WO2023103449A1 - 一种雾化器及电子雾化装置 - Google Patents

一种雾化器及电子雾化装置 Download PDF

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Publication number
WO2023103449A1
WO2023103449A1 PCT/CN2022/113639 CN2022113639W WO2023103449A1 WO 2023103449 A1 WO2023103449 A1 WO 2023103449A1 CN 2022113639 W CN2022113639 W CN 2022113639W WO 2023103449 A1 WO2023103449 A1 WO 2023103449A1
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WO
WIPO (PCT)
Prior art keywords
bracket
oil cup
oil
bottom cover
assembly
Prior art date
Application number
PCT/CN2022/113639
Other languages
English (en)
French (fr)
Inventor
蒋桃平
Original Assignee
深圳市卓力能技术有限公司
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Publication of WO2023103449A1 publication Critical patent/WO2023103449A1/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
    • A24F40/10Devices using 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
    • A24F40/40Constructional details, e.g. connection of cartridges and battery parts
    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F40/00Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
    • A24F40/40Constructional details, e.g. connection of cartridges and battery parts
    • A24F40/42Cartridges or containers for inhalable precursors
    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F40/00Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
    • A24F40/40Constructional details, e.g. connection of cartridges and battery parts
    • A24F40/46Shape or structure of electric heating means

Definitions

  • the present application belongs to the technical field of atomization equipment, and in particular relates to an atomizer and an electronic atomization device.
  • the atomization device refers to the device that forms the atomized state of the stored atomizable substance through the atomization process, such as: air humidifier, medical atomizer, electronic suction equipment, etc. , atomizing oil and other atomizing liquid atomization.
  • the mesh heating core is used as the atomizing core.
  • the general mesh atomizing core includes mesh and oil-conducting cotton.
  • the oil-conducting cotton needs to be manually wrapped around the mesh to form a columnar atomizing core. , and then install it into the atomizer with other components (such as bracket components), where the atomized liquid in the atomizer can flow from the side of the columnar atomizing core to the mesh.
  • the aerosol flows from the columnar atomization
  • the central hole of the chemical core comes out and is sucked by the user along with the suction airflow.
  • the technical purpose of the present application is to provide an atomizer and an electronic atomization device, which are used to solve the problem in the related art that the structure of the atomization core makes the assembly process of the atomizer cumbersome and complicated, and affects the assembly efficiency.
  • an atomizer including an oil cup and an atomization assembly installed on the oil cup, and the atomization assembly includes a bottom cover assembly and a bracket assembly;
  • the bottom cover assembly includes an oil cup bottom cover installed at one end of the oil cup, two spaced electrodes arranged on the bottom cover of the oil cup and extending into the oil cup, and two ends connected to two electrodes respectively.
  • the heating mesh of the electrode, the length extension direction of the electrode is parallel to the plate surface of the heating mesh;
  • the bracket assembly includes a bracket assembled on the bottom cover of the oil cup and sheathed outside the heating mesh, and an oil guiding member arranged on one side of the bracket and close to one side of the heating mesh, The outer side of the bracket is sealingly connected to the inner wall of the oil cup, and the bracket and the oil cup are enclosed to form a liquid storage chamber in fluid communication with the oil guiding member.
  • bracket is sheathed on the bottom cover of the oil cup, the bracket and the bottom cover of the oil cup enclose an atomization chamber, and an assembly opening communicating with the atomization chamber is provided on the peripheral side of the bracket , the oil guiding member is embedded in the assembly opening to separate the atomizing chamber and the liquid storage chamber.
  • the bottom cover of the oil cup defines an air inlet connected to the atomization chamber
  • the oil cup includes an air guide tube
  • the bracket defines an outlet hole connected to the air guide tube
  • the bracket further includes a cover plate embedded in the assembly opening and abutting against the side of the oil guiding member away from the heating mesh, at least one of the cover plate and the bracket Or open the lower oil hole for the atomized medium in the liquid storage chamber to flow to the oil guide member.
  • bracket is provided with a first positioning structure
  • cover plate is provided with a second positioning structure fixedly assembled with the first positioning structure
  • the first positioning structure includes a positioning groove opened on the outside of the bracket and a positioning protrusion arranged in the positioning groove
  • the second positioning structure includes a The connecting foot is bent and extended around the bracket, the connecting foot is matched with the positioning groove, and the connecting foot is provided with a bayonet that is snap-fitted with the positioning protrusion.
  • the atomizer includes two heating meshes arranged at intervals and parallel to each other, and the two heating meshes are respectively connected to the opposite sides of the electrodes, and the peripheral side of the bracket is provided with two respectively and two The assembly openings facing the heating mesh are embedded with the oil guiding member and the cover plate.
  • the outer side of the bottom cover of the oil cup is provided with a first hook
  • the inner side of the oil cup is provided with a first snap-in opening that is snap-fitted with the first hook
  • the outer side of the bottom cover of the oil cup is also provided with a second hook, and the bracket is provided with a second snap-in opening that is snap-fitted with the second hook.
  • a first annular groove is provided on the peripheral side of the bottom cover of the oil cup, and the bottom cover assembly also includes a first sealing ring embedded in the first annular groove, and the outer side of the first sealing ring abuts against connected to the inner wall of the oil cup; and/or,
  • a second annular groove is provided on the peripheral side of the bracket, and the bracket assembly further includes a second sealing ring embedded in the second annular groove, and the outer side of the second sealing ring abuts against the oil cup. inner wall.
  • the bottom cover assembly further includes an oil absorbing member assembled on a side of the bottom cover facing the liquid storage chamber.
  • the present application also provides an electronic atomization device, including the above-mentioned atomizer.
