WO2022134843A1 - 气溶胶产生装置及其提取器组件 - Google Patents

气溶胶产生装置及其提取器组件 Download PDF

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Publication number
WO2022134843A1
WO2022134843A1 PCT/CN2021/127027 CN2021127027W WO2022134843A1 WO 2022134843 A1 WO2022134843 A1 WO 2022134843A1 CN 2021127027 W CN2021127027 W CN 2021127027W WO 2022134843 A1 WO2022134843 A1 WO 2022134843A1
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WO
WIPO (PCT)
Prior art keywords
extractor assembly
locking
assembly according
heating
heating element
Prior art date
Application number
PCT/CN2021/127027
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English (en)
French (fr)
Inventor
袁永宝
Original Assignee
深圳麦时科技有限公司
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Filing date
Publication date
Application filed by 深圳麦时科技有限公司 filed Critical 深圳麦时科技有限公司
Publication of WO2022134843A1 publication Critical patent/WO2022134843A1/zh

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Classifications

    • 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
    • A24F40/46Shape or structure of electric heating means
    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F47/00Smokers' requisites not otherwise provided for

Definitions

  • the present invention relates to the field of atomization, and more particularly, to an aerosol generating device and an extractor assembly thereof.
  • the heat-not-burn atomizing device is an aerosol generating device that heats the atomized material by a low-temperature heat-not-burn method to form a smokeable mist.
  • the heat-not-burn type atomizing device usually uses a heating element such as a heating sheet inserted into the atomizing material to heat the atomized material. By controlling the heating temperature, the components in the atomizing material are volatilized, and an aerosol is generated for people to absorb. .
  • an aerosol-generating substrate When an aerosol-generating substrate is heated for a certain period of time and the amount of aerosol generated by it reaches the upper limit, the aerosol-generating substrate needs to be taken out from the atomizing device, or the suction should be stopped, or a new aerosol-generating substrate should be replaced to continue. suction.
  • An existing heat-not-burn atomizing device moves the heating element down to achieve the purpose of detaching from the aerosol-generating matrix.
  • the heating body when the consumer inserts the aerosol generating base, the heating body will be pressed down, so that the aerosol generating base cannot be inserted into the predetermined position of the heating body, which affects the heating effect.
  • the technical problem to be solved by the present invention is to provide an improved extractor assembly and an aerosol generating device having the extractor assembly in view of the above-mentioned defects of the prior art.
  • the technical solution adopted by the present invention to solve the technical problem is: constructing an extractor assembly, which includes a casing with a receiving space formed therein, a heat generating device disposed in the casing and one end of which can extend into the receiving space a body, a moving piece arranged on the casing and driving the heating body to move, and a locking piece arranged on the casing for locking the position of the heating body in the receiving space; the locking piece releases a pair of After the heating body is locked, the moving member can drive the heating body to move in a direction away from the receiving space.
  • the moving member is disposed outside the housing and can press the locking member, so that the locking member releases the locking of the heating body.
  • the locking member is a laterally arranged elastic thimble.
  • the housing is provided with a lock hole
  • the lock member includes a lock body and a lock head telescopically disposed in the lock body and extending into or out of the lock hole; the moving The locking member is used to press the locking head to withdraw the locking head from the locking hole, so that the locking member releases the locking of the heating body.
  • the locking member further includes an elastic element disposed in the lock body for providing elastic force to move the lock head outward to reset.
  • the extractor assembly further includes a bracket disposed in the housing and outside the heating body; the moving member can drive the bracket to move up and down, thereby driving the heating body to move up and down .
  • the lock body is laterally fixed on the bracket.
  • the moving member includes a sheet-like body and a toggle portion extending inwardly from an inner sidewall of the sheet-like body, and an outer sidewall of the bracket is provided with an outwardly extending portion corresponding to the toggle portion. the flange part, the toggle part is pressed against the upper part of the flange part.
  • a displacement gap is formed between the inner wall surface of the sheet-like body and the outer wall surface of the housing, and the lock head elastically rests on the sheet-like body.
  • the moving member further comprises at least one sliding hook extending inward from the inner side wall of the sheet-like body, and at least one sliding groove extending in the longitudinal direction is provided on the housing, and the at least one sliding hook is provided on the casing.
  • the sliding hook is slidably arranged in the at least one sliding groove.
  • the extractor assembly further includes a heating seat, and the lower end of the heating body is inserted into the heating seat.
  • the bracket includes a partition wall, and the partition wall divides the bracket into an upper cavity located at the upper part and a lower cavity located at the lower part, the heating seat is arranged in the lower cavity, the The lower end of the accommodating space extends into the upper cavity, and the partition wall is provided with a perforation for the heating body to pass through.
  • the extractor assembly further includes at least one elastic member connected with the bracket, for providing elastic force to move the bracket upwards to reset.
  • the extractor assembly further includes a base fitted at the opening at the lower end of the housing.
