WO2016127397A1 - Ensemble d'atomisation et cigarette électronique - Google Patents

Ensemble d'atomisation et cigarette électronique Download PDF

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Publication number
WO2016127397A1
WO2016127397A1 PCT/CN2015/073018 CN2015073018W WO2016127397A1 WO 2016127397 A1 WO2016127397 A1 WO 2016127397A1 CN 2015073018 W CN2015073018 W CN 2015073018W WO 2016127397 A1 WO2016127397 A1 WO 2016127397A1
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WO
WIPO (PCT)
Prior art keywords
assembly
oil
atomizing
oil storage
sleeve
Prior art date
Application number
PCT/CN2015/073018
Other languages
English (en)
Chinese (zh)
Inventor
刘秋明
向智勇
Original Assignee
惠州市吉瑞科技有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 惠州市吉瑞科技有限公司 filed Critical 惠州市吉瑞科技有限公司
Priority to PCT/CN2015/073018 priority Critical patent/WO2016127397A1/fr
Priority to CN201590001306.7U priority patent/CN208581836U/zh
Publication of WO2016127397A1 publication Critical patent/WO2016127397A1/fr

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    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F40/00Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
    • A24F40/40Constructional details, e.g. connection of cartridges and battery parts
    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F40/00Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
    • A24F40/10Devices using liquid inhalable precursors

