WO2017107546A1 - 电子烟雾化装置 - Google Patents

电子烟雾化装置 Download PDF

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Publication number
WO2017107546A1
WO2017107546A1 PCT/CN2016/097435 CN2016097435W WO2017107546A1 WO 2017107546 A1 WO2017107546 A1 WO 2017107546A1 CN 2016097435 W CN2016097435 W CN 2016097435W WO 2017107546 A1 WO2017107546 A1 WO 2017107546A1
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WO
WIPO (PCT)
Prior art keywords
tube
wall
electrode
cover
atomizing
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PCT/CN2016/097435
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English (en)
French (fr)
Inventor
林光榕
郑贤彬
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林光榕
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Application filed by 林光榕 filed Critical 林光榕
Publication of WO2017107546A1 publication Critical patent/WO2017107546A1/zh

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Classifications

    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F40/00Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
    • A24F40/40Constructional details, e.g. connection of cartridges and battery parts
    • A24F40/42Cartridges or containers for inhalable precursors
    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F40/00Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
    • A24F40/10Devices using liquid inhalable precursors

Definitions

  • the present invention relates to the field of electronic cigarette technology, and more particularly to an electronic aerosolization device.
  • the existing electronic aerosolization device generally has a liquid guiding core and a heating wire, and the liquid guiding core conducts the liquid smoke in the electronic cigarette liquid storage device to the combined portion of the liquid guiding core and the heating wire, and is energized in the heating wire. After the heat is generated, the heat of the heating wire can atomize the electronic cigarette liquid into smoke.
  • the existing electronic aerosolization device in order to avoid liquid leakage, is complicated in structure, so that it is inconvenient to process and assemble, and requires a large labor cost.
  • the liquid guiding core is often restrained by other fittings such as a pipe wall, and it is difficult to smoothly absorb and conduct the electronic soot liquid to the heating wire from the liquid storage device.
  • the atomization unit composed of the liquid guiding core and the heating wire in the atomization chamber is not firmly fixed, and the atomization unit is loose or loose, which may cause atomization failure, and the lead portion of the heating wire is easily exposed. Short circuit problem. technical problem
  • An object of the present invention is to provide an electronic aerosolization device that overcomes the deficiencies of the prior art described above, and has an easy structure, is easy to assemble in production, and can smoothly conduct smoke liquid, and the atomization seat is firmly fixed.
  • the liquid core helps the good atomization of the liquid.
  • the electronic aerosolization device comprises an electrode connecting seat, an electrode tube, an atomizing seat, an atomizing tube, an atomizing tube cover, a liquid guiding core, a heating wire, and the special
  • the electrode connecting seat is a multi-stage stepped tube that sequentially reduces the inner and outer diameters, and the atomizing seat is provided with a venting hole, the electric
  • the lower end of the pole tube is sleeved on the outer wall of the electrode connecting seat, and the upper end is inserted into the vent hole.
  • the upper end of the atomizing tube is sleeved to the outer wall of the atomizing seat and the lower end is sleeved.
  • the atomizing tube cover comprises a tubular cover wall and a cover bottom provided with a venting hole 2, the cover wall is sleeved on the outer wall of the upper end of the atomizing tube and seals the notch Only the lead liquid core passes through.
  • the atomization seat is a cylinder
  • the vent hole is axially disposed at a center of the cylinder
  • the upper end surface of the cylinder is radially provided with a groove 1 and two of the groove
  • the side of the liquid-guiding core is erected on the boss, and the through-hole is further disposed downwardly on the boss, and the through-hole is provided for the lead wire to pass through.
  • the boss is recessed downward on both side portions of the liquid guiding core to reduce the area of the boss.
  • the cover wall of the atomization tube cover is provided with a symmetric inverted U-shaped notch 2, the atomization tube cover covers the atomization tube, and the notch 2 is perpendicular to the gap Align and tightly snap to form a round hole for the liquid core to pass through.
  • the atomization tube is further provided with a support tube, the lower end portion of the support tube is sleeved on the outer wall of the second step tube of the electrode connection seat, and the inner wall of the upper end portion is sleeved with the atomization tube cover and the outer wall is sleeved a tubular support tube cover, wherein the support tube is provided with a symmetrical elongated window on the wall of the liquid guide core, the support tube cover comprises a cover wall and a cover bottom, and the support tube cover bottom is provided Vent hole three.
  • the bottom portion of the bottom of the support tube cover has a truncated cone shape, and the vent hole is disposed on the upper surface of the truncated cone.
  • the support tube cover wall is provided with a symmetric inverted U-shaped notch 3, the support tube cover sleeves the upper end outer wall of the support tube, the notch three U-shaped bottom and the support tube The upper part of the long strip window is aligned and aligned.
  • the outer wall of the electrode tube is stepped to reduce the outer diameter, wherein the outer diameter of the largest tube wall is disposed inside the electrode connecting seat, and the outer diameter of the smallest tube wall is inserted into the vent hole.
  • the insulating sleeve is disposed between the second largest tube wall of the outer diameter of the electrode tube and the smallest inner wall of the electrode connecting sleeve, and the lower end surface of the electrode tube
  • a groove 2 is disposed in the upper radial direction to communicate with the through hole of the electrode tube.
  • the wall of the middle portion of the electrode connecting seat is provided with a venting hole in a radial direction.
  • the electrode connection seat is provided with at least three stages of step tubes, wherein the third stage step tube is used for socketing the liquid storage tube.
