WO2023001239A1 - U 型电子烟蠕动泵 - Google Patents

U 型电子烟蠕动泵 Download PDF

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Publication number
WO2023001239A1
WO2023001239A1 PCT/CN2022/107053 CN2022107053W WO2023001239A1 WO 2023001239 A1 WO2023001239 A1 WO 2023001239A1 CN 2022107053 W CN2022107053 W CN 2022107053W WO 2023001239 A1 WO2023001239 A1 WO 2023001239A1
Authority
WO
WIPO (PCT)
Prior art keywords
peristaltic
transmission
assembly
support
drive
Prior art date
Application number
PCT/CN2022/107053
Other languages
English (en)
French (fr)
Inventor
吴聪
黎冬阳
王小文
柯甫
Original Assignee
深圳麦克韦尔科技有限公司
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.)
Filing date
Publication date
Application filed by 深圳麦克韦尔科技有限公司 filed Critical 深圳麦克韦尔科技有限公司
Publication of WO2023001239A1 publication Critical patent/WO2023001239A1/zh
Priority to US18/415,894 priority Critical patent/US20240183351A1/en

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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F04POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
    • F04BPOSITIVE-DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS
    • F04B43/00Machines, pumps, or pumping installations having flexible working members
    • F04B43/12Machines, pumps, or pumping installations having flexible working members having peristaltic action
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F04POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
    • F04BPOSITIVE-DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS
    • F04B53/00Component parts, details or accessories not provided for in, or of interest apart from, groups F04B1/00 - F04B23/00 or F04B39/00 - F04B47/00
    • F04B53/16Casings; Cylinders; Cylinder liners or heads; Fluid connections
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F04POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
    • F04BPOSITIVE-DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS
    • F04B17/00Pumps characterised by combination with, or adaptation to, specific driving engines or motors
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F04POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
    • F04BPOSITIVE-DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS
    • F04B17/00Pumps characterised by combination with, or adaptation to, specific driving engines or motors
    • F04B17/03Pumps characterised by combination with, or adaptation to, specific driving engines or motors driven by electric motors
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F04POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
    • F04BPOSITIVE-DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS
    • F04B43/00Machines, pumps, or pumping installations having flexible working members
    • F04B43/02Machines, pumps, or pumping installations having flexible working members having plate-like flexible members, e.g. diaphragms
    • F04B43/04Pumps having electric drive
    • F04B43/043Micropumps
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F04POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
    • F04BPOSITIVE-DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS
    • F04B43/00Machines, pumps, or pumping installations having flexible working members
    • F04B43/12Machines, pumps, or pumping installations having flexible working members having peristaltic action
    • F04B43/1223Machines, pumps, or pumping installations having flexible working members having peristaltic action the actuating elements, e.g. rollers, moving in a straight line during squeezing
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F04POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
    • F04BPOSITIVE-DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS
    • F04B9/00Piston machines or pumps characterised by the driving or driven means to or from their working members
    • F04B9/02Piston machines or pumps characterised by the driving or driven means to or from their working members the means being mechanical
    • 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
    • A24F40/48Fluid transfer means, e.g. pumps
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F04POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
    • F04BPOSITIVE-DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS
    • F04B43/00Machines, pumps, or pumping installations having flexible working members
    • F04B43/12Machines, pumps, or pumping installations having flexible working members having peristaltic action
    • F04B43/1253Machines, pumps, or pumping installations having flexible working members having peristaltic action by using two or more rollers as squeezing elements, the rollers moving on an arc of a circle during squeezing

Definitions

  • the present invention relates to the technical field of electronic cigarettes, in particular to a U-shaped electronic cigarette peristaltic pump.
  • E-cigarettes are relatively popular products in recent years. They can imitate traditional cigarettes, that is, after users inhale them, they can emit corresponding gases.
  • the principle of electronic cigarettes is mainly to heat and atomize the liquid e-liquid by heating the refined e-liquid, and the user inhales the atomized e-liquid to achieve the effect of smoking.
  • Figure 1 is a schematic structural diagram of a peristaltic pump in the prior art.
  • the head 230 and the hose 240, the motor 210 and the deceleration device 220 are located in the motor housing 260, the pump head 230 is connected to the deceleration device 220, and the pump head 230 rotates and squeezes the hose 240 to perform oiling and oil removal of the e-liquid.
  • the motor 210 and the deceleration device 220 are externally attached with the motor housing 260, since the motor housing 260 also occupies a certain space, which will increase the overall volume of the product; in addition, the deceleration device 220 adopts It is a traditional reducer.
  • the traditional reducer is composed of a reduction box and multiple sets of gear sets.
