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WO2017185292A1 - Ensemble d'atomisation - Google Patents

Ensemble d'atomisation Download PDF

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Publication number
WO2017185292A1
WO2017185292A1 PCT/CN2016/080497 CN2016080497W WO2017185292A1 WO 2017185292 A1 WO2017185292 A1 WO 2017185292A1 CN 2016080497 W CN2016080497 W CN 2016080497W WO 2017185292 A1 WO2017185292 A1 WO 2017185292A1
Authority
WO
WIPO (PCT)
Prior art keywords
oil
assembly
atomizing
intake
sleeve
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/CN2016/080497
Other languages
English (en)
Chinese (zh)
Inventor
刘秋明
向智勇
牛建华
韦志林
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/CN2016/080497 priority Critical patent/WO2017185292A1/fr
Priority to CN201690001206.9U priority patent/CN208425512U/zh
Publication of WO2017185292A1 publication Critical patent/WO2017185292A1/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
    • A24F40/40Constructional details, e.g. connection of cartridges and battery parts
    • A24F40/48Fluid transfer means, e.g. pumps
    • A24F40/485Valves; Apertures
    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • 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 atomization assembly.
  • the structure of the atomization assembly provided by the prior art is described below with reference to FIG. 1.
  • the atomization assembly provided by the prior art is used in combination with a battery assembly to form an electronic cigarette, and the atomization assembly can be In the case where the battery pack is powered, the smoke oil is atomized to form a smoke.
  • the atomizing assembly includes an atomizing sleeve 101, an atomizing core assembly 102, located between the atomizing sleeve 101 and the atomizing core assembly 102 for storing oil for oily oil.
  • the cavity 103, the atomizing core assembly 102 includes a glass fiber 104, and a heating wire 105 wound around the glass fiber 104.
  • the two ends of the glass fiber 104 are inserted into the oil reservoir 103. So that the oil in the oil reservoir 103 can be conducted to the heating wire 105 via the glass fiber 104, so that the heating wire 105 atomizes the smoke oil to generate smoke under the power supply of the battery assembly.
  • the smoke can be directed along the direction of the vent 106 to the nozzle assembly 107 to allow the user to draw smoke through the nozzle assembly 107.
  • the electronic cigarette installed with the atomizing assembly shown in FIG. 1 is in a non-use state or in a transport state, since the glass fiber 104 is directly in contact with the oil in the oil reservoir 103, the electronic cigarette is in the electronic cigarette.
  • the smoke oil located in the oil reservoir 103 is easily infiltrated into the vent pipe 106 inside the atomizing core assembly 102, and the user smokes the cigarette when using the electronic cigarette. oil.
  • the smoke and the oil located in the oil storage chamber 103 may leak due to changes in air pressure and temperature, thereby reducing the service life of the electronic cigarette.
  • the electronic cigarette provided by the prior art has the possibility of misoperation, and it is easy to falsely trigger the operation of the heating wire 105, thereby causing unnecessary waste of smoke oil and electric power, and more importantly, it is easy for the child to play. It will suck the electronic cigarette and suck the smoke, causing a safety hazard.
  • the embodiment of the present invention provides an atomizing assembly capable of effectively preventing leakage of smoke oil.
  • the utility model provides an atomization assembly for forming an electronic cigarette in combination with a battery assembly, wherein the atomization assembly comprises an oil storage assembly for storing smoke oil, is connected with the oil storage assembly and is used for atomization.
  • An oil storage chamber is disposed in the oil storage assembly, and the atomization core assembly is provided with an oil inlet passage for introducing the oil in the oil storage chamber into the atomization core assembly for atomizing the oil
  • the adjustment assembly includes an intake air amount adjustment member and the intake air amount adjustment a connected oil retaining member, the oil retaining member is matched with a position of the oil inlet passage, and the intake air amount adjusting member is matched with a position of the intake passage, and the intake air amount adjusting member is at least a portion of the outer surface is located on an outer surface of the atomizing assembly, and the oil retaining member is movable together with the air intake amount adjusting member when an external force acts on the air intake amount adjusting member, so that the When the gas adjusting member completely covers the intake passage to close the intake passage, the oil retaining member covers the oil inlet passage to block the flow of the oil in the oil
  • the intake air amount adjusting member is rotatably sleeved on an outer side of the atomizing core assembly, and the intake passage includes a first air inlet hole disposed on a sidewall of the air intake amount adjusting member And a second air inlet hole on the side wall of the atomizing core assembly to rotate when the air intake amount adjusting member is rotated to a position where the first air inlet hole and the second air inlet hole are staggered from each other , such that the first intake hole and the second intake hole do not coincide, and the intake air amount adjusting member completely covers the second intake hole to close the intake passage.
  • the first air inlet hole is matched with the second air inlet hole, and the first air inlet hole and the second air inlet hole are strip-shaped and along a lateral direction of the atomizing assembly Extending the arrangement such that when the areas in which the first intake hole and the second intake hole coincide are different, the atomization assembly is caused to have different intake air amounts; and the oil inlet passage is used for a region where the oil retaining member cooperates in a strip shape and extends along a longitudinal direction of the atomizing assembly, so that the second air inlet hole is covered by the air intake amount adjusting member within an area of two-thirds or less The oil inlet passage is completely staggered from the oil retaining member, and the oil inlet passage is still fully open.
  • the atomizing core assembly includes a vent pipe disposed in the oil storage assembly for venting smoke, and an atomizing core body for atomizing the smoky oil at least one end of the snorkel
  • the connecting component is connected to the vent pipe and abuts one end of the atomizing core body, and the second air inlet hole is disposed on a sidewall of the vent pipe, one end of the oil storage component,
  • the outer peripheral surface of the snorkel and the joint One end of the joint assembly is surrounded by a groove disposed around the outer peripheral surface of the vent pipe, and the air intake amount adjusting member is sleeved on the vent pipe and located in the groove.