  • the invention has simple structure, is easy to assemble in production, improves efficiency, and saves labor cost; the structure of the electronic aerosolizing device prevents the liquid smoke from directly leaking into the atomizing chamber, so that the liquid guiding core has The length is freely stretched in the liquid storage chamber to fully absorb the conductive electronic cigarette liquid, and the boss design of the atomizing seat also helps the electronic cigarette liquid to be sufficiently atomized into the electronic cigarette smoke in the atomizing chamber;
  • the boss of the seat is provided with a through-hole to completely enclose the bow wire of the heating wire, thereby avoiding a short circuit between the two leads and the connection between the lead and the electrode connected to the other wire.
  • FIG. 1 is a cross-sectional view showing a first embodiment of the present invention
  • FIG. 2 is a structural view of an electrode connector according to an embodiment of the present invention.
  • FIG. 3 is a structural view of an electrode tube according to an embodiment of the present invention.
  • FIG. 4 is a structural view of an insulating sleeve according to an embodiment of the present invention.
  • FIG. 5 is a structural view of an atomizing seat according to a first embodiment of the present invention.
  • FIG. 6 is a structural view of an atomizing tube according to an embodiment of the present invention.
  • FIG. 7 is a structural view of a spray tube cover according to a first embodiment of the present invention.
  • FIG. 8 is a structural view of a liquid guiding core and an electric heating wire according to an embodiment of the present invention.
  • Figure 9 is a cross-sectional view showing a second embodiment of the present invention.
  • FIG. 10 is a structural view of a spray base according to a second embodiment of the present invention.
  • FIG. 11 is a structural view of a spray tube cover according to a second embodiment of the present invention.
  • FIG. 12 is a structural view of a support tube according to a second embodiment of the present invention.
  • FIG. 13 is a structural view of a support tube cover according to a second embodiment of the present invention.
  • 14 is a structural view of a connecting sleeve according to a second embodiment of the present invention
  • 15 is a structural view of a support tube according to a third embodiment of the present invention
  • FIG. 16 is a structural view of a support tube cover according to a third embodiment of the present invention.
  • 1-electrode connecting seat 10-connecting sleeve; 101-connecting sleeve convex ring; 11-stepped tube; 12-minimum inner wall; 1 3-first step tube; 14-second step tube; Third step tube; 16-ventilating hole; 2-electrode tube; 20-insulating sleeve; 201-tubular body; 202-shoulder; 21-outer diameter largest tube wall; 22-outer diameter second large tube wall; - outer diameter minimum tube wall; 24-electrode tube through hole; 25-groove two; 3- atomizing seat; 31-venting hole one; 32-cylinder; 33-landing; 34-through hole; Groove one; 4-atomization tube; 41-upper end of atomization tube; 42-lower end of atomization tube; 43-notch one; 44-atomization chamber; 5-atomization tube cover; 51-atomization tube cover wall 52-Atomization tube cover bottom; 5 3, vent 2; 54-notch 2; 6-conducting core; 7, electric heating wire;
  • 1 to 8 show a first embodiment of the present invention.
  • an electronic aerosolization device in the first embodiment of the present invention, includes an electrode connector 1, an electrode tube 2, an atomization seat 3, an atomization tube 4, an atomization tube cover 5, and a guide.
  • the liquid core 6, the heating wire 7, the electrode connecting seat 1 is provided with a multi-stage stepped tube 11 which sequentially reduces the inner and outer diameters in order, the top has a small inner diameter wall 12, and the center of the atomizing seat 3 is provided with a vent hole 31 which is vertically penetrated.
  • the lower end of the electrode tube 2 is sleeved with an insulating sleeve 20 and then inserted into the smallest inner wall 12 of the electrode connecting seat 1.
  • the upper end of the electrode tube 2 is inserted into the vent hole 31 provided in the atomizing seat 3, and is atomized.
  • the tube 4 is sleeved outside the electrode tube 2, the upper end 41 of the tube is sleeved to the outer wall of the atomizing base 3, and the lower end 42 is sleeved to the first step tube 13 of the electrode connecting seat 1 (the top step is the top and the smallest step tube at the top)
  • the upper end wall 41 of the atomizing tube 4 is symmetrically provided with two U-shaped notches 43, and the bottom of the notch 43 is flush with the upper end surface of the atomizing seat 3, and the heating wire 7 is wound around the middle portion of the liquid guiding core 6, and is provided with lead wires 71 at both ends thereof, and is respectively connected to the electrode connecting seat 1 and the electrode tube 2, and the middle portion of the liquid guiding core 6
  • the upper end surface of the atomizing seat 3 is disposed from the two U-shaped notches 43 and is axially
  • the atomizing tube cover 5 has a cylindrical shape including a tubular shape. a cover wall 51 and a cover bottom 52 provided with a venting hole 53, wherein the cover wall 51 is sleeved
  • the outer wall of the upper end 41 of the atomizing tube and the U-shaped notch-43 are sealed only to allow the liquid guiding core 6 to pass through.
  • the electrode connector 1 is made of a metal material, and is used as a connector to conduct electricity as a conductor, and in the present embodiment, serves as an electrode for connecting a negative electrode of a power source.
  • the electrode connector 1 of the present embodiment is provided with an internal thread 17 so as to be connectable to the battery rod of the electronic cigarette.
  • the electrode tube 2 is also made of a metal material, and the electrode tube through hole 24 which is used as a conductor is also used as a passage for the intake of the electronic cigarette. In this embodiment, it is used as an electrode for connecting the positive electrode of the power source.
  • the insulating sleeve 20 is used to insulate the electrode connector 1 from the electrode tube 2 to prevent a short circuit between the positive and negative terminals of the power source.
