WO2023138054A1 - 一种基于多孔硅雾化片的吸油结构及电子烟 - Google Patents

一种基于多孔硅雾化片的吸油结构及电子烟 Download PDF

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Publication number
WO2023138054A1
WO2023138054A1 PCT/CN2022/114829 CN2022114829W WO2023138054A1 WO 2023138054 A1 WO2023138054 A1 WO 2023138054A1 CN 2022114829 W CN2022114829 W CN 2022114829W WO 2023138054 A1 WO2023138054 A1 WO 2023138054A1
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oil
porous silicon
guiding
sealing
chamber
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PCT/CN2022/114829
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English (en)
French (fr)
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林旺
李博
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深圳市克莱鹏科技有限公司
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Publication of WO2023138054A1 publication Critical patent/WO2023138054A1/zh

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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
    • A24F40/10Devices using liquid inhalable precursors
    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F40/00Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
    • A24F40/40Constructional details, e.g. connection of cartridges and battery parts

Definitions

  • the invention relates to the technical field of electronic cigarettes, in particular to an oil-absorbing structure based on a porous silicon atomizing sheet and an electronic cigarette.
  • Electronic cigarettes are mainly used to quit and replace cigarettes. It can simulate the taste of cigarettes, but when smoking electronic cigarettes, it will not release tar, nicotine and second-hand smoke that are harmful to the human body. It can improve the success rate of smoking cessation with nicotine replacement therapy.
  • the principle of electronic atomized cigarettes is that the smoking agent is heated and vaporized into high-temperature steam on the electric heating element of the atomization system, and then sprayed out to the opening.
  • the traditional electronic cigarette structure generally includes a host and a pod.
  • the host is used for power supply and control to connect to the pod, and the pod is equipped with an e-liquid and an atomizing structure.
  • the existing electronic atomization structure includes heating wire heating atomization, ceramic heating atomization and ultrasonic atomization.
  • the existing atomization components have a single structure, poor permeability, and take up a large space and area, high cost, and general experience in use; therefore, new designs can be made for the existing electronic atomization structure and oil absorption structure.
  • an oil-absorbing structure based on a porous silicon atomizing sheet and an electronic cigarette are provided.
  • an oil-absorbing structure based on a porous silicon atomization sheet including a housing, an oil storage chamber opened in the housing, an air passage provided in the housing and extending to the oil storage chamber, an oil guide seat provided at the bottom of the oil storage chamber and connected to the air passage, a fixed bracket connected to the oil guide seat, an oil guide assembly installed in the oil guide seat, a porous silicon atomization sheet arranged on the fixed support and fitted with the oil guide assembly, and a connection base sealed and connected to the bottom of the housing;
  • a steel mesh is installed at the position, and oil-absorbing cotton is installed at the bottom.
  • the connection base is provided with an air column, and the steel mesh is provided with a through hole, and the through hole communicates with the air column and the porous silicon atomized sheet.
  • the present invention adopts porous silicon atomizing sheet to introduce the e-liquid to be heated and atomized.
  • the structure is simple and the heating efficiency is high.
  • An oil-absorbing chamber is set up, which can be used to absorb the condensate generated after atomization.
  • a steel mesh and an air column are set to guide the air to improve the stability of the air pressure. After the e-liquid is heated and atomized, the guiding transmission is stable.
  • the use of porous silicon atomizing sheets has a better atomization effect than atomized cotton cores and ceramic heating elements, longer service life, more uniform and reliable heating atomization, and ensures the taste of electronic cigarettes.
