WO2023213075A1 - 电子雾化装置及雾化器 - Google Patents

电子雾化装置及雾化器 Download PDF

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Publication number
WO2023213075A1
WO2023213075A1 PCT/CN2022/138157 CN2022138157W WO2023213075A1 WO 2023213075 A1 WO2023213075 A1 WO 2023213075A1 CN 2022138157 W CN2022138157 W CN 2022138157W WO 2023213075 A1 WO2023213075 A1 WO 2023213075A1
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WO
WIPO (PCT)
Prior art keywords
limiting
cover
sliding cover
rib
sliding
Prior art date
Application number
PCT/CN2022/138157
Other languages
English (en)
French (fr)
Inventor
许高红
Original Assignee
深圳麦克韦尔科技有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 深圳麦克韦尔科技有限公司 filed Critical 深圳麦克韦尔科技有限公司
Publication of WO2023213075A1 publication Critical patent/WO2023213075A1/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
    • 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 invention relates to the field of atomization, and more specifically, to an electronic atomization device and an atomizer.
  • the mouthpiece of the electronic atomization device in the related art is usually exposed to the surrounding environment.
  • the technical problem to be solved by the present invention is to provide an improved electronic atomization device and an atomizer.
  • the technical solution adopted by the present invention to solve the technical problem is to construct an atomizer, including an atomizer shell and a sliding cover;
  • the atomization shell includes a body and a suction nozzle, and the suction nozzle is provided at one end of the body;
  • the sliding cover is slidably sleeved on the atomizer shell to slide from the body toward the suction nozzle to a first position, covering the periphery of the suction nozzle to protect the suction nozzle, or from the suction nozzle.
  • the mouth slides toward the second position toward the body so that the suction nozzle protrudes from one end of the sliding cover for the user to suck.
  • the body includes a first end and a second end, and the suction nozzle is disposed at the first end; the second end is disposed opposite to the first end;
  • a first limiting structure is provided on the atomizer shell and the sliding cover for restricting the sliding cover from sliding toward the second end when the sliding cover slides to the first position.
  • the sliding cover includes a cover body and a socket provided at one end of the cover body;
  • the first limiting structure includes a first limiting groove and a first limiting rib.
  • the first limiting rib and the first limiting groove cooperate with each other to restrict the sliding cover from moving toward the third Both ends slide;
  • the first limiting groove is provided on the inner wall of the cover body and close to the socket; the first limiting convex rib is provided on the outer wall of the body; the first limiting convex rib The distance to the second end is greater than the distance from the first limiting rib to the first end;
  • the first limiting groove is provided on the outer wall of the body, and the distance from the first limiting groove to the second end is greater than the distance from the first limiting groove to the first end, so The first limiting rib is disposed on the inner wall of the cover body and is disposed close to the socket.
  • the height at which the first limiting rib engages in the first limiting groove is less than or equal to 0.1 mm.
  • the atomizer shell and the sliding cover are provided with a second limiting structure for limiting the sliding cover toward the first position when the sliding cover slides to the first position. Slide in end direction;
  • the distance from the second limiting structure to the second end is greater than the distance from the first limiting structure to the second end.
  • the sliding cover includes a cover body and a socket provided at one end of the cover body;
  • the second limiting structure includes a limiting platform and a second limiting rib.
  • the second limiting rib and the limiting platform cooperate with each other to restrict the sliding cover from moving toward the first end. slide;
  • the limiting platform is arranged on the inner wall of the cover body and close to the socket; the second limiting rib is arranged on the outer wall of the body; the second limiting rib is The distance from the second end is greater than the distance from the second limiting rib to the second end.
  • the second limiting rib extends circumferentially along the body, and its extension length is less than half of the circumference of the body;
  • the limiting platform is arranged along the circumferential direction of the cover, and its extended length is less than half of the circumference of the cover.
  • a third limiting structure is provided on the atomizer shell and the sliding cover to limit the sliding of the sliding cover when the sliding cover slides to the second position.
  • the body includes a first end; the suction nozzle is disposed on the first end;
  • the sliding cover includes a cover body, and the cover body includes a top wall;
  • the third limiting structure includes a third limiting rib and a second limiting groove; the third limiting rib and the second limiting groove cooperate with each other to limit the slide cover from moving away from the body. prolapse;
  • the third limiting rib is provided on the outer side wall of the body and close to the first end; the second limiting groove is provided on the inner side wall of the cover and close to the top wall;
  • the second limiting groove is provided on the outer side wall of the body and close to the first end;
  • the third limiting rib is provided on the inner side wall of the cover body and close to the top wall.
  • the height at which the third limiting rib engages in the second limiting groove is less than or equal to 0.1 mm.
  • guide structures are provided on the atomizer shell and the sliding cover.
  • the guide structure includes a guide groove and a guide rib; the guide groove and the guide rib are provided correspondingly and guide each other in cooperation;
  • the guide groove is opened on the outer side wall of the body and extends along the axial direction of the body.
  • the guide rib is provided on the inner side wall of the sliding cover and extends along the axial direction of the sliding cover. .
  • the guide structure includes a guide groove and a guide rib; the guide groove and the guide rib are provided correspondingly and guide each other in cooperation;
  • the guide ribs are provided on the outer side wall of the body and extend along the axial direction of the body.
  • the guide grooves are provided on the inner side wall of the sliding cover and extend along the axial direction of the sliding cover. .
  • a fourth limiting structure is provided on the atomizer shell for restricting the sliding cover from sliding out of the body in a direction away from the suction nozzle.
  • the fourth limiting structure includes a lens sleeved on the body.
  • the sliding cover is provided with a perforation for the suction nozzle to pass through;
  • the sliding cover is provided with an operating part for operating the sliding cover to slide.
  • the atomization shell further includes an air outlet tube disposed in the body and communicated with the suction nozzle.
  • the suction nozzle and the body are an integral structure.
  • an atomization component disposed in the atomization shell is further included.
  • the present invention also constructs an electronic atomization device, which includes the atomizer of the present invention and a power supply component connected to the atomizer.
  • the electronic atomizer and the atomizer of the present invention have the following beneficial effects: the atomizer is equipped with a sliding cover on the atomizer shell, and the sliding cover slides from the body toward the suction nozzle to the first position and is wrapped around the suction nozzle.
  • the outer periphery of the mouth serves to protect the suction nozzle, and by sliding the sliding cover from the suction nozzle toward the body direction to the second position, the suction nozzle protrudes from one end of the sliding cover so that the user can suck.
  • the sliding cover of the atomizer can improve the hygiene of the mouthpiece and prevent the atomizer from falling dust.
