WO2016141556A1 - 电子烟 - Google Patents

电子烟 Download PDF

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Publication number
WO2016141556A1
WO2016141556A1 PCT/CN2015/073957 CN2015073957W WO2016141556A1 WO 2016141556 A1 WO2016141556 A1 WO 2016141556A1 CN 2015073957 W CN2015073957 W CN 2015073957W WO 2016141556 A1 WO2016141556 A1 WO 2016141556A1
Authority
WO
WIPO (PCT)
Prior art keywords
atomizing
atomizing device
electronic cigarette
cartridge
tube
Prior art date
Application number
PCT/CN2015/073957
Other languages
English (en)
French (fr)
Inventor
陈志平
Original Assignee
深圳麦克韦尔股份有限公司
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 深圳麦克韦尔股份有限公司 filed Critical 深圳麦克韦尔股份有限公司
Priority to PCT/CN2015/073957 priority Critical patent/WO2016141556A1/zh
Publication of WO2016141556A1 publication Critical patent/WO2016141556A1/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
    • A24F40/48Fluid 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

  • This invention relates to cigarette substitutes and, more particularly, to an electronic cigarette.
  • the electronic cigarette in the related art generally includes a chimney tube, an atomizing device and a power supply device, and the cigarette tube and the atomizing device are connected, and the smoke liquid of the cartridge tube is controlled to flow or close into the atomizing device through the assembly position, and the mist
  • the chemical device is connected to the power supply device, and the electrical energy between the power supply device and the atomization device is controlled by the assembly position.
  • the assembly between the cartridge and the atomizing device is usually different from that between the atomizing device and the power supply device.
  • the flow of the smoke liquid between the cartridge and the atomizing device is controlled, and the guide between the atomizing device and the power device is guided. It also often needs to be carried out separately, which is more troublesome to use.
  • the technical problem to be solved by the present invention is to provide an improved electronic cigarette.
  • the technical solution adopted by the present invention to solve the technical problem thereof is: constructing an electronic cigarette, including a cigarette tube, an atomizing device and a battery device;
  • the cartridge includes a liquid storage chamber and at least one liquid outlet that communicates the inside of the liquid storage chamber with the outside;
  • the atomizing device includes a liquid storage chamber and at least one liquid inlet that communicates the inside of the liquid storage chamber with the outside;
  • the cartridge is mounted on the atomizing device and rotatable relative to the atomizing device between a first position and a second position, wherein the cartridge is in the first position
  • the at least one liquid outlet and the at least one liquid inlet are offset from each other such that the liquid storage chamber is separated from the liquid storage chamber; and the at least one of the tobacco tube is in the second position
  • the liquid outlet corresponds to the position of the at least one liquid inlet, and the liquid storage chamber is connected to the liquid storage chamber;
  • the atomizing device is rotatable relative to the battery device between a third position and a fourth position, and wherein the atomizing device is separated from the battery device when the atomizing device is in the third position, When the atomizing device is in the fourth position, the atomizing device cooperates with the battery device, the rotation direction of the first position to the second position, and the third position to the fourth position The direction of rotation is the same.
  • the atomizing device comprises an atomizing mount
  • the atomizing mount comprises a cylindrical atomizing tube sleeved to an end of the cartridge, the inner side wall of the atomizing tube is circumferentially disposed At least one card, the end portion of the end portion of the cartridge corresponding to the atomizing device is provided with at least one card slot corresponding to the card table, and the card slot includes a rotation extending in the circumferential direction a slot providing a rotational space for the cartridge.
  • the atomizing device and the battery device are threaded.
  • the friction between the cartridge and the atomizing device is different from the friction between the atomizing device and the battery device.
  • the atomization mount further comprises an annular substrate, the atomization tube is formed by laterally extending from an outer ring of the annular substrate, and the annular substrate is provided with a demolding corresponding to the axial direction of the card table. hole.
  • the at least one card table comprises two card holders symmetrically disposed on opposite sides of the inner wall of the atomizing tube, and the annular substrate is provided with two stripping holes corresponding to the card table,
  • the at least one card slot includes two card slots symmetrically disposed on the opposite side walls of the cartridge.
  • the cartridge is coaxially mounted with the atomizing device and is rotatable relative to the atomizing device about its axis between the first position and the second position;
  • the chimney tube includes a first wall portion opposite to the atomizing device, and the at least one liquid outlet is formed on the first wall portion;
  • the atomizing device includes a second wall portion opposite to the cartridge, the first wall portion is rotatably coupled to the second wall portion about the axis, and the at least one liquid inlet is formed On the second wall portion.
  • the second wall portion and the annular substrate are spaced apart, and the release hole and the liquid inlet are offset in a circumferential direction;
  • the atomization mount further includes a retaining wall formed between the second wall portion and the annular substrate to form an isolation space on a side of the mold release hole, the mold release hole and the liquid inlet a port partition, a side of the retaining wall opposite the stripping hole and the second wall portion, the annular substrate and the atomizing tube are enclosed in a space corresponding to the liquid inlet to form a liquid storage room.