  • the nebulizer and electronic atomization device provided by this application have the beneficial effects of:
  • the plate surface is parallel to the length direction of the electrode, which means that the heating mesh is vertically assembled to the electrode, and the bracket is assembled on the bottom cover of the oil cup and sleeved on the heating mesh
  • the oil guide is assembled on one side of the bracket and close to the side of the heating mesh, that is, the oil guide is also vertically installed and can be directly assembled on the side of the bracket, and the bracket and the oil cup are enclosed to form a connection with the oil guide
  • the liquid storage chamber is connected by liquid, and the atomized medium can be directed to the heating mesh through the oil guide, and then atomized through the heating mesh to form an aerosol. Adopting such a structural method can make the assembly of the heating mesh and the oil guide more convenient and simple, thereby improving the assembly efficiency of the product.
  • Fig. 1 is a schematic diagram of an exploded structure of an atomizer in the first implementation mode in the embodiment of the present application;
  • Fig. 2 is a schematic diagram of the exploded structure of the atomization assembly of the atomizer in the first implementation mode in the embodiment of the present application;
  • Fig. 3 is a schematic cross-sectional structure diagram of the atomizer in the first implementation mode in the embodiment of the present application;
  • Fig. 4 is a schematic diagram of the exploded structure of the atomization assembly of the atomizer in the second implementation mode in the embodiment of the present application;
  • Fig. 5 is a schematic cross-sectional structure diagram of an atomizer in a second implementation manner in the embodiment of the present application.
  • each reference sign indicates: 10, liquid storage chamber; 20, atomization chamber; 1, oil cup; 2, atomization assembly; 11, air guide tube; Cover assembly; 22, bracket assembly; 211, oil cup bottom cover; 212, electrode; 213, heating mesh; 214, first sealing ring; 215, oil absorbing part; 221, bracket; Two sealing rings; 224, seals; 2111, air intake hole; 2112, first hook; 2113, second hook; 2114, first annular groove; 2211, second annular groove; 2212, cover plate; 22111, Lead-out hole; 22112, assembly opening; 22113, first positioning structure; 22114, second clamping opening; 22121, lower oil hole; 22122, second positioning structure.
  • an electronic atomization device including a battery rod and an atomizer.
  • the battery rod is provided with a power supply and a control circuit, and the control circuit is used to control the power supply to supply power to the atomizer; with reference to Figure 1- 5.
  • the atomizer includes an oil cup 1 and an atomization assembly 2 installed on the oil cup 1.
  • the atomization assembly 2 includes a bottom cover assembly 21 and a bracket assembly 22;
  • the bottom cover assembly 21 includes an oil cup bottom installed at one end of the oil cup 1
  • the bracket assembly 22 includes a bracket 221 assembled on the bottom cover 211 of the oil cup and sleeved outside the heating mesh 213, and an oil guide arranged on one side of the bracket 221 and close to the side of the heating mesh 213 222 , the outer side of the bracket 221 is sealingly connected to the inner wall of the oil cup 1 , and the bracket 221 and the oil cup 1 enclose to form the liquid storage chamber 10 that is in fluid communication with the oil guide 222 .
  • the plate surface is parallel to the length direction of the electrode 212, which means that the heating mesh 213 is vertically assembled to the electrode 212, and the bracket 221 is assembled on the oil cup bottom cover 211 and Set outside the heating mesh 213, the oil guide 222 is assembled on one side of the bracket 221 and close to the side of the heating mesh 213, that is, the oil guide 222 is also vertically installed and can be directly assembled on the side of the bracket 221 , the bracket 221 and the oil cup 1 are enclosed to form a liquid storage chamber 10 in liquid communication with the oil guide 222, and the atomized medium can be guided to the heating mesh 213 through the oil guide 222, and then atomized by the heating mesh 213 to form an aerosol. Adopting such a structural method can make the assembly of the heating mesh 213 and the oil guiding member 222 more convenient and simple, thereby improving the assembly efficiency of the product.
  • the bracket 221 is sleeved on the bottom cover 211 of the oil cup.
  • the bracket 221 and the bottom cover 211 of the oil cup form an atomization chamber 20.
  • the trachea 11 and the bracket 221 have outlet holes 22111 connected to the air guide tube 11, wherein the outlet holes 22111 can be set on the top of the bracket 221 (that is, the end of the bracket 221 away from the bottom cover 211 of the oil cup), and the peripheral side of the bracket 221 is provided with a communication mist
  • the assembly opening 22112 of the atomization chamber 20 , and the oil guide 222 is embedded in the assembly opening 22112 to separate the atomization chamber 20 and the liquid storage chamber 10 .
  • the inside of the bracket 221 is a cavity.
  • the electrode 212 and the heating mesh 213 are located in the cavity.
  • the oil-guiding member 222 is embedded in the assembly opening 22112.
  • the oil-guiding member 222 matches the assembly opening 22112 and is connected with the edge seal.
  • the atomizing medium in the liquid chamber 10 can only flow to the heating mesh 213 through the oil guide 222, and then atomize in the atomizing chamber 20 to form an aerosol, and the outside air can enter the atomizing chamber through the air inlet 2111 20, the aerosol in the atomization chamber 20 can flow out through the outlet and the air duct 11 for the user to inhale, so as to achieve a good experience.
  • the bracket assembly 22 also includes a cover plate 2212 embedded in the assembly opening 22112 and abutted against the side of the oil guiding member 222 away from the heating mesh 213 , at least one of the cover plate 2212 and the bracket 221 is opened for the liquid storage chamber 10
  • the atomized medium inside flows into the lower oil hole 22121 of the oil guide member 222 .
  • the cover plate 2212 defines two symmetrically arranged lower oil holes 22121 , and the openings of the lower oil holes 22121 face the liquid storage chamber 10 .
