WO2018014827A1 - 一种可拆卸雾化装置 - Google Patents

一种可拆卸雾化装置 Download PDF

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Publication number
WO2018014827A1
WO2018014827A1 PCT/CN2017/093323 CN2017093323W WO2018014827A1 WO 2018014827 A1 WO2018014827 A1 WO 2018014827A1 CN 2017093323 W CN2017093323 W CN 2017093323W WO 2018014827 A1 WO2018014827 A1 WO 2018014827A1
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WO
WIPO (PCT)
Prior art keywords
atomizing
liquid storage
storage container
housing
limiting
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Application number
PCT/CN2017/093323
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English (en)
French (fr)
Inventor
曹立
林洪涛
黄芳芳
李建霖
Original Assignee
广东东阳光药业有限公司
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.)
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Application filed by 广东东阳光药业有限公司 filed Critical 广东东阳光药业有限公司
Priority to CN201780006884.3A priority Critical patent/CN108601914B/zh
Publication of WO2018014827A1 publication Critical patent/WO2018014827A1/zh

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    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61MDEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
    • A61M11/00Sprayers or atomisers specially adapted for therapeutic purposes

Definitions

  • the present invention relates to the field of medical device technology, and in particular, to a detachable atomizing device.
  • a liquid storage chamber for holding the liquid medicine to be atomized is provided inside, and when the medicine is required to be administered, the liquid medicine is injected into the liquid storage chamber for atomization, and in this way, not only is needed After each use, the liquid storage chamber is cleaned and disinfected to increase the burden on the patient, and because of the lack of disinfection, etc., it is easy to cause secondary pollution and endanger the health of the patient.
  • the atomization component is fixedly connected with the liquid storage chamber, and the liquid injection port is arranged in the liquid storage cavity.
  • the atomization component and the liquid storage cavity need to be cleaned at the same time, thereby causing the cleaning time to be prolonged, and the atomization component is more. It is fixed on the casing, and the atomization component cannot be cleaned separately and there is a case where the cleaning is not complete.
  • An object of the present invention is to provide a detachable atomizing device which can solve the problem that the liquid storage chamber needs to be cleaned, disinfected or cleaned, and disinfected after each use in the prior art.
  • Another object of the present invention is to provide a detachable atomizing device in which the detachably connected atomizing assembly can be replaced or discarded, and it is possible to prevent the atomizing assembly from being used for a long time to cause clogging or cleaning to be in place to breed bacteria.
  • Still another object of the present invention is to provide a detachable atomizing device that allows a user to replace atomizing components of different specifications as needed to meet their own needs, and the sterilizing device has high versatility.
  • a detachable atomizing device comprising:
  • the housing being a cavity structure
  • An atomizing assembly is detachably coupled to the housing, the atomizing assembly is coupled to a liquid storage container, and the liquid storage container is detachably coupled to the atomizing assembly.
  • the liquid storage container is disposed adjacent to an end of the atomizing assembly along a radial direction thereof to define a finite position boss, and the atomizing assembly is provided with a fastener near the end of the liquid storage container, the fastening The piece is engaged with the limit boss.
  • the fastener is an internal thread
  • the limiting boss is an external thread
  • an external thread of the liquid storage container is engaged with an internal thread on the atomizing assembly.
  • the fastener is an elastic limiting piece, a gap is disposed between the elastic limiting piece and the atomizing component, and the elastic limiting piece is provided with a mounting groove, and the limiting protrusion is a limiting ring, the limiting ring is located at an end of the liquid storage container near the atomizing component; when installed, the limiting ring is located in a gap between the elastic limiting piece and the atomizing component .
  • the housing is provided with a first limiting slot
  • the atomizing assembly is provided with a locking member, and the locking member is tightly coupled with the first limiting slot.
  • the locking member is an elastic locking piece
  • the elastic locking piece is disposed at a top of the atomizing assembly
  • the first limiting slot is located at a side of the housing adjacent to the atomizing assembly. The elastic locking piece is engaged with the first limiting slot.
  • the locking member is a limiting block
  • the limiting block is disposed at a top of the atomizing assembly
  • the first limiting slot extends through the top of the housing
  • the first limiting slot is disposed
  • the limit dial block, the limit dial block abuts the limit block when the atomization assembly is installed in the housing.
