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WO2017015832A1 - Atomiseur - Google Patents

Atomiseur Download PDF

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Publication number
WO2017015832A1
WO2017015832A1 PCT/CN2015/085203 CN2015085203W WO2017015832A1 WO 2017015832 A1 WO2017015832 A1 WO 2017015832A1 CN 2015085203 W CN2015085203 W CN 2015085203W WO 2017015832 A1 WO2017015832 A1 WO 2017015832A1
Authority
WO
WIPO (PCT)
Prior art keywords
assembly
atomizing
oil
oil storage
ring
Prior art date
Legal status (The legal status 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 status listed.)
Ceased
Application number
PCT/CN2015/085203
Other languages
English (en)
Chinese (zh)
Inventor
刘秋明
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Kimree Technology Co Ltd
Original Assignee
Kimree Technology Co Ltd
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 Kimree Technology Co Ltd filed Critical Kimree Technology Co Ltd
Priority to PCT/CN2015/085203 priority Critical patent/WO2017015832A1/fr
Priority to CN201590001323.0U priority patent/CN207653579U/zh
Publication of WO2017015832A1 publication Critical patent/WO2017015832A1/fr
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

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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

Definitions

  • the utility model relates to the field of electronic cigarettes, in particular to an atomizer which can be easily disassembled, so that the damaged device in the atomizer can be replaced.
  • the atomizer for atomizing smoke of the prior art includes an atomizing sleeve, the heating sleeve is internally provided with a heating wire, the oil guiding rope for conducting the oil and the oil storage cotton for storing the oil And the oil guiding rope is inserted into the oil storage cotton, so that the oil guiding rope can conduct the oil in the oil storage cotton to the electric heating wire, so that the electric heating wire can
  • the smoke oil is atomized to generate smoke that can be used by the user;
  • the prior art has the drawback that most of the components of the atomizer are interference fit, and the atomizer is non-removable or extremely difficult to disassemble, and it is highly probable during the disassembly process. Because the user is overpowered and damages the nebulizer device; since the nebulizer is non-removable, if the user needs to continue to smoke, the entire nebulizer is often replaced, for example, if the guide The wick is made of a glass fiber material capable of guiding oil, and in subsequent use, the oil guiding rope is more prone to problems and cannot transfer the oil to the heating wire, so that the atomizer is not normal. Atomizing the smoke oil to form smoke, and the structure of the atomizer shown in the prior art is non-removable, and once the oil guide rope has a problem, the user cannot replace the oil guide rope. Only the overall replacement of the atomizer is a waste.
  • the utility model provides an atomizer which is easy to disassemble.
  • An atomizer for forming an electronic cigarette in combination with a battery assembly comprising an oil storage assembly, a connection assembly, an atomization core assembly and a nozzle assembly, wherein the oil storage assembly is provided with an oil storage chamber for storing smoke oil
  • the connecting assembly and the nozzle assembly are respectively connected to opposite ends of the oil storage assembly, one end of the connecting assembly is detachably connected to the oil storage assembly, and the other end of the connecting assembly is used for
  • the battery assembly is detachably connected;
  • the atomizing core assembly is inserted into the oil storage assembly, one end of the atomizing core assembly is detachably connected to the oil storage assembly, and the other end of the atomizing core assembly Interfacing with the connection assembly such that when the connection assembly is detached from the oil storage assembly, the connection assembly can be The atomizing core assembly is detached from the oil storage assembly together;
  • the atomizing core assembly includes a hollow atomizing seat, a first sealing ring, an atomizing cover, an oil guiding column and a heating wire, and one end of the atomizing seat is detachably inserted into the connecting component,
  • An annular first groove and a limiting protrusion are disposed on an outer circumferential surface of the other end of the atomizing seat, the first sealing ring is sleeved in the first groove, and the atomizing cover is detachably sleeved
  • An inner wall of the atomizing cover elastically abuts against the first sealing ring, and an end surface of the atomizing cover facing the connecting component abuts on the limiting protrusion
  • An oil guiding hole communicating with the oil storage chamber is disposed on a sidewall of the atomizing cover, and the oil guiding rod is received in the atomizing cover and adsorbs the oil storage through the oil guiding hole
  • An oil in the cavity, the heating wire is wound on the oil guiding
  • an end surface of the oil guiding rod is disposed on the oil guiding hole and elastically abuts against a sidewall of the atomizing cover.
  • the number of the oil guiding holes is two, and the two oil guiding holes are opposite in position.
  • the oil guiding rod is mounted on one end surface of the atomizing seat.
  • one end of the atomizing core assembly is connected to the connecting assembly by threads of the atomizing seat, so that the atomizing core assembly is interposed when the connecting assembly is connected to the oil storage assembly It is disposed inside the oil storage assembly.