  • the arrangement of multiple sets of gear sets in the reducer Due to the limitation of the structure of the gearbox, the arrangement cannot be further optimized. Therefore, for the case where multiple sets of gear sets are required for speed change, the volume of the gearbox will inevitably increase, which in turn will cause the volume of the entire reducer to increase, and the volume of the final product will also increase. It becomes bigger thereupon, which not only increases the manufacturing cost, but also is inconvenient to use and carry.
  • the present invention provides a U-shaped electronic cigarette peristaltic pump.
  • a U-shaped electronic cigarette peristaltic pump disclosed by the present invention includes: a bearing member, a driving assembly, a transmission assembly and a peristaltic assembly, the driving assembly is arranged on the bearing member, the peristaltic assembly and the driving assembly are arranged side by side on the same side of the bearing member, and the driving assembly
  • a first accommodating space is provided between the peristaltic component and the carrier, a second accommodating space is provided between the peristaltic component and the carrier, the transmission components are respectively located in the first accommodating space and the second accommodating space, and the driving component is connected to the peristaltic component through the transmission component.
  • the transmission assembly includes a plurality of transmission shafts and a plurality of transmission teeth, the plurality of transmission shafts are respectively located in the first accommodation space and the second accommodation space, the plurality of transmission teeth are rotatably connected to the plurality of transmission shafts, and the plurality of transmission teeth The transmission teeth are sequentially meshed and connected.
  • the driving assembly includes a driving support and a driving member.
  • the driving support is disposed on the carrier, and the driving support and the carrier form a first accommodation space, and the driving member is disposed on the driving support.
  • the drive assembly further includes a drive output member, the drive output member is disposed at the output end of the drive member, and the drive output member is connected to the transmission assembly.
  • the bearing member is provided with a receiving hole, and a part of the driving output member is located in the receiving hole.
  • the peristaltic component includes a peristaltic support, a peristaltic power part and a conveying part.
  • the peristaltic power members abut each other.
  • the peristaltic support includes a peristaltic support and a peristaltic cover, the peristaltic support is arranged on the carrier, and forms a second accommodation space with the carrier, the peristaltic cover is provided on the peristaltic support, and the peristaltic cover and the peristaltic support form
  • the accommodating chamber, the peristaltic power part and the conveying part are all located in the accommodating chamber.
  • the peristaltic power part includes a peristaltic shaft, a peristaltic frame and a peristaltic wheel, the peristaltic shaft runs through the peristaltic support, and the peristaltic shaft is respectively connected to the peristaltic frame and the transmission assembly, and the peristaltic wheel is rotatably connected to the peristaltic frame.
  • a first fixing hole is opened on the edge of the creeping frame, and the creeping wheel is rotatably arranged in the first fixing hole through a connecting shaft.
  • a second fixing hole is provided in the creeping frame, and the creeping wheel is rotatably arranged in the second fixing hole through a connecting shaft.
  • the beneficial effect of the present invention is that, through the cooperative arrangement of the bearing member, the drive assembly, the transmission assembly and the peristaltic assembly, the transmission assembly is respectively located in the first accommodation space and the second accommodation space, and then the drive assembly and the peristalsis assembly are connected, and all three It is set on the carrier, and the overall shape is "U" shape, which not only makes reasonable use of the first storage space and the second storage space, but also reduces the traditional deceleration outer box, and the transmission components are arranged more compactly.
  • the effect of reducing the volume is achieved, and the volume of the final product is also reduced, which is convenient to carry and use.
  • Fig. 1 is the structural representation of peristaltic pump in the prior art
  • Fig. 2 is a three-dimensional structure diagram of a U-shaped electronic cigarette peristaltic pump in Embodiment 1;
  • Fig. 3 is another three-dimensional structure diagram of the U-shaped electronic cigarette peristaltic pump in the first embodiment
  • Fig. 4 is a three-dimensional structural view of the carrier in Embodiment 1;
  • Fig. 5 is a three-dimensional structural schematic diagram of the transmission assembly in Embodiment 1;
  • FIG. 6 is a three-dimensional structural view of the peristaltic assembly in Embodiment 1;
  • Fig. 7 is a three-dimensional structure diagram of the peristaltic power part in the first embodiment
  • Fig. 8 is another three-dimensional structure diagram of the peristaltic power part in the second embodiment.
  • 4-creeping component 41-creeping support; 411-creeping bracket; 412-creeping cover; 413-accommodating chamber; 414-creeping prop; One fixing hole; 4222-the second fixing hole; 423-peristaltic wheel; 424-connecting shaft; 43-transporting part;
  • Figure 2 is a three-dimensional structure diagram of a U-shaped electronic cigarette peristaltic pump in Embodiment 1;
  • Fig. 3 is another three-dimensional structure diagram of the U-shaped electronic cigarette peristaltic pump in the first embodiment.