  • a housing an oil storage chamber opened in the housing, an air passage provided in the housing and extending to the oil storage chamber, an oil guide seat provided at the bottom of the oil storage chamber and connected to the air passage, a fixed bracket connected to the oil guide seat, an oil guide assembly installed in the oil guide seat, a porous silicon atomization sheet arranged on the fixed bracket and fitted with the oil guide assembly, and a connection base sealed and connected to the bottom of the housing;
  • Air column the steel mesh is provided with through holes, the through holes communicate with the air column and the porous silicon atomized sheet, and the oil guide seat is provided with pressing pins, and the pressing pins press and fix the steel mesh at the opening of the oil suction chamber.
  • the steel mesh is pressed and fixed by pressing pins to prevent the steel mesh from shifting during use or transportation, and through holes are set for ventilation to ensure the stability of atomized gas transmission, and the overall structure is stable and reliable.
  • Fig. 1 is a three-dimensional schematic diagram of the oil-absorbing structure based on the porous silicon atomizing sheet of the present invention.
  • FIG. 2 is a schematic top view of the oil-absorbing structure based on the porous silicon atomizing sheet in FIG. 1 .
  • Fig. 3 is a sectional view of A-A in Fig. 2 .
  • Fig. 4 is a sectional view of B-B in Fig. 2 .
  • FIG. 5 is a schematic structural view of the oil guide seat based on the oil absorption structure of the porous silicon atomizing sheet in FIG. 1 .
  • FIG. 6 is a schematic structural view of the fixing bracket of the oil-absorbing structure based on the porous silicon atomizing sheet in FIG. 1 .
  • an oil-absorbing structure based on a porous silicon atomization sheet includes a housing 1, an oil storage chamber 2 opened in the housing 1, an air passage 3 provided in the housing 1 and extending to the oil storage chamber 2, an oil guide seat 4 provided at the bottom of the oil storage chamber 2 and connected to the air passage 3, a fixed bracket 5 connected to the oil guide seat 4, an oil guide assembly 6 installed in the oil guide seat 4, a porous silicon atomization sheet 7 arranged on the fixed support 5 and attached to the oil guide assembly 6, and a connection sealingly connected to the bottom of the housing 1 Base 8; the connection base 8 is provided with an oil absorption chamber 9, the opening of the oil absorption chamber 9 is equipped with a steel mesh 91, and an oil absorption cotton 92 is installed at the bottom;
  • the oil guide seat 4 is provided with an oil guide groove 41 and an oil guide chamber 42.
  • the oil guide groove 41 is connected to the oil guide chamber 42.
  • the oil guide assembly 6 is installed in the oil guide chamber 42.
  • the oil guide seat 4 is located outside the oil guide chamber 42.
  • An air guide channel 43 is provided on the outside of the oil guide chamber 42.
  • An atomization area is formed on the lower side of the porous silicon atomization sheet 7.
  • the air guide channel 43 communicates with the air channel 3 and the atomization area; Guided into the air channel 3, the gas conduction is stable; the porous silicon atomizing sheet 7 is used to guide the e-liquid into the heating atomization, the structure is simple, and the heating efficiency is high.
  • the smoke is formed after the e-liquid is atomized, and the smoke is formed in the atomization area.
  • the oil guide assembly 6 includes an oil guide seal ring 61, a fixed inner ring 62 arranged in the oil guide seal ring 61, an oil guide cotton 63 arranged in the fixed inner ring 62, and an oil storage cotton 64 for laminating the oil guide cotton 63 and the porous silicon atomizing sheet 7; through the oil guide cotton 63, the smoke oil is introduced into the oil storage cotton 64, and then the oil is locked by the oil storage cotton 64 and introduced into the porous silicon atomizing sheet 7.
  • the channel 3 is exported for smoking, the overall structure is simple and reliable, the structure space and area are reduced, and the cost is saved.
  • the oil guiding seat 4 is covered with a sealing sleeve 44.
  • the sealing sleeve 44 includes a sealing inner ring 441 and a sealing outer ring 442.
  • the sealing outer ring 442 is in sealing contact with the inner wall of the oil storage chamber 2.
  • the sealing inner ring 441 is in sealing contact with the outer wall of the air passage 3.
  • the sealing sleeve 44 is used to seal the oil guiding seat 4 to prevent liquid leakage.