Definitions

  • the invention relates to the field of electronic cigarettes, in particular to an atomizing assembly and an electronic cigarette.
  • Ordinary cigarettes contain harmful substances such as tar, which are not only harmful to the health of smokers. Even the second-hand smoke generated can cause harm to other people's health.
  • the electronic cigarette atomizes the smoke oil containing nicotine and essence into a smoke through a nebulizer for the user to use, and does not contain harmful substances such as tar.
  • the electronic cigarette includes an atomizing assembly and a battery assembly, wherein the atomizing assembly includes an oil storage assembly and an atomizing core assembly coupled to the oil storage assembly.
  • the oil storage assembly includes an oil storage cotton, and the oil is stored in the oil storage assembly, so that the oil guiding member in the atomizing assembly directly adsorbs the oil from the oil storage cotton, thereby realizing atomization of the oil; or
  • the oil storage assembly includes an oil storage chamber, and the oil is stored in the oil storage chamber, so that the oil guiding member in the atomizing assembly adsorbs the oil through the oil guiding hole provided in the oil storage chamber, thereby realizing atomization of the oil.
  • the effective period of the smoke oil is short, if the sealing treatment is not performed, the smoke oil is directly connected to the outside, easily deteriorates or volatilizes, and oil leakage is easily generated due to vibration during transportation.
  • an atomizing assembly is disclosed.
  • the atomizing assembly is provided with an oil storage chamber 101 and an atomizing core assembly.
  • the atomizing core assembly includes a spraying chamber 102 and oil storage. a member 103, a support frame 104, an oil guide frame 105, and a puncture needle tube 106.
  • a heater 107 is mounted in the spray chamber 102. The heater 107 is housed in the support frame 104, and the puncture needle tube 106 is inside.
  • a needle 108 is mounted, the oil reservoir 103 is coupled to the oil guide 105, the puncture needle 106 is coupled to the oil guide 105, and the puncture needle 106 passes through the core through the needle 108
  • the oil chamber 101 causes the smoke oil in the oil storage chamber 101 to flow into the oil guiding frame 105 through the hollow portion of the puncture needle tube 106 and into the oil storage member 103, and the spray hole provided by the heater through the support frame 104 109 adsorbs the smoke oil in the oil storage member 103 and atomizes the oil.
  • the atomizing core assembly When the atomizing assembly is used, the atomizing core assembly is connected to the oil storage chamber, so that the tobacco oil flows into the oil storage member through the puncture needle tube, so that the oil in the oil storage chamber flows into the atomizing core assembly for supply.
  • the atomizing core is atomized. In this way, although the sealing and preservation of the smoke oil is solved, the quality of the smoke oil is ensured.
  • the puncture needle tube 106 is inserted into the oil storage chamber 101, debris generated in the wall of the oil storage chamber 101 during the puncturing process easily enters the puncture needle tube 106. As a result, the supply of the smoke oil is not smooth or the puncture needle 106 is blocked.
  • the effect of the oil guide may be poor, so that the heater cannot form due to insufficient smoke oil when the atomization of the smoke oil is generated. More smoke, which affects the user experience; and when the oil flows into the oil storage member through the oil guiding frame, it leaks from the oil guiding frame, causing waste of the oil.
  • the present invention provides an atomizing assembly and an electronic cigarette for preventing deterioration of smoke oil.
  • An atomizing assembly wherein the atomizing assembly is used in combination with a battery assembly to form an electronic cigarette, the atomizing assembly includes an oil storage assembly for storing smoke oil and for atomizing smoke in the oil storage assembly
  • An atomizing core assembly of the oil wherein the oil storage assembly is provided with an oil storage chamber and a receiving cavity, and the cavity wall of the one end of the oil storage chamber adjacent to the receiving cavity is provided with the receiving a perforation communicating with the cavity, at least one end of the atomizing core assembly being inserted into the accommodating cavity, and a relative relationship between the atomizing core assembly and the cavity wall of the oil reservoir cavity can be generated under an external force Rotate
  • the atomizing core assembly is provided with a cutting member connected to the perforation. In the non-working state, the perforated hole wall is clamped on the cutting member to block the inside of the oil storage chamber.
  • the smoke oil enters the atomization core assembly, and when atomization of the smoke oil is required, a relative rotation between the atomization core assembly and the cavity wall of the oil storage chamber is caused by an external force to cause the cutting.
  • the breaking member splits the wall of the oil reservoir such that the oil in the oil reservoir flows into the atomizing core assembly.