  • the insulating sleeve 20 is made of an insulating material and includes a tubular body 201 and a shoulder 202 which is radially convex at one end.
  • the atomizing tube 4 of the embodiment is provided with two U-shaped notches-43 which are symmetric, not only for allowing the liquid guiding core 6 to pass through but also for erecting and fixing liquid guiding.
  • the function of the core 6 can be placed horizontally along the notch-43 into the liquid-conducting core 6 to facilitate assembly in production.
  • the inside of the U-shaped notch-43 portion of the atomizing tube 4, that is, the atomizing tube 4, the atomizing seat 3, and the atomizing tube cover 5 constitute a cavity, that is, an atomizing chamber 44, in which the atomizing chamber
  • the liquid guiding core can conduct the electronic cigarette liquid in the external liquid storage chamber (not shown) of the atomizing tube 4 to the portion where the heating wire 7 is combined with the heating wire 7, and the air sucked by the user also flows through the air.
  • the heating wire 7 after the electric heating wire 7 is energized, the liquid smoke is heated and atomized into smoke, and the air is discharged through the vent hole 53 of the atomizing chamber 44.
  • the atomization chamber 44 because the cover wall 51 of the atomization tube cover 5 is tightly sleeved on the outer wall of the upper end 41 of the atomization tube and seals the U-shaped notch-43, only the liquid guiding core 6 is left, so the outside of the atomizing tube 4 The liquid in the reservoir does not leak directly into the atomization chamber 44.
  • the left and right sections of the liquid guiding core 6 respectively protrude from the two U-shaped notches 43 and are axially attached to the outer wall of the atomizing tube 4, so that the liquid guiding core 6 has a sufficient length to be unrestrainedly stretched in the liquid smoke In order to fully absorb and conduct the electronic soot liquid to the heating wire 7 to ensure a good atomization effect in the atomizing chamber 44.
  • the outer wall of the electrode tube 2 is sequentially stepped down to reduce the outer diameter, wherein the outer diameter of the largest tube wall 21 is disposed inside the electrode connecting seat 1, and the outer diameter of the smallest tube wall 23 is sleeved in the mist.
  • the insulating sleeve 20 is sleeved between the second largest wall 22 of the outer diameter of the electrode tube 2 and the smallest inner wall 12 of the electrode connecting seat, and the radial end surface of the lower end of the electrode tube 2
  • the groove 2 is provided with the electrode tube through hole 24, and the groove 2 is used to connect the end surface of the electrode tube 2 with the positive electrode of the electronic cigarette battery rod (not shown) to avoid the electrode tube 2
  • the end surface is in planar contact with the positive end surface of the battery rod to block the electrode tube through hole 24, so as to prevent air from flowing into the atomization chamber 44.
  • a plurality of ventilation holes 16 are radially disposed on a wall of the middle portion of the electrode connector 1, and the plurality of ventilation holes 16 are provided, so that the outside air of the electronic cigarette can be directly from the ventilation hole 16
  • the inner cavity flowing into the electrode connector 1 flows into the electrode tube through hole 24 to prevent air from flowing through the inside of the battery rod, thereby preventing the electronic cigarette battery from being damp.
  • a cigarette holder (not shown) of the electronic cigarette in a smoking operation, generates a negative pressure due to smoking, and the outside air is sucked, sequentially passing through the ventilation hole 16,
  • the inner cavity of the electrode connecting seat, the groove 2 of the electrode tube, the through hole 24 of the electrode tube, the vent hole 31 of the atomizing seat enter the atomizing chamber 44, and the liquid smoke of the junction between the liquid guiding core 6 and the heating wire 7 is heated.
  • the electrode connecting base 1 is provided with a five-stage stepped tube, wherein the third stepped tube outer wall 15 is sleeved with a liquid storage tube (not shown), and the inner wall of the liquid storage tube and the atomizing tube 4
  • the cavity between the outer walls forms a liquid storage chamber (not shown), and a two-stage step tube can be used for the outer tube, the decorative tube and the like.
  • the main body of the atomizing base 3 is a cylinder 32, and the vent hole 31 is axially disposed at the center of the cylindrical body 32, and the upper end surface of the cylindrical body 32 is radial.
  • a groove 35 is provided, and two sides of the groove 35 form a symmetrical boss 33.
  • the middle portion of the liquid guiding core 6 is mounted on the boss 33, and the through hole 34 is further disposed downwardly on the boss 33.
  • the wire hole 34 is for the lead wire 71 to pass through.
  • the through hole 34 is disposed downward from the boss 33 so that the lead 71 can be completely fitted in the atomizing seat 3, avoiding a short circuit between the two leads 71 and between the lead and the electrode connected to the other lead.
  • the boss 33 and the lead wire 71 can erect and fix the middle portion of the liquid guiding core around which the heating wire portion is wound, because the lead wire 71 has a pulling action.
  • the atomizing seat 3 is simultaneously sheathed by both the electrode tube 2 and the atomizing tube 4, and functions to connect and fix the gap between the two.
  • the venting hole 31 is provided in the atomizing seat 3.
  • the air for guiding the electrode tube through holes 24 is continuously introduced to the heating wire 7.
  • the boss 33 of the atomizing seat 3 adopts another shape, and the boss 33 is recessed downward on both side portions of the liquid guiding core 6 to make the area of the boss 33
  • the upper portion of the atomization base 3 is only projected at the middle portion of the liquid guiding core 6 and laterally protruded into two bosses 33 on the left and right sides of the vent hole 31, so that the area of the boss 33 is Smaller, the volume of the chamber of the atomization chamber 44 is larger, which contributes to better atomization of the liquid.