  • the U-shaped electronic cigarette peristaltic pump in this embodiment includes a carrier 1, a drive component 2, a transmission component 3 and a peristaltic component 4, the drive component 2, the transmission component 3 and the peristaltic component 4 are all arranged on the carrier 1, and the drive component 2 and the transmission component 3 are arranged side by side on the same side of the carrier 1, the drive component 2 is connected to the peristaltic component 4 through the transmission component 3, and the drive component 2, the transmission component 3 and the peristaltic component 4 are integrated through the carrier 1, which is convenient for assembly And maintenance, it is also convenient to adjust the overall layout, which is conducive to reducing the occupied volume.
  • FIG. 4 is a three-dimensional structure diagram of the carrier 1 in the first embodiment.
  • the carrier 1 is provided with a receiving hole 11 , and a part of the output end of the driving assembly 2 is located in the receiving hole 11 , which reduces the volume occupied by the output end of the driving assembly 2 .
  • the carrier 1 is provided with corresponding through holes 12, so that the thickness of the carrier 1 can be reasonably used to achieve The effect of reducing volume.
  • the drive assembly 2 includes a drive support 21 and a drive 22, the drive support 21 is arranged on the carrier 1, the drive support 21 includes a plurality of drive support columns 211 and drive support plates 212, more A driving supporting column 211 is disposed in the through hole 12 , a driving supporting plate 212 is connected to a plurality of driving supporting columns 211 , the driving element 22 is disposed on the driving supporting plate 212 , and the output end of the driving element 22 passes through the driving supporting plate 212 .
  • the number of the driving supporting columns 211 is four, and the four driving supporting columns 211 are arranged on the driving supporting plate 212 at intervals, so as to improve the stability of the driving supporting columns 211 supporting the driving supporting plate 212 .
  • the number of the driving support columns 211 is not limited to four, but can also be two and so on.
  • there is a first accommodating space 5 between the driving support plate 212 and the bearing member 1 a part of the transmission assembly 3 is located in the first accommodating space 5 , and the driving member 22 is connected to the transmission assembly 3 .
  • the driving assembly 2 also includes a driving output member 23, the driving output member 23 is connected to the output end of the driving member 22, and the driving output member 23 is connected to the transmission assembly 3, the driving member 22 is energized to drive the driving output member 23 to rotate, and then The transmission assembly 3 is driven to rotate by the drive output member 23 .
  • part of the driving output member 23 is located in the receiving hole 11, and the driving output member 23 can rotate in the receiving hole 11, and the part of the driving output member 23 not in the receiving hole 11 is connected with the transmission assembly 3, fully Utilizing the thickness of the bearing member 1 itself, the space occupied by the drive output member 23 is reduced to achieve the effect of reducing the volume.
  • the driving part 22 is a stepping motor, which has the advantage of being small in size compared with a DC motor or other motors.
  • the drive output 23 is a gear.
  • FIG. 5 is a schematic perspective view of the transmission assembly 3 in the first embodiment.
  • the transmission assembly 3 includes a plurality of transmission shafts 31 and a plurality of transmission teeth 32.
  • the transmission shafts 31 are arranged in the first accommodating space 5, and part of the transmission shafts 31 are respectively connected to the driving support plate 212 and the carrier 1, and part of the
  • the transmission shaft 31 is arranged between the peristaltic assembly 4 and the bearing member 1 , and the transmission shaft 31 is also connected to the peristaltic assembly 4 and the bearing member 1 respectively.
  • a plurality of transmission teeth 32 are sequentially rotated on the transmission shafts 31 , and the driving output member 23 is connected to one of the transmission teeth 32 , and the peristaltic component 4 is also connected to one of the transmission teeth 32 .
  • a transmission tooth 32 is driven to rotate by the driving output member 23 , and the transmission teeth 32 are mutually transmitted, and finally the power is transmitted to the peristaltic assembly 4 .
  • a through hole 12 is correspondingly provided at the joint between the transmission shaft 31 and the bearing member 1, which facilitates installation and reduces the volume.
  • the number of transmission shafts 31 is four, and the number of transmission teeth 32 is six, wherein the four transmission teeth 32 are respectively rotated on the four transmission shafts 31, and the two transmission teeth 32 are arranged on the peristaltic
  • a plurality of transmission teeth 32 are arranged in a circuitous way in a limited space to make reasonable use of the space, which can not only achieve the required deceleration effect, but also reduce the volume.
  • FIG. 6 is a three-dimensional structural view of the peristaltic component 4 in the first embodiment
  • FIG. 7 is a three-dimensional structural view of the peristaltic power member 42 in the first embodiment.
  • the peristaltic component 4 includes a peristaltic support 41, a peristaltic power part 42 and a conveying part 43, the peristaltic support 41 is arranged on the bearing part 1, the peristaltic power part 42 is arranged on the peristaltic support 41, and the conveying part 43 is arranged on the peristaltic support 41, and
  • the peristaltic power part 42 squeezes the conveying part 43 when working. Please review Fig. 1 and Fig.