  • the lower oil hole 22121 can be separately opened on the bracket 221 .
  • the bracket 221 may have a gap, and the cover plate 2212 may also have a gap.
  • the gaps of the two together form a lower oil hole 22121 .
  • the location, shape and quantity of the lower oil holes 22121 are not limited here, as long as the atomized medium in the liquid storage chamber 10 can be guided to the oil guide 222 .
  • the bracket 221 is provided with a first positioning structure 22113
  • the cover plate 2212 is provided with a second positioning structure 22122 fixedly assembled with the first positioning structure 22113
  • the first positioning structure 22113 includes a positioning groove opened on the outside of the bracket 221 and a positioning protrusion disposed in the positioning groove, the positioning groove communicates with the assembly opening 22112, and the opposite ends of the assembly opening 22112 Positioning grooves are provided, and positioning protrusions are arranged in each positioning groove, and the side of the positioning protrusions close to the assembly opening 22112 is a guiding inclined surface, and the second positioning structure 22122 includes from the end of the cover plate 2212 along the bracket.
  • the connecting feet that are bent and extended around the side, the connecting feet match the positioning grooves
  • the connecting feet are provided with bayonets that fit with the positioning protrusions, and correspond to the positioning grooves
  • the two ends of the cover plate 2212 are provided with connecting feet
  • the connecting feet It is elastic, so that the clamping fit between the cover plate 2212 and the bracket 221 can be realized.
  • the bayonet socket may also be provided on the positioning groove
  • the positioning protrusion may be provided on the connecting pin.
  • the two ends of the heating mesh 213 can be respectively welded and fixed on the same side of the two electrodes 212 by spot welding, and then the bracket 221 is sleeved on one end of the bottom cover 211 of the oil cup.
  • the electrodes 212 and the heating The meshes 213 are all in the bracket 221, and the heating mesh 213 is facing the assembly opening 22112, and then the cover plate 2212 is aligned with the assembly opening 22112, and the connecting feet are respectively corresponding to the positioning grooves, and the guide slope is convenient for the assembly of the connecting feet, and then through
  • the extrusion method makes the cover plate 2212 embedded in the assembly opening 22112, and the bayonet of the connecting pin and the positioning protrusion in the positioning groove realize a snap connection, and the positioning protrusion can prevent the connecting pin from detaching, so as to realize the stability of the cover plate 2212 and the bracket 221 After the connection, the outer surface of the cover plate 2212 and the connecting foot are flush with the outer surface of the bracket 221
  • the first positioning structure 22113 can also be a locking protrusion provided on the inner wall of the assembly opening 22112, and the second positioning structure 22122 can be a locking slot opened on the outside of the cover plate 2212 and corresponding to the position of the locking protrusion.
  • the groove and the protrusion match, and only need to press the cover plate 2212 into the assembly opening 22112 during assembly, so that the protrusion and the groove snap fit together.
  • the structures of the first positioning structure 22113 and the second positioning structure 22122 are not limited to the above methods, and other detachable connection structures can also be used to achieve positioning and fixing, such as screw connection, magnetic attraction connection of magnetic parts, etc.
  • the first positioning structure 22113 and the second positioning structure 22122 can be threaded holes opened in the bracket 221 and the cover plate 2212 respectively, and the first positioning structure 22113 and the second positioning structure 22122 are connected by screws matching the respective threaded holes;
  • the first positioning structure 22113 and the second positioning structure 22122 can be magnets integrally injection-molded in the bracket 221 and the cover plate 2212 respectively, and the magnets in the bracket 221 and the magnets in the cover plate 2212 have opposite polarities on the matching side, so that To achieve magnetic mutual attraction positioning, of course, the magnet in one of the bracket 221 and the cover plate 2212 can be replaced by a magnetic attraction such as an iron block.
  • the heating mesh 213 can be directly spot-welded to the electrode 212 to conduct the circuit, and the oil guide 222 can be directly assembled into the assembly opening 22112 from the side of the bracket 221, and finally the cover plate 2212 is fixed and assembled.
  • the operation is convenient and simple, and it is more convenient to realize automatic production, which solves the tedious and complicated process of traditional manual cotton wrapping in the industry.
  • composition of the atomization assembly 2 in two different implementation modes is provided:
  • the atomization assembly 2 only includes a heating mesh 213, the heating mesh 213 is planar, and its two ends are respectively fixed to the two electrodes 212 by spot welding to realize electrical connection, heating
  • the mesh 213 is fixed on the same side of the two electrodes 212, and the part between the two electrodes 212 of the heating mesh 213 has a mesh structure.
  • positioning slots wherein the two positioning slots are respectively located on both sides of the assembly opening 22112 in the circumferential direction of the bracket 221, the bracket assembly 22 includes a cover plate 2212, and two ends of the cover plate 2212 are respectively connected with a connecting foot, Two lower oil holes 22121 are opened on the cover plate 2212.
  • the atomized medium in the liquid storage chamber 10 is guided to the heating mesh 213 for atomization only from one side of the bracket assembly 22 through the oil guide 222.
  • the aerosol is formed, and the atomization assembly 2 has fewer components, and the assembly is more efficient and quicker.
  • the atomizer includes two heating meshes 213 arranged at intervals and parallel to each other.
  • the two heating meshes 213 are respectively connected to opposite sides of the electrode 212 .
  • this interval is opposite to the air inlet 2111, and the positioning grooves corresponding to the connecting feet of the two cover plates 2212 are connected as a whole, that is, the connecting feet at the same end of the two cover plates 2212 can share a positioning groove, and the two cover plates After the assembly of 2212 is completed, the connecting feet of the two cover plates 2212 are respectively embedded in the corresponding positions of the positioning grooves, so that the integrity of the cover plate 2212 and the bracket 221 is better after being connected.