  • the cover wall 51 of the atomization tube cover 5 is further provided with a symmetrical inverted U-shaped notch 54 and the atomization tube cover 5 covers the atomization tube 4, which is inverted.
  • the glyph gap 54 is vertically aligned with the U-shaped notch 43 of the atomizing tube 4 and tightly engaged to form a circular hole only for the liquid guiding core 6 to pass through.
  • Such a structure contributes to better storage of the liquid reservoir and the mist.
  • the chemical chamber 44 is isolated to prevent the leakage of the liquid from the liquid storage chamber into the atomization chamber 44, resulting in poor atomization and other use failures.
  • a support tube 8 is further disposed outside the atomization tube 4.
  • the lower end portion 81 of the support tube 8 is sleeved on the outer wall and the upper end of the second step tube 14 of the electrode connector 1.
  • the outer wall of the inner wall of the portion 82 of the portion 82 is sleeved with a cylindrical support tube cover 9, and the support tube 8 is provided with two symmetrical walls corresponding to the left and right positions of the liquid guiding core 6.
  • the elongated window 83, the support tube cover 9 includes a cover wall 91 and a cover bottom 92, and the support cover cover bottom 92 is provided with a vent hole 93.
  • the electrode connecting base 1 is also sleeved with a soft connecting sleeve 10, and the outer wall of the connecting sleeve 10 is provided with an annular connecting sleeve protruding ring 101, which is designed to better seal the electrode.
  • the outer wall of the third stepped pipe 15 of the connecting seat is connected with the liquid storage pipe (not shown) to prevent the smoke liquid from leaking outward from the liquid storage chamber.
  • the structure of the support tube 8 and the support tube cover 9 is arranged to support the fixed atomization tube and the atomization tube cover, and the atomization chamber 44 is protected from deformation, thereby ensuring good atomization effect of the smoke liquid.
  • the support tube 8 is provided with two symmetrical two elongated windows 83 on the wall of the two positions corresponding to the liquid guiding core 6, and the window 83 is designed to avoid the wall of the supporting tube 8.
  • the extrusion and restraint of the liquid guiding core 6 enables the liquid guiding core 6 to be fully absorbed from the liquid storage chamber to the joint portion with the heating wire 7 without being restrained and freely stretched after being equipped with the supporting tube 8. Thereby ensuring a good atomization effect.