  • the extractor assembly further includes at least one guide post disposed on the base, and the at least one elastic member is a spring and is sleeved outside the at least one guide post;
  • the outer side wall extends outward to form at least one connecting arm, and the at least one connecting arm is slidably sleeved on the at least one guide post.
  • the extractor assembly further includes an extraction pipe longitudinally disposed in the housing, and an inner wall surface of the extraction pipe defines the receiving space.
  • the extractor assembly further includes a laterally disposed fixing member, a fixing hole is formed on the housing, one end of the fixing member is fixed on the extraction pipe, and the other end of the fixing member is fixed on the extraction pipe. into the fixing hole.
  • the extraction pipe includes a bottom wall, and a socket for the heating body to pass through is formed on the bottom wall, the shape of the socket is corresponding to the cross-sectional shape of the heating body, and the The heating element is clearance fit in the socket.
  • the extractor assembly further includes a dust cover disposed above the housing for shielding or exposing the receiving space.
  • the present invention also provides an aerosol generating device, comprising the extractor assembly described in any one of the above and a power supply device electrically connected to the extractor assembly.
  • the implementation of the present invention has at least the following beneficial effects: after the heating body is locked by the locking member, when the user inserts the aerosol generating base downward, the heating body will not be pushed down, so that the aerosol generating base can be easily inserted into the predetermined position of the heating body ; After the locking piece releases the locking of the heating body, the moving piece can drive the heating body to move downward and separate from the aerosol generating matrix.
  • FIG. 1 is a schematic three-dimensional structure diagram of an aerosol generating device in some embodiments of the present invention.
  • Fig. 2 is the exploded structure schematic diagram of the aerosol generating device shown in Fig. 1;
  • Fig. 3 is the A-A sectional structure schematic diagram of the aerosol generating device shown in Fig. 1;
  • Fig. 4 is the exploded structure schematic diagram of the extractor assembly in Fig. 2;
  • Fig. 5 is the B-B sectional structure schematic diagram of the extractor assembly when the heating element in Fig. 1 is in a locked state;
  • Fig. 6 is the A-A sectional structure schematic diagram of the extractor assembly when the heating element is in the locked state in Fig. 1;
  • FIG. 7 is a schematic view of the A-A cross-sectional structure of the extractor assembly when the heating body is unlocked and moved down in FIG. 1 .
  • the aerosol generating device in some embodiments of the present invention can be roughly in the shape of a column with an oval cross section and includes an extractor assembly 1 and a power supply device 2 detachably connected to the extractor assembly 1 .
  • the extractor assembly 1 is used for accommodating the aerosol-generating substrate 3, and after being electrified, the aerosol-generating substrate 3 is baked and heated to form an aerosol that can be sucked by a user.
  • the power supply device 2 is used for supplying power to the extractor assembly 1 and controlling the opening or closing of the entire aerosol generating device.
  • the cross section of the aerosol generating device is not limited to an oval shape, and it can also have other shapes such as a square, a circle, and the like.
  • the extractor assembly 1 includes a housing 111 with a accommodating space 130 formed therein, a base 112 fitted at the lower end opening of the housing 111 , a base 112 disposed in the housing 111 and one end capable of extending into the housing 111 .
  • the heating body 141 in the space 130 the moving member 12 arranged in the housing 111 and driving the heating body 141 to move up and down, and the locking member 16 arranged in the housing 111 for locking the heating body 141 in the accommodating space 130 .
  • the moving member 12 can drive the heating body 141 to move downward and away from the accommodating space 130 .
  • a cylindrical extraction pipe 13 is longitudinally disposed in the casing 111 , and an inner wall surface of the extraction pipe 13 defines a receiving space 130 .
  • the lower end of the extraction pipe 13 is provided with a bottom wall 131 , and a socket 1310 for the heating body 141 to pass through is formed on the bottom wall 131 .
  • the upper end of the heating element 141 can extend into the receiving space 130 through the socket 1310 and be inserted into the aerosol generating substrate 3 located in the receiving space 130 .
  • the heating body 141 can be in the shape of a sheet or a rod, and the upper end of the heating body 141 can also be provided with a pointed guide structure, which is convenient for being inserted into the aerosol generating substrate 3 .
  • the cross-sectional shape of the socket 1310 corresponds to the cross-sectional shape of the heating element 141, and the cross-sectional size of the socket 1310 may be slightly larger than the cross-sectional size of the heating element 141, so that the heating element 141 and the socket 1310 are gap-fitted to facilitate the heating element 141
  • the heating element 141 is in the shape of a sheet
  • the socket 1310 is a rectangle whose cross-sectional dimension is slightly larger than that of the heating element 141 .
  • the extractor assembly 1 may also include a fixing member 15 for fixing the extraction tube 13 to the housing 111 .
  • the fixing member 15 is a laterally arranged thimble.
