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CN115336798A - Atomizing child lock structure and electronic atomizer - Google Patents

Atomizing child lock structure and electronic atomizer Download PDF

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Publication number
CN115336798A
CN115336798A CN202210996970.6A CN202210996970A CN115336798A CN 115336798 A CN115336798 A CN 115336798A CN 202210996970 A CN202210996970 A CN 202210996970A CN 115336798 A CN115336798 A CN 115336798A
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child lock
switch
hole
channel
base
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CN115336798B (en
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吴成琴
刘慧�
方同兴
江雄
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Shenzhen Aiyi Technology Research Co Ltd
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Shenzhen Aiyi Technology Research Co Ltd
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    • 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
    • A24F40/49Child proofing

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  • Health & Medical Sciences (AREA)
  • Child & Adolescent Psychology (AREA)
  • General Health & Medical Sciences (AREA)
  • Special Spraying Apparatus (AREA)
  • Seats For Vehicles (AREA)

Abstract

本申请提供一种雾化童锁结构以及电子雾化器。上述的雾化童锁结构包括底座以及童锁组件;底座开设有童锁轨道通孔;童锁组件包括童锁导气件以及童锁开关件,童锁导气件与底座连接,童锁导气件具有与外壳内部连通的第一童锁通道,童锁开关件与底座活动连接,童锁开关件位于底座背离童锁导气件的一侧并遮盖童锁轨道通孔,童锁开关件穿设于童锁轨道通孔内并与童锁导气件滑动抵接,童锁开关件具有第二童锁通道。在解锁时,将童锁开关件移动至指定位置,将第二童锁通道与第一童锁通道对齐,使得第二童锁通道与第一童锁通道实现相互连通,从而使得第二童锁通道与第一童锁通道共同形成进气通道,实现对电子雾化器的气道解锁。

Figure 202210996970

The present application provides an atomization child lock structure and an electronic atomizer. The above atomized child lock structure includes a base and a child lock assembly; the base is provided with a child lock track through hole; the child lock assembly includes a child lock air guide and a child lock switch, the child lock air guide is connected to the base, and the child lock guide The air part has a first child lock channel that communicates with the inside of the housing. The child lock switch is movably connected to the base. The child lock switch is located on the side of the base away from the child lock air guide and covers the through hole of the child lock track. The child lock switch The child lock switch is provided in the through hole of the child lock track and slides against the child lock air guide. The child lock switch has a second child lock channel. When unlocking, move the child lock switch to the designated position, align the second child lock channel with the first child lock channel, so that the second child lock channel and the first child lock channel are connected to each other, so that the second child lock channel The channel and the first child lock channel jointly form an air intake channel to realize the unlocking of the air channel of the electronic atomizer.

Figure 202210996970

Description

雾化童锁结构以及电子雾化器Atomization child lock structure and electronic atomizer

技术领域technical field

本发明涉及电子雾化技术领域,特别是涉及一种雾化童锁结构以及电子雾化器。The invention relates to the technical field of electronic atomization, in particular to an atomization child lock structure and an electronic atomizer.

背景技术Background technique

随着电子雾化器的快速发展,电子雾化器在社会上的销量也逐年递增。品质好、品牌好的电子雾化器,很受消费者的欢迎,占据了很大市场份额。在实际使用过程中,为了防止未成年人的误使用,通常采用童锁电子芯片进行锁定。With the rapid development of electronic atomizers, the sales of electronic atomizers in the society are also increasing year by year. Electronic atomizers with good quality and good brands are very popular among consumers and occupy a large market share. In actual use, in order to prevent misuse by minors, child lock electronic chips are usually used for locking.

然而,传统的童锁芯片造价过高,容易导致电子雾化器的生产成本超标。However, the cost of traditional child lock chips is too high, which will easily lead to excessive production costs of electronic atomizers.

发明内容Contents of the invention

本发明的目的是克服现有技术中的不足之处,提供一种有效降低生产制造成本的雾化童锁结构以及电子雾化器。The object of the present invention is to overcome the disadvantages of the prior art, and provide an atomization child lock structure and an electronic atomizer which can effectively reduce the manufacturing cost.

本发明的目的是通过以下技术方案来实现的:The purpose of the present invention is achieved through the following technical solutions:

一种雾化童锁结构,包括:底座以及童锁组件;所述底座用于与电子雾化器的外壳连接,所述底座开设有童锁轨道通孔;所述童锁组件包括童锁导气件以及童锁开关件,所述童锁导气件与所述底座连接,所述童锁导气件的至少部分位于所述外壳内,所述童锁导气件具有与所述外壳内部连通的第一童锁通道,所述童锁开关件与所述底座活动连接,所述童锁开关件位于所述底座背离所述童锁导气件的一侧并遮盖所述童锁轨道通孔,所述童锁开关件穿设于所述童锁轨道通孔内并与所述童锁导气件滑动抵接,所述童锁开关件具有第二童锁通道,所述第二童锁通道用于在上锁时与所述第一童锁通道相互隔绝。An atomization child lock structure, comprising: a base and a child lock assembly; the base is used to connect with the shell of an electronic atomizer, and the base is provided with a child lock track through hole; the child lock assembly includes a child lock guide An air part and a child lock switch part, the child lock air guide part is connected to the base, at least part of the child lock air guide part is located in the housing, and the child lock air guide part has a The first child lock channel in communication, the child lock switch part is movably connected with the base, the child lock switch part is located on the side of the base away from the child lock air guide and covers the child lock track channel hole, the child lock switch part passes through the child lock track through hole and slides against the child lock air guide part, the child lock switch part has a second child lock channel, the second child lock channel The lock channel is used to isolate from the first child lock channel when locked.

在其中一个实施例中,所述童锁开关件在所述底座上的投影面积大于所述童锁轨道通孔的通孔面积。In one of the embodiments, the projected area of the child lock switch on the base is larger than the through hole area of the child lock track through hole.

在其中一个实施例中,所述童锁开关件在所述底座上的投影面积与所述童锁轨道通孔的通孔面积的比值为5至10。In one embodiment, the ratio of the projected area of the child lock switch element on the base to the through hole area of the child lock track through hole is 5 to 10.

在其中一个实施例中,所述童锁开关件具有滑动抵接面,所述滑动抵接面与所述底座相互平行设置,所述滑动抵接面贴合设置于所述底座上。In one embodiment, the child lock switch has a sliding abutment surface, the sliding abutment surface is arranged parallel to the base, and the sliding abutment surface is attached to the base.

