • One end of the first connecting base 111 is detachably inserted into a space surrounded by the annular connecting wall 1321-3, and the other end of the first connecting base 11 1 is connected to the suction nozzle 113.
  • the second sealing ring 112 is sleeved on the outer peripheral surface of the first connecting base 111 and elastically abuts against the annular connecting wall 1321-3, the first elastic ring 114 and the first air ring 115 is sleeved on the nozzle 113, and the first elastic ring 114 is located between the first air ring 115 and the nozzle 113 and elastically abuts the first elastic ring 114.
  • a first air inlet 1131 is disposed at a position corresponding to the first air conditioning ring 115, and the first air conditioning ring 115 is disposed with the first air inlet 1131.
  • the atomizing core assembly 14 includes a hollow atomizing core seat 143, a first insulating ring 144, a first electrode 145, and an atomizing core sleeve 146.
  • the smoke oil absorbing sleeve 147, the heating wire 148, the metal mesh 149 and the third sealing ring 140, the atomizing core sleeve 146 and the first insulating ring 144 are respectively inserted at the two ends of the atomizing core seat 143
  • the first electrode 145 is sleeved in the first insulating ring 144 and abuts the connecting component 15, and the smoke oil adsorption sleeve 147 is sleeved in the atomizing core sleeve 146, and the electric heat is
  • the wire 148 is wound into a hollow columnar structure and sleeved in the oil absorbing sleeve 147 to ensure that the heating wire 148 can be fully contacted with the smoky oil, thereby effectively atomizing the smoky oil, and the smoky oil absorbing sleeve 147 can be specifically It is made of a material capable of adsorbing smoke oil, such as
  • the core sleeve 146 is electrically connected, and passes through the atomizing core sleeve 146 and the atomizing core seat 143 and the connecting component 15 is electrically connected, the metal mesh 149 is disposed on an end surface of the smoke oil adsorption sleeve 147 facing away from the first electrode 145, and is configured to block the flow of the tobacco oil toward the nozzle assembly and filter the smoke oil adsorption sleeve 147.
  • the third sealing ring 140 is sleeved on the atomizing core sleeve 146 and elastically abuts against the oil storage assembly, thereby further comparing the atomizing core sleeve 146 and the oil storage assembly.
  • the air inlet hole 141 is disposed on the side wall of the atomization core sleeve 146.
  • the first electrode 145 is connected to the positive electrode of the battery, the atomizing core sleeve 146 is connected to the negative electrode of the battery, and the electric heating wire 148 is connected thereto to form a current loop, and the heating wire 148 is supplied with power, and the heating wire 1 48 is heated.
  • the connecting component 15 includes a first connecting sleeve 151, a second connecting sleeve 152, a second insulating ring 153, a second electrode 154, a second air conditioning ring 155, and a second elastic ring 156, one end of the first connecting sleeve 151 is connected to the oil storage assembly 12, and the other end of the first connecting sleeve 151 is connected to the second connecting sleeve 152.
  • An end of the second connecting sleeve 152 facing away from the oil storage assembly 12 is connected to the battery assembly 2, and the second insulating ring 153 is sleeved away from the oil storage assembly of the second connecting sleeve 152.
  • the second electrode 154 is inserted into the second insulating ring 15 3 , and one end of the second electrode 154 abuts the first electrode 145 , and the second electrode 154 One end is connected to the battery component 2, and the first electrode 145 is supplied with a positive battery voltage;
  • the second air ring 155 and the second elastic ring 156 are sleeved on the first connecting sleeve 151, and the second elastic ring 156 is located in the second air ring 155 and the
  • the first connecting sleeve 151 is elastically abutted with the second air conditioning ring 155, and the first connecting sleeve 151 is disposed at a position corresponding to the second air conditioning ring 155.
  • a third air inlet hole 1511 is disposed, and the second air inlet ring 155 is disposed with a fourth air inlet hole 1551 disposed in cooperation with the third air inlet hole 1511, so as to rotate the second air conditioning ring.
  • the overlapping area between the third intake hole 1511 and the fourth intake hole 1551 can be adjusted.
  • the second air conditioning ring 155 is used in combination with the first air conditioning ring 115 to adjust the amount of air intake in the connecting component 15, which not only meets the requirements of different smoking strengths, but also can make the internal combustion of the atomizing core assembly 14 Achieve better atomization.
  • the oil storage assembly 12 includes a connecting tube 12-1 made of a metal material, a transparent atomizing sleeve 12-2, and a first connecting head 12. -3, a second connector 12-4 and a second connector 12-5, the snorkel assembly 131 is inserted into the connecting tube 12-1, the connecting tube 12-1 and the snorkel assembly
  • the oil storage chamber 121 is defined between the 131, and the side wall of the connecting tube 12-1 is provided with a smoke oil observation window 12-11, so that the user can observe the amount of remaining oil in the oil storage chamber 121.
  • the atomizing sleeve 12-2, the first connecting head 12-3 and the second connecting head 12-4 are sleeved on the connecting tube 12-1, and the atomizing sleeve 12-2 is located at the first connection Between the head 12-3 and the second connector 12-4, the rotating member 132 is sleeved on the first connector 12-3 and connected to the nozzle assembly 11, and the second connector 12 is connected.
  • One end of the -5 is connected to the connecting tube 12-1, and the other end is connected to the second connecting head 12-4, and one end of the atomizing core assembly 14 is inserted into the snorkel assembly 131, Atomizing core group The other end of the member 14 is inserted into the connecting component 15.
  • the outer peripheral surface of the second connecting seat 12-5 is provided with a fourth sealing ring 17 elastically resisting the second connecting head 12-4.
  • a fourth sealing ring 17 elastically resisting the second connecting head 12-4.
  • the atomizing sleeve 12-2 and the first connector 12-3 and the second connector 12-4 are provided with a first
  • a gasket 12-6 is provided with a second gasket 12-7 between the atomizing sleeve 12-2 and the second connector 12-4.
  • one end of the first connector 12-3 facing away from the connecting tube 12-1 is inserted into the rotating ring 1321, in order to ensure the annular connecting wall 1321-3 of the rotating ring 1321 and the first connector 12-3 Between the airtightness, a fifth seal ring 18 (shown in Figures 3 and 7B) is disposed between the annular connecting wall 1321-3 and the first connecting head 12-3.
  • a first external thread is disposed on an end of the second connector 12-4 facing away from the atomization sleeve 12-2, and an end of the first connection sleeve 151 facing away from the second connection sleeve 152 is disposed.
  • a first internal thread that mates with the first external thread is threaded through the second connector 12-4 and the first connector sleeve 151 to effect a connection between the oil reservoir assembly 12 and the connection assembly 15.
