WO2019214111A1 - 发烟加热器件的分离器及雾化装置 - Google Patents

发烟加热器件的分离器及雾化装置 Download PDF

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Publication number
WO2019214111A1
WO2019214111A1 PCT/CN2018/102598 CN2018102598W WO2019214111A1 WO 2019214111 A1 WO2019214111 A1 WO 2019214111A1 CN 2018102598 W CN2018102598 W CN 2018102598W WO 2019214111 A1 WO2019214111 A1 WO 2019214111A1
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WIPO (PCT)
Prior art keywords
heating
separator
heating assembly
smoking
forming body
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PCT/CN2018/102598
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English (en)
French (fr)
Inventor
陈磊
王晶
张文占
闫征
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深圳市子午线信息科技有限公司
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Publication of WO2019214111A1 publication Critical patent/WO2019214111A1/zh

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    • A24F47/008

Definitions

  • the present application relates to the field of electronic aerosolization technologies, and in particular, to a separator and an atomizing device for a smoking heating device.
  • the main object of the present application is to provide a separator and an atomizing device for a smoking heating device.
  • a separator for providing a smoking heating device includes:
  • an aerosol forming body wherein one end of the aerosol forming body is filled with a medium
  • a heating assembly the heating assembly is disposed adjacent to an end of the aerosol forming body containing the medium to heat the atomizing medium;
  • the container includes a first receiving cavity for receiving one end of the aerosol forming body, and a second receiving cavity for receiving the heating component, wherein the second receiving cavity has a first position for sliding the heating component And the second position, when the heating assembly is in the first position, the heating assembly portion extends into the aerosol forming body to form a heating position, and when the heating assembly is in the second position, the heating assembly contacts the end of the aerosol forming body to form Separation position
  • a pusher the pusher is disposed outside the receptacle and is slidably engaged with the receptacle, the pusher may partially abut the heating component, or the pusher is disposed on the heating component to be in the pusher When sliding, the heating assembly is moved between the heating position and the separating position.
  • the heating assembly includes a support body and a heating piece disposed on the support body, and a hole for extending the heating piece is formed between the first receiving cavity and the second receiving cavity of the receiving device.
  • the heater chip portion extends into the aerosol formation body when the heating assembly is in the heated position; the heater chip is in contact with the medium at the end of the aerosol formation body when the heating assembly is in the disengaged position.
  • the heating sheet is a ceramic heating sheet or a PTC heating sheet.
  • the heating assembly further comprises a temperature measuring component disposed on the heating sheet, wherein the temperature measuring component is located at an end of the heating sheet near the support body.
  • the temperature measuring component is a thermistor or a thermocouple.
  • a stop surface is formed between the first receiving cavity and the second receiving cavity of the container, and a plurality of holes are formed on the stopping surface, when the heat generating component moves to the heating position, The stop surface abuts against the front end surface of the support body, wherein the front end surface and the rear end surface are oppositely disposed.
  • an elastic member is disposed between the pusher and the support body, and when an external force acts on the pusher, the pusher can move the heating piece to the separated position by compressing or stretching the elastic member, when the external force is cancelled, The deformation of the elastic member causes the heating piece to move to the heating position.
  • the technical solution of the present application mainly includes a heating component, a container, a smoke forming body and a pusher, which is different from the problem that the heating component in the prior art is fixed in position, which is inconvenient to clean and affects the atomization efficiency.
  • the heating component is disposed in the second receiving cavity of the container, and the atomizing medium is heated when the heating component is in the heating position, and the smoke forming body can be pulled out when the heating component is located in the separating station;
  • the sliding assembly of the device can replace or clean the heating component separately to ensure the atomization efficiency of the heating component, reduce the accumulation of waste on the heating component, and enable the product to be used for a long time, thereby improving the user experience.
  • FIG. 1 is a schematic view showing the overall structure of a separator of a smoking heating device according to an embodiment of the present application
  • FIG. 2 is a schematic exploded view of a separator of a smoking heating device according to an embodiment of the present application
  • FIG. 3 is a cross-sectional view of the heating assembly of FIG. 1 in a separated position
  • FIG. 4 is a cross-sectional view of the heating assembly of FIG. 1 in a heated position.
