WO2016145613A1 - Élément d'atomisation et cigarette électronique - Google Patents

Élément d'atomisation et cigarette électronique Download PDF

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Publication number
WO2016145613A1
WO2016145613A1 PCT/CN2015/074377 CN2015074377W WO2016145613A1 WO 2016145613 A1 WO2016145613 A1 WO 2016145613A1 CN 2015074377 W CN2015074377 W CN 2015074377W WO 2016145613 A1 WO2016145613 A1 WO 2016145613A1
Authority
WO
WIPO (PCT)
Prior art keywords
oil
assembly
atomizing
oil storage
smoke
Prior art date
Application number
PCT/CN2015/074377
Other languages
English (en)
Chinese (zh)
Inventor
刘秋明
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/CN2015/074377 priority Critical patent/WO2016145613A1/fr
Priority to CN201580077917.4A priority patent/CN107427070A/zh
Publication of WO2016145613A1 publication Critical patent/WO2016145613A1/fr

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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
    • A24F40/48Fluid transfer means, e.g. pumps
    • A24F40/485Valves; Apertures
    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F15/00Receptacles or boxes specially adapted for cigars, cigarettes, simulated smoking devices or cigarettes therefor
    • A24F15/01Receptacles or boxes specially adapted for cigars, cigarettes, simulated smoking devices or cigarettes therefor specially adapted for simulated smoking devices or cigarettes therefor
    • A24F15/015Receptacles or boxes specially adapted for cigars, cigarettes, simulated smoking devices or cigarettes therefor specially adapted for simulated smoking devices or cigarettes therefor with means for refilling of liquid inhalable precursors
    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F40/00Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
    • A24F40/10Devices using liquid inhalable precursors

Definitions

  • the present invention relates to the field of electronic cigarettes, and more particularly to an atomizing assembly and an electronic cigarette.
  • the electronic cigarette includes an atomizing component and a battery component, and the atomizing component adsorbs the smoke oil on the cotton storage oil to achieve the effect of solid oil and oil lock, and the electric heating wire assembly passes through the atomized oil storage cotton.
  • the smoke oil on the smoke produces smoke, so when the smoke oil in the oil storage cotton is used up, the user cannot add the smoke oil, resulting in waste of resources.
  • the cotton wool in the oil storage cotton will be decomposed into the smoke oil, which will cause the smoke oil to deteriorate, and ultimately affect the user's smoking taste.
  • the prior art cannot isolate the smoke oil from contact with the moisture in the air, causing the smoke oil to absorb the moisture in the air, causing the smoke oil to deteriorate, affecting the user's experience, and the oil storage cotton is always
  • the electric heating wire assembly supplies oil, which easily causes the electric heating wire component to leak oil due to supersaturation of the smoke oil.
  • the existing electronic cigarette cannot control the flow rate of the smoke oil flowing into the heating wire assembly, which may cause the burning of cotton or the supersaturation of the smoke oil from the lower end of the atomizing assembly.
  • the technical problem to be solved by the present invention is to provide an atomizing assembly and an electronic cigarette in view of the above-mentioned drawbacks in the prior art.
  • An atomizing assembly for forming an electronic cigarette in combination with a battery assembly, the atomizing assembly including a nozzle assembly, an oil storage assembly for storing soot oil, and an active connection with the oil storage assembly and for An atomizing core assembly for atomizing the oil in the oil storage assembly, an end surface of one end of the oil storage assembly is formed with a fuel filler port, and the nozzle assembly is detachably connected at the fuel filler port, the oil storage An oil storage chamber is formed in the assembly, and an oil blocking plate is disposed at one end of the oil storage chamber facing the atomizing core assembly, and the oil guiding plate is provided with an oil guiding hole
  • one end of the atomizing core assembly is inserted into the oil storage assembly and elastically abuts the oil separating plate, The other end of the atomizing core assembly extends outside the oil storage assembly, and one end of the atomizing core assembly inserted into the oil storage assembly is elastically sealed with the oil storage assembly, and the inner wall of the oil storage assembly a first holding portion is disposed on the outer wall of the atomizing core assembly and a second holding portion that is mutually engaged with the first holding portion to block the atomizing core assembly from the oil storage assembly Disassemble
  • an end face of the atomization core assembly facing the oil barrier plate is provided with an oil inlet hole for introducing the smoke oil in the oil storage chamber into the atomization core assembly for atomization, and And a marble mechanism for controlling the introduction of the oil in the oil storage chamber into the atomization core assembly, the oil inlet hole corresponding to the position of the oil guiding hole, the atomizing core assembly and the storage
  • the oil assembly is rotatably connected to control whether the marble mechanism is inserted into the oil guiding hole by controlling relative rotation between the oil storage assembly and the atomizing core assembly, thereby controlling the plugging of the oil guiding hole And controlling the oil inlet hole to be turned on or off.