  • Figure 1 is a schematic diagram of the state in which the sliding cover of the electronic atomization device slides to the first position in some embodiments of the present invention
  • Figure 2 is a cross-sectional view of the electronic atomization device shown in Figure 1 when the sliding cover slides to the first position;
  • Figure 3 is an enlarged schematic diagram of a partial structure of the electronic atomization device shown in Figure 2 when the sliding cover slides to the first position;
  • Figure 4 is a schematic diagram of the state in which the sliding cover of the electronic atomization device shown in Figure 1 slides to the second position;
  • Figure 5 is a cross-sectional view of the electronic atomization device shown in Figure 4 when the sliding cover slides to a second position;
  • Figure 6 is an enlarged schematic diagram of the partial structure of the electronic atomization device shown in Figure 5 when the sliding cover slides to the second position;
  • Figure 7 is an exploded schematic diagram of a partial structure of the electronic atomization device in the electronic atomization device shown in Figure 1;
  • Figure 8 is a schematic structural diagram of the atomizer shell of the atomizer in the electronic atomization device shown in Figure 7;
  • Figure 9 is a schematic structural diagram of the sliding cover in the electronic atomization device shown in Figure 7;
  • FIG. 10 is a cross-sectional view of the sliding cover of the electronic atomization device shown in FIG. 7 .
  • FIGS 1 to 6 show some preferred embodiments of the electronic atomization device of the present invention.
  • the electronic atomization device has the advantages of simple structure, low production cost, and clean and hygienic use.
  • the electronic atomization device includes an atomizer A and a power supply component B; the atomizer A can be used to atomize the atomizing medium, and the power supply component B can be mechanically and electrically connected to the atomizer A.
  • the ground connection can be used to power atomizer A.
  • the atomizer A includes an atomizer shell 10 and an atomizer assembly 20 .
  • the atomization shell 10 may be in the shape of a column, with a hollow structure on the inside, which can be used for loading the atomization component 20 and for storing liquid atomization medium.
  • the atomization component 20 can be accommodated in the atomization shell 10 and used for heating atomization liquid atomization medium.
  • the atomizer shell 10 includes a housing 11 , an air outlet pipe 12 and a liquid storage chamber 13 .
  • the housing 11 may be a hollow structure.
  • the housing 11 may include a body 111 and a suction nozzle 112 .
  • the body 111 may have a cylindrical structure. Specifically, the body 111 may have a cylindrical shape.
  • the body 111 may include a first end 111a and a second end 111b. The first end 111a and the second end 111b are arranged correspondingly.
  • the second end 111b of the body 111 may be provided with an opening 1111.
  • the suction nozzle 112 can be disposed on the first end 111a, and can be integrally formed with the body 111. In some embodiments, the nozzle 112 may have an oval cross-section. The length of the major axis of the suction nozzle 112 may be less than or equal to the diameter of the body 111 .
  • the suction nozzle 112 can be disposed coaxially with the body 111 .
  • the air outlet pipe 12 may be disposed in the housing 11 and may be disposed along the axial direction of the housing 11 and communicate with the suction nozzle 112. An air outlet 1121 may be provided at one end of the suction nozzle 112. It is connected with the air outlet pipe 12 .
  • the length of the air outlet pipe 12 can be smaller than the length of the housing 11 , and a set distance is left between the air outlet pipe 12 and the opening 1111 to form an accommodation space for accommodating the atomizer assembly 20 .
  • a gap is left between the outer wall of the air outlet pipe 12 and the inner wall of the housing 11 to form a liquid storage chamber 13.
  • the liquid storage chamber 13 can be used to store liquid atomization medium.
  • the atomization assembly 20 may include an atomization base 21, an atomization seat 22 and a heating assembly 23.
  • the atomization base 21 may be used to support the heating assembly.
  • the atomization seat 22 can be placed on the atomization base 21 and can be snap-connected with the atomization base 21, and an atomization chamber can be formed inside.
  • the heating component 23 is accommodated in the atomization chamber and used to heat the atomized liquid atomization medium.
  • the atomizer A further includes a sliding cover 30 , and the sliding cover 30 is slidably sleeved in the atomizing shell 10 .
  • the sliding cover 30 is The cover 30 can slide from the body 111 toward the suction nozzle 112 along the axial direction of the housing 11 to a first position. When it is in the first position, the sliding cover 30 can cover the outer periphery of the suction nozzle 112, and thus can It plays the role of protecting the suction nozzle 112, thereby improving the hygiene of the suction nozzle and preventing the atomizer from falling dust.
  • the sliding cover 30 can slide from the suction nozzle 112 toward the body 111 to a second position along the axial direction of the housing 11. When it is in the second position, the suction nozzle 112 can protrude from one end of the sliding cover 30, and then Available for users to smoke.
  • the sliding cover 30 includes a cover 31 and a top wall 32 .
  • the cover 31 is cylindrical, and its length may be greater than the length of the suction nozzle 112 .
  • the cover 31 may have a circular cross-section, and the cover 31 may have a hollow structure, and a channel 311 may be formed on the inside thereof, and the channel 311 may allow the suction nozzle 112 to slide in or out.
  • the radial size of the interior of the cover 31 may be adapted to the radial size of the body 11 .
  • the top wall 32 can be disposed at one end of the cover 31 and can be integrally formed with the cover 31 .
  • the top wall 32 may be a sloped wall.
  • the top wall 32 has a through hole 321 , and the through hole 321 can be used for the suction nozzle 112 to pass through.
  • the cross-sectional shape of the through hole 321 can be adapted to the cross-sectional shape of the suction nozzle 112 , and its size can be slightly larger than the cross-sectional size of the suction nozzle 112 .
  • a socket 33 can be provided at an end of the cover 31 away from the through hole 321 . The socket 33 is connected with the channel 311 and can be inserted into the main body 11 .
  • the sliding cover 30 further includes an operating portion 34, which can be disposed on the outer wall of the cover 31.
  • the operating portion 34 can have a sheet-like structure, and can be It is roughly circular and can protrude from the outer wall of the cover 31 .
  • the operating portion 34 can protrude from the socket 33 , and the protruding portion can cooperate with the housing of the power supply component B to limit the position when the sliding cover 30 slides to the second position.
  • the operating portion 34 can be placed by a finger, and is a finger position to facilitate the user's finger placement to slide the sliding cover 30 .
  • the operating portion 24 can be provided with a convex rib structure 341, that is, the surface is roughened to increase the friction with the user's fingers, increase the tactile feel, and facilitate the user's exertion.