  • a fixing hole 1112 is defined on the side wall of one end of the housing 111 away from the bottom wall 131 , one end of the fixing member 15 is fixed on the extraction pipe 13 , and the other end extends into the fixing hole 1112 and is located in the fixing hole 1112 or penetrates through the fixing hole 1112 for fixing hole 1112.
  • the extraction pipe 13 can also be assembled with the top wall of the housing 111 , or the extraction pipe 13 can also be formed by extending downwardly from the top wall of the housing 111 .
  • the base 112 is fitted at the opening of the lower end of the casing 111 and can be snap-fastened with the casing 111 .
  • a hook 1121 is formed on both sides of the base 112, and a slot 1114 is concavely formed on both inner side walls of the housing 111. The hook 1121 is engaged with the slot 1114, so that the base The seat 112 and the casing 111 are fastened and fixed to each other.
  • a first magnet 114 may also be embedded in the bottom of the base 112 for magnetically fixing with the power supply device 2 .
  • the base 112 may be provided with a first electrode column 115 along the longitudinal direction, and the first electrode column 115 is electrically connected to the heating body 141 and the power supply device 2 respectively. In this embodiment, there are two first magnets 114 disposed on both sides of the base 112 respectively, and five first electrode columns 115 are disposed between the two first magnets 114 side by side.
  • the extractor assembly 1 may further include a heating seat 143 disposed in the casing 111 for installing the heating element 141 , and a bracket 142 longitudinally disposed in the casing 111 and sleeved on the heating seat 143 and the heating element 141 .
  • the bracket 142 can be substantially cylindrical, and a partition wall 1422 is horizontally formed inside the bracket 142 .
  • the partition wall 1422 divides the support 142 into an upper cavity 1421 located at the upper part and a lower cavity 1423 located at the lower part.
  • the heating seat 143 is disposed in the lower cavity 1423 and can be snap-fastened to the bracket 142 .
  • two hooks 1431 are protruded from two opposite sides of the heating base 143 respectively, and two slots 1426 are formed on two opposite sides of the bracket 142 corresponding to the two hooks 1431 respectively.
  • the card slots 1426 are fastened together, so that the heating base 143 is fastened and fastened to the bracket 142 .
  • the lower end of the extraction pipe 13 extends into the upper cavity 1421, and the partition wall 1422 is provided with a perforation 1420 through which the heating element 141 passes.
  • the lower end of the heating body 141 is inserted into the heating base 30 , and the upper end of the heating body 141 extends into the extraction pipe 13 through the through hole 1420 and the socket 1310 in sequence.
  • the cross-sectional shape of the through hole 1420 corresponds to the cross-sectional shape of the heating element 141, and the cross-sectional size of the through hole 1420 is slightly larger than the cross-sectional size of the heating element 141, so that the heating element 141 and the through hole 1420 are gap-fitted to facilitate the heating element 141. insert.
  • a flexible circuit board 19 may also be disposed between the bottom of the heating seat 143 and the top of the base 112 , and corresponding deformation may be generated when the heating seat 143 moves up and down.
  • the locking member 16 may be a laterally arranged elastic thimble, such as a spring thimble.
  • the locking member 16 may include a lock body 161 fixedly disposed on the bracket 142 , a lock head 162 telescopically disposed in the lock body 161 , and an elastic element 163 disposed in the lock body 161 .
  • the lock body 161 can be correspondingly disposed on the cavity wall of the lower cavity 1423 , and can be located on the same side of the extractor assembly 1 as the fixing member 15 .
  • One end of the housing 111 away from the fixing hole 1112 has a lock hole 1111 corresponding to the lock head 162 .
  • the elastic element 163 can be a spring, two ends of which are respectively abutted against the lock body 161 and the lock head 162 , for providing elastic force to make the lock head 162 move horizontally outward to reset.
  • the moving member 12 is disposed outside the housing 111 and can press the locking member 16 , so that the locking head 162 moves toward the locking body 161 and withdraws from the locking hole 1111 , so that the locking member 16 releases the locking of the heating body 141 .
  • the moving member 12 is laterally movable relative to the housing 111 between a first position and a second position. When the moving member 12 is in the first position, there is a displacement gap between the outer wall surface of the housing 111 and the inner wall surface of the moving member 12. At this time, the lock head 162 protrudes from the locking hole 1111 and elastically abuts against the moving member 12. Thus, the positions of the bracket 142 and the heating body 141 in the longitudinal direction of the casing 111 are locked.
  • the lock head 162 moves inward and withdraws from the lock hole 1111 , thereby releasing the locking of the heating body 141 .
  • the moving member 12 can be moved downward, thereby driving the bracket 142 and the heating body 141 to move downward, so that the heating body 141 is separated from the aerosol generating substrate 3 .
  • the moving member 12 may be a paddle, which may include a sheet-like body 121 and a toggle portion 122 extending inward from the inner side wall of the sheet-like body 121 .