  • first”, “second” and the like in the present application are for the purpose of description only, and are not to be understood as indicating or implying their relative importance or implicitly indicating the number of indicated technical features. .
  • features defining “first” and “second” may include at least one of the features, either explicitly or implicitly.
  • the technical solutions between the various embodiments may be combined with each other, but must be based on the realization of those skilled in the art. When the combination of technical solutions is contradictory or impossible to implement, it should be considered that the combination of the technical solutions does not exist. Nor is it within the scope of protection required by this application.
  • FIG. 1 is a schematic diagram of an overall structure of a separator of a smoking heating device according to an embodiment of the present invention
  • FIG. 2 is a schematic exploded view of a separator of a smoking heating device according to an embodiment of the present application
  • Figure 3 is a cross-sectional view of the heating assembly of Figure 1 in a disengaged position
  • Figure 4 is a cross-sectional view of the heating assembly of Figure 1 in a heated position.
  • the separator of the smoking heating device includes: [0036] an aerosol forming body 40, wherein one end of the aerosol forming body 40 is filled with a medium;
  • a heating assembly 50 the heating assembly 50 is disposed adjacent to an end of the aerosol forming body 40 containing the medium to heat the atomizing medium;
  • the container 20 includes a first housing chamber 22 that accommodates the end of the aerosol-forming body 40, and a second housing chamber 23 that houses the heating assembly 50.
  • the second housing chamber 23 has a second housing chamber 23 therein.
  • the first and second positions of the heating assembly 50 are slid. When the heating assembly 50 is in the first position, the heating assembly 50 partially extends into the aerosol forming body 40 to form a heating position, and when the heating assembly 50 is in the second position, heating The assembly 50 is in contact with an end of the aerosol forming body 40 to form a separated position;
  • the pusher 30 is disposed outside the receiver 20 and slidably engaged with the receiver 20, and the pusher 30 can partially abut the heating assembly 50 to drive the heating when the pusher 30 slides.
  • the assembly 50 moves between a heated position and a separated position.
  • the pusher 30 described above can also be disposed on the heating assembly 50.
  • the smoke forming body 40 can be designed as an electronic cigarette.
  • One end of the electronic cigarette has an aerosol forming body 40, that is, one end of the electronic cigarette can form a receiving portion for accommodating the medium, and the medium can be tobacco or the like.
  • the heating assembly 50 can heat the atomizing medium to create an aerosol that can be ingested by the user when the user is pumping.
  • the container 20 includes a receiver body 21 and a first housing chamber 22 and a second housing chamber 23 at opposite ends of the container body 21. The container 20 is mainly used for placing the aerosol forming body 40.
  • the aerosol forming body 40 can be inserted into and received in the first receiving cavity 22 of the container 20, and the aerosol forming body 40 can be disposed through the first receiving cavity 22.
  • a limit is made to facilitate the engagement of the heating assembly 50 with the aerosol forming body 40.
  • the container 20 further has a second receiving cavity 23 having a first position and a second position for moving the heating assembly 50. When the heating assembly 50 is moved to the first position, the heating assembly 50 is partially extended.
  • the heating assembly 50 heats the atomizing medium with maximum atomization efficiency; when the heating assembly 50 moves to the second position, the heating assembly 50 and the aerosol forming body 40 The end of the medium contacts, at which point the heating assembly 50 only heats the atomized portion of the medium, both at a critical point of separation, at which point the aerosol former 40 can be withdrawn.
  • the heating assembly 50 of the embodiment is slidably disposed, and the heating assembly 50 can be separated from the accommodator 20 to realize replacement of the heating assembly 50, which is convenient for cleaning and ensures the fogging efficiency of the heating assembly 50.
  • the technical solution of the present application mainly includes a heating assembly 50, a container 20, an aerosol forming body 40, and a pusher 30.
  • the heating assembly 50 is fixed in position, and the cleaning is inconvenient to affect the atomization efficiency.