  • the atomizing core body is detachably inserted into the vent pipe, and the connecting component is detachably connected to the vent pipe, so that after the connecting component is detached, the The atomizing core body is taken out of the vent pipe.
  • an annular protrusion corresponding to the position of the first air inlet hole is disposed on an outer circumferential surface of the vent pipe, and a radially extending portion of the vent pipe is disposed through the annular protrusion
  • the second air inlet hole has a hole depth in a lateral direction of the atomizing assembly of the second air inlet hole larger than a depth of the first air inlet hole in a lateral direction of the atomizing assembly.
  • the oil storage assembly includes an oil storage sleeve, a first connecting sleeve and a second connecting sleeve which are respectively sleeved on the vent pipe, and the first connecting sleeve and the second connecting sleeve are respectively located at the
  • the opposite ends of the oil storage sleeve are connected to the oil storage sleeve, and the outer wall of the air vent tube extends along the radial direction of the vent tube to define a limiting portion, and the inner peripheral wall of the first connecting sleeve
  • a connecting ring is disposed on the upper side of the first connecting sleeve radially inwardly to make the connecting ring coaxial with the first connecting sleeve, and the connecting ring has a smaller diameter than the first connecting sleeve
  • the connecting ring is connected to the vent tube and abuts against one end of the limiting portion, and the connecting ring and the vent tube are in a tight fit and fixed connection.
  • the first connecting sleeve, the vent pipe and the air intake adjusting member are surrounded by an oil storage tank disposed around an outer circumferential surface of the vent pipe, and the smoky oil storage tank and the storage tank
  • the oil storage chamber is located on opposite sides of the connecting ring, the connecting ring is provided with a first perforation communicating with the oil storage chamber and the oil storage tank, and the oil in the oil storage chamber passes through The first perforation flows into the soot oil storage tank, and a sidewall of the vent pipe is provided with a second perforation serving as the oil inlet passage.
  • the oil retaining member is located in the oil storage tank and abuts against an outer wall surface of the air duct.
  • the oil retaining member is an elastic body capable of elastically deforming under an external force.
  • the elastomer is made of an elastic material.
  • the inner wall of the vent pipe is provided with a finite step, one end of the atomizing core body is abutted on the limiting step, and the other end of the atomizing core body is abutted against the connecting component.
  • a nozzle assembly is detachably connected to an end of the vent pipe facing away from the connecting component, a third threaded portion for connecting with the nozzle assembly is disposed on an outer circumferential surface of the vent pipe, the nozzle assembly includes a nozzle assembly body and an elastic ring, and the nozzle assembly is provided with a ring shape on the inner wall of the body
  • the limiting portion has one end of the elastic ring abutting against the limiting portion, and the other end of the elastic ring abuts against one end surface of the vent pipe.
  • the atomizing core body comprises an atomizing core sleeve, a smoke oil adsorption sleeve, a heating wire, a first insulating ring and a first inner electrode, and the smoke oil adsorption sleeve is made of an oil absorbing material and is sleeved in the same
  • the inner space of the smoke oil adsorption sleeve is formed with the atomization chamber;
  • the heating wire is wound into a tubular shape and sleeved in the smoke oil adsorption sleeve, the heating wire is disposed coaxially with the smoke oil adsorption sleeve, and the first insulation ring is sleeved on the atomization core sleeve
  • One end of the first inner electrode is sleeved in the first insulating ring, the atomizing core sleeve is electrically connected to the vent tube, and one end of the heating wire is electrically connected to the first inner electrode, Electrically connecting to the connection assembly through the first internal electrode, the other end of the heating wire is electrically connected to the atomization core sleeve, and is realized by the atomization core sleeve and the vent tube
  • the connection components are electrically connected.
  • one end of the vent tube is provided with a first thread segment
  • the connecting component comprises a connecting sleeve, a second insulating ring and a second inner electrode
  • one end of the connecting sleeve is connected to the battery component.
  • the other end of the connecting sleeve is provided with a second thread segment for connecting with the first thread segment
  • the second insulating ring is sleeved in the connecting sleeve
  • the second inner electrode is sleeved in the
  • the second insulating ring is connected in abutment with the first internal electrode, and the second internal electrode is used for electrical connection with the battery assembly.
  • annular gap is formed between an outer peripheral surface of one end of the first inner electrode and an inner peripheral surface of the vent tube, and the first air inlet and the annular gap position are Correspondingly, the side wall of the first inner electrode is provided with a through hole communicating with the annular gap and the atomization chamber.
  • the air intake amount adjusting member includes an annular body and an extending arm formed by an end surface of the annular body extending along a longitudinal direction of the annular body, the extending arm is provided with a fixing hole, and the oil retaining member At least one end of the plug is inserted into the fixing hole.
  • the fixing hole has a truncated cone shape
  • the oil retaining member is also in the shape of a truncated cone.
  • the fixing hole has a cylindrical shape
  • the oil retaining member has a T-shaped longitudinal section.
  • the outer peripheral surface of the vent pipe is provided with a positioning extending along a lateral direction of the atomizing assembly a post
  • the extension arm is provided with a retaining groove
  • the retaining groove is matched with the positioning post
  • the air intake adjusting member rotates toward a target direction until the positioning post is located in the retaining recess
  • the oil retaining member covers the oil inlet passage when the inside of the groove is in a clockwise direction or a counterclockwise direction.
