WO2023082675A1 - 主机及气溶胶产生装置 - Google Patents

主机及气溶胶产生装置 Download PDF

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Publication number
WO2023082675A1
WO2023082675A1 PCT/CN2022/104272 CN2022104272W WO2023082675A1 WO 2023082675 A1 WO2023082675 A1 WO 2023082675A1 CN 2022104272 W CN2022104272 W CN 2022104272W WO 2023082675 A1 WO2023082675 A1 WO 2023082675A1
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WO
WIPO (PCT)
Prior art keywords
electrode
host
microphone
air inlet
chamber
Prior art date
Application number
PCT/CN2022/104272
Other languages
English (en)
French (fr)
Inventor
陈杰
廖振龙
牛彦明
Original Assignee
深圳市吉迩科技有限公司
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Application filed by 深圳市吉迩科技有限公司 filed Critical 深圳市吉迩科技有限公司
Publication of WO2023082675A1 publication Critical patent/WO2023082675A1/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
    • A24F40/46Shape or structure of electric heating means
    • 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
    • A24F40/90Arrangements or methods specially adapted for charging batteries thereof

Definitions

  • the present application relates to the technical field of aerosol manufacturing, in particular to a host and an aerosol generating device.
  • the aerosol generating devices currently on the market generally include a host and an atomizer inserted into the host.
  • the host is equipped with a host electrode
  • the atomizer is equipped with an atomizing electrode
  • the host electrode is electrically connected to the atomizing electrode, so that the host supplies power to the atomizer.
  • the atomization electrode of one atomizer is hollow and has an air inlet hole; Air intake holes are formed on the housing of the device.
  • one main unit can only be adapted to one kind of atomizer, which leads to the poor compatibility of the main unit, and it cannot be well adapted to different types of atomizers.
  • the present application provides a host and an aerosol generating device to solve the technical problem that the host and the aerosol generating device have poor compatibility and cannot be well adapted to different types of atomizers.
  • the first technical solution adopted by this application is to provide a host for an aerosol generating device, including: a housing, forming a first storage space and communicating with the first storage space The air inlet; the electrode bracket can be movably arranged in the first storage space and divide the first storage space into a storage cavity and an air intake cavity, and the storage cavity is used for inserting the atomization of the aerosol generating device device; the host electrode, the host electrode is installed on the electrode bracket and forms an air inlet passage, and the air inlet passage communicates with the air inlet cavity; wherein, the electrode holder has a function that makes the air inlet and the air inlet There is a first movement position where the air intake cavity communicates and a second movement position where the air intake port communicates with the storage cavity.
  • the host further includes an elastic return member, one end of which is connected or abutted against the electrode holder, and the other end of the elastic return member is connected or abutted against the housing.
  • the electrode bracket is provided with a first magnetic part
  • the housing is provided with a second magnetic part at a position corresponding to the first magnetic part, and the first magnetic part and the second magnetic part Opposite end faces are magnetically identical to generate mutual repulsion.
  • the housing is further formed with a second accommodation space
  • the main unit further includes a power supply assembly disposed in the second accommodation space and electrically connected to the electrodes of the main unit.
  • the host computer further includes a microphone, and the microphone is electrically connected to the power supply component.
  • the microphone is arranged in the air intake cavity, and the electrode bracket is formed with a first microphone air channel, and the first microphone air channel is connected to the storage cavity and the air intake cavity respectively. connected.
  • the air intake cavity includes a detection cavity formed by the electrode bracket, the microphone is installed in the detection cavity, the electrode bracket is also formed with a second microphone airway, and the first microphone
  • the head airway communicates with the detection chamber and the air intake chamber respectively
  • the second microphone airway communicates with the detection chamber and the air intake passage respectively.
  • the casing includes a casing and a battery holder, and the battery holder is installed on the casing and forms the second receiving space.
  • the outer edge of the battery holder is provided with a first sealing member, and the battery holder is in sealing contact with the inner wall of the housing through the first sealing member.
  • a first clip and part is provided on the side of the housing close to the receiving cavity, and the atomizer is provided with a second clip and part matched with the first clip and part.
  • the second technical solution adopted in this application is to provide an aerosol generating device, the aerosol generating device includes an atomizer and the above-mentioned host, the atomizer includes an atomizing body and an atomizing electrode, The atomizing body is inserted into the receiving cavity and an atomizing channel is formed, and the atomizing electrode is installed on the atomizing body and electrically connected with the host electrode; wherein, the atomizing electrode is formed with a The guide hole connected to the atomization channel, the host electrode is inserted into the guide hole, so that the electrode holder is located at the first moving position; or the atomization body is formed with an air inlet, the The air inlets communicate with the atomizing channel and the receiving chamber respectively, and the atomizing electrode pushes the host electrode, so that the electrode holder moves to the second moving position.
  • the host can be movably arranged in the first accommodation space by setting the electrode bracket, and the electrode of the host is formed with an air intake channel, so that when the host is matched with different atomizers, the electrode bracket has a first The moving position and the second moving position allow outside air to flow into the atomizer in different ways. Therefore, the host has good versatility and can be adapted to different types of atomizers.