  • the atomizing assembly wherein one end of the atomizing core assembly is movably inserted in the accommodating cavity, and the other end extends outside the oil storage assembly.
  • the rotating device The atomizing core assembly extends to an outer portion of the oil storage assembly such that the cutting member splits a wall of the oil reservoir.
  • the atomizing assembly wherein the oil storage assembly is provided with a first limiting portion, and the atomizing core assembly is provided with a coupling with the first limiting portion for limiting the rotation amplitude of the oil storage assembly The second limit.
  • the atomizing assembly wherein the first limiting portion is a first limiting post disposed on an end surface of the oil storage assembly and extending along a longitudinal direction of the oil storage assembly; the second limiting position The portion is an arcuate first slot facing the first limiting post, and the first limiting post is inserted in the first slot.
  • the atomizing assembly wherein the oil storage assembly is provided with a first positioning mechanism; the atomizing core assembly is provided to cooperate with the first positioning mechanism for obstructing the atomizing core assembly from the storage A second positioning mechanism that is detached from the oil component.
  • the atomizing assembly wherein the first positioning mechanism is a positioning step disposed in a cavity wall of the accommodating cavity, and the second positioning mechanism is disposed at an outer circumferential surface of the atomizing core assembly a first protrusion, the first protrusion card being placed on the positioning step.
  • the atomizing assembly wherein the oil storage assembly comprises an atomizing sleeve, an oil storage sleeve and a positioning sleeve; the oil storage sleeve is sleeved and fixed in the atomization sleeve, and one end of the positioning sleeve is sleeved The other end of the positioning sleeve is sleeved on the atomizing core assembly, and the inner wall of the positioning sleeve is provided with an annular positioning step, and the outer peripheral surface of the atomizing core assembly is The first protrusion is provided with a ring shape.
  • the atomizing assembly wherein the atomizing core assembly comprises a connecting head; one end of the connecting head is inserted into the receiving cavity and sleeved on the oil storage sleeve, the first convex Provided on a side wall of the connector, a second protrusion is further disposed at an end of the connector away from the accommodating cavity, and the first slot is disposed on the second protrusion, The first limit post is placed on the end wall of the positioning sleeve facing the second protrusion.
  • the inner wall of one end of the oil storage sleeve is further provided with a receiving groove, and the atomizing core assembly further includes a first one received in the receiving groove. Sealing ring.
  • the atomizing assembly wherein the cutting member comprises a needle for cutting the wall of the oil reservoir chamber and an oil guiding member for guiding the oil from the oil chamber; the oil guiding oil
  • the piece is coupled to a cavity wall of an end of the oil reservoir that is adjacent to the accommodating cavity, and the oil guiding member is provided with an oil guiding hole for guiding oil.
  • the atomizing assembly wherein the atomizing core assembly is further provided with a heating wire assembly and an oil storage cotton; the oil storage cotton abuts the oil guiding member for storing the oil guiding hole
  • the electric heating wire assembly includes an adsorbing member for adsorbing the soot oil and a heating wire for atomizing the soot oil on the adsorbing member, and the electric heating wire is wound around the adsorbing member.
  • the atomizing assembly wherein the atomizing core assembly is further provided with an insulating sleeve for accommodating the heating wire assembly, the heating wire assembly is received in the insulating sleeve, and the insulating sleeve is resisted The oil storage cotton.
  • the atomizing assembly wherein the atomizing core assembly further comprises an electrode assembly, the electrode assembly comprising an inner electrode and an outer electrode sleeved on the inner electrode, one end of the heating wire and the inner portion The electrode is electrically connected, and the other end is electrically connected to the outer electrode.
  • An insulating ring is further disposed between the inner electrode and the outer electrode for preventing one end of the heating wire from being electrically connected to the inner electrode and the outer electrode at the same time, thereby causing a short circuit. .
  • the atomizing assembly wherein the atomizing assembly further comprises a nozzle assembly, the nozzle assembly includes a nozzle and a connecting member, the nozzle is fixedly connected with the oil storage sleeve, and the connecting member is The nozzle is movably connected, and the connecting member is fixedly connected to the atomizing sleeve.
  • the atomization sleeve and the oil storage sleeve are both made of transparent material, and an annular smoke passage is formed between the atomization sleeve and the oil storage sleeve.