在其中一个实施例中,所述童锁开关件包括相互连接的开关滑板以及开关滑杆,所述开关滑板滑动抵接于所述底座上,所述开关滑杆穿设于所述童锁轨道通孔内并与所述童锁导气件抵接。In one embodiment, the child lock switch includes a switch slide plate and a switch slide bar connected to each other, the switch slide plate slides against the base, and the switch slide bar passes through the child lock track The through hole is in contact with the child lock air guide.

在其中一个实施例中,所述开关滑板开设有第一通孔,所述开关滑杆开设有与所述第一通孔连通的第二通孔,所述第一通孔与所述第二通孔形成所述第二童锁通道。In one of the embodiments, the switch sliding plate is provided with a first through hole, the switch sliding rod is provided with a second through hole communicating with the first through hole, and the first through hole is connected with the second through hole. The through hole forms the second child lock channel.

在其中一个实施例中,所述第二童锁通道开设于所述开关滑板上。In one of the embodiments, the second child lock channel is opened on the switch slide plate.

在其中一个实施例中,所述童锁导气件开设有与所述第一童锁通道连通的滑动槽,所述滑动槽还与所述童锁轨道通孔连通,所述开关滑杆的部分滑动设置于所述滑动槽。In one of the embodiments, the child lock air guide is provided with a sliding groove communicated with the first child lock channel, the sliding groove is also communicated with the through hole of the child lock track, and the switch slide bar The part is slidably arranged in the sliding groove.

在其中一个实施例中,所述滑动槽的口径与所述开关滑杆的直径相等。In one of the embodiments, the diameter of the sliding slot is equal to the diameter of the switch sliding rod.

一种电子雾化器,包括上述任一实施例所述的雾化童锁结构。An electronic atomizer, comprising the atomization child lock structure described in any one of the above embodiments.

与现有技术相比,本发明至少具有以下优点:Compared with the prior art, the present invention has at least the following advantages:

在上锁状态时,第二童锁通道与第一童锁通道不相通;而在解锁时,需要将童锁开关件移动至指定位置,才能将第二童锁通道与第一童锁通道对齐,使得第二童锁通道与第一童锁通道实现相互连通,从而使得第二童锁通道与第一童锁通道共同形成进气通道,便于将电子雾化器的内部与外部环境连通,从而便于向电子雾化器的内部导入气体,实现对电子雾化器的气道解锁。In the locked state, the second child lock channel is not connected to the first child lock channel; and when unlocked, the child lock switch needs to be moved to the designated position to align the second child lock channel with the first child lock channel , so that the second child lock channel and the first child lock channel communicate with each other, so that the second child lock channel and the first child lock channel together form an air intake channel, which facilitates the communication between the interior of the electronic atomizer and the external environment, thereby It is convenient to introduce gas into the interior of the electronic atomizer to realize the unlocking of the air channel of the electronic atomizer.

附图说明Description of drawings

为了更清楚地说明本发明实施例的技术方案,下面将对实施例中所需要使用的附图作简单地介绍,应当理解,以下附图仅示出了本发明的某些实施例,因此不应被看作是对范围的限定,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他相关的附图。In order to illustrate the technical solutions of the embodiments of the present invention more clearly, the accompanying drawings used in the embodiments will be briefly introduced below. It should be understood that the following drawings only show some embodiments of the present invention, and thus It should be regarded as a limitation on the scope, and those skilled in the art can also obtain other related drawings based on these drawings without creative work.

图1为一实施例中雾化童锁结构的示意图;Fig. 1 is a schematic diagram of the atomized child lock structure in an embodiment;

图2为图1所示雾化童锁结构沿A-A方向的剖视图;Fig. 2 is a cross-sectional view of the atomized child lock structure shown in Fig. 1 along the direction A-A;

图3为图1所示雾化童锁结构的另一剖视图;Fig. 3 is another cross-sectional view of the atomized child lock structure shown in Fig. 1;

图4为图1所示雾化童锁结构的再一剖视图。Fig. 4 is another cross-sectional view of the atomizing child lock structure shown in Fig. 1 .

具体实施方式Detailed ways

为了便于理解本发明,下面将参照相关附图对本发明进行更全面的描述。附图中给出了本发明的较佳实施方式。但是,本发明可以以许多不同的形式来实现,并不限于本文所描述的实施方式。相反地,提供这些实施方式的目的是使对本发明的公开内容理解的更加透彻全面。In order to facilitate the understanding of the present invention, the present invention will be described more fully below with reference to the associated drawings. Preferred embodiments of the invention are shown in the accompanying drawings. However, the present invention can be embodied in many different forms and is not limited to the embodiments described herein. On the contrary, the purpose of providing these embodiments is to make the disclosure of the present invention more thorough and comprehensive.

需要说明的是,当元件被称为“固定于”另一个元件,它可以直接在另一个元件上或者也可以存在居中的元件。当一个元件被认为是“连接”另一个元件,它可以是直接连接到另一个元件或者可能同时存在居中元件。本文所使用的术语“垂直的”、“水平的”、“左”、“右”以及类似的表述只是为了说明的目的,并不表示是唯一的实施方式。It should be noted that when an element is referred to as being “fixed” to another element, it can be directly on the other element or there can also be an intervening element. When an element is referred to as being "connected to" another element, it can be directly connected to the other element or intervening elements may also be present. The terms "vertical," "horizontal," "left," "right," and similar expressions are used herein for purposes of illustration only and are not intended to represent the only embodiments.

除非另有定义,本文所使用的所有的技术和科学术语与属于本发明的技术领域的技术人员通常理解的含义相同。本文中在本发明的说明书中所使用的术语只是为了描述具体的实施方式的目的,不是旨在于限制本发明。本文所使用的术语“及/或”包括一个或多个相关的所列项目的任意的和所有的组合。Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the technical field of the invention. The terminology used herein in the description of the present invention is only for the purpose of describing specific embodiments, and is not intended to limit the present invention. As used herein, the term "and/or" includes any and all combinations of one or more of the associated listed items.