  • the atomization device includes a second cover body that cooperates with the first wall portion, the second wall portion is formed on the second cover body, and the atomization device further includes an embedded cover body An electrically conductive vent tube on the annular substrate, the vent tube being in communication with a through hole of the annular substrate;
  • the atomizing device further includes an atomizing assembly including a liquid guiding core and a heat generating member disposed on the liquid guiding core, the liquid guiding core being disposed on the ventilation pipe and extending at least at one end Entering into the liquid storage chamber;
  • the heat generating component is electrically connected to the vent tube, the vent pipe is electrically connected to an electrode of the battery device, and the heat generating component penetrates the vent pipe and the other electrode of the battery device through a conductor Electrical connection.
  • the second cover body comprises an annular gasket and a positioning post disposed on the gasket, an inner ring hole of the gasket is in communication with the vent pipe, and the liquid inlet is formed on the gasket
  • the positioning post extends axially into the isolation space to prevent the gasket from rotating.
  • the vent tube is a conductive tubular structure formed of a conductive material.
  • a partition is formed between the inner ring of the annular substrate and the vent tube to insulate the conductor from the vent tube.
  • the atomizing device further includes a pressing ring, the outer ring of the pressing ring is engaged with the inner ring of the partition to press and fix the conductor to the pressing ring and the separating portion between.
  • the side wall of the vent pipe is provided with a gap for laterally leading the conductor.
  • the atomization mount further includes a connecting pipe section extending axially from a side of the annular substrate opposite to the battery device, and the connecting pipe section is provided with a position corresponding to the notch for the conductor lateral direction The lead-out slot that is led out.
  • the width of the notch is larger than the width of the extraction groove, and the area of the extraction groove facing the notch is in the area of the notch.
  • the vent tube is provided with two of the notches, and is respectively located on opposite sides of the side wall of the vent tube.
  • the electronic cigarette of the present invention has the following beneficial effects: the cigarette tube and the atomizing device in the present invention, the atomizing device and the battery device can be rotatably connected, and the flue bomb tube relative atomizing device is from the first position.
  • the liquid outlet and the liquid inlet are misaligned to communicate, and the atomizing device is installed in position and turned on when the battery device is rotated from the third position to the fourth position, and the smoke tube is opposite to the mist.
  • the rotation direction of the chemical device from the first position to the second position is the same as the rotation direction of the atomization device from the third position to the fourth position of the battery device, so that the installation of the two connection portions can be completed in one step, and the tube is in the cartridge.
  • the liquid outlet and the liquid inlet are misaligned or connected during the rotation.
  • FIG. 1 is a schematic perspective view showing the structure of an electronic cigarette according to an embodiment of the present invention.
  • Figure 2 is a schematic axial sectional view of the electronic cigarette of Figure 1;
  • Figure 3 is an enlarged schematic view of a partial view A of Figure 2;
  • Figure 4 is an exploded perspective view of the cartridge of Figure 2 in a first position relative to the atomizing device;
  • Figure 5 is an exploded perspective view of the cartridge of Figure 2 in a second position relative to the atomizing device
  • Figure 6 is a cross-sectional view showing the other portion of the cartridge of Figure 2 opposite to the atomizing device in the second position;
  • Figure 7 is a perspective view of a cartridge
  • Figure 8 is a perspective view showing the assembled state of the atomizing mount, the vent pipe and the press ring;
  • Figure 9 is a perspective view showing another assembled state of the atomizing mount, the vent pipe and the press ring;
  • Figure 10 is a schematic axial cross-sectional view showing the assembled state of the atomizing mount, the vent tube, the atomizing assembly, the press ring and the threaded sleeve.
  • the electronic cigarette in a preferred embodiment of the present invention includes a cartridge 10 and an atomizing device 20 And battery device 30.
  • the cartridge 10 is mounted on the atomizing device 20 and is rotatable relative to the atomizing device 20 between a first position and a second position; the atomizing device 20 is positionable relative to the battery unit 30 in a third position and The fourth position is rotated. Further, the rotation direction of the first position to the second position coincides with the rotation direction of the third position to the fourth position.
  • the rotation of the two connecting parts enables the two connecting parts to be opened or closed in sequence according to the difference in friction between the two parts.
  • the cartridge 10 includes a cartridge body 11 and a first cover 12.
  • the cartridge body 11 includes a reservoir chamber 111 and an opening 112 corresponding to the reservoir chamber 111.
  • the first cover 12 is disposed on the opening 112 opposite to the atomizing device 20, and covers the liquid storage chamber 111.
  • the first cover 12 is provided with a liquid outlet 121 for communicating the inside of the liquid storage chamber 111 with the outside, and the number of the liquid outlets 121 may be one or more.
  • the first cover 12 may also be a first wall portion integral with the cartridge body 11 and opposite to the atomizing device 20, and the liquid outlet 121 is formed on the first wall portion.
  • the cartridge 10 is mounted coaxially with the atomizing device 20 and is rotatable relative to and from the atomizing device 20 about its axis between a first position and a second position.
  • the cartridge 10 and the atomizing device 20 may also be mounted off-axis, such as eccentric.
  • the atomizing device 20 includes an atomizing mount 21, a second cover 22, a vent pipe 23, an atomizing assembly 24, and a press ring 25.