  • the outer side wall of the bracket 142 is provided with a flange portion 1424 extending outward corresponding to the toggle portion 122 , and the toggle portion 122 is pressed against the top of the flange portion 1424 .
  • the toggle portion 122 can push the flange portion 1424 to move downward, thereby driving the heating body 141 to move downward.
  • the inner side wall of the sheet-like body 121 can also be provided with a sliding hook 123 extending inward.
  • the casing 111 is provided with a longitudinally extending sliding groove 1113 corresponding to the sliding hook 123, and the sliding hook 123 can be slidably hooked in the sliding groove 1113.
  • the guide can also prevent the moving member 12 from falling out of the chute 1113 .
  • there are two sliding hooks 123 and the two sliding hooks 123 are both L-shaped and disposed on two sides of the sheet-shaped body 121 respectively, so that the sliding can be smoother.
  • the extractor assembly 1 may further include at least one elastic piece 171 connected with the bracket 142 and at least one guide post 172 for installing the at least one elastic piece 171, and the at least one elastic piece 171 is used for providing elastic force to make the bracket 142 upward Mobile reset.
  • Two outer side walls of the bracket 142 respectively extend outward to form a connecting arm 1425 .
  • the elastic members 171 are springs and there are two.
  • the two elastic members 171 are respectively sleeved outside the two guide posts 172 .
  • the upper end of the elastic member 171 abuts against the connecting arm 1425 , and the lower end abuts against the base 112 .
  • the extractor assembly 1 may further include a dust cover 113 disposed above the housing 111 for shielding or exposing the accommodating space 130 .
  • the dust cover 113 can be pushed to cover the accommodating space 130 to prevent dust from entering the accommodating space 130 .
  • push the dust cover 113 to expose the receiving space 130 which is convenient to operate.
  • the aerosol generating substrate 3 can be inserted downward.
  • the locking head 162 of the locking member 16 protrudes from the locking hole 1111 and elastically abuts against the moving member 12, the user will not push the heating element 141 downward when inserting the aerosol generating substrate 3 downward.