  • the heating assembly 50 of the present solution is movably disposed in the second receiving cavity 23 of the container 20, when the heating assembly 5 When the heating position is 0, the atomizing medium can be heated, and when the heating unit 50 is located at the separating station, the smoke forming body 40 can be pulled out; the heating unit 50 is slidably engaged with the receiving unit 20, and the heating unit 50 can be replaced or cleaned separately.
  • the atomization efficiency of the heating assembly 50 is ensured, the accumulation of waste on the heating assembly 50 is reduced, and the product can be used for a long time, thereby improving the user experience.
  • the heating assembly 50 includes a support body 52 and a heating piece 51 disposed on the support body 52.
  • the first receiving cavity 22 and the second receiving cavity 23 of the receiving device 20 There is formed a hole 25 for extending the heating piece 51.
  • the heating piece 51 partially protrudes into the aerosol forming body 40; when the heating assembly 50 is in the separated position, the heating The sheet 51 is in contact with the medium at the end of the aerosol-forming body 40.
  • the heater chip 51 is disposed in a sheet shape, and the width of the heater chip 51 is gradually narrowed from the end to the free end of the support body 52 to facilitate the insertion of the heater chip 51 into the interior of the aerosol former 40.
  • the free end of the heater chip 51 is disposed in a pointed shape.
  • a limiting groove of the limiting heating piece 51 may be disposed on the support body 52.
  • the support body 52 is integrally provided in a ring shape to slide in the second housing chamber 23. Considering the problem that the rear end surface of the support body 52 abuts against the stopper 60, the rear end surface of the support body 52 may form an annular convex edge, and the stopper member 60 is formed with an annular recess correspondingly to better realize the two.
  • the rear end surface of the support body 52 is in contact with the stopper 60.
  • the stop member 60 includes a stop body 61, and the stop body 61 defines a receiving groove 62 for receiving the support body 52.
  • the heating sheet 51 is a ceramic heating sheet or a PTC heating sheet. It is to be understood that the heating sheet 51 of the present embodiment includes, but is not limited to, a ceramic heating sheet or a PTC heating sheet.
  • the heating assembly 50 further includes a temperature measuring component disposed on the heating sheet 51, and the temperature measuring component is located at one end of the heating sheet 51 near the support body 52.
  • the temperature measuring component can detect the real-time temperature of the heating piece 51, and collect the real-time.
  • the temperature data is further controlled by the control unit 11 to control the current or voltage of the heater chip 51 to adjust the power of the heater chip 51.
  • the control component 11 controls the current or voltage of the heating pad 51 according to the collected real-time temperature data to generate heat for the heat generating sheets at different positions to achieve accurate heating temperature control.
  • the temperature measuring component is a thermistor or a thermocouple. It can be understood that the above temperature measuring component includes However, it is not limited to a thermistor or a thermocouple, and may be a test circuit including a thermistor or a thermocouple.
  • the housing 10 is specifically cylindrical, and the inside of the housing 10 is penetrated, and one end of the housing 10 near the heat generating component is provided with a stopper 60 spaced from the heat generating component, and the stopper 60 can block The heat generating component continues to move, preventing the heat generating component from slipping out of the housing 10.
  • a stop surface 24 is formed between the first receiving cavity 22 and the second receiving cavity 23 of the container 20, and a plurality of holes are formed in the stopping surface 24.
  • the stop surface 24 abuts against the front end surface of the support body 52 when the heat generating component moves to the heating position, wherein the front end surface and the rear end surface are oppositely disposed.
  • the number of holes described above can be flexibly set according to the amount of aerosol.
  • the shape of the hole position may be circular, square or irregular, which is not limited herein.
  • an elastic member is disposed between the pusher 30 and the support body 52.
  • the pusher 30 can drive the heat sink by compressing or stretching the elastic member.
  • the 51 moves to the separated position, and when the external force is cancelled, the elastic member returns to the deformation to drive the heating piece 51 to the heating position.
  • the elastic member is configured to provide an elastic restoring force to urge the heat generating component to return to the heating position.