  • the oil storage assembly is provided with a first limiting portion
  • the atomizing core assembly is provided with the first limiting portion for matching a second limiting portion for limiting the amplitude of rotation of the atomizing core assembly, wherein the first limiting portion limits the atomizing core after the atomizing core assembly is rotated by a predetermined amplitude relative to the oil storage assembly The assembly rotates to cause the oil inlet to be turned on or off.
  • 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 portion is an arcuate slot facing the first limiting post, and the first limiting post is movably inserted in the slot.
  • the oil storage assembly includes a transparent oil storage sleeve and a fastening sleeve sleeved at one end of the oil storage sleeve, and the oil storage sleeve and the fastening sleeve Enclosing the first holding portion, the first holding portion is a card slot, and the second holding portion is protruded from an outer sidewall of the atomizing core assembly and is opposite to the card slot Corresponding blocking ring, the blocking ring is inserted in the card slot.
  • an atomizing cover is disposed at one end of the atomizing core assembly facing the oil separating plate, and the atomizing cover includes an atomizing cover body and is fixed to the atomizing a vent pipe extending into the main body and extending into the oil storage assembly, the atomizing cover body is provided with a mounting hole for fixing the marble mechanism, and the mounting hole and the oil inlet hole surround the through hole The air tube is evenly distributed on the atomizing cover body.
  • the marble mechanism includes a fixing member connected to the mounting hole, and a fixing groove is disposed at one end of the fixing member facing the oil separating plate, and the mounting An elastic member having one end connected to the bottom wall of the mounting groove is disposed in the slot, and the other end of the elastic member is connected with a positioning bead, the positioning bead Resilience abuts to the grease trap.
  • the atomization core assembly includes a hollow atomization seat, the atomization cover, a smoke oil adsorption plate, an atomization electrode assembly, and an electrical connection to the atomization electrode.
  • the atomizing cover body is sleeved outside the one end of the atomizing seat inserted into the oil storage assembly, and the vent pipe is rotatably inserted into the oil storage assembly,
  • An atomizing electrode assembly is fixed at an end of the atomizing seat away from the nozzle assembly and electrically connected to the battery assembly, and the smoke oil adsorption plate is made of an oil absorbing material and is disposed on the atomizing seat And at one end, the oil adsorption plate elastically abuts against the atomizing cover, so that the oil in the oil storage chamber flows into the oil adsorption plate when the oil inlet hole is turned on, the electric heat A wire assembly is placed in the atomization seat and used to atomize the smoke oil in the soot adsorption plate.
  • the oil inlet hole and the mounting hole respectively comprise two, between the two oil inlet holes and between the two mounting holes.
  • the lines are perpendicular to each other.
  • the oil inlet hole and the mounting hole respectively comprise two, between the two oil inlet holes and between the two mounting holes.
  • the lines are parallel to each other.
  • the outer side wall of the atomizing seat is sleeved with a first sealing member, and the first sealing member is elastically abutted to the inner wall of the oil storage assembly, so as to The atomizing core assembly is elastically sealed to the oil storage assembly.
  • the nozzle assembly includes an oil retaining member and a suction nozzle, and one end of the oil retaining member is detachably coupled to the fuel filler opening and elastic with the fuel filler opening The seal is connected, and the nozzle is detachably connected to the other end of the oil retaining member.
  • a smoke passage for discharging the mist atomized by the atomizing core assembly into the nozzle assembly is formed in the oil storage assembly, and the nozzle is inside the nozzle
  • a smoke oil condensation chamber communicating with the smoke passage, wherein the chamber wall of the smoke oil condensation chamber is provided with an air outlet hole, so that the atomized mist of the atomization core assembly flows through the smoke passage to the chamber
  • the pores are described, and the condensed smoke oil can be stored in the smoke oil condensation chamber.
  • annular boss for blocking the smoke oil in the smoke oil condensation chamber is protruded from a periphery of the air outlet toward a side close to the atomizing core assembly.
  • the present invention also provides an electronic cigarette comprising an interconnected battery assembly and an atomizing assembly, the atomizing assembly including a nozzle assembly, an oil storage assembly for storing soot oil, and an activity with the oil storage assembly Connected and used An atomizing core assembly for atomizing the oil in the oil storage assembly, an end surface of one end of the oil storage assembly is formed with a fuel filler port, and the nozzle assembly is detachably connected at the fuel filler port, the oil storage An oil storage chamber is formed in the assembly, the oil storage chamber is disposed at one end of the atomization core assembly with a grease barrier, and the oil barrier plate is provided with an oil guiding hole;
  • one end of the atomizing core assembly is inserted into the oil storage assembly and elastically resists the oil separating plate, and the other end of the atomizing core assembly extends out of the oil storage assembly,
  • One end of the atomizing core assembly inserted into the oil storage assembly is elastically sealed with the oil storage assembly, and the inner wall of the oil storage assembly is provided with a first holding portion, and the outer wall of the atomizing core assembly a second holding portion that is mutually engaged with the first holding portion to prevent the atomizing core assembly from being detached from the oil storage assembly;
  • an end face of the atomization core assembly facing the oil barrier plate is provided with an oil inlet hole for introducing the smoke oil in the oil storage chamber into the atomization core assembly for atomization, and And a marble mechanism for controlling the introduction of the oil in the oil storage chamber into the atomization core assembly, the oil inlet hole corresponding to the position of the oil guiding hole, the atomizing core assembly and the storage
  • the oil assembly is rotatably connected to control whether the marble mechanism is inserted into the oil guiding hole by controlling relative rotation between the oil storage assembly and the atomizing core assembly, thereby controlling the plugging of the oil guiding hole And controlling the oil inlet hole to be turned on or off.