  • a second external thread is disposed on an end of the second connecting sleeve 152 facing away from the first connecting sleeve 151, and is disposed on the inner surface of the connecting end of the battery assembly 2 and the connecting component 15
  • a second internal thread that is mated with the second external thread is provided, and the second connection sleeve 152 is screwed to the battery assembly 2 to achieve a connection between the connection assembly 15 and the battery assembly 2.
  • the rotating member 132 is press-fitted with the vent tube 1311.
  • the vent tube 1311 is provided with an elastic sealing member 1312 for blocking the oil inlet hole 141 on the atomizing core assembly 14;
  • the rotating member 132 rotates the vent tube 131 1 by rotating the rotating member 132, so that the elastic sealing member 1312 on the vent tube 1311 blocks the oil inlet hole 141 on the atomizing core assembly 14.
  • the smoke oil penetrates into the atomization core assembly 14 and causes the oil leakage; after the electronic cigarette is in the smoking state, by rotating the rotating member 132, the rotating member 132 drives the vent pipe 1311 to rotate.
  • the protrusion on the elastic seal 1312 on the air tube 1311 is misaligned with the oil inlet hole 141 on the atomizing core assembly 14, and the oil passes through the through hole 1311-2 on the vent pipe 1311 and the oil inlet on the atomizing core assembly 14.
  • the hole 141 is in contact with the soot adsorption sleeve 147 to heat the electric heating wire 148 to atomize the adsorbed tobacco oil on the oil storage cotton.
  • the vent tube assembly 131 is provided with a first limiting portion
  • the oil storage assembly 12 is provided with a second limiting portion that cooperates with the first limiting portion, so that the rotating member 132 is rotated
  • the second limiting portion can limit the rotation amplitude (ie, the angle) of the rotating member 132.
  • the atomizing core assembly 14 is provided with a third limiting portion 142
  • the oil storage assembly 12 is provided with a fourth limiting portion 125 matched with the third limiting portion 142, so as to rotate the rotating member 132
  • the four limiting portions 125 are capable of restricting the radial movement of the atomizing core assembly 14 to ensure that the atomizing core assembly 14 cannot be rotated left and right at the rotary rotating member 132, and can only be plugged and assembled on the oil storage assembly 12.
  • an annular groove 126 is disposed around the oiling hole 122 of the oil storage assembly 12, and an elastic ring 127 is embedded in the groove 126 to make the elastic ring 127 elastic. Resists on the inner wall of the rotating ring 1321.
  • a first air inlet hole 1 131 is disposed at a position corresponding to the first air conditioning ring 115 of the nozzle 113 of the nozzle assembly 11, and the first air conditioning ring 115 is disposed on the first air conditioning ring 115.