  • Fig. 1 is a sectional view of a host computer in an embodiment of the present application
  • Fig. 2 is a schematic diagram of the decomposition structure of the host in Fig. 1;
  • Fig. 3 is a sectional view of an aerosol generating device in an embodiment of the present application.
  • Fig. 4 is a sectional view of an aerosol generating device in another embodiment of the present application.
  • Fig. 5 is a sectional view of the atomizer in Fig. 3;
  • Fig. 6 is a cross-sectional view of the atomizer in Fig. 4 .
  • FIG. 1 is a cross-sectional view of the host 100 in an embodiment of the present application
  • FIG. 2 is a schematic diagram of an exploded structure of the host 100 in FIG. 1 .
  • the present application also provides an aerosol generating device, as shown in Figures 3-6, Figure 3 is a cross-sectional view of the aerosol generating device in one embodiment of the present application, and Figure 4 is an aerosol generating device in another embodiment of the present application
  • the sectional view of the device FIG. 5 is a sectional view of the atomizer 1 in FIG. 3
  • FIG. 6 is a sectional view of the atomizer 1 ′ in FIG. 4
  • the aerosol generating device includes a host 100 and an atomizer 1 , and the atomizer 1 can be detachably installed on the host 100 by clamping, magnetic adsorption, and the like. As shown in FIGS.
  • the atomizer 1 includes an atomizing body 11 and an atomizing electrode 12 .
  • the atomization body 11 is formed with an atomization channel 110
  • the atomization electrode 12 is mounted on the atomization body 11 and formed with a guide hole 120 communicating with the atomization channel 110 .
  • the atomizing body 11 includes a liquid storage bin 111 , a base 112 and an atomizing core 113 .
  • the liquid storage bin 111 is formed with a liquid storage cavity 1110 and an air outlet channel 1111 .
  • the base 112 is disposed in the liquid storage chamber 1110 and connected to one end of the liquid storage bin 111 , and the base 112 is formed with an atomizing channel 110 .
  • the atomizing core 113 is installed on the base 112 and communicates with the liquid storage chamber 1110 , the air outlet channel 1111 and the atomizing channel 110 respectively.
  • the atomizing electrode 12 is mounted on the base 112 and electrically connected to the atomizing core 113 .
  • the atomizer 1' includes an atomizing body 11' and an atomizing electrode 12', and the atomizing body 11' is formed with an atomizing channel 110' and an air inlet 111' communicating with the atomizing channel 110' .
  • the host 100 includes a casing 2 , an electrode holder 3 and a host electrode 4 .
  • the electrode support 3 is movably installed in the casing 2
  • the host electrode 4 is installed on the electrode support 3 and forms an air intake channel 40 .
  • the casing 2 is formed with a first receiving space 20 and an air inlet 21 communicating with the first receiving space 20 .
  • the electrode holder 3 can be movably arranged in the first storage space 20 and divides the first storage space 20 into a storage cavity 20A and an air inlet cavity 20B.
  • the storage cavity 20A is used for inserting the nebulizer 1 .
  • the host electrode 4 is installed on the electrode holder 3 and is formed with an air inlet channel 40 , and the air inlet channel 40 communicates with the air inlet chamber 20B.
  • the electrode holder 3 has a first movement position where the air inlet 21 communicates with the air inlet chamber 20B and a second movement position where the air inlet 21 communicates with the storage chamber 20A.
  • the host electrode 3 is inserted into the guide hole 120, so that the electrode holder 3 is located at the first moving position, and the outside air passes through the air inlet 21, the air inlet chamber 20B and the air inlet in sequence.
  • Channel 40 flows into the atomization channel.
  • the atomizing electrode 12' blocks the air intake passage 40 and pushes the electrode holder 3 to move downward, so that the electrode holder 3 is in the second moving position, and the outside air passes through the air intake in turn.
  • the mouth 21, the receiving chamber 20A and the air inlet 111' flow into the atomizing channel 110'.
  • the main unit 100 can moveably arrange the electrode holder 3 in the first storage space 20, and the main unit electrode 4 is formed with an air intake channel 40, so that when the main unit 100 matches the atomizer 1 or the atomizer 1', the electrode holder 3 It has a first moving position and a second moving position, so that outside air can flow into the atomizer 1 in different ways. Therefore, the host 100 has good versatility and can be adapted to different types of atomizers.
  • the casing 2 is also formed with a second storage space 22.
  • the host 100 also includes a power supply assembly 5.
  • the power supply assembly 5 is disposed in the second storage space 22 and is electrically connected to the host electrode 4.
  • the casing 2 shown includes a casing 23 and a battery holder 24 , the battery holder 24 is installed in the casing 23 and forms a second receiving space 22 .
  • the power supply assembly 5 is first arranged in the second storage space 22 and installed on the battery holder 24, and then the battery holder 24 is installed in the casing 23, so that the host 100 can be assembled conveniently, and the assembled power supply assembly 5 High stability.