  • the implementation of the atomizing assembly and the electronic cigarette of the present invention has the following beneficial effects:
  • the present application causes the oil storage assembly to rotate relative to the atomizing core assembly, and whether the marble mechanism is inserted or not
  • the oil guiding hole further controls the plugging of the oil guiding hole and controls the oil inlet hole to be turned on or off, thereby avoiding leakage of the oil and better preservation of the oil, and preventing the oil from absorbing the moisture in the air.
  • the problem that causes deterioration, or when adding smoke oil avoids the defect that the smoke oil flows out from the lower end of the atomizing core assembly at atmospheric pressure.
  • the oil storage component is provided with a first limiting portion
  • the atomizing seat is provided with a second limiting portion adapted to limit the rotation amplitude of the atomizing core assembly, which is adapted to the first limiting portion, so that After the atomizing core assembly is rotated relative to the oil storage assembly by a predetermined amplitude, the first limiting portion can restrict the rotation of the atomizing core assembly to turn the oil inlet hole into or off.
  • FIG. 1 is an exploded view of an atomizing assembly provided by one of the preferred embodiments of the present invention
  • FIG. 2 is a schematic structural view of a first angle of the atomizing assembly shown in FIG. 1;
  • FIG. 3 is a schematic structural view of a second angle of the atomizing assembly of FIG. 1; [0027] FIG.
  • Figure 4 is an enlarged view of a portion A of the atomizing assembly shown in Figure 2;
  • FIG. 5 is a schematic structural view of a fastening sleeve of the atomizing assembly shown in FIG. 2;
  • FIG. 6 is a schematic structural view of an atomizing seat of the atomizing assembly shown in FIG. 2;
  • FIG. 7 is a schematic structural view of an atomizing cover of the atomizing assembly shown in FIG. 2;
  • FIG. 8 is a schematic structural view of an atomizing cover of an atomizing assembly according to a second embodiment of the present invention.
  • FIG. 9 is a perspective view of an oil storage assembly and a nozzle assembly of an atomizing assembly according to a second preferred embodiment of the present invention.
  • FIG. 10 is a schematic structural view of an oil storage sleeve and a grease trap of an atomizing assembly according to a second embodiment of the present invention.
  • FIG. 11 is a schematic structural view of an atomizing assembly according to a second embodiment of the present invention.
  • the atomizing assembly includes a nozzle assembly 1, an oil storage assembly 2 for storing soot oil, and an active connection with the oil storage assembly 2 and for atomizing the oil storage assembly.
  • the atomizing core assembly of the smoke oil in 2 is 3.
  • the end surface of the oil storage assembly 2 is formed with a fuel filler port, and the nozzle assembly 1 is detachably connected to the fuel filler port, and an oil storage chamber 24 is formed in the oil storage assembly 2 for storing oil.
  • the oil chamber 25 is disposed at one end of the cavity 24 facing the atomizing core assembly 3, and the oil guiding plate 25 is provided with an oil guiding hole 251.
  • one end of the atomizing core assembly 3 is inserted into the oil storage assembly 2 and elastically resists the oil separating plate 25, and the other end of the atomizing core assembly 3 extends out of the oil storage assembly 2, and the atomizing core assembly 3 is inserted into the oil storage assembly 2 at one end and is elastically sealed with the oil storage assembly 2, and the inner wall of the oil storage assembly 2 is provided with a first holding portion 27, the outer wall of the atomizing core assembly 3 and the first holding portion 27 a second holding portion 36 that is held by each other to prevent the atomizing core assembly 3 from being detached from the oil storage assembly 2.
  • the end surface of the atomizing core assembly 3 facing the oil-repellent plate 25 is provided with an oil inlet hole 323 for introducing the smoke oil in the oil storage chamber 24 into the atomizing core assembly 3 for atomization (as shown in FIG. 8).
  • a marble mechanism 4 for preventing the smoke oil in the oil storage chamber 24 from being introduced into the atomization core assembly 3, the oil inlet hole 323 corresponding to the position of the oil guiding hole 251, the atomizing core
  • the assembly 3 is rotatably coupled to the oil storage assembly 2 to control whether the marble mechanism 4 is inserted into the oil guiding hole 2 by controlling the relative rotation of the oil storage assembly 2 and the atomizing core assembly 3 51. Further controlling the through plugging of the oil guiding hole 251 and controlling the oil inlet hole 323 to be turned on or off.
  • the atomizing core assembly 3 of the embodiment is rotatably connected to the oil storage assembly 2, and the connection between the oil storage assembly 2 and the atomizing core assembly 3 is provided for introducing the smoke oil in the oil storage chamber 24 into the atomization.