  • the utility model provides an atomization assembly, comprising an oil storage assembly, an atomization core assembly connected to the oil storage assembly and used for atomizing the smoke oil in the oil storage assembly, and is movably disposed on the oil storage assembly An adjustment assembly and a connection assembly at one end; an oil storage chamber is disposed in the oil storage assembly, and the atomization core assembly is provided with oil for introducing the oil in the oil storage chamber into the atomization core assembly a passage, an atomization chamber for atomizing the smoke oil, and an intake passage communicating with the atomization chamber, the intake passage is connected to an outer surface of the atomization assembly, and the adjustment assembly includes an intake air amount adjustment member And an oil retaining member connected to the intake air amount adjusting member, the oil retaining member is matched with the position of the oil inlet passage, and the position of the intake air amount adjusting member is matched with the position of the intake passage.
  • At least a portion of the outer surface of the air intake amount adjusting member is located on an outer surface of the atomizing assembly.
  • the user can rotate the adjusting assembly as needed until the air intake adjusting member completely covers the intake passage to close the intake passage, and until the oil retaining member covers Living in the oil inlet passage, thereby effectively preventing the leakage of the oil in the oil storage chamber into the atomization core assembly, because the atomization assembly can close the oil inlet passage while closing the intake passage,
  • the smoke oil does not leak, and the possibility of erroneous operation of the atomizing assembly can be effectively prevented, and further, since the intake passage is closed
  • the oil inlet passage is automatically closed, so that it is easier to identify whether the oil inlet passage located inside the atomization assembly has been sealed, and the structure is simple and compact, and is convenient for the user to use.
  • FIG. 1 is a schematic cross-sectional structural view of an electronic cigarette provided by the prior art
  • FIG. 2 is a schematic overall structural view of an embodiment of an atomizing assembly provided by the present invention.
  • FIG. 3 is a schematic cross-sectional structural view of an embodiment of an atomizing assembly provided by the present invention.
  • FIG. 4 is a schematic overall structural view of an embodiment of an adjustment assembly provided by the present invention.
  • Figure 5 is a cross-sectional structural view showing another embodiment of the atomizing assembly provided by the present invention.
  • FIG. 6 is a partial structural schematic view of an embodiment of an atomizing assembly provided by the present invention.
  • Figure 7 is a partial structural schematic view showing another embodiment of the atomizing assembly provided by the present invention.
  • Figure 8 is a schematic view showing a partial explosion connection structure of an embodiment of the atomization assembly provided by the present invention.
  • Figure 9 is a cross-sectional structural view showing another embodiment of the atomizing assembly provided by the present invention.
  • FIG. 10 is a schematic view showing a partial explosion connection structure of another embodiment of the atomization assembly provided by the present invention.
  • Figure 11 is a schematic view showing an explosion connection structure of an embodiment of the atomization assembly provided by the present invention.
  • FIG. 12 is a schematic view showing an explosion connection structure of another embodiment of the atomization assembly provided by the present invention.
  • Figure 13 is a cross-sectional structural view showing another embodiment of the atomizing assembly provided by the present invention.
  • FIG. 14 is a cross-sectional structural view showing another embodiment of the atomizing assembly provided by the present invention.
  • the atomizing assembly provided in this embodiment is used to form an electronic cigarette in combination with a battery assembly.
  • the atomizing assembly includes an oil storage assembly 201 for storing soot.
  • An atomizing core assembly disposed inside the oil storage assembly 201 and connected to the oil storage assembly 201 and used to atomize the smoke oil in the oil storage assembly 201.
  • An adjustment assembly 202 movably disposed at one end of the oil storage assembly 201 and a connection assembly 203 disposed at one end of the atomization core assembly for connection with the battery assembly.
  • One end of the atomizing assembly is provided with the connecting assembly 203, and the other end of the atomizing assembly is provided with a nozzle assembly 204 to enable a user to draw smoke through the nozzle assembly 204.
  • FIG. 3 is a schematic cross-sectional structural view of an embodiment of the atomization assembly provided by the present invention.
  • An oil storage chamber 301 is disposed in the oil storage assembly 201, and the oil storage chamber 301 is capable of storing the oil.
  • the oil storage assembly 201 includes an oil storage jacket 302.
  • the atomizing core assembly 304 includes a vent tube 303 disposed in communication with the nozzle assembly 204.
  • the vent pipe 303 is inserted inside the oil reservoir 301 such that the oil reservoir 301 is formed between the vent pipe 303 and the oil reservoir 302.
  • the atomization core assembly 304 is dry burned.
  • the oil storage sleeve 302 shown in this embodiment may be made of a transparent material such as a glass material or the like.
  • the atomizing core assembly 304 is provided with an oil inlet passage 305 for introducing the oil in the oil reservoir 301 into the atomizing core assembly 304.
  • the oil in the oil reservoir 301 can be guided along the inlet of the oil inlet passage 305 to the inside of the atomizing core assembly 304, so that the heating wire located inside the atomizing core assembly 304 can smoke
  • the oil is atomized to form a smoke.
  • the atomizing core assembly 304 is also provided with an atomizing chamber 306 for atomizing the soot oil.
  • the atomization chamber 306 is internally provided with an electric heating wire 307 capable of atomizing the oil to form smoke.
  • the specific structure of the heating wire 307 is not limited in this embodiment, as long as the heating wire 307 can atomize the smoke oil that is conducted to the inside of the atomizing chamber 306 to generate smoke.
  • the atomizing core assembly 304 is further provided with an intake passage communicating with the atomizing chamber 306. 308.
  • One end of the intake passage 308 communicates with an outer peripheral surface of the atomization assembly, and the other end of the intake passage 308 is electrically connected to the atomization chamber 306 to enable air outside the atomization assembly to pass through
  • the intake passage 308 flows into the interior of the atomization chamber 306 to enable the air flow to drive the mist atomized by the heating wire 307 along the conduit of the vent tube 303 to the nozzle assembly 204.