  • the user wants to take out the aerosol-generating substrate 3, he needs to press the moving member 12 first, push the lock head 162 to withdraw from the locking hole 1111, and then move the moving member 12 downward to drive the heating element 141 to move downward and the aerosol
  • the generation substrate 3 is separated, and then the aerosol generation substrate 3 is pulled upward, which is not easy to cause the aerosol generation substrate 3 to break, and can prevent the aerosol generation substrate 3 from adhering to the heating body 141 .
  • the power supply device 2 may be roughly in the shape of an oval column, and may include a casing 21 , a battery 22 and a circuit board 23 disposed in the casing 21 .
  • the upper end of the housing 21 is formed with a cavity 20
  • the top of the cavity 20 is open, and the lower end of the extractor assembly 1 can be inserted into the cavity 20 through the opening at the top.
  • An opening is formed on the side wall of the chamber 20 corresponding to the moving part 12 of the extractor assembly 1 so that the moving part 12 is exposed for easy operation.
  • a second magnet 24 and a second electrode column 25 may also be disposed on the bottom wall of the cavity 20 corresponding to the first magnet 114 and the first electrode column 115 , respectively.

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  • Apparatus For Making Beverages (AREA)

Abstract

本发明涉及一种气溶胶产生装置及其提取器组件,所述提取器组件包括内部形成有收容空间的壳体、设置于所述壳体中且一端能够伸入到所述收容空间中的发热体、设置于所述壳体并可带动所述发热体移动的移动件以及设置于所述壳体用于锁定所述发热体在所述收容空间中位置的锁定件。所述锁定件将所述发热体锁定后,用户在向下插入气溶胶产生基体时,不会推动发热体向下移动,便于将气溶胶产生基体插入到发热体预定的位置。所述锁定件释放对所述发热体的锁定后,所述移动件能带动所述发热体向下移动与气溶胶产生基体分离。

Description

气溶胶产生装置及其提取器组件 技术领域
本发明涉及雾化领域,更具体地说,涉及一种气溶胶产生装置及其提取器组件。
背景技术
加热不燃烧型雾化装置是一种通过低温加热不燃烧的方式加热雾化材料形成可抽吸气雾的气溶胶产生装置。目前,加热不燃烧型雾化装置通常采用将发热体如发热片插入雾化材料中对雾化进材料行加热,通过控制加热温度,使得雾化材料中的成分挥发,产生气雾供人吸取。当一支气溶胶产生基体加热到一定时间,其所产生的气雾量到达上限后,需要将气溶胶产生基体从雾化装置中取出,或停止抽吸,或更换新的气溶胶产生基体继续抽吸。现有的一种加热不燃烧型雾化装置通过将发热体下移以达到与气溶胶产生基体脱离的目的。但是消费者在插入气溶胶产生基体的时候又会将发热体压下去,使气溶胶产生基体不能插入到发热体预定的位置,影响加热效果。
技术问题
本发明要解决的技术问题在于,针对现有技术的上述缺陷,提供一种改进的提取器组件及具有该提取器组件的气溶胶产生装置。
技术解决方案
本发明解决其技术问题所采用的技术方案是:构造一种提取器组件,包括内部形成有收容空间的壳体、设置于所述壳体中且一端能够伸入到所述收容空间中的发热体、设置于所述壳体并可带动所述发热体移动的移动件以及设置于所述壳体用于锁定所述发热体在所述收容空间中位置的锁定件;所述锁定件释放对所述发热体的锁定后,所述移动件能带动所述发热体朝远离所述收容空间的方向移动。
在一些实施例中,所述移动件设置于所述壳体外并能够按压所述锁定件,使所述锁定件释放对所述发热体的锁定。
在一些实施例中,所述锁定件为横向设置的弹性顶针。
在一些实施例中,所述壳体上开设有锁孔,所述锁定件包括锁体以及可伸缩设置于所述锁体中并可伸入或退出所述锁孔的锁头;所述移动件用于抵压所述锁头使所述锁头退出所述锁孔,从而使所述锁定件释放对所述发热体的锁定。
在一些实施例中,所述锁定件还包括设置于所述锁体中的弹性元件,用于提供弹性力使所述锁头向外移动复位。
在一些实施例中,所述提取器组件还包括设置于所述壳体中并设置于所述发热体外的支架;所述移动件能够带动所述支架上下移动,从而带动所述发热体上下移动。
在一些实施例中,所述锁体横向固定于所述支架上。