  • the oil guide seat 4 is provided with an air guide chamber 45 near the air passage 3, and the air guide chamber 45 communicates the air guide passage 43 with the air passage 3; the oil guide groove 41 is inclined from the oil storage chamber 2 toward the oil guide chamber 42; the air guide chamber 45 cooperates with the air passage 3 to export the smoke formed by the porous silicon atomized sheet 7.
  • the oblique oil guide groove 41 can be used to quickly guide the smoke oil into the oil guide assembly 6 .
  • Both sides of the oil guide seat 4 are provided with a connecting clip 46 and a fixed clip 47
  • the fixed bracket 5 is provided with a connecting clip 51
  • the connecting clip 51 is snapped into the connecting clip 46
  • the connecting base 8 is provided with a fixed clip 81
  • the fixed clip 81 is clipped with the fixed clip 47; through the cooperation of the connecting clip 46 and the connecting clip 51, the fixed bracket 5 is fixedly connected with the oil guide seat 4, and the structure is stable and reliable.
  • the fixed bracket 5 is provided with a placement groove 52, the placement groove 52 is provided with a positioning support plate 521, and the positioning support plate 521 is arranged on the outer edge of the placement groove 52.
  • the porous silicon atomization sheet 7 is installed in the placement groove 52, and the four corners of the porous silicon atomization sheet 7 are supported by the positioning support plate 521; the four corners of the porous silicon atomization sheet 7 are supported by the positioning support plate 521 in cooperation with the placement groove 52.
  • the structure is reliable and the stability is good during the heating and atomization process.
  • the outer edge of the oil guiding sealing ring 61 is provided with a sealing outer lip 611, and the inner diameter is provided with a sealing fixing groove 612, and the sealing outer lip 611 is in sealing contact with the oil guiding chamber 42; the sealing outer lip 611 cooperates with the sealing fixing groove 612 for structural sealing, respectively sealing the inner diameter and outer diameter, and the sealing effect is good.
  • the fixed inner ring 62 is arranged in the sealing and fixing groove 612, and the oil-guiding cotton 63 is fixed on the inner ring of the fixing inner ring 62, and the oil-guiding cotton 63 presses and fits the oil-storing cotton 64 to the porous silicon atomizing sheet 7; the structure fixing of the fixing inner ring 62 is fixed through the sealing and fixing groove 612, and the structural fixing effect is good, stable and reliable.
  • An electronic cigarette adopts the above-mentioned structure.
  • the porous silicon atomizing sheet 7 has better atomization effect, longer service life, more uniform and reliable heating and atomization, and ensures the taste of the electronic cigarette.
  • the present invention adopts the porous silicon atomizing sheet 7 to introduce the e-liquid to be heated and atomized.
  • the structure is simple and the heating efficiency is high.
  • the oil-absorbing chamber 9 is provided, and the oil-absorbing chamber 9 can be used to absorb the condensed liquid generated after atomization.
  • the use of porous silicon atomizing sheet 7 has better atomization effect, longer service life, and more uniform and reliable heating atomization compared with atomizing cotton core and ceramic heating element, which also ensures the taste of electronic cigarettes.
  • a housing 1 an oil storage chamber 2 opened in the housing 1, an air passage 3 provided in the housing 1 and extending to the oil storage chamber 2, an oil guide seat 4 provided at the bottom of the oil storage chamber 2 and connected to the air passage 3, a fixed bracket 5 connected to the oil guide seat 4, an oil guide assembly 6 installed in the oil guide seat 4, a porous silicon atomization sheet 7 arranged on the fixed bracket 5 and fitted with the oil guide assembly 6, and a connecting base 8 sealed and connected to the bottom of the housing 1;
  • a steel mesh 91 is installed at the opening of the oil tank 9, and an oil-absorbing cotton 92 is installed at the bottom.
  • the connecting base 8 is provided with an air column 81, and the steel mesh 91 is provided with a through hole 911, and the through hole 911 communicates with the air column 81 and the porous silicon atomizing sheet 7.
  • the steel mesh 91 is pressed and fixed by the pressing pins 912 to prevent the steel mesh 91 from shifting during use or transportation, and through holes 911 are provided for ventilation to ensure the stability of atomized gas transmission, and the overall structure is stable and reliable.