  • the atomizer shell 10 and the sliding cover 30 are provided with a first limiting structure a1, and the first limiting structure a1 can be used to lock the sliding cover 30 When the cover 30 slides to the first position, the sliding cover 30 is restricted from sliding toward the second end.
  • the first limiting structure a1 can be divided into two groups, and the two groups of first limiting structures a1 can be located on two opposite sides of the operating part 34. Through double-sided matching, the stability of the matching can be improved.
  • the first limiting structure a1 includes a first limiting groove 3101 and a first limiting rib 1101 .
  • the first limiting groove 3101 is disposed on the inner wall of the cover 31 and is disposed close to the socket 33 .
  • the first limiting groove 3101 can be formed by a gap between two protruding and spaced-apart ribs protruding from the inner wall of the cover 31 , or directly opened in the cover 31 along the thickness direction of the cover 31 . medial wall.
  • the first limiting groove 3101 may be arc-shaped, and may extend along the circumferential direction of the cover 31 , and its extending length may be less than half of the circumference of the cover 31 .
  • the first limiting rib 1101 can be disposed on the outer side wall of the body 111 and protrude from the outer side wall of the body 111 .
  • the first limiting rib 1101 can be provided corresponding to the first limiting groove 3101 and can cooperate with the first limiting groove 3101. Specifically, it can snap into the first limiting groove 3101. In the groove 3101, the sliding cover 30 can be restricted from sliding toward the second end 111b. In some embodiments, the distance from the first limiting rib 1101 to the second end 111b can be greater than the distance from the first limiting rib 1101 to the first end 111a, which can prevent the suction nozzle 112 from protruding from the sliding cover 30. out.
  • the first limiting groove 3101 can be provided on the outer wall of the body 111, and the distance from the first limiting groove 3101 to the second end 111b can be greater than the first limiting groove 3101. The distance from 3101 to the first end 111a.
  • the first limiting rib 1101 can be disposed on the inner wall of the cover body 31 and is disposed close to the socket 33 . It can be integrally formed with the cover body 31 , and the length extending along the circumferential direction of the cover body 31 can be less than the length of the cover body 31 . One-half of the circumference of the cover 31.
  • the height at which the first limiting rib 1101 engages in the first limiting groove 3101 can be less than or equal to 0.1 mm; thus, it is convenient for the user to push slightly toward the body 111 to make the sliding cover 30 When deformed by force, the first limiting groove 3101 can move toward the body 111 together with the first limiting rib 1101 , thereby causing the first limiting rib 1101 to separate from the first limiting groove 3101 .
  • the atomizer shell 10 and the sliding cover 30 are provided with a second limiting structure a2; the second limiting structure a2 can be used to limit the sliding cover 30 when it slides to the first position. The cover 30 slides toward the first end 111 a to prevent the sliding cover 30 from being separated from the atomizer shell 10 .
  • the second limiting structure a2 can be divided into two groups. The two groups of second limiting structures a2 can be located on two opposite sides of the operating part 34, thereby improving the height of the sliding cover 30 and the atomizer shell 10. The stability of the fit.
  • each set of second limiting structures a2 and the second end 111b can be greater than the distance between the first limiting structure a1 and the second end 111b. That is, the second limiting structure a2 is in phase with the first limiting structure a1. is located closer to the first end 111a than .
  • the second limiting structure a2 may include a limiting block 3102 and a second limiting rib 1102 .
  • the limiting platform 3102 can be disposed on the inner wall of the cover 31 and close to the socket 33 .
  • the limiting platform 3102 can protrude from the inner wall of the cover 31 along the radial direction of the cover 31 and be integrally formed with the cover 31 .
  • the limiting platform 3102 can be disposed along the circumferential direction of the cover 31 , and its extending length can be less than half of the circumference of the cover 31 .
  • the second limiting rib 1102 can be disposed on the outer wall of the body 111 .
  • the second limiting rib 1102 can protrude radially along the body 111 and be integrally formed with the body 111 .
  • the second limiting rib 1102 can cooperate with the limiting platform 3102 to limit the sliding cover 30 toward the second end 111b.
  • the first limiting rib 1102 can be erected on the limiting platform 3102, thereby limiting the sliding cover 30 to only move toward the first end 111a of the body 111. direction to prevent the sliding cover 30 from being separated from the atomizer shell 10 .
  • the second limiting rib 1102 may extend circumferentially along the body 111 , and its extended length may be less than half of the circumference of the body 111 .
  • the atomizer shell 10 and the sliding cover 30 are provided with a third limiting structure a3.
  • the third limiting structure a3 can be used to limit the sliding cover when the brilliance 30 slides to the second position. 30 slides.
  • the third limiting structure a3 can be divided into two groups.
  • the two groups of third limiting structures a3 can be located on two opposite sides of the operating part 34.
  • the two groups of third limiting structures a3 can improve the mist. The stability of the cooperation between the shell 10 and the sliding cover 30 is improved.
  • the third limiting structure a3 may include a second limiting groove 3103 and a third limiting rib 1103 .
  • the second limiting groove 3103 is disposed on the inner side wall of the cover 31 and is disposed close to the top wall 32 .
  • the second limiting groove 3103 may be arc-shaped, and may extend along the circumference of the cover 31 .
  • the second limiting groove 3103 can be formed by a gap between two arc-shaped protrusions spaced apart on the inner wall of the cover 31 .
  • the second limiting groove 3103 can also be directly opened on the inner side wall of the cover 31 .
  • the third limiting bead 1103 can be disposed on the outer side wall of the body 111 and is disposed close to the first end 111a, and is disposed closer to the first end 11a than the second limiting bead 1102.
  • the third limiting rib 1103 and the second limiting groove 3103 can be provided correspondingly and cooperate with each other to limit the slide cover 30 from coming out of the body 111 .
  • the second limiting groove 3103 can be provided on the outer wall of the body 111 and close to the first end 111a, and the third limiting rib 1103 can be provided on the cover. 31 and is located close to the top wall 32 .
  • the height at which the third limiting rib 1103 engages the second limiting groove 3103 can be less than or equal to 0.1 mm, which can facilitate the user to push the sliding cover 30 towards the body 111 with a little force.
  • the first limiting groove 3101 can move toward the suction nozzle 112 together with the first limiting rib 1101 , thereby causing the third limiting rib 1103 to disengage from the second limiting groove 3103 .
  • the atomizer shell 10 and the sliding cover 30 are provided with a guide structure, which can be used to guide the sliding cover 30 in a sliding manner.
  • the guide structures may be two groups, and the two groups of guide structures may be spaced apart and symmetrically arranged along the radial direction of the atomizer shell 10 or the radial direction of the sliding cover 30 .