  • the outer edge of the battery holder 24 is provided with a first sealing member 241, and the battery holder 24 is in sealing contact with the inner wall of the casing 23 through the first sealing member 241, so that water ingress and air leakage can be prevented, and the distance between the battery holder 24 and the battery holder 24 can be increased.
  • the frictional force between the shells 23 makes the battery support 24 more stable after being installed in the shells 23 .
  • the electrode holder 3 can be movably arranged in the first storage space 20 and divides the first storage space 20 into a storage cavity 20A and an air inlet cavity 20B.
  • the storage cavity 20A is used for inserting the nebulizer 1 .
  • the casing 23 and the battery holder 24 enclose to form the first receiving space 20 .
  • the casing 23 is formed with an air inlet 21 , and the air inlet 21 communicates with the first receiving space 20 .
  • An air intake chamber 20B is formed between the electrode holder 3 and the battery holder 24 .
  • the outer edge of the electrode support 3 is provided with a second sealing member 31, and the electrode support 3 is in sealing contact with the inner wall of the casing 23 through the second sealing member 31, so that water ingress and air leakage can be prevented, and the distance between the electrode support 3 and the inner wall of the housing 23 can be increased.
  • the frictional force between the shells 23 prevents the electrode holder 3 from moving without the action of external force.
  • the host electrode 4 is installed on the electrode holder 3 and is formed with an air inlet channel 40 , and the air inlet channel 40 communicates with the air inlet chamber 20B.
  • the electrode holder 3 is formed with a via hole 32 , and the host electrode 4 is inserted into the via hole 32 , and one side of the host electrode 4 is located in the receiving cavity 20A, and the other side is located in the air intake cavity 20B.
  • the host electrode 4 is hollow, so that an air intake channel 40 is formed.
  • the air intake channel 40 can penetrate the host electrode 4 from top to bottom, so that the air intake channel 40 communicates with the air intake cavity 20B.
  • the air intake channel 40 can also extend from the upper end of the host electrode 4 to the position of the host electrode 4 corresponding to the air intake chamber 20B, and then open a through hole 41 on the host electrode 4, and the through hole 41 is respectively connected to the air intake cavity 20B and the air intake cavity 20B.
  • the intake passage 40 communicates, so that the intake passage 40 communicates with the intake chamber 20B through the through hole 41 . It should be noted that when the host 100 is matched with the atomizer 1 , holes can be made on the upper end surface or side wall of the host electrode 4 , so that the air intake channel 40 communicates with the atomization channel 110 .
  • the power component 5 is disposed in the second receiving space 22 and electrically connected to the host electrode 4 .
  • the power supply assembly 5 includes a battery 51 and a circuit board 52 .
  • the circuit board 52 is electrically connected to the battery 51 and the host electrode 4 respectively.
  • the power supply assembly 5 may also include a charging tailboard 53 , and the charging tailboard 53 is electrically connected to the battery 51 .
  • the charging tail plate 53 is provided with a charging interface 531
  • the battery holder 24 is provided with a first installation hole 242 at a position corresponding to the charging interface 531
  • the housing 23 is provided with a second installation hole 231 at a position corresponding to the charging interface 531
  • the charging interface 531 is disposed in the first installation hole 242 and the second installation hole 231 .
  • the user can charge the battery 51 through the charging interface 531, so that the host 100 can be used repeatedly without wasting resources.
  • the host 100 also includes an elastic return member 6 , one end of the elastic return member 6 is connected or abutted against the electrode holder 3 , and the other end is connected or abutted against the casing 2 .
  • the electrode bracket 3 is formed with a mounting column 33 , one end of the elastic recovery member 6 is installed and abutted against the mounting column 33 , and the other end is abutted against the battery bracket 24 .
  • the elastic return member 6 can push the electrode support 3 from the second moving position to the first moving position, that is, the elastic return member 6 can reset the moved electrode support 3, So that the host 100 can match the atomizer 1 or the atomizer 1' again.
  • the battery support 24 can also be provided with a mounting part, one end of the elastic return member 6 is installed and abutted on the mounting post 33, and the other end is installed and abutted against the installation part, so that the elastic return member 6 can be installed more easily. Stablize.
  • the host 100 may not be provided with the elastic return member 6, but a first magnetic member is provided on the electrode holder 3, and a second magnetic member is provided at a position corresponding to the first magnetic member on the housing 2, and the first magnetic member The magnetism of the end faces opposite to the second magnetic piece is the same to generate mutual repulsion. In this way, the moved electrode holder 3 can also be reset, so that the host 100 can match the nebulizer 1 or the nebulizer 1' again.
  • a first magnetic member is arranged on the electrode holder 3
  • a second magnetic member is arranged at a position corresponding to the first magnetic member on the battery holder 24 .
  • the host 100 is provided with the elastic recovery member 6 , it may also be provided with the first magnetic member and the second magnetic member.
  • the side of the housing 2 close to the first storage space 20 is also provided with a first card and part
  • the atomizer 1' is provided with a second card and part matched with the first card and part
  • the housing 2 passes through the first card and part.
  • the first part cooperates with the second card and the second part, and is arranged to be snapped together with the atomizer 1'.
  • a first card and part is provided on a side of the housing 23 close to the first receiving space 20 , and the first card and part is located in the first receiving space 20 .