  • the elastic member may be a spring, and when the pusher 30 slides with the outer casing, the tension or compression spring causes the spring to elastically deform, so that when the external force is cancelled, the deformation of the spring is restored by the spring to bring the heat generating component back to the heating position.
  • the flange of the smoke forming body 40 is further included, and the flange is formed on the side edge of the heating sheet 51 to limit the smoke forming body 40 when the heating sheet 51 is in the heating position.
  • the flange can abut against the inside of the aerosol forming body 40 when the heating sheet 51 is in the heating position, and has a certain limit function.
  • the inner wall of the first receiving chamber 22 may also be provided with a projection for limiting the smoke forming body 40 to better limit the limiting aerosol forming body 40.
  • the atomizing device includes a separator of a smoking heating device.
  • the separator is a separator of the smoking heating device in the above embodiment, and the specific structure will not be described herein. Since the atomizing device employs a separator for the smoking heating device, all the advantages and effects of the separator having the smoking heating device are obtained.

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Abstract

本申请公开一种发烟加热器件的分离器及雾化装置,该分离器包括:烟雾形成体;加热组件,所述加热组件靠近烟雾形成体装有介质的一端设置;容置器,所述容置器包括容纳烟雾形成体一端的第一收纳腔,以及收容加热组件的第二收纳腔,所述第二收纳腔内具有使加热组件滑动的第一位置和第二位置;推动器,所述推动器设于容置器外侧且与容置器滑动配合,所述推动器可部分抵接加热组件,或所述推动器设置于加热组件上,以在推动器滑动时带动加热组件运动于加热位置与分离位置之间。本申请的技术方案能够方便更换加热组件,有利于清洗加热组件,保证产品雾化效率,提升用户体验。

Description

发烟加热器件的分离器及雾化装置
[0001] 本申请是以申请号为 201810436745.0、 申请日为 2018年 5月 9日的中国专利申请 为基础, 并主张其优先权, 该申请的全部内容在此作为整体引入本申请中。
[0002] 技术领域