  • the liquid storage chamber 10 After using two heating meshes 213, the liquid storage chamber 10 The atomized medium can be guided to the corresponding heating mesh 213 through the four lower oil holes 22121 respectively through the two oil guides 222, so as to atomize and form an aerosol, which can improve the atomization efficiency and atomization amount, and improve the user's smoking experience. experience.
  • composition of the aforementioned two different implementations of the atomization assembly 2 is only a part of the example. Under the present concept, the skilled person can make adaptive modifications to the above structure. It should be understood that the modified technical solution under the present concept is also included in this application. within the scope of protection.
  • the corresponding positions of the two electrodes 212 can be provided with card caulking.
  • the two ends of the heating mesh 213 can be respectively embedded in the card caulking, and then through spot welding Realize electrical connection;
  • two heating meshes 213 when two heating meshes 213 are set, two sets of electrodes 212 at intervals can be set, each group of electrodes 212 includes two electrodes 212, and each group of electrodes 212 is provided with two heating meshes 213, and The heating mesh 213 is disposed on a side of the set of electrodes 212 away from the other set of electrodes 212 .
  • the atomization assembly 2 may include three, four, five, etc. heating meshes 213.
  • each heating mesh 213 may be provided with a corresponding set of electrodes 212, and each group The electrode 212 includes two electrodes 212, and each heating mesh 213 is arranged circularly.
  • the heating mesh 213 can be flat or arc-shaped, and the bracket 221 has an assembly opening 22112 corresponding to the heating mesh 213 one-to-one.
  • the bracket assembly 22 also includes an oil guide 222 corresponding to the heating mesh 213 and a cover plate 2212.
  • the shape of the oil guide 222 matches the heating mesh 213, so the oil guide 222 can be matched with the corresponding heating mesh 213 Fitting, the cover plate 2212 can realize the fixation of the corresponding oil guide member 222.
  • the atomization amount and atomization efficiency can be further improved, and when this structure is adopted, the part can be controlled Or all the heating mesh sheets 213 perform atomization action, so as to realize the adjustment of atomization amount and atomization efficiency.
  • the outer side of the oil cup bottom cover 211 is provided with a first hook 2112, and the inner side of the oil cup 1 is provided with a first engaging opening 12 that is snap-fitted with the first hook 2112; and/or, the oil cup 1
  • the outer side of the bottom cover 211 is also provided with a second hook 2113 , and the bracket 221 defines a second locking opening 22114 snap-fitted with the second hook 2113 .
  • a first annular groove 2114 is provided on the peripheral side of the bottom cover 211 of the oil cup.
  • the bottom cover assembly 21 also includes a first sealing ring 214 embedded in the first annular groove 2114. The outer side of the first sealing ring 214 abuts against the oil cup 1 the inner wall.
  • a second annular groove 2211 is provided on the peripheral side of the bracket 221.
  • the bracket assembly 22 also includes a second sealing ring 223 embedded in the second annular groove 2211. The outer side of the second sealing ring 223 abuts against the inner wall of the oil cup 1, and the bottom
  • the cover assembly 21 also includes an oil absorbing member 215 assembled on the side of the bottom cover facing the liquid storage chamber 10.
  • the oil absorbing member 215 can be assembled on the side of the oil cup bottom cover 211 after the electrode 212 is assembled on the oil cup bottom cover 211, and then Fix the heating mesh 213 to the electrode 212 by spot welding; a sealing member 224 is provided between the outlet hole 22111 of the bracket 221 and the end of the air duct 11 .
  • the bracket 221 can be made of silica gel material
  • the bottom cover 211 of the oil cup can be made of plastic material
  • the first locking opening 12 is a blind hole
  • the second locking opening 22114 is opened on the bracket 221 and is a through hole.
  • the bracket 221 When the bottom cover 211 of the oil cup is used, only the end of the bracket 221 needs to be aligned with the bottom cover 211 of the oil cup, and after the second hook 2113 is aligned with the second snap-in opening 22114, the bracket 221 is squeezed toward the bottom cover, so that the first The second hook 2113 and the second locking opening 22114 can be snapped together, which is convenient and fast; after the atomization assembly 2 is assembled, the first sealing ring 214 and the second sealing ring 223 can be respectively sleeved in the first annular groove 2114 and the second annular groove 2211, it should be understood that the outer sides of the first sealing ring 214 and the second sealing ring 223 respectively protrude from the outer surface of the oil cup bottom cover 211 and the outer surface of the bracket 221, therefore, the atomization assembly 2 is assembled to The process of the oil cup 1 can be to fill the oil cup 1 with atomizing medium first, then align the end of the bracket assembly 22 of the atomization assembly 2 with the
  • the atomizer assembly method of this solution is simpler and faster, suitable for automatic production, and the consistency of product quality is better, which can save labor costs.