  • the guide structure includes a guide groove 1104 and a guide rib 3104.
  • the guide groove 1104 can be provided on the outer side wall of the body 111.
  • two strip-shaped protrusions can be provided on the outer wall of the body 111, and the guide groove 1104 is formed by the spacing between the two strip-shaped protrusions.
  • the guide groove 1104 can also be directly opened on the outer wall of the body 111 .
  • the guide groove 1104 can extend along the axial direction of the body 111 .
  • the guide rib 3104 can be disposed on the inner wall of the sliding cover 30 , and can be in a strip shape, and can extend along the axial direction of the sliding cover 30 .
  • the guide groove 1104 and the guide rib 3104 are provided correspondingly and can guide each other cooperatively. When the sliding cover 30 slides, the guide ribs 3104 can be placed in the guide grooves 1104 and slide.
  • the guide ribs 3104 can be provided on the outer wall of the body 111 and extend along the axial direction of the body 111 , and the guide groove 1104 can be provided on the sliding cover 30 The inner wall extends along the axial direction of the sliding cover 30 .
  • a fourth limiting structure 40 may be provided on the atomizer shell 10 for restricting the sliding cover 30 from sliding out from the body 111 in a direction away from the suction nozzle 112 , that is, restricting the sliding cover 30 from sliding out from the third position.
  • the second end 111b slides out.
  • the fourth limiting structure 40 may be a lens, which may be annular, and may be sleeved on the body 111 and disposed close to the opening 1111 .
  • the fourth limiting structure 40 may include an annular body 41 and an outer flange 42.
  • the annular body 41 may be sleeved on the body 111, and may be connected with the body 111 by providing a snap-in structure. Card access.
  • the outer flange 42 is disposed on one end of the annular body 41 and extends outward along the radial direction of the annular body 41 .
  • the outer flange 42 can be disposed along the circumference of the annular body 41 , and its outer diameter can be larger than the outer diameter of the sliding cover 30 , thereby restricting the sliding cover 30 from sliding out of the body 111 away from the suction nozzle 112 .
  • the sliding cover 30 can be sleeved on the outer periphery of the suction nozzle 112 .
  • the atomizing cover 10 and the sliding cover 30 are passed through a third A limiting structure a1 and a second limiting structure a2 are used for limiting.
  • the first limiting protrusion 1101 can be inserted into the first limiting groove 3101, and the limiting clamping platform 3102 can be set up on the second limiting protrusion.
  • the rib 1102 cooperates with the second limiting convex rib 1102 .
  • the sliding cover 30 can be slid from the suction nozzle 112 toward the body 111 to the second position along the axial direction of the housing 11. At this time, the suction nozzle 112 can protrude from one end of the sliding cover 30.