  • FIG. 3 is a schematic overall structural view of an embodiment of an adjustment assembly 500 provided by the present invention
  • FIG. 5 is a schematic cross-sectional view of another embodiment of the atomization assembly provided by the present invention. Figure.
  • FIG. 3 is a schematic structural view of the oil inlet passage 305 and the intake passage 308 in an open state
  • FIG. 5 shows the oil inlet passage 305 and the intake passage 308. Schematic diagram of the structure when both are in the off state.
  • the adjustment assembly 500 includes an intake air amount adjusting member 501 and an oil retaining member 502 connected to the intake air amount adjusting member 501.
  • the position of the oil retaining member 502 and the oil inlet passage 305 are matched.
  • the intake air amount adjusting member 501 is matched with the position of the intake passage 308.
  • At least part of the outer surface of the air intake amount adjusting member 501 provided in this embodiment is located on the outer surface of the atomizing assembly.
  • the outer peripheral surface of the intake air amount adjusting member 501 is located on the outer surface of the atomizing assembly.
  • the intake air amount adjusting member 501 is rotatable upon receiving a force applied by a user, so that the air intake amount adjusting member 501 can drive the adjusting assembly 500 to rotate to a different position.
  • a frictional pattern may be disposed on an outer circumferential surface of the air intake amount adjusting member 501.
  • the specific structure of the friction pattern is not limited in this embodiment, as long as the friction between the user's hand and the adjustment assembly 500 can be increased, thereby effectively increasing the efficiency of the user's process of rotating the adjustment assembly 500.
  • the user can apply an external force to the air intake amount adjusting member 501, thereby adjusting the intake air amount.
  • the member 501 drives the intake air amount adjusting member 501 and the oil retaining member 502 to rotate together until the air intake amount adjusting member 501 completely covers the intake passage 308 to close the intake passage 308 (as shown in FIG. 5 Show).
  • the oil retaining member 502 covers the oil inlet passage 305 to cover the oil inlet passage.
  • the oil retaining member 502 of 305 can completely block the flow of the oil in the oil storage chamber 301 into the atomization.
  • the user can rotate the adjustment assembly 202 as needed until the intake air amount adjusting member 501 completely covers the intake passage 308 to close the intake passage 308, and up to The oil retaining member 502 covers the oil inlet passage 305, thereby effectively preventing the oil in the oil storage chamber 301 from leaking into the atomizing core assembly 304.
  • the atomizing assembly shown in this embodiment can The oil inlet passage 305 is closed while closing the intake passage 308, so that even if the temperature, the air pressure, and the like of the environment in which the atomizing assembly is placed are changed, the smoke oil does not leak, and the mist can be effectively prevented.
  • FIG. 6 is a partial structural schematic view of an embodiment of an atomizing assembly provided by the present invention
  • FIG. 7 is a partial structural schematic view of another embodiment of the atomizing assembly provided by the present invention, wherein FIG. 6 And the atomizing assembly shown in FIG. 7 is such that the end of the oil storage assembly is close to the adjustment assembly 202 so as to be inserted in the end of the oil storage assembly near the end of the adjustment assembly 202 The oil member 502 is exposed.
  • FIG. 6 is a schematic structural view of the oil inlet passage 305 and the intake passage 308 in an open state
  • FIG. 7 shows the oil inlet passage 305 and the intake passage 308. Schematic diagram of the structure when it is off.
  • the air intake amount adjusting member 501 is rotatably sleeved outside the atomizing core assembly 304.
  • the intake passage 308 includes a first intake hole disposed on a sidewall of the intake air amount adjusting member 501 701 and a second air inlet 702 located on a sidewall of the atomizing core assembly 304.
  • the intake air amount adjusting member 501 when the user rotates the intake air amount adjusting member 501, at least a portion of the first air inlet hole 701 and the second air inlet hole 702 may be overlapped, and then an external gas may pass through the A position where the first intake hole 701 coincides with the second intake hole 702 flows to the inside of the atomizing core assembly 304.
  • the user rotates the air intake amount adjusting member 501 to completely shift the first air inlet hole 701 and the second air inlet hole 702 from each other.
  • the air inlet hole 701 and the second air inlet hole 702 do not completely overlap.
  • the air intake amount adjusting member 501 completely covers the second air inlet hole 702 to close the intake passage 308, and the external gas cannot flow.
  • the first air inlet 701 and the second air inlet 702 are matched, and the first air inlet 701 and the second air inlet 702 are strip-shaped and Along the lateral extension of the atomizing assembly.
  • the atomization assembly is caused to have different intake air amounts, that is, when the first intake hole 701 and the When the areas where the second intake holes 702 overlap are different, the external gas flows to the inside of the atomizing core assembly 304 through a position where the first intake holes 701 and the second intake holes 702 coincide. The amount of gas is different.
  • the oil inlet passage 305 is completely opened, only When the user continues to rotate the intake air amount adjusting member 501 such that the first air inlet hole 701 and the second air inlet hole 702 are completely staggered, the oil retaining member 502 can completely cover the oil inlet passage. 305.
  • a region of the oil inlet passage 305 for engaging with the oil retaining member 502 is strip-shaped and disposed along a longitudinal extension of the atomizing assembly to enable the When the second intake hole 702 is covered by the intake air amount adjusting member 501 by two-thirds or less, the oil inlet passage 305 and the oil retaining member 502 are completely staggered, and the oil inlet passage 305 is still present. Fully open.
  • the amount of oil flowing into the atomization core assembly 304 through the oil inlet passage 305 is not reduced, thereby effectively avoiding the process of adjusting the intake air amount. If the amount of oil intake is too small, the heating wire 307 in operation may be burned out due to too little amount of smoke oil.