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Abstract

一种雾化器及电子雾化装置,雾化器包括油杯(1)和安装于油杯(1)的雾化组件(2),雾化组件(2)包括底盖组件(21)和支架组件(22);底盖组件(21)包括安装于油杯(1)一端的油杯底盖(211)、设置于油杯底盖(211)且伸向油杯(1)内的两间隔设置的电极(212)、以及两端分别连接于两电极(212)的加热网片(213),电极(212)的长度延伸方向平行于加热网片(213)的板面;支架组件(22)包括装配于油杯底盖(211)且套设于加热网片(213)外的支架(221)以及设置于支架(221)的一侧且贴紧加热网片(213)的一侧的导油件(222),支架(221)的外侧密封连接于油杯(1)的内壁,并且支架(221)与油杯(1)围合形成与导油件(222)液体连通的储液腔(10)。电子雾化装置包括电池杆和雾化器。采用这样的结构方式可以使得加热网片(213)和导油件(222)的装配均更为方便和简单,从而提升产品的装配效率。

Description

一种雾化器及电子雾化装置
本申请要求于2021年12月8日在中国专利局提交的、申请号为202123071175.6的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
技术领域
本申请属于雾化设备技术领域,尤其涉及一种雾化器及电子雾化装置。
背景技术
雾化装置是指将存储的可雾化的物质通过雾化过程形成雾化状态的装置,如:空气加湿器、医疗雾化器、电子抽吸设备等,分别用于将水溶剂、药液、雾化油等雾化液雾化。
在一些相关技术中,会采用网片发热芯作为雾化芯,一般的网片雾化芯包括网片和导油棉,通常需要通过人工将导油棉包裹在网片外周组成柱状雾化芯,然后再与其他组件(比如支架组件)安装到雾化器内,其中,雾化器内中雾化液可以从柱状雾化芯侧面导流至网片,雾化时,气溶胶从柱状雾化芯的中心孔出来,随着抽吸气流被用户吸食。
然而,相关技术中的雾化芯结构,需要先将网片与导油棉进行人工包棉操作,会使得雾化器的装配工序繁琐而复杂,影响装配效率。
技术问题
本申请的技术目的在于提供一种雾化器及电子雾化装置,用于解决相关技术中的雾化芯结构会使得雾化器的装配工序繁琐而复杂,影响装配效率的问题。
技术解决方案
为解决上述技术问题,本申请是这样实现的,提供了一种雾化器,包括油杯和安装于所述油杯的雾化组件,所述雾化组件包括底盖组件和支架组件;
所述底盖组件包括安装于所述油杯一端的油杯底盖、设置于所述油杯底盖且伸向所述油杯内的两间隔设置的电极、以及两端分别连接于两所述电极的加热网片,所述电极的长度延伸方向平行于所述加热网片的板面;
所述支架组件包括装配于所述油杯底盖且套设于所述加热网片外的支架以及设置于所述支架的一侧且贴紧所述加热网片的一侧的导油件,所述支架的外侧密封连接于所述油杯的内壁,并且所述支架与所述油杯围合形成与所述导油件液体连通的储液腔。
进一步地,所述支架的一端套设于所述油杯底盖,所述支架和所述油杯底盖围合成雾化腔,所述支架的周侧开设连通所述雾化腔的装配开口,所述导油件嵌置于所述装配开口内以隔开所述雾化腔和所述储液腔。
进一步地,所述油杯底盖开设连通所述雾化腔的进气孔,所述油杯包括导气管,所述支架开设和所述导气管连接的导出孔。
进一步地,所述支架还包括嵌置于所述装配开口且抵接于所述导油件的背离所述加热网片的一侧的盖板,所述盖板和所述支架中的至少一者开设供所述储液腔内的雾化介质流向所述导油件的下油孔。
进一步地,所述支架设置第一定位结构,所述盖板设置和所述第一定位结构固定装配的第二定位结构。
进一步地,所述第一定位结构包括开设于所述支架的外侧的定位槽和设置于所述定位槽内的定位凸起,所述第二定位结构包括自所述盖板的端部沿所述支架周侧弯折延伸的连接脚,所述连接脚和所述定位槽匹配,所述连接脚开设和所述定位凸起卡扣配合的卡口。
进一步地,所述雾化器包括两间隔设置且相互平行的所述加热网片,两所述加热网片分别连接于所述电极相对的两侧,所述支架的周侧开设两分别和两所述加热网片正对的所述装配开口,两所述装配开口均嵌设有所述导油件和所述盖板。
进一步地,所述油杯底盖的外侧设置有第一卡钩,所述油杯的内侧开设和所述第一卡钩卡扣配合的第一卡嵌口;和/或,
所述油杯底盖的外侧还设置有第二卡钩,所述支架开设和所述第二卡钩卡扣配合的第二卡嵌口。
进一步地,所述油杯底盖的周侧开设第一环形槽,所述底盖组件还包括嵌置于所述第一环形槽内的第一密封圈,所述第一密封圈的外侧抵接于所述油杯的内壁;和/或,
所述支架的周侧开设第二环形槽,所述支架组件还包括嵌置于所述第二环形槽内的第二密封圈,所述第二密封圈的外侧抵接于所述油杯的内壁。
进一步地,所述底盖组件还包括装配于所述底盖朝向所述储液腔的一侧的吸油件。
本申请还提供了一种电子雾化装置,包括如上所述的雾化器。
有益效果
本申请提供的雾化器及电子雾化装置与现有技术相比,有益效果在于:
在本方案中,加热网片在装配时板面平行于电极的长度方向,即相当于加热网片是竖着装配到电极的,而且,支架装配于油杯底盖且套设于加热网片外,导油件装配于支架的一侧且贴紧加热网片的一侧,即导油件也是竖向设置且可以直接侧面整块装配于支架,支架与油杯围合形成与导油件液体连通的储液腔,雾化介质可以通过导油件导向加热网片,然后通过加热网片雾化形成气溶胶。采用这样的结构方式可以使得加热网片和导油件的装配均更为方便和简单,从而提升产品的装配效率。
附图说明