  • the atomizer 1' is provided with a second card and part cooperating with the first card and part.
  • the first locking part and the second locking part cooperate with each other, so that the atomizer 1' is fixed in the accommodation cavity 20A.
  • the electrode holder 3 can be pushed down, and when the first clip and the second clip and part cooperate with each other, the electrode holder 3 and the atomizer 1' are in the elastic recovery part 6 or the first magnetic part and the second magnetic part. No longer moves under the effect of recovery force.
  • the housing 2 may not be provided with the first card and part, and the atomizer 1' may not be provided with the second card and part.
  • the electrode holder 3 and the atomizer can also be The carburetor 1' no longer moves under the action of the restoring force of the elastic recovery part 6 or the first magnetic part and the second magnetic part.
  • the host 100 also includes a microphone 7 , and the microphone 7 is electrically connected to the power component 5 .
  • the microphone 7 is disposed in the air intake cavity 20B and is electrically connected to the circuit board 52 .
  • the electrode holder 3 is also formed with a first microphone air channel 34 , and the first microphone air channel 34 communicates with the receiving chamber 20A and the air inlet chamber 20B respectively. When the electrode holder 3 is in the first moving position, outside air flows into the atomization channel through the air inlet 21, the air inlet chamber 20B and the air inlet passage 40 in sequence, and the microphone 7 can detect whether there is airflow in the air inlet chamber 20B.
  • the outside air flows into the atomizing channel 110' through the air inlet 21, the receiving cavity 20A and the air inlet hole 111' sequentially, and the microphone 7 can be detected through the first microphone air channel 34. Whether there is air flow in the storage chamber 20A. Only when the microphone 7 detects the air flow in the air inlet cavity 20B or the storage cavity 20A, the microphone 7 will wake up the battery 51 so that the host 100 can supply power to the atomizer 1 .
  • the air inlet chamber 20B may include a detection chamber 35 formed by the electrode bracket 3, the microphone head 7 is installed in the detection chamber 35, and the first microphone airway 34 communicates with the storage chamber 20A and the detection chamber 35 respectively, that is, the microphone The head 7 detects whether there is an airflow in the storage cavity 20A through the first microphone air channel 34 .