  • the atomizing mount 21 includes an annular substrate 211 , a cylindrical atomizing tube 212 formed on the outer ring of the annular substrate 211 and extending laterally toward the cartridge 10 , and a ring-shaped substrate 211 .
  • a retaining wall 213 extending from one side of the cartridge 10 is provided.
  • the atomizing tube 212 is sleeved to the end of the cartridge 10, and the inner side wall of the atomizing tube 212 is provided with two clamping plates 2121 in the circumferential direction.
  • the cartridge body 11 corresponds to the atomizing device 20.
  • the end outer ring is provided with two card slots 111 corresponding to the card table 2121.
  • the card slot 111 includes a rotating slot 112 extending in the circumferential direction, and communicates with the rotating slot 112 and the cartridge 10 corresponding to the atomizing tube 212.
  • the guide groove 113 at the end, the guide groove 113 is introduced into the rotation groove 112 by the card table 2121, and the rotation groove 112 provides a rotational space for the cartridge tube 10.
  • the two card stages 2121 and the two card slots 111 are symmetrically arranged to ensure uniformity of force.
  • the number of the card table 2121 and the card slot 111 may also be one or three or other numbers, respectively, to ensure that the cartridge 10 and the atomizing tube 212 rotate relative to each other.
  • the annular substrate 211 is provided with a mold release hole 2111 corresponding to the axial direction of the card table 2121 , so that when the atomization mount 21 is formed, the core of the molded card table 2121 can be removed from the mold release hole 2111 .
  • the axial direction is outwardly away from the card table 2121, and the card table 2121 is formed directly on the inner wall of the atomizing tube 212.
  • the inner ring of the annular substrate 211 is formed with a through hole 2112.
  • the vent pipe 23 is embedded in the annular substrate 211 and communicates with the through hole 2112 and cooperates with the retaining wall 213.
  • the second cover 22 includes a sealing pad 221 and a positioning post 222 disposed on the sealing pad 221 .
  • the sealing pad 221 is also annular, spaced apart from the annular substrate 211 , and is covered by the blocking member.
  • the wall 213 and the end surface of the vent pipe 23 are surrounded by the annular substrate 211 and the atomizing tube 212 on the side of the retaining wall 213 opposite to the stripping hole 2111 to form a liquid storage chamber 26.
  • the vent tube 23 is provided. It can also be integrated with the atomizing mount 21.
  • the inner ring hole of the middle portion of the gasket 221 communicates with the vent pipe 23, and the liquid inlet port 2211 communicating with the liquid storage chamber 26 is formed in the gasket 221 .
  • the number of the liquid inlets 2211 may be one or more, and corresponds to the position and size of the liquid outlet 121.
  • the outlet 121 and the inlet 2211 are offset from each other, so that the reservoir 111 is separated from the reservoir 26; when the cartridge 10 is in the second position, the outlet 121 is The inlet port 2211 is positioned correspondingly to communicate the reservoir chamber 111 with the reservoir chamber 26.
  • the mold release hole 2111 and the liquid inlet port 2211 are displaced in the circumferential direction, and the retaining wall 213 forms an isolation space on the side of the mold release hole 2111 to block the mold release hole 2111 and the liquid inlet port 2211.
  • the positioning post 222 extends axially into the isolation space to prevent the gasket 221 from rotating.
  • the first cover 12 of the cartridge 10 is rotatably coupled to the gasket 221 about the axis to ensure that the liquid smoke between the outlet 121 and the inlet 2211 does not leak laterally.
  • the gasket 221 can also be a second wall portion that is integral with the atomizing mount 21.
  • the atomizing assembly 24 includes a liquid guiding core 241 and a heat generating member 242 disposed on the liquid guiding core 241.
  • the liquid guiding core 241 is disposed on the vent pipe 23, and at least one end thereof extends into the liquid storage chamber 26.
  • the vent tube 23 is an electrically conductive member
  • the heat generating member 242 is electrically connected to the vent tube 23
  • the vent tube 23 is electrically connected to one electrode of the battery device 30, and the heat generating member 242 is disposed through the conductor 243 through the vent tube 23 and the battery.
  • the other electrode of device 30 is electrically connected.
  • the vent tube 23 is a conductive tubular structure formed of a conductive material.
  • the vent tube 23 may also be provided with an electrically conductive conductive portion electrically connected to the heat generating member 242 and an electrode of the battery device 30. Electrical connection.
  • a partition portion 2113 is formed between the inner ring of the annular substrate 211 and the vent pipe 23 to insulate the conductor 243 from the vent pipe 23 to prevent short circuit.
  • the atomizing device 20 further includes a pressing ring 25, and the outer ring of the pressing ring 25 cooperates with the inner ring of the partitioning portion 2113 to press-fix the conductor 243 between the pressing ring 25 and the partitioning portion 2113.
  • the conductor 243 is prevented from shaking.
  • the atomizing mount 21 further includes a connecting pipe section 214 extending outward from a side of the annular substrate 211 opposite to the battery device 30.
  • the outer periphery of the connecting pipe section 214 is sleeved with an electrically conductive threaded pipe 27, and the battery device 30.