  • the peristaltic support 41 includes a peristaltic support 411 and a peristaltic cover 412, the peristaltic support 411 is arranged on the through hole 12 on the carrier 1, and the peristaltic cover 412 is covered on the peristaltic support 411, meanwhile, the peristaltic cover 412 and the peristaltic bracket 411 form an accommodation chamber 413, the peristaltic power member 42 is located in the accommodation chamber 413, the conveying member 43 is also located in the accommodation chamber 413, and the input and output ends of the conveying member 43 pass through the accommodation chamber 413 and other components connect.
  • the peristaltic support 411 and the carrier 1 are connected by a peristaltic support 414, and the peristaltic support 414 and the peristaltic support 411 can be a separate structure or an integrated structure.
  • the peristaltic support 411 and the peristaltic support 411 in this embodiment The pillar 414 adopts an integrated structure, which is beneficial to the early processing, reduces assembly procedures, improves efficiency, and increases stability.
  • the peristaltic power part 42 includes a peristaltic shaft 421, a peristaltic frame 422 and a peristaltic wheel 423, the peristaltic shaft 421 runs through the peristaltic frame 411, and is connected with the transmission gear 32, the peristaltic frame 422 is connected to the peristaltic shaft 421, and the peristaltic wheel 423 is rotated and set On the peristaltic frame 422 , the peristaltic wheel 423 abuts against the conveying member 43 .
  • the peristaltic shaft 421 is the power input end of the peristaltic assembly 4, the transmission gear 32 drives the peristaltic shaft 421 to rotate, the peristaltic shaft 421 drives the peristaltic frame 422 and the peristaltic wheel 423 to rotate together, and the peristaltic wheel 423 is squeezed during the rotation Part 43, the way of squeezing the conveying part 43 through the peristaltic wheel 423 has less friction, higher efficiency and less damage to the conveying part 43 compared to the traditional cam extrusion method, which improves the service life of the conveying part 43 and reduces Subsequent maintenance costs.
  • the edge of the creeping frame 422 is provided with a first fixing hole 4221, because the first fixing hole 4221 is located at the edge of the creeping frame 422, so the first fixing hole 4221 is a semicircular hole, which facilitates the installation, disassembly and maintenance of the creeping wheel 423.
  • the peristaltic wheel 423 is clamped in the first fixing hole 4221 through the connecting shaft 424, and the peristaltic frame 422 is elongated as a whole.
  • the two ends of the peristaltic frame 422 are respectively provided with the first fixing holes 4221 for snap-fitting the connecting shaft 424 .
  • the number of peristaltic wheels 423 is not limited to two, but can also be one, three or more, which can be selected and used according to actual application requirements.
  • the conveying member 43 is a tube made of soft material, such as a silicone tube or a rubber tube, and of course it can also be other soft tube materials.
  • the driving part 22 drives the driving output part 23 to rotate, and the driving output part 23 drives the transmission gear 32 to rotate, and the multiple transmission teeth 32 are transmitted in sequence, and the power is transmitted to the peristaltic shaft 421, and the peristaltic shaft 421 drives the peristaltic frame 422 to rotate , the peristaltic wheels 423 on the peristaltic frame 422 rotate together, and the two peristaltic wheels 423 squeeze the conveying member 43 during the rotation, and a negative pressure is generated in the conveying member 43, and the e-cigarette oil is sucked into the conveying member 43, and finally transported To the spray chamber for atomization.
  • FIG. 8 is another three-dimensional structure diagram of the peristaltic power member 42 in the second embodiment.
  • the structure of this embodiment is basically the same as that of Embodiment 1, the difference is that the creeping frame 422 is provided with a second fixing hole 4222, and the second fixing hole 4222 is located in the creeping frame 422, so the cross section of the second fixing hole 4222 is a circle, which is effective Prevent the connecting shaft 424 from falling off during assembly or use, and improve overall stability.