Abstract

一种基于多孔硅雾化片的吸油结构及电子烟,包括外壳(1)、开设于外壳(1)内的储油腔(2)、设于外壳(1)并延伸至储油腔(2)的气道(3)、设于储油腔(2)底部并连接于气道(3)的导油座(4)、连接于导油座(4)的固定支架(5)、安装于导油座(4)内的导油组件(6)、设于固定支架(5)并贴合导油组件(6)的多孔硅雾化片(7)、及密封连接于外壳(1)底部的连接底座(8);连接底座(8)设有吸油仓(9),吸油仓(9)开口位置安装有钢网(91)、底部安装有吸油棉(92),连接底座设有气柱(81),钢网(91)开设有通孔(911),通孔(911)连通气柱(81)和多孔硅雾化片(7)。该吸油结构设置了吸油仓,可用于将雾化后产生的冷凝液进行吸附,设置钢网和气柱用于导气,提升气压稳定性,在烟油加热雾化后导向传输稳定。

Description

一种基于多孔硅雾化片的吸油结构及电子烟
相关申请的交叉引用。
本申请要求于2022年01月21日提交中国专利局,申请号为202220177160.3,发明名称为“一种基于多孔硅雾化片的吸油结构及电子烟”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
技术领域
本发明涉及电子烟技术领域,特别是涉及一种基于多孔硅雾化片的吸油结构及电子烟。
背景技术
电子烟主要用于戒和替代香烟,它可以模拟香烟的味道,但抽电子烟时却不会释放对人体有害的焦油、尼古丁和二手烟雾,它能提高尼古丁替代疗法的戒烟成功率,因此,电子烟在推出不久便受到市场的追捧和国家的重视。电子雾化香烟,其原理为发烟剂在雾化系统的电加热元件上受热气化成高温蒸汽并向开口端喷出,喷出后的蒸汽在大气中膨胀冷凝成烟状的微小液滴,从而形成类似传统卷烟的烟雾。
技术问题
传统的电子烟结构一般包括主机和烟弹,主机用于供电和控制连接烟弹,烟弹内设置烟油和雾化结构。其中,现有的电子烟雾化结构包括发热丝加热雾化、陶瓷加热雾化和超声波雾化。现有的雾化组件结构单一,渗透性较差,而且占用空间和面积较大,成本较高,在使用中体验也一般化;故可针对现有的电子烟雾化结构和吸油结构配合做出新的设计。
技术解决方案
根据本申请的各种实施例,提供一种基于多孔硅雾化片的吸油结构及电子烟。
本发明所采用的技术方案是:一种基于多孔硅雾化片的吸油结构,包括外壳、开设于外壳内的储油腔、设于外壳并延伸至储油腔的气道、设于储油腔底部并连接于气道的导油座、连接于导油座的固定支架、安装于导油座内的导油组件、设于固定支架并贴合导油组件的多孔硅雾化片、及密封连接于外壳底部的连接底座;所述连接底座设有吸油仓,所述吸油仓开口位置安装有钢网、底部安装有吸油棉,所述连接底座设有气柱,所述钢网开设有通孔,所述通孔连通气柱和多孔硅雾化片,所述导油座设有压制引脚,所述压制引脚将钢网压制固定在吸油仓的开口处。
本发明的一个或多个实施例的细节在下面的附图和描述中提出。本发明的其它特征、目的和优点将从说明书、附图以及权利要求书变得明显。
有益效果
相比现有的电子烟,本发明采用多孔硅雾化片将烟油导入进行加热雾化,结构简单,加热效率高,设置了吸油仓,吸油仓可用于将雾化后产生的冷凝液进行吸附,设置钢网和气柱用于导气,提升气压稳定性,在烟油加热雾化后导向传输稳定,设置吸油棉可将产生的冷凝液吸附,预防出现漏液现象。另外,采用多孔硅雾化片对比雾化棉芯和陶瓷发热体雾化效果更好,使用寿命更长,发热雾化更加均匀可靠,也保证了电子烟吸食的口感。具体是,设置了外壳、开设于外壳内的储油腔、设于外壳并延伸至储油腔的气道、设于储油腔底部并连接于气道的导油座、连接于导油座的固定支架、安装于导油座内的导油组件、设于固定支架并贴合导油组件的多孔硅雾化片、及密封连接于外壳底部的连接底座;所述连接底座设有吸油仓,所述吸油仓开口位置安装有钢网、底部安装有吸油棉,所述连接底座设有气柱,所述钢网开设有通孔,所述通孔连通气柱和多孔硅雾化片,所述导油座设有压制引脚,所述压制引脚将钢网压制固定在吸油仓的开口处。通过压制引脚将钢网压制固定,预防在使用或者运输过程中钢网移位,设置通孔用于通气,保证雾化导气传输稳定性,整体结构稳定可靠。
附图说明
为了更好地描述和说明这里公开的那些发明的实施例和/或示例,可以参考一幅或多幅附图。用于描述附图的附加细节或示例不应当被认为是对所公开的发明、目前描述的实施例和/或示例以及目前理解的这些发明的最佳模式中的任何一者的范围的限制。
图1为本发明基于多孔硅雾化片的吸油结构的立体结构示意图。
图2为图1中基于多孔硅雾化片的吸油结构的俯视结构示意图。
图3为图2中A-A的剖视图。
图4为图2中B-B的剖视图。
图5为图1中基于多孔硅雾化片的吸油结构的导油座的结构示意图。
图6为图1中基于多孔硅雾化片的吸油结构的固定支架的结构示意图。
本发明的实施方式
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例。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例。相反地,提供这些实施例的目的是使对本发明的公开内容的理解更加透彻全面。
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。
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例的目的,不是旨在于限制本发明。