  • the atomizer shell 10 and the sliding cover 30 can be limited by the third limiting structure a3, and the third limiting rib 1103 can be locked into the second limiting groove 3103.
  • the sliding cover 30 can be slid from the main body 111 toward the suction nozzle 112 to the first position along the axial direction of the housing 11 and cover the outer periphery of the suction nozzle 112 to protect the suction nozzle 112 .
  • the atomizer A has a simple structure. Hygiene protection can be achieved by adding a sliding cover 30, and the appearance of the atomizer A can be beautified.
  • the sliding cover 30 can exercise the flexibility of the fingers through the sliding setting, thereby increasing the fun and experience of using the electronic atomization device.
  • the sliding cover 30 is easy to assemble. Through the cooperation of the guide ribs 3104 and the guide grooves 1104, the assembly can be completed by pushing hard.

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Abstract

一种电子雾化装置及雾化器(A),雾化器(A)包括雾化壳(10)以及滑盖(30)。雾化壳(10)包括本体(111)以及吸嘴(112),吸嘴(112)设置于本体(111)的一端;滑盖(30)滑动套设于雾化壳(10)上,以从本体(111)朝吸嘴(112)滑动至第一位置包覆于吸嘴(112)的外周保护吸嘴(112),或从吸嘴(112)朝本体(111)方向滑动至第二位置使得吸嘴(112)从滑盖(30)的一端凸出供用户抽吸。该雾化器(A)通过滑盖(30)可改善吸嘴(112)的卫生问题,防止雾化器(A)落灰。

Description

电子雾化装置及雾化器 技术领域
本发明涉及雾化领域,更具体地说,涉及一种电子雾化装置及雾化器。
背景技术
相关技术中的电子雾化装置的吸嘴通常暴露在周围环境中。
技术问题
当该电子雾化装置长时间使用时会造成严重的卫生问题;从吸嘴中落入的灰尘也会影响雾化器的使用;而且暴露的吸嘴放在口袋或包中也容易因磕碰而损坏,造成液态雾化介质泄漏。
技术解决方案
本发明要解决的技术问题在于,提供一种改进的电子雾化装置及雾化器。
本发明解决其技术问题所采用的技术方案是:构造一种雾化器,包括雾化壳以及滑盖;
所述雾化壳包括本体以及吸嘴,所述吸嘴设置于所述本体的一端;
所述滑盖滑动套设于所述雾化壳上,以从所述本体朝所述吸嘴滑动至第一位置包覆于所述吸嘴的外周保护所述吸嘴,或从所述吸嘴朝所述本体方向滑动至第二位置使得所述吸嘴从所述滑盖的一端凸出供用户抽吸。
在一些实施例中,所述本体包括第一端以及第二端,所述吸嘴设置于所述第一端;所述第二端与所述第一端相对设置;
所述雾化壳和滑盖上设置有第一限位结构,用于在所述滑盖滑动至所述第一位置时限制所述滑盖朝所述第二端滑动。
在一些实施例中,所述滑盖包括盖体以及设置于所述盖体一端的套接口;
所述第一限位结构包括第一限位槽以及第一限位凸筋,所述第一限位凸筋和所述第一限位槽相互配合,以限制所述滑盖朝所述第二端滑动;
所述第一限位槽设置于所述盖体的内侧壁且靠近所述套接口设置;所述第一限位凸筋设置于所述本体的外侧壁上;所述第一限位凸筋到所述第二端的距离大于所述第一限位凸筋到所述第一端的距离;
或者,所述第一限位槽设置于所述本体的外侧壁,所述第一限位槽到所述第二端的距离大于所述第一限位槽到所述第一端的距离,所述第一限位凸筋设置于所述盖体的内侧壁且靠近所述套接口设置。
在一些实施例中,所述第一限位凸筋卡入所述第一限位槽的高度小于或等于0.1mm。
在一些实施例中,所述雾化壳和所述滑盖上设置有第二限位结构,用于在所述滑盖滑动至所述第一位置时限制所述滑盖朝所述第一端方向滑动;
所述第二限位结构到所述第二端的距离大于所述第一限位结构到所述第二端的距离。
在一些实施例中,所述滑盖包括盖体以及设置于所述盖体一端的套接口;
所述第二限位结构包括限位卡台以及第二限位凸筋,所述第二限位凸筋和所述限位卡台相互配合,以限制所述滑盖朝所述第一端滑动;
所述限位卡台设置于所述盖体的内侧壁且靠近所述套接口设置;所述第二限位凸筋设置于所述本体的外侧壁上;所述第二限位凸筋到所述第二端的距离大于所述第二限位凸筋到所述第二端的距离。
在一些实施例中,所述第二限位凸筋沿所述本体周向延伸设置,其延伸长度小于所述本体的二分之一周长;
所述限位卡台沿所述盖体的周向设置,且延伸的长度小于所述盖体的二分之一周长。
在一些实施例中,所述雾化壳和所述滑盖上设置有第三限位结构,用于在所述滑盖滑动至所述第二位置时限制所述滑盖滑动。
在一些实施例中,所述本体包括第一端;所述吸嘴设置于所述第一端;
所述滑盖包括盖体,所述盖体包括顶壁;
所述第三限位结构包括第三限位凸筋以及第二限位槽;所述第三限位凸筋和所述第二限位槽相互配合,以限制所述滑盖从所述本体脱出;
所述第三限位凸筋设置于所述本体的外侧壁靠近所述第一端设置;所述第二限位槽设置于所述盖体的内侧壁且靠近所述顶壁设置;
或者所述第二限位槽设置与所述本体的外侧壁且靠近所述第一端设置;所述第三限位凸筋设置于所述盖体的内侧壁且靠近所述顶壁设置。
在一些实施例中,所述第三限位凸筋卡入所述第二限位槽的高度小于或等于0.1mm。
在一些实施例中,所述雾化壳以及所述滑盖上设置导向结构。
在一些实施例中,所述导向结构包括导向槽以及导向凸筋;所述导向槽和所述导向凸筋对应设置,且相互配合导向;
所述导向槽开设于所述本体的外侧壁上,且沿所述本体的轴向延伸设置,所述导向凸筋设置于所述滑盖的内侧壁且沿所述滑盖的轴向延伸设置。
在一些实施例中,所述导向结构包括导向槽以及导向凸筋;所述导向槽和所述导向凸筋对应设置,且相互配合导向;
所述导向凸筋开设于所述本体的外侧壁上,且沿所述本体的轴向延伸设置,所述导向槽设置于所述滑盖的内侧壁且沿所述滑盖的轴向延伸设置。
在一些实施例中,所述雾化壳上设置第四限位结构,用于限制所述滑盖从所述本体远离所述吸嘴方向滑出。
在一些实施例中,所述第四限位结构包括套设于所述本体上的透镜。
在一些实施例中,所述滑盖上设有供所述吸嘴穿出的穿孔;