本发明涉及一种雾化童锁结构。在其中一个实施例中,所述雾化童锁结构包括底座以及童锁组件。所述底座用于与电子雾化器的外壳连接,所述底座开设有童锁轨道通孔。所述童锁组件包括童锁导气件以及童锁开关件。所述童锁导气件与所述底座连接,所述童锁导气件的至少部分位于所述外壳内,所述童锁导气件具有与所述外壳内部连通的第一童锁通道。所述童锁开关件与所述底座活动连接,所述童锁开关件位于所述底座背离所述童锁导气件的一侧并遮盖所述童锁轨道通孔,所述童锁开关件穿设于所述童锁轨道通孔内并与所述童锁导气件滑动抵接,所述童锁开关件具有第二童锁通道。所述第二童锁通道用于在上锁时与所述第一童锁通道相互隔绝。在上锁状态时,第二童锁通道与第一童锁通道不相通;而在解锁时,需要将童锁开关件移动至指定位置,才能将第二童锁通道与第一童锁通道对齐,使得第二童锁通道与第一童锁通道实现相互连通,从而使得第二童锁通道与第一童锁通道共同形成进气通道,便于将电子雾化器的内部与外部环境连通,从而便于向电子雾化器的内部导入气体,实现对电子雾化器的气道解锁。The invention relates to an atomized child lock structure. In one of the embodiments, the atomized child lock structure includes a base and a child lock assembly. The base is used to connect with the shell of the electronic atomizer, and the base is provided with a child lock track through hole. The child lock assembly includes a child lock air guide and a child lock switch. The child lock air guide is connected to the base, at least part of the child lock air guide is located in the housing, and the child lock air guide has a first child lock channel communicating with the inside of the housing. The child lock switch is movably connected to the base, the child lock switch is located on the side of the base away from the child lock air guide and covers the child lock track through hole, the child lock switch The child lock switch part is provided with a second child lock channel through the through hole of the child lock track and slides against the child lock air guide. The second child lock channel is used to isolate from the first child lock channel when locked. In the locked state, the second child lock channel is not connected to the first child lock channel; and when unlocked, the child lock switch needs to be moved to the designated position to align the second child lock channel with the first child lock channel , so that the second child lock channel and the first child lock channel communicate with each other, so that the second child lock channel and the first child lock channel together form an air intake channel, which facilitates the communication between the interior of the electronic atomizer and the external environment, thereby It is convenient to introduce gas into the interior of the electronic atomizer to realize the unlocking of the air channel of the electronic atomizer.

请参阅图1,其为本发明一实施例的雾化童锁结构的结构示意图。Please refer to FIG. 1 , which is a schematic structural diagram of an atomizing child lock structure according to an embodiment of the present invention.

一实施例的雾化童锁结构10包括底座100以及童锁组件200。所述底座100用于与电子雾化器的外壳连接,请一并参阅图2,所述底座100开设有童锁轨道通孔102。所述童锁组件200包括童锁导气件210以及童锁开关件220。所述童锁导气件210与所述底座100连接,所述童锁导气件210的至少部分位于所述外壳内,所述童锁导气件210具有与所述外壳内部连通的第一童锁通道202。所述童锁开关件220与所述底座100活动连接,所述童锁开关件220位于所述底座100背离所述童锁导气件210的一侧并遮盖所述童锁轨道通孔102,所述童锁开关件220穿设于所述童锁轨道通孔102内并与所述童锁导气件210滑动抵接,所述童锁开关件220具有第二童锁通道204。所述第二童锁通道204用于在上锁时与所述第一童锁通道202相互隔绝。The atomization child lock structure 10 of an embodiment includes a base 100 and a child lock assembly 200 . The base 100 is used to connect with the housing of the electronic atomizer, please refer to FIG. 2 , the base 100 is provided with a child lock rail through hole 102 . The child lock assembly 200 includes a child lock air guide 210 and a child lock switch 220 . The child lock air guide 210 is connected to the base 100, at least part of the child lock air guide 210 is located in the housing, and the child lock air guide 210 has a first Child lock passage 202. The child lock switch part 220 is movably connected with the base 100, the child lock switch part 220 is located on the side of the base 100 away from the child lock air guide 210 and covers the child lock track through hole 102, The child lock switch part 220 passes through the child lock track through hole 102 and slides against the child lock air guide 210 , and the child lock switch part 220 has a second child lock channel 204 . The second child lock channel 204 is used to isolate from the first child lock channel 202 when locked.

在本实施例中,在上锁状态时,第二童锁通道204与第一童锁通道202不相通;而在解锁时,需要将童锁开关件220移动至指定位置,才能将第二童锁通道204与第一童锁通道202对齐,使得第二童锁通道204与第一童锁通道202实现相互连通,从而使得第二童锁通道204与第一童锁通道202共同形成进气通道,便于将电子雾化器的内部与外部环境连通,从而便于向电子雾化器的内部导入气体,实现对电子雾化器的气道解锁。In this embodiment, in the locked state, the second child lock channel 204 is not connected to the first child lock channel 202; while in the unlocked state, the child lock switch 220 needs to be moved to a designated position in order to open the second child lock channel 204. The lock channel 204 is aligned with the first child lock channel 202, so that the second child lock channel 204 communicates with the first child lock channel 202, so that the second child lock channel 204 and the first child lock channel 202 together form an air intake channel , to facilitate the communication between the interior of the electronic atomizer and the external environment, thereby facilitating the introduction of gas into the interior of the electronic atomizer, and realizing the unlocking of the air passage of the electronic atomizer.

在另一个实施例中,所述童锁轨道通孔具有特定的轨道形状,例如,所述童锁轨道通孔具有“Z”字形结构;又如,所述童锁轨道通孔具有“X”字形结构。这样,只有当童锁开关件移动至童锁轨道通孔的指定位置,即沿指定轨道轨迹移动,才能将第二童锁通道与第一童锁通道连通,以提高所述雾化童锁结构的解锁难度,有效降低了所述雾化童锁结构的误打开几率。In another embodiment, the child lock track hole has a specific track shape, for example, the child lock track hole has a "Z" shape; as another example, the child lock track hole has an "X" font structure. In this way, only when the child lock switch moves to the designated position of the through hole of the child lock track, that is, moves along the designated track track, can the second child lock channel be communicated with the first child lock channel, so as to improve the atomization child lock structure. The unlocking difficulty is relatively low, which effectively reduces the chance of mistakenly opening the atomized child lock structure.