  • the marble mechanism 4 is fixed to an end surface of the atomizing core assembly 3 facing the oil separating plate 25, and elastically resists the oil separating plate 25, and the marble mechanism 4 rotates relative to the atomizing core assembly 3 at the oil storage assembly 2.
  • the plugging of the oil guiding hole 251 is controlled by its own elastic expansion and contraction.
  • the oil storage assembly 2 or the atomizing core assembly 3 is rotated, so that the marble mechanism 4 blocks the oil guiding hole 251 to prevent the oil from flowing into the atomizing core assembly 3, Avoid the problem that the smoke oil absorbs the moisture in the air and cause deterioration, or when adding the smoke oil, avoid the defect that the smoke oil flows out from the lower end of the atomization core assembly at atmospheric pressure.
  • the oil storage assembly 2 or the atomizing core assembly 3 is rotated to elastically abut the marble mechanism 4 to the end surface of the oil blocking plate 25, and the oil guiding hole 251 and the oil inlet hole 323 are formed at this time.
  • the oil for the oil in the oil reservoir 24 flows into the smoke passage inside the atomizing core assembly 3 so that the oil can flow into the atomizing core assembly 3 through the oil passage.
  • the utility model solves the problem that the electronic cigarette adopts the oil storage oil storage in the prior art, so that the storage time of the oil oil in the oil storage cavity is long, and the cotton wool in the oil storage cotton is decomposed into the smoke oil, thereby causing deterioration of the smoke oil.
  • the technical problem and the long-term contact between the atomizing core component and the smoke oil in the oil storage cotton cause the oil storage of the atomizing core component to be over-saturated for a long time, thereby causing oil leakage, and realizing the oil storage without using the oil storage cotton, and using the electronic cigarette ( That is, smoking) ⁇ open the smoke oil passage, and when transporting or standing the electronic cigarette (ie, not smoking) Close the smoke oil passage to prevent leakage of smoke oil and prevent the smoke oil from coming into contact with the air to avoid the technical effect of deterioration and deterioration of the smoke oil after it contacts the air.
  • the atomizing core assembly 3 includes an atomizing seat 31, an atomizing cover 32, a heating wire assembly 33, a smoke oil adsorption plate 34, an atomizing electrode assembly 35, a second holding portion 36, and a Second limit portion 37.
  • the atomizing seat 31 is rotatably inserted into one end of the oil storage assembly 2 away from the nozzle assembly 1, and the atomizing cover 32 is sleeved at one end of the atomizing base 31 inserted into the oil storage assembly 2, and atomized
  • the electrode assembly 35 is fixed at one end of the atomizing base 31 away from the nozzle assembly 1 and is electrically connected to the battery assembly.
  • the smoke oil adsorption plate 34 is disposed at one end of the atomizing seat 31 and elastically abuts against the atomizing cover 32, and the heating wire
  • the assembly 33 is placed in the atomization seat 31 and is used to atomize the smoke oil on the soot adsorption plate 34.
  • the atomizing cover 32 includes an atomizing cover main body 321 and a vent pipe 322, and the atomizing cover main body 321 is sleeved outside the one end of the atomizing base 31 inserted into the oil storage assembly 2, and the vent pipe 322 One end is fixed to the atomizing cover main body 321, and the other end extends into the oil storage assembly 2.
  • the mist generated by the electric heating wire assembly 33 is discharged through the venting pipe 322 such as the smoke passage 26 in the oil storage assembly 2.
  • the atomizing cover body 321 is fixed outside the atomizing base 31 by the tensioning fit, so that when the oil storage assembly 2 and the atomizing core assembly 3 are relatively rotated, the atomizing cover 32 and the atomizing seat 31 are - Rotate.
  • the atomizing cover body 321 is provided with an oil inlet hole 323 and a mounting hole 324, and the oil inlet hole 323 and the mounting hole 324 are evenly distributed around the vent pipe 322 on the atomizing cover body 321 .
  • the oil inlet hole 323 is mainly used for introducing the smoke oil in the oil storage chamber 24 into the atomization core assembly 3 for atomization, and the installation hole 324 is mainly used for fixing the marble mechanism 4 .
  • the marble mechanism 4 mainly includes a fixing member 41, a mounting groove 42, an elastic member 43, and a positioning bead 44.
  • the fixing member 41 is detachably connected to the mounting hole 324 by a threaded structure.
  • the mounting groove 42 is disposed on a side of the fixing member 41 facing the oil retaining plate 25.
  • One end of the elastic member 43 is fixed at the bottom wall of the mounting groove 42.
  • the positioning bead 44 is attached to the other end of the elastic member 43 so that the positioning bead 44 is elastically stretchable and coupled in the fixing member 41.
  • the elastic member 43 may be a structure such as a spring or a spring.
  • the oil storage assembly 2 and the atomizing core assembly 3 are relatively rotated, so that the positioning beads 44 elastically seal the oil guiding hole 251, since the positioning beads 44 can elastically expand and contract in the fixing member 41, Therefore, the sealing effect is good.