图1是本申请实施例中第一种实现方式的雾化器的分解结构示意图;
图2是本申请实施例中第一种实现方式的雾化器的雾化组件的分解结构示意图;
图3是本申请实施例中第一种实现方式的雾化器的剖面结构示意图;
图4是本申请实施例中第二种实现方式的雾化器的雾化组件的分解结构示意图;
图5是本申请实施例中第二种实现方式的雾化器的剖面结构示意图。
在附图中,各附图标记表示:10、储液腔;20、雾化腔;1、油杯;2、雾化组件;11、导气管;12、第一卡嵌口;21、底盖组件;22、支架组件;211、油杯底盖;212、电极;213、加热网片;214、第一密封圈;215、吸油件;221、支架;222、导油件;223、第二密封圈;224、密封件;2111、进气孔;2112、第一卡钩;2113、第二卡钩;2114、第一环形槽;2211、第二环形槽;2212、盖板;22111、导出孔;22112、装配开口;22113、第一定位结构;22114、第二卡嵌口;22121、下油孔;22122、第二定位结构。
本发明的实施方式
为了使本申请的目的、技术方案及优点更加清楚明白,以下结合附图及实施例,对本申请进行进一步详细说明。应当理解,此处所描述的具体实施例仅仅用以解释本申请,并不用于限定本申请。
实施例:
在本实施例中,提供一种电子雾化装置,包括电池杆和雾化器,电池杆内设有供电电源和控制电路,控制电路用于控制供电电源为雾化器供电;结合图1-5,雾化器包括油杯1和安装于油杯1的雾化组件2,雾化组件2包括底盖组件21和支架组件22;底盖组件21包括安装于油杯1一端的油杯底盖211、设置于油杯底盖211且伸向油杯1内的两间隔设置的电极212、以及两端分别连接于两电极212的加热网片213,电极212的长度延伸方向平行于加热网片213的板面;支架组件22包括装配于油杯底盖211且套设于加热网片213外的支架221以及设置于支架221的一侧且贴紧加热网片213的一侧的导油件222,支架221的外侧密封连接于油杯1的内壁,并且支架221与油杯1围合形成与导油件222液体连通的储液腔10。
在本方案中,加热网片213在装配时板面平行于电极212的长度方向,即相当于加热网片213是竖着装配到电极212的,而且,支架221装配于油杯底盖211且套设于加热网片213外,导油件222装配于支架221的一侧且贴紧加热网片213的一侧,即导油件222也是竖向设置且可以直接侧面整块装配于支架221,支架221与油杯1围合形成与导油件222液体连通的储液腔10,雾化介质可以通过导油件222导向加热网片213,然后通过加热网片213雾化形成气溶胶。采用这样的结构方式可以使得加热网片213和导油件222的装配均更为方便和简单,从而提升产品的装配效率。
支架221的一端套设于油杯底盖211,支架221和油杯底盖211围合成雾化腔20,油杯底盖211开设连通雾化腔20的进气孔2111,油杯1包括导气管11,支架221开设和导气管11连接的导出孔22111,其中,导出孔22111可以设置于支架221的顶部(即支架221远离油杯底盖211的一端),支架221的周侧开设连通雾化腔20的装配开口22112,导油件222嵌置于装配开口22112内以隔开雾化腔20和储液腔10。具体的,在本实施例中,支架221的内部为空腔,支架221的一端套设于油杯底盖211时电极212和加热网片213均位于该空腔内,导油件222采用导油棉、导油布或者其他可以用于导油的多孔材料制成的结构件,导油件222嵌置在装配开口22112内,导油件222和装配开口22112匹配且边缘密封连接,因此,储液腔10内的雾化介质仅能通过导油件222导流到加热网片213处,然后在雾化腔20内雾化形成气溶胶,外界空气可以通过进气孔2111进入到雾化腔20内,雾化腔20内的气溶胶可以通过导出口和导气管11流出供使用者吸食,从而实现良好的体验。
支架组件22还包括嵌置于装配开口22112且抵接于导油件222的背离加热网片213的一侧的盖板2212,盖板2212和支架221中的至少之一开设供储液腔10内的雾化介质流向导油件222的下油孔22121。具体的,在本方案中,盖板2212开设两对称设置的下油孔22121,下油孔22121的开口朝向储液腔10。在一些实施例中,支架221可以单独地开设下油孔22121。在一些实施例中,支架221可以开设缺口,盖板2212也可以开设缺口,盖板2212装配到支架221时两者的缺口共同围合成下油孔22121。应当理解,下油孔22121的设置位置、形状和数量在此并不做限定,只要能将储液腔10内的雾化介质导向导油件222即可。
支架221设置第一定位结构22113,盖板2212设置和第一定位结构22113固定装配的第二定位结构22122。具体的,在本实施例中,第一定位结构22113包括开设于支架221的外侧的定位槽和设置于定位槽内的定位凸起,定位槽和装配开口22112连通,装配开口22112相对的两端均开设有定位槽,且每一定位槽内均设置有定位凸起,并且,定位凸起靠近装配开口22112的一侧为导向斜面,第二定位结构22122包括自盖板2212的端部沿支架221周侧弯折延伸的连接脚,连接脚和定位槽匹配,连接脚开设和定位凸起卡扣配合的卡口,和定位槽对应,盖板2212的两端均设置有连接脚,连接脚具有弹性,如此,便可实现盖板2212与支架221的卡接配合。当然,在另一些其他的实施例中,卡口也可以是设置在定位槽上,定位凸起设置在连接脚上。