  • the atomizing seat is disposed at an outer peripheral surface of one end of the connecting component, and an annular second groove is disposed, and the second groove is sleeved with a first elastically abutting connection with the connecting component.
  • Two sealing rings are provided.
  • the oil storage assembly is provided with a vent pipe communicating with the nozzle assembly and the atomizing core assembly, and the inner wall of the atomizing cover is provided with an annular third groove, the third concave A third sealing ring is disposed between the groove and the vent pipe, and the outer wall of the vent pipe is elastically resisted by the third sealing ring.
  • the side wall of the oil storage assembly is provided with a light-transmitting area for observing the remaining amount of smoke oil in the oil storage chamber.
  • the oil storage assembly comprises a metal tube, a light transmission tube, a nozzle connection head, a first sealing ring, a second sealing ring and the vent tube, and a side wall of the metal tube encloses the oil storage chamber
  • An observation window is disposed on a sidewall of the metal tube, and the light-transmitting tube is sleeved on the metal tube, and the light-transmitting tube forms the light-transmitting area corresponding to a region of the observation window, a sealing ring and a second sealing ring are respectively sleeved on the outer circumferential surfaces of the two ends of the metal tube and elastically resisting the inner wall of the light transmission tube, and the nozzle connector is sleeved At one end of the metal tube, the nozzle assembly and the vent tube are respectively inserted at two ends of the nozzle connector.
  • the nozzle assembly includes a nozzle assembly body and a first oscillating ring rotatably sleeved on the nozzle assembly body, and the nozzle assembly body is axially disposed through the nozzle a smoke passage communicating with the atomizing core assembly at both ends of the assembly body, the side wall of the nozzle assembly body is provided with a first air inlet hole communicating with the smoke passage, the first air distribution ring a second air inlet hole is disposed on the side wall, and the first air inlet hole and the second air inlet hole are oppositely disposed to enable the second air to be adjusted when the first air conditioning ring is rotated
  • the overlapping area of the intake hole and the first intake hole, and the different overlapping area of the second intake hole and the first intake hole correspond to different intake air amounts entering the inside of the atomizer.
  • the nozzle assembly body comprises a first connecting sleeve, a nozzle, a fourth sealing ring and a first elastic ring
  • the first connecting sleeve is detachably connected to the oil storage assembly, the first connection The other end is connected to the nozzle
  • the fourth sealing ring is sleeved on the outer circumferential surface of the first connecting sleeve and elastically abuts against the inner wall of the oil storage assembly
  • the first elastic ring is sleeved on the The outer peripheral surface of the nozzle is elastically abutted against the inner wall of the first air-conditioning ring.
  • the connecting component comprises a connecting component body and a second air conditioning ring rotatably sleeved on the connecting component body, and the side wall of the connecting component body is disposed with the atomizing core component a third air inlet hole, a fourth air inlet hole is disposed on a sidewall of the second air conditioning ring, and the third air inlet hole and the fourth air inlet hole are oppositely disposed to enable
  • the overlapping area of the fourth air inlet hole and the third air inlet hole can be adjusted when the second air conditioning ring is rotated, and the different fourth air inlet holes and the third air inlet hole are overlapped
  • the area corresponds to a different amount of intake air entering the interior of the atomizer.
  • the connecting assembly body comprises a second connecting sleeve, a third connecting sleeve, a first insulating ring and a first electrode, and one end of the second connecting sleeve is inserted into the oil storage assembly and the atomizing core assembly Connected to the other end, the other end of the second connecting sleeve is connected to one end of the third connecting sleeve, and the third air inlet is disposed on the side wall of the second connecting sleeve, the second adjustment a gas ring is sleeved on the second connecting sleeve, the first electrode is inserted at an end of the third connecting sleeve facing away from the second connecting sleeve, and the first insulating ring is sleeved on the first An electrode is elastically abutted against an inner wall of the third connecting sleeve, and the atomizing core assembly is electrically connected to the battery assembly through the first electrode and the third connecting sleeve.
  • the connecting assembly body further includes a second elastic ring, and the outer peripheral surface of the second connecting sleeve An annular receiving groove and an annular fixing groove on the groove wall of the receiving groove are disposed, the receiving groove extending to an end surface of the second connecting sleeve facing away from the oil storage assembly, the second The air conditioning ring is sleeved in the receiving groove, and the second elastic ring is sleeved in the fixing groove and elastically resists the second air conditioning ring, and the outer peripheral surface of the third connecting sleeve is provided with useful An annular protrusion that blocks the second air conditioning ring from moving away from the oil storage assembly.
  • the atomizing core assembly further includes a second insulating ring and a second electrode abutting the first electrode, the second electrode being interposed between the atomizing seat and the connecting component
  • the second insulating ring is sleeved on the second electrode and elastically resists the inner wall of the atomizing seat, and one end of the heating wire is electrically connected to the second electrode, and the heating wire is The other end is electrically connected to the atomization seat.