  • the detection chamber 35 is not connected with the air inlet chamber 20B.
  • the electrode holder 3 is also formed with a second microphone airway 36, and the second microphone airway 36 communicates with the detection chamber 35 and the air inlet passage 40 respectively, that is, the microphone 7 detects the air inlet passage 40 through the second microphone airway 36. Is there any airflow inside.
  • the nebulizer 1 blocks the first microphone airway 34 , and the microphone 7 can detect whether there is air flow in the air inlet channel 40 through the second microphone airway 36 .
  • the atomizer 1' blocks the air inlet channel 40, and the microphone 7 can detect whether there is air flow in the storage chamber 20A through the first microphone air channel 34. Only when the microphone 7 detects the air flow in the storage cavity 20A or the air intake channel 40 , the microphone 7 will wake up the battery 51 so that the main unit 100 supplies power to the atomizer 1 .
  • the main unit 100 provided by this application can move the electrode bracket 3 in the first storage space 20, and the main unit electrode 4 is formed with the air intake channel 40, so that the main unit 100 can match the nebulizer 1 or the mist
  • the electrode holder 3 has a first moving position and a second moving position, so that the outside air can flow into the nebulizer 1 through different ways. Therefore, the host 100 has good versatility and can be adapted to different types of atomizers.

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Abstract

一种主机(100)及气溶胶产生装置,主机包括:壳体(2),形成有第一收容空间(20)及与第一收容空间(20)连通的进气口(21);电极支架(3),可活动设置于第一收容空间(20)内并将第一收容空间(20)分隔为收容腔(20A)及进气腔(20B),收容腔(20A)用于插置气溶胶产生装置的雾化器(1);主机电极(4),安装于电极支架(3)并形成有进气通道(40),进气通道(40)与进气腔(20B)连通;电极支架(3)具有使得进气口(21)与进气腔(20B)连通的第一运动位置及使得进气口(21)与收容腔(20A)连通的第二运动位置。该主机(100)通过将电极支架(3)可活动设置于第一收容空间(20)内,且主机电极(4)形成有进气通道(40),使得主机(100)在匹配不同的雾化器时,电极支架(3)具有第一运动位置及第二运动位置,使得外界空气可以通过不同的方式流入雾化器中。因此该主机通配性好,可以适配不同的类型的雾化器。

Description

主机及气溶胶产生装置
技术领域
本申请涉及气溶胶制造技术领域,具体涉及一种主机及气溶胶产生装置。
背景技术
目前,现有市场上的气溶胶产生装置一般包括主机及插设于主机上的雾化器。主机安装有主机电极,雾化器安装有雾化电极,主机电极与雾化电极接触后电连接,从而使得主机为雾化器供电。但雾化器的类型一般有两种,一种雾化器的雾化电极呈中空设置形成有进气孔,一种雾化器的雾化电极上没有形成进气孔,而是在雾化器的壳体上形成进气孔。然而现有技术中,一个主机只能适配一种雾化器,导致了主机通配性差,不能很好的适配不同类型的雾化器。
发明内容
本申请提供一种主机及气溶胶产生装置,以解决主机及气溶胶产生装置的主机通配性差,不能很好的适配不同类型的雾化器的技术问题。
为解决上述技术问题,本申请采用的第一个技术方案是:提供一种用于气溶胶产生装置的主机,包括:壳体,形成有第一收容空间及与所述第一收容空间连通的进气口;电极支架,可活动设置于所述第一收容空间内并将所述第一收容空间分隔为收容腔及进气腔,所述收容腔用于插置气溶胶产生装置的雾化器;主机电极,所述主机电极安装于所述电极支架并形成有进气通道,所述进气通道与所述进气腔连通;其中,所述电极支架具有使得所述进气口与所述进气腔连通的第一运动位置及使得所述进气口与所述收容腔连通的第二运动位置。
可选的,所述主机还包括弹性回复件,所述弹性回复件一端连接或抵接于所述电极支架,另一端连接或抵接于所述壳体。