在其中一个实施例中,请参阅图2,所述童锁开关件220在所述底座100上的投影面积大于所述童锁轨道通孔102的通孔面积。在本实施例中,所述童锁开关件220设置于所述底座100上,所述童锁开关件220在所述底座100上滑动,所述童锁开关件220用于通过其上的第二童锁通道204与所述第一童锁通道202连通,以形成导气通道。所述童锁开关件220与所述童锁导气件210之间只形成一条导气通道,即在所述童锁开关件220移动至指定位置时形成,而所述底座100上还设置有所述童锁轨道通孔102,需要保持长期封闭。将所述童锁开关件220在所述底座100上的投影面积设计为大于所述童锁轨道通孔102的通孔面积,具体地,所述童锁开关件220始终将所述童锁轨道通孔102完全遮盖,此时所述童锁开关件220才能在所述底座100上滑动时还可以避免所述童锁轨道通孔102打开,从而确保了在上锁时所述第一童锁通道202不会与外部连通。In one embodiment, please refer to FIG. 2 , the projected area of the child lock switch 220 on the base 100 is larger than the through hole area of the child lock track through hole 102 . In this embodiment, the child lock switch part 220 is arranged on the base 100, the child lock switch part 220 slides on the base 100, and the child lock switch part 220 is used to pass the first child lock switch part 220 thereon. The second child lock channel 204 communicates with the first child lock channel 202 to form an air guide channel. Only one air guide channel is formed between the child lock switch part 220 and the child lock air guide part 210, which is formed when the child lock switch part 220 moves to a designated position, and the base 100 is also provided with The child lock rail through hole 102 needs to be kept closed for a long time. The projected area of the child lock switch part 220 on the base 100 is designed to be larger than the through hole area of the child lock track through hole 102, specifically, the child lock switch part 220 always connects the child lock track When the through hole 102 is completely covered, the child lock switch member 220 can also prevent the opening of the child lock track through hole 102 when sliding on the base 100, thereby ensuring that the first child lock is locked when locked. Channel 202 does not communicate with the outside.

在另一个实施例中,所述童锁开关件220在所述底座100上的投影面积远大于所述童锁轨道通孔102的通孔面积,具体地,所述童锁开关件220在所述底座100上的投影面积与所述童锁轨道通孔102的通孔面积的比值为5至10。在又一个实施例中,所述童锁开关件220在所述底座100上的投影面积与所述童锁轨道通孔102的通孔面积的比值为8.3。In another embodiment, the projected area of the child lock switch part 220 on the base 100 is much larger than the through hole area of the child lock track through hole 102, specifically, the child lock switch part 220 is located on the base 100. The ratio of the projected area on the base 100 to the through hole area of the child lock track through hole 102 is 5 to 10. In yet another embodiment, the ratio of the projected area of the child lock switch 220 on the base 100 to the through hole area of the child lock track through hole 102 is 8.3.

在其中一个实施例中,请参阅图2,所述童锁开关件220具有滑动抵接面,所述滑动抵接面与所述底座100相互平行设置,所述滑动抵接面贴合设置于所述底座100上。在本实施例中,所述滑动抵接面位于所述童锁开关件220靠近所述底座100的一面,所述滑动抵接面用于与所述底座100滑动抵接,以便于所述童锁开关件220在所述底座100上移动。将所述滑动抵接面设置为与所述底座100相互平行设置,确保了所述童锁开关件220在所述底座100上的移动平滑性,进一步确保了所述童锁开关件220始终贴合于所述底座100上,从而进一步确保了所述童锁开关件220始终将所述童锁轨道通孔102完全遮盖。In one embodiment, please refer to FIG. 2 , the child lock switch 220 has a sliding abutment surface, the sliding abutment surface is arranged parallel to the base 100 , and the sliding abutment surface is attached to the on the base 100. In this embodiment, the sliding abutment surface is located on the side of the child lock switch 220 close to the base 100, and the sliding abutment surface is used for sliding abutment with the base 100, so that the child lock The lock switch 220 moves on the base 100 . Setting the sliding abutment surface parallel to the base 100 ensures smooth movement of the child lock switch 220 on the base 100, and further ensures that the child lock switch 220 is always in close contact with the base 100. Fitting on the base 100 , thereby further ensuring that the child lock switch member 220 always completely covers the child lock track through hole 102 .

在其中一个实施例中,请参阅图2,所述童锁开关件220包括相互连接的开关滑板222以及开关滑杆224,所述开关滑板222滑动抵接于所述底座100上,所述开关滑杆224穿设于所述童锁轨道通孔102内并与所述童锁导气件210抵接。在本实施例中,所述开关滑板222与所述底座100滑动抵接,即所述开关滑板222与所述底座100相互平行,便于所述开关滑板222带动所述开关滑杆224在所述童锁轨道通孔102内移动。所述开关滑杆224的部分位于所述童锁轨道通孔102内,即所述开关滑杆224穿过所述童锁轨道通孔102,所述开关滑杆224的端部与所述童锁导气件210滑动抵接,所述开关滑杆224作为所述开关滑板222在所述底座100上的滑动限位杆,便于将所述开关滑杆224限制在所述童锁轨道通孔102的可移动区域内,从而便于对所述童锁开关件220的移动轨迹进行限定。In one embodiment, please refer to FIG. 2 , the child lock switch member 220 includes a switch slide plate 222 and a switch slide bar 224 connected to each other, the switch slide plate 222 slides against the base 100 , the switch The sliding rod 224 passes through the through hole 102 of the child lock track and abuts against the child lock air guide 210 . In this embodiment, the switch slide 222 is in sliding contact with the base 100, that is, the switch slide 222 is parallel to the base 100, so that the switch slide 222 drives the switch slide bar 224 on the The child lock track moves in the through hole 102. The part of the switch slide bar 224 is located in the child lock track through hole 102, that is, the switch slide bar 224 passes through the child lock track through hole 102, and the end of the switch slide bar 224 is connected to the child lock track through hole 102. The lock air guide 210 slides against, and the switch slide bar 224 acts as a sliding limit bar for the switch slide plate 222 on the base 100, so as to limit the switch slide bar 224 to the through hole of the child lock track. 102 within the movable area, so as to facilitate the limitation of the movement trajectory of the child lock switch 220.

进一步地,请参阅图2,所述开关滑板222开设有第一通孔206,所述开关滑杆224开设有与所述第一通孔206连通的第二通孔208,所述第一通孔206与所述第二通孔208形成所述第二童锁通道204。在本实施例中,所述第一通孔206位于所述开关滑板222上,所述第二通孔208位于所述开关滑杆224上,所述第二通孔208与所述第一通孔206相互连通,使得所述第一通孔206与所述第二通孔208共同组成所述第二童锁通道204,便于在所述童锁开关件220形成与所述第一童锁通道202连通的气道。Further, please refer to FIG. 2 , the switch sliding plate 222 is provided with a first through hole 206 , the switch slide bar 224 is provided with a second through hole 208 communicating with the first through hole 206 , the first through hole The hole 206 and the second through hole 208 form the second child lock channel 204 . In this embodiment, the first through hole 206 is located on the switch slide plate 222, the second through hole 208 is located on the switch slide bar 224, and the second through hole 208 is connected to the first through hole. The holes 206 communicate with each other, so that the first through hole 206 and the second through hole 208 jointly form the second child lock passage 204, which facilitates the formation of the first child lock passage on the child lock switch member 220. 202 connected airways.