在装配时,可以先通过点焊方式将加热网片213的两端分别焊接固定在两电极212的同一侧,然后将支架221套设在油杯底盖211的一端,此时电极212和加热网片213均在支架221内,且加热网片213正对于装配开口22112,之后将盖板2212对准装配开口22112,将连接脚分别对应定位槽,其中导向斜面便于连接脚的装配,然后通过挤压方式使盖板2212嵌入到装配开口22112内,连接脚的卡口和定位槽内的定位凸起实现卡扣连接,定位凸起可以阻挡连接脚脱离,实现盖板2212和支架221的稳定连接,装配完成后盖板2212和连接脚的外侧面均和支架221的外侧面平齐,使得支架组件22的整体性更好,并且,盖板2212可以和加热网片213共同实现对导油件222的固定,也即导油件222被夹持在盖板2212和加热网片213之间,使得导油体222与加热网片213可以充分接触。
在一些实施例中,第一定位结构22113也可以是设置于装配开口22112的内壁的卡凸,第二定位结构22122可以是开设于盖板2212的外侧且和卡凸位置对应的卡槽,卡槽和卡凸匹配,在装配时仅需将盖板2212按压入装配开口22112内,使得卡凸和卡槽卡扣配合即可。需要说明的是,第一定位结构22113和第二定位结构22122的结构不限于上述方式,也可以通过其他可拆卸的连接结构方式实现定位固定,比如螺钉螺接、磁吸件磁吸连接等。示例性的:第一定位结构22113和第二定位结构22122可以是分别开设于支架221和盖板2212的螺纹孔,第一定位结构22113和第二定位结构22122通过螺钉匹配各自的螺纹孔相连;第一定位结构22113和第二定位结构22122可以是分别一体注塑于支架221和盖板2212内的磁体,并且支架221内的磁体和盖板2212内的磁体在相匹配侧的极性相反,从而实现磁性相吸定位,当然,支架221和盖板2212之一内的磁体可以替换为铁块等磁吸件。
在本方案中,加热网片213可以直接竖着点焊到电极212导通电路,而导油件222可以直接从支架221的侧面整块装配到装配开口22112内,最后盖板2212固定,装配的操作方便简单,更加便于实现自动化生产,解决了行业传统人工包棉的繁琐和复杂工序。
在本实施例中,提供两种不同实现方式的雾化组件2的组成:
在第一种实现方式中,结合图1-3,雾化组件2仅包括一个加热网片213,加热网片213为平面状,其两端分别和两电极212点焊固定实现电连接,加热网片213固定于两电极212的相同侧,加热网片213的位于两电极212之间的部分为网状结构,对应的,支架221上仅设置一个装配开口22112和两个连接于装配开口22112的定位槽,其中,两个定位槽在支架221的周向方向上分别位于装配开口22112的两侧,支架组件22包括一个盖板2212,且该盖板2212的两端分别连接有一连接脚,盖板2212上开设两个下油孔22121,因此,在这种实现方式中,储液腔10内的雾化介质仅从支架组件22的一侧经过导油件222导向加热网片213雾化形成气溶胶,并且雾化组件2的组成部件较少,装配更为高效快捷。
在第二种实现方式中,结合图4和图5,雾化器包括两间隔设置且相互平行的加热网片213,两加热网片213分别连接于电极212相对的两侧,支架221的周侧开设两分别和两加热网片213正对的装配开口22112,两装配开口22112均嵌设有导油件222和盖板2212,在这种情况下,两加热网片213之间形成间隔,且该间隔和进气孔2111正对,两个盖板2212的连接脚对应的定位槽连为一体,即相当于两个盖板2212的同一端的连接脚可以共用一个定位槽,两个盖板2212装配完成后,两盖板2212的连接脚分别嵌置于定位槽的对应位置,使得盖板2212和支架221相连之后整体性更好,采用两个加热网片213之后,储液腔10内的雾化介质可以通过四个下油孔22121分别通过两导油件222导向对应的加热网片213,从而雾化形成气溶胶,这样可以提高雾化效率和雾化量,提升使用者的吸食体验。
前述两种不同实现方式的雾化组件2的组成仅仅是一部分示例,在本构思下,技术人员可以对上述结构进行适应性修改,应当理解,在本构思下修改后的技术方案也在本申请的保护范围内。例如:在一些实现方式中,两电极212的对应位置可以设置卡嵌缝,在装配加热网片213时,可以将加热网片213的两端分别嵌置在卡嵌缝内,然后通过点焊实现电连接;在一些实现方式中,设置两加热网片213时,可以设置间隔的两组电极212,每组电极212均包括两电极212,每组电极212均设置两加热网片213,且加热网片213设置于该组电极212背离另一组电极212的一侧。
在一些实现方式中,雾化组件2可以包括三个、四个、五个等的加热网片213,在这种情况下,每个加热网片213均可以对应设置一组电极212,每组电极212包括两电极212,并且,各加热网片213环形排布,此时,加热网片213可以是平面状或者弧面状,支架221开设和加热网片213一一对应的装配开口22112,支架组件22还包括和加热网片213一一对应的导油件222以及盖板2212,导油件222的形状和加热网片213匹配,因此,导油件222可以和对应的加热网片213贴合,盖板2212可以实现对应的导油件222的固定,采用多个加热网片213的方案时,可以进一步地提升雾化量和雾化效率,并且,采用这种结构时可以控制部分或全部的加热网片213进行雾化动作,从而实现雾化量和雾化效率的调节。
在本实施例中,油杯底盖211的外侧设置有第一卡钩2112,油杯1的内侧开设和第一卡钩2112卡扣配合的第一卡嵌口12;和/或,油杯底盖211的外侧还设置有第二卡钩2113,支架221开设和第二卡钩2113卡扣配合的第二卡嵌口22114。油杯底盖211的周侧开设第一环形槽2114,底盖组件21还包括嵌置于第一环形槽2114内的第一密封圈214,第一密封圈214的外侧抵接于油杯1的内壁。