可选的,所述电极支架设有第一磁性件,所述壳体对应于所述第一磁性件的位置处设有第二磁性件,所述第一磁性件与所述第二磁性件相对的端面的磁性相同,以产生互斥力。
可选的,所述壳体还形成有第二收容空间,所述主机还包括电源组件,所述电源组件设置于所述第二收容空间内并与所述主机电极电连接。
可选的,所述主机还包括咪头,所述咪头与所述电源组件电连接。
可选的,所述咪头设置于所述进气腔内,所述电极支架形成有第一咪头气道,所述第一咪头气道分别与所述收容腔及所述进气腔连通。
可选的,所述进气腔包括所述电极支架形成的检测腔,所述咪头安装于所述检测腔内,所述电极支架还形成有第二咪头气道,所述第一咪头气道分别与所述检测腔及所述进气腔连通,所述第二咪头气道分别与所述检测腔及所述进气通道连通。
可选的,所述壳体包括外壳及电池支架,所述电池支架安装于所述外壳且形成有所述第二收容空间。
可选的,所述电池支架的外缘设有第一密封件,所述电池支架通过所述第一密封件与所述外壳的内壁密封抵接。
可选的,所述壳体靠近所述收容腔的一侧设有第一卡和部,所述雾化器设有与所述第一卡和部配合的第二卡和部。
本申请采用的第二个技术方案是:提供一种气溶胶产生装置,所述气溶胶产生装置包括雾化器及如上所述的主机,所述雾化器包括雾化本体及雾化电极,所述雾化本体插置于所述收容腔且形成有雾化通道,所述雾化电极安装于所述雾化本体并与所述主机电极电连接;其中,所述雾化电极形成有与所述雾化通道连通的导向孔,所述主机电极插设于所述导向孔,以使得所述电极支架位于所述第一运动位置;或所述雾化本体形成有进气孔,所述进气孔分别与所述雾化通道及所述收容腔连通,所述雾化电极推动所述主机电极,以使得所述电极支架运动至所述第二运动位置。
本申请的有益效果是:该主机通过将电极支架可活动设置于所述第一收容空间内,且主机电极形成有进气通道,使得主机在匹配不同的雾化器时,电极支架具有第一运动位置及第二运动位置,从而使得外界空气可以通过不同的方式流入雾化器中。因此该主机通配性好,可以适配不同的类型的雾化器。
附图说明
为了更清楚地说明本申请实施例中的技术方案,下面将对实施例描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本申请的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其它的附图,其中:
图1是本申请一实施例中的主机的剖视图;
图2是图1中的主机的分解结构示意图;
图3是本申请一实施例中的气溶胶产生装置的剖视图;
图4是本申请又一实施例中的气溶胶产生装置的剖视图;
图5是图3中的雾化器的剖视图;
图6是图4中的雾化器的剖视图。
具体实施方式
下面将结合本申请实施例中的附图,对本申请实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅是本申请的一部分实施例,而不是全部的实施例。基于本申请中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其它实施例,都属于本申请保护的范围。
本申请提供一种主机100,如图1和图2所示,图1是本申请一实施例中的主机100的剖视图,图2是图1中的主机100的分解结构示意图。
本申请还提供一种气溶胶产生装置,如图3-6所示,图3是本申请一实施例中的气溶胶产生装置的剖视图,图4是本申请又一实施例中的气溶胶产生装置的剖视图,图5是图3中的雾化器1的剖视图,图6是图4中的雾化器1’的剖视图。该气溶胶产生装置包括主机100及雾化器1,雾化器1可以通过卡接、磁吸附等方式可拆卸安装于主机100。如图3和图5所示,雾化器1包括雾化本体11及雾化电极12。雾化本体11形成有雾化通道110,雾化电极12安装于雾化本体11并形成有与雾化通道110连通的导向孔120。雾化本体11包括储液仓111、底座112及雾化芯113。储液仓111形成有储液腔1110及出气通道1111。底座112设置于储液腔1110内并与储液仓111的一端连接,且底座112形成有雾化通道110。雾化芯113安装于底座112并分别与储液腔1110、出气通道1111及雾化通道110连通。雾化电极12安装于底座112并与雾化芯113电连接。如图6所示,雾化器1’包括雾化本体11’及雾化电极12’,雾化本体11’形成有雾化通道110’及与雾化通道110’连通的进气孔111’。
主机100包括壳体2、电极支架3及主机电极4。电极支架3可活动安装于壳体2内,主机电极4安装于电极支架3上并形成有进气通道40。
示例性的,壳体2形成有第一收容空间20及与第一收容空间20连通的进气口21。电极支架3可活动设置于第一收容空间20内并将第一收容空间20分隔为收容腔20A及进气腔20B,收容腔20A用于插置雾化器1。主机电极4安装于电极支架3并形成有进气通道40,进气通道40与进气腔20B连通。其中,电极支架3具有使得进气口21与进气腔20B连通的第一运动位置及使得进气口21与收容腔20A连通的第二运动位置。即当主机100与雾化器1适配时,主机电极3插设于导向孔120内,使得电极支架3位于第一运动位置,外界空气依次通过进气口21、进气腔20B及进气通道40流入雾化通道中。当主机100与雾化器1’适配时,雾化电极12’封堵进气通道40并推动电极支架3向下运动,从而使得电极支架3位于第二运动位置,外界空气依次通过进气口21、收容腔20A及进气孔111’流入雾化通道110’中。该主机100通过将电极支架3可活动设置于第一收容空间20内,且主机电极4形成有进气通道40,使得主机100在匹配雾化器1或雾化器1’时,电极支架3具有第一运动位置及第二运动位置,从而使得外界空气可以通过不同的方式流入雾化器1中。因此该主机100通配性好,可以适配不同的类型的雾化器。
壳体2还形成有第二收容空间22,主机100还包括电源组件5,电源组件5设置于第二收容空间22内且与主机电极4电连接,示例性的,所示壳体2包括外壳23及电池支架24,电池支架24安装于外壳23内且形成有第二收容空间22。在生产组装时,先将电源组件5设置于第二收容空间22内且安装于电池支架24,再将电池支架24安装于外壳23内,如此可以方便主机100完成组装,且组装后电源组件5稳定性高。