  • the atomizing assembly wherein the adsorbing member is a glass fiber strand.
  • An embodiment of the present invention further provides an electronic cigarette comprising an interconnected battery assembly and an atomizing assembly, wherein the atomizing assembly is as described in any one of the atomizing assemblies described above.
  • the present invention includes an atomizing assembly for preventing deterioration of smoke oil, comprising: the atomizing assembly includes an oil storage assembly for storing the oil and an atomizing core for atomizing the oil in the oil storage assembly An oil reservoir and an accommodating cavity are disposed in the oil storage assembly, and a cavity communicating with the accommodating cavity is disposed at a cavity wall of an end of the oil reservoir adjacent to the accommodating cavity At least one end of the atomizing core assembly is inserted into the accommodating cavity, and relative rotation between the atomizing core assembly and the cavity wall of the oil storage chamber can be performed under an external force, and the atomizing core
  • the assembly is provided with a cutting member connected to the perforated plug, and in the non-operating state, the perforated hole wall is clamped on the cutting member to block the smoke oil in the oil storage chamber from entering the atomizing core assembly Internally, when atomizing the smoke oil is required, a relative rotation between the atomizing core assembly and the cavity wall of the oil storage chamber is caused by an external force, so that
  • the chamber wall is such that the oil in the oil reservoir flows into the atomizing core assembly.
  • the smoke oil in a sealed state, prolonging the shelf life of the smoke oil, and when the atomization of the smoke oil is required, only the atomizing core assembly is rotated, and the oil storage cavity can be broken by the cutting member.
  • the smoke oil flows into the atomization core assembly, which increases the inflow of the smoke oil, so that sufficient smoke oil is ensured when the smoke oil is atomized, thereby improving the user experience and avoiding the supply of the smoke oil in the prior art. Poor and other issues.
  • FIG. 1 is a schematic cross-sectional view showing the structure of an atomizing assembly in the prior art
  • FIG. 2 is a schematic cross-sectional view showing the structure of an atomizing core assembly in an atomizing assembly in the prior art
  • FIG. 3 is a schematic cross-sectional view showing the structure of an atomizing assembly according to an embodiment of the present invention.
  • FIG. 4 is a cross-sectional view showing the structure of another atomizing assembly according to an embodiment of the present invention.
  • FIG. 5 is a schematic structural diagram of a first limiting portion and a second limiting portion in an atomizing assembly according to an embodiment of the present invention
  • FIG. 6 is a schematic structural diagram of a first positioning mechanism and a second positioning mechanism in an atomizing assembly according to an embodiment of the present invention
  • FIG. 7 is a cross-sectional view showing the structure of another atomizing assembly according to an embodiment of the present invention.
  • FIG. 8 is a schematic view showing an exploded structure of an atomizing assembly according to an embodiment of the present invention.
  • FIG. 9 is a schematic cross-sectional view showing the structure of an electronic cigarette according to an embodiment of the present invention.
  • the present invention discloses an atomizing assembly and an electronic cigarette.
  • the specific structure of the atomizing assembly provided by the present invention will be described in detail below with reference to FIG.
  • the atomization assembly includes:
  • the atomization assembly includes an oil storage assembly for storing smoke oil and an atomization core assembly for atomizing the smoke oil in the oil storage assembly, and the oil storage assembly is provided with an oil storage chamber 301 and a receiving chamber 302, a cavity 303 of the oil reservoir 301 adjacent to the cavity of the accommodating cavity 302 is provided with a through hole 303 communicating with the accommodating cavity 302, and at least one end of the atomizing core assembly is inserted a relative rotation between the atomizing core assembly and the cavity wall of the oil reservoir 301 under the external force;
  • the atomizing core assembly is provided with a cutting member 304 connected to the through hole 303.
  • the hole wall of the through hole 303 is clamped on the cutting member 304 to block the storage.
  • the oil in the oil chamber 301 enters the atomizing core assembly, and when the atomizing oil is required to be atomized, the relative rotation between the atomizing core assembly and the chamber wall of the oil storage chamber 301 is caused by an external force. So that the cutting member 304 cuts the wall of the oil reservoir 301 to allow the oil in the oil reservoir 301 to flow into the atomizing core assembly; it can be understood that, in practical use, There may be a slight gap between the perforation 303 and the cutting member 304.