  • the oil storage assembly 2 and the atomizing core assembly 3 are relatively rotated to elastically abut the positioning beads 44 to the end faces of the oil blocking plate 25.
  • marbles mechanism of the present embodiment 4 not only block the oil, since the positioning ball 44 is elastically retractable within the fixed member 41, but also enhance the feel of the user during rotation. It can be understood that the marble mechanism 4 can also be an elastic sphere made of a non-metallic elastic material, and the structure thereof is not specifically limited.
  • the oil guiding hole 251 includes two, and the two oil guiding holes 251 are spaced apart from each other along the radial direction of the oil blocking plate 25 on the oil separating plate 25.
  • the atomizing cover body 321 is provided with two oil inlet holes 323 and two mounting holes 324, and the connection between the two oil inlet holes 323 and the two mounting holes 324
  • the connecting lines are perpendicular to each other, that is, the two oil inlet holes 323 are spaced apart from each other along the radial direction of the atomizing cover main body 321 , and the two mounting holes 324 are spaced apart from each other along the radial direction of the atomizing cover main body 321 so that two The positioning beads 44 can just block the two oil guiding holes 251.
  • the oil guiding area of the oil inlet hole 323 can be increased, and the oil guiding area of the oil inlet hole 323 is larger than the oil guiding oil.
  • the oil inlet hole 323 has a circular arc shape in cross section.
  • the atomizing base 31 is substantially a hollow cylindrical structure, and an atomizing chamber (not labeled) is formed inside, and the atomizing seat 31 is rotatably inserted into the oil storage assembly 2 And one end of the atomizing seat 31 inserted into the oil storage assembly 2 is elastically sealed with the inner wall of the oil storage assembly 2, and the atomizing cover 32 is fixed outside one end of the atomizing seat 31.
  • the first sealing member 311 (shown in FIG. 3) is fixed on the outer sidewall of the atomizing seat 31, and the first sealing member 311 is elastically abutted against the inner wall of the oil storage assembly 2 to avoid smoke oil. Leakage is made from the junction of the atomizing seat 31 and the oil storage assembly 2.
  • one end of the atomizing seat 31 adjacent to the suction nozzle 11 is provided with two relatively spaced mounting slots 312, and the heating wire assembly 33 is disposed in the two mounting slots 312.
  • the outer side wall of the atomizing seat 31 is provided with a second holding portion 36 (shown in FIG. 4) for preventing the atomizing seat 31 from being detached from the oil storage assembly 2, on the inner wall of the oil storage assembly 2
  • a first holding portion 27 corresponding to the second holding portion 36 is provided, and the second holding portion 36 is rotatably embedded in the first holding portion 27.
  • the second holding portion 36 is a blocking ring fixed on the outer side wall of the atomizing seat 31, and the first holding portion 27 is a card slot provided on the inner wall of the oil storage assembly 2.
  • the oil storage component 2 is provided with a first limiting portion 28 (shown in FIG. 5), and is disposed on the atomizing base 31.
  • a second limiting portion 37 adapted to limit the amplitude of rotation of the atomizing core assembly 3 to be adapted to the first limiting portion 28, such that when the atomizing core assembly 3 is rotated relative to the oil storage assembly 2 by a predetermined amplitude,
  • the first limiting portion 28 can restrict the rotation of the atomizing core assembly 3 to turn the oil inlet hole 323 on or off.
  • the first limiting portion 28 is a first limiting post disposed on an end surface of the oil storage assembly 2 and extending along a longitudinal direction of the oil storage assembly 2, and the second limiting portion 37 is facing the first limiting column.
  • the arcuate slot is defined by the slot on the atomizing base 31, and the first limiting post is movably inserted in the slot.
  • the smoke oil adsorption plate 34 is substantially a disk-like structure made of an oil absorbing material, and the smoke oil adsorption plate 34 is disposed at one end of the atomization seat 31, and is elastic with the atomization cover 32.
  • the abutment is such that the oil that is conducted through the oil inlet 323 in the oil storage chamber 24 can penetrate into the oil adsorbing plate 34.
  • the oil absorbing material may be a sponge or a fiber, and the material thereof is not specifically limited.
  • the smoke oil adsorption plate 34 is provided with a central hole (not labeled) communicating with the vent tube 322, and the smoke generated by the atomization of the heating wire assembly 33 passes through the central hole and the vent tube 322. It is discharged from the smoke passage 26 of the oil storage assembly 2 into the nozzle assembly 1.
  • the smoke oil adsorption plate 34 not only functions to temporarily store the smoke oil, so that the smoke oil in the oil storage chamber 24 penetrates into the heating wire assembly 33 through the smoke oil adsorption plate 34.
  • the smoke oil adsorption plate 34 can also act as a buffering smoke oil to prevent the smoke oil on the heating wire assembly 33 from being sucked out due to oversaturation and being sucked by the user.