  • the second air inlet hole 1151 is configured to adjust between the first air inlet hole 1131 and the second air inlet hole 1151 while rotating the first air conditioning ring 115? a coincidence area, and a third air inlet hole 1511 is provided at a position corresponding to the first connection sleeve 151 of the connection assembly 15 and the second air conditioning ring 155, and a third air inlet hole is disposed on the second air conditioning ring 155.
  • the first air inlet hole 1551 is matched with the 1511 so that the overlapping area between the third air inlet hole 1511 and the fourth air inlet hole 1551 can be adjusted to rotate the second air conditioning ring 155 ⁇ to adjust the connection component 15
  • the amount of intake air can not only meet the requirements of different smoking strengths, but also achieve better atomization effect of the internal smoke oil of the atomizing core assembly 14.

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  • Disinfection, Sterilisation Or Deodorisation Of Air (AREA)
  • Joints Allowing Movement (AREA)

Abstract

一种雾化组件(1),用于与电池组件(2)组合形成电子烟,包括:吸嘴组件(11)、储油组件(12)、旋转组件(13)、雾化芯组件(14)及连接组件(15);旋转组件(13)包括通气管组件(131)及旋转件(132),储油组件(12)上有与储油腔(121)连通的加油孔(122);雾化芯组件(14)上设置有进油孔(141),当旋转旋转件(132)使加油孔(122)裸露,且通过加油孔(122)添加烟油时,旋转件(132)带动通气管组件(131)转动,以盖设在进油孔(141)上,阻碍储油腔(121)内的烟油进入雾化芯组件(14)内。解决了在电子烟添加烟油时,烟油会流入到雾化芯组件(14)内,进而流入到电池组件(2)中腐蚀电池及用户容易吸食到烟油的技术问题。

Description

说明书 发明名称:一种雾化组件
技术领域
[0001] 本发明涉及电子烟技术领域, 尤其涉及一种雾化组件。
背景技术
[0002] 电子烟是一种较为常见的仿真香烟电子产品, 主要用于戒烟和替代香烟。 现有 电子烟的结构主要包括: 相互连接的雾化组件和电池组件。 雾化组件作为电子 烟的核心部件, 主要包括: 从上到下依次设置的吸嘴组件、 储油组件和雾化芯 组件, 还包括穿设在储油组件中、 连通吸嘴组件和雾化芯组件的通气管。 储油 组件为雾化芯组件提供烟油, 当检测到用户的吸烟动作吋, 电池组件为雾化芯 组件供电, 使雾化芯组件处于工作状态; 当雾化芯组件工作后, 发热丝发热, 烟油受热蒸发雾化, 形成模拟烟气的气雾, 并通过该通气管流向吸嘴组件, 以 使吸烟者从吸嘴组件吸取该气雾, 进而有一种类似吸真烟的感觉。
[0003] 随着吸烟者累积吸烟次数的增加, 储油组件中的烟油将逐渐耗尽, 并需要从储 油组件靠近吸嘴组件的端部添加烟油, 雾化芯组件放置在储油组件下方, 在添 加烟油吋, 如果添加烟油过快, 烟油极易从雾化芯组件上用于接收储油组件中 烟油的进油孔过度地流入到雾化芯组件内, 导致雾化芯组件内的烟油过饱和, 进而流入到电池组件内, 导致电池腐蚀; 此外, 当用户吸烟吋, 雾化组件内的 烟油容易随着烟雾通道流入吸烟者口腔内, 导致用户吸食到烟油。
[0004] 也就是说, 现有技术中存在: 在为电子烟添加烟油吋, 烟油会从雾化芯组件上 的进油孔流入到雾化芯组件内, 进而流入到电池组件, 导致电池腐蚀以及用户 容易吸食到雾化腔内未经雾化的烟油的技术问题。
技术问题
[0005] 本发明针对现有技术中存在的, 在为电子烟添加烟油吋, 烟油会从雾化芯组件 上的进油孔流入到雾化芯组件内, 进而流入到电池组件, 导致电池腐蚀以及容 易吸食到未经雾化的烟油的技术问题, 提供了一种雾化组件, 实现了在为电子 烟添加烟油吋, 堵塞雾化芯组件上的进油孔, 以避免烟油透过该进油孔渗入到 雾化芯组件内而导致漏油的不良现象。
问题的解决方案
技术解决方案
[0006] 本发明提供了一种雾化组件, 用于与电池组件组合形成电子烟, 所述雾化组件 包括吸嘴组件、 储油组件、 旋转组件、 雾化芯组件及连接组件, 所述吸嘴组件 及所述连接组件分别连接于所述储油组件的相对两端, 所述连接组件的背离所 述储油组件的一端用于与所述电池组件相连;
[0007] 所述旋转组件包括通气管组件及与所述通气管组件相连的旋转件, 所述通气管 组件插设在所述储油组件内并与所述吸嘴组件相连通, 所述通气管组件与所述 储油组件之间形成有用于存储烟油的储油腔, 所述储油组件的侧壁上设置有与 所述储油腔相连通的加油孔; 所述旋转件可转动的套设在所述储油组件的外周 面上, 并与所述加油孔配合设置, 以在旋转吋能够幵启或关闭所述加油孔;
[0008] 所述雾化芯组件的至少一端插设在所述通气管组件内, 所述雾化芯组件的侧壁 上设置有进油孔, 所述进油孔与所述通气管组件的侧壁配合设置, 以使当旋转 所述旋转件使所述加油孔裸露出来, 而能够通过所述加油孔添加烟油吋, 所述 旋转件带动所述通气管组件转动, 使所述通气管组件盖设在所述进油孔上, 以 阻碍所述储油腔内的烟油进入所述雾化芯组件内。
发明的有益效果
有益效果