  • the transmission component is respectively located in the first storage space and the second storage space, and then the drive component and the peristaltic component are connected. All three are set On the bearing part, the overall shape is "U" shape, which not only makes reasonable use of the first storage space and the second storage space, but also reduces the traditional deceleration outer box, and the arrangement of the transmission components is more compact, achieving reduction Due to the effect of small volume, the volume of the final product is also reduced, which is convenient to carry and use.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Reciprocating Pumps (AREA)

Abstract

一种U型电子烟蠕动泵,包括承载件(1)、驱动组件(2)、传动组件(3)及蠕动组件(4)。驱动组件(2)设置于承载件(1),蠕动组件(4)与驱动组件(2)并排设置于承载件(1)的同一侧,驱动组件(2)与承载件(1)之间设有第一容纳空间(5),蠕动组件(4)与承载件(1)之间设有第二容纳空间(6),传动组件(3)分别位于第一容纳空间(5)及第二容纳空间(6),且驱动组件(2)通过传动组件(3)连接蠕动组件(4)。该蠕动泵合理利用第一容纳空间及第二容纳空间,无需减速外箱,结构紧凑,达到了减小体积的效果。

Description

U型电子烟蠕动泵 技术领域
本发明涉及电子烟技术领域,具体地,涉及一种U型电子烟蠕动泵。
背景技术
电子烟是近些年较为流行的产品,其能模仿传统的香烟,即在使用者吸入后,可喷出相应的气体。电子烟原理主要是通过加热提炼后的烟油,使得液态的烟油受热雾化,使用者吸入雾化后的烟油达到吸烟的效果。
根据专利“CN201822169593.0”公开的内容,如图1所示,图1为现有技术中蠕动泵的结构示意图,该专利中的蠕动泵结构包括电机外罩260、电机210、减速装置220、泵头230 以及软管240,电机210及减速装置220位于电机外罩260内,泵头230与减速装置220连接,通过泵头230转动挤压软管240,进行烟油的上油和退油。通过该专利可发现,电机210与减速装置220是外附有电机外罩260的,由于电机外罩260也占用了一定的空间,这就将增大了产品的整体体积;另外,减速装置220采用的是传统的减速器,传统的减速器是由减速箱及多组齿轮组构成,多组齿轮组在减速箱内的排布将决定减速器的大小,而往往减速器内的多组齿轮组由于受限于减速箱结构,无法进一步优化排布方式,所以对于需要多组齿轮组进行变速的情况,必然导致减速箱体积变大,进而导致整个减速器的体积变大,最终的产品体积也将随之变大,不仅增加制造成本,而且还不方便使用和携带。
技术问题
针对现有技术的不足,本发明提供一种U型电子烟蠕动泵。
技术解决方案
本发明公开的一种U型电子烟蠕动泵,包括:承载件、驱动组件、传动组件及蠕动组件,驱动组件设置于承载件,蠕动组件与驱动组件并排设置于承载件的同一侧,驱动组件与承载件之间设有第一容纳空间,蠕动组件与承载件之间设有第二容纳空间,传动组件分别位于第一容纳空间及第二容纳空间,且驱动组件通过传动组件连接蠕动组件。
根据本发明的一实施方式,传动组件包括多个传动轴及多个传动齿,多个传动轴分别位于第一容纳空间及第二容纳空间,多个传动齿转动连接多个传动轴,且多个传动齿依序啮合连接。
根据本发明的一实施方式,驱动组件包括驱动支撑件及驱动件,驱动支撑件设置于承载件,且驱动支撑件与承载件构成第一容纳空间,驱动件设置于驱动支撑件。
根据本发明的一实施方式,驱动组件还包括驱动输出件,驱动输出件设置于驱动件输出端,且驱动输出件连接传动组件。
根据本发明的一实施方式,承载件设有容纳孔,驱动输出件部分区域位于容纳孔内。
根据本发明的一实施方式,蠕动组件包括蠕动支撑件、蠕动动力件及输送件,蠕动支撑件设置于承载件,蠕动动力件设置于蠕动支撑件,且蠕动动力件连接传动组件,输送件与蠕动动力件相互抵接。