  • the cutting member 304 can prevent the smoke oil from flowing into the atomizing core assembly as much as possible in the non-operating state, and when fog is required
  • the cavity wall of the oil storage chamber 301 can be split, that is, can.
  • the wall of the oil reservoir having an end adjacent to the accommodating cavity may be a film for sealing oil.
  • the perforated hole wall on the cavity wall of the atomizing chamber tightly clamps the cutting piece, so that the smoke oil will not be Flowing out of the oil storage chamber prolongs the shelf life of the oil smoke; and when atomizing the smoke oil is required, a relative rotation between the atomization core assembly and the cavity wall of the oil storage chamber is caused by an external force, so that the cutting The breaking member cuts the wall of the chamber such that the smoky oil flows from the atomizing chamber into the atomizing core assembly.
  • the cutting member is disposed at a position other than the extending direction of the rotating core of the atomizing core assembly, so that a large break can be formed when the wall of the cavity is cut, so that the smoke flows into the mist more smoothly.
  • the cutting member is disposed at a position other than the extending direction of the rotating core of the atomizing core assembly, so that a large break can be formed when the wall of the cavity is cut, so that the smoke flows into the mist more smoothly. Inside the core assembly.
  • the atomizing core assembly is provided with a cutting member connected to the perforation.
  • the perforated hole wall is clamped on the cutting member to block the inside of the oil storage chamber.
  • the smoke oil enters the atomization core assembly, and when atomization of the smoke oil is required, a relative rotation between the atomization core assembly and the cavity wall of the oil storage chamber is caused by an external force to cause the cutting.
  • the breaking member splits the wall of the oil reservoir such that the oil in the oil reservoir flows into the atomizing core assembly.
  • the smoke oil in the non-working state, the smoke oil is in a sealed state, prolonging the shelf life of the smoke oil, and when the atomization of the smoke oil is required, only the atomizing core assembly is rotated, and the oil storage cavity can be broken by the cutting member.
  • the smoke oil flows into the atomization core assembly, which increases the amount of smoke oil inflow, so that sufficient smoke oil is ensured when the smoke oil is atomized, thereby improving the user experience.
  • the atomizing core assembly is provided with a cutting member connected to the perforation.
  • the perforated hole wall is clamped on the cutting member to block the smoke in the oil storage chamber.
  • the oil enters the atomization core assembly, and when atomized smoke oil is required, a relative rotation between the atomization core assembly and the chamber wall of the oil storage chamber is caused by an external force, so that the cutting is performed Dissolving the wall of the oil storage chamber to allow the oil in the oil storage chamber to flow into the atomizing core assembly.
  • the oil storage assembly is further provided with a first limiting portion, the atomizing core assembly a second limiting portion is further provided for limiting the magnitude of the rotation of the oil storage assembly; the oil storage assembly is provided with a first positioning mechanism; and the atomizing core assembly is provided for cooperation with the first positioning mechanism And a second positioning mechanism that blocks the atomizing core assembly from falling off the oil storage assembly.
  • FIG. 4 FIG. 5, FIG. 6 and FIG. 8, another embodiment of the atomization assembly in the embodiment of the present invention includes:
  • one end of the atomizing core assembly is movably inserted in the accommodating cavity 302, and the other end extends outside the oil storage assembly.
  • the rotating device Atomization The core assembly extends to an outer portion of the oil storage assembly such that the cutting member 304 splits a wall of the reservoir.
  • the oil storage assembly is provided with a first limiting portion
  • the atomizing core assembly is provided with a second limiting portion for engaging the first limiting portion for limiting the rotation amplitude of the oil storage assembly .
  • the first limiting portion is a first limiting post 401 disposed on an end surface of the oil storage assembly and extending along a longitudinal direction of the oil storage assembly; the second limiting portion is facing the An arcuate first slot 402 of the first limiting post 401, the first limiting post 401 is inserted in the first slot 402;
  • the length of the slot track of the first slot can be set according to requirements, and the first limit post cooperates with the first slot when the atomization core assembly and the oil storage assembly rotate relative to each other.
  • the first limiting post moves in the slot track of the first slot, and the length of the slot track of the first slot can limit the magnitude of the relative rotation of the atomizing core assembly and the oil storage component, thereby limiting
  • the cutting member cuts the oil reservoir to form a breach, so that the oil can adaptively flow into the atomizing core assembly.