在一些实施例中,所述移动件包括片状本体以及由所述片状本体的内侧壁向内伸出的拨动部,所述支架的外侧壁对应所述拨动部设有向外伸出的凸缘部,所述拨动部抵压于所述凸缘部的上方。
在一些实施例中,所述片状本体的内壁面与所述壳体的外壁面之间形成有位移间隙,所述锁头弹性抵靠于所述片状本体上。
在一些实施例中,所述移动件还包括由所述片状本体的内侧壁向内延伸的至少一个滑钩,所述壳体上设有沿纵向延伸的至少一个滑槽,所述至少一个滑钩可滑动设置于所述至少一个滑槽中。
在一些实施例中,所述提取器组件还包括发热座,所述发热体的下端插装于所述发热座上。
在一些实施例中,所述支架包括隔离壁,所述隔离壁将所述支架内分隔成位于上部的上腔以及位于下部的下腔,所述发热座设置于所述下腔中,所述收容空间的下端伸入到所述上腔中,所述隔离壁上设有供所述发热体穿过的穿孔。
在一些实施例中,所述提取器组件还包括与所述支架连接的至少一个弹性件,用于提供弹性力使所述支架向上移动复位。
在一些实施例中,所述提取器组件还包括配合在所述壳体下端开口处的基座。
在一些实施例中,所述提取器组件还包括设置于所述基座上的至少一个导向柱,所述至少一个弹性件为弹簧并套设于所述至少一个导向柱外;所述支架的外侧壁向外延伸形成有至少一个连接臂,所述至少一个连接臂可滑动套装于所述至少一个导向柱上。
在一些实施例中,所述提取器组件还包括沿纵向设置于所述壳体中的提取管,所述提取管的内壁面界定出所述收容空间。
在一些实施例中,所述提取器组件还包括横向设置的固定件,所述壳体上开设有固定孔,所述固定件的一端固定于所述提取管上,所述固定件的另一端伸入到所述固定孔中。
在一些实施例中,所述提取管包括底壁,所述底壁上形成有供所述发热体穿过的插口,所述插口的形状与所述发热体的横截面形状相对应,所述发热体间隙配合于所述插口中。
在一些实施例中,所述提取器组件还包括设置于所述壳体上方用于遮挡或显露所述收容空间的防尘盖。
本发明还提供一种气溶胶产生装置,包括上述任一项所述的提取器组件以及与所述提取器组件电性连接的电源装置。
有益效果
实施本发明至少具有以下有益效果:锁定件将发热体锁定后,用户在向下插入气溶胶产生基体时,不会推动发热体向下移动,便于将气溶胶产生基体插入到发热体预定的位置;锁定件释放对所述发热体的锁定后,所述移动件能带动所述发热体向下移动与气溶胶产生基体分离。
附图说明
下面将结合附图及实施例对本发明作进一步说明,附图中:
图1是本发明一些实施例中气溶胶产生装置的立体结构示意图;
图2是图1所示气溶胶产生装置的分解结构示意图;
图3是图1所示气溶胶产生装置的A-A剖面结构示意图;
图4是图2中提取器组件的分解结构示意图;
图5是图1中发热体处于锁定状态时提取器组件的B-B剖面结构示意图;
图6是图1中发热体处于锁定状态时提取器组件的A-A剖面结构示意图;
图7是图1中发热体解锁后下移时提取器组件的A-A剖面结构示意图。
本发明的实施方式
为了对本发明的技术特征、目的和效果有更加清楚的理解,现对照附图详细说明本发明的具体实施方式。
如图1-3所示,本发明一些实施例中的气溶胶产生装置大致可呈横截面为椭圆形的柱状并包括提取器组件1以及与提取器组件1可拆卸连接的电源装置2。提取器组件1用于收容气溶胶产生基体3,并在通电后对气溶胶产生基体3进行烘烤加热,形成可供用户抽吸的气雾。电源装置2用于给提取器组件1供电以及控制整个气溶胶产生装置的的开启或关闭等操作。可以理解地,该气溶胶产生装置的横截面并不局限于呈椭圆形,其也可以呈方形、圆形等其他形状。
如图3-7所示,提取器组件1包括内部形成有收容空间130的壳体111、配合在壳体111下端开口处的基座112、设置于壳体111中且一端能够伸入到收容空间130中的的发热体141、设置于壳体111并可带动发热体141上下移动的移动件12以及设置于壳体111中用于锁定发热体141在收容空间130中位置的锁定件16。锁定件16释放对发热体141的锁定后,移动件12能带动发热体141向下移动远离收容空间130。
壳体111内沿纵向设置有一圆管状的提取管13,提取管13的内壁面界定出收容空间130。提取管13的下端设置有一底壁131,底壁131上形成有供发热体141穿过的插口1310。发热体141的上端可经由该插口1310伸入到收容空间130中并插入到位于收容空间130中的气溶胶产生基体3中。发热体141可以为片状或棒状,发热体141的上端还可设有尖头导向结构,利于插入到气溶胶产生基体3中。插口1310的横截面形状与发热体141的横截面形状相对应,且插口1310的横截面尺寸可略大于发热体141的横截面尺寸,使得发热体141与插口1310间隙配合,以利于发热体141的插入,并使发热体141与气溶胶产生基体3分离时,底壁131可通过摩擦作用刮去发热体141上的残余物质,对发热体141进行清洁。在本实施例中,发热体141呈片状,插口1310呈横截面尺寸略大于发热体141的横截面尺寸的矩形。
该提取器组件1还可包括用于将提取管13固定于壳体111上的固定件15。在本实施例中,固定件15为横向设置的顶针。壳体111远离底壁131的一端的侧壁上开设有一固定孔1112,固定件15的一端固定于提取管13上,另一端伸入到固定孔1112中而位于固定孔1112内或者穿出固定孔1112。在其他实施例中,提取管13也可与壳体111的顶壁组装在一起,或者提取管13也可由壳体111的顶壁一体向下延伸形成。
基座112配合在壳体111的下端开口处,并可与壳体111卡扣固定。在本实施例中,基座112的两侧分别形成有一卡勾1121,壳体111的两侧内侧壁分别内凹形成有一卡槽1114,卡勾1121与卡槽1114相扣合,从而将基座112与壳体111相互扣合固定。基座112的底部还可嵌置有第一磁铁114,用于与电源装置2磁吸固定。基座112上可沿纵向设置有第一电极柱115,该第一电极柱115分别与发热体141以及电源装置2电性连接。在本实施例中,第一磁铁114有两个并分别设置于基座112的两侧,第一电极柱115有五个且并排设置于两个第一磁铁114之间。