  • the atomizing cover comprises a sleeve body and a cap, the sleeve body is sleeved on one end of the atomization seat, and an inner wall of the sleeve body elastically resists the first sealing ring, the cap The cover is disposed at an end of the sleeve facing away from the atomization seat and is detachably connected to the sleeve body.
  • the inner peripheral wall of the atomizing cover is provided with an annular fourth groove, and the fourth groove is disposed opposite to the position of the first groove, so that the first sealing ring is further sleeved In the fourth groove, the atomizing cover and the first sealing ring are elastically resisted.
  • the limiting protrusion is provided with a positioning notch
  • the end surface of the atomizing cover facing the connecting component is provided with a positioning portion, and the positioning portion is inserted in the positioning notch to block the
  • the atomizing cover is arbitrarily rotated with respect to the atomizing seat.
  • the positioning notch is located at one side of the oil guiding hole such that the positioning notch is located directly below the oil guiding hole when the atomizer is placed vertically and in a positively-disposed state.
  • the utility model provides an atomizer, which comprises an oil storage assembly, a connection assembly, an atomization core assembly and a nozzle assembly, wherein the oil storage assembly is provided with an oil storage chamber for storing smoke oil; the connection assembly And the nozzle assemblies are respectively connected to opposite ends of the oil storage assembly, one end of the connection assembly is detachably connected to the oil storage assembly, and the other end of the connection assembly is detachable from the battery assembly Connecting the atomization core assembly in the oil storage assembly, one end of the atomization core assembly is detachably connected to the oil storage assembly, and the other end of the atomization core assembly and the connection assembly Connecting so that when the connecting assembly is detached from the oil storage assembly, the connecting assembly can be detached from the oil storage assembly together with the atomizing core assembly, the atomizing cover being detachable a sleeve is disposed on one end of the atomization seat, an inner wall of the atomization cover elastically resists the first sealing ring, and the atomization cover faces the connection One end
  • FIG. 1 is a schematic cross-sectional structural view of an atomizer provided by the present invention.
  • FIG. 2 is a schematic view showing an explosive connection structure of the atomizer provided by the present invention.
  • FIG. 3 is a schematic view showing an explosive connection structure of the atomizing core assembly provided by the present invention.
  • FIG. 4 is a schematic cross-sectional structural view of an atomizing core assembly provided by the present invention.
  • Figure 5 is a schematic structural view of the disassembly process of the atomizing core assembly provided by the present invention.
  • Figure 6 is a schematic cross-sectional view showing another structure of the atomizing core assembly provided by the present invention.
  • Figure 7 is a schematic view showing an explosive connection structure of the oil storage assembly provided by the present invention.
  • Figure 8 is a schematic view showing an explosive connection structure of the nozzle assembly provided by the present invention.
  • FIG. 9 is a schematic cross-sectional structural view of a nozzle assembly provided by the present invention.
  • Figure 10 is a schematic view showing an explosive connection structure of the connection assembly provided by the present invention.
  • Figure 11 is a schematic view showing the overall structure of the connecting assembly provided by the present invention.
  • Figure 12 is a schematic view showing another structure of the atomizing cover provided by the present invention.
  • FIG. 13 is another schematic structural view of the atomization seat provided by the present invention.
  • Embodiment 1 The specific structure of the atomizer provided in this embodiment is described in detail below with reference to the accompanying drawings;
  • the atomizer provided in this embodiment is combined with a battery assembly to form an electronic cigarette, and the battery assembly is used to supply power to the atomizer to enable the atomizer to atomize the smoke oil.
  • the battery assembly is used to supply power to the atomizer to enable the atomizer to atomize the smoke oil.
  • FIG. 1 is a schematic cross-sectional structural view of the atomizer provided by the present invention
  • FIG. 2 is a schematic view of the utility model.
  • the atomizer includes: an oil storage assembly 100, a connection assembly 200, an atomization core assembly 300, and a nozzle assembly 400;
  • An oil storage chamber 101 (shown in FIG. 1) for storing the oil is disposed in the oil storage assembly 100;
  • the liquid oil may be directly stored in the oil storage chamber 101, or the oil storage cotton storing the oil oil may be placed in the oil storage chamber 101;
  • a liquid smoke oil is stored in the oil storage chamber 101;
  • the connecting assembly 200 and the nozzle assembly 400 are respectively connected to opposite ends of the oil storage assembly 100;
  • connection assembly 200 is detachably connected to the oil storage assembly 100, and the other end of the connection assembly 200 is for detachably connecting with the battery assembly;
  • the specific detachable connection manner of the connecting component 200 and the oil storage component 100 is not limited, for example, by a snap connection or a magnet connection, etc., this embodiment takes the example shown in FIG. 1 and FIG. 2 as an example. That is, the connecting assembly 200 and the oil storage assembly 100 are detachably connected by a threaded structure, and when the connecting assembly 200 is detached from the oil storage assembly 100, the connecting assembly 200 can be screwed. Until the connecting assembly 200 is disengaged from the oil storage assembly 100.