  • the wall of the two sides of the elongated window 83 of the support tube 8 is further provided with a liquid guiding hole 84, which further ensures that the liquid can enter the supporting tube 8 and the liquid guiding body.
  • the core 6 is in full contact.
  • the middle portion of the cover bottom 92 of the support tube cover 9 is a truncated cone 94, and the vent hole 93 is provided on the upper plane of the truncated cone 94.
  • the shape of the truncated cone 94 can be matched with the shape of the cigarette holder of the electronic cigarette (not shown), so as to achieve a good sealing effect between the inner wall of the cigarette holder and the outer wall of the supporting tube cover, so as to ensure that the user can fully utilize the small suction force after smoking. Generate enough airflow to suck out the e-cigarette smoke. [0057] As shown in FIGS.
  • the support tube cover wall 91 is provided with a symmetrical inverted U-shaped notch 35, and the support tube cover 9 is sleeved to the outer wall of the upper end portion 82 of the support tube 8, the notch of which is 95
  • the U-shaped bottom is coincident with the upper portion of the elongated window 83 of the support tube 8, so as to prevent the support tube cover 9 from being squeezed or restrained by the support tube cover 9 to ensure the sealing effect, thereby avoiding the guidance of the liquid guiding core 6. The effect of the liquid is reduced.

Abstract

一种电子烟雾化装置,包括电极连接座(1)、电极管(2)、雾化座(3)、雾化管(4)、雾化管盖(5)、导液芯(6)、电热丝(7),电极连接座(1)为依次缩小内外径的多级阶梯管(11),雾化座(3)设有通气孔一(31),电极管(2)下端套设绝缘套(20)后插接于电极连接座(1)管径最小内壁(12)、上端插接于通气孔一(31)内,雾化管(4)上端(41)套接雾化座(3)外壁、下端(42)套接电极连接座(1)的第一阶梯管(13)外壁,雾化管(4)上端(41)管壁上对称设有U字形的缺口一(43),缺口一(43)底部与雾化座(3)上端面平齐,导液芯(6)中段缠绕电热丝(7)后架设于雾化座(3)上端面、其左右两段自缺口一(43)伸出并轴向贴在雾化管(4)外壁,电热丝(7)两端设有引线(71)分别与电极连接座(1)、电极管(2)连接,雾化管盖(5)包括管状盖壁(51)和设有通气孔二(53)的盖底(52),盖壁(51)套接于雾化管(4)上端(41)外壁并封住缺口一(43)仅留导液芯(6)穿过。

Description

电子烟雾化装置
技术领域
[0001] 本发明涉及电子烟技术领域, 更具体的说, 本发明涉及一种电子烟雾化装置。
背景技术
[0002] 传统的烟草型香烟, 由于其中含有烟焦油, 在吸烟吋易被吸入人体, 造成很大 的健康危害。 电子烟通常是将电子烟烟液经过雾化装置的加热而发出烟雾供吸 烟者使用, 由于电子烟烟液不含有烟草中的烟焦油, 故电子烟逐渐代替香烟得 到广泛使用。
[0003] 现有的电子烟雾化装置, 一般设有导液芯和电热丝, 导液芯将电子烟储液装置 中的烟液传导至导液芯与电热丝的结合部分, 在电热丝通电发热吋, 电热丝的 热量即可将电子烟烟液雾化成烟雾。 但现有的电子烟雾化装置, 在与储液装置 配置吋为避免漏液, 结构都较为复杂, 以至于加工装配吋不方便, 需要较大的 人力成本。 在结构较为复杂的防漏液设置的电子烟雾化装置中, 导液芯往往受 到其他配件如管壁等的约束而较难顺利地从储液装置中吸收和传导电子烟烟液 至电热丝, 造成用户吸烟吋雾化不良而影响了吸烟口感。 又现有的电子烟雾化 装置, 雾化室中导液芯与电热丝组成的雾化单元固定不牢也容易造成雾化单元 松动或脱落导致雾化不良, 以及电热丝的引线部分裸露容易造成短路的问题。 技术问题
[0004] 本发明的目的在于克服上述现有技术的不足而提供一种电子烟雾化装置, 该电 子烟雾化装置结构简单, 在生产中容易装配, 且可顺利传导烟液、 雾化座牢固 固定导液芯而有助于烟液的良好雾化。
问题的解决方案
技术解决方案