该提取器组件1还可包括设置于壳体111中用于安装发热体141的发热座143以及沿纵向设置于壳体111中并套设于发热座143和发热体141外的支架142。支架142大致可呈圆筒状,其内部水平形成有一隔离壁1422。该隔离壁1422将支架142内分隔成位于上部的上腔1421以及位于下部的下腔1423。发热座143设置于下腔1423中,并可卡扣固定于支架142上。在本实施例中,发热座143的两相对侧分别凸出形成有两个卡勾1431,支架142的两相对侧分别对应该两个卡勾1431形成有两个卡槽1426,卡勾1431与卡槽1426相扣合,从而将发热座143卡扣固定于支架142上。提取管13的下端伸入到上腔1421中,隔离壁1422上设有供发热体141穿过的穿孔1420。发热体141的下端插装于发热座30上,发热体141的上端依次穿过穿孔1420、插口1310伸入到提取管13中。穿孔1420的横截面形状与发热体141的横截面形状相对应,且穿孔1420的横截面尺寸略大于发热体141的横截面尺寸,使得发热体141与穿孔1420间隙配合,以利于发热体141的插入。发热座143的底部与基座112的顶部之间还可设置有一柔性电路板19,在发热座143上下移动时可产生相应形变。
锁定件16可以为横向设置的弹性顶针,例如弹簧顶针。锁定件16可包括固定设置于支架142上的锁体161、可伸缩设置于锁体161中的锁头162以及设置于锁体161中的弹性元件163。锁体161可对应设置于下腔1423的腔壁上,并可与固定件15位于提取器组件1的同一侧。壳体111上远离固定孔1112的一端对应锁头162开设有锁孔1111,锁头162可伸入或退出锁孔1111,从而实现对发热体141的锁定或释放。弹性元件163可以为弹簧,其两端分别与锁体161和锁头162相抵,用于提供弹性力使锁头162水平向外移动复位。
移动件12设置于壳体111外并能够按压锁定件16,使锁头162朝向锁体161运动而从锁孔1111中退出,从而使锁定件16释放对发热体141的锁定。移动件12可相对于壳体111在第一位置和第二位置之间横向移动。移动件12在第一位置时,壳体111的外壁面与移动件12的内壁面之间留有位移间隙,此时,锁头162从锁孔1111中伸出并与移动件12弹性相抵,从而锁定支架142和发热体141在壳体111纵向方向的位置。按压移动件12至第二位置,锁头162向内移动从锁孔1111中退出,从而释放对发热体141的锁定。当对发热体141的锁定释放后,可向下移动移动件12,从而带动支架142和发热体141向下移动,使发热体141与气溶胶产生基体3分离。
移动件12可以为拨片,其可包括片状本体121以及由片状本体121的内侧壁向内延伸的拨动部122。支架142的外侧壁对应拨动部122设有向外伸出的凸缘部1424,拨动部122抵压于凸缘部1424的上方。向下拨动移动件12,拨动部122可推动凸缘部1424向下移动,进而带动发热体141向下移动。片状本体121的内侧壁还可设置有向内延伸的滑钩123,壳体111上对应滑钩123设有沿纵向延伸的滑槽1113,滑钩123可滑动勾扣于滑槽1113中,在移动件12上下移动时导向,还可防止移动件12从滑槽1113中脱出。在本实施例中,滑钩123有两个,该两个滑钩123均呈L形并分别设置于片状本体121的两侧,可使滑动更顺畅。
该提取器组件1还可包括与支架142连接的至少一个弹性件171以及用于安装该至少一个弹性件171的至少一个导向柱172,该至少一个弹性件171用于提供弹性力使支架142向上移动复位。在本实施例中,导向柱172有两个并分别位于锁定件16的两侧。支架142的两侧外侧壁分别向外延伸形成有一连接臂1425,导向柱172的上端可滑动插装于连接臂1425中,导向柱172的下端固定嵌置于基座112上。弹性件171为弹簧并且有两个,该两个弹性件171分别套设于两个导向柱172外。弹性件171的上端与连接臂1425相抵靠,下端与基座112相抵靠。
该提取器组件1还可包括设置于壳体111上方用于遮挡或显露收容空间130的防尘盖113。在不需要加热气溶胶产生基体3时,可推动防尘盖113将收容空间130遮挡住,防止灰尘进入收容空间130。需要使用时,推动防尘盖113将收容空间130露出,操作方便。
防尘盖113打开后,可向下插入气溶胶产生基体3。此时,由于锁定件16的锁头162从锁孔1111中伸出并与移动件12弹性相抵,用户在向下插入气溶胶产生基体3时,不会推动发热体141向下移动。
当用户想取出气溶胶产生基体3时,需要先按下移动件12,推动锁头162从锁孔1111中退出,然后再将移动件12向下移动,带动发热体141向下移动与气溶胶产生基体3分离,然后再向上拔出气溶胶产生基体3,不易造成气溶胶产生基体3断裂,且可避免气溶胶产生基体3黏连在发热体141上。
再如图2-3所示,电源装置2大致可呈椭圆形柱状,其可包括外壳21以及设置于外壳21中的电池22和电路板23。外壳21的上端形成有容腔20,容腔20的顶部敞开,提取器组件1的下端可经由该顶部敞开口处插置于容腔20中。容腔20的侧壁与提取器组件1的移动件12相对应的一侧形成有开口,以使移动件12外露,便于操作。容腔20的底壁上还可分别对应第一磁铁114和第一电极柱115设置有第二磁铁24以及第二电极柱25。
可以理解地,上述各技术特征可以任意组合使用而不受限制。
以上实施例仅表达了本发明的优选实施方式,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,可以对上述技术特点进行自由组合,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,凡跟本发明权利要求范围所做的等同变换与修饰,均应属于本发明权利要求的涵盖范围。