[0003] 本申请涉及电子烟雾化技术领域, 尤其涉及一种发烟加热器件的分离器及雾化 装置。
[0004] 背景技术
[0005] 随着电子技术的不断发展和人们物质生活水平的不断提高, 电子烟雾化技术也 取得了飞速的发展。 为了满足人们的需求, 市面上出现各种各样的雾化装置。 上述的雾化装置在香烟的介质用尽时, 往往需要将香烟拔出更换。 由于装置内 的加热组件的位置是固定的, 且加热组件在对香烟的介质进行加热时, 其上往 往容易残留废弃物, 多次使用后废弃物容易积累影响香烟的雾化效率。 因此, 如何对加热组件设计业已成为业内亟待解决的技术问题。
[0006] 有鉴于此, 有必要提出对目前的加热组件的结构进行进一步的改进。
[0007] 申请内容
[0008] 为解决上述至少一技术问题, 本申请的主要目的是提供一种发烟加热器件的分 离器及雾化装置。
[0009] 为实现上述目的, 本申请采用的一个技术方案为: 提供一种发烟加热器件的分 离器, 包括:
[0010] 烟雾形成体, 所述烟雾形成体的一端装有介质;
[0011] 加热组件, 所述加热组件靠近烟雾形成体装有介质的一端设置, 以加热雾化介 质;
[0012] 容置器, 所述容置器包括容纳烟雾形成体一端的第一收纳腔, 以及收容加热组 件的第二收纳腔, 所述第二收纳腔内具有使加热组件滑动的第一位置和第二位 置, 在加热组件处于第一位置时, 加热组件部分伸入烟雾形成体内以形成加热 位置, 在加热组件处于第二位置时, 加热组件与烟雾形成体的端部接触以形成 分离位置;
[0013] 推动器, 所述推动器设于容置器外侧且与容置器滑动配合, 所述推动器可部分 抵接加热组件, 或所述推动器设置于加热组件上, 以在推动器滑动时带动加热 组件运动于加热位置与分离位置之间。
[0014] 其中, 所述加热组件包括支撑体及设置于支撑体上的加热片, 所述容置器的第 一收纳腔与第二收纳腔之间形成有供加热片伸出的孔位, 在加热组件位于加热 位置时, 所述加热片部分伸入烟雾形成体内; 在加热组件位于分离位置时, 所 述加热片与烟雾形成体的端部的介质接触。
[0015] 其中, 所述加热片为陶瓷加热片或 PTC加热片。
[0016] 其中, 所述加热组件还包括设置于加热片上的测温组件, 所述测温组件位于加 热片靠近支撑体的一端。
[0017] 其中, 所述测温组件为热敏电阻或热电偶。
[0018] 其中, 还包括具有收纳腔室的筒形壳体, 以及设置于筒形壳体内的止挡件, 在 发热组件运动至分离位置时, 所述止挡件抵靠支撑体的后端面。
[0019] 其中, 所述容置器的第一收纳腔与第二收纳腔之间形成有止位面, 所述止位面 上形成有多个孔位, 在发热组件运动至加热位置时, 所述止位面抵靠支撑体的 前端面, 其中, 所述前端面与后端面呈相对设置。
[0020] 其中, 所述推动器与支撑体之间设置有弹性件, 在外力作用于推动器时, 推动 器通过压缩或拉伸弹性件可带动加热片运动至分离位置, 在外力撤销时, 弹性 件回复形变带动加热片运动至加热位置。
[0021] 其中, 还包括夹紧烟雾形成体的凸缘, 所述凸缘形成于加热片侧缘, 以在加热 片位于加热位置时限位烟雾形成体。
[0022] 为实现上述目的, 本申请采用的另一个技术方案为: 提供一种雾化装置, 包括 上述的发烟加热器件的分离器。
[0023] 本申请的技术方案主要包括加热组件、 容置器、 烟雾形成体及推动器, 区别于 5见有技术中的加热组件位置固定, 不方便清洗而影响雾化效率的问题, 本方案 的加热组件活动设置于容置器的第二收纳腔中, 当加热组件位于加热位置时可 加热雾化介质, 在加热组件位于分离工位时可拔出烟雾形成体; 加热组件与容 置器滑动配合, 可单独对加热组件更换或清洗, 以保证加热组件的雾化效率, 降低加热组件上废弃物积累, 能够使产品长时间使用, 提升用户的体验效果。
[0024] 附图说明
[0025] 为了更清楚地说明本申请实施例或现有技术中的技术方案, 下面将对实施例或 5见有技术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示出的结构获得其他的附图。