  • the smoke oil adsorbed in the heating wire assembly 33 can be more uniform, and the atomization effect is more uniform. Good, thus improving the user experience.
  • the oil stored in the oil adsorption plate 34 can also make the heating wire assembly 33 work normally for a period of time, so that the heating wire assembly 33 does not quickly burn. The phenomenon.
  • the heating wire assembly 33 is placed in an atomization chamber, which includes an oil guiding rope 331 and a heating wire 332.
  • the oil guiding wire 331 is made of an oil absorbing material and is erected in the mounting groove 312.
  • the two ends of the oil guiding wire 331 are respectively bent and extended to abut the oil adsorption plate 34, and the heating wire 332 is wound around the oil guiding wire 331. Both ends of the heating wire 332 are electrically connected to the atomizing electrode assembly 35, respectively.
  • the atomizing electrode assembly 35 is connected to one end of the atomizing base 31 away from the nozzle assembly 1, and is used for The battery pack is electrically connected.
  • the atomizing electrode assembly 35 includes an inner electrode 351, an insulator 352, and an outer electrode.
  • the atomizing base 31 is made of a conductive material and serves as the outer electrode. Both ends of the heating wire 332 are electrically connected to the atomizing base 31 and the inner electrode 351, respectively, thereby achieving electrical connection with the battery assembly.
  • the atomizing electrode assembly 35 can also be two electrodes arranged side by side and separated from each other, and two ends of the heating wire 332 are electrically connected to the two electrodes arranged in parallel. Therefore, the structure is not specifically limited as long as it can transmit electric energy.
  • the inner electrode 351 is provided with a vent hole (not labeled) communicating with the atomization chamber, and the airflow from the battery assembly passes through the vent hole into the atomization chamber.
  • the arrows in Figure 4 show the direction of flow of the airflow inside the atomizing assembly.
  • the atomizing core assembly 3 includes an atomizing seat 31, an atomizing cover 32, a heating wire assembly 33, a smoke oil adsorption plate 34, an atomizing electrode assembly 35, a second holding portion 36, and a second Limiting portion 37. It is to be understood that the atomizing core assembly 3 of the present application is not limited to the above structure, and may be other structures as long as it can atomize the smoke.
  • the oil storage assembly 2 includes an oil storage jacket 21, a fastening sleeve 22, a connecting ring 23, an oil storage chamber 24, a grease trap 25, a smoke passage 26, a first retaining portion 27, and a first A limit portion 28.
  • the fastening sleeve 22 and the connecting ring 23 are respectively connected to the two ends of the oil storage sleeve 21, and the oil storage sleeve 21 is internally formed with an oil storage chamber 24 and a smoke passage 26 which are separated from each other, and the two ends of the smoke passage 26 are respectively In communication with the atomizing core assembly 3 and the nozzle assembly 1, the oil reservoir 24 is evenly distributed around the smoke passage 26, and the oil barrier 25 is disposed at one end of the oil reservoir 24 toward the atomizing core assembly 3.
  • the oil storage jacket 21 has a substantially cylindrical structure.
  • the oil storage jacket 21 is made of a material that can transmit light.
  • the end of the oil storage sleeve 21 away from the battery assembly is provided with a connecting ring 23, and the nozzle assembly 1 is detachably connected to the connecting ring 23.
  • the oil storage sleeve 21 and the connecting ring 23 may also be an integrally formed structure, which is not specifically limited herein.
  • the fastening sleeve 22 is connected to one end of the oil storage sleeve 21 near the battery assembly, and the first between the fastening sleeve 22 and the oil storage sleeve 21 is arranged to prevent the atomization core assembly 3 from being detached from the oil storage assembly 2 A holding portion 27.
  • the first holding portion 27 is a card slot structure
  • the second holding portion 36 on the outer side wall of the atomizing base 31 is rotatably embedded in the In the card slot
  • the second latching portion 36 is a blocking ring.
  • the fastening sleeve 22 is sleeved on the outer side wall of the atomization seat 31, and then the second holding portion 36 is sleeved on the outer side wall of the atomization seat 31, and finally the oil storage sleeve 21 is inserted.
  • the atomizing core assembly 3 is prevented from falling out of the oil storage jacket 21.
  • the first limiting portion 28 is a first limiting post disposed on the end surface of the fastening sleeve 22 and extending along the longitudinal direction of the oil storage assembly 2, and the atomizing seat 31 is provided with the first limiting portion a limiting portion 28 is adapted to limit the rotation limit of the atomizing core assembly 3, and the second limiting portion is an arc-shaped slot, so that when the atomizing core assembly 3 is opposite After the oil storage assembly 2 is rotated by the preset amplitude, the first limiting portion 28 can restrict the rotation of the atomizing core assembly 3 to turn the oil inlet hole 323 on or off.
  • the oil barrier 25 is disposed at one end of the oil reservoir 24 facing the atomizing core assembly 3.
  • the oil barrier 25 is spaced apart from two oil guiding holes 251 disposed along the radial direction thereof, and the oil reservoir 24 is disposed.
  • the smoke oil flows into the atomizing core assembly 3 through the oil guiding hole 251.