  • the possibility of storing the oil dam 309 effectively improves the service life of the atomizing assembly and improves the safety during use of the atomizing assembly.
  • FIG. 8 is a schematic diagram of a partial exploded connection structure of an embodiment of the atomizing assembly provided by the present invention.
  • the atomizing core assembly 304 includes: a vent pipe 303 disposed in the oil storage assembly 201 for venting smoke, and atomization for atomizing the smoke oil at least one end of which is inserted into the vent pipe 303 Core body 901.
  • the connecting component 203 is connected to the vent pipe 303 and abuts against one end of the atomizing core body 901.
  • the connecting component 203 is connected to one end of the vent pipe 303 facing away from the nozzle assembly 204, and an end of the vent pipe 303 facing away from the nozzle assembly 204 abuts the connecting component 203.
  • the atomizing core body 901 is detachably inserted into the vent pipe 303.
  • the inner wall of the vent pipe 303 is provided with a limit step 604.
  • One end of the atomizing core body 901 is abutted on the limiting step 604, and the other end of the atomizing core body 901 is abutted against the connecting component 203.
  • the connecting component 203 is detachably coupled to the vent tube 303.
  • connection assembly 203 and the vent tube 303 are specifically detachably connected.
  • the connecting component 203 shown in this embodiment is detachably connected to the vent pipe 303, and the atomizing core body 901 is located between the connecting component 203 and the vent pipe 303,
  • the connecting component 203 is detached from the atomizing component, the atomizing core body 901 can be taken out from the vent pipe 303, thereby facilitating the user to replace the atomizing core body 901 so that
  • the atomizing core body 901 is unable to work normally, it is not necessary to replace the entire atomizing assembly, but only the atomizing core body 901 is replaced, thereby avoiding waste and facilitating the user to the atomizing core body 901. Carry out maintenance or repair.
  • the atomizing core body 901 includes:
  • the smoke oil adsorption sleeve 606 is made of an oil absorbing material and is sleeved in the atomization core sleeve 605.
  • the inner space of the smoke oil adsorption sleeve 605 is formed with the atomization chamber.
  • the heating wire 607 is wound into a cylindrical shape and sleeved in the smoke oil adsorption sleeve 606.
  • heating wire 607 is disposed coaxially with the soot adsorption sleeve 606.
  • the contact area of the heating wire 607 and the smoke oil adsorption sleeve 606 can be effectively improved, thereby effectively securing the heating wire.
  • the concentration of 607 atomized smoke since the outer peripheral surface of the heating wire 607 is in contact with the soot adsorption sleeve 606, the possibility of dry burning of the heating wire 607 is effectively avoided, and the user can avoid harmful gas when the heating wire 607 is dry-burned.
  • the health of the user is ensured, the safety in the process of using the electronic cigarette is improved, and the smoke oil can be uniformly supplied to the heating wire 607 through the smoke oil adsorption sleeve 606, thereby effectively avoiding excessive transportation of the smoke oil. There is no possibility that the excessive smoke oil on the heating wire 607 leaks.
  • first insulating ring 608 is sleeved at one end of the atomizing core sleeve 605, and the first inner electrode 609 is sleeved in the first insulating ring 608.
  • the atomizing core sleeve 605 shown in this embodiment is made of a conductive material, the first insulating ring 608 is located between the atomizing core sleeve 605 and the first inner electrode 609, and the first An insulating ring 608 is used to electrically isolate the atomizing core sleeve 605 and the first inner electrode 609.
  • the electrical connection structure of the heating wire 607 will be described below:
  • the atomizing core sleeve 605 is electrically connected to the vent tube 303, and one end of the heating wire 607 is electrically connected to the first inner electrode 609 to be electrically connected to the connecting component through the first inner electrode 609 203.
  • the other end of the heating wire 607 is electrically connected to the atomizing core sleeve 605, and is electrically connected to the connecting component 203 through the atomizing core sleeve and the venting tube 303.
  • connection component 203 The specific structure of the connection component 203 is described in detail below with reference to FIG. 5 and FIG. 8:
  • connection assembly 203 and the atomizing core assembly 304 are detachably connected is explained.
  • the connecting component includes a connecting sleeve 610, a second insulating ring 611 and a second inner electrode 612.
  • the connecting sleeve 610 is made of a conductive material
  • the second insulating ring 611 between the connecting sleeve 610 and the second inner electrode 612 is used for electrically isolating the connecting sleeve 610 and The second inner electrode 612.
  • One end of the connecting sleeve 610 is for connecting to the battery assembly.
  • connection sleeve 610 and the second inner electrode 612 are respectively electrically connected to the battery assembly such that both ends of the heating wire 607 are electrically connected to the battery assembly.
  • vent tube 303 One end of the vent tube 303 is provided with a first threaded section 603, and the other end of the connecting sleeve is provided with a second threaded section 602 for connection with the first threaded section 603.
  • the second insulating ring 611 is sleeved in the connecting sleeve 610, and the second inner electrode 612 is sleeved in the second insulating ring 611 and is connected to the first inner electrode 609.
  • the second inner electrode 612 is for electrical connection with the battery assembly.
  • the electrical connection structure shown in this embodiment can effectively ensure that both ends of the heating wire are electrically connected to the battery component, thereby effectively ensuring the stability of the electrical connection relationship and ensuring the normal operation of the heating wire.
  • FIG. 11 is a schematic diagram of an explosion connection structure of an embodiment of the atomization assembly provided by the present invention.
  • the atomizing core body 901 is provided with an annular gap 613 formed between an outer peripheral surface of one end of the first inner electrode 609 and an inner peripheral surface of the vent pipe 303.