[0026] 图 1为本申请一实施例发烟加热器件的分离器的整体结构示意图;
[0027] 图 2为本申请一实施例发烟加热器件的分离器的分解结构示意图;
[0028] 图 3为图 1中加热组件处于分离位置的剖视图;
[0029] 图 4为图 1中加热组件处于加热位置的剖视图。
[0030] 本申请目的的实现、 功能特点及优点将结合实施例, 参照附图做进一步说明。
[0031] 具体实施方式
[0032] 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作出创造性 劳动前提下所获得的所有其他实施例, 都属于本申请保护的范围。
[0033] 需要说明, 本申请中涉及“第一”、 “第二”等的描述仅用于描述目的, 而不能理 解为指示或暗示其相对重要性或者隐含指明所指示的技术特征的数量。 由此, 限定有“第一”、 “第二”的特征可以明示或者隐含地包括至少一个该特征。 另外, 各个实施例之间的技术方案可以相互结合, 但是必须是以本领域普通技术人员 能够实现为基础, 当技术方案的结合出现相互矛盾或无法实现时应当认为这种 技术方案的结合不存在, 也不在本申请要求的保护范围之内。
[0034] 请参照图 1至图 4, 图 1为本申请一实施例发烟加热器件的分离器的整体结构示 意图; 图 2为本申请一实施例发烟加热器件的分离器的分解结构示意图; 图 3为 图 1中加热组件处于分离位置的剖视图; 图 4为图 1中加热组件处于加热位置的剖 视图。
[0035] 在本申请实施例中, 该发烟加热器件的分离器, 包括: [0036] 烟雾形成体 40, 所述烟雾形成体 40的一端装有介质;
[0037] 加热组件 50, 所述加热组件 50靠近烟雾形成体 40装有介质的一端设置, 以加热 雾化介质;
[0038] 容置器 20, 所述容置器 20包括容纳烟雾形成体 40—端的第一收纳腔 22, 以及收 容加热组件 50的第二收纳腔 23, 所述第二收纳腔 23内具有使加热组件 50滑动的 第一位置和第二位置, 在加热组件 50处于第一位置时, 加热组件 50部分伸入烟 雾形成体 40内以形成加热位置, 在加热组件 50处于第二位置时, 加热组件 50与 烟雾形成体 40的端部接触以形成分离位置;
[0039] 推动器 30, 所述推动器 30设于容置器 20外侧且与容置器 20滑动配合, 所述推动 器 30可部分抵接加热组件 50, 以在推动器 30滑动时带动加热组件 50运动于加热 位置与分离位置之间。 在一并列的方案中, 上述推动器 30还可以设置于加热组 件 50上。
[0040] 本实施例中, 烟雾形成体 40可以设计成电子烟, 电子烟的一端具有烟雾形成体 40, 也就是电子烟的一端可形成收纳介质的收纳部, 该介质可以为烟草等。 加 热组件 50可以加热雾化介质产生气雾, 在用户抽吸时, 气雾可被用户吸食。 容 置器 20包括容置器本体 21及位于容置器本体 21两端的第一收纳腔 22及第二收纳 腔 23。 容置器 20主要用于放置烟雾形成体 40, 具体的, 烟雾形成体 40可以插接 并收纳于容置器 20的第一收纳腔 22中, 通过第一收纳腔 22可以对烟雾形成体 40 进行限位, 以方便加热组件 50与烟雾形成体 40的配合。 该容置器 20还具有第二 收纳腔 23, 第二收纳腔 23具有可使加热组件 50运动的第一位置及第二位置, 在 加热组件 50运动至第一位置时, 加热组件 50部分伸入烟雾形成体 40内, 可以与 介质充分接触, 此时加热组件 50以最大的雾化效率加热雾化介质; 在加热组件 5 0运动至第二位置时, 加热组件 50与烟雾形成体 40的端部的介质接触, 此时加热 组件 50仅加热雾化部分介质, 两者处于分离的临界点, 此时, 可以拔出烟雾形 成体 40。 区别于现有技术, 本实施例的加热组件 50滑动设置, 且加热组件 50可 与容置器 20分离, 实现加热组件 50的可更换, 便于清洗, 保证加热组件 50的雾 化效率。