[0005] 本发明的技术方案是这样实现的, 该电子烟雾化装置, 包括电极连接座、 电极 管、 雾化座、 雾化管、 雾化管盖、 导液芯、 电热丝, 其特殊之处在于: 所述电 极连接座为依次缩小内外径的多级阶梯管, 所述雾化座设有通气孔一, 所述电 极管下端套设绝缘套后插接于所述电极连接座管径最小内壁、 上端插接于所述 通气孔一内, 所述雾化管上端套接所述雾化座外壁、 下端套接所述电极连接座 的第一阶梯管外壁, 所述雾化管上端管壁上对称设有 U字形的缺口一, 所述缺口 一底部与所述雾化座上端面平齐, 所述导液芯中段缠绕所述电热丝后架设于所 述雾化座上端面、 其左右两段自所述缺口一伸出并轴向贴在所述雾化管外壁, 所述电热丝两端设有引线分别与所述电极连接座、 电极管连接, 所述雾化管盖 包括管状盖壁和设有通气孔二的盖底, 所述盖壁套接于所述雾化管上端外壁并 封住缺口一仅留导液芯穿过。
[0006] 优选地, 所述雾化座为一圆柱体, 所述通气孔一轴向设于圆柱体中心, 所述圆 柱体上端面径向设有凹槽一, 所述凹槽一的两侧构成对称的凸台, 所述导液芯 中段架设于所述凸台上, 所述凸台上还分别向下设有通线孔, 所述通线孔供所 述引线穿过。
[0007] 优选地, 所述凸台在架设导液芯的两侧部分向下凹设, 使凸台面积减小。
[0008] 优选地, 所述雾化管盖的盖壁上设有对称的倒 U字形的缺口二, 所述雾化管盖 套住雾化管吋, 所述缺口二与所述缺口一垂直对齐并紧密扣合形成一圆孔仅供 导液芯恰好穿过。
[0009] 优选地, 所述雾化管外还设有支撑管, 所述支撑管下端部套接于电极连接座的 第二阶梯管外壁、 上端部内壁套装雾化管盖及外壁套接有筒状的支撑管盖, 所 述支撑管对应导液芯位置的管壁上设有对称的长条形窗口, 所述支撑管盖包括 盖壁和盖底, 所述支撑管盖盖底设有通气孔三。
[0010] 优选地, 所述支撑管盖盖底中部凸起呈圆锥台状, 所述通气孔三设于圆锥台上 平面。
[0011] 优选地, 所述支撑管盖盖壁上设有对称的倒 U字形的缺口三, 所述支撑管盖套 接支撑管上端部外壁, 所述缺口三 U字形底部与所述支撑管的长条形窗口上部重 合对齐。
[0012] 优选地, 所述电极管的外壁呈阶梯状依次缩小外径,其中外径最大管壁设于电极 连接座的内部, 外径最小管壁插接于所述通气孔一内, 所述绝缘套套设于电极 管外径第二大管壁与所述电极连接座管径最小内壁之间, 所述电极管下端端面 上径向设有凹槽二与电极管通孔相通。
[0013] 优选地, 所述电极连接座中部的壁上径向设有通气小孔。
[0014] 优选地, 所述电极连接座设有至少三级阶梯管, 其中第三级阶梯管用以套接储 液管。
发明的有益效果
有益效果
[0015] 本发明结构简单, 在生产中易于装配而提高效率, 节省人工成本; 该电子烟雾 化装置的结构, 在避免烟液不会直接漏进雾化腔的同吋, 使得导液芯有足够长 度自由地舒展在储液腔中以便充分吸收传导电子烟烟液, 以及雾化座的凸台设 计也有助于电子烟烟液在雾化腔内被充分雾化成电子烟烟雾; 另雾化座的凸台 内设有通线孔完全包裹住电热丝的弓 I线, 避免了两根引线之间以及引线与另一 弓 I线连接的电极之间发生碰接而导致短路。
对附图的简要说明
附图说明
[0016] 图 1为本发明第一实施例的剖视图;
[0017] 图 2为本发明实施例的电极连接座结构图;
[0018] 图 3为本发明实施例电极管的结构图;
[0019] 图 4为本发明实施例绝缘套的结构图;
[0020] 图 5为本发明第一实施例雾化座的结构图;
[0021] 图 6为本发明实施例雾化管的结构图;
[0022] 图 7为本发明第一实施例雾化管盖的结构图;
[0023] 图 8为本发明实施例导液芯及电热丝的结构图;
[0024] 图 9为本发明第二实施例的剖视图;
[0025] 图 10为本发明第二实施例雾化座的结构图;
[0026] 图 11为本发明第二实施例雾化管盖的结构图;
[0027] 图 12为本发明第二实施例支撑管的结构图;
[0028] 图 13为本发明第二实施例支撑管盖的结构图;
[0029] 图 14为本发明第二实施例连接套的结构图; [0030] 图 15为本发明第三实施例支撑管的结构图;
[0031] 图 16为本发明第三实施例支撑管盖的结构图。
[0032] 其中, 主要组件符号说明:
[0033] 1-电极连接座; 10-连接套; 101-连接套凸环; 11-阶梯管; 12-管径最小内壁; 1 3-第一阶梯管; 14-第二阶梯管; 15-第三阶梯管; 16-通气小孔; 2-电极管; 20- 绝缘套; 201-管状体; 202-凸肩; 21-外径最大管壁; 22-外径第二大管壁; 23-外 径最小管壁; 24-电极管通孔; 25-凹槽二; 3-雾化座; 31-通气孔一; 32-圆柱体 ; 33-凸台; 34-通线孔; 35-凹槽一; 4-雾化管; 41-雾化管上端; 42-雾化管下端 ; 43-缺口一; 44-雾化腔; 5-雾化管盖; 51-雾化管盖盖壁; 52-雾化管盖盖底; 5 3、 通气孔二; 54-缺口二; 6-导液芯; 7、 电热丝; 71-引线; 8-支撑管; 81-支撑 管下端部; 82-支撑管上端部; 83-长条形窗口; 84-导液孔; 9-支撑管盖; 91-支 撑管盖盖壁; 92-支撑管盖盖底; 93通气孔三; 94-圆锥台; 95-缺口三。
实施该发明的最佳实施例
本发明的最佳实施方式
[0034] 下面将结合附图对本发明进行详细说明。
[0035] 图 1〜图 8示出了本发明的第一实施例。