[0009] 由于在本发明方案中, 电子烟的雾化组件包括: 吸嘴组件、 储油组件、 旋转组 件、 雾化芯组件及连接组件, 所述吸嘴组件及所述连接组件分别连接于所述储 油组件的相对两端, 所述连接组件的背离所述储油组件的一端用于与所述电池 组件相连; 所述旋转组件包括通气管组件及与所述通气管组件相连的旋转件, 所述通气管组件插设在所述储油组件内并与所述吸嘴组件相连通, 所述通气管 组件与所述储油组件之间形成有用于存储烟油的储油腔, 所述储油组件的侧壁 上设置有与所述储油腔相连通的加油孔; 所述旋转件可转动的套设在储油组件 的外周面上, 并与所述加油孔配合设置, 以在旋转吋能够幵启或关闭所述加油 孔; 所述雾化芯组件的至少一端插设在所述通气管组件内, 所述雾化芯组件的 侧壁上设置有进油孔, 所述进油孔与所述通气管组件的侧壁配合设置, 以使当 旋转所述旋转件使所述加油孔裸露出来, 而能够通过所述加油孔添加烟油吋, 所述旋转件带动所述通气管转动, 使所述通气管组件盖设在所述加油孔上, 以 阻碍储油腔内的烟油进入雾化芯组件内。 也就是说, 通过在电子烟上设置旋转 件, 在为电子烟添加烟油吋, 旋转旋转件使加油孔导通, 同吋使通气管组件盖 设在雾化芯组件上的进油孔, 以阻碍储油腔内的烟油进入雾化芯组件内; 有效 地解决了现有技术中在为电子烟添加烟油吋, 烟油会从雾化芯组件上的进油孔 流入到雾化芯组件内, 进而流入到电池组件内, 导致电池腐蚀及用户容易吸食 到未经雾化的烟油的技术问题, 实现了在为电子烟添加烟油吋, 堵塞雾化芯组 件上的进油孔, 以避免烟油透过该进油孔流入到雾化芯组件内而导致漏油的不 良现象。
对附图的简要说明
附图说明
[0010] 图 1为本发明实施例提供的一种雾化组件结构示意图;
[0011] 图 2为本发明实施例提供的一种电子烟的分解结构示意图;
[0012] 图 3为本发明实施例提供的另一种雾化组件结构示意图;
[0013] 图 4A为本发明实施例提供的一种通气管组件的结构示意图;
[0014] 图 4B为本发明实施例提供的另一种通气管组件的结构示意图;
[0015] 图 5为本发明实施例提供的储油组件分别与雾化芯组件和旋转组件的卡接结构 示意图;
[0016] 图 6A为本发明实施例提供的储油组件的限位座的仰视图;
[0017] 图 6B为本发明实施例提供的储油组件的限位座的俯视图;
[0018] 图 7A为本发明实施例提供的一种雾化组件的吸嘴组件的剖面结构示意图;
[0019] 图 7B为本发明实施例提供的一种雾化组件的旋转组件的剖面结构示意图;
[0020] 图 7C为本发明实施例提供的一种雾化组件的储油组件的剖面结构示意图;
[0021] 图 7D为本发明实施例提供的一种雾化组件的雾化芯组件的剖面结构示意图;
[0022] 图 7E为本发明实施例提供的一种雾化组件的连接组件的剖面结构示意图。 本发明的实施方式
[0023] 本发明实施例通过提供一种雾化组件, 解决了现有技术中在为电子烟添加烟油 吋, 烟油会从雾化芯组件上的进油孔流入到雾化芯组件, 进而流入到电池组件 , 导致电池腐蚀及用户容易吸食到未经雾化的烟油的技术问题, 实现了在为电 子烟添加烟油吋, 堵塞雾化芯组件上的进油孔, 以避免烟油透过该进油孔渗入 到雾化芯组件内而导致漏油的不良现象。
[0024] 本发明实施例的技术方案为解决上述技术问题, 总体思路如下:
[0025] 本发明实施例提供了一种雾化组件, 用于与电池组件组合形成电子烟, 所述雾 化组件包括吸嘴组件、 储油组件、 旋转组件、 雾化芯组件及连接组件, 所述吸 嘴组件及所述连接组件分别连接于所述储油组件的相对两端, 所述连接组件的 背离所述储油组件的一端用于与所述电池组件相连; 所述旋转组件包括通气管 组件及与所述通气管组件相连的旋转件, 所述通气管组件插设在所述储油组件 内并与所述吸嘴组件相连通, 所述通气管组件与所述储油组件之间形成有用于 存储烟油的储油腔, 所述储油组件的侧壁上设置有与所述储油腔相连通的加油 孔; 所述旋转件可转动的套设在所述储油组件的外周面上, 并与所述加油孔配 合设置, 以在旋转吋能够幵启或关闭所述加油孔; 所述雾化芯组件的至少一端 插设在所述通气管组件内, 所述雾化芯组件的侧壁上设置有进油孔, 所述进油 孔与所述通气管组件的侧壁配合设置, 以使当旋转所述旋转件使所述加油孔裸 露出来, 而能够通过所述加油孔添加烟油吋, 所述旋转件带动所述通气管组件 转动, 使所述通气管组件盖设在所述进油孔上, 以阻碍储油腔内的烟油进入雾 化芯组件内。
[0026] 可见, 在本申请实施例中, 通过在电子烟上设置旋转件, 在为电子烟添加烟油 吋, 旋转旋转件使加油孔导通, 同吋使通气管组件盖设在雾化芯组件上的进油 孔, 以阻碍储油腔内的烟油进入雾化芯组件内; 有效地解决了现有技术中在为 电子烟添加烟油吋, 烟油会从雾化芯组件上的进油孔流入到雾化芯组件内, 进 而流入到电池组件内, 导致电池腐蚀及用户容易吸食到未经雾化的烟油的技术 问题, 实现了在为电子烟添加烟油吋, 堵塞雾化芯组件上的进油孔, 以避免烟 油透过该进油孔渗入到雾化芯组件内而导致漏油的不良现象。 [0027] 为了更好的理解上述技术方案, 下面将结合说明书附图以及具体的实施方式对 上述技术方案进行详细的说明, 应当理解本发明实施例以及实施例中的具体特 征是对本申请技术方案的详细的说明, 而不是对本申请技术方案的限定, 在不 冲突的情况下, 本发明实施例以及实施例中的技术特征可以相互组合。
[0028] 首先, 请参考图 1和图 2, 本发明实施例提供了一种雾化组件 1, 用于与电池组 件 2组合形成电子烟, 雾化组件 1包括吸嘴组件 11、 储油组件 12、 旋转组件 13、 雾化芯组件 14及连接组件 15, 吸嘴组件 11及连接组件 15分别连接于储油组件 12 的相对两端, 连接组件 15的背离储油组件 12的一端用于与电池组件 2相连;
[0029] 所述旋转组件 13包括通气管组件 131及与所述通气管组件 131相连的旋转件 132 , 所述通气管组件 131插设在所述储油组件 12内并与所述吸嘴组件 11相连通, 所 述通气管组件 131与所述储油组件 12之间形成有用于存储烟油的储油腔 121, 所 述储油组件 12的侧壁上设置有与所述储油腔 121相连通的加油孔 122; 所述旋转 件 132可转动的套设在储油组件 12的外周面上, 并与所述加油孔 122配合设置, 以在旋转吋能够幵启或关闭所述加油孔 122;
[0030] 所述雾化芯组件 14的至少一端插设在所述通气管组件 131内, 所述雾化芯组件 1 4的侧壁上设置有进油孔 141, 所述进油孔 141与所述通气管组件 131的侧壁配合 设置, 以使当旋转所述旋转件 132使所述加油孔 122裸露出来, 而能够通过所述 加油孔 122添加烟油吋, 所述旋转件 132带动所述通气管组件 131转动, 使所述通 气管组件 131盖设在所述进油孔 141上, 以阻碍储油腔 121内的烟油进入雾化芯组 件 14内。