  • the smoke passages 26 are distributed in the oil storage jacket 21 along the longitudinal direction of the atomizing assembly, and the two ends of the smoke passage 26 are respectively communicated with the atomizing core assembly 3 and the nozzle assembly 1, and the smoke generated by the atomizing of the electric heating wire assembly 33 From the smoke passage 26, it is discharged into the nozzle assembly 1.
  • the vent tube 322 extends into the smoke passage 26 and is rotatably coupled to the smoke passage.
  • the nozzle assembly 1 includes a suction nozzle 11, an oil retaining member 12, a second sealing member 13, and a third sealing member 14, and the smoke passage 26 communicates with the suction nozzle 11 through the oil retaining member 12. .
  • One end of the oil retaining member 12 is detachably connected to the connecting ring 23 by a threaded structure, and the other end of the oil retaining member 12 is detachably connected to the suction nozzle 11 by a screw structure.
  • a second sealing member 13 is fixed on the outer side wall of the blocking member 12, and the second sealing member 13 is elastically abutted to The inner wall of the oil storage jacket 21 .
  • a third sealing member 14 is disposed between the oil retaining member 12 and the smoke passage 26, and the third sealing member 14 is elastically abutted respectively. It goes to the oil retaining member 12 and the smoke passage 26.
  • the oil retaining member 12 can also be connected to the suction nozzle 11 and the connecting ring 23 by using other detachable connecting structures, and other connecting structures can be disposed on the oil retaining member 12.
  • other connecting structures can be disposed on the oil retaining member 12.
  • an elastic engagement elastic piece or the like is used in the snap connection.
  • only the screw connection is described as an example, and the connection is not limited to the screw connection.
  • the suction nozzle 11 is detachably connected to one end of the oil retaining member 12, and a smoke is formed between the suction nozzle 11 and the oil retaining member 12.
  • the smoke passage condensing chamber 110 communicated with the mist passage 26, the smoky liquid condensed on the smoke passage 26 during the smoking flows along the airflow and is stored in the smog condensation chamber 110 in the suction nozzle 11, due to the suction nozzle 11 and the oil retaining member 12
  • the detachable connection allows the user to remove the suction nozzle 11 to clean the smoke liquid remaining in the smoke oil condensation chamber 110, preventing the user from smoking the smoke liquid when smoking.
  • the air outlet hole 111 is provided at the cavity wall of the smoke oil condensation chamber 110 to facilitate the user to suck, and the smoke generated by the atomization of the atomization core assembly 3 flows through the smoke passage 26 to the air outlet 111, the condensed smoke The oil is stored in the smoke oil condensation chamber 110.
  • the peripheral edge of the air outlet 111 protrudes from the side close to the atomizing core assembly 3 with an annular boss 112 for blocking the smoke oil in the oil condensing chamber 110 to prevent the user from smoking the oil.
  • FIG. 9, FIG. 10 and FIG. 11 illustrate an atomizing assembly provided by the second preferred embodiment of the present invention, which differs from the embodiment mainly in the atomizing core assembly 3.
  • the structure is different, and there is no limiting portion for limiting the rotation amplitude of the atomizing core assembly 3 in this embodiment, and the atomizing core assembly 3 and the oil storage assembly 2 can be rotated by an arbitrary width.
  • the atomizing core assembly 3 includes an atomizing seat 31, an atomizing cover 32, a heating wire assembly 33, a smoke adsorbing plate 34, an atomizing electrode assembly 35, and a second holding portion 36.
  • the atomizing base 31 is rotatably inserted into one end of the oil storage assembly 2 away from the nozzle assembly 1, and one end of the atomizing base 31 inserted in the oil storage assembly 2 is elastically sealed with the oil storage assembly 2
  • the atomizing cover 32 is sleeved at one end of the atomizing base 31 and inserted into the oil storage assembly 2, and the atomizing electrode assembly 35 is fixed at one end of the atomizing seat 31 away from the nozzle assembly 1 and is used for electrically connecting with the battery assembly, the smoke oil
  • the adsorption plate 34 is disposed at one end of the atomization seat 31 and elastically abuts against the atomization cover 32.
  • the heating wire assembly 33 is disposed in the atomization seat 31 and is used for atomizing the smoke oil on the smoke oil adsorption plate 34.
  • the atomizing cover 32 includes an atomizing cover main body 321 and a vent pipe 322, and the atomizing cover main body 321 is sleeved outside the one end of the atomizing base 31 inserted into the oil storage assembly 2, and the vent pipe 322 One end is fixed to the atomizing cover main body 321, and the other end is extended to the oil storage assembly 2.
  • the atomizing cover body 321 is provided with an oil inlet hole 323 and a mounting hole 324, and the oil inlet hole 323 and the mounting hole 324 are evenly distributed around the vent pipe 322 on the atomizing cover body 321 .
  • the atomizing cover main body 321 is provided with two oil inlet holes 323 and two mounting holes 324, and the connection between the two oil inlet holes 323 and the connection between the two mounting holes 324.