  • the threaded and electrically connected can also be electrically connected directly to the battery device 30 via the lead conductor 243.
  • a notch 231 for laterally leading the conductor 243 is disposed on the side wall of the vent tube 23, and the conductor 243 is laterally led out and electrically connected to the threaded tube 27 to facilitate electrical connection with the battery device 30.
  • the vent tube 23 includes two notches 231 disposed on the opposite side walls to facilitate the die-cutting of the tubular vent tube 23 by the mold.
  • a lead-out groove 2141 corresponding to one of the notches 231 is provided on the side wall of the connecting pipe section 214, and the laterally led conductor 243 can be concealed and concealed to prevent space occupation and maintain beautiful appearance. Further, the width of the notch 231 is larger than the width of the lead-out groove 2141, and the region where the lead-out groove 2141 and the notch 231 face in the region of the notch 231 can prevent the conductor 243 from coming into contact with the vent tube 23 when the lead-out groove 2141 passes through the lead-out groove 2141 to cause a short circuit.
  • the atomizing mount 21 is screwed with the battery device 30.
  • the atomizing device 20 is in the third position, the atomizing device 20 is separated from the battery device 30; the atomizing device 20 is in the fourth position.
  • the atomizing device 20 cooperates with the battery device 30, and electrically connects the vent tube 23 and the threaded tube 27 to the two electrodes of the battery device 30, respectively.
  • both ends of the holding electronic cigarette rotate in the forward and reverse directions along the axis.
  • a sequential rotation sequence is generated between the cartridge 10 and the atomizing device 20, between the atomizing device 20 and the battery device 30.
  • the atomizing device 20 When the rotational friction between the cartridge 10 and the atomizing device 20 is greater than the rotational friction between the atomizing device 20 and the battery device 30, the atomizing device 20 is firstly opposed to the battery device 30 by the frictional force. The position is screwed to the fourth position. After the two are installed in position, the cartridge 10 is rotated from the first position to the second position relative to the atomizing device 20, and the liquid inlet 2211 and the liquid outlet 121 are rotated from the misalignment to the communication. When it is turned on, the liquid liquid in the liquid storage chamber 111 flows to the liquid storage chamber 26, and the use can be started.