  • the atomizing core assembly 300 is inserted into the oil storage assembly 100.
  • One end of the atomizing core assembly 300 is detachably connected to the oil storage assembly 100, and the other end of the atomizing core assembly 300 is Connecting components 200 are connected;
  • the atomizing core assembly 300 and the oil storage assembly 100 are simultaneously connected to the end of the connecting assembly 200 and connected to the atomizing core on the end of the connecting assembly 200.
  • the assembly 300 is located inside the oil storage assembly 100.
  • the nozzle assembly 400 is replaced or When the nozzle assembly 400 is detachably connected to the oil storage assembly 100 during cleaning or maintenance, the nozzle assembly 400 can be detached from the end of the oil storage assembly 100;
  • the other end of the atomizing core assembly 300 in the present embodiment is connected to the connecting assembly 200 such that when the connecting assembly 200 is taken from the oil storage assembly 100 When disassembled, the connecting assembly 200 can be detached from the oil storage assembly 100 together with the atomizing core assembly 300;
  • the connecting assembly 200 can be detached from the oil storage assembly 100 such that the connecting assembly 200 together with the atomizing core assembly 300 from the reservoir
  • the oil assembly 100 is detached, and the atomizing core assembly 300 that has been detached from the oil storage assembly 100 is removed from the connecting assembly 200 because the atomizing core assembly 300 is detachably coupled to the connecting assembly 200.
  • the purpose of disassembling the atomizing core assembly 300 can be achieved by disassembling it.
  • the atomizing core assembly 300 includes a hollow atomizing seat 301, a first sealing ring 302, an atomizing cover 303, an oil guiding column 304 and a heating wire 305;
  • one end of the atomization seat 301 is detachably inserted into the connection assembly 200;
  • the outer peripheral surface of the other end of the atomization seat 301 is provided with an annular first groove 306 and a limiting protrusion 307;
  • the first sealing ring 302 is sleeved in the first groove 306, and the atomizing cover 303 is detachably sleeved on one end of the atomizing seat 301, and the inner wall of the atomizing cover 303 is The first sealing ring 302 is elastically resisted, and the end surface of the atomizing cover 303 facing the connecting component is abutted on the limiting protrusion 307;
  • the atomization seat 301 can be stably inserted into the atomization cover 303 through the above structure, and the first sealing ring 302 elastically resists the atomization seat 301 and the atomization cover. Between 303, when the user disassembles the atomizing seat 301, only the atomizing seat 301 needs to be lightly screwed.
  • the atomization seat 301 can be pulled out from the atomization cover 303, thereby avoiding the problem that the user damages the internal device of the atomizer due to excessive force, and because the inner wall of the atomization cover 303 is
  • the first sealing ring 302 is elastically resisted, and the first sealing ring 302 is located in the first groove 306, and the atomizing seat 301 is provided with a limiting protrusion 307, thereby effectively defining the atomization.
  • the position of the cover 303 is effective to avoid the occurrence of sway between the atomizing seat 301 and the atomizing cover 303, thereby effectively improving the stability of the structure of the atomizing core assembly 300, and facilitating assembly, and better avoiding leakage of smoke oil. .
  • FIG. 4 is a schematic cross-sectional structural view of the atomizing core assembly provided by the present invention.
  • the oil spray hole 308 is connected to the oil storage cavity 101 on the side wall of the atomization cover 303;
  • the oil guiding rod 304 is received in the atomizing cover 303 and adsorbs the oil in the oil storage chamber 101 through the oil guiding hole 308;
  • the heating wire 305 is wound on the oil guiding rod 304 and electrically connected to the connecting component 200;
  • heating wire 305 wound on the oil guiding rod 304 has a spiral structure.
  • the atomizer provided by the embodiment is detachable, and if the device inside the atomizer has a problem, the user can replace it as needed without replacing the entire device.
  • the atomizer is used to save the cost for the user.
  • FIG. 5 illustrates that if the device of the atomizer that needs to be replaced is the oil guiding column 304, the method provided by the embodiment provides How the atomizer replaces the oil guiding column 304;
  • FIG. 5a when the atomizing core assembly 300 is detached from the oil storage assembly 100 and the connecting assembly 200, respectively, the overall structure of the atomizing core assembly 300 can be seen in FIG. 5a. ;
  • the atomizing cover 303 is detached from the atomizing seat 301, and the atomizing cover 303 and the atomizing seat 301 are elastically resisted by the first sealing ring 302, so that the atomizing cover 303 can be pulled upward.