根据本发明的一实施方式,蠕动支撑件包括蠕动支架及蠕动盖,蠕动支架设置于承载件,并与承载件构成第二容纳空间,蠕动盖盖设于蠕动支架,且蠕动盖与蠕动支架形成容纳腔,蠕动动力件及输送件均位于容纳腔内。
根据本发明的一实施方式,蠕动动力件包括蠕动轴、蠕动架及蠕动轮,蠕动轴贯穿蠕动支撑件,且蠕动轴分别连接蠕动架及传动组件,蠕动轮转动连接蠕动架。
根据本发明的一实施方式,蠕动架边缘开设有第一固定孔,蠕动轮通过连接轴转动设置于第一固定孔。
根据本发明的一实施方式,蠕动架内设有第二固定孔,蠕动轮通过连接轴转动设置于第二固定孔。
有益效果
本发明的有益效果在于,通过承载件、驱动组件、传动组件及蠕动组件的配合设置,传动组件分别位于第一容纳空间及第二容纳空间,进而将驱动组件与蠕动组件连接起来,三者均是设置于承载件上,整体的造型呈“U”字型,不仅合理利用了第一容纳空间及第二容纳空间,而且还减少了传统的减速外箱,传动组件排布也更为紧凑,达到减小体积的效果,最终产品的体积也缩小了,既方便携带还方便使用。
附图说明
此处所说明的附图用来提供对本申请的进一步理解,构成本申请的一部分,本申请的示意性实施例及其说明用于解释本申请,并不构成对本申请的不当限定。在附图中:
图1为现有技术中蠕动泵的结构示意图;
图2为实施例一中U型电子烟蠕动泵的立体结构图;
图3为实施例一中U型电子烟蠕动泵的另一立体结构图;
图4为实施例一中承载件的立体结构图;
图5为实施例一中传动组件的立体结构示意图;
图6为实施例一中蠕动组件的立体结构图;
图7为实施例一中蠕动动力件的立体结构图;
图8为实施例二中蠕动动力件的另一立体结构图。
附图标记说明:
1-承载件;11-容纳孔;12-通孔;
2-驱动组件;21-驱动支撑件;211-驱动支撑柱;212-驱动支撑板;22-驱动件;23-驱动输出件;
3-传动组件;31-传动轴;32-传动齿;
4-蠕动组件;41-蠕动支撑件;411-蠕动支架;412-蠕动盖;413-容纳腔;414-蠕动支柱;42-蠕动动力件;421-蠕动轴;422-蠕动架;4221-第一固定孔;4222-第二固定孔;423-蠕动轮;424-连接轴;43-输送件;
5-第一容纳空间;
6-第二容纳空间。
本发明的实施方式
以下将以图式揭露本发明的多个实施方式,为明确说明起见,许多实务上的细节将在以下叙述中一并说明。然而,应了解到,这些实务上的细节不应用以限制本发明。也就是说,在本发明的部分实施方式中,这些实务上的细节是非必要的。此外,为简化图式起见,一些习知惯用的结构与组件在图式中将以简单的示意的方式绘示之。
另外,在本发明中如涉及“第一”、“第二”等的描述仅用于描述目的,并非特别指称次序或顺位的意思,亦非用以限定本发明,其仅仅是为了区别以相同技术用语描述的组件或操作而已,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, 也不在本发明要求的保护范围之内。
实施例一
如图2及图3所示,图2为实施例一中U型电子烟蠕动泵的立体结构图;
图3为实施例一中U型电子烟蠕动泵的另一立体结构图。本实施例中的U型电子烟蠕动泵包括承载件1、驱动组件2、传动组件3及蠕动组件4,驱动组件2、传动组件3及蠕动组件4均设置于承载件1上,且驱动组件2与传动组件3并排设置于承载件1的同一侧,驱动组件2通过传动组件3连接蠕动组件4,通过承载件1将驱动组件2、传动组件3及蠕动组件4集合成一体,即方便组合和维护,还便于调整整体的布局,有利于降低占用的体积。
再一并参照图4所示,图4为实施例一中承载件1的立体结构图。承载件1设有容纳孔11,驱动组件2的输出端一部分区域位于容纳孔11内,减少驱动组件2输出端所占用的体积。具体应用时,驱动组件2、传动组件3及蠕动组件4与承载件1进行连接时,承载件1均开设有对应的通孔12,如此可以合理的使用到承载件1自己的厚度,进而达到减小体积的效果。
请复阅图2及图3,驱动组件2包括驱动支撑件21及驱动件22,驱动支撑件21设置于承载件1,驱动支撑件21包括多个驱动支撑柱211及驱动支撑板212,多个驱动支撑柱211设于通孔12内,驱动支撑板212与多个驱动支撑柱211连接,驱动件22设置于驱动支撑板212,且驱动件22的输出端贯穿驱动支撑板212。具体的,驱动支撑柱211的数量为四个,四个驱动支撑柱211间隔设置于驱动支撑板212,提高驱动支撑柱211对驱动支撑板212支撑的稳定性。当然,驱动支撑柱211的数量也不仅限于四个,还可以是两个等等。在另一实施例中,驱动支撑板212与承载件1之间具有第一容纳空间5,传动组件3一部分位于第一容纳空间5内,且驱动件22与传动组件3连接。优选地,驱动组件2还包括驱动输出件23,驱动输出件23连接驱动件22的输出端,且驱动输出件23与传动组件3连接,驱动件22通电工作,带动驱动输出件23转动,再由驱动输出件23带动传动组件3转动。本实施例中,驱动输出件23的部分区域位于容纳孔11内,且驱动输出件23可在容纳孔11内转动,驱动输出件23不在容纳孔11内的部分则与传动组件3连接,充分利用承载件1自身的厚度,降低驱动输出件23占用的空间,达到减小体积的效果。具体的,驱动件22为步进电机,相较于直流电机或其他的电机,具备体积小的优势。驱动输出件23为齿轮。