  • the fluff tube 10 is firstly opposed to the atomizing device 20 due to the different frictional force.
  • the position is rotated to the second position, the liquid inlet 2211 and the liquid outlet 121 are rotated from the dislocation to the communication conduction, so that the liquid in the liquid storage chamber 111 flows to the liquid storage chamber 26, and the atomization device 20 is opposite to the battery device 30.
  • the third position is screwed to the fourth position. Since the liquid liquid has been adsorbed by the liquid guiding core 241 in advance, the user can start after the atomizing unit 24 and the battery unit 30 are energized. use.

Abstract

一种电子烟,其烟弹管(10)和雾化装置(20)之间、雾化装置(20)和电池装置(30)之间均可转动连接,烟弹管(10)相对雾化装置(20)由第一位置转动至第二位置时使得出液口(121)和进液口(2211)由错位至连通,雾化装置(20)相对电池装置(30)由第三位置转动至第四位置时将使得两者连接在一起;且由于烟弹管(10)相对雾化装置(20)由第一位置到第二位置的转动方向和雾化装置(20)相对电池装置(30)由第三位置到第四位置的转动方向相同,从而通过一次操作可以完成两个连接部位的安装,且在烟弹管(10)转动过程中可以使得出液口(121)和进液口(2211)错位或连通。

Description

电子烟 技术领域
本发明涉及香烟替代品,更具体地说,涉及一种电子烟。
背景技术
相关技术中的电子烟一般包括烟弹管、雾化装置和电源装置,烟弹管和雾化装置相连接,并通过装配位置控制烟弹管的烟液向雾化装置内流动或关闭,雾化装置和电源装置相连接,通过装配位置控制电源装置和雾化装置之间的电能导通。烟弹管和雾化装置之间与雾化装置和电源装置之间的装配方式通常不同,烟弹管和雾化装置之间控制烟液的流通,和雾化装置和电源装置之间的导通也往往需要分别进行,使用比较麻烦。
发明内容
本发明要解决的技术问题在于,提供一种改进的电子烟 。
本发明解决其技术问题所采用的技术方案是:构造一种电子烟, 包括烟弹管、雾化装置及电池装置;
所述烟弹管包括储液腔以及将所述储液腔内部与外部相连通的至少一个出液口;
所述雾化装置包括储液室以及将所述储液室内部与外部连通的至少一个进液口;
所述烟弹管安装于所述雾化装置上,并可相对于所述雾化装置在一个第一位置和一个第二位置之间转动,所述烟弹管在所述第一位置时,所述至少一个出液口与所述至少一个进液口相互错位,使得所述储液腔与所述储液室相隔断;所述烟弹管在所述第二位置时,所述至少一个出液口与所述至少一个进液口位置相对应,将所述储液腔与所述储液室相连通;
所述雾化装置可相对所述电池装置在一个第三位置和一个第四位置之间转动,所述雾化装置在第三位置时,所述雾化装置与所述电池装置分离,所述雾化装置在所述第四位置时,所述雾化装置与所述电池装置相配合,所述第一位置到所述第二位置的转动方向与所述第三位置到所述第四位置的转动方向一致。
优选地,所述雾化装置包括雾化安装座,所述雾化安装座包括套设到所述烟弹管端部的筒状雾化管,所述雾化管的内侧壁上沿周向设有至少一个卡台,所述烟弹管与所述雾化装置对应的端部外圈上设有至少一个与所述卡台对应的至少一个卡槽,所述卡槽包括沿周向延伸的转动槽,为所述烟弹管提供转动空间。
优选地,所述雾化装置和所述电池装置螺纹配合。
优选地,所述烟弹管和所述雾化装置之间的摩擦力与所述雾化装置和所述电池装置之间的摩擦力不同。
优选地,所述雾化安装座还包括环形基板,所述雾化管由所述环形基板的外圈侧向延伸形成,所述环形基板上设有与所述卡台轴向对应的脱模孔。
优选地,所述至少一个卡台包括对称设置在所述雾化管内壁的两相对侧的两个卡台,所述环形基板上设有与所述卡台对应的两个脱模孔,所述至少一个卡槽包括对称设置在所述烟弹管两相背的侧壁上的两个卡槽。
优选地,所述烟弹管与所述雾化装置共轴地安装在一起,并能相对所述雾化装置绕其轴线在所述第一位置和所述第二位置之间来回转动;
所述烟弹管包括与所述雾化装置相对的第一壁部,所述至少一个出液口形成于该第一壁部上;
所述雾化装置包括与所述烟弹管相对的第二壁部,所述第一壁部可绕所述轴线转动地与所述第二壁部贴合,所述至少一个进液口形成于该第二壁部上。
优选地,所述第二壁部和所述环形基板间隔设置,且所述脱模孔和所述进液口在周向上错位设置;
所述雾化安装座还包括形成于所述第二壁部和所述环形基板之间的挡墙,以在所述脱模孔一侧形成隔离空间将所述脱模孔和所述进液口隔断,所述挡墙与所述脱模孔相背的一侧和所述第二壁部、环形基板及所述雾化管在与所述进液口相对应的空间围合形成储液室。