  • the atomizing cover 303 is removed, and the atomizing cover 303 can be detached from the atomizing seat 301;
  • FIG. 5b the structure of the atomization cover 303 after being detached from the atomization seat 301 can be seen in FIG. 5b;
  • FIG. 5c Please refer to FIG. 5c for the structure when the oil guiding rod 304 is pulled out from the heating wire 305;
  • the oil guiding rod 304 can be detached from the atomizing core assembly through the above steps, and then the user can insert the available oil guiding rod 304 into the heating wire 305;
  • the user can cover the atomizing cover 303 on the atomizing seat 301 to complete Replacement of the oil guiding rod 304.
  • Embodiment 2 This embodiment further details the specific structure of the atomization core assembly 300:
  • the end surface of the oil guiding rod 304 provided in this embodiment is disposed on the oil guiding hole 308 and elastically resists on the sidewall of the atomizing cover 303, because the inner wall of the atomizing cover 303 is The first sealing ring 302 is elastically resisted, so that the atomization cover 303 is arbitrarily rotated relative to the atomizing seat 301 to cause the oil guiding hole 308 to deviate from the oil guiding column 304.
  • the number of the oil guiding holes 308 is two, and the two oil guiding holes 308 are opposite in position.
  • the axes of the two oil guiding holes 308 are coincident or parallel with the axis of the oil guiding column 304, thereby effectively increasing the area of the oil guiding oil and avoiding the burning of the oil guiding column 304. The situation has arisen.
  • the oil guiding rod 304 is erected on one end surface of the atomizing seat 301.
  • both ends of the heating wire 305 are inserted on one end surface of the atomizing seat 301, and have a spiral structure so that the oil guiding column inserted in the heating wire 305 304 can be mounted on one end surface of the atomizing seat 301.
  • the user can adjust the atomizing cover 303 to make two
  • the axis of the oil guiding hole 308 is coincident or parallel with the axis of the oil guiding rod 304, thereby effectively ensuring the area of the oil guiding oil and avoiding the occurrence of the burning of the oil guiding column 304.
  • the embodiment achieves the purpose of adjusting the atomization cover 303 to effectively protect the area of the oil guide by the following structure;
  • the inner peripheral wall of the atomizing cover 303 is provided with an annular fourth groove 309;
  • the fourth groove 309 is disposed opposite to the first groove 306, so that the first sealing ring 302 is sleeved in the first groove 306, and is also sleeved in the first groove 309.
  • the four grooves 309 are disposed such that the atomizing cover 303 and the first sealing ring 302 elastically resist.
  • the axes of the two oil guiding holes 308 do not coincide or are not parallel with the axis of the oil guiding column 304, so that the area of the oil guiding oil is small, which is disadvantageous for obtaining the best fog of the oil.
  • the user can rotate the atomizing cover 303 until the axes of the two oil guiding holes 308 coincide with or parallel with the axis of the oil guiding rod 304 (ie, the end surface of the oil guiding rod 304 is covered by
  • the oil guiding hole 308 is disposed such that the atomizer has a maximum oil guiding area, and the first sealing ring 302 is disposed between the atomizing cover 303 and the atomizing seat 301. , effectively maintaining the atomizer in a state in which the oil guiding area is maximum;
  • the advantage of adopting the arrangement of the present invention is that the leakage of the smoke oil to the outside of the atomization seat 301 is effectively prevented, thereby effectively avoiding leakage of the smoke oil to the connection assembly 200, so that the user can touch the smoke.
  • the oil, and the effective prevention of the leakage of the smoke oil to the battery assembly, thereby avoiding the occurrence of the drawbacks of the smoke oil damaging the components of the battery assembly, and the structure enables the user to judge the atomization cover by the hand feeling when the atomization cover 303 is inserted and removed 303 location.
  • FIG. 6 is another schematic cross-sectional structural view of the atomizing core assembly provided by the present invention.
  • the atomizing cover 303 includes a sleeve body 310 and a cap 311;
  • the sleeve 310 is sleeved on one end of the atomization seat 301, and the inner wall of the sleeve 310 is elastically resisted by the first sealing ring 302;
  • the cap 311 is disposed at an end of the sleeve 310 facing away from the atomization seat 301 and is detachably connected to the sleeve 310.
  • the cap 311 when the oil guiding area is adjusted, the cap 311 can be detached from the sleeve 310, so that the position of the sleeve 310 can be accurately and quickly adjusted until the two oil guiding holes are
  • the axis of the 308 is coincident or parallel with the axis of the oil guiding rod 304, or the fuel guiding rod 304 is swung by a jig or a finger, so that the atomizer has the largest oil guiding area, avoiding the oil guiding.
  • the column 304 deviates from the occurrence of a condition such as the oil guiding hole 308.
  • FIG. 12 is another schematic structural view of the atomization cover provided by the present invention
  • FIG. 13 is another schematic structural view of the atomization seat provided by the present invention
  • the oil guiding hole 308 is offset from the oil guiding rod 304, and the limiting protrusion 304 is provided with a positioning notch 318 facing the connecting component.