  • an electronic control component is further included, and the electronic control component is disposed in the housing, and the electronic control A component is electrically coupled to the atomizing component.
  • the atomization assembly is disposed at one end of the liquid storage container with a first conductive joint, the second conductive joint is disposed in the housing, and the second conductive joint is electrically connected to the electronic control unit.
  • the first conductive joint is electrically connected to the second conductive joint when the atomizing assembly is installed in the housing.
  • said atomizing assembly comprises a flow guiding joint detachably connected to said liquid storage container, said flow guiding joint being detachably connected to said housing.
  • the housing comprises an upper housing and a lower housing, the upper housing being detachably coupled to the lower housing, the atomizing assembly being mounted on the upper housing, A reservoir is located within the interior of the upper housing.
  • the housing comprises an upper housing and a lower housing, the upper housing and the lower housing being integrally formed, the atomizing assembly being mounted on the upper housing, the liquid storage A container is located within the inner cavity of the upper housing.
  • the atomization component and the liquid storage container are detachably connected, and the liquid medicine can be conveniently replaced.
  • the liquid storage container is a disposable product
  • the time for cleaning the liquid storage container can be saved, and the user can be conveniently used, thereby avoiding each use.
  • Different liquid medicines need to be cleaned and disinfected in advance; when the liquid storage container can be used multiple times, the structure can prevent the atomizing assembly from being cleaned and completely disinfected when the atomizing assembly and the liquid storage container are integrated. The problem has occurred.
  • the structure can facilitate the user to separately remove the atomizing component to clean and disinfect, and avoid the use of the atomizing component for too long. Blocking or cleaning is not in place to breed bacteria.
  • the atomizing component and the liquid storage container can be discarded together as a disposable product.
  • the new atomizing component and the fully loaded liquid storage container can be replaced to completely avoid the trouble and pollution problem caused by the disinfection.
  • the versatility of the atomization device is high.
  • FIG. 1 is a schematic structural view of a detachable atomizing device provided in Embodiment 1;
  • Figure 2 is a cross-sectional view of the detachable atomizing device provided in Embodiment 1;
  • Embodiment 3 is a schematic structural view of an atomizing assembly provided in Embodiment 1;
  • Embodiment 4 is a schematic structural view of an upper casing provided in Embodiment 1;
  • FIG. 5 is a schematic structural view of a detachable atomizing device provided in Embodiment 2;
  • Figure 6 is a cross-sectional view of the detachable atomizing device provided in Embodiment 2;
  • FIG. 7 is a schematic structural view of an atomizing assembly provided in Embodiment 2.
  • the embodiment provides a detachable atomization device, including:
  • the housing 1 is a cavity structure
  • An atomizing assembly is detachably connected to the housing 1.
  • the end of the atomizing assembly connected to the housing 1 is connected with a liquid storage container 2, and the liquid storage container 2 is detachably connected to the atomizing assembly.
  • the end of the liquid storage container 2 adjacent to the atomizing assembly extends along the radial direction thereof to define a finite position boss.
  • the atomizing assembly is disposed at one end of the liquid storage container 2 with a fastener, and the fastener is engaged with the limiting boss. .
  • the atomization assembly includes a flow guiding joint 31, an atomizing sheet 32 for atomizing the chemical liquid, and an atomizing spray port 33 for discharging the atomized chemical liquid, and the atomizing sheet 32 is located.
  • the flow guiding joint 31 and the liquid storage container 2 and the casing 1 are both detachable. Connection.
  • the fastener is an internal thread
  • the limiting boss is an external thread
  • the external thread meshes with the internal thread on the atomizing assembly
  • the specific internal thread is disposed on the flow guiding joint 31.
  • the liquid storage container 2 is screwed into the flow guiding joint 31.
  • the structure is convenient for the user to disassemble the atomizing component and the liquid storage container 2, and the atomized component and the liquid storage container 2 after disassembly are convenient for the user to clean and disinfect.
  • the user When the user needs to be administered, the user installs the liquid storage container 2 containing the medical liquid on the flow guiding joint 31 to atomize the liquid medicine, and after the liquid medicine is used up, the empty liquid storage container 2 can be removed and replaced.
  • the liquid storage container 2 containing the liquid medicine can be used at one time, so that the process of cleaning the liquid storage chamber after each use by the user can be omitted, and the burden of the user operating the detachable atomizing device is greatly reduced. Make it easier for users to use.