再一并参照图5所示,图5为实施例一中传动组件3的立体结构示意图。传动组件3包括多个传动轴31及多个传动齿32,传动轴31设置于第一容纳空间5内,且部分传动轴31分别与驱动支撑板212及承载件1连接,同时还有部分的传动轴31设于蠕动组件4与承载件1之间,传动轴31也分别连接蠕动组件4及承载件1。多个传动齿32依序转动设于多个传动轴31,且驱动输出件23与其中的一个传动齿32连接,蠕动组件4也与其中一个传动齿32连接。通过驱动输出件23带动一个传动齿32转动,传动齿32之间进行相互传动,最终将动力传送到蠕动组件4。具体应用时,传动轴31与承载件1连接处也对应设有通孔12,即方便安装还减小体积。在另一实施例中,传动轴31的数量为四个,传动齿32的数量为六个,其中四个传动齿32 分别转动设置于四个传动轴31上,两个传动齿32设置于蠕动组件4的动力输入端,其中,一个传动齿32作为中间传动,故转动设置于蠕动组件4的动力输入端,另一传动齿32作为动力,则与蠕动组件4的动力输入端固定连接,进而实现带动蠕动组件4的动力输入端运动。多个传动齿32在有限的空间内,采用迂回上升排布方式,将空间合理利用起来,既能达到所需的减速效果,还能缩小体积。
再一并参照图6-图7,图6为实施例一中蠕动组件4的立体结构图;图7为实施例一中蠕动动力件42的立体结构图。蠕动组件4包括蠕动支撑件41、蠕动动力件42及输送件43,蠕动支撑件41设置于承载件1,蠕动动力件42设置于蠕动支撑件41,输送件43设置于蠕动支撑件41,且蠕动动力件42工作时挤压输送件43。请复阅图1及图2,蠕动支撑件41包括蠕动支架411及蠕动盖412,蠕动支架411设置于承载件1上的通孔12,蠕动盖412盖设于蠕动支架 411,同时,蠕动盖412与蠕动支架411之间形成容纳腔413,蠕动动力件42位于容纳腔413内,输送件43也位于容纳腔413内,输送件43的输入端及输出端则穿出容纳腔413与其他部件连接。本实施例中,蠕动支架411与承载件1之间通过蠕动支柱414连接,且蠕动支柱414与蠕动支架411可以是分体结构,也可以是一体结构,本实施例中的蠕动支架411与蠕动支柱414采用的是一体结构,有利于前期的加工、减少组装工序、提高效率,还能增加稳定性。具有第二容纳空间6,部分的传动轴31及传动齿32位于第二容纳空间6,也就是说,多个传动轴31与多个传动齿32分别位于第一容纳孔11、第二容纳空间6以及两者之间的位置,驱动组件2、传动组件3及蠕动组件4三者呈U字型连接,通过合理利用第一容纳空间5及第二容纳空间6,进行传动轴31与传动齿32的合理排布,既能实现动力的传送,还能达到降低占用体积的效果。
请参照图6,蠕动动力件42包括蠕动轴421、蠕动架422及蠕动轮423,蠕动轴421贯穿蠕动支架411,并与传动齿32连接,蠕动架422连接蠕动轴421,蠕动轮423转动设置于蠕动架422,蠕动轮423抵接输送件43。本实施例中得蠕动轴421为蠕动组件4的动力输入端,传动齿32带动蠕动轴421转动,蠕动轴421带动蠕动架422和蠕动轮423一起转动,蠕动轮423转动的过程中挤压输送件43,通过蠕动轮423进行挤压输送件43的方式,相较于传统的凸轮挤压方式具有摩擦小、效率更高以及对输送件43的损伤小,提升输送件43的使用寿命,降低后续的维护成本。蠕动架422的边缘设有第一固定孔4221,由于第一固定孔4221位于蠕动架422的边缘,所以第一固定孔4221为半圆形的孔,方便蠕动轮423的安装、拆卸和维修。具体应用时,蠕动轮423通过连接轴424卡设于第一固定孔4221内,蠕动架422整体呈扁长状,蠕动轮423的数量为两个,两个蠕动轮423分别设于蠕动架422的两端,蠕动架422的两端也各自对应设有卡接连接轴424的第一固定孔4221。还需要说明的是,蠕动轮423的数量并不局限于两个,还可以是一个、三个或更多,根据实际应用时的需求进行选择使用即可。
具体的,输送件43为软质材料制成的管,例如硅胶管或橡胶管,当然还可以是其他的软质管材。