  • the first air inlet hole 701 is disposed corresponding to the position of the annular gap 613.
  • the side wall of the first inner electrode 609 is provided with a through hole 614 communicating with the annular gap 613 and the atomization chamber.
  • the second air inlet hole 702 is disposed on a sidewall of the vent pipe 303.
  • FIG. 9 is a cross section of another embodiment of the atomization assembly provided by the present invention. Structure intention.
  • annular projection 703 corresponding to the position of the first intake hole 701 is provided on the outer peripheral surface of the vent pipe 303.
  • vent pipe 303 shown in this embodiment is provided with the annular protrusion 703 in a direction toward the first air inlet hole 701.
  • the second intake hole 702 is provided through the annular protrusion 703 in a radial direction extending along the vent pipe 303.
  • the hole depth of the second air inlet hole 702 along the lateral direction of the atomizing assembly is greater than the hole depth of the first air inlet hole 701 along the lateral direction of the atomizing assembly.
  • the air intake amount adjusting member 501 is rotated because the hole depth of the second air inlet hole 702 along the lateral direction of the atomizing assembly is greater than the hole depth of the first air inlet hole 701 along the lateral direction of the atomizing assembly.
  • the user can accurately determine whether the first intake hole 701 and the second intake hole 702 overlap and overlap the size of the area, and can accurately determine the first intake hole 701 and the second inlet. Whether the air holes 702 have been completely staggered, so that the user can accurately and quickly determine whether the intake passage 308 is in a closed state, thereby further facilitating the user to adjust the intake air amount and improving the efficiency of the user in adjusting the intake air amount.
  • the atomizing core assembly 304 may further include a first sealing ring 902 and a second sealing ring. 903 and a third sealing ring 904.
  • the second sealing ring 903 is disposed between the end of the atomizing core body 901 facing the connecting component 203 and the vent pipe 303.
  • the first sealing ring 902 is disposed between the end of the atomizing core body 901 facing away from the connecting component 203 and the vent pipe 303.
  • the third seal ring 904 is disposed between the atomization core body 901 and the intake air amount adjusting member 501.
  • the first sealing ring 902, the second sealing ring 903 and the third sealing ring 904 provided by the embodiment can effectively prevent smoke oil leakage, and can improve the structure of the atomizing core assembly 304. stability.
  • one end of the oil storage assembly 201, the outer circumferential surface of the vent pipe 303, and one end of the connection assembly 203 are surrounded by a groove 601 provided around the outer circumferential surface of the vent pipe 303.
  • the air intake amount adjusting member 501 is sleeved on the ventilation pipe 303 and located in the groove 601.
  • the intake air amount adjusting member 501 Since the intake air amount adjusting member 501 is located in the recess 601, the air intake amount adjusting member 501 can be effectively prevented from shaking, thereby improving the stability of the atomizing assembly structure.
  • the structure of the atomization core assembly 304 shown in this embodiment can effectively improve the stability of the structure of the atomization assembly, and facilitate the assembly of the atomization assembly by the user, thereby improving the process of assembling the atomization assembly. s efficiency.
  • FIG. 10 is a schematic diagram of a partial exploded connection structure of another embodiment of the atomization assembly provided by the present invention.
  • the oil storage assembly 201 includes an oil storage sleeve 302, a first connecting sleeve 310 and a second connecting sleeve 311 which are all sleeved on the ventilation pipe 303.
  • the first connecting sleeve 310 and the second connecting sleeve 311 are respectively located at opposite ends of the oil storage sleeve 302 and are connected to the oil storage sleeve 302.
  • a limiting portion 312 is defined on an outer wall of the vent pipe 303 along a radial direction of the vent pipe 303.
  • a connecting ring 313 is disposed on an inner circumferential wall of the first connecting sleeve 310 along a radial inward direction of the first connecting sleeve 310.
  • connecting ring 313 is disposed coaxially with the first connecting sleeve 310, and the diameter of the connecting ring 313 is smaller than the diameter of the first connecting sleeve 310.
  • the connecting ring 313 is sleeved on the vent pipe 303 and abuts against one end of the limiting portion 312.
  • the connecting ring 313 and the vent pipe 303 are tightly coupled and fixedly connected.
  • the first connecting sleeve 310, the vent tube 303, and the inlet are surrounded by a soot storage tank 314 provided around the outer peripheral surface of the vent pipe 303.
  • the oil storage tank 314 and the oil storage chamber 301 are located on opposite sides of the connecting ring 313.
  • the connecting ring 313 is provided with a first through hole 315 communicating with the oil storage chamber 301 and the oil storage tank 314.
  • the oil in the oil storage chamber 301 flows into the oil storage tank 314 through the first through hole 315, and the second side hole 305 serving as the oil inlet passage is disposed on the side wall of the air tube 303.
  • the smoke oil located in the oil reservoir 301 is firstly conducted into the oil storage tank 314 via the first through hole 315, and is located in the smoke oil storage tank.
  • the smoke oil in 314 is further conducted to the inside of the atomizing core assembly 304 through the second through hole 305, thereby preventing excessive conduction of the smoke oil to the inside of the atomizing core assembly 304, so that the oil storage chamber
  • the smoke oil in 301 can be uniformly conducted to the inside of the atomizing core assembly 304, effectively preventing the atomizing core assembly 304 from being completely atomized excessively when the excessive smoke oil is conducted to the inside of the atomizing core assembly 304.
  • the smoke oil there is a leakage of smoke oil, which makes the user suck the smoke oil harmful to the body, which improves the safety and health of the user during the use of the atomization assembly.
  • FIG. 6 and FIG. 7 are schematic diagrams showing the structure of the atomizing assembly when the first connecting sleeve 310 is removed.