所述滑盖上设有操作部,用于操作所述滑盖滑动。
在一些实施例中,所述雾化壳还包括设置于所述本体中且与所述吸嘴连通的出气管。
在一些实施例中,所述吸嘴与所述本体为一体结构。
在一些实施例中,还包括设置于所述雾化壳中的雾化组件。
本发明还构造一种电子雾化装置,包括本发明所述的雾化器以及与所述雾化器连接的供电组件。
有益效果
实施本发明的电子雾化装置及雾化器,具有以下有益效果:该雾化器通过在雾化壳套设滑盖,并通过该滑盖从本体朝吸嘴滑动至第一位置包裹于吸嘴的外周起到保护吸嘴的作用,且通过将该滑盖从吸嘴朝本体方向滑动至第二位置使得吸嘴从滑盖一端凸出进而可供用户抽吸。该雾化器通过该滑盖可改善吸嘴的卫生问题,可防止雾化器落灰。
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是本发明一些实施例中电子雾化装置中滑盖滑动至第一位置的状态示意图;
图2是图1所示电子雾化装置中滑盖滑动至第一位置的剖视图;
图3是图2所示电子雾化装置中滑盖滑动至第一位置的局部结构放大示意图;
图4是图1所示电子雾化装置中滑盖滑动至第二位置的状态示意图;
图5是图4所示电子雾化装置中滑盖滑动至第二位置的剖视图;
图6是图5所示电子雾化装置中滑盖滑动至第二位置的局部结构放大示意图;
图7是图1所示电子雾化装置中电子雾化装置的局部结构分解示意图;
图8是图7所示电子雾化装置中雾化器的雾化壳结构示意图;
图9是图7所示电子雾化装置中滑盖的结构示意图;
图10是图7所示电子雾化装置中滑盖的剖视图。
本发明的最佳实施方式
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。
图1至图6示出了本发明电子雾化装置的一些优选实施例。该电子雾化装置具有结构简单、制作成本低、以及使用干净卫生的优点。
在一些实施例中,该电子雾化装置包括雾化器A以及供电组件B;该雾化器A可用于雾化雾化介质,该供电组件B可与该雾化器A机械地以及电性地连接,可用于给雾化器A供电。
进一步地,在一些实施例中,该雾化器A包括雾化壳10、以及雾化组件20。该雾化壳10可以为柱状,内侧为中空结构,可用于供雾化组件20装入,并用于储存液态雾化介质。该雾化组件20可收容于该雾化壳10中,用于加热雾化液态雾化介质。
如图7至图8所示,进一步地,在一些实施例中,该雾化壳10包括壳体11、出气管12以及储液腔13。在一些实施例中,该壳体11可以为中空结构。该壳体11可包括本体111以及吸嘴112。该本体111可以为筒状结构,具体地,该本体111可以为圆筒状。该本体111可包括第一端111a以及第二端111b,该第一端111a与该第二端111b对应设置。该本体111的第二端111b可设置开口1111。该吸嘴112可设置于该第一端111a,且可与该本体111一体成型。在一些实施例中,该吸嘴112的横截面可以为椭圆形。该吸嘴112的长轴的长度可小于或等于该本体111的直径。该吸嘴112可与该本体111同轴设置。在一些实施例中,该出气管12可设置于该壳体11中,且可沿该壳体11的轴向设置,其与该吸嘴112连通,该吸嘴112的一端可设置出气口1121与该出气管12连通。该出气管12的长度可小于该壳体11的长度,其与该开口1111之间留设有设定距离,用于形成容置空间,容置雾化组件20。该出气管12的外侧壁与该壳体11的内侧壁之间留设有间隙,用于形成储液腔13,该储液腔13可用于储存液态雾化介质。
再如图2及图5所示,进一步地,在一些实施例中,该雾化组件20可包括雾化底座21、雾化座22以及发热组件23,该雾化底座21可用于支撑该发热组件23。该雾化座22可套设于该雾化底座21上,可与该雾化底座21卡接,内侧可形成雾化腔。该发热组件23容置于该雾化腔中,用于加热雾化液态雾化介质。
再如图1至图6所示,进一步地,在一些实施例中,该雾化器A还包括滑盖30,该滑盖30滑动套设于该雾化壳10中,具体地,该滑盖30可沿该壳体11的轴向从该本体111朝吸嘴112滑动至第一位置,当其处于该第一位置时,该滑盖30可包覆于吸嘴112的外周,进而可起到保护吸嘴112的作用,从而可改善吸嘴的卫生问题,防止雾化器落灰。该滑盖30可沿该壳体11轴向从吸嘴112朝本体111方向滑动至第二位置,当其处于该第二位置时,该吸嘴112可从该滑盖30一端凸出,进而可供用户抽吸使用。
如图9及图10所示,该滑盖30包括盖体31、以及顶壁32。在一些实施例中,该盖体31呈筒状,其长度可大于该吸嘴112的长度。具体地,该盖体31的横截面可呈圆形,该盖体31为中空结构,内侧可形成通道311,该通道311可供吸嘴112滑入或滑出。在一些实施例中,该盖体31内部的径向尺寸可与该本体11径向尺寸相适配。顶壁32可设置于该盖体31的一端,且可与该盖体31一体成型。在一些实施例中,该顶壁32可以为一斜壁。该顶壁32上开设有穿孔321,该穿孔321可用于供吸嘴112穿出。在一些实施例中,该穿孔321的横截面形状可与该吸嘴112的横截面形状相适配,且其尺寸可略大于该吸嘴112横截面尺寸。在一些实施例中,该盖体31远离该穿孔321的一端可设置套接口33,该套接口33与该通道311连通,可供本体11套入。
进一步地,在一些实施例中,该滑盖30还包括操作部34,该操作部34可设置于该盖体31的外侧壁,具体地,该操作部34可以为片状结构,且其可大致呈圆形,并可凸出该盖体31的外侧壁设置。该操作部34可从该套接口33凸出设置,凸出部分可在该滑盖30滑动至第二位置时,与该供电组件B的外壳配合限位。在一些实施例中,该操作部34可供手指放置,其为手指位,一便于用户手指放置滑动该滑盖30。在一些实施例中,该操作部24上可设置凸棱结构341,也即表面粗糙设置,增大与用户手指的摩擦力,增加触感,方便用户用力
再如图1至图4所示,进一步地,在一些实施例中,该雾化壳10和滑盖30上设置有第一限位结构a1,该第一限位结构a1可用于在该滑盖30滑动至第一位置时,限制滑盖30朝第二端滑动。该第一限位结构a1可以为两组,该两组第一限位结构a1可以位于该操作部34的两相对侧,通过双面配合,进而可提高配合的稳定性。具体地,该第一限位结构a1包括第一限位槽3101以及第一限位凸筋1101。该第一限位槽3101设置于该盖体31的内侧壁且靠近该套接口33设置。该第一限位槽3101可通过在该盖体31的内侧壁凸出且间隔设置的两根凸棱之间的间隔形成,或者直接沿该盖体31的厚度方向开设于该盖体31的内侧壁。该第一限位槽3101可以为弧线形,其可沿该盖体31的周向延伸设置,且其延伸的长度可小于该盖体31的二分之一周长。该第一限位凸筋1101可设置于该本体111的外侧壁上,且凸出该本体111的外侧壁设置。在一些实施例中,该第一限位凸筋1101可与该第一限位槽3101对应设置,且可与该第一限位槽3101配合,具体地,其可卡入该第一限位槽3101中,进而可限制该滑盖30朝第二端111b滑动。在一些实施例中,该第一限位凸筋1101到第二端111b的距离可大于该第一限位凸筋1101到第一端111a的距离,可避免吸嘴112从该滑盖30凸出。
可以理解地,在其他一些实施例中,该第一限位槽3101可设置于该本体111的外侧壁,该第一限位槽3101到第二端111b的距离可大于该第一限位槽3101到第一端111a的距离。该第一限位凸筋1101可设置于该盖体31的内侧壁,且靠近该套接口33设置,其可与盖体31一体成型,且沿该盖体31周向延伸的长度可小于该盖体31的二分之一周长。