如图1~图6所示,一种基于多孔硅雾化片的吸油结构,包括外壳1、开设于外壳1内的储油腔2、设于外壳1并延伸至储油腔2的气道3、设于储油腔2底部并连接于气道3的导油座4、连接于导油座4的固定支架5、安装于导油座4内的导油组件6、设于固定支架5并贴合导油组件6的多孔硅雾化片7、及密封连接于外壳1底部的连接底座8;所述连接底座8设有吸油仓9,所述吸油仓9开口位置安装有钢网91、底部安装有吸油棉92,所述连接底座8设有气柱81,所述钢网91开设有通孔911,所述通孔911连通气柱81和多孔硅雾化片7,所述导油座4设有压制引脚912,所述压制引脚912将钢网91压制固定在吸油仓9的开口处。
导油座4开设有导油槽41和导油腔42,所述导油槽41连通至所述导油腔42,所述导油组件6安装于导油腔42内,所述导油座4位于导油腔42的外侧设有导气通道43,所述多孔硅雾化片7下侧形成有雾化区,所述导气通道43连通所述气道3和雾化区;通过多孔硅雾化片7将烟油雾化形成烟雾,烟雾形成在雾化区再经过导向进入气道3,导气稳定;采用多孔硅雾化片7将烟油导入进行加热雾化,结构简单,加热效率高,将烟油雾化后形成烟雾,烟雾形成在雾化区,雾化区在经过导气通道43的导向作用下降烟雾导入至气道3,后通过气道3导出供吸食。
导油组件6包括导油密封圈61、设于导油密封圈61内的固定内环62、设于固定内环62内的导油棉63、及将导油棉63与多孔硅雾化片7贴合的储油棉64;通过导油棉63将烟油导入至储油棉64,后通过储油棉64锁油并导入至多孔硅雾化片7,多孔硅雾化片7将烟油加热雾化,将产生的烟雾通过气道3导出供吸食,整体结构简单可靠,缩小结构空间和面积,节省成本。
导油座4外部套设有密封套44,所述密封套44包括密封内环441和密封外环442,所述密封外环442与储油腔2的内壁密面封抵接,所述密封内环441与气道3的外壁面密封抵接;通过密封套44用于将导油座4起到密封作用,预防出现漏液现象,密封效果好,也能够保证烟油更好的导入至导油组件6进行导油。
导油座4靠近气道3位置设有导气腔45,所述导气腔45将所述导气通道43与气道3连通;所述导油槽41由储油腔2朝向导油腔42位置倾斜;通过导气腔45配合气道3用于将多孔硅雾化片7所加入形成的烟雾导出。采用倾斜设置的导油槽41,可将烟油快速的导入至导油组件6。
导油座4的两侧设有连接卡槽46和固定卡槽47,所述固定支架5设有连接卡扣51,所述连接卡扣51卡入至连接卡槽46,所述连接底座8设有固定卡扣81,所述固定卡扣81与固定卡槽47卡接;通过连接卡槽46和连接卡扣51配合,将固定支架5与导油座4固定连接,结构稳定可靠。
固定支架5开设有安置槽52,所述安置槽52设有定位托板521,所述定位托板521设于安置槽52的外沿,所述多孔硅雾化片7安装于安置槽52内、并通过定位托板521将多孔硅雾化片7的四角托起;通过定位托板521配合安置槽52用于将多孔硅雾化片7的四角定位托起,在加热雾化过程中结构可靠,稳定性好。
导油密封圈61的外沿设有密封外唇611、内径设有密封固定槽612,所述密封外唇611与导油腔42密封抵接;通过密封外唇611配合密封固定槽612进行结构密封,分别对内径和外径进行密封,密封效果好。
固定内环62设于密封固定槽612内,所述导油棉63固定于固定内环62的内圈,所述导油棉63将储油棉64压紧贴合于多孔硅雾化片7;通过密封固定槽612配合固定内环62的结构固定,结构固定效果好,稳定可靠。
一种电子烟,采用了以上结构的电子烟,采用多孔硅雾化片7对比雾化棉芯和陶瓷发热体雾化效果更好,使用寿命更长,发热雾化更加均匀可靠,也保证了电子烟吸食的口感。
本发明采用多孔硅雾化片7将烟油导入进行加热雾化,结构简单,加热效率高,设置了吸油仓9,吸油仓9可用于将雾化后产生的冷凝液进行吸附,设置钢网91和气柱81用于导气,提升气压稳定性,在烟油加热雾化后导向传输稳定,设置吸油棉92可将产生的冷凝液吸附,预防出现漏液现象。另外,采用多孔硅雾化片7对比雾化棉芯和陶瓷发热体雾化效果更好,使用寿命更长,发热雾化更加均匀可靠,也保证了电子烟吸食的口感。具体是,设置了外壳1、开设于外壳1内的储油腔2、设于外壳1并延伸至储油腔2的气道3、设于储油腔2底部并连接于气道3的导油座4、连接于导油座4的固定支架5、安装于导油座4内的导油组件6、设于固定支架5并贴合导油组件6的多孔硅雾化片7、及密封连接于外壳1底部的连接底座8;所述连接底座8设有吸油仓9,所述吸油仓9开口位置安装有钢网91、底部安装有吸油棉92,所述连接底座8设有气柱81,所述钢网91开设有通孔911,所述通孔911连通气柱81和多孔硅雾化片7,所述导油座4设有压制引脚912,所述压制引脚912将钢网91压制固定在吸油仓9的开口处。通过压制引脚912将钢网91压制固定,预防在使用或者运输过程中钢网91移位,设置通孔911用于通气,保证雾化导气传输稳定性,整体结构稳定可靠。
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本发明专利范围的限制。应当指出的是,对于本领域的普通技术人员来说,在不脱离本发明构思的前提下,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。