  • the oil retaining member 502 is located in the oil storage tank 314 and abuts against an outer wall surface of the vent pipe 303.
  • the oil retaining member 502 is an elastic body capable of elastically deforming under an external force.
  • the elastomer is made of an elastic material.
  • the oil retaining member 502 shown in this embodiment is made of an elastic body, the oil retaining member 502 can be completely fitted to the second through hole 305.
  • the intake air amount adjusting member 501 includes an annular body 503 and An extension arm 504 formed by an end surface of the annular body 503 extending in a longitudinal direction of the annular body 503.
  • the extension arm 504 is provided with a fixing hole 505 , and at least one end of the oil retaining member 502 is inserted into the fixing hole 505 .
  • the fixing hole 505 has a truncated cone shape
  • the oil retaining member 502 also has a truncated cone shape.
  • the fixing hole 505 has a cylindrical shape
  • the oil retaining member 502 has a T-shaped longitudinal section.
  • the outer peripheral surface of the vent pipe 303 is provided with a positioning post 506 extending in the lateral direction of the atomizing assembly.
  • the extension arm 504 is provided with a holding groove 507, and the holding groove 507 is matched with the positioning post 506, when the intake air amount adjusting member 501 is rotated toward the target direction until the positioning post 506 is located at the When the inside of the recess 507 is held, the oil retaining member 502 covers the oil inlet passage 305, and the target direction is a clockwise direction or a counterclockwise direction.
  • the air intake amount adjusting member 501 is rotated clockwise until the positioning post 506 is completely inside the holding recess 507 (as shown in FIG. 7). ), at this time, the oil inlet passage 305 and the intake passage 308 are both in a closed state.
  • the intake air amount adjusting member 501 cannot continue to rotate, and when the oil inlet passage 305 and the intake passage 308 need to be opened, the intake air can be rotated counterclockwise.
  • the amount adjusting member 501 cannot continue to rotate, and when the oil inlet passage 305 and the intake passage 308 need to be opened, the intake air can be rotated counterclockwise. The amount adjusting member 501.
  • the positioning post 506 shown in this embodiment functions as a positioning to improve the accuracy and efficiency of the user to close or open the oil inlet passage 305 and the intake passage 308.
  • FIG. 12 is an exploded connection of another embodiment of the atomization assembly provided by the present invention. Schematic.
  • a nozzle assembly 204 is detachably coupled to an end of the vent tube 303 that faces away from the connection assembly 203.
  • a third threaded section 205 for connecting to the nozzle assembly 204 is disposed on an outer peripheral surface of the vent pipe 303.
  • the nozzle assembly 204 includes a nozzle assembly body 206 and an elastic ring 207.
  • An annular limiting portion 208 is disposed on an inner wall of the nozzle assembly body 206.
  • One end of the elastic ring 207 abuts against the limiting portion 208 , and the other end of the elastic ring 207 abuts against one end surface of the vent pipe 303 .
  • the elastic ring 207 shown in this embodiment can effectively prevent the smoke oil located in the oil reservoir 301 from leaking to the nozzle assembly body 206 to be sucked by the user, thereby effectively improving the user's passage through the nozzle.
  • the component 204 is safe during smoking.
  • FIG. 12 is a schematic diagram of an explosion connection structure of another embodiment of the atomization assembly provided by the present invention.
  • a fuel filler opening 1201 and a through hole 1202 are provided through the second connecting sleeve 311.
  • vent tube 303 shown in this embodiment away from the connection assembly 203 can pass through the perforation 1202.
  • a distance between the end of the vent pipe 303 away from the connecting component 203 and the connecting component 203 is greater than a distance between the fueling port 1201 and the connecting component 203.
  • the fuel filler port 1201 shown in this embodiment is electrically connected to the oil storage chamber 301, so that the user can add the oil to the oil storage chamber 301 through the fuel filler port 1201, thereby effectively extending the oil filler port 1201. The life of the atomizing assembly.
  • the intake air amount adjusting member 501 needs to be rotated to reach a specific position, which is implemented in this embodiment.
  • the oil inlet passage 305 and the opening and closing of the intake passage 308 provide an atomizing assembly of another configuration.
  • the first connecting sleeve 310 shown in this embodiment is provided with a receiving groove 1301 toward the end of the air intake amount adjusting member 501.
  • the rest of the structure of the first connecting sleeve 310 is the same as that of the foregoing embodiment, and is not described in detail in this embodiment.
  • An end portion of the intake air amount adjusting member 501 is movable in a longitudinal direction of the receiving groove 1301, and moves the air intake amount adjusting member 501 in a direction away from the receiving groove 1301 until the oil inlet
  • the passage 305 and the intake passage 308 are in an open state (as shown in FIG. 13).

Landscapes

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

Abstract

La présente invention concerne un ensemble d'atomisation qui comprend un ensemble de stockage de liquide (201), un ensemble noyau d'atomisation (304), un ensemble de réglage (202) et un ensemble de liaison (203). L'ensemble noyau d'atomisation (304) est pourvu d'un passage d'admission de liquide (305) et d'un passage d'admission d'air (308). Le passage d'admission d'air (308) communique avec la surface externe de l'ensemble d'atomisation. L'ensemble de réglage (202) comprend un élément de réglage de quantité d'admission d'air (501) et un élément déflecteur de liquide (502) relié à l'élément de réglage de quantité d'admission d'air (501). La position de l'élément déflecteur de liquide (502) et la position du passage d'admission de liquide (305) sont agencées de manière appariée. Un utilisateur peut faire tourner l'ensemble de réglage (202) tel que nécessaire, jusqu'à ce que l'élément de réglage de quantité d'admission d'air (501) recouvre entièrement le passage d'admission d'air (308) de manière à fermer le passage d'admission d'air (308), et jusqu'à ce que l'élément déflecteur de liquide (502) recouvre le passage d'admission de liquide (305), empêchant ainsi efficacement le liquide de cigarette se trouvant dans la chambre de stockage de liquide de fuir dans l'ensemble noyau d'atomisation.