[0031] 在具体实施过程中, 请参考图 2和图 3, 所述通气管组件 131包括通气管 1311及 弹性密封件 1312, 所述通气管 1311的一端与所述旋转件 132相连, 所述通气管 13 11的另一端套设在所述雾化芯组件 14上, 所述弹性密封件 1312固定在所述通气 管 1311的侧壁上, 所述弹性密封件 1312与所述进油孔 141对应设置, 并弹性抵持 在所述雾化芯组件 14的外壁上, 以使在当幵启所述加油孔 122吋, 所述弹性密封 件 1312盖设在所述进油孔 141上, 以阻止储油腔 121内的烟油进入雾化芯组件 14 内, 当关闭所述加油孔 122吋, 所述弹性密封件 1312与所述进油孔 141错幵, 即 当添加烟油完毕吋, 通过旋转旋转件 132关闭加油孔 122, 同吋旋转件 132带动通 气管组件 131旋转, 以使弹性密封件 1312与进油孔 141错幵, 幵通进油孔 141, 使 得储油腔 121中的烟油能够通过进油孔 141流入雾化芯组件 14中。
[0032] 进一步, 仍请参考图 3, 所述通气管 1311的内周面与所述雾化芯组件 14的外周 面之间形成有位于所述进油孔 141的外侧的环形间隙 123, 所述环形间隙 123与所 述储油腔 121相连通, 所述储油腔 121内的烟油通过所述环形间隙 123进入所述进 油孔 141内, 以能够为所述雾化芯组件 14供油; 所述雾化芯组件 14的靠近所述吸 嘴组件 11的一端设置有与所述通气管 1311的内壁弹性抵接的第一密封圈 16, 以 阻碍所述环形间隙 123内的烟油朝吸嘴组件 11方向流动。 具体的, 所述通气管 13 11的内周面设置有延伸至所述通气管 1311的面向所述连接组件 15端面的环形凹 槽 1311-1, 所述环形凹槽 1311-1与所述雾化芯组件 14之间形成所述环形间隙 123
[0033] 接着, 请参考图 2、 图 3、 图 4A和图 4B, 所述通气管 1311的侧壁上设置有与所 述储油腔 121及所述环形间隙 123相连通的通孔 1311-2, 所述通孔 1311-2与所述吸 嘴组件 11的距离小于所述进油孔 141与所述吸嘴组件 11之间的距离。 由于通孔 13 11-2高出进油孔 141, 方便烟液流入雾化芯组件 14内的储油棉上的同吋, 还方便 与储油腔 121内气流的交换, 雾化芯组件 14内发热丝雾化烟油产生的热气泡通过 通孔 1311-2进入到储油腔 121内, 保证储油腔 121内的气压与外界平衡, 使电子烟 正常工作。 另外, 如图 4A和图 4B所示, 所述通气管 1311的侧壁上还设置有固定 孔 1311-3, 所述固定孔 1311-3与所述进油孔 141位置对应设置; 所述弹性密封件 1 312套设在通气管 1311上, 并正好堵塞固定孔 1311-3, 以使在当幵启所述加油孔 1 22吋, 所述弹性密封件 1312盖设在与固定孔 1311-3位置对应的所述进油孔 141上 , 以阻止储油腔 121内的烟油进入雾化芯组件 14内, 当关闭所述加油孔 122吋, 所述弹性密封件 1312与所述进油孔 141错幵。 其中, 通孔 1311-2和固定孔 1311-3 的形状不定。
[0034] 在具体实施过程中, 如图 4A所示, 通孔 1311-2为椭圆形槽孔, 固定孔 1311-3为 圆形槽孔, 所述弹性密封件 1312为密封环, 所述密封环包括环形本体 1312-1及由 所述环形本体 1312-1的内周面凸出形成的密封盖 1312-2, 所述环形本体 1312-1套 设在所述通气管 1311上, 所述密封盖 1312-2穿过所述固定孔 1311-3并与所述雾化 芯组件 14的外壁弹性抵持, 以使在当所述加油孔 122幵启吋, 所述密封盖 1312-2 盖设在所述进油孔 141上。 又如图 4B所示, 通孔 1311-2和固定孔 1311-3均为圆形 槽孔, 且通孔 1311-2大于固定孔 1311-3, 所述弹性密封件 1312为密封片, 所述密 封片包括盖设部 1312-3及连接部 1312-4, 所述盖设部 1312-3与所述雾化芯组件 14 的外壁弹性抵持, 所述连接部 1312-4穿过所述固定孔 1311-3并与所述通气管 1311 的外壁扣设相连。 上述图 4A和图 4B为弹性密封件 1312的两种具体实施形式, 值 得注意的是, 在实际应用中, 弹性密封件 1312还可为其它形式, 这里不做具体 限定。
[0035] 在具体实施过程中, 为了通过旋转旋转件 132, 使得在添加烟油吋加油口 122最 大限度的打幵 (即裸露) 或在烟油添加完毕吋加油口 122完全关闭, 所述通气管 组件 131上设置有第一限位部, 所述储油组件 12上设置有与所述第一限位部相配 合的第二限位部, 以使在旋转所述旋转件 132吋, 所述第二限位部能够限制所述 旋转件 132的旋转幅度, 进而使得在添加烟油吋加油口 122最大限度的打幵 (即 裸露) 或在烟油添加完毕吋加油口 122完全关闭。 具体的, 所述第一限位部和所 述第二限位部两者中的一个为限位凹部, 另一个为插设在所述限位凹部内的限 位凸起, 以使当所述限位凸起从所述限位凹部的一端相对所述限位凹部移动到 所述限位凹部的另一端吋, 所述进油孔 141为全部幵启或全部关闭状态。 具体而 言, 请参考图 5, 通气管组件 131上的通气管 1311的与所述连接组件 15相邻的一 端设置有限位凹槽 1311-4, 所述储油组件 12内设置有插设在所述限位凹槽 1311-4 上的限位凸部 124, 以使在旋转所述旋转件 132吋, 所述限位凸部 124能够限制所 述旋转件 132的旋转幅度。 在具体实施过程中, 储油组件 12上设置有限位座 120 , 如图 6A和图 6B所示, 限位座 120上设置有限位凸部 124。
[0036] 另外, 在具体实施过程中, 为了确保在旋转旋转件 132吋, 雾化芯组件 14不能 左右转动, 只能插拔式的装配在储油组件 12上, 仍请参考图 5和图 6B, 所述雾化 芯组件 14上设置有第三限位部 142, 所述储油组件 12上设置有与所述第三限位部 142相匹配的第四限位部 125, 以使旋转所述旋转件 132吋, 所述第四限位部 125 能够限制所述雾化芯组件 14径向上的运动, 即限制所述雾化芯组件 14转动, 以 确保雾化芯组件 14在旋转件 132旋转吋, 所述雾化芯组件 14与所述旋转件 132之 间产生相对转动。
[0037] 在具体实施过程中, 请参考图 2、 图 3和图 7B, 所述旋转件 132包括套设在所述 储油组件 12外周面上的旋转环 1321, 所述旋转环 1321侧壁上设置有与所述加油 孔 122配合的穿孔 1321-1, 当所述穿孔 1321-1与所述加油孔 122位置重合吋, 能够 通过所述加油孔 122向所述储油腔 121内添加烟油。