优选地,所述雾化装置包括与所述第一壁部配合的第二盖体,所述第二壁部形成于所述第二盖体上,所述雾化装置还包括嵌设在所述环形基板上可导电的通气管,所述通气管和所述环形基板的通孔连通;
所述雾化装置还包括雾化组件,所述雾化组件包括导液芯和设置在所述导液芯上的发热件,所述导液芯设置在所述通气管上,且至少一端伸入到所述储液室内;
所述发热件与所述通气管电性连接,所述通气管与所述电池装置的一电极电性连接,所述发热件通过导体穿设所述通气管与所述电池装置的另一电极电性连接。
优选地,所述第二盖体包括环形密封垫和设置在所述密封垫上的定位柱,所述密封垫的内圈孔与所述通气管连通,所述进液口形成于所述密封垫上,所述定位柱轴向伸入到所述隔离空间内,以防止所述密封垫转动。
优选地,所述通气管为导电材质形成的导电管状结构。
优选地,所述环形基板的内圈和所述通气管之间形成有隔离部,以将所述导体和所述通气管绝缘隔离。
优选地,所述雾化装置还包括压合圈,所述压合圈的外圈与所述隔离部的内圈相配合,以将所述导体压合固定在所述压合圈和隔离部之间。
优选地,所述通气管的侧壁上设有用于供所述导体侧向引出的缺口。
优选地,所述雾化安装座还包括由所述环形基板与电池装置相对的一侧轴向延伸的连接管段,所述连接管段上设有与所述缺口位置对应以供所述导体侧向引出的引出槽。
优选地,所述缺口的宽度大于所述引出槽的宽度,且所述引出槽与所述缺口正对的区域在在所述缺口的区域内。
优选地,所述通气管上设有两个所述缺口,且分别位于所述通气管侧壁的两相对侧上。
实施本发明的电子烟,具有以下有益效果:本发明中的烟弹管和雾化装置之间、雾化装置和电池装置之间均可转动连接,烟弹管相对雾化装置由第一位置转动至第二位置时使得出液口和进液口由错位至连通,雾化装置相对电池装置由第三位置转动至第四位置时将两者安装到位并导通,且烟弹管相对雾化装置由第一位置到第二位置的转动方向和雾化装置相对电池装置的由第三位置到第四位置的转动方向相同,可以使得一步完成两个连接部位的安装,并在烟弹管转动过程中使得出液口和进液口错位或连通。
附图说明
下面将结合附图及实施例对本发明作进一步说明,附图中:
图1是本发明实施例中的电子烟的立体结构示意图;
图2是图1中的电子烟的轴向剖面结构示意图;
图3是图2中的局部视图A的放大示意图;
图4是图2中的烟弹管相对雾化装置在第一位置时的分解示意图;
图5是图2中的烟弹管相对雾化装置在第二位置时的分解示意图;
图6是图2中的烟弹管相对雾化装置在第二位置时另一角度的剖面示意图;
图7是烟弹管的立体示意图;
图8是雾化安装座、通气管及压合圈的组装状态立体示意图;
图9是雾化安装座、通气管及压合圈的组装状态另一角度的立体示意图;
图10是雾化安装座、通气管、雾化组件、压合圈及螺纹套的组装状态轴向剖面示意图。
具体实施方式
为了对本发明的技术特征、目的和效果有更加清楚的理解,现对照附图详细说明本发明的具体实施方式。
如图1至图6所示,本发明一个优选实施例中的电子烟包括烟弹管10、 雾化装置 20 及电池装置30。烟弹管10安装于雾化装置20上,并可相对于雾化装置20在一个第一位置和一个第二位置之间转动;雾化装置20可相对电池装置30在一个第三位置和一个第四位置之间转动,进一步地,第一位置到第二位置的转动方向与第三位置到第四位置的转动方向一致。两个连接部位的转动配合,可通过两部位之间的摩擦力的不同实现两连接部位按先后顺序打开或关闭。
再结合图7所示,烟弹管10包括烟弹管本体11以及第一盖体12。烟弹管本体11包括储液腔111以及与储液腔111对应的开口112。第一盖体12设置在开口112上与雾化装置20相对设置,对储液腔111封盖。第一盖体12上设有将储液腔111内部与外部相连通的出液口121,出液口121的数量可为一个或多个。在其他实施例中,第一盖体12也可为与烟弹管本体11一体并与雾化装置20相对的第一壁部,出液口121形成于该第一壁部上。
优选地,烟弹管10与雾化装置20共轴地安装在一起,并能相对雾化装置20绕其轴线在第一位置和第二位置之间来回转动。在其他实施例中,烟弹管10与雾化装置20也可采用偏心等不共轴的安装。
由图3至图6所示,雾化装置20包括雾化安装座21、第二盖体22、通气管23、雾化组件24及压合圈25。结合图8所示,雾化安装座21包括环形基板211、形成于环形基板211的外圈向烟弹管10一侧侧向延伸的筒状雾化管212、及形成于环形基板211上向烟弹管10一侧延伸设置的挡墙213。
雾化管212套设到烟弹管10端部,雾化管212的内侧壁上沿周向设有两个卡台2121,再结合图7所示,烟弹管本体11与雾化装置20对应的端部外圈上设有两个与卡台2121对应的两个卡槽111,卡槽111包括沿周向延伸的转动槽112以及连通在转动槽112和烟弹管10与雾化管212对应的端部的引导槽113,引导槽113供卡台2121导入到转动槽112内,转动槽112为烟弹管10提供转动空间。两个卡台2121和两个卡槽111分别对称设置,保证受力的均匀性。卡台2121和卡槽111的数量也可分别为一个或三个或其他数量,以能保证烟弹管10和雾化管212相互转动即可。
如图8、图9所示,环形基板211上设有与卡台2121轴向对应的脱模孔2111,以在成型雾化安装座21时,成型卡台2121的模芯可由脱模孔2111轴向向外远离卡台2121脱出,直接在雾化管212的内壁上形成卡台2121。环形基板211的内圈形成有通孔2112,通气管23嵌设在环形基板211上与通孔2112相连通,并与挡墙213配合。