  • the oil storage assembly is provided with a first positioning mechanism; the atomization core assembly is provided with a first engagement mechanism for blocking the atomization core assembly from falling off the oil storage assembly Two positioning mechanism.
  • the first positioning mechanism is a positioning step 403 disposed in a cavity wall of the accommodating cavity
  • the second positioning mechanism is a first protrusion 404 disposed at an outer circumferential surface of the atomizing core assembly.
  • the first protrusion 404 is stuck on the positioning step 403;
  • the first protrusion may be a positioning ring, and the positioning ring is fastened at an outer circumferential surface of the atomizing core assembly.
  • the oil storage assembly includes an atomizing sleeve 405, an oil storage sleeve 406 and a positioning sleeve 407; the oil storage sleeve 406 is sleeved and fixed in the atomization sleeve 405, and one end of the positioning sleeve 407 is sleeved On the atomization sleeve 405, the other end of the positioning sleeve 407 is sleeved on the atomization core assembly, and the inner wall of the positioning sleeve 407 is provided with an annular positioning step 403, the atomization
  • the first peripheral protrusion 404 is provided at the outer peripheral surface of the core assembly;
  • the positioning sleeve is connected with the atomizing sleeve and the atomizing core assembly, and the annular positioning step is disposed in the positioning sleeve, and the annular first convex card disposed on the outer circumferential surface of the atomizing core assembly is placed on the annular positioning step, so that the clamping can be tight
  • the connection of the solid atomizing core assembly and the oil storage assembly prevents the atomizing core assembly from falling off.
  • the positioning sleeve is a metal piece, and the positioning sleeve and the atomizing sleeve can be connected by a screw connection or a card position.
  • the atomizing core assembly includes a connector 408; one end of the connector 408 is inserted into the accommodating cavity 302 and sleeved on the oil reservoir 406, the first protrusion 404 A second protrusion 409 is disposed on an end of the connecting head 408, and the first slot 402 is disposed on the second protrusion. 409, the first limiting post 401 is disposed on the end wall of the second protrusion 409.
  • the connecting head 408 is disposed on the inner wall of one end of the oil storage sleeve 406, and further includes a receiving groove 410.
  • the atomizing core assembly further includes a first seal received in the receiving groove 410. Circle 411;
  • the first sealing ring has elasticity, and the first sealing ring is received in the receiving groove provided on the inner wall of one end of the connecting sleeve sleeved with the oil storage sleeve, so that the first sealing ring is deformed to resist the oil storage sleeve, thus preventing The smoke oil flows out from the gap between the oil storage jacket and the connector.
  • the oil storage assembly is further provided with a first limiting portion, and the atomizing core assembly is further provided with a second limiting portion for limiting the magnitude of the rotation of the oil storage assembly, thereby limiting the cutting of the cutting member Breaking the oil storage chamber to form a size of the fracture, so that the oil can be adaptively flowed into the atomization core assembly;
  • the oil storage assembly is provided with a first positioning mechanism, and the atomization core assembly is provided with the first positioning mechanism
  • a second positioning mechanism for blocking the detachment of the atomizing core assembly from the oil storage assembly is provided, such that the connection of the atomizing core assembly and the oil storage assembly can be tightened to prevent the atomizing core assembly from falling off.
  • the atomization component further includes other atomization components.
  • the working components are described in detail below.
  • another embodiment of the atomizing assembly in the embodiment of the present invention includes:
  • the cutting member includes a needle 501 for cutting the wall of the oil reservoir 301 and an oil guiding member 502 for guiding the oil from the oil chamber;
  • the oil guiding member 502 is coupled to the cavity wall of the oil reservoir 301 adjacent to the accommodating cavity 302, and the oil guiding member 502 is provided with an oil guiding hole 503 for guiding oil;
  • the oil guide member is provided with an oil guiding hole, so that when the cutting member cuts the oil storage chamber, the oil smoke flows out from the oil storage chamber, and can flow into the atomizing core assembly through the oil guiding hole.
  • the oil guiding hole is used for both oil guiding and oil blocking. When the outflow of the oil is large, the oil outlet can be used to limit the outflow of the oil.
  • the size and number of the oil guiding holes are not specifically limited.
  • the atomizing core assembly is further provided with a heating wire assembly and an oil storage cotton 504;
  • the oil storage The cotton 504 abuts the oil guiding member 502 for storing the oil smoke discharged from the oil guiding hole 503;