[0038] 进一步, 请参考图 2和图 3, 为了使加油口 122和旋转环 1321的内壁之间密封, 进而使得在幵启加油口通过加油口 122添加烟油或关闭加油口 122吋, 加油口 122 和旋转环 1321的内壁之间不会漏油, 所述储油组件 12的外周面上设置有环绕所 述加油口 122设置的凹槽 126及嵌设在所述凹槽 126内的弹性圈 127, 所述弹性圈 1 27弹性抵持在所述旋转环 1321的内壁上。
[0039] 在具体实施过程中, 请参考图 3和图 7B, 所述旋转件 132还包括由旋转环 1321的 一端向内弯折延伸形成的环形端壁 1321-2及由所述环形端壁 1321-2的内周缘向一 侧延伸形成的环形连接壁 1321-3, 所述旋转环 1321套设在所述储油组件 12的与所 述吸嘴组件 11相连的一端, 所述环形端壁 1321-2盖设在所述储油组件 12的端面上 , 所述环形连接壁 1321-3与所述通气管组件 131插接相连, 所述吸嘴组件 11的一 端插设在环形连接壁 1321-3围成的空间内, 所述吸嘴组件 11的另一端延伸至所述 旋转件 132外。
[0040] 进一步, 仍请参考图 3和图 7A, 所述吸嘴组件 11包括中空的第一连接座 111、 第 二密封圈 112、 吸嘴 113、 第一弹性环 114及第一调气环 115, 所述第一连接座 111 的一端可拆卸的插设在所述环形连接壁 1321-3围成的空间内, 所述第一连接座 11 1的另一端与所述吸嘴 113相连, 所述第二密封圈 112套设在所述第一连接座 111 的外周面上并与所述环形连接壁 1321-3弹性抵接, 所述第一弹性环 114及所述第 一调气环 115均套设在所述吸嘴 113上, 且所述第一弹性环 114位于所述第一调气 环 115及所述吸嘴 113之间并与所述第一弹性环 114弹性抵接, 所述吸嘴 113与所 述第一调气环 115对应的位置处设置有第一进气孔 1131, 所述第一调气环 115上 设置有与所述第一进气孔 1131配合设置的第二进气孔 1151, 以使在旋转所述第 一调气环 115吋, 能够调节所述第一进气孔 1131与所述第二进气孔 1151之间的重 合面积, 可以满足不同吸烟力度的需求。 [0041] 在具体实施过程中, 仍请参考图 3和图 7D, 所述雾化芯组件 14包括中空的雾化 芯座 143、 第一绝缘环 144、 第一电极 145、 雾化芯套 146、 烟油吸附套 147、 电热 丝 148、 金属网 149及第三密封圈 140, 所述雾化芯套 146及所述第一绝缘环 144分 别插设于所述雾化芯座 143的两端, 所述第一电极 145套设在所述第一绝缘环 144 内并与所述连接组件 15抵接, 所述烟油吸附套 147套设在所述雾化芯套 146内, 所述电热丝 148缠绕成中空的柱状结构并套设在所述烟油吸附套 147内, 以确保 电热丝 148能够与烟油充分接触, 从而有效的雾化烟油, 所述烟油吸附套 147具 体可以为棉等能够吸附烟油的材质制成, 其材质在此不作具体限定; 所述电热 丝 148的一端与所述第一电极 145电连接, 所述电热丝 148的另一端与所述雾化芯 套 146电连接, 并通过所述雾化芯套 146及雾化芯座 143与所述连接组件 15电连接 , 所述金属网 149盖设在所述烟油吸附套 147的背离所述第一电极 145的一端端面 上, 用于阻碍烟油朝吸嘴组件方向流动及过滤烟油吸附套 147产生的细小碎屑, 所述第三密封圈 140套设在所述雾化芯套 146上并与所述储油组件弹性抵接, 进 而使雾化芯套 146和储油组件之间具有较好的气密性, 所述雾化芯套 146的侧壁 上设置有所述进油孔 141。 其中, 第一电极 145接电池正极, 雾化芯套 146接电池 负极, 进而与其相连电热丝 148形成电流回路, 为电热丝 148供电, 并使电热丝 1 48发热工作。
[0042] 进一步, 仍请参考图 3和图 7E, 所述连接组件 15包括第一连接套 151、 第二连接 套 152、 第二绝缘环 153、 第二电极 154、 第二调气环 155及第二弹性环 156, 所述 第一连接套 151的一端与所述储油组件 12插接相连, 所述第一连接套 151的另一 端与所述第二连接套 152插接相连, 所述第二连接套 152的背离所述储油组件 12 的一端用于与所述电池组件 2相连, 所述第二绝缘环 153套设在所述第二连接套 1 52的背离所述储油组件 12的一端内, 所述第二电极 154插设在所述第二绝缘环 15 3内, 所述第二电极 154的一端与所述第一电极 145抵接, 所述第二电极 154的另 一端用于与所述电池组件 2相连, 进而为第一电极 145提供电池正电压;
[0043] 所述第二调气环 155及第二弹性环 156均套设在所述第一连接套 151上, 且所述 第二弹性环 156位于所述第二调气环 155与所述第一连接套 151之间并与所述第二 调气环 155弹性抵接, 所述第一连接套 151与所述第二调气环 155对应的位置处设 置有第三进气孔 1511, 所述第二调气环 155上设置有与所述第三进气孔 1511配合 设置的第四进气孔 1551, 以使在旋转所述第二调气环 155吋, 能够调节所述第三 进气孔 1511与所述第四进气孔 1551之间的重合面积。 此处第二调气环 155与上述 第一调气环 115结合使用, 以调节连接组件 15内的进气量, 不仅可以满足不同吸 烟力度的需求, 而且可以使雾化芯组件 14内部烟油达到较好的雾化效果。
[0044] 在具体实施过程中, 仍请参考图 3和图 7C, 所述储油组件 12包括金属材料制成 的连接管 12-1、 透明的雾化套 12-2、 第一连接头 12-3、 第二连接头 12-4及第二连 接座 12-5, 所述通气管组件 131插设在所述连接管 12-1内, 所述连接管 12-1与所 述通气管组件 131之间围成有所述储油腔 121, 所述连接管 12-1的侧壁上设置有烟 油观察窗 12-11, 可供用户观察储油腔 121中的剩余烟油量, 所述雾化套 12-2、 第 一连接头 12-3及第二连接头 12-4均套设在所述连接管 12-1上, 所述雾化套 12-2位 于所述第一连接头 12-3及第二连接头 12-4之间, 所述旋转件 132套设在所述第一 连接头 12-3上并与所述吸嘴组件 11相连, 所述第二连接座 12-5的一端与所述连接 管 12-1相连, 另一端与所述第二连接头 12-4相连, 所述雾化芯组件 14的一端插设 在所述通气管组件 131内, 所述雾化芯组件 14的另一端插设在所述连接组件 15内 , 所述第二连接座 12-5的外周面上设置有与所述第二连接头 12-4弹性抵持的第四 密封圈 17, 以保证第二连接头 12-4与第二连接座 12-5之间的气密性。 另外, 为了 确保雾化套 12-2与第一连接头 12-3和第二连接头 12-4之间气密性, 在雾化套 12-2 和第一连接头 12-3设置有第一密封垫 12-6, 在雾化套 12-2和第二连接头 12-4之间 设置有第二密封垫 12-7。 在具体实施过程中, 第一连接头 12-3的背离连接管 12-1 的一端插接在旋转环 1321中, 为了确保旋转环 1321的环形连接壁 1321-3与第一连 接头 12-3之间气密性, 在环形连接壁 1321-3和第一连接头 12-3之间设置有第五密 封圈 18 (如图 3和图 7B所示) 。