再如图3至图6所示,第二盖体22包括密封垫221和设置在密封垫221上的定位柱222,密封垫221也呈环形,与环形基板211间隔设置,并盖合在挡墙213和通气管23的端面上,在挡墙213与脱模孔2111相背的一侧与环形基板211、雾化管212围合形成储液室26,在其他实施例中,通气管23也可为与雾化安装座21一体结构。密封垫221的中部的内圈孔与通气管23连通,密封垫221上形成有与储液室26相连通的进液口2211。进液口2211的数量可为一个或多个,且与出液口121的位置、大小相对应。烟弹管10在第一位置时,出液口121与进液口2211相互错位,使得储液腔111与储液室26相隔断;烟弹管10在第二位置时,出液口121与进液口2211位置相对应,将储液腔111与储液室26相连通。
脱模孔2111和进液口2211在周向上错位设置,挡墙213在脱模孔2111一侧形成隔离空间对脱模孔2111和进液口2211进行隔断。定位柱222轴向伸入到隔离空间内,防止密封垫221转动。烟弹管10的第一盖体12可绕轴线转动地与密封垫221贴合,可保证出液口121和进液口2211之间的烟液不会侧向泄漏。在其他实施例中,密封垫221也可为与雾化安装座21一体的第二壁部。
如图10所示,雾化组件24包括导液芯241和设置在导液芯241上的发热件242,导液芯241设置在通气管23上,且至少一端伸入到储液室26内。进一步地,通气管23为可导电的部件,发热件242与通气管23电性连接,通气管23与电池装置30的一电极电性连接,发热件242通过导体243穿设通气管23与电池装置30的另一电极电性连接。优选地,通气管23为导电材质形成的导电管状结构,在其他实施例中,通气管23上也可设有可导电的导电部与发热件242电性连接,并和电池装置30的一电极电性连接。
环形基板211的内圈和通气管23之间形成有隔离部2113,以将导体243和通气管23绝缘隔离,防止短路。优选地,雾化装置20还包括压合圈25,压合圈25的外圈与隔离部2113的内圈相配合,以将导体243压合固定在压合圈25和隔离部2113之间,防止导体243晃动。
进一步地,雾化安装座21还包括由环形基板211与电池装置30相对的一侧向外延伸的连接管段214,连接管段214的外围套设有可导电的螺纹管27,以和电池装置30螺纹配合并电性连接,当然,也可通过引出的导体243直接与电池装置30电性连接。在通气管23的侧壁上设有用于供导体243侧向引出的缺口231,让导体243侧向引线出去和螺纹管27电性连接,以方便和电池装置30电性连接。优选的,通气管23包括设置在两相对侧壁上的两个缺口231,以方便模具对管状通气管23一次性冲切。
在连接管段214的侧壁上设有与其中一个缺口231对应的引出槽2141,对侧向引出的导体243可进行避让隐藏,防止占用空间,并保持美观。进一步地,缺口231的宽度大于引出槽2141的宽度,且引出槽2141与缺口231正对的区域在在缺口231的区域内,可避免导体243经过引出槽2141时与通气管23接触造成短路。
再如图3至图6所示,雾化安装座21与电池装置30螺纹配合,雾化装置20在第三位置时,雾化装置20与电池装置30分离;雾化装置20在第四位置时,雾化装置20与电池装置30相配合,并使得通气管23和螺纹管27分别与电池装置30的两个电极电性连接。当烟弹管10和雾化装置20之间的转动摩擦力与雾化装置20与电池装置30之间的转动摩擦力不同时,握持电子烟的两端沿轴线正向和反向转动,烟弹管10和雾化装置20之间、雾化装置20与电池装置30之间会产生一个先后转动顺序。
当烟弹管10和雾化装置20之间的转动摩擦力大于雾化装置20与电池装置30之间的转动摩擦力时,由于摩擦力不同,雾化装置20相对电池装置30先由第三位置旋紧到第四位置,两者安装到位后,烟弹管10相对雾化装置20再由第一位置转动至第二位置,让进液口2211和出液口121由错位隔断转动至连通导通,使储液腔111内的烟液流向储液室26,即可开始使用。当然,可以在雾化装置20和电池装置30安装到位后,决定是否需要继续转动,进而使进液口2211和出液口121导通,当不需要储液腔111内的烟液流出使用时,可以先保持烟弹管10在第一位置。
当烟弹管10和雾化装置20之间的转动摩擦力小于雾化装置20与电池装置30之间的转动摩擦力时,由于摩擦力不同,烟弹管10相对雾化装置20先由第一位置转动至第二位置,让进液口2211和出液口121由错位隔断转动至连通导通,使储液腔111内的烟液流向储液室26,雾化装置20相对电池装置30再由第三位置旋紧到第四位置,由于烟液已提前流相储液室26被导液芯241吸附,这样使用者可在雾化组件24与电池装置30导通通电后即可开始使用。
可以理解地,上述各技术特征可以任意组合使用而不受限制。
以上所述仅为本发明的实施例,并非因此限制本发明的专利范围,凡是利用本发明说明书及附图内容所作的等效结构或等效流程变换,或直接或间接运用在其他相关的技术领域,均同理包括在本发明的专利保护范围内。

Claims (17)

  1. 一种电子烟,其特征在于,包括烟弹管(10)、雾化装置(20)及电池装置(30);
    所述烟弹管(10)包括储液腔(111)以及将所述储液腔(111)内部与外部相连通的至少一个出液口(121);
    所述雾化装置(20)包括储液室(26)以及将所述储液室(26)内部与外部连通的至少一个进液口(2211);
    所述烟弹管(10)安装于所述雾化装置(20)上,并可相对于所述雾化装置(20)在一个第一位置和一个第二位置之间转动,所述烟弹管(10)在所述第一位置时,所述至少一个出液口(121)与所述至少一个进液口(2211)相互错位,使得所述储液腔(111)与所述储液室(26)相隔断;所述烟弹管(10)在所述第二位置时,所述至少一个出液口(121)与所述至少一个进液口(2211)位置相对应,将所述储液腔(111)与所述储液室(26)相连通;