  • the liquid storage container can be reused after being cleaned and disinfected; since the atomizing assembly, the liquid storage container, and the housing are detachably connected, cleaning and disinfection are not performed. problem.
  • the atomizing component may be blocked after a long time of use, or the cleaning may not be in place to breed bacteria, causing the atomizing component to fail, the atomizing component may be replaced and discarded together with the liquid storage container 2 after repeated use.
  • the atomizing component and the liquid storage container can be discarded together as a disposable product, and the new atomizing component and the fully loaded liquid storage container can be replaced, completely avoiding the troubles and pollution problems brought by the disinfection to the user, and ensuring the absolute cleaning of each medication, It meets the requirements for the use of liquid medicines with high cleanliness requirements.
  • each user's oral cavity size is different, and the types of aerosolized drugs are different, that is, the requirements for atomizing components are different. Therefore, the user can also replace the atomizing components of different specifications according to the needs to meet their actual needs, thereby improving the versatility of the atomizing device.
  • the housing 1 is provided with a first limiting slot 111, and the atomizing assembly is provided with a locking member.
  • the locking member is disposed at the diversion On the joint 31, the locking member cooperates with the first limiting groove 111 to connect the atomizing assembly with the housing 1.
  • the housing 1 includes an upper housing 11 and a lower housing 12, and the first limiting slot 111 is located on the upper housing 11.
  • the locking member is an elastic locking piece 5, and the elastic locking piece 5 is disposed on the top of the atomizing assembly.
  • the first limiting slot 111 is located on a side of the housing 1 adjacent to the atomizing assembly.
  • the elastic locking piece 5 is disposed.
  • the elastic locking piece 5 is engaged with the first limiting groove 111.
  • the second locking groove 51 is symmetrically disposed on both sides of the elastic locking piece 5 , and the second limiting groove 51 is disposed for fixing the elastic locking piece 5 to the cavity of the upper casing 11 .
  • the detachable connection between the upper casing 11 and the lower casing 12 is connected in a plugging manner in the embodiment.
  • the other embodiments may be connected by a snap connection.
  • the embodiment further includes an electronic control component.
  • the electronic control component is disposed in the housing 1.
  • the electrical control component is electrically connected to the atomization component for controlling the atomization component to atomize the medical solution.
  • the lower casing 12 is convenient for user operation.
  • a power switch 8 is also provided thereon, and the user can control the liquid atomization process by pressing the power switch 8.
  • a first conductive joint is disposed at one end of the atomizing assembly adjacent to the liquid storage container 2, and a second conductive joint is disposed in the housing 1 , and the second conductive joint is electrically connected to the electronic control component, and the atomizing component is installed in the housing 1
  • the first conductive joint is electrically connected to the second conductive joint for atomizing the chemical solution.
  • the electronic control component in this embodiment includes a controller 7 and a power supply device.
  • the controller is used to control the amount of atomization
  • the power supply device supplies power to the controller and the first conductive joint disposed on the flow guiding joint 31, and the power supply device is a rechargeable battery.
  • the liquid storage container 2 is located in the inner cavity of the upper casing 11. In other embodiments, the liquid storage container 2 may be located outside the casing 1.
  • the fastener in the embodiment is provided with an elastic limiting piece 4 at one end of the atomizing component adjacent to the liquid storage container 2 , and a gap is disposed between the elastic limiting piece 4 and the atomizing component.
  • the elastic limiting piece 4 is provided with a mounting groove to enable the liquid storage container 2 to be located on the elastic limiting piece 4.
  • the limiting protrusion is a limiting ring 21, and the end of the liquid storage container 2 near the flow guiding joint 31 is along the radial direction thereof.
  • the extension limit ring 21 is used to prevent the liquid storage container 2 from moving in the axial direction; when installed, the limit ring 21 is located in the gap between the elastic limit piece 4 and the atomization assembly to enable the liquid storage container 2 to be fixed at One side of the atomizing assembly.
  • the specific position of the elastic limiting piece 4 in this embodiment is disposed at one end of the flow guiding joint 31 adjacent to the liquid storage container 2.
  • the retaining ring 21 on the liquid storage container 2 is inserted from above the elastic limiting piece 4 into the gap between the elastic limiting piece 4 and the flow guiding joint 31.