Claims (20)

  1. 一种提取器组件,其特征在于,包括内部形成有收容空间(130)的壳体(111)、设置于所述壳体(111)中且一端能够伸入到所述收容空间(130)中的发热体(141)、设置于所述壳体(111)并可带动所述发热体(141)移动的移动件(12)以及设置于所述壳体(111)用于锁定所述发热体(141)在所述收容空间(130)中位置的锁定件(16);所述锁定件(16)释放对所述发热体(141)的锁定后,所述移动件(12)能带动所述发热体(141)朝远离所述收容空间(130)的方向移动。
  2. 根据权利要求1所述的提取器组件,其特征在于,所述移动件(12)设置于所述壳体(111)外并能够按压所述锁定件(16),使所述锁定件(16)释放对所述发热体(141)的锁定。
  3. 根据权利要求2所述的提取器组件,其特征在于,所述锁定件(16)为横向设置的弹性顶针。
  4. 根据权利要求2所述的提取器组件,其特征在于,所述壳体(111)上开设有锁孔(1111),所述锁定件(16)包括锁体(161)以及可伸缩设置于所述锁体(161)中并可伸入或退出所述锁孔(1111)的锁头(162);所述移动件(12)用于抵压所述锁头(162)使所述锁头(162)退出所述锁孔(1111),从而使所述锁定件(16)释放对所述发热体(141)的锁定。
  5. 根据权利要求4所述的提取器组件,其特征在于,所述锁定件(16)还包括设置于所述锁体(161)中的弹性元件(163),用于提供弹性力使所述锁头(162)向外移动复位。
  6. 根据权利要求4所述的提取器组件,其特征在于,所述提取器组件(1)还包括设置于所述壳体(111)中并设置于所述发热体(141)外的支架(142);所述移动件(12)能够带动所述支架(142)上下移动,从而带动所述发热体(141)上下移动。
  7. 根据权利要求6所述的提取器组件,其特征在于,所述锁体(161)横向固定于所述支架(142)上。
  8. 根据权利要求6所述的提取器组件,其特征在于,所述移动件(12)包括片状本体(121)以及由所述片状本体(121)的内侧壁向内伸出的拨动部(122),所述支架(142)的外侧壁对应所述拨动部(122)设有向外伸出的凸缘部(1424),所述拨动部(122)抵压于所述凸缘部(1424)的上方。
  9. 根据权利要求8所述的提取器组件,其特征在于,所述片状本体(121)的内壁面与所述壳体(111)的外壁面之间形成有位移间隙,所述锁头(162)弹性抵靠于所述片状本体(121)上。
  10. 根据权利要求8所述的提取器组件,其特征在于,所述移动件(12)还包括由所述片状本体(121)的内侧壁向内延伸的至少一个滑钩(123),所述壳体(111)上设有沿纵向延伸的至少一个滑槽(1113),所述至少一个滑钩(123)可滑动设置于所述至少一个滑槽(1113)中。
  11. 根据权利要求6所述的提取器组件,其特征在于,所述提取器组件(1)还包括发热座(143),所述发热体(141)的下端插装于所述发热座(143)上。
  12. 根据权利要求11所述的提取器组件,其特征在于,所述支架(142)包括隔离壁(1422),所述隔离壁(1422)将所述支架(142)内分隔成位于上部的上腔(1421)以及位于下部的下腔(1423),所述发热座(143)设置于所述下腔(1423)中,所述收容空间(130)的下端伸入到所述上腔(1421)中,所述隔离壁(1422)上设有供所述发热体(141)穿过的穿孔(1420)。
  13. 根据权利要求6所述的提取器组件,其特征在于,所述提取器组件(1)还包括与所述支架(142)连接的至少一个弹性件(171),用于提供弹性力使所述支架(142)向上移动复位。
  14. 根据权利要求13所述的提取器组件,其特征在于,所述提取器组件(1)还包括配合在所述壳体(111)下端开口处的基座(112)。
  15. 根据权利要求14所述的提取器组件,其特征在于,所述提取器组件(1)还包括设置于所述基座(112)上的至少一个导向柱(172),所述至少一个弹性件(171)为弹簧并套设于所述至少一个导向柱(172)外;所述支架(142)的外侧壁向外延伸形成有至少一个连接臂(1425),所述至少一个连接臂(1425)可滑动套装于所述至少一个导向柱(172)上。
  16. 根据权利要求1-15任一项所述的提取器组件,其特征在于,所述提取器组件(1)还包括沿纵向设置于所述壳体(111)中的提取管(13),所述提取管(13)的内壁面界定出所述收容空间(130)。
  17. 根据权利要求16所述的提取器组件,其特征在于,所述提取器组件(1)还包括横向设置的固定件(15),所述壳体(111)上开设有固定孔(1112),所述固定件(15)的一端固定于所述提取管(13)上,所述固定件(15)的另一端伸入到所述固定孔(1112)中。
  18. 根据权利要求16所述的提取器组件,其特征在于,所述提取管(13)包括底壁(131),所述底壁(131)上形成有供所述发热体(141)穿过的插口(1310),所述插口(1310)的形状与所述发热体(141)的横截面形状相对应,所述发热体(141)间隙配合于所述插口(1310)中。
  19. 根据权利要求1所述的提取器组件,其特征在于,所述提取器组件还包括设置于所述壳体(111)上方用于遮挡或显露所述收容空间(130)的防尘盖(113)。
  20. 一种气溶胶产生装置,其特征在于,包括权利要求1-19任一项所述的提取器组件(1)以及与所述提取器组件(1)电性连接的电源装置(2)。
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