电池支架24的外缘设有第一密封件241,电池支架24通过第一密封件241与外壳23的内壁密封抵接,如此既可以防止进水和漏气,又可以增大电池支架24与外壳23之间的摩擦力,使得电池支架24安装于外壳23内后更加稳定。
电极支架3可活动设置于第一收容空间20内并将第一收容空间20分隔为收容腔20A及进气腔20B,收容腔20A用于插置雾化器1。示例性的,将电池支架24安装于外壳23内后,外壳23与电池支架24围合形成第一收容空间20。外壳23形成有进气口21,进气口21与第一收容空间20连通。电极支架3与电池支架24之间形成进气腔20B。且电极支架3外缘设有第二密封件31,电极支架3通过第二密封件31与外壳23的内壁密封抵接,如此既可以防止进水和漏气,又可以增大电极支架3与外壳23之间的摩擦力,使得电极支架3再没有外力的作用下不会发生移动。
主机电极4安装于电极支架3并形成有进气通道40,进气通道40与进气腔20B连通。示例性的,电极支架3形成有过孔32,主机电极4插设于过孔32内,且主机电极4的一侧位于收容腔20A内,另一侧位于进气腔20B。主机电极4呈中空设置,从而形成有进气通道40,进气通道40可以自上而下贯穿主机电极4,从而使得进气通道40与进气腔20B连通。进气通道40也可以从主机电极4的上端延伸至主机电极4对应于进气腔20B的位置处,然后再在主机电极4上开设一个通孔41,通孔41分别与进气腔20B及进气通道40连通,从而使得进气通道40通过通孔41与进气腔20B连通。需要说明的是,当主机100与雾化器1匹配时,可以在主机电极4的上端面或侧壁上开孔,从而使得进气通道40与雾化通道110连通。
电源组件5设置于第二收容空间22内且与主机电极4电连接。示例性的,电源组件5包括电池51及电路板52。电路板52分别与电池51及主机电极4电连接。
电源组件5还可以包括充电尾板53,充电尾板53与电池51电连接。充电尾板53上设置有充电接口531,电池支架24对应于充电接口531的位置处设有第一安装孔242,外壳23对应于充电接口531的位置处设有第二安装孔231,充电接口531设置于第一安装孔242及第二安装孔231内。用户可以通过充电接口531为电池51充电,使得主机100能够重复使用,不会浪费资源。
主机100还包括弹性回复件6,弹性回复件6一端连接或抵接于电极支架3,另一端连接或抵接于壳体2。示例性的,电极支架3形成有安装柱33,弹性回复件6一端安装并抵接于安装柱33上,另一端抵接于电池支架24。当主机100与雾化器1’匹配时,雾化器1’将电极支架3从第一运动位置下推至第二运动位置。当雾化器1’与主机100分离时,弹性回复件6可以将电极支架3从第二运动位置上推至第一运动位置,即弹性回复件6可以将移动后的电极支架3进行复位,使得主机100可以再次匹配雾化器1或雾化器1’。可以理解的是,电池支架24也可以设置有安装部,弹性回复件6一端安装并抵接于安装柱33上,另一端安装并抵接于安装部,如此可以使得弹性回复件6安装后更加稳定。
需要说明的是,主机100也可以不设置弹性回复件6,而是在电极支架3上设置第一磁性件,壳体2对应于第一磁性件的位置处设置第二磁性件,第一磁性件与第二磁性件相对的端面的磁性相同,以产生互斥力。如此也可以让移动后的电极支架3进行复位,使得主机100可以再次匹配雾化器1或雾化器1’。示例性的,电极支架3上设置第一磁性件,电池支架24对应于第一磁性件的位置处设置第二磁性件。
可以理解的是,主机100设置有弹性回复件6的同时,也可以设置有第一磁性件和第二磁性件。
壳体2靠近第一收容空间20的一侧还设有第一卡和部,雾化器1’设有与第一卡和部配合的第二卡和部,壳体2通过第一卡和部与第二卡和部的相互配合,与雾化器1’卡接设置。示例性的,外壳23靠近第一收容空间20的一侧设有第一卡和部,且第一卡和部位于第一收容空间20内。雾化器1’设有与第一卡和部配合的第二卡和部。当雾化器1’插入收容腔20A内时,第一卡和部与第二卡和部相互配合,以使雾化器1’固定于收容腔20A内。如此可以向下推动电极支架3,且当第一卡和部与第二卡和部相互配合,电极支架3及雾化器1’在弹性回复件6或第一磁性件和第二磁性件的回复力的作用下不会再发生移动。
可以理解的是,壳体2可以不设有第一卡和部,雾化器1’也可以不设有第二卡和部。只要雾化器1’及电极支架3分别与壳体2之间的摩擦力之和大于弹性回复件6或第一磁性件和第二磁性件的回复力,如此也可以使得电极支架3及雾化器1’在弹性回复件6或第一磁性件和第二磁性件的回复力的作用下不再发生移动。
主机100还包括咪头7,咪头7与电源组件5电连接。示例性的,咪头7设置于进气腔20B内并与电路板52电连接。电极支架3还形成有第一咪头气道34,第一咪头气道34分别与收容腔20A及进气腔20B连通。当电极支架3位于第一运动位置时,外界空气依次通过进气口21、进气腔20B及进气通道40流入雾化通道中,咪头7可以检测进气腔20B内是否有气流产生。当电极支架3位于第二运动位置时,外界空气依次通过进气口21、收容腔20A及进气孔111’流入雾化通道110’中,咪头7可以通过第一咪头气道34检测收容腔20A内是否有气流产生。只有当咪头7检测到进气腔20B或收容腔20A内产生气流时,咪头7才会唤醒电池51,使得主机100为雾化器1供电。
需要说明的是,进气腔20B可以包括电极支架3形成的检测腔35,咪头7安装于检测腔35内,第一咪头气道34分别与收容腔20A及检测腔35连通,即咪头7通过第一咪头气道34检测收容腔20A内是否有气流产生。咪头7安装于检测腔35内后,检测腔35不与进气腔20B连通。电极支架3还形成有第二咪头气道36,第二咪头气道36分别与检测腔35及进气通道40连通,即咪头7通过第二咪头气道36检测进气通道40内是否有气流产生。当电极支架3位于第一运动位置时,雾化器1封堵第一咪头气道34,咪头7可以通过第二咪头气道36检测进气通道40内是否有气流产生。当电极支架3位于第二运动位置时,雾化器1’封堵进气通道40,咪头7可以通过第一咪头气道34检测收容腔20A内是否有气流产生。只有当咪头7检测到收容腔20A或进气通道40内产生气流时,咪头7才会唤醒电池51,使得主机100为雾化器1供电。