  • the locking member is a limiting block 311 in the embodiment, and the limiting block 311 is disposed at the top of the atomizing assembly, specifically disposed at the top of the flow guiding joint 31; the limiting dial 6
  • the first limiting slot 111 is located in the first limiting slot 111, and the first limiting slot 111 extends through the top of the housing 1.
  • the limit dial 6 abuts against the limiting block 311.
  • the bottom of the limit dial 6 and the limiting block 311 cooperate with each other.
  • the limit dial 6 is located at one end of the first limiting slot 111, the bottom of the limiting dial 6 has no contact with the limiting block 311.
  • the housings can be separated from each other; when the limiting block 6 is located at the other end of the first limiting slot 111, the bottom of the limiting dial 6 contacts the limiting block 311 to restrict the atomizing assembly to the housing 1 so that the two Can not be separated.
  • the structure is simple and can be easily disassembled by the user, especially for the elderly, the structure is convenient to disassemble and can be replaced by the liquid.
  • the fastener is an elastic limiting piece disposed at one end of the atomizing component adjacent to the liquid storage container, a gap is disposed between the elastic limiting piece and the atomizing component, and the elastic limiting piece is provided with a mounting groove to make the liquid storage container It can be located on the elastic limiting piece, the limiting boss is a limiting ring, and the end of the liquid storage container close to the flow guiding joint extends in the radial direction thereof.
  • the limiting ring is used to prevent the liquid storage container from moving in the axial direction;
  • the ring is located in the gap between the elastic limiting piece and the atomizing assembly to enable the reservoir to be secured to one side of the atomizing assembly.
  • the specific position of the elastic limiting piece is set at one end of the flow guiding joint near the liquid storage container.