  • a positioning portion 317 is disposed on one end surface, and the positioning portion 317 is inserted into the positioning notch 318 to block the atomization cover 303 from rotating arbitrarily with respect to the atomization seat 301.
  • the oil guiding rod 304 is prevented from deviating from the oil guiding hole 308, and the positioning notch 318 is located at one side of the oil guiding hole 308, so that when the atomizing The positioning notch 318 is located directly below the oil guiding hole 308 when the device is placed vertically and in the upright state.
  • one end of the atomizing core assembly 300 is connected to the connecting assembly 200 by the atomizing seat 301 through a thread 312;
  • the thread 312 disposed on the atomization seat 301 is externally threaded, and the internal thread 201 is disposed on the connecting assembly 100 to match the thread 312, so that when the thread 312 is screwed to the When the internal thread 201 is described, the atomizing core assembly 300 is connected to the connecting assembly 200;
  • connection assembly 200 When the connection assembly 200 is coupled to the oil storage assembly 100, the atomization core assembly 300 is interspersed inside the oil storage assembly 100;
  • connection assembly 200 and the oil storage assembly 100 are also detachably connected by a threaded structure.
  • the atomizing seat 301 is inserted into the outer peripheral surface of one end of the connecting assembly 200 and is provided with a second annular recess. Slot 313;
  • the second groove 313 is sleeved with a second sealing ring 314 that elastically abuts the connecting component 200.
  • Embodiment 3 the specific structure of the oil storage assembly 100 is described in detail in this embodiment;
  • FIG. 7 is a schematic diagram of an explosive connection structure of the oil storage assembly provided by the present invention.
  • the sump assembly 102 is provided with a vent pipe 102 communicating with the nozzle assembly 400 and the atomizing core assembly 300;
  • the structure of the atomizing core assembly 300 further includes:
  • the inner wall of the atomizing cover 303 is provided with an annular third groove 313;
  • a third sealing ring 314 is disposed between the third groove 313 and the vent pipe 102, and the outer wall of the vent pipe 102 and the third sealing ring 313 are elastically resisted. hold.
  • the above structure can effectively prevent the smoke oil in the atomization core assembly 300 from leaking into the vent tube 102 and has been sucked by the user, thereby effectively ensuring safety and mouthfeel in the process of smoking by the user.
  • the side wall of the oil storage assembly 100 is provided with a light-transmitting area for observing the remaining amount of smoke oil in the oil storage chamber.
  • the oil storage assembly 100 includes a metal tube 103, a light transmission tube 104, a nozzle connection head 105, a first seal ring 106, a second seal ring 107, and the vent tube 102;
  • the side wall of the metal pipe 103 encloses the oil storage cavity 101.
  • the side wall of the metal pipe 103 is provided with an observation window 108, and the observation window 108 is the penetrating metal pipe 103. Forming at least one hollowed out area;
  • the light-transmitting tube 104 is sleeved on the metal tube 103, and the light-transmitting tube 104 forms the light-transmitting area corresponding to the area of the observation window 108;
  • the light transmissive area enables the user to view the amount of remaining soot stored in the oil storage chamber 101 at any time, thereby facilitating the user to estimate the length of time that the remaining oil can be used for smoking, thereby enabling the user to even store the oil.
  • Adding smoke oil to the cavity 101 to avoid the user being unable to make the remaining amount of smoke oil The occurrence of normal use of a nebulizer to smoke.
  • the first sealing ring 106 and the second sealing ring 107 are respectively sleeved on the outer peripheral surfaces of the two ends of the metal tube 103 and elastically resisting the inner wall of the transparent tube 104, thereby effectively preventing the leakage of the oil to the Between the metal tube 103 and the light transmission tube 104.
  • the nozzle connector 105 is sleeved at one end of the metal tube 103, and the nozzle assembly 400 and the vent tube 102 are respectively inserted at two ends of the nozzle connector 105.
  • the oil storage assembly further includes a grease barrier 109, and the grease barrier 109 is located between the metal pipe 103 and the connecting assembly 200, thereby effectively avoiding the oil storage.
  • Embodiment 4 This embodiment describes in detail the specific structure of the nozzle assembly 400:
  • FIG. 8 is a schematic diagram of an explosion connection structure of the nozzle assembly provided by the present invention
  • FIG. 9 is a schematic diagram of the present invention.
  • FIG. 8 is a schematic diagram of an explosion connection structure of the nozzle assembly provided by the present invention
  • FIG. 9 is a schematic diagram of the present invention.