支架221的周侧开设第二环形槽2211,支架组件22还包括嵌置于第二环形槽2211内的第二密封圈223,第二密封圈223的外侧抵接于油杯1的内壁,底盖组件21还包括装配于底盖朝向储液腔10的一侧的吸油件215,吸油件215可以在电极212装配于油杯底盖211后装配到油杯底盖211的一侧,之后再将加热网片213点焊固定于电极212;支架221的导出孔22111和导气管11端部之间设置有密封件224。
具体的,支架221可以采用硅胶材料,油杯底盖211可以采用塑胶材料,第一卡嵌口12为盲孔,第二卡嵌口22114开设于支架221且为通孔,在装配支架221和油杯底盖211时,仅需将支架221的端部对准油杯底盖211,且第二卡钩2113对准第二卡嵌口22114后,将支架221朝底盖挤压,使得第二卡钩2113和第二卡嵌口22114卡扣配合即可,方便快捷;将雾化组件2装配完成后,第一密封圈214和第二密封圈223可以分别套设在第一环形槽2114和第二环形槽2211内,应当理解,第一密封圈214和第二密封圈223的外侧分别突出于油杯底盖211的外表面和支架221的外表面,因此,雾化组件2装配到油杯1的过程可以是先将油杯1灌装雾化介质,然后将雾化组件2的支架组件22端对准油杯1的端部,并使第一卡钩2112和第一卡嵌口12的位置对应,将雾化组件2插接于油杯1内,使第一卡钩2112和第一卡嵌口12卡扣配合,第一密封圈214和第二密封圈223的外侧抵紧油杯1的内壁,从而实现雾化组件2和油杯1的牢靠连接,并保证密封性。需要说明的是,油杯底盖211与支架221之间、以及油杯底盖211与油杯1之间也可以采用除卡扣配合之外的其他方式进行固定,比如包括但不限于套接、磁吸连接等。
综上,本方案的雾化器装配方式更加简单快捷,适于自动化生产,并且,产品质量的一致性更好,可以节约人工成本。
以上所述仅为本申请的较佳实施例而已,并不用以限制本申请,凡在本申请的精神和原则之内所作的任何修改、等同替换和改进等,均应包含在本申请的保护范围之内。

Claims (11)

  1. 一种雾化器,包括油杯和安装于所述油杯的雾化组件,其特征在于,所述雾化组件包括底盖组件和支架组件;
    所述底盖组件包括安装于所述油杯一端的油杯底盖、设置于所述油杯底盖且伸向所述油杯内的两间隔设置的电极、以及两端分别连接于两所述电极的加热网片,所述电极的长度延伸方向平行于所述加热网片的板面;
    所述支架组件包括装配于所述油杯底盖且套设于所述加热网片外的支架以及设置于所述支架的一侧且贴紧所述加热网片的一侧的导油件,所述支架的外侧密封连接于所述油杯的内壁,并且所述支架与所述油杯围合形成与所述导油件液体连通的储液腔。
  2. 根据权利要求1所述的雾化器,其特征在于,所述支架的一端套设于所述油杯底盖,所述支架和所述油杯底盖围合成雾化腔,所述支架的周侧开设连通所述雾化腔的装配开口,所述导油件嵌置于所述装配开口内以隔开所述雾化腔和所述储液腔。
  3. 根据权利要求2所述的雾化器,其特征在于,所述油杯底盖开设连通所述雾化腔的进气孔,所述油杯包括导气管,所述支架开设和所述导气管连接的导出孔。
  4. 根据权利要求2所述的雾化器,其特征在于,所述支架组件还包括嵌置于所述装配开口且抵接于所述导油件的背离所述加热网片的一侧的盖板,所述盖板和所述支架中的至少一者开设供所述储液腔内的雾化介质流向所述导油件的下油孔。
  5. 根据权利要求4所述的雾化器,其特征在于,所述支架设置第一定位结构,所述盖板设置和所述第一定位结构固定装配的第二定位结构。
  6. 根据权利要求5所述的雾化器,其特征在于,所述第一定位结构包括开设于所述支架的外侧的定位槽和设置于所述定位槽内的定位凸起,所述第二定位结构包括自所述盖板的端部沿所述支架周侧弯折延伸的连接脚,所述连接脚和所述定位槽匹配,所述连接脚开设和所述定位凸起卡扣配合的卡口。
  7. 根据权利要求4所述的雾化器,其特征在于,所述雾化器包括两间隔设置且相互平行的所述加热网片,两所述加热网片分别连接于所述电极相对的两侧,所述支架的周侧开设两分别和两所述加热网片正对的所述装配开口,两所述装配开口均嵌设有所述导油件和所述盖板。
  8. 根据权利要求1-7中任意一项所述的雾化器,其特征在于,所述油杯底盖的外侧设置有第一卡钩,所述油杯的内侧开设和所述第一卡钩卡扣配合的第一卡嵌口;和/或,
    所述油杯底盖的外侧还设置有第二卡钩,所述支架开设和所述第二卡钩卡扣配合的第二卡嵌口。
  9. 根据权利要求8所述的雾化器,其特征在于,所述油杯底盖的周侧开设第一环形槽,所述底盖组件还包括嵌置于所述第一环形槽内的第一密封圈,所述第一密封圈的外侧抵接于所述油杯的内壁;和/或,
    所述支架的周侧开设第二环形槽,所述支架组件还包括嵌置于所述第二环形槽内的第二密封圈,所述第二密封圈的外侧抵接于所述油杯的内壁。
  10. 根据权利要求8所述的雾化器,其特征在于,所述底盖组件还包括装配于所述底盖朝向所述储液腔的一侧的吸油件。
  11. 一种电子雾化装置,其特征在于,包括如权利要求1-10中任意一项所述的雾化器。
PCT/CN2022/113639 2021-12-08 2022-08-19 一种雾化器及电子雾化装置 WO2023103449A1 (zh)

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