  • the locking member is a limiting block, and the limiting block is disposed at the top of the atomizing assembly, and is specifically disposed at the top of the flow guiding joint; the limiting dial block is located in the first limiting slot, and the first limiting position is The slot extends through the top of the housing.
  • the limit dial blocks abut against the limiting block.
  • the bottom of the limit dial and the limit block cooperate with each other.
  • the limit dial is located at one end of the first limit slot, the bottom of the limit block has no contact with the limit block, and the atomization component and the housing can be separated at this time.
  • the limit dial is located in the first limit slot At the end, the bottom of the limit dial contacts the limit block to confine the atomizing assembly within the housing so that the two cannot be separated.
  • the housing includes an upper housing and a lower housing, the upper housing and the lower housing are integrally formed, and the atomizing assembly is mounted on the upper housing, and the storage A liquid container is located within the inner cavity of the upper housing.

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  • Health & Medical Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Anesthesiology (AREA)
  • Biomedical Technology (AREA)
  • Heart & Thoracic Surgery (AREA)
  • Hematology (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Animal Behavior & Ethology (AREA)
  • General Health & Medical Sciences (AREA)
  • Public Health (AREA)
  • Veterinary Medicine (AREA)
  • Special Spraying Apparatus (AREA)
  • Apparatus For Disinfection Or Sterilisation (AREA)

Abstract

一种可拆卸雾化装置,包括:壳体(1),壳体(1)为空腔结构;雾化组件可拆卸式连接于壳体(1)上,雾化组件连接有储液容器(2),储液容器(2)与雾化组件可拆卸式连接。储液容器(2)可拆卸式连接,能够方便更换药液,避免清洗、消毒储液容器(2)的麻烦或清洗、消毒不彻底的问题。另外,雾化组件可更换或丢弃,能够避免雾化组件使用时间过长导致阻塞或者清洗不到位而滋生细菌,也可将雾化组件和储液容器(2)共同作为一次性用品丢弃,更换新的雾化组件和满载的储液容器(2),彻底避免消毒带给用户的麻烦和污染问题,以满足对洁净度要求高的药液的使用要求,且用户可根据需要更换不同规格的雾化组件,以满足自身的需求,雾化装置的通用性高。

Description

一种可拆卸雾化装置 技术领域
本发明涉及医疗器械技术领域,尤其涉及一种可拆卸雾化装置。
背景技术
现有技术中的雾化装置,内部设有用于盛放待雾化药液的储液腔,需要进行给药时,向储液腔内注入药液进行雾化,采用此种方式,不但需要每次使用后对储液腔进行清洗和消毒,加大病人使用时的负担,而且由于消毒不到位等原因,易造成二次污染,危害病人健康。