在一些实施例中,该第一限位凸筋1101卡入该第一限位槽3101的高度可小于或等于0.1mm;进而可便于用户稍微用力向本体111方向推动,即可使得滑盖30受力变形,该第一限位槽3101可与该第一限位凸筋1101一并向本体111方向运动,进而可使得第一限位凸筋1101与该第一限位槽3101脱离。
在一些实施例中,该雾化壳10和该滑盖30上设置有第二限位结构a2;该第二限位结构a2,可用于在该滑盖30滑动至第一位置时限制该滑盖30朝第一端111a方向滑动,避免该滑盖30脱离雾化壳10。在一些实施例中,该第二限位结构a2可以为两组,该两组第二限位结构a2可以位于该操作部34的两相对侧,进而可提高滑盖30与该雾化壳10配合的稳定性。每组第二限位结构a2到该第二端111b的距离可大于该第一限位结构a1到第二端111b的距离,即该第二限位结构a2与该第一限位结构a1相比,更靠近该第一端111a设置。
在一些实施例中,该第二限位结构a2可包括限位卡台3102以及第二限位凸筋1102。在一些实施例中,该限位卡台3102可设置于盖体31的内侧壁且靠近该套接口33设置。该限位卡台3102可沿该盖体31的径向凸出该盖体31的内侧壁设置,且与该盖体31一体成型。该限位卡台3102可沿该盖体31的周向设置,其延伸的长度可小于该盖体31的二分之一周长。该第二限位凸筋1102可设置于该本体111的外侧壁上,该第二限位凸筋1102可沿该本体111径向凸出设置,且与该本体111一体成型。该第二限位凸筋1102可与该限位卡台3102相互配合,限制该滑盖30朝第二端111b滑动。具体地,当该滑盖30滑动至第一位置时,该第一限位凸筋1102可搭设于该限位卡台3102上,从而限制该滑盖30仅能朝本体111的第一端111a的方向滑动,进而避免滑盖30脱离雾化壳10。在一些实施例中,该第二限位凸筋1102可沿该本体111周向延伸设置,其延伸的长度可小于该本体111的二分之一周长。
在一些实施例中,该雾化壳10和该滑盖30上设置有第三限位结构a3,该第三限位结构a3可用于在该辉煌30滑动至第二位置时,限制该滑盖30滑动。在一些实施例中,该第三限位结构a3可以为两组,该两组第三限位结构a3可位于该操作部34的两相对侧,通过两组第三限位结构a3可提高雾化壳10与该滑盖30配合的稳定性。
在一些实施例中,该第三限位结构a3可包括第二限位槽3103以及第三限位凸筋1103。该第二限位槽3103设置于该盖体31的内侧壁且靠近该顶壁32设置。在一些实施例中,该第二限位槽3103可以为弧线形,其可沿该盖体31的周向延伸。该第二限位槽3103可通过在该盖体31的内侧壁间隔设置的两根弧形凸棱之间的间隔形成。当然,可以理解地,在其他一些实施例中,该第二限位槽3103也可以直接开设于该盖体31的内侧壁上。该第三限位凸筋1103可设置于该本体111的外侧壁且靠近该第一端111a设置,其相较于该第二限位凸筋1102更靠近该第一端11a设置。该第三限位凸筋1103和该第二限位槽3103可对应设置,且相互配合,用于限制滑盖30从该本体111脱出。
可以理解地,在其他一些实施例中,该第二限位槽3103可设置于该本体111的外侧壁且靠近该第一端111a设置,该第三限位凸筋1103可设置于该盖体31的内侧壁且靠近该顶壁32设置。
在一些实施例中,该第三限位凸筋1103卡入该第二限位槽3103的高度可小于或等于0.1mm,进而可便于用户稍微用力向本体111方向推动,即可使得滑盖30受力变形,该第一限位槽3101可与该第一限位凸筋1101一并向吸嘴112方向运动,进而可使得第三限位凸筋1103与该第二限位槽3103脱离。
在一些实施例中,该雾化壳10以及滑盖30上设置有导向结构,该导向结构可用于给该滑盖30滑动导向。在一些实施例中,该导向结构可以为两组,该两组导向结构可间隔且沿雾化壳10的径向或者滑盖30的径向对称设置。
在一些实施例中,该导向结构包括导向槽1104以及导向凸筋3104,该导向槽1104可设置于该本体111的外侧壁。在一些实施例中,可在该本体111的外侧壁上设置两根条形凸棱,通过该两根条形凸棱的间隔形成该导向槽1104,可以理解地,在其他一些实施例中,该导向槽1104也可直接开设于该本体111的外侧壁。该导向槽1104可沿该本体111的轴向延伸。该导向凸筋3104可设置于该滑盖30内侧壁,其可呈条状,其可沿该滑盖30的轴向延伸设置。在一些实施例中,该导向槽1104以及该导向凸筋3104对应设置,且可相互配合导向。该滑盖30滑动时,该导向凸筋3104可置于该导向槽1104中滑动。
可以理解地,在其他一些实施例中,该导向凸筋3104可开设于该本体111的外侧壁上,且沿该本体111的轴向延伸设置,该导向槽1104可设置于该滑盖30的内侧壁且沿该滑盖30的轴向延伸设置。
进一步地,在一些实施例中,该雾化壳10上可设置第四限位结构40,用于限制滑盖30从该本体111远离该吸嘴112方向滑出,即限制滑盖30从第二端111b滑出。该第四限位结构40可以为透镜,其可呈环状,其可套设于该本体111上,且靠近该开口1111设置。在一些实施例中,该第四限位结构40可包括环状本体41以及外凸缘42,该环状本体41可套设于该本体111上,且可与该本体111通过设置卡接结构卡接。该外凸缘42设置与该环状本体41一端且沿该环状本体41的径向向外延伸。该外凸缘42可沿该环状本体41的周向设置,其外径可大于该滑盖30的外径,进而可限制该滑盖30从该本体111远离该吸嘴112方向滑出。
如图1至图6所示,使用前(也即开始状态),该滑盖30可套设于该吸嘴112的外周,此时,该雾化盖10和该滑盖30之间通过第一限位结构a1以及第二限位结构a2进行限位,该第一限位凸筋1101可卡入该第一限位槽3101上,该限位卡台3102可搭设于第二限位凸筋1102上,与该第二限位凸筋1102配合。需要使用该电子雾化装置时,可将滑盖30沿壳体11轴向从吸嘴112朝本体111方向滑动至第二位置,此时该吸嘴112可从该滑盖30一端凸出,该雾化壳10和该滑盖30可通过该第三限位结构a3进行限位,该第三限位凸筋1103可卡入该第二限位槽3103中。使用完毕后,可将滑盖30沿壳体11的轴向从本体111朝吸嘴112滑动至第一位置,并包覆于该吸嘴112的外周,对该吸嘴112起到保护作用。
该雾化器A结构简单,通过在增加一个滑盖30即可实现卫生防护,并且可美化雾化器A产品外观。该滑盖30通过滑动设置可锻炼手指灵活性,增加该电子雾化装置使用的乐趣与体验。该滑盖30装配简单,通过该导向凸筋3104以及导向槽1104的配合,用力推动即可完成装配。
可以理解的,以上实施例仅表达了本发明的优选实施方式,其描述较为具体和详细,但并不能因此而理解为对本发明专利范围的限制;应当指出的是,对于本领域的普通技术人员来说,在不脱离本发明构思的前提下,可以对上述技术特点进行自由组合,还可以做出若干变形和改进,这些都属于本发明的保护范围;因此,凡跟本发明权利要求范围所做的等同变换与修饰,均应属于本发明权利要求的涵盖范围。

Claims (20)