    所述雾化装置(20)可相对所述电池装置(30)在一个第三位置和一个第四位置之间转动,所述雾化装置(20)在第三位置时,所述雾化装置(20)与所述电池装置(30)分离,所述雾化装置(20)在所述第四位置时,所述雾化装置(20)与所述电池装置(30)相配合,所述第一位置到所述第二位置的转动方向与所述第三位置到所述第四位置的转动方向一致。
  2. 根据权利要求1所述的电子烟,其特征在于,所述雾化装置(20)包括雾化安装座(21),所述雾化安装座(21)包括套设到所述烟弹管(10)端部的筒状雾化管(212),所述雾化管(212)的内侧壁上沿周向设有至少一个卡台(2121),所述烟弹管(10)与所述雾化装置(20)对应的端部外圈上设有至少一个与所述卡台(2121)对应的至少一个卡槽(111),所述卡槽(111)包括沿周向延伸的转动槽(112),为所述烟弹管(10)提供转动空间。
  3. 根据权利要求2所述的电子烟,其特征在于,所述雾化装置(20)和所述电池装置(30)螺纹配合。
  4. 根据权利要求1至3任一项所述的电子烟,其特征在于,所述烟弹管(10)和所述雾化装置(20)之间的摩擦力与所述雾化装置(20)和所述电池装置(30)之间的摩擦力不同。
  5. 根据权利要求2所述的电子烟,其特征在于,所述雾化安装座(21)还包括环形基板(211),所述雾化管(212)由所述环形基板(211)的外圈侧向延伸形成,所述环形基板(211)上设有与所述卡台(2121)轴向对应的脱模孔(2111)。
  6. 根据权利要求5所述的电子烟,其特征在于,所述至少一个卡台(2121)包括对称设置在所述雾化管(212)内壁的两相对侧的两个卡台(2121),所述环形基板(211)上设有与所述卡台(2121)对应的两个脱模孔(2111),所述至少一个卡槽(111)包括对称设置在所述烟弹管(10)两相背的侧壁上的两个卡槽(111)。
  7. 根据权利要求5所述的电子烟,其特征在于,所述烟弹管(10)与所述雾化装置(20)共轴地安装在一起,并能相对所述雾化装置(20)绕其轴线在所述第一位置和所述第二位置之间来回转动;
    所述烟弹管(10)包括与所述雾化装置(20)相对的第一壁部,所述至少一个出液口(121)形成于该第一壁部上;
    所述雾化装置(20)包括与所述烟弹管(10)相对的第二壁部,所述第一壁部可绕所述轴线转动地与所述第二壁部贴合,所述至少一个进液口(2211)形成于该第二壁部上。
  8. 根据权利要求7所述的电子烟,其特征在于,所述第二壁部和所述环形基板(211)间隔设置,且所述脱模孔(2111)和所述进液口(2211)在周向上错位设置;
    所述雾化安装座(21)还包括形成于所述第二壁部和所述环形基板(211)之间的挡墙(213),以在所述脱模孔(2111)一侧形成隔离空间将所述脱模孔(2111)和所述进液口(2211)隔断,所述挡墙(213)与所述脱模孔(2111)相背的一侧和所述第二壁部、环形基板(211)及所述雾化管(212)在与所述进液口(2211)相对应的空间围合形成储液室(26)。
  9. 根据权利要求8所述的电子烟,其特征在于,所述雾化装置(20)包括与所述第一壁部配合的第二盖体(22),所述第二壁部形成于所述第二盖体(22)上,所述雾化装置(20)还包括嵌设在所述环形基板(211)上可导电的通气管(23),所述通气管(23)和所述环形基板(211)的通孔(2112)连通;
    所述雾化装置(20)还包括雾化组件(24),所述雾化组件(24)包括导液芯(241)和设置在所述导液芯(241)上的发热件(242),所述导液芯(241)设置在所述通气管(23)上,且至少一端伸入到所述储液室(26)内;
    所述发热件(242)与所述通气管(23)电性连接,所述通气管(23)与所述电池装置(30)的一电极电性连接,所述发热件(242)通过导体(243)穿设所述通气管(23)与所述电池装置(30)的另一电极电性连接。
  10. 根据权利要求9所述的电子烟,其特征在于,所述第二盖体(22)包括环形密封垫(221)和设置在所述密封垫(221)上的定位柱(222),所述密封垫(221)的内圈孔与所述通气管(23)连通,所述进液口(2211)形成于所述密封垫(221)上,所述定位柱(222)轴向伸入到所述隔离空间内,以防止所述密封垫(221)转动。
  11. 根据权利要求9所述的电子烟,其特征在于,所述通气管(23)为导电材质形成的导电管状结构。
  12. 根据权利要求9或11所述的电子烟,其特征在于,所述环形基板(211)的内圈和所述通气管(23)之间形成有隔离部(2113),以将所述导体(243)和所述通气管(23)绝缘隔离。
  13. 根据权利要求12所述的电子烟,其特征在于,所述雾化装置(20)还包括压合圈(25),所述压合圈(25)的外圈与所述隔离部(2113)的内圈相配合,以将所述导体(243)压合固定在所述压合圈(25)和隔离部(2113)之间。
  14. 根据权利要求12所述的电子烟,其特征在于,所述通气管(23)的侧壁上设有用于供所述导体(243)侧向引出的缺口(231)。
  15. 根据权利要求14所述的电子烟,其特征在于,所述雾化安装座(21)还包括由所述环形基板(211)与电池装置(30)相对的一侧轴向延伸的连接管段(214),所述连接管段(214)上设有与所述缺口(231)位置对应以供所述导体(243)侧向引出的引出槽(2141)。
  16. 根据权利要求15所述的电子烟,其特征在于,所述缺口(231)的宽度大于所述引出槽(2141)的宽度,且所述引出槽(2141)与所述缺口(231)正对的区域在在所述缺口(231)的区域内。
  17. 根据权利要求14所述的电子烟,其特征在于,所述通气管(23)上设有两个所述缺口(231),且分别位于所述通气管(23)侧壁的两相对侧上。
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