又进一步地,请参阅图3,所述第二童锁通道204开设于所述开关滑板222上。在本实施例中,所述开关滑板222开设有所述第二童锁通道204,即所述开关滑板222开设有与所述第一童锁通道202连通的气道,具体地,在上锁时,所述第二童锁通道204始终保持与所述第一童锁通道202隔绝;而在解锁时,所述第二童锁通道204与所述第一童锁通道202连通。这样,在所述开关滑板222未移动至指定位置时,所述第二童锁通道204与所述第一童锁通道202错位,以将所述雾化童锁结构的进气通道封堵;在所述开关滑板222移动至指定位置时,所述第二童锁通道204与所述第一童锁通道202对齐,以将所述雾化童锁结构的进气通道打开。Further, please refer to FIG. 3 , the second child lock channel 204 is opened on the switch sliding plate 222 . In this embodiment, the switch sliding plate 222 is provided with the second child lock channel 204, that is, the switch slide plate 222 is provided with an air channel communicating with the first child lock channel 202, specifically, when locking When unlocking, the second child lock passage 204 is always kept isolated from the first child lock passage 202; and when unlocking, the second child lock passage 204 communicates with the first child lock passage 202. In this way, when the switch slide plate 222 is not moved to a designated position, the second child lock channel 204 is misaligned with the first child lock channel 202, so as to block the air intake channel of the atomizing child lock structure; When the switch slide plate 222 moves to a designated position, the second child lock channel 204 is aligned with the first child lock channel 202 to open the air intake channel of the atomizing child lock structure.

又进一步地,请参阅图2,所述童锁导气件210开设有与所述第一童锁通道202连通的滑动槽201,所述滑动槽201还与所述童锁轨道通孔102连通,所述开关滑杆224的部分滑动设置于所述滑动槽201。在本实施例中,所述滑动槽201位于所述童锁导气件210上,所述滑动槽201的开口朝向所述童锁开关件220,以便于将所述开关滑杆224的部分收容于其中。所述滑动槽201与所述童锁轨道通孔102连通,使得所述开关滑杆224在所述童锁轨道通孔102内活动时,所述滑动槽201作为所述开关滑杆224的端部可活动空间,即所述滑动槽201作为所述开关滑杆224的可移动区域,所述童锁轨道通孔102对所述开关滑杆224的移动进行限位。在另一个实施例中,所述童锁开关件220还包括与所述开关滑杆224连接的压合板,所述压合板与所述开关滑板222相对设置,所述压合板与所述开关滑板222共同夹持所述底座100,且所述压合板位于所述滑动槽201内。其中,所述滑动槽201的开口大于所述童锁轨道通孔102的孔径。Further, please refer to FIG. 2 , the child lock air guide 210 is provided with a sliding groove 201 communicating with the first child lock channel 202 , and the sliding groove 201 is also communicating with the child lock track through hole 102 , a part of the switch sliding rod 224 is slidably disposed in the sliding groove 201 . In this embodiment, the sliding groove 201 is located on the child lock air guide 210 , and the opening of the sliding groove 201 faces the child lock switch 220 so as to accommodate part of the switch slide bar 224 in it. The sliding groove 201 communicates with the child lock track through hole 102 , so that when the switch slide bar 224 moves in the child lock track through hole 102 , the slide slot 201 serves as the end of the switch slide bar 224 . Part of the movable space, that is, the sliding groove 201 serves as the movable area of the switch sliding rod 224 , and the child lock track through hole 102 limits the movement of the switch sliding rod 224 . In another embodiment, the child lock switch member 220 further includes a pressing plate connected to the switch slide bar 224, the pressing plate is opposite to the switch sliding plate 222, and the pressing plate is connected to the switch sliding plate 222 clamp the base 100 together, and the pressing plate is located in the sliding groove 201 . Wherein, the opening of the sliding groove 201 is larger than the diameter of the through hole 102 of the child lock track.

进一步地,所述滑动槽201的口径与所述开关滑杆224的直径相等。在本实施例中,所述开关滑杆224的端部在所述滑动槽201内移动,所述开关滑杆224的直径与所述滑动槽201的口径相等,使得所述开关滑杆224与所述滑动槽201的侧壁滑动抵接,便于所述滑动槽201的侧壁将所述开关滑杆224夹持,以提高所述开关滑杆224在所述滑动槽201内滑动的稳定性。Further, the diameter of the slide groove 201 is equal to the diameter of the switch slide rod 224 . In this embodiment, the end of the switch sliding rod 224 moves in the sliding groove 201, and the diameter of the switching sliding rod 224 is equal to the diameter of the sliding groove 201, so that the switch sliding rod 224 and the The side walls of the sliding groove 201 are slidably abutted, so that the side walls of the sliding groove 201 can clamp the switch sliding rod 224 to improve the sliding stability of the switching sliding rod 224 in the sliding groove 201 .

可以理解的,在所述童锁开关件220的移动过程中,存在移动轨迹的可循性,即在所述童锁轨道通孔102的限制下,存在一定的几率误打开童锁的情况,容易导致在无意中将所述雾化童锁结构打开,从而容易导致开锁的难度较低。It can be understood that during the moving process of the child lock switch part 220, there is a traceability of the moving track, that is, under the limitation of the child lock track through hole 102, there is a certain probability that the child lock is opened by mistake. It is easy to cause the atomization child lock structure to be opened unintentionally, so that the difficulty of unlocking is low.