PCT/CN2016/080497 2016-04-28 2016-04-28 Ensemble d'atomisation Ceased WO2017185292A1 (fr)

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PCT/CN2016/080497 WO2017185292A1 (fr) 2016-04-28 2016-04-28 Ensemble d'atomisation
CN201690001206.9U CN208425512U (zh) 2016-04-28 2016-04-28 一种雾化组件

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Cited By (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110074458A (zh) * 2018-01-25 2019-08-02 湖南中烟工业有限责任公司 一种电子烟雾化芯、电子烟及其产生烟雾的方法
CN110179163A (zh) * 2019-06-11 2019-08-30 深圳市合元科技有限公司 电子烟的控制方法及电子烟
CN111184259A (zh) * 2020-01-06 2020-05-22 深圳市吉迩科技有限公司 气溶胶产生装置和气溶胶浓度调节方法
CN111317180A (zh) * 2018-12-14 2020-06-23 常州市派腾电子技术服务有限公司 雾化器及电子烟
CN113273726A (zh) * 2021-05-13 2021-08-20 河南中烟工业有限责任公司 一种加热卷烟烟具的进气装置
EP3991583A1 (fr) * 2020-10-30 2022-05-04 Shenzhen Eigate Technology Co., Ltd. Atomiseur
US20220248756A1 (en) * 2020-06-09 2022-08-11 Shenzhen Huachengda Precision Industry Co. Ltd. Liquid recycling atomization device
WO2022267571A1 (fr) * 2021-06-24 2022-12-29 常州市派腾电子技术服务有限公司 Atomiseur et dispositif de génération d'aérosol
WO2023284338A1 (fr) * 2021-07-15 2023-01-19 深圳易佳特科技有限公司 Atomiseur et cigarette électronique
CN116649641A (zh) * 2023-06-12 2023-08-29 深圳市吉迩科技有限公司 一种油芯分离结构及气溶胶发生装置

Families Citing this family (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111480887B (zh) * 2019-01-27 2024-06-04 湖南中烟工业有限责任公司 一种雾化器及电子烟
CN111406997A (zh) * 2019-12-03 2020-07-14 深圳市艾维普思科技有限公司 电子烟
CN111887481B (zh) * 2020-07-30 2025-05-30 深圳市吉迩科技有限公司 一种旋转进气的装置及气溶胶产生装置
CN112089106B (zh) * 2020-08-25 2025-02-28 深圳市华诚达精密工业有限公司 迂回气道的雾化单元和雾化组件

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN203633502U (zh) * 2013-10-15 2014-06-11 深圳市合元科技有限公司 电子烟用雾化器及电子烟
CN203723439U (zh) * 2013-12-31 2014-07-23 刘秋明 一种雾化器及电子烟
WO2015154309A1 (fr) * 2014-04-11 2015-10-15 深圳市康尔科技有限公司 Structure d'atomisation de cigarette électronique
CN205093589U (zh) * 2015-10-12 2016-03-23 深圳市欧比斯科技有限公司 电子雾化器

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN203633502U (zh) * 2013-10-15 2014-06-11 深圳市合元科技有限公司 电子烟用雾化器及电子烟
CN203723439U (zh) * 2013-12-31 2014-07-23 刘秋明 一种雾化器及电子烟
WO2015154309A1 (fr) * 2014-04-11 2015-10-15 深圳市康尔科技有限公司 Structure d'atomisation de cigarette électronique
CN205093589U (zh) * 2015-10-12 2016-03-23 深圳市欧比斯科技有限公司 电子雾化器

Cited By (12)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110074458A (zh) * 2018-01-25 2019-08-02 湖南中烟工业有限责任公司 一种电子烟雾化芯、电子烟及其产生烟雾的方法
CN110074458B (zh) * 2018-01-25 2023-09-12 湖南中烟工业有限责任公司 一种电子烟雾化芯、电子烟及其产生烟雾的方法
CN111317180A (zh) * 2018-12-14 2020-06-23 常州市派腾电子技术服务有限公司 雾化器及电子烟
CN110179163A (zh) * 2019-06-11 2019-08-30 深圳市合元科技有限公司 电子烟的控制方法及电子烟
CN111184259A (zh) * 2020-01-06 2020-05-22 深圳市吉迩科技有限公司 气溶胶产生装置和气溶胶浓度调节方法
CN111184259B (zh) * 2020-01-06 2023-10-03 深圳市吉迩科技有限公司 气溶胶产生装置和气溶胶浓度调节方法
US20220248756A1 (en) * 2020-06-09 2022-08-11 Shenzhen Huachengda Precision Industry Co. Ltd. Liquid recycling atomization device
EP3991583A1 (fr) * 2020-10-30 2022-05-04 Shenzhen Eigate Technology Co., Ltd. Atomiseur
CN113273726A (zh) * 2021-05-13 2021-08-20 河南中烟工业有限责任公司 一种加热卷烟烟具的进气装置
WO2022267571A1 (fr) * 2021-06-24 2022-12-29 常州市派腾电子技术服务有限公司 Atomiseur et dispositif de génération d'aérosol
WO2023284338A1 (fr) * 2021-07-15 2023-01-19 深圳易佳特科技有限公司 Atomiseur et cigarette électronique
CN116649641A (zh) * 2023-06-12 2023-08-29 深圳市吉迩科技有限公司 一种油芯分离结构及气溶胶发生装置

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