  • the lines are parallel to each other.
  • two oil guiding holes 251 and two limiting slots 252 are respectively disposed on the oil blocking plate 25 at positions corresponding to the oil inlet hole 323 and the mounting hole 324.
  • two limiting slots 252 are defined at one end of the oil blocking plate 25 facing the atomizing core assembly 3, and the limiting slot 252 is not connected to the oil reservoir 24, and two limits are provided.
  • the line between the grooves 252 and the line between the two oil guiding holes 251 are parallel to each other.
  • the two positioning beads 44 are just elastically abutted in the two limiting slots 252, and the two oil guiding holes 251 on the oil separating plate 25 are respectively
  • the two oil inlet holes 323 are electrically connected, and the oil in the oil storage chamber 24 can flow out from the two oil guiding holes 251.
  • the amount of the lubricating oil continuously continues to rotate the oil storage assembly 2 or the atomizing core assembly 3 by 90. °
  • one of the two positioning beads 44 blocks the other one of the two oil guiding holes 251, and one of the two positioning beads 44 abuts to the two limits.
  • the other of the two slots 252 is such that the soot can only flow out of one of the two oil guiding holes 251. Therefore, by rotating the oil storage assembly 2 or the atomizing core assembly 3, it is possible to control the degree of oil intake of the oil inlet hole 323 or to close the oil inlet hole 323 to meet the different needs of the user.
  • the present application further provides an electronic cigarette including an interconnected battery assembly (not shown) and an atomizing assembly, wherein the battery assembly is prior art, and the atomizing assembly is the above The atomizing component described is not described here.
  • the present application utilizes the oil storage assembly to rotate relative to the atomizing core assembly, and controls whether the marble mechanism is inserted into the oil guiding hole, thereby controlling the plugging of the oil guiding hole and controlling the advancement.
  • the oil hole is turned on or off to avoid leakage of smoke oil and better preservation of the oil, and to avoid the problem of deterioration caused by the absorption of moisture in the air by the smoke oil, or to avoid the action of the smoke oil at atmospheric pressure when adding the smoke oil. Defects flowing from the lower end of the atomizing core assembly.
  • the smoke oil adsorption plate not only functions to temporarily store the smoke oil, so that the smoke oil in the oil storage chamber penetrates into the electric heating wire assembly through the smoke oil adsorption plate. At the same time, the smoke oil adsorption plate can also act as a buffering of the smoke oil, and is prevented from being sucked by the user when the smoke oil on the electric wire assembly is exuded due to supersaturation.
  • the oil storage component is provided with a first limiting portion
  • the atomizing seat is provided with a second limiting portion adapted to limit the rotation amplitude of the atomizing core assembly, which is matched with the first limiting portion
  • the first limiting portion can restrict the rotation of the atomizing core assembly to turn the oil inlet hole into or off.

Abstract

L'invention concerne un élément d'atomisation et une cigarette électronique. L'élément d'atomisation comprend un élément d'embout (1), un élément de stockage de liquide à vapoter (2) utilisé pour stocker un liquide à vapoter et un élément central d'atomisation (3) raccordé de manière mobile à l'élément de stockage de liquide à vapoter (2) et utilisé pour atomiser le liquide à vapoter dans l'élément de stockage de liquide à vapoter (2). Une ouverture de remplissage de liquide à vapoter est formée sur une surface d'extrémité d'une extrémité de l'élément de stockage de liquide à vapoter (2). L'élément d'embout (1) est raccordé de manière amovible au niveau de l'ouverture de remplissage de liquide à vapoter. Une cavité de stockage de liquide à vapoter (24) est formée à l'intérieur de l'élément de stockage de liquide à vapoter (2). Une plaque de séparation de liquide à vapoter (25) est disposée au niveau d'une extrémité de la cavité de stockage de liquide à vapoter (24) faisant face à l'élément central d'atomisation (3). Un trou de guidage de liquide à vapoter (251) est agencé sur la plaque de séparation de liquide à vapoter (25). L'élément d'atomisation permet à l'élément de stockage de liquide à vapoter (2) de tourner par rapport à l'élément central d'atomisation (3) et commande l'ouverture/la fermeture du trou de guidage de liquide à vapoter (251) au moyen de l'extension/de la rétractation flexible d'un mécanisme de bille (4), ce qui permet de commander l'ouverture ou la fermeture d'un trou d'entrée de liquide à vapoter (323) et d'empêcher la fuite du liquide à vapoter et d'améliorer la conservation du liquide à vapoter.
PCT/CN2015/074377 2015-03-17 2015-03-17 Élément d'atomisation et cigarette électronique WO2016145613A1 (fr)

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CN201580077917.4A CN107427070A (zh) 2015-03-17 2015-03-17 一种雾化组件及电子烟

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USD836541S1 (en) 2016-06-23 2018-12-25 Pax Labs, Inc. Charging device
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CN110122935A (zh) * 2019-06-25 2019-08-16 深圳市沃格斯特科技有限公司 储油雾化器及电子烟
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