  • the heating wire assembly includes an adsorbing member 505 for adsorbing the smoke oil and for atomizing the adsorbing member a heating wire 506 of the smoky oil, the heating wire 506 is wound around the adsorbing member 505;
  • the oil storage cotton is used for storing the smoke oil flowing out from the oil guiding hole, and the adsorption member is connected with the oil storage cotton, so that the adsorption member can adsorb the smoke oil on the oil storage cotton, and the heating wire is wound around the adsorption member, when the heating wire is heated, Then, the oil on the adsorbing member is atomized into smoke.
  • the oil storage cotton can be used to hinder the oil and prevent the smoke oil from directly flowing into the adsorption member. When the oil amount is large, the waste oil may be wasted.
  • the atomizing core assembly is further provided with an insulating sleeve 512 for accommodating the electric heating wire assembly, the electric heating wire assembly is received in the insulating sleeve 512, and the insulating sleeve 512 abuts the storage Oil cotton 504;
  • the insulating sleeve receives the heating wire assembly and resists the oil storage cotton, so that the adsorption member in the heating wire assembly is more tightly connected with the oil storage cotton to prevent the heating wire assembly from falling off;
  • the utility model is used for preventing the heating wire in the heating wire assembly from directly contacting the inner wall of the connector. Since the connector is generally made of a metal material, when both ends of the heating wire are simultaneously connected with the connector, a short circuit may be caused. The atomizing assembly does not work.
  • the atomizing core assembly further includes an electrode assembly including an inner electrode 507 and an outer electrode 508 sleeved on the inner electrode 507, and one end of the heating wire 506 and the inner electrode 507 The other end is electrically connected to the outer electrode 508, and an insulating ring 509 is disposed between the inner electrode 507 and the outer electrode 508 for preventing one end of the heating wire 506 from simultaneously with the inner electrode 507 and the outer electrode. 508 electrical connection, resulting in a short circuit.
  • an electrode assembly including an inner electrode 507 and an outer electrode 508 sleeved on the inner electrode 507, and one end of the heating wire 506 and the inner electrode 507 The other end is electrically connected to the outer electrode 508, and an insulating ring 509 is disposed between the inner electrode 507 and the outer electrode 508 for preventing one end of the heating wire 506 from simultaneously with the inner electrode 507 and the outer electrode. 508 electrical connection, resulting in a short circuit.
  • the atomizing assembly further includes a nozzle assembly, the nozzle assembly includes a suction nozzle 510 and a connecting member 513, and the suction nozzle 510 is fixedly connected with the oil storage sleeve 406, and the connecting member 513 and the joint
  • the nozzle 510 is movably connected, and the connecting member 513 is fixedly connected to the atomizing sleeve.
  • a second sealing ring 514 for fastening the connecting member and the atomizing sleeve is further disposed between the connecting member 513 and the atomizing sleeve 405.
  • the atomization sleeve 405 and the oil storage sleeve 406 are both made of a transparent material, and an annular smoke passage 511 is formed between the atomization sleeve 405 and the oil storage sleeve 406;
  • the smoke passage is disposed between the atomization sleeve and the oil storage sleeve, that is, the outer circumference of the oil storage sleeve, such that when the user smokes the smoke, the smoke flows to the user's mouth through the outer circumference curve of the oil storage sleeve, in the flow direction During the process, the larger particles of smoke in the smoke are blocked by the cold or the components and remain in the atomizing assembly, which does not reach the user's mouth, thereby improving the user's taste and improving the user experience.
  • the adsorbing member 505 is a glass fiber strand.
  • the cutting member includes an oil guiding member
  • the oil absorbing core assembly is further provided with an oil storage cotton connected to the oil guiding member, so that oil can be blocked when the oil smoke flows out, and the oil oil is improved.
  • the self-adaptive outflow improves the practicability of the product;
  • the insulating sleeve houses the electric heating wire assembly and resists the oil storage cotton, and can fasten the connection between the electric heating wire assembly and the oil storage cotton, and prevent the heating wire and the connector Direct contact to prevent short circuit;
  • the smoke channel is set between the oil storage sleeve and the atomization sleeve, which can retain large particles of smoke oil and improve the user experience.
  • the present invention also provides an electronic cigarette comprising an interconnected battery assembly 701 and an atomizing assembly 702, including the atomizing assembly 702 as described in any of the above embodiments.