  • the nozzle assembly 400 includes a nozzle assembly body 401 and a first tempering ring 402 rotatably sleeved on the nozzle assembly body 401;
  • the structure of the nozzle assembly body 401 will be described in detail below:
  • the nozzle assembly body 401 is axially disposed with a smoke passage 403 extending through both ends of the nozzle assembly body 401 and communicating with the atomizing core assembly 300;
  • the smoked oil atomized by the atomizing core assembly 300 is sucked by the user via the smoke passage 403;
  • the nozzle assembly body includes a first connecting sleeve 404, a suction nozzle 405, a fourth sealing ring 406 and a first elastic ring 407;
  • One end of the first connecting sleeve 404 is detachably connected to the oil storage assembly 100, and the other end of the first connecting sleeve 404 is connected to the suction nozzle 405;
  • the fourth sealing ring 406 is sleeved on the outer circumferential surface of the first connecting sleeve 404 and elastically abuts against the inner wall of the oil storage assembly 100.
  • the fourth sealing ring 406 effectively avoids the oil storage.
  • the smoke oil in the assembly 100 leaks into the inside of the nozzle assembly 400 to be used by the user, effectively protecting the user's health and the taste during smoking;
  • the first elastic ring 407 is sleeved on the outer circumferential surface of the suction nozzle 405 and elastically abuts against the inner wall of the first air conditioning ring 402 to effectively prevent the leakage of the oil to the outside of the nozzle assembly. And blocking the first air-conditioning ring 402 from rotating arbitrarily, thereby ensuring the stability of the intake air amount.
  • a first air inlet 408 communicating with the smoke passage 403 is disposed on a sidewall of the nozzle assembly body 401;
  • the first air inlet hole 408 is disposed on the suction nozzle 405.
  • a second air inlet 409 is disposed on a sidewall of the first air conditioning ring 402, and the first air inlet hole 408 and the second air inlet hole 409 are oppositely disposed to be rotated.
  • the air ring 402 is adjusted, the overlapping area of the second air inlet 409 and the first air inlet 408 can be adjusted, and the second air inlet 409 and the first air inlet 408 are different.
  • the coincidence area corresponds to a different intake air amount entering the inside of the atomizer, so that the nozzle assembly 400 provided by the embodiment can effectively adjust the intake air amount;
  • the user can adjust the second intake air.
  • the effective reduction of the smoke concentration can also effectively reduce the temperature of the smoke, that is, the user can adjust the overlapping area of the second air inlet 409 and the first air inlet hole 408 to adjust the temperature of the smoke.
  • the purpose is to further facilitate the user and effectively improve the user experience.
  • Embodiment 5 This embodiment describes in detail the specific structure of the connection component 200:
  • connection assembly 200 is described below with reference to FIG. 10 , wherein FIG. 10 is a schematic diagram of an explosive connection structure of the connection assembly provided by the present invention.
  • the connecting component 200 includes: a connecting component body 202 and a second air conditioning ring 203 rotatably sleeved on the connecting component body 202;
  • connection component body 202 The specific structure of the connection component body 202 will be described in detail below:
  • the connecting assembly body 202 includes a second connecting sleeve 204 and a third connecting sleeve 205;
  • One end of the second connecting sleeve 204 is connected to the oil storage assembly 100 and the atomizing core assembly 300;
  • the other end of the second connecting sleeve 204 is connected to one end of the third connecting sleeve 205;
  • connection assembly 200 provided by the embodiment can achieve the purpose of adjusting the intake air amount, that is, the air flow flowing into the atomization core assembly 300 can be adjusted via the connection assembly 200;
  • the side wall of the connecting assembly body 202 is provided with a third air inlet hole 208 communicating with the atomizing core assembly 300;
  • the third air inlet hole 208 is disposed on a sidewall of the second connecting sleeve 204;
  • a fourth air inlet 209 is disposed on a sidewall of the second air conditioning ring 203;
  • the second air ring 203 is sleeved on the second connecting sleeve 204;
  • the third air inlet hole 208 and the fourth air inlet hole 209 are oppositely disposed such that the fourth air inlet hole 209 can be adjusted and rotated when the second air conditioning ring 203 is rotated.
  • the overlapping area of the third intake holes 208, and the different overlapping areas of the fourth intake holes 209 and the third intake holes 208 correspond to different intake air amounts entering the inside of the atomizer.
  • the user can adjust the amount of intake air entering the atomization core assembly 300 through the connection assembly provided by the embodiment, so that the concentration of the atomized aerosol of the atomization core assembly 300 can be effectively adjusted, and It is beneficial for the user to adjust the concentration of the smoke, so that the concentration of the atomized atomized by the atomizing core assembly 300 can more satisfy the personalized needs of the user, and meet the needs of different users for different smoke concentrations.
  • the connecting assembly body 202 further includes a second elastic ring 210.
  • the outer peripheral surface of the second connecting sleeve 204 is provided with an annular receiving groove 211 and an annular ring on the groove wall of the receiving groove 211.