为了提高所述雾化童锁结构的解锁难度,请参阅图4,所述开关滑杆224包括相互连接的第一滑杆2242以及第二滑杆2244,所述第一滑杆2242与所述开关滑板222连接,所述第一滑杆2242远离所述开关滑板222的一端与所述童锁导气件210滑动抵接,所述第二滑杆2244的第一端与所述第一滑杆2242连接,所述第二滑杆2244的第二端与所述童锁导气件210滑动抵接,所述第一滑杆2242具有与所述第一通孔206连通的第一导气孔203,所述第二滑杆2244具有与所述第一导气孔203连通的第二导气孔205,所述第一导气孔203与所述第二导气孔205共同形成所述第二通孔208。在本实施例中,所述第一滑杆2242做为所述开关滑杆224的主要滑杆,即所述第一滑杆2242用于支撑所述开关滑板222在所述底座100上滑动,确保所述开关滑板222始终遮盖所述童锁轨道通孔102,而且,所述第一滑杆2242开设有所述第一导气孔203,所述第一导气孔203与所述第一通孔206连通,便于将外部的空气导入至所述第一滑杆2242内。所述第二滑杆2244作为所述开关滑杆224的辅助滑杆,即所述第二滑杆2244用于辅助所述开关滑板222在所述底座100上滑动,进一步确保所述开关滑板222始终遮盖所述童锁轨道通孔102,而且,所述第二滑杆2244开设有所述第二导气孔205,所述第二导气孔205与所述第一导气孔203连通,便于将外部的空气通过所述第一导气孔203以及所述第二导气孔205导入至所述第一童锁通道202内。由于所述第二滑杆2244的出气端远离所述第一滑杆2242,即所述第二滑杆2244远离所述第一滑杆2242的一端抵接于所述童锁导气件210,具体地,所述开关滑杆224具有“h”字形结构,所述第二滑杆2244的第二导气孔205将外部空气导入。这样,在所述开关滑杆224移动至指定位置后,还需要转动所述第一滑杆2242,以使得所述第二滑杆2244以所述第一滑杆2242为中心轴进行转动,才能将所述第二滑杆2244对准所述第一童锁通道202,从而使得所述第二童锁通道204与所述第一童锁通道202连通,进而实现移动和转动两种方式的解锁,提高了所述雾化童锁结构的解锁难度,有效地降低了误打开的几率。In order to improve the unlocking difficulty of the atomized child lock structure, please refer to FIG. The switch slide plate 222 is connected, the end of the first slide bar 2242 away from the switch slide plate 222 is in sliding contact with the child lock air guide 210, and the first end of the second slide bar 2244 is in contact with the first slide bar 2244. The second end of the second sliding rod 2244 is in sliding contact with the child lock air guide 210 , and the first sliding rod 2242 has a first air guide hole communicating with the first through hole 206 203, the second slide bar 2244 has a second air guide hole 205 communicating with the first air guide hole 203, the first air guide hole 203 and the second air guide hole 205 jointly form the second through hole 208 . In this embodiment, the first slide bar 2242 is used as the main slide bar of the switch slide bar 224 , that is, the first slide bar 2242 is used to support the switch slide plate 222 to slide on the base 100 , Ensure that the switch slide plate 222 always covers the child lock track through hole 102, and the first slide bar 2242 is provided with the first air guide hole 203, and the first air guide hole 203 and the first through hole 206 to facilitate the introduction of external air into the first sliding rod 2242 . The second slide bar 2244 is used as an auxiliary slide bar of the switch slide bar 224, that is, the second slide bar 2244 is used to assist the switch slide plate 222 to slide on the base 100, further ensuring that the switch slide plate 222 The child lock track through hole 102 is always covered, and the second slide bar 2244 is provided with the second air guide hole 205, and the second air guide hole 205 communicates with the first air guide hole 203, so as to facilitate external The air is introduced into the first child lock channel 202 through the first air guide hole 203 and the second air guide hole 205 . Since the air outlet end of the second sliding rod 2244 is far away from the first sliding rod 2242 , that is, the end of the second sliding rod 2244 away from the first sliding rod 2242 abuts against the child lock air guide 210 , Specifically, the switch slide bar 224 has an "h"-shaped structure, and the second air hole 205 of the second slide bar 2244 introduces external air. In this way, after the switch slide bar 224 is moved to a designated position, it is necessary to rotate the first slide bar 2242 so that the second slide bar 2244 rotates with the first slide bar 2242 as the central axis. Align the second slide bar 2244 with the first child lock channel 202, so that the second child lock channel 204 communicates with the first child lock channel 202, thereby realizing unlocking in two ways of movement and rotation , improving the unlocking difficulty of the atomized child lock structure, effectively reducing the probability of accidental opening.

进一步地,在所述雾化童锁结构上锁闲置时,虽然所述第二童锁通道204与所述第一童锁通道202相互隔绝,但是所述第二童锁通道204还是长期与外部环境连通,容易导致外部环境中的灰尘通过所述第一导气孔203以及所述第二导气孔205进入内部,导致所述雾化童锁结构的内部沉积污渍,以堵塞所述第二童锁通道204。Further, when the atomized child lock structure is locked and idle, although the second child lock channel 204 and the first child lock channel 202 are isolated from each other, the second child lock channel 204 is still connected to the outside for a long time. The environment is connected, and it is easy to cause dust in the external environment to enter the interior through the first air guide hole 203 and the second air guide hole 205, causing the interior of the atomized child lock structure to deposit dirt to block the second child lock Channel 204.

为了减少对所述第二童锁通道204的堵塞,请参阅图4,所述第一滑杆2242具有与所述第一导气孔203连通的集尘容置槽207,所述集尘容置槽207的开口朝向背离所述童锁导气件210的一侧,所述集尘容置槽207与所述第一导气孔203相互对齐,所述集尘容置槽207用于收集外部环境中的灰尘。在本实施例中,所述集尘容置槽207开设于所述第一滑杆2242内,所述集尘容置槽207与所述第一导气孔203连通,所述集尘容置槽207与所述第一导气孔203形成集尘通道,即所述集尘容置槽207通过所述第一导气孔203与外部连通,外部的灰尘通过所述第一导气孔203可落入至所述集尘容置槽207内,便于所述集尘容置槽207对外部环境中的灰尘进行收集,使得进入所述雾化童锁结构内部的灰尘主要沉积在所述集尘容置槽207内,有效地降低了外部灰尘进入所述第二导气孔205的几率,从而有效地减少了对所述第二童锁通道204的堵塞。In order to reduce the blockage of the second child lock channel 204, please refer to FIG. The opening of the groove 207 faces the side away from the child lock air guide 210, the dust collection accommodation groove 207 is aligned with the first air guide hole 203, and the dust collection accommodation groove 207 is used to collect the external environment in the dust. In this embodiment, the dust collection accommodating groove 207 is opened in the first slide bar 2242, the dust collection accommodating groove 207 communicates with the first air guide hole 203, and the dust collecting accommodating groove 207 and the first air guide hole 203 form a dust collection channel, that is, the dust collection accommodating groove 207 communicates with the outside through the first air guide hole 203, and the external dust can fall into the The dust-collecting accommodating tank 207 is convenient for the dust-collecting accommodating tank 207 to collect dust in the external environment, so that the dust entering the inside of the atomized child lock structure is mainly deposited in the dust-collecting accommodating tank In 207 , the possibility of external dust entering the second air guide hole 205 is effectively reduced, thereby effectively reducing the blockage of the second child lock passage 204 .