[0036] 如图 1〜8所示, 本发明第一实施例, 电子烟雾化装置, 包括电极连接座 1、 电 极管 2、 雾化座 3、 雾化管 4、 雾化管盖 5、 导液芯 6、 电热丝 7, 电极连接座 1设有 向上依次缩小内外径的多级阶梯管 11, 顶部有管径最小内壁 12, 雾化座 3的中心 设有上下贯通的通气孔一 31, 电极管 2的下端套设一绝缘套 20后插接于电极连接 座 1的管径最小内壁 12、 电极管 2的上端插接于雾化座 3内设有的通气孔一 31内, 雾化管 4套设于电极管 2之外、 其上端 41套接雾化座 3的外壁、 下端 42套接在电极 连接座 1的第一阶梯管 13(自上而下数、 顶部最小的阶梯管为第一阶梯管)的外壁 上, 雾化管 4的上端管壁 41上对称设有两个 U字形的缺口一 43, 缺口一 43的底部 与雾化座 3的上端面平齐, 电热丝 7缠绕于导液芯 6的中段、 其两端还设有引线 71 分别与电极连接座 1、 电极管 2连接, 导液芯 6的中段架设于雾化座 3上端面、 其 左右两段分别从两个 U字形的缺口一 43伸出并轴向贴附在雾化管 4的外壁上, 雾 化管盖 5呈筒状、 包括管状的盖壁 51和设有通气孔二 53的盖底 52, 盖壁 51套接于 雾化管上端 41的外壁并封住 U字形缺口一 43仅留导液芯 6穿过。
[0037] 电极连接座 1由金属材料制成, 在作为连接件使用吋可同吋作为导电体进行导 电, 在本实施例中作为连接电源负极的电极。 作为常规连接方式之一, 本实施 例的电极连接座 1设有内螺纹 17, 以便可以与电子烟的电池杆进行连接。
[0038] 电极管 2也由金属材料制成, 在作为导电体使用吋其内部的电极管通孔 24兼作 电子烟进气的通道, 本实施例中其作为连接电源正极的电极使用。
[0039] 本实施例中绝缘套 20用于将电极连接座 1与电极管 2进行绝缘, 防止电源正负极 之间发生短路。 绝缘套 20用绝缘材料制成, 包括管状体 201及其一端径向凸起的 凸肩 202。
[0040] 如图 1、 5、 6所示, 本实施例雾化管 4设有对称的两个 U字形缺口一 43, 不仅用 于让导液芯 6穿过而且起到架设与固定导液芯 6的作用, 同吋可顺着缺口一 43直 接横置放入导液芯 6而方便生产中的装配。 另雾化管 4的 U字形缺口一 43部位的内 部, 即雾化管 4、 雾化座 3、 和雾化管盖 5之间构成了一个空腔即雾化腔 44, 在该 雾化腔内, 导液芯可将雾化管 4外部储液腔 (图中未示)中的电子烟烟液传导至其 中段与电热丝 7结合的部位, 同吋用户吸烟吋吸入的空气也流经电热丝 7处, 电 热丝 7通电后烟液即被加热雾化成烟雾随空气经雾化腔 44的通气孔二 53排出。 该 雾化腔 44, 由于雾化管盖 5的盖壁 51紧密套接在雾化管上端 41的外壁并封住 U字 形缺口一 43仅留导液芯 6穿过, 故雾化管 4外部储液腔中的烟液不会直接漏进雾 化腔 44。 导液芯 6的左右两段分别自两个 U字形缺口一 43伸出并轴向贴附在雾化 管 4的外壁上, 使得导液芯 6有足够长度、 可不受约束地舒展在烟液中以便充分 吸收并传导电子烟烟液至电热丝 7部位, 保证雾化腔 44内有良好的雾化效果。
[0041] 如图 1、 3所示, 电极管 2的外壁呈阶梯状依次缩小外径,其中外径最大管壁 21设 于电极连接座 1的内部, 外径最小管壁 23套接于雾化座 1的管径最小内壁 12中, 绝缘套 20套设于电极管 2的外径第二大管壁 22与电极连接座管径最小内壁 12之间 , 电极管 2下端的端面上径向设有凹槽二 25与电极管通孔 24相通, 幵设凹槽二 25 的作用在于当电极管 2的端面与电子烟电池杆 (图中未示)的正极进行连接吋, 避 免电极管 2端面与电池杆正极端面平面接触而堵塞电极管通孔 24, 避免空气不能 流入雾化腔 44。 [0042] 如图 1所示, 电极连接座 1中部的壁上径向设有若干通气小孔 16, 设有该若干通 气小孔 16, 则电子烟的外界空气即可从通气小孔 16直接流入电极连接座 1的内腔 再流入电极管通孔 24, 避免空气流经电池杆内部, 从而防止电子烟电池受潮。
[0043] 如图 1所示, 本发明电子烟雾化装置, 在吸烟工作吋, 电子烟的烟嘴 (图中未示) 内因吸烟产生负压, 外部空气即被吸入, 顺序通过通气小孔 16、 电极连接座内 腔、 电极管的凹槽二 25、 电极管通孔 24、 雾化座的通气孔一 31后进入雾化腔 44 , 导液芯 6与电热丝 7结合部位的烟液被加热并在雾化腔 44中雾化成电子烟烟雾 , 随后烟雾自雾化管盖的通气孔二 53排出至电子烟的烟嘴, 用户通过烟嘴将电 子烟烟雾吸入口中。
[0044] 如图 2所示, 电极连接座 1设有五级阶梯管, 其中第三阶梯管外壁 15套接储液管 (图中未示), 该储液管内壁与雾化管 4的外壁之间的空腔形成储液腔 (图中未示), 另有两级阶梯管可以用于套接外管、 装饰管等。
[0045] 如图 5、 8所示, 本发明实施例, 雾化座 3的主体为一圆柱体 32, 通气孔一 31轴 向设于圆柱体 32的中心, 圆柱体 32的上端面径向设有凹槽一 35, 凹槽一 35的两 侧构成对称的凸台 33, 导液芯 6的中段架设于凸台 33上, 凸台 33上还分别向下设 有通线孔 34, 通线孔 34供引线 71穿过。 通线孔 34自凸台 33向下设置, 使得引线 7 1可以被完全套装在雾化座 3内, 避免了两根引线 71之间以及引线与另一引线连 接的电极之间发生短路。 凸台 33及引线 71可将缠绕了电热丝部分的导液芯中段 架设固定, 因引线 71有牵拉作用。 雾化座 3同吋被电极管 2与雾化管 4两者内外套 接, 起到将两者连接固定及密封两者之间缝隙的作用; 雾化座 3内设有的通气孔 一 31用以将电极管通孔 24导进的空气继续导入到电热丝 7处。
本发明的实施方式
[0046] 图 9〜图 13示出了本发明的第二实施例。
[0047] 本实施例在第一实施例的基础上建立, 与第一实施例不同在于:
[0048] 如图 9、 图 10所示, 雾化座 3的凸台 33采用了另一种形状, 凸台 33在架设导液芯 6的两侧部分向下凹设, 使凸台 33面积减小, 即雾化座 3的上部仅导液芯 6中段投 影位置、 在通气孔一 31的左右两侧横向凸起成两个凸台 33, 这样凸台 33的面积 更小, 使得雾化腔 44的腔室容积更大, 有助于烟液更好地雾化。
[0049] 如图 9、 图 11所示, 雾化管盖 5的盖壁 51上还设有对称的倒 U字形缺口二 54, 雾 化管盖 5套住雾化管 4吋, 其倒 U字形缺口二 54与雾化管 4的 U字形缺口一 43垂直对 齐并紧密扣合形成一圆孔仅供导液芯 6恰好穿过, 这样的结构有助于更好地将储 液腔和雾化腔 44隔离, 防止烟液自储液腔泄漏进雾化腔 44, 造成雾化不良及其 他使用故障。