工作时,驱动件22带动驱动输出件23转动,驱动输出件23带动传动齿32转动,多个传动齿32依序进行传动,并将动力传至蠕动轴421,蠕动轴421带动蠕动架422转动,蠕动架422上的蠕动轮423一起转动,两个蠕动轮423转动过程中挤压输送件43,输送件43内产生负压,并将电子烟的烟油吸入到输送件43内,最终运输至雾化室进行雾化。
实施例二
再一并参照图8,图8为实施例二中蠕动动力件42的另一立体结构图。本实施例与实施例一的结构基本相同,区别在于,蠕动架422设有第二固定孔4222,第二固定孔4222位于蠕动架422内,所以第二固定孔4222截面是个圆形,有效果防止连接轴424在组装或使用过程中脱落,提高整体的稳定性。
综上所述,通过承载件、驱动组件、传动组件及蠕动组件的配合设置,传动组件分别位于第一容纳空间及第二容纳空间,进而将驱动组件与蠕动组件连接起来,三者均是设置于承载件上,整体的造型呈“U”字型,不仅合理利用了第一容纳空间及第二容纳空间,而且还减少了传统的减速外箱,传动组件排布也更为紧凑,达到减小体积的效果,最终产品的体积也缩小了,既方便携带还方便使用。
上所述仅为本发明的实施方式而已,并不用于限制本发明。对于本领域技术人员来说,本发明可以有各种更改和变化。凡在本发明的精神和原理的内所作的任何修改、等同替换、改进等,均应包括在本发明的权利要求范围之内。

Claims (10)

  1. 一种U型电子烟蠕动泵,其特征在于,包括:承载件(1)、驱动组件(2)、传动组件(3)及蠕动组件(4),所述驱动组件(2)设置于所述承载件(1),所述蠕动组件(4)与所述驱动组件(2)并排设置于所述承载件(1)的同一侧,所述驱动组件(2)与所述承载件(1)之间设有第一容纳空间(5),所述蠕动组件(4)与所述承载件(1)之间设有第二容纳空间(6),所述传动组件(3)分别位于所述第一容纳空间(5)及所述第二容纳空间(6),且所述驱动组件(2)通过所述传动组件(3)连接所述蠕动组件(4)。
  2. 根据权利要求1所述的U型电子烟蠕动泵,其特征在于,所述传动组件(3)包括多个传动轴(31)及多个传动齿(32),多个所述传动轴(31)分别位于所述第一容纳空间(5)及所述第二容纳空间(6),多个所述传动齿(32)转动连接多个所述传动轴(31),且多个所述传动齿(32)依序啮合连接。
  3. 根据权利要求1所述的U型电子烟蠕动泵,其特征在于,所述驱动组件(2)包括驱动支撑件(21)及驱动件(22),所述驱动支撑件(21)设置于所述承载件(1),且所述驱动支撑件 (21)与所述承载件(1)构成所述第一容纳空间(5),所述驱动件(22)设置于所述驱动支撑件(21)。
  4. 根据权利要求3所述的U型电子烟蠕动泵,其特征在于,所述驱动组件(2)还包括驱动输出件(23),所述驱动输出件(23)设置于所述驱动件(22)输出端,且所述驱动输出件(23)连接所述传动组件(3)。
  5. 根据权利要求4所述的U型电子烟蠕动泵,其特征在于,所述承载件(1)设有容纳孔(11),所述驱动输出件(23)部分区域位于所述容纳孔(11)内。
  6. 根据权利要求1-5任一所述的U型电子烟蠕动泵,其特征在于,所述蠕动组件(4)包括蠕动支撑件(41)、蠕动动力件(42)及输送件(43),所述蠕动支撑件(41)设置于所述承载件(1),所述蠕动动力件(41)设置于所述蠕动支撑件(42),且所述蠕动动力件(41)连接所述传动组件(3),所述输送件(43)与所述蠕动动力件(42)相互抵接。
  7. 根据权利要求6所述的U型电子烟蠕动泵,其特征在于,所述蠕动支撑件(41)包括蠕动支架(411)及蠕动盖(412),所述蠕动支架(411)设置于所述承载件(1),并与所述承载件(1)构成所述第二容纳空间(6),所述蠕动盖(412)盖设于所述蠕动支架(411),且所述蠕动盖(412)与所述蠕动支架(411)形成容纳腔(413),所述蠕动动力件(42)及所述输送件(43) 均位于所述容纳腔(413)内。
  8. 根据权利要求6所述的U型电子烟蠕动泵,其特征在于,所述蠕动动力件(42)包括蠕动轴(421)、蠕动架(422)及蠕动轮(423),所述蠕动轴(421)贯穿所述蠕动支撑件(41),且所述蠕动轴(421)分别连接所述蠕动架(422)及所述传动组件(3),所述蠕动轮(423)转动连接所述蠕动架(422)。
  9. 根据权利要求8所述的U型电子烟蠕动泵,其特征在于,所述蠕动架(422)边缘开设有第一固定孔(4221),所述蠕动轮(423) 通过连接轴(424) 转动设置于所述第一固定孔 (4221)。
  10. 根据权利要求8所述的U型电子烟蠕动泵,其特征在于,所述蠕动架(422)内设有第二固定孔(4222),所述蠕动轮(423)通过连接轴(424)转动设置于所述第二固定孔(4222)。
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