与相关技术相比,本申请提供的主机100通过将电极支架3可活动设置于第一收容空间20内,且主机电极4形成有进气通道40,使得主机100在匹配雾化器1或雾化器1’时,电极支架3具有第一运动位置及第二运动位置,从而使得外界空气可以通过不同的方式流入雾化器1中。因此该主机100通配性好,可以适配不同的类型的雾化器。
以上仅为本申请的实施例,并非因此限制本申请的专利范围,凡是利用本申请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它相关的技术领域,均同理包括在本申请的专利保护范围内。

Claims (20)

  1. 一种用于气溶胶产生装置的主机,其中,包括:
    壳体,形成有第一收容空间及与所述第一收容空间连通的进气口;
    电极支架,可活动设置于所述第一收容空间内并将所述第一收容空间分隔为收容腔及进气腔,所述收容腔用于插置气溶胶产生装置的雾化器;
    主机电极,所述主机电极安装于所述电极支架并形成有进气通道,所述进气通道与所述进气腔连通;
    其中,所述电极支架具有使得所述进气口与所述进气腔连通的第一运动位置及使得所述进气口与所述收容腔连通的第二运动位置。
  2. 根据权利要求1所述的主机,其中,所述主机还包括弹性回复件,所述弹性回复件一端连接或抵接于所述电极支架,另一端连接或抵接于所述壳体。
  3. 根据权利要求1所述的主机,其中,所述电极支架设有第一磁性件,所述壳体对应于所述第一磁性件的位置处设有第二磁性件,所述第一磁性件与所述第二磁性件相对的端面的磁性相同,以产生互斥力。
  4. 根据权利要求1所述的主机,其中,所述壳体还形成有第二收容空间,所述主机还包括电源组件,所述电源组件设置于所述第二收容空间内并与所述主机电极电连接。
  5. 根据权利要求4所述的主机,其中,所述主机还包括咪头,所述咪头与所述电源组件电连接。
  6. 根据权利要求5所述的主机,其中,所述咪头设置于所述进气腔内,所述电极支架形成有第一咪头气道,所述第一咪头气道分别与所述收容腔及所述进气腔连通。
  7. 根据权利要求6所述的主机,其中,所述进气腔包括所述电极支架形成的检测腔,所述咪头安装于所述检测腔内,所述电极支架还形成有第二咪头气道,所述第一咪头气道分别与所述检测腔及所述进气腔连通,所述第二咪头气道分别与所述检测腔及所述进气通道连通。
  8. 根据权利要求4所述的主机,其中,所述壳体包括外壳及电池支架,所述电池支架安装于所述外壳且形成有所述第二收容空间。
  9. 根据权利要求8所述的主机,其中,所述电池支架的外缘设有第一密封件,所述电池支架通过所述第一密封件与所述外壳的内壁密封抵接。
  10. 根据权利要求1所述的主机,其中,所述壳体靠近所述收容腔的一侧设有第一卡和部,所述雾化器设有与所述第一卡和部配合的第二卡和部。
  11. 一种气溶胶产生装置,其中,所述气溶胶产生装置包括雾化器及主机,所述主机包括:
    壳体,形成有第一收容空间及与所述第一收容空间连通的进气口;
    电极支架,可活动设置于所述第一收容空间内并将所述第一收容空间分隔为收容腔及进气腔,所述收容腔用于插置气溶胶产生装置的雾化器;
    主机电极,所述主机电极安装于所述电极支架并形成有进气通道,所述进气通道与所述进气腔连通;
    其中,所述电极支架具有使得所述进气口与所述进气腔连通的第一运动位置及使得所述进气口与所述收容腔连通的第二运动位置;
    所述雾化器包括雾化本体及雾化电极,所述雾化本体插置于所述收容腔且形成有雾化通道,所述雾化电极安装于所述雾化本体并与所述主机电极电连接;
    其中,所述雾化电极形成有与所述雾化通道连通的导向孔,所述主机电极插设于所述导向孔,以使得所述电极支架位于所述第一运动位置;或
    所述雾化本体形成有进气孔,所述进气孔分别与所述雾化通道及所述收容腔连通,所述雾化电极推动所述主机电极,以使得所述电极支架运动至所述第二运动位置。
  12. 根据权利要求11所述的气溶胶产生装置,其中,所述主机还包括弹性回复件,所述弹性回复件一端连接或抵接于所述电极支架,另一端连接或抵接于所述壳体。
  13. 根据权利要求11所述的气溶胶产生装置,其中,所述电极支架设有第一磁性件,所述壳体对应于所述第一磁性件的位置处设有第二磁性件,所述第一磁性件与所述第二磁性件相对的端面的磁性相同,以产生互斥力。
  14. 根据权利要求11所述的气溶胶产生装置,其中,所述壳体还形成有第二收容空间,所述主机还包括电源组件,所述电源组件设置于所述第二收容空间内并与所述主机电极电连接。
  15. 根据权利要求14所述的气溶胶产生装置,其中,所述主机还包括咪头,所述咪头与所述电源组件电连接。
  16. 根据权利要求15所述的气溶胶产生装置,其中,所述咪头设置于所述进气腔内,所述电极支架形成有第一咪头气道,所述第一咪头气道分别与所述收容腔及所述进气腔连通。
  17. 根据权利要求16所述的气溶胶产生装置,其中,所述进气腔包括所述电极支架形成的检测腔,所述咪头安装于所述检测腔内,所述电极支架还形成有第二咪头气道,所述第一咪头气道分别与所述检测腔及所述进气腔连通,所述第二咪头气道分别与所述检测腔及所述进气通道连通。
  18. 根据权利要求14所述的气溶胶产生装置,其中,所述壳体包括外壳及电池支架,所述电池支架安装于所述外壳且形成有所述第二收容空间。
  19. 根据权利要求18所述的气溶胶产生装置,其中,所述电池支架的外缘设有第一密封件,所述电池支架通过所述第一密封件与所述外壳的内壁密封抵接。
  20. 根据权利要求11所述的气溶胶产生装置,其中,所述壳体靠近所述收容腔的一侧设有第一卡和部,所述雾化器设有与所述第一卡和部配合的第二卡和部。
PCT/CN2022/104272 2021-11-10 2022-07-07 主机及气溶胶产生装置 WO2023082675A1 (zh)

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