同时雾化组件多与储液腔固定连接,储液腔内设置有药液投放口,清洗时,需要对雾化组件、储液腔同时清洗,进而造成清洗时间的延长,同时雾化组件多固定在壳体上,不能对雾化组件进行单独清洗且存在清洗不彻底的情况。
因此,如何提出一种雾化装置,能够解决现有技术中每次使用后需要对储液腔进行清洗、消毒或清洗、消毒不彻底,是本领域技术人员需要解决的技术问题。
发明内容
本发明的一个目的在于提出一种可拆卸雾化装置,能够解决现有技术中每次使用后需要对储液腔进行清洗、消毒或清洗、消毒不彻底的问题。
本发明的另一个目的在于提出一种可拆卸雾化装置,可拆卸连接的雾化组件可更换或丢弃,能够避免雾化组件使用时间过长导致阻塞或者清洗不到位而滋生细菌。
本发明的又一个目的在于提出一种可拆卸雾化装置,用户可根据需要更换不同规格的雾化组件,以满足自身的需求,雾化装置的通用性高。
为达此目的,本发明采用以下技术方案:
提供一种可拆卸雾化装置,包括:
壳体,所述壳体为空腔结构;
雾化组件,所述雾化组件可拆卸式连接于所述壳体上,所述雾化组件连接有储液容器,所述储液容器与所述雾化组件可拆卸式连接。
作为优选,所述储液容器靠近所述雾化组件的一端沿其径向延伸设置有限位凸台,所述雾化组件靠近所述储液容器的端设置有紧固件,所述紧固件与所述限位凸台卡接。
作为优选,所述紧固件为内螺纹,所述限位凸台为外螺纹,所述储液容器的外螺纹与所述雾化组件上的内螺纹相啮合。
作为优选,所述紧固件为弹性限位片,所述弹性限位片与所述雾化组件之间设置有空隙,所述弹性限位片上设置有安装槽,所述限位凸台为限位环,所述限位环位于所述储液容器靠近所述雾化组件的一端;安装时,所述限位环位于所述弹性限位片与所述雾化组件之间的空隙内。
作为优选,所述壳体上设置有第一限位槽,所述雾化组件上设置有锁定件,所述锁定件与所述第一限位槽锁紧连接。
作为优选,所述锁定件为弹性锁定片,所述弹性锁定片设置于所述雾化组件的顶部,所述第一限位槽位于所述壳体靠近所述雾化组件的一侧,所述弹性锁定片与所述第一限位槽卡接。
作为优选,所述锁定件为限位块,所述限位块设置在所述雾化组件的顶部,所述第一限位槽贯穿所述壳体顶部,所述第一限位槽内设置有限位拨块,所述雾化组件安装于壳体内时,所述限位拨块与所述限位块抵接。
作为优选,还包括电控组件,所述电控组件设置于所述壳体内,所述电控 组件与所述雾化组件电连接。
作为优选,所述雾化组件靠近所述储液容器的一端设置有第一导电接头,所述壳体内设置有第二导电接头,所述第二导电接头与所述电控组件导电连接,所述雾化组件安装于壳体内时,所述第一导电接头与所述第二导电接头导电连接。
作为优选,所述雾化组件包括导流接头,所述导流接头与所述储液容器可拆卸式连接,所述导流接头与所述壳体可拆卸式连接。
作为优选,所述壳体包括上壳体与下壳体,所述上壳体与所述下壳体之间可拆卸式连接,所述雾化组件安装在所述上壳体上,所述储液容器位于所述上壳体内腔内。
作为优选,所述壳体包括上壳体与下壳体,所述上壳体与所述下壳体是一体成型结构,所述雾化组件安装在所述上壳体上,所述储液容器位于所述上壳体内腔内。
本发明的有益效果:
本发明中雾化组件与储液容器可拆卸式连接,能够方便更换药液,当储液容器为一次性用品时,可节省清洗储液容器的时间,同时方便用户使用,避免了每次使用不同药液需要预先清洗、消毒储液容器的麻烦;当储液容器可多次使用时,该种结构能够避免雾化组件与储液容器为一体式结构时雾化组件不能清洗、消毒彻底的问题发生。同时雾化组件与壳体之间为可拆卸式连接结构,雾化组件可更换或丢弃,该种结构能够方便用户将雾化组件单独拆下清洗以及消毒,避免雾化组件使用时间过长导致阻塞或者清洗不到位而滋生细菌,也可将雾化组件和储液容器共同作为一次性用品丢弃,更换新的雾化组件和满载的储液容器,彻底避免消毒带给用户的麻烦和污染问题,保证每次用药的绝对清 洁,以满足对洁净度要求高的药液的使用要求,且用户可根据需要更换不同规格的雾化组件,以满足自身的需求,雾化装置的通用性高。
附图说明
图1是实施例1提供的可拆卸雾化装置的结构示意图;
图2是实施例1提供的可拆卸雾化装置的剖视图;
图3是实施例1提供的雾化组件的结构示意图;
图4是实施例1提供的上壳体的结构示意图;
图5是实施例2提供的可拆卸雾化装置的结构示意图;
图6是实施例2提供的可拆卸雾化装置的剖视图;
图7是实施例2提供的雾化组件的结构示意图。
图中:
1、壳体;11、上壳体;111、第一限位槽;12、下壳体;2、储液容器;21、限位环;31、导流接头;311、限位块;32、雾化片;33、雾化喷出口;4、弹性限位片;5、弹性锁定片;51、第二限位槽;6、限位拨块;7、控制器;8、电源开关。
具体实施方式
为了使本领域技术人员更好地理解本发明的技术方案,下面结合附图并通过具体实施方式来进一步说明本发明的技术方案。
实施例1
请参考图1-3,本实施例提供一种可拆卸雾化装置,其包括:
壳体1,壳体1为空腔结构;
雾化组件,所述雾化组件可拆卸式连接于壳体1上,雾化组件与壳体1相连的一端连接有储液容器2,储液容器2与雾化组件可拆卸式连接。