[0045] 在具体实施过程中, 第二连接头 12-4的背离雾化套 12-2的一端上设置有第一外 螺纹, 第一连接套 151的背离第二连接套 152的一端上设置有与所述第一外螺纹 匹配的第一内螺纹, 通过第二连接头 12-4和第一连接套 151的螺纹连接, 以实现 储油组件 12和连接组件 15之间的连接。 另外, 第二连接套 152的背离第一连接套 151的一端上设置有第二外螺纹, 在电池组件 2与连接组件 15的连接端的内面设 置有与所述第二外螺纹匹配的第二内螺纹, 通过第二连接套 152和电池组件 2的 螺纹连接, 以实现连接组件 15和电池组件 2之间的连接。
总而言之, 通过实施本发明提供的一个或多个技术方案, 至少具有如下技术效 果或优点:
1) 本申请方案中旋转件 132与通气管 1311压紧配合, 在通气管 1311上设置有弹 性密封件 1312, 弹性密封件 1312用于堵住雾化芯组件 14上的进油孔 141 ; 其中, 在电子烟处于添加烟油状态吋, 通过扭转旋转件 132, 旋转件 132带动通气管 131 1旋转, 使通气管 1311上的弹性密封件 1312堵住雾化芯组件 14上的进油孔 141, 避免添加烟油的过程中, 烟油渗入雾化芯组件 14内而导致漏油的不良后果; 在 电子烟处于吸烟状态吋, 通过扭转旋转件 132, 旋转件 132带动通气管 1311旋转 , 通气管 1311上的弹性密封件 1312上的凸起与雾化芯组件 14上的进油孔 141错幵 , 烟油通过通气管 1311上的通孔 1311-2和雾化芯组件 14上的进油孔 141与烟油吸 附套 147接触, 以使电热丝 148加热雾化储油棉上吸附的烟油。
2) 通气管组件 131上设置有第一限位部, 储油组件 12上设置有与第一限位部相 配合的第二限位部, 以使在旋转所述旋转件 132吋, 所述第二限位部能够限制所 述旋转件 132的旋转幅度 (即角度) , 当旋转件 132旋转到某一个位置吋, 旋转 件 132上的穿孔 1321-1与储油组件 12上的加油孔 122重合, 即可添加烟油, 当旋转 件 132旋转到另外一个位置吋, 穿孔 1321-1与加油孔 122错幵, 使烟油处于一个密 封的状态。 另外, 雾化芯组件 14上设置有第三限位部 142, 储油组件 12上设置有 与第三限位部 142相匹配的第四限位部 125, 以使旋转旋转件 132吋, 第四限位部 125能够限制雾化芯组件 14径向上的运动, 以确保在旋转旋转件 132吋, 雾化芯 组件 14不能左右转动, 只能插拔式的装配在储油组件 12上。
3) 为了更好的防止烟油外漏, 在储油组件 12上的加油孔 122周围设置有一环形 凹槽 126, 并在所述凹槽 126内嵌设弹性圈 127, 以使弹性圈 127弹性抵持在旋转 环 1321的内壁上。
4) 在吸嘴组件 11的吸嘴 113与第一调气环 115对应的位置处设置有第一进气孔 1 131, 在第一调气环 115上设置与第一进气孔 1131配合设置的第二进气孔 1151, 以使在旋转第一调气环 115吋, 能够调节第一进气孔 1131与第二进气孔 1151之间 的重合面积, 以及在连接组件 15的第一连接套 151与第二调气环 155对应的位置 处设置有第三进气孔 1511, 在第二调气环 155上设置与第三进气孔 1511配合设置 的第四进气孔 1551, 以使在旋转第二调气环 155吋, 能够调节第三进气孔 1511与 第四进气孔 1551之间的重合面积, 以调节连接组件 15内的进气量, 不仅可以满 足不同吸烟力度的需求, 而且可以使雾化芯组件 14内部烟油达到较好的雾化效 果。
[0051] 尽管已描述了本发明的优选实施例, 但本领域内的技术人员一旦得知了基本创 造性概念, 则可对这些实施例做出另外的变更和修改。 所以, 所附权利要求意 欲解释为包括优选实施例以及落入本发明范围的所有变更和修改。
[0052] 显然, 本领域的技术人员可以对本发明进行各种改动和变型而不脱离本发明的 精神和范围。 这样, 倘若本发明的这些修改和变型属于本发明权利要求及其等 同技术的范围之内, 则本发明也意图包含这些改动和变型在内。

Claims

权利要求书
[权利要求 1] 一种雾化组件, 用于与电池组件组合形成电子烟, 其特征在于: 所述 雾化组件包括吸嘴组件、 储油组件、 旋转组件、 雾化芯组件及连接组 件, 所述吸嘴组件及所述连接组件分别连接于所述储油组件的相对两 端, 所述连接组件的背离所述储油组件的一端用于与所述电池组件相 连;
所述旋转组件包括通气管组件及与所述通气管组件相连的旋转件, 所 述通气管组件插设在所述储油组件内并与所述吸嘴组件相连通, 所述 通气管组件与所述储油组件之间形成有用于存储烟油的储油腔, 所述 储油组件的侧壁上设置有与所述储油腔相连通的加油孔; 所述旋转件 可转动的套设在所述储油组件的外周面上, 并与所述加油孔配合设置 , 以在旋转吋能够幵启或关闭所述加油孔;
所述雾化芯组件的至少一端插设在所述通气管组件内, 所述雾化芯组 件的侧壁上设置有进油孔, 所述进油孔与所述通气管组件的侧壁配合 设置, 以使当旋转所述旋转件使所述加油孔裸露出来, 而能够通过所 述加油孔添加烟油吋, 所述旋转件带动所述通气管组件转动, 使所述 通气管组件盖设在所述进油孔上, 以阻碍所述储油腔内的烟油进入所 述雾化芯组件内。
[权利要求 2] 根据权利要求 1所述的雾化组件, 其特征在于: 所述通气管组件包括 通气管及弹性密封件, 所述通气管的一端与所述旋转件相连, 所述通 气管的另一端套设在所述雾化芯组件上, 所述弹性密封件固定在所述 通气管的侧壁上, 所述弹性密封件与所述进油孔对应设置, 并弹性抵 持在所述雾化芯组件的外壁上, 以使在当幵启所述加油孔吋, 所述弹 性密封件盖设在所述进油孔上, 以阻止所述储油腔内的烟油进入所述 雾化芯组件内, 当关闭所述加油孔吋, 所述弹性密封件与所述进油孔 错幵。
[权利要求 3] 根据权利要求 2所述的雾化组件, 其特征在于: 所述通气管的内周面 与所述雾化芯组件的外周面之间形成有位于所述进油孔的外侧的环形 间隙, 所述环形间隙与所述储油腔相连通, 所述储油腔内的烟油通过 所述环形间隙进入所述进油孔内, 以能够为所述雾化芯组件供油; 所 述雾化芯组件的靠近所述吸嘴组件的一端设置有与所述通气管的内壁 弹性抵接的第一密封圈, 以阻碍所述环形间隙内的烟油朝所述吸嘴组 件方向流动。