Claims (10)

  1. 一种基于多孔硅雾化片的吸油结构,包括外壳、开设于外壳内的储油腔、设于外壳并延伸至储油腔的气道、设于储油腔底部并连接于气道的导油座、连接于导油座的固定支架、安装于导油座内的导油组件、设于固定支架并贴合导油组件的多孔硅雾化片、及密封连接于外壳底部的连接底座;所述连接底座设有吸油仓,所述吸油仓开口位置安装有钢网、底部安装有吸油棉,所述连接底座设有气柱,所述钢网开设有通孔,所述通孔连通气柱和多孔硅雾化片,所述导油座设有压制引脚,所述压制引脚将钢网压制固定在吸油仓的开口处。
  2. 根据权利要求1所述的基于多孔硅雾化片的吸油结构,其特征在于:所述导油座开设有导油槽和导油腔,所述导油槽连通至所述导油腔,所述导油组件安装于导油腔内,所述导油座位于导油腔的外侧设有导气通道,所述多孔硅雾化片下侧形成有雾化区,所述导气通道连通所述气道和雾化区。
  3. 根据权利要求2所述的基于多孔硅雾化片的吸油结构,其特征在于:所述导油组件包括导油密封圈、设于导油密封圈内的固定内环、设于固定内环内的导油棉、及将导油棉与多孔硅雾化片贴合的储油棉。
  4. 根据权利要求1所述的基于多孔硅雾化片的吸油结构,其特征在于:所述导油座外部套设有密封套,所述密封套包括密封内环和密封外环,所述密封外环与储油腔的内壁密面封抵接,所述密封内环与气道的外壁面密封抵接。
  5. 根据权利要求1所述的基于多孔硅雾化片的吸油结构,其特征在于:所述导油座靠近气道位置设有导气腔,所述导气腔将所述导气通道与气道连通;所述导油槽由储油腔朝向导油腔位置倾斜。
  6. 根据权利要求1所述的基于多孔硅雾化片的吸油结构,其特征在于:所述导油座的两侧设有连接卡槽和固定卡槽,所述固定支架设有连接卡扣,所述连接卡扣卡入至连接卡槽,所述连接底座设有固定卡扣,所述固定卡扣与固定卡槽卡接。
  7. 根据权利要求1所述的基于多孔硅雾化片的吸油结构,其特征在于:所述固定支架开设有安置槽,所述安置槽设有定位托板,所述定位托板设于安置槽的外沿,所述多孔硅雾化片安装于安置槽内、并通过定位托板将多孔硅雾化片的四角托起。
  8. 根据权利要求3所述的基于多孔硅雾化片的吸油结构,其特征在于:所述导油密封圈的外沿设有密封外唇、内径设有密封固定槽,所述密封外唇与导油腔密封抵接。
  9. 根据权利要求8所述的基于多孔硅雾化片的吸油结构,其特征在于:所述固定内环设于密封固定槽内,所述导油棉固定于固定内环的内圈,所述导油棉将储油棉压紧贴合于多孔硅雾化片。
  10. 一种电子烟,其特征在于:包括权利要求1~9任意一项所述的基于多孔硅雾化片的吸油结构。
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