[0041] 本申请的技术方案主要包括加热组件 50、 容置器 20、 烟雾形成体 40及推动器 30 , 区别于现有技术中的加热组件 50位置固定, 不方便清洗而影响雾化效率的问 题, 本方案的加热组件 50活动设置于容置器 20的第二收纳腔 23中, 当加热组件 5 0位于加热位置时可加热雾化介质, 在加热组件 50位于分离工位时可拔出烟雾形 成体 40; 加热组件 50与容置器 20滑动配合, 可单独对加热组件 50更换或清洗, 以保证加热组件 50的雾化效率, 降低加热组件 50上废弃物积累, 能够使产品长 时间使用, 提升用户的体验效果。
[0042] 在一具体的实施例中, 所述加热组件 50包括支撑体 52及设置于支撑体 52上的加 热片 51, 所述容置器 20的第一收纳腔 22与第二收纳腔 23之间形成有供加热片 51 伸出的孔位 25, 在加热组件 50位于加热位置时, 所述加热片 51部分伸入烟雾形 成体 40内; 在加热组件 50位于分离位置时, 所述加热片 51与烟雾形成体 40的端 部的介质接触。 本实施例中, 加热片 51呈薄片状设置, 且加热片 51的宽度从与 支撑体 52固定的一端至自由端的方向逐渐变窄, 以方便加热片 51插入烟雾形成 体 40的内部。 进一步的, 加热片 51的自由端呈尖角状设置。 支撑体 52上可以设 置限位加热片 51的限位槽。 支撑体 52整体呈环状设置, 以在第二收纳腔 23中滑 动。 考虑到支撑体 52的后端面与止挡件 60抵接配合的问题, 该支撑体 52的后端 面可以形成环形凸沿, 止挡件 60对应形成有环形凹口, 以更好地实现两者支撑 体 52的后端面与止挡件 60的接触。 对于止挡件 60而言, 该止挡件 60包括止挡本 体 61, 该止挡本体 61上形成容置槽 62, 以接纳支撑体 52。 上述的, 所述加热片 5 1为陶瓷加热片或 PTC加热片。 可以理解的, 本实施例的加热片 51包括但不限于 陶瓷加热片或 PTC加热片。
[0043] 在一具体的实施方式中, 所述加热组件 50还包括设置于加热片 51上的测温组件 , 所述测温组件位于加热片 51靠近支撑体 52的一端。 考虑到传统中的加热组件 5 0的温度只取决于加热片 51的自身参数变化而呈现温度的不同, 本实施例中, 增 设的测温组件可以对加热片 51的实时温度进行检测, 收集实时的温度数据, 进 而通过控制组件 11控制加热片 51的电流或电压大小, 调整加热片 51的功率。 具 体的, 该控制组件 11根据收集实时的温度数据, 控制加热片 51的电流或电压的 挡位, 以对处于不同位置的发热片的发热, 以实现精确的加热温度控制。 进一 步的, 所述测温组件为热敏电阻或热电偶。 可以理解的, 上述的测温组件包括 但不限于热敏电阻或热电偶, 还可以是包含热敏电阻或热电偶的测试电路等。
[0044] 在一具体的实施方式中, 还包括具有收纳腔室的筒形壳体 10, 以及设置于筒形 壳体 10内的止挡件 60, 在发热组件运动至分离位置时, 所述止挡件 60抵靠支撑 体 52的后端面。 本实施例中, 壳体 10具体为圆筒形, 壳体 10内部贯通, 且壳体 1 0内部靠近发热组件的一端设有与发热组件间隔的止挡件 60, 该止挡件 60可以阻 止发热组件继续运动, 避免发热组件滑出壳体 10。
[0045] 在一具体的实施方式中, 所述容置器 20的第一收纳腔 22与第二收纳腔 23之间形 成有止位面 24, 所述止位面 24上形成有多个孔位, 在发热组件运动至加热位置 时, 所述止位面 24抵靠支撑体 52的前端面, 其中, 所述前端面与后端面呈相对 设置。 上述的孔位的个数, 可以根据气雾量灵活设置。 孔位的形状可以是圆形 、 方形或异形, 此处不作限定。
[0046] 在一具体的实施例中, 所述推动器 30与支撑体 52之间设置有弹性件, 在外力作 用于推动器 30时, 推动器 30通过压缩或拉伸弹性件可带动加热片 51运动至分离 位置, 在外力撤销时, 弹性件回复形变带动加热片 51运动至加热位置。 本实施 例中, 该弹性件在于提供弹性回复力, 推动发热组件回位至加热位置。 该弹性 件可以是弹簧, 在推动器 30与外壳滑动时, 拉伸或压缩弹簧使弹簧产生弹性形 变, 如此, 以在外力撤销时, 通过弹簧恢复形变带动发热组件回位至加热位置