其中储液容器2靠近雾化组件的一端沿其径向延伸设置有限位凸台,雾化组件靠近储液容器2的一端设置有紧固件,紧固件与所述限位凸台卡接。
如图2所示,上述雾化组件包括导流接头31、用于将药液雾化的雾化片32以及将雾化后的药液喷出的雾化喷出口33,雾化片32位于雾化喷出口33与所述导流接头31之间,且雾化片32与雾化喷出口33、导流接头密封连接,导流接头31与储液容器2、壳体1均为可拆卸式连接。
本实施例中紧固件为内螺纹,限位凸台为外螺纹,外螺纹与雾化组件上的内螺纹相互啮合,具体的内螺纹设置在导流接头31上。安装时,储液容器2旋拧入导流接头31。该种结构方便用户拆装雾化组件与储液容器2,同时拆卸后的雾化组件、储液容器2方便用户清洗、消毒。
当用户需要给药时,用户将装有药液的储液容器2安装在导流接头31上使药液进行雾化,药液用尽后,可以将空的储液容器2拆卸下来,更换上盛有药液的储液容器2,储液容器2可以一次性使用,这样可以省去用户每次使用后对储液腔进行清洗的过程,大大降低用户操作可拆卸雾化装置的负担,使用户使用更加方便。当然,为了降低医用垃圾制造率,该储液容器也可以清洗消毒后再次使用;由于雾化组件、储液容器、壳体为可拆卸式连接,因此清洗消毒时不会出现清洗消毒不彻底的问题。
由于雾化组件使用时间较长后雾化组件可能会发生阻塞或者清洗不到位而滋生细菌,导致雾化组件失效,因此多次使用后雾化组件可以和储液容器2一起更换丢弃,当然也可将雾化组件和储液容器共同作为一次性用品丢弃,更换新的雾化组件和满载的储液容器,彻底避免消毒带给用户的麻烦和污染问题,保证每次用药的绝对清洁,以满足对洁净度要求高的药液的使用要求,同时,每个用户的口腔大小不同,雾化的药物种类不同,即对雾化组件的需求不同, 因此用户也可根据需要更换不同规格的雾化组件,以满足自身的实际需求,从而提高雾化装置的通用性。
为了方便用户拆装雾化组件与壳体1,本实施例中所述壳体1上设置有第一限位槽111,雾化组件上设置有锁定件,具体的,锁定件设置在导流接头31上,锁定件与第一限位槽111配合将雾化组件与壳体1连接。具体地,壳体1包括上壳体11与下壳体12,第一限位槽111位于上壳体11上。
其中,上述锁定件为弹性锁定片5,弹性锁定片5设置于雾化组件的顶部,第一限位槽111位于壳体1靠近雾化组件的一侧,本实施例中弹性锁定片5设置在导流接头31的顶部,且弹性锁定片5与第一限位槽111卡接。如图3所示,具体的,弹性锁定片5两侧对称设置有第二限位槽51,设置第二限位槽51的目的是为了将弹性锁定片5固定在上壳体11的空腔内。当弹性锁定片5为自然状态时,第二限位槽51靠近储液容器2的一端与上壳体11抵接使雾化组件与壳体1连接;当需要将雾化组件与壳体1分离时,只需要按动弹性锁定片5即可将二者分离。
上壳体11与下壳体12之间可拆卸式连接,本实施例中采用插接方式连接,当然其他实施例中可以采用卡扣连接的方式连接。
本实施例中还包括电控组件,电控组件设置于壳体1内,电控组件与雾化组件电连接用于控制雾化组件将药液雾化,为了便于用户操作,下壳体12上还设置有电源开关8,用户按下电源开关8就可以控制药液雾化进程。
上述雾化组件靠近储液容器2的一端设置有第一导电接头,壳体1内设置有第二导电接头,第二导电接头与电控组件导电连接,雾化组件安装于壳体1内时,第一导电接头与第二导电接头导电连接用于雾化药液。
本实施例中电控组件包括控制器7以及供电装置。控制器用于控制雾化量, 供电装置为控制器以及设置在导流接头31上的第一导电接头提供电能,且供电装置为可充电电池。
本实施例中储液容器2位于上壳体11内腔内,其他实施例中储液容器2可位于壳体1的外部。
实施例2
本实施例与实施例1的不同之处在于:
如图5、图6所示,本实施例中紧固件为雾化组件靠近储液容器2的一端设置有弹性限位片4,弹性限位片4与雾化组件之间设置有空隙,弹性限位片4上设置有安装槽使储液容器2能够位于弹性限位片4上,限位凸台为限位环21,储液容器2靠近导流接头31的一端沿其径向方向延伸有限位环21用于防止储液容器2轴向方向移动;安装时,限位环21位于所述弹性限位片4与雾化组件之间的空隙内使储液容器2能够被固定在雾化组件的一侧。
本实施例中弹性限位片4的具体位置设置在导流接头31靠近储液容器2的一端。
安装时,将储液容器2上的限位环21从弹性限位片4上方插入弹性限位片4与导流接头31之间的间隙内。
如图5、图7所示,本实施例中锁定件为限位块311,该限位块311设置在雾化组件的顶部,具体的设置在导流接头31的顶部;限位拨块6位于第一限位槽111内,且第一限位槽111贯穿该壳体1顶部。雾化组件安装于壳体1内时,限位拨块6与限位块311抵接。限位拨块6底部与限位块311相互配合,当限位拨块6位于第一限位槽111一端时,限位拨块6底部与限位块311无接触,此时雾化组件与壳体之间能够分离;当限位拨块6位于第一限位槽111另外一端时,限位拨块6底部与限位块311接触将雾化组件限制在壳体1内,使二者 不能分离。