更进一步地,所述第一滑杆2242移动至指定位置后,还需要将所述开关滑板222转动,以使得所述第二滑杆2244的第二导气孔205与所述第一童锁通道202连通。为了便于对所述开关滑板222的转动角度进行标识,以使所述开关滑板222的转动更加便捷,请参阅图1,所述开关滑板222包括板体2222以及第一标识部2224,所述板体2222滑动设置于所述底座100上,所述第一标识部2224与所述板体2222连接,所述第一标识部2224远离所述第一滑杆2242设置,且所述第一标识部2224与所述第二滑杆2244对应,所述雾化童锁结构10还包括与所述底座100连接的第二标识部300,所述第二标识部300位于所述底座100与所述板体2222之间,所述第二标识部300与所述第一童锁通道202对应设置,所述第二标识部300用于在所述第一滑杆2242移动至指定位置时暴露出来。Furthermore, after the first slide bar 2242 is moved to a designated position, the switch slide plate 222 needs to be rotated so that the second air guide hole 205 of the second slide bar 2244 is aligned with the first child lock passage. 202 connected. In order to mark the rotation angle of the switch sliding plate 222 so as to make the rotation of the switch sliding plate 222 more convenient, please refer to FIG. The body 2222 is slidably disposed on the base 100, the first identification part 2224 is connected with the board body 2222, the first identification part 2224 is set away from the first slide bar 2242, and the first identification part 2224 corresponds to the second sliding bar 2244, the atomized child lock structure 10 further includes a second identification part 300 connected to the base 100, the second identification part 300 is located between the base 100 and the board Between the bodies 2222, the second identification part 300 is provided corresponding to the first child lock channel 202, and the second identification part 300 is used to be exposed when the first sliding bar 2242 moves to a designated position.

在本实施例中,所述第一标识部2224位于所述板体2222背离所述底座100的一面,便于所述第一标识部2224被识别找寻,所述第一标识部2224与所述第二滑杆2244对应,使得所述板体2222在转动时,所述第一标识部2224与所述第二滑杆2244的转动角度相等,确保了所述第一标识部2224作为所述第二滑杆2244的转动相同。所述第二标识部300设置于所述底座100靠近所述板体2222的一面,所述第二标识部300与所述第一童锁通道202对应,所述第二标识部300作为所述第一童锁通道202在所述底座100上的等效位置。在上锁时,所述第二标识部300被所述板体2222所遮盖,无需将所述第二标识部300展示;而在所述第一滑杆2242移动至指定位置时,即将解锁时,所述板体2222不再遮挡所述第二标识部300,使得所述第二标识部300暴露出来,便于与所述第一标识部2224进行对位,从而便于根据所述第一标识部2224与所述第二标识部300之间的相对位置,快速转动所述板体2222,以使所述第二滑杆2244的第二导气孔205与所述第一童锁通道202连通,实现所述雾化童锁结构的快速转动解锁。其中,所述雾化童锁结构通过移动和转动的双模式进行解锁,使得所述雾化童锁结构的解锁难度进一步增大,进一步降低了所述雾化童锁结构的误解锁几率。In this embodiment, the first identification part 2224 is located on the side of the board body 2222 away from the base 100, so that the first identification part 2224 can be easily identified and found, and the first identification part 2224 and the first identification part 2224 The two slide bars 2244 are corresponding, so that when the plate body 2222 rotates, the rotation angles of the first identification part 2224 and the second slide bar 2244 are equal, ensuring that the first identification part 2224 acts as the second identification part 2224. The rotation of slide bar 2244 is the same. The second identification part 300 is arranged on the side of the base 100 close to the board body 2222, the second identification part 300 corresponds to the first child lock channel 202, and the second identification part 300 serves as the The equivalent position of the first child lock channel 202 is on the base 100 . When locked, the second identification part 300 is covered by the plate body 2222, and there is no need to display the second identification part 300; when the first slide bar 2242 is moved to the designated position, it is about to be unlocked , the plate body 2222 no longer covers the second marking part 300, so that the second marking part 300 is exposed, which facilitates alignment with the first marking part 2224, thereby facilitating 2224 relative to the second identification part 300, quickly rotate the plate 2222, so that the second air guide hole 205 of the second slide bar 2244 communicates with the first child lock channel 202, realizing The quick rotation of the atomization child lock structure is unlocked. Wherein, the atomized child lock structure is unlocked through a dual mode of movement and rotation, which further increases the difficulty of unlocking the atomized child lock structure and further reduces the probability of mis-unlocking the atomized child lock structure.

在其中一个实施例中,本申请还提供一种电子雾化器,包括上述任一实施例所述的雾化童锁结构。在本实施例中,所述雾化童锁结构包括底座以及童锁组件。所述底座用于与电子雾化器的外壳连接,所述底座开设有童锁轨道通孔。所述童锁组件包括童锁导气件以及童锁开关件。所述童锁导气件与所述底座连接,所述童锁导气件的至少部分位于所述外壳内,所述童锁导气件具有与所述外壳内部连通的第一童锁通道。所述童锁开关件与所述底座活动连接,所述童锁开关件位于所述底座背离所述童锁导气件的一侧并遮盖所述童锁轨道通孔,所述童锁开关件穿设于所述童锁轨道通孔内并与所述童锁导气件滑动抵接,所述童锁开关件具有第二童锁通道。所述第二童锁通道用于在上锁时与所述第一童锁通道相互隔绝。在上锁状态时,第二童锁通道与第一童锁通道不相通;而在解锁时,需要将童锁开关件移动至指定位置,才能将第二童锁通道与第一童锁通道对齐,使得第二童锁通道与第一童锁通道实现相互连通,从而使得第二童锁通道与第一童锁通道共同形成进气通道,便于将电子雾化器的内部与外部环境连通,从而便于向电子雾化器的内部导入气体,实现对电子雾化器的气道解锁。In one embodiment, the present application also provides an electronic atomizer, including the atomization child lock structure described in any one of the above embodiments. In this embodiment, the atomized child lock structure includes a base and a child lock assembly. The base is used to connect with the shell of the electronic atomizer, and the base is provided with a child lock track through hole. The child lock assembly includes a child lock air guide and a child lock switch. The child lock air guide is connected to the base, at least part of the child lock air guide is located in the housing, and the child lock air guide has a first child lock channel communicating with the inside of the housing. The child lock switch is movably connected to the base, the child lock switch is located on the side of the base away from the child lock air guide and covers the child lock track through hole, the child lock switch The child lock switch part is provided with a second child lock channel through the through hole of the child lock track and slides against the child lock air guide. The second child lock channel is used to isolate from the first child lock channel when locked. In the locked state, the second child lock channel is not connected to the first child lock channel; and when unlocked, the child lock switch needs to be moved to the designated position to align the second child lock channel with the first child lock channel , so that the second child lock channel and the first child lock channel communicate with each other, so that the second child lock channel and the first child lock channel together form an air intake channel, which facilitates the communication between the interior of the electronic atomizer and the external environment, thereby It is convenient to introduce gas into the interior of the electronic atomizer to realize the unlocking of the air channel of the electronic atomizer.