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  • Disinfection, Sterilisation Or Deodorisation Of Air (AREA)
  • Catching Or Destruction (AREA)

Abstract

L'invention concerne un ensemble d'atomisation et une cigarette électronique, l'ensemble d'atomisation comprenant un ensemble de stockage de liquide et un ensemble noyau d'atomisation, une cavité de stockage de liquide (301) et une cavité de réception (302) étant agencées à l'intérieur de l'ensemble de stockage de liquide, un trou traversant (303) étant agencé au niveau d'une paroi de cavité de la cavité de stockage de liquide (301), l'ensemble noyau d'atomisation étant introduit dans la cavité de réception (302), une rotation relative se produisant entre l'ensemble noyau d'atomisation et la paroi de cavité de la cavité de stockage de liquide (301) sous l'effet d'une force externe, l'ensemble noyau d'atomisation étant doté d'une pièce de coupe (304), une paroi de trou du trou traversant (303) étant serrée sur la pièce de coupe (304) pendant un état non opérationnel et une rotation relative étant produite entre l'ensemble noyau d'atomisation et la paroi de cavité de la cavité de stockage de liquide (301) sous l'effet de la force externe lorsque la pulvérisation de liquide à vapoter est nécessaire de sorte que la pièce de coupe (304) rompe la paroi de cavité de la cavité de stockage de liquide (301). Ainsi, le liquide à vapoter est dans un état hermétique pendant l'état non opérationnel, ce qui prolonge la durée de vie du liquide à vapoter, et la paroi de cavité de la cavité de stockage de liquide (301) est rompue par la pièce de coupe (304) lorsque l'ensemble noyau d'atomisation est entraîné en rotation, de sorte que le liquide à vapoter s'écoule dans l'ensemble noyau d'atomisation, ce qui augmente l'arrivée de liquide à vapoter de manière à garantir la présence d'une quantité suffisante de liquide à vapoter lorsque le liquide à vapoter est atomisé, et améliore l'expérience de l'utilisateur.
PCT/CN2015/073018 2015-02-13 2015-02-13 Ensemble d'atomisation et cigarette électronique WO2016127397A1 (fr)

Priority Applications (2)

Application Number Priority Date Filing Date Title
PCT/CN2015/073018 WO2016127397A1 (fr) 2015-02-13 2015-02-13 Ensemble d'atomisation et cigarette électronique
CN201590001306.7U CN208581836U (zh) 2015-02-13 2015-02-13 一种雾化组件及电子烟

Applications Claiming Priority (1)

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PCT/CN2015/073018 WO2016127397A1 (fr) 2015-02-13 2015-02-13 Ensemble d'atomisation et cigarette électronique

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WO2016127397A1 true WO2016127397A1 (fr) 2016-08-18

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CN (1) CN208581836U (fr)
WO (1) WO2016127397A1 (fr)

Cited By (21)

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US10512282B2 (en) 2014-12-05 2019-12-24 Juul Labs, Inc. Calibrated dose control
US10865001B2 (en) 2016-02-11 2020-12-15 Juul Labs, Inc. Fillable vaporizer cartridge and method of filling
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USD887632S1 (en) 2017-09-14 2020-06-16 Pax Labs, Inc. Vaporizer cartridge
US11553734B2 (en) 2018-11-08 2023-01-17 Juul Labs, Inc. Cartridges for vaporizer devices
CN112056632A (zh) * 2020-09-16 2020-12-11 深圳顺络电子股份有限公司 雾化装置
CN115192832A (zh) * 2022-07-04 2022-10-18 广东天物新材料科技有限公司 一种药物雾化装置

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