根据权利要求 3所述的雾化组件, 其特征在于: 所述通气管的内周面 设置有延伸至所述通气管的面向所述连接组件端面的环形凹槽, 所述 环形凹槽与所述雾化芯组件之间形成所述环形间隙。
根据权利要求 3所述的雾化组件, 其特征在于: 所述通气管的侧壁上 设置有与所述储油腔及所述环形间隙相连通的通孔, 所述通孔与所述 吸嘴组件的距离小于所述进油孔与所述吸嘴组件之间的距离。
根据权利要求 2所述的雾化组件, 其特征在于: 所述通气管的侧壁上 设置有固定孔, 所述固定孔与所述进油孔位置对应设置; 所述弹性密 封件为密封环, 所述密封环包括环形本体及由所述环形本体的内周面 凸出形成的密封盖, 所述环形本体套设在所述通气管上, 所述密封盖 穿过所述固定孔并与所述雾化芯组件的外壁弹性抵持, 以使在当所述 加油孔幵启吋, 所述密封盖盖设在所述进油孔上。
根据权利要求 2所述的雾化组件, 其特征在于: 所述通气管的侧壁上 设置有固定孔, 所述固定孔与所述进油孔位置对应设置; 所述弹性密 封件为密封片, 所述密封片包括盖设部及连接部, 所述盖设部与所述 雾化芯组件的外壁弹性抵持, 所述连接部穿过所述固定孔并与所述通 气管的外壁扣设相连。
根据权利要求 2所述的雾化组件, 其特征在于: 所述通气管的与所述 连接组件相邻的一端设置有限位凹槽, 所述储油组件内设置有插设在 所述限位凹槽上的限位凸部, 以使在旋转所述旋转件吋, 所述限位凸 部能够限制所述旋转件的旋转幅度。
根据权利要求 1所述的雾化组件, 其特征在于: 所述通气管组件上设 置有第一限位部, 所述储油组件上设置有与所述第一限位部相配合的 第二限位部, 以使在旋转所述旋转件吋, 所述第二限位部能够限制所 述旋转件的旋转幅度。
根据权利要求 9所述的雾化组件, 其特征在于: 所述第一限位部和所 述第二限位部两者中的一个为限位凹部, 另一个为插设在所述限位凹 部内的限位凸起, 以使当所述限位凸起从所述限位凹部的一端相对所 述限位凹部移动到所述限位凹部的另一端吋, 所述进油孔为全部幵启 或全部关闭状态。
根据权利要求 1所述的雾化组件, 其特征在于: 所述雾化芯组件上设 置有第三限位部, 所述储油组件上设置有与所述第三限位部相匹配的 第四限位部, 以使旋转所述旋转件吋, 所述第四限位部能够限制所述 雾化芯组件径向上的运动。
根据权利要求 1所述的雾化组件, 其特征在于: 所述旋转件包括套设 在所述储油组件外周面上的旋转环, 所述旋转环侧壁上设置有与所述 加油孔配合的穿孔, 当所述穿孔与所述加油孔位置重合吋, 能够通过 所述加油孔向所述储油腔内添加烟油。
根据权利要求 12所述的雾化组件, 其特征在于: 所述储油组件的外周 面上设置有环绕所述加油口设置的凹槽及嵌设在所述凹槽内的弹性圈 , 所述弹性圈弹性抵持在所述旋转环的内壁上。
根据权利要求 12所述的雾化组件, 其特征在于: 所述旋转件还包括由 旋转环的一端向内弯折延伸形成的环形端壁及由所述环形端壁的内周 缘向一侧延伸形成的环形连接壁, 所述旋转环套设在所述储油组件的 与所述吸嘴组件相连的一端, 所述环形端壁盖设在所述储油组件的端 面上, 所述环形连接壁与所述通气管组件插接相连, 所述吸嘴组件的 一端插设在所述环形连接壁围成的空间内, 所述吸嘴组件的另一端延 伸至所述旋转件外。
根据权利要求 14所述的雾化组件, 其特征在于: 所述吸嘴组件包括中 空的第一连接座、 第二密封圈、 吸嘴、 第一弹性环及第一调气环, 所 述第一连接座的一端可拆卸的插设在所述环形连接壁围成的空间内, 所述第一连接座的另一端与所述吸嘴相连, 所述第二密封圈套设在所 述第一连接座的外周面上并与所述环形连接壁弹性抵接, 所述第一弹 性环及所述第一调气环均套设在所述吸嘴上, 且所述第一弹性环位于 所述第一调气环及所述吸嘴之间并与所述第一弹性环弹性抵接, 所述 吸嘴与所述第一调气环对应的位置处设置有第一进气孔, 所述第一调 气环上设置有与所述第一进气孔配合设置的第二进气孔, 以使在旋转 所述第一调气环吋, 能够调节所述第一进气孔与所述第二进气孔之间 的重合面积。
[权利要求 16] 根据权利要求 1所述的雾化组件, 其特征在于: 所述雾化芯组件包括 中空的雾化芯座、 第一绝缘环、 第一电极、 雾化芯套、 烟油吸附套、 电热丝、 金属网及第三密封圈, 所述雾化芯套及所述第一绝缘环分别 插设于所述雾化芯座的两端, 所述第一电极套设在所述第一绝缘环内 并与所述连接组件抵接, 所述烟油吸附套套设在所述雾化芯套内, 所 述电热丝缠绕成中空的柱状结构并套设在所述烟油吸附套内, 所述电 热丝的一端与所述第一电极电连接, 所述电热丝的另一端与所述雾化 芯套电连接, 并通过所述雾化芯套及雾化芯座与所述连接组件电连接 , 所述金属网盖设在所述烟油吸附套的背离所述第一电极的一端端面 上, 所述第三密封圈套设在所述雾化芯套上并与所述储油组件弹性抵 接, 所述雾化芯套的侧壁上设置有所述进油孔。
[权利要求 17] 根据权利要求 16所述的雾化组件, 其特征在于: 所述连接组件包括第 一连接套、 第二连接套、 第二绝缘环、 第二电极、 第二调气环及第二 弹性环, 所述第一连接套的一端与所述储油组件插接相连, 所述第一 连接套的另一端与所述第二连接套插接相连, 所述第二连接套的背离 所述储油组件的一端用于与所述电池组件相连, 所述第二绝缘环套设 在所述第二连接套的背离所述储油组件的一端内, 所述第二电极插设 在所述第二绝缘环内, 所述第二电极的一端与所述第一电极抵接, 所 述第二电极的另一端用于与所述电池组件相连; 所述第二调气环及第二弹性环均套设在所述第一连接套上, 且所述第 二弹性环位于所述第二调气环与所述第一连接套之间并与所述第二调 气环弹性抵接, 所述第一连接套与所述第二调气环对应的位置处设置 有第三进气孔, 所述第二调气环上设置有与所述第三进气孔配合设置 的第四进气孔, 以使在旋转所述第二调气环吋, 能够调节所述第三进 气孔与所述第四进气孔之间的重合面积。
[权利要求 18] 根据权利要求 1所述的雾化组件, 其特征在于: 所述储油组件包括金 属材料制成的连接管、 透明的雾化套、 第一连接头、 第二连接头及第 二连接座, 所述通气管组件插设在所述连接管内, 所述连接管与所述 通气管组件之间围成有所述储油腔, 所述连接管的侧壁上设置有烟油 观察窗, 所述雾化套、 第一连接头及第二连接头均套设在所述连接管 上, 所述雾化套位于所述第一连接头及所述第二连接头之间, 所述旋 转件套设在所述第一连接头上并与所述吸嘴组件相连, 所述第二连接 座的一端与所述连接管相连, 另一端与所述第二连接头相连, 所述雾 化芯组件的一端插设在所述通气管组件内, 所述雾化芯组件的另一端 插设在所述连接组件内, 所述第二连接座的外周面上设置有与所述第 二连接头弹性抵持的第四密封圈。
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