  • the receiving groove 211 extends to an end surface of the second connecting sleeve 204 facing away from the oil storage assembly 100;
  • the second air conditioning ring 203 is sleeved in the receiving groove 211 such that the third air inlet hole 208 and the fourth air inlet hole 209 are oppositely disposed;
  • the second elastic ring 210 is sleeved in the fixing groove 212 and elastically resists the second air conditioning ring 203;
  • the stability of the structure between the second air distribution ring 203 and the connecting assembly body 202 is effectively ensured by the second elastic ring 210, and the external force is prevented from causing the fourth air inlet 209 and the third air inlet.
  • the overlapping area of the holes 208 is changed, that is, the non-user operation is effectively avoided, and the intake air amount is changed. change.
  • An annular convex portion 213 for preventing the second air conditioning ring 203 from moving away from the oil storage assembly 100 is disposed on an outer circumferential surface of the third connecting sleeve 205.
  • the annular convex portion 213 effectively prevents the second air conditioning ring 203 from moving away from the oil storage assembly 100, thereby effectively improving the stability of the atomizer structure.
  • connection assembly body 202 further includes: a first insulating ring 206 and a first electrode 207;
  • the first electrode 207 is inserted into an end of the third connecting sleeve 205 facing away from the second connecting sleeve 204;
  • the third connecting sleeve 205 is made of a conductive material
  • the first insulating ring 206 is sleeved on the first electrode 207 and elastically resists the inner wall of the third connecting sleeve 205;
  • the first insulating ring 206 is located between the first electrode 207 and the third connecting sleeve 205, and the first insulating ring 206 is configured to electrically isolate the first electrode 207 and the third connection. Set 205.
  • the atomizing core assembly 300 is electrically connected to the battery assembly through the first electrode 207 and the third connecting sleeve 205.
  • the atomizing core assembly 300 further includes: a second insulating ring 316 and a second electrode 315 abutting against the first electrode 207;
  • the second electrode 315 is inserted at one end of the atomization seat 301 adjacent to the connection assembly 200, and the atomization seat 301 is made of a conductive material;
  • the second insulating ring 316 is sleeved on the second electrode 315 and elastically resists the inner wall of the atomizing seat 301, and the second insulating ring 316 is used for electrically isolating the second electrode 315. And the atomization seat 301;
  • One end of the heating wire 305 is electrically connected to the second electrode 315, and the other end of the heating wire 305 is electrically connected to the atomizing seat 301.
  • one end of the heating wire 305 is electrically connected to the first electrode 207 through the second electrode 315, and the other end of the heating wire 305 is electrically connected to the third connecting sleeve 205 through the atomizing seat 301.
  • the two ends of the heating wire 305 are electrically connected to the battery assembly to enable the battery assembly to supply power to the heating wire 305 to atomize the heating wire 305 to form smoke.

Landscapes

  • Special Spraying Apparatus (AREA)
  • Disinfection, Sterilisation Or Deodorisation Of Air (AREA)

Abstract

L'invention concerne un atomiseur, comprenant un élément de stockage de goudron (100), un élément de raccordement (200), un élément de noyau d'atomisation (300) et un élément de buse d'aspiration (400). L'intérieur de l'élément de stockage de goudron (100) comprend une cavité de stockage de goudron (101) pour stocker le goudron de tabac. L'élément de raccordement (200) et l'élément de buse d'aspiration (400) sont respectivement reliés aux deux extrémités opposées de l'élément de stockage de goudron (100), une extrémité de l'élément de raccordement (200) étant reliée de façon détachable à l'élément de stockage de goudron (100), et l'autre extrémité de l'élément de raccordement (200) étant utilisée pour se raccorder de façon détachable à un élément de batterie. L'élément de noyau d'atomisation (300) est inséré dans l'élément de stockage de goudron (100), une extrémité de l'élément de noyau d'atomisation (300) étant reliée de façon détachable à l'élément de stockage de goudron (100), et l'autre extrémité de l'élément de noyau d'atomisation (300) étant reliée à l'élément de raccordement (200). Tous les éléments de l'atomiseur peuvent être désassemblés à des fins de remplacement, de réparation, etc., pour éviter l'inconvénient selon lequel l'atomiseur entier doit être remplacé en raison d'un élément dans l'atomiseur qui fonctionne mal, en évitant ainsi le gaspillage et réduisant le coût d'utilisation de cigarettes électronique pour des utilisateurs.
PCT/CN2015/085203 2015-07-27 2015-07-27 Atomiseur Ceased WO2017015832A1 (fr)

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PCT/CN2015/085203 WO2017015832A1 (fr) 2015-07-27 2015-07-27 Atomiseur
CN201590001323.0U CN207653579U (zh) 2015-07-27 2015-07-27 一种雾化器

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US12004574B2 (en) 2017-12-29 2024-06-11 Nicoventures Trading Limited Data capture across devices
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