  1. 一种雾化器,其特征在于,包括雾化壳(10)以及滑盖(30);
    所述雾化壳(10)包括本体(111)以及吸嘴(112),所述吸嘴(112)设置于所述本体(111)的一端;
    所述滑盖(30)滑动套设于所述雾化壳(10)上,以从所述本体(111)朝所述吸嘴(112)滑动至第一位置包覆于所述吸嘴(112)的外周保护所述吸嘴(112),或从所述吸嘴(112)朝所述本体(111)方向滑动至第二位置使得所述吸嘴(112)从所述滑盖(30)的一端凸出供用户抽吸。
  2. 根据权利要求1所述的雾化器,其特征在于,所述本体(111)包括第一端(111a)以及第二端(111b),所述吸嘴(112)设置于所述第一端(111a);所述第二端(111b)与所述第一端(111a)相对设置;
    所述雾化壳(10)和滑盖(30)上设置有第一限位结构(a1),用于在所述滑盖(30)滑动至所述第一位置时限制所述滑盖(30)朝所述第二端(111b)滑动。
  3. 根据权利要求2所述的雾化器,其特征在于,所述滑盖(30)包括盖体(31)以及设置于所述盖体(31)一端的套接口(33);
    所述第一限位结构(a1)包括第一限位槽(3101)以及第一限位凸筋(1101),所述第一限位凸筋(1101)和所述第一限位槽(3101)相互配合,以限制所述滑盖(30)朝所述第二端(111b)滑动;
    所述第一限位槽(3101)设置于所述盖体(31)的内侧壁且靠近所述套接口(33)设置;所述第一限位凸筋(1101)设置于所述本体(111)的外侧壁上;所述第一限位凸筋(1101)到所述第二端(111b)的距离大于所述第一限位凸筋(1101)到所述第一端(111a)的距离;
    或者,所述第一限位槽(3101)设置于所述本体(111)的外侧壁,所述第一限位槽(3101)到所述第二端(111b)的距离大于所述第一限位槽(3101)到所述第一端(111a)的距离,所述第一限位凸筋(1101)设置于所述盖体(31)的内侧壁且靠近所述套接口(33)设置。
  4. 根据权利要求3所述的雾化器,其特征在于,所述第一限位凸筋(1101)卡入所述第一限位槽(3101)的高度小于或等于0.1mm。
  5. 根据权利要求2所述的雾化器,其特征在于,所述雾化壳(10)和所述滑盖(30)上设置有第二限位结构(a2),用于在所述滑盖(30)滑动至所述第一位置时限制所述滑盖(30)朝所述第一端(111a)方向滑动;
    所述第二限位结构(a2)到所述第二端(111b)的距离大于所述第一限位结构(a1)到所述第二端(111b)的距离。
  6. 根据权利要求5所述的雾化器,其特征在于,所述滑盖(30)包括盖体(31)以及设置于所述盖体(31)一端的套接口(33);
    所述第二限位结构(a2)包括限位卡台(3102)以及第二限位凸筋(1102),所述第二限位凸筋(1102)和所述限位卡台(3102)相互配合,以限制所述滑盖(30)朝所述第一端(111a)滑动;
    所述限位卡台(3102)设置于所述盖体(31)的内侧壁且靠近所述套接口(33)设置;所述第二限位凸筋(1102)设置于所述本体(111)的外侧壁上;所述第二限位凸筋(1102)到所述第二端(111b)的距离大于所述第二限位凸筋(1102)到所述第二端(111b)的距离。
  7. 根据权利要求6所述的雾化器,其特征在于,所述第二限位凸筋(1102)沿所述本体(111)周向延伸设置,其延伸长度小于所述本体(111)的二分之一周长;
    所述限位卡台(3102)沿所述盖体(31)的周向设置,且延伸的长度小于所述盖体(31)的二分之一周长。
  8. 根据权利要求1所述的雾化器,其特征在于,所述雾化壳(10)和所述滑盖(30)上设置有第三限位结构(a3),用于在所述滑盖(30)滑动至所述第二位置时限制所述滑盖(30)滑动。
  9. 根据权利要求8所述的雾化器,其特征在于,所述本体(111)包括第一端(111a);所述吸嘴(112)设置于所述第一端(111a);
    所述滑盖(30)包括盖体(31),所述盖体(31)包括顶壁(32);
    所述第三限位结构(a3)包括第三限位凸筋(1103)以及第二限位槽(3103);所述第三限位凸筋(1103)和所述第二限位槽(3103)相互配合,以限制所述滑盖(30)从所述本体(111)脱出;
    所述第三限位凸筋(1103)设置于所述本体(111)的外侧壁靠近所述第一端(111a)设置;所述第二限位槽(3103)设置于所述盖体(31)的内侧壁且靠近所述顶壁(32)设置;
    或者所述第二限位槽(3103)设置与所述本体(111)的外侧壁且靠近所述第一端(111a)设置;所述第三限位凸筋(1103)设置于所述盖体(31)的内侧壁且靠近所述顶壁(32)设置。
  10. 根据权利要求9所述的雾化器,其特征在于,所述第三限位凸筋(1103)卡入所述第二限位槽(3103)的高度小于或等于0.1mm。
  11. 根据权利要求1所述的雾化器,其特征在于,所述雾化壳(10)以及所述滑盖(30)上设置导向结构。
  12. 根据权利要求11所述的雾化器,其特征在于,所述导向结构包括导向槽(1104)以及导向凸筋(3104);所述导向槽(1104)和所述导向凸筋(3104)对应设置,且相互配合导向;
    所述导向槽(1104)开设于所述本体(111)的外侧壁上,且沿所述本体(111)的轴向延伸设置,所述导向凸筋(3104)设置于所述滑盖(30)的内侧壁且沿所述滑盖(30)的轴向延伸设置。
  13. 根据权利要求11所述的雾化器,其特征在于,所述导向结构包括导向槽(1104)以及导向凸筋(3104);所述导向槽(1104)和所述导向凸筋(3104)对应设置,且相互配合导向;
    所述导向凸筋(3104)开设于所述本体(111)的外侧壁上,且沿所述本体(111)的轴向延伸设置,所述导向槽(1104)设置于所述滑盖(30)的内侧壁且沿所述滑盖(30)的轴向延伸设置。
  14. 根据权利要求1所述的雾化器,其特征在于,所述雾化壳(10)上设置第四限位结构(40),用于限制所述滑盖(30)从所述本体(111)远离所述吸嘴(112)方向滑出。
  15. 根据权利要求14所述的雾化器,其特征在于,所述第四限位结构(40)包括套设于所述本体(111)上的透镜。
  16. 根据权利要求1所述的雾化器,其特征在于,所述滑盖(30)上设有供所述吸嘴(112)穿出的穿孔(321);
    所述滑盖(30)上设有操作部(34),用于操作所述滑盖(30)滑动。
  17. 根据权利要求1所述的雾化器,其特征在于,所述雾化壳(10)还包括设置于所述本体(111)中且与所述吸嘴(112)连通的出气管(12)。
  18. 根据权利要求1所述的雾化器,其特征在于,所述吸嘴(112)与所述本体(111)为一体结构。
  19. 根据权利要求1所述的雾化器,其特征在于,还包括设置于所述雾化壳(10)中的雾化组件(20)。
  20. 一种电子雾化装置,其特征在于,包括权利要求1至19任一项所述的雾化器以及与所述雾化器连接的供电组件。
     
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