[0050] 如图 9、 12、 13所示, 雾化管 4外还设有支撑管 8, 支撑管 8的下端部 81套接于电 极连接座 1的第二阶梯管 14的外壁上、 上端部 82的内壁套装雾化管盖 5及上端部 8 2的外壁套接有筒状的支撑管盖 9, 支撑管 8对应导液芯 6左右两段位置的管壁上 设有对称的两个长条形窗口 83, 支撑管盖 9包括盖壁 91和盖底 92, 支撑管盖盖底 92上设有通气孔三 93。
[0051] 如图 14所示, 电极连接座 1上还套设有软性的连接套 10, 连接套 10外壁上设有 环状的连接套凸环 101, 此设计用以更好地密封电极连接座第三阶梯管 15外壁与 储液管 (图中未示)的连接, 防止烟液从储液腔向外漏泄。
[0052] 本实施例中, 支撑管 8和支撑管盖 9结构设置的作用在于支撑固定雾化管、 雾化 管盖, 保护雾化腔 44不发生变形, 从而保证烟液的良好雾化效果。 在起到支撑 作用吋, 支撑管 8在对应导液芯 6左右两段位置的管壁上设有对称的两个长条形 窗口 83, 该窗口 83的设计, 避免了支撑管 8的管壁对导液芯 6的挤压和约束, 使 得导液芯 6在装有支撑管 8后仍可不受约束、 自由舒展地从储液腔中充分吸收烟 液传导至其与发热丝 7结合部位, 从而保证良好的雾化效果。
[0053] 图 14〜图 15示出了本发明的第三实施例。
[0054] 本实施例在第二实施例的基础上建立, 与第二实施例不同在于:
[0055] 如图 14所示, 支撑管 8长条形窗口 83的两侧管壁上, 还设有导液孔 84, 该导液 孔 84进一步保证烟液可进入支撑管 8内与导液芯 6充分接触。
[0056] 如图 15所示, 支撑管盖 9的盖底 92中部凸起呈圆锥台 94, 通气孔三 93设于圆锥 台 94的上平面。 该圆锥台 94的形状, 可以配合电子烟的烟嘴形状 (图中未示), 以 实现烟嘴内壁与支撑管盖外壁有很好的密封效果, 以保证用户吸烟吋能充分利 用较小的吸力而产生足够的气流吸出电子烟烟雾。 [0057] 如图 14、 15所示, 支撑管盖盖壁 91上设有对称的倒 U字形的缺口三 95, 支撑管 盖 9套接支撑管 8上端部 82的外壁, 其缺口三 95的 U字形底部与支撑管 8的长条形 窗口 83的上部重合对齐, 如此以便在保证密封效果吋, 避免支撑管盖 9对导液芯 6进行挤压或约束, 从而避免导液芯 6的导液效果的降低。
工业实用性
[0058] 以上所描述的仅为本发明的较佳实施例, 上述具体实施例不是对本发明的限制 。 在本发明的技术思想范畴内, 可以出现各种变形及修改, 凡本领域的普通技 术人员根据以上描述所做的润饰、 修改或等同替换, 均属于本发明所保护的范 围。

Claims

权利要求书
一种电子烟雾化装置, 包括电极连接座、 电极管、 雾化座、 雾化管、 雾化管盖、 导液芯、 电热丝, 其特征在于: 所述电极连接座为依次缩 小内外径的多级阶梯管, 所述雾化座设有通气孔一, 所述电极管下端 套设绝缘套后插接于所述电极连接座管径最小内壁、 上端插接于所述 通气孔一内, 所述雾化管上端套接所述雾化座外壁、 下端套接所述电 极连接座的第一阶梯管外壁, 所述雾化管上端管壁上对称设有 u字形 的缺口一, 所述缺口一底部与所述雾化座上端面平齐, 所述导液芯中 段缠绕所述电热丝后架设于所述雾化座上端面、 其左右两段自所述缺 口一伸出并轴向贴在所述雾化管外壁, 所述电热丝两端设有弓 I线分别 与所述电极连接座、 电极管连接, 所述雾化管盖包括管状的盖壁和设 有通气孔二的盖底, 所述盖壁套接于所述雾化管上端外壁并封住缺口 一仅留导液芯穿过。
根据权利要求 1所述的电子烟雾化装置, 其特征在于: 所述雾化座为 一圆柱体, 所述通气孔一轴向设于圆柱体中心, 所述圆柱体上端面径 向设有凹槽一, 所述凹槽一的两侧构成对称的凸台, 所述导液芯中段 架设于所述凸台上, 所述凸台上还分别向下设有通线孔, 所述通线孔 供所述引线穿过。
根据权利要求 2所述的电子烟雾化装置, 其特征在于: 所述凸台在架 设导液芯的两侧部分向下凹设, 使凸台面积减小。
根据权利要求 1所述的电子烟雾化装置, 其特征在于: 所述雾化管盖 的盖壁上设有对称的倒 U字形的缺口二, 所述雾化管盖套住雾化管吋 , 所述缺口二与所述缺口一垂直对齐并紧密扣合形成一圆孔仅供导液 芯恰好穿过。
根据权利要求 1所述的电子烟雾化装置, 其特征在于: 所述雾化管外 还设有支撑管, 所述支撑管下端部套接于电极连接座的第二阶梯管外 壁、 上端部内壁套装雾化管盖及外壁套接有筒状的支撑管盖, 所述支 撑管对应导液芯位置的管壁上设有对称的长条形窗口, 所述支撑管盖 包括盖壁和盖底, 所述支撑管盖盖底设有通气孔三。
[权利要求 6] 根据权利要求 5所述的电子烟雾化装置, 其特征在于: 所述支撑管盖 盖底中部凸起呈圆锥台状, 所述通气孔三设于圆锥台上平面。
[权利要求 7] 根据权利要求 5所述的电子烟雾化装置, 其特征在于: 所述支撑管盖 盖壁上设有对称的倒 U字形的缺口三, 所述支撑管盖套接支撑管上端 部外壁, 所述缺口三 U字形底部与所述支撑管的长条形窗口上部重合 对齐。
[权利要求 8] 根据权利要求 1所述的电子烟雾化装置, 其特征在于: 所述电极管的 外壁呈阶梯状依次缩小外径,其中外径最大管壁设于电极连接座的内 部, 外径最小管壁插接于所述通气孔一内, 所述绝缘套套设于电极管 外径第二大管壁与所述电极连接座管径最小内壁之间, 所述电极管下 端端面上径向设有凹槽二与电极管通孔相通。
[权利要求 9] 根据权利要求 1所述的电子烟雾化装置, 其特征在于: 所述电极连接 座中部的壁上径向设有通气小孔。
[权利要求 10] 根据权利要求 9所述的电子烟雾化装置, 其特征在于: 所述电极连接 座设有至少三级阶梯管, 其中第三级阶梯管用以套接储液管。
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