该种结构简单,能够方便用户拆装,尤其是对于年长者而言,该种结构方便拆装,可自行更换药液。
本实施例中其他结构与实施例1相同,在此不再赘述。
实施例3
本实施例与实施例1的不同之处在于:
本实施例中紧固件是雾化组件靠近储液容器的一端设置有弹性限位片,弹性限位片与雾化组件之间设置有空隙,弹性限位片上设置有安装槽使储液容器能够位于弹性限位片上,限位凸台为限位环,储液容器靠近导流接头的一端沿其径向方向延伸有限位环用于防止储液容器轴向方向移动;安装时,限位环位于所述弹性限位片与雾化组件之间的空隙内使储液容器能够被固定在雾化组件的一侧。
本实施例中弹性限位片的具体位置设置在导流接头靠近储液容器的一端。
安装时,将储液容器上的限位环从弹性限位片上方插入弹性限位片与导流接头之间的间隙内。
本实施例中其他结构与实施例1相同,在此不再赘述。
实施例4
本实施例与实施例1的不同之处在于:
本实施例中锁定件为限位块,该限位块设置在雾化组件的顶部,具体的设置在导流接头的顶部;限位拨块位于第一限位槽内,且第一限位槽贯穿该壳体顶部。雾化组件安装于壳体内时,限位拨块与限位块抵接。限位拨块底部与限位块相互配合,当限位拨块位于第一限位槽一端时,限位拨块底部与限位块无接触,此时雾化组件与壳体之间能够分离;当限位拨块位于第一限位槽另外一 端时,限位拨块底部与限位块接触将雾化组件限制在壳体内,使二者不能分离。
本实施例中其他结构与实施例1相同,在此不再赘述。
实施例5
本实施例与实施例1的不同之处在于:
本实施例中所述壳体包括上壳体与下壳体,所述上壳体与所述下壳体是一体成型结构,所述雾化组件安装在所述上壳体上,所述储液容器位于所述上壳体内腔内。
本实施例中其他结构与实施例1相同,在此不再赘述。
注意,以上显示和描述了本发明的基本原理和主要特征和本发明的优点。本行业的技术人员应该了解,本发明不受上述实施方式的限制,上述实施方式和说明书中描述的只是说明本发明的原理,在不脱离本发明精神和范围的前提下,本发明还会有各种变化和改进,这些变化和改进都落入要求保护的本发明范围内,本发明的要求保护范围由所附的权利要求书及其等效物界定。

Claims (10)

  1. 一种可拆卸雾化装置,其特征在于,包括:
    壳体(1),所述壳体(1)为空腔结构;
    雾化组件,所述雾化组件可拆卸式连接于所述壳体(1)上,所述雾化组件连接有储液容器(2),所述储液容器(2)与所述雾化组件可拆卸式连接。
  2. 根据权利要求1所述的可拆卸雾化装置,其特征在于,所述储液容器(2)靠近所述雾化组件的一端沿其径向延伸设置有限位凸台,所述雾化组件靠近所述储液容器(2)的一端设置有紧固件,所述紧固件与所述限位凸台卡接。
  3. 根据权利要求2所述的可拆卸雾化装置,其特征在于,所述紧固件为内螺纹,所述限位凸台为外螺纹,所述储液容器(2)的外螺纹与所述雾化组件上的内螺纹相啮合。
  4. 根据权利要求2所述的可拆卸雾化装置,其特征在于,所述紧固件为弹性限位片(4),所述弹性限位片(4)与所述雾化组件之间设置有空隙,所述弹性限位片(4)上设置有安装槽,所述限位凸台为限位环(21),所述限位环(21)位于所述储液容器(2)靠近所述雾化组件的一端;安装时,所述限位环(21)位于所述弹性限位片(4)与所述雾化组件之间的空隙内。
  5. 根据权利要求1-4任一项所述的可拆卸雾化装置,其特征在于,所述壳体(1)上设置有第一限位槽(111),所述雾化组件上设置有锁定件,所述锁定件与所述第一限位槽(111)锁紧连接。
  6. 根据权利要求5所述的可拆卸雾化装置,其特征在于,所述锁定件为弹性锁定片(5),所述弹性锁定片(5)设置于所述雾化组件的顶部,所述第一限位槽(111)位于所述壳体(1)靠近所述雾化组件的一侧,所述弹性锁定片(5)与所述第一限位槽(111)卡接。
  7. 根据权利要求5所述的可拆卸雾化装置,其特征在于,所述锁定件为限 位块(311),所述限位块(311)设置在所述雾化组件的顶部,所述第一限位槽(111)贯穿所述壳体(1)顶部,所述第一限位槽(111)内设置有限位拨块(6),所述雾化组件安装于壳体(1)内时,所述限位拨块(6)与所述限位块(311)抵接。
  8. 根据权利要求1-4任一项所述的可拆卸雾化装置,其特征在于,还包括电控组件,所述电控组件设置于所述壳体(1)内,所述电控组件与所述雾化组件电连接。
  9. 根据权利要求8所述的可拆卸雾化装置,其特征在于,所述雾化组件靠近所述储液容器(2)的一端设置有第一导电接头,所述壳体(1)内设置有第二导电接头,所述第二导电接头与所述电控组件导电连接,所述雾化组件安装于壳体(1)内时,所述第一导电接头与所述第二导电接头导电连接。
  10. 根据权利要求1-4任一项所述的可拆卸雾化装置,其特征在于,所述雾化组件包括导流接头(31),所述导流接头(31)与所述储液容器(2)可拆卸式连接,所述导流接头(31)与所述壳体(1)可拆卸式连接。
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