[0047] 在一具体的实施方式中, 还包括夹紧烟雾形成体 40的凸缘, 所述凸缘形成于加 热片 51侧缘, 以在加热片 51位于加热位置时限位烟雾形成体 40。 该凸缘可以在 加热片 51位于加热位置时, 抵接烟雾形成体 40内部, 起到一定的限位作用。 当 然, 第一收纳腔 22的内壁还可以设置限位烟雾形成体 40的凸起, 以更好的对限 位烟雾形成体 40进行限位。
[0048] 本申请的实施例中, 该雾化装置, 包括发烟加热器件的分离器。 该分离器为上 述实施例中的发烟加热器件的分离器, 具体结构此处不再赘述。 由于本雾化装 置应用了发烟加热器件的分离器, 因此具有发烟加热器件的分离器的所有优点 和效果。
[0049] 以上所述仅为本申请的优选实施例, 并非因此限制本申请的专利范围, 凡是在 本申请的申请构思下, 利用本申请说明书及附图内容所作的等效结构变换, 或 直接 /间接运用在其他相关的技术领域均包括在本申请的专利保护范围内。 发明概述
技术问题
问题的解决方案
发明的有益效果

Claims

权利要求书
[权利要求 1] 一种发烟加热器件的分离器, 其特征在于, 所述发烟加热器件的分离 器包括:
烟雾形成体, 所述烟雾形成体的一端装有介质; 加热组件, 所述加热组件靠近烟雾形成体装有介质的一端设置, 以加 热雾化介质;
容置器, 所述容置器包括容纳烟雾形成体一端的第一收纳腔, 以及收 容加热组件的第二收纳腔, 所述第二收纳腔内具有使加热组件滑动的 第一位置和第二位置, 在加热组件处于第一位置时, 加热组件部分伸 入烟雾形成体内以形成加热位置, 在加热组件处于第二位置时, 加热 组件与烟雾形成体的端部接触以形成分离位置; 推动器, 所述推动器设于容置器外侧且与容置器滑动配合, 所述推动 器可部分抵接加热组件, 或所述推动器设置于加热组件上, 以在推动 器滑动时带动加热组件运动于加热位置与分离位置之间。
[权利要求 2] 如权利要求 i所述的发烟加热器件的分离器, 其特征在于, 所述加热 组件包括支撑体及设置于支撑体上的加热片, 所述容置器的第一收纳 腔与第二收纳腔之间形成有供加热片伸出的孔位, 在加热组件位于加 热位置时, 所述加热片部分伸入烟雾形成体内; 在加热组件位于分离 位置时, 所述加热片与烟雾形成体的端部的介质接触。
[权利要求 3] 如权利要求 2所述的发烟加热器件的分离器, 其特征在于, 所述加热 片为陶瓷加热片或 PTC加热片。
[权利要求 4] 如权利要求 3所述的发烟加热器件的分离器, 其特征在于, 所述加热 组件还包括设置于加热片上的测温组件, 所述测温组件位于加热片靠 近支撑体的一端。
[权利要求 5] 如权利要求 4所述的发烟加热器件的分离器, 其特征在于, 所述测温 组件为热敏电阻或热电偶。
[权利要求 6] 如权利要求 2所述的发烟加热器件的分离器, 其特征在于, 还包括具 有收纳腔室的筒形壳体, 以及设置于筒形壳体内的止挡件, 在发热组 件运动至分离位置时, 所述止挡件抵靠支撑体的后端面。
[权利要求 7] 如权利要求 2所述的发烟加热器件的分离器, 其特征在于, 所述容置 器的第一收纳腔与第二收纳腔之间形成有止位面, 所述止位面上形成 有多个孔位, 在发热组件运动至加热位置时, 所述止位面抵靠支撑体 的前端面, 其中, 所述前端面与后端面呈相对设置。
[权利要求 8] 如权利要求 2所述的发烟加热器件的分离器, 其特征在于, 所述推动 器与支撑体之间设置有弹性件, 在外力作用于推动器时, 推动器通过 压缩或拉伸弹性件可带动加热片运动至分离位置, 在外力撤销时, 弹 性件回复形变带动加热片运动至加热位置。
[权利要求 9] 如权利要求 2所述的发烟加热器件的分离器, 其特征在于, 还包括夹 紧烟雾形成体的凸缘, 所述凸缘形成于加热片侧缘, 以在加热片位于 加热位置时限位烟雾形成体。
[权利要求 10] 一种雾化装置, 其特征在于, 所述雾化装置包括如权利要求 1至 9任一 项所述的发烟加热器件的分离器。
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