以上所述实施例仅表达了本发明的几种实施方式,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,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,本发明专利的保护范围应以所附权利要求为准。The above-mentioned embodiments only express several implementation modes of the present invention, and the descriptions thereof are relatively specific and detailed, but should not be construed as limiting the patent scope of the invention. It should be pointed out that those skilled in the art can make several modifications and improvements without departing from the concept of the present invention, and these all belong to the protection scope of the present invention. Therefore, the protection scope of the patent for the present invention should be based on the appended claims.

Claims (10)

1.一种雾化童锁结构,其特征在于,包括:1. An atomized child lock structure, characterized in that it comprises: 底座,所述底座用于与电子雾化器的外壳连接,所述底座开设有童锁轨道通孔;A base, the base is used to connect with the shell of the electronic atomizer, and the base is provided with a child lock track through hole; 童锁组件,所述童锁组件包括童锁导气件以及童锁开关件,所述童锁导气件与所述底座连接,所述童锁导气件的至少部分位于所述外壳内,所述童锁导气件具有与所述外壳内部连通的第一童锁通道,所述童锁开关件与所述底座活动连接,所述童锁开关件位于所述底座背离所述童锁导气件的一侧并遮盖所述童锁轨道通孔,所述童锁开关件穿设于所述童锁轨道通孔内并与所述童锁导气件滑动抵接,所述童锁开关件具有第二童锁通道,所述第二童锁通道用于在上锁时与所述第一童锁通道相互隔绝。A child lock assembly, the child lock assembly includes a child lock air guide and a child lock switch, the child lock air guide is connected to the base, at least part of the child lock air guide is located in the housing, The child lock air guide has a first child lock channel communicating with the inside of the housing, the child lock switch is movably connected to the base, and the child lock switch is located on the base away from the child lock guide. One side of the air part covers the through hole of the child lock track, the child lock switch part passes through the through hole of the child lock track and slides against the child lock air guide part, the child lock switch The component has a second child lock channel, and the second child lock channel is used to be isolated from the first child lock channel when locked. 2.根据权利要求1所述的雾化童锁结构,其特征在于,所述童锁开关件在所述底座上的投影面积大于所述童锁轨道通孔的通孔面积。2 . The atomized child lock structure according to claim 1 , wherein the projected area of the child lock switch on the base is larger than the through hole area of the child lock track through hole. 3 . 3.根据权利要求2所述的雾化童锁结构,其特征在于,所述童锁开关件在所述底座上的投影面积与所述童锁轨道通孔的通孔面积的比值为5至10。3. The atomized child lock structure according to claim 2, characterized in that the ratio of the projected area of the child lock switch on the base to the through hole area of the child lock track through hole is 5 to 5. 10. 4.根据权利要求1所述的雾化童锁结构,其特征在于,所述童锁开关件具有滑动抵接面,所述滑动抵接面与所述底座相互平行设置,所述滑动抵接面贴合设置于所述底座上。4. The atomized child lock structure according to claim 1, wherein the child lock switch has a sliding abutment surface, the sliding abutment surface and the base are arranged parallel to each other, and the sliding abutment surface The surface fits on the base. 5.根据权利要求1所述的雾化童锁结构,其特征在于,所述童锁开关件包括相互连接的开关滑板以及开关滑杆,所述开关滑板滑动抵接于所述底座上,所述开关滑杆穿设于所述童锁轨道通孔内并与所述童锁导气件抵接。5. The atomized child lock structure according to claim 1, wherein the child lock switch part comprises a switch slide plate and a switch slide bar connected to each other, and the switch slide plate slides against the base, so that The switch slide rod is passed through the through hole of the child lock track and abuts against the child lock air guide. 6.根据权利要求5所述的雾化童锁结构,其特征在于,所述开关滑板开设有第一通孔,所述开关滑杆开设有与所述第一通孔连通的第二通孔,所述第一通孔与所述第二通孔形成所述第二童锁通道。6. The atomized child lock structure according to claim 5, wherein the switch slide plate is provided with a first through hole, and the switch slide bar is provided with a second through hole communicating with the first through hole , the first through hole and the second through hole form the second child lock channel. 7.根据权利要求5所述的雾化童锁结构,其特征在于,所述第二童锁通道开设于所述开关滑板上。7. The atomizing child lock structure according to claim 5, characterized in that, the second child lock channel is opened on the switch slide plate. 8.根据权利要求5所述的雾化童锁结构,其特征在于,所述童锁导气件开设有与所述第一童锁通道连通的滑动槽,所述滑动槽还与所述童锁轨道通孔连通,所述开关滑杆的部分滑动设置于所述滑动槽。8. The atomized child lock structure according to claim 5, wherein the child lock air guide is provided with a sliding groove communicating with the first child lock channel, and the sliding groove is also connected to the child lock channel. The lock track communicates with the through hole, and a part of the switch slide bar is slidably arranged in the slide groove. 9.根据权利要求8所述的雾化童锁结构,其特征在于,所述滑动槽的口径与所述开关滑杆的直径相等。9. The atomizing child lock structure according to claim 8, characterized in that, the diameter of the sliding groove is equal to the diameter of the switch sliding rod. 10.一种电子雾化器,其特征在于,包括如权利要求1至9中任一项所述的雾化童锁结构。10. An electronic atomizer, characterized by comprising the atomization child lock structure according to any one of claims 1 to 9.
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