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WO2024007468A1 - Dispositif de stockage et son procédé d'utilisation - Google Patents

Dispositif de stockage et son procédé d'utilisation Download PDF

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Publication number
WO2024007468A1
WO2024007468A1 PCT/CN2022/124900 CN2022124900W WO2024007468A1 WO 2024007468 A1 WO2024007468 A1 WO 2024007468A1 CN 2022124900 W CN2022124900 W CN 2022124900W WO 2024007468 A1 WO2024007468 A1 WO 2024007468A1
Authority
WO
WIPO (PCT)
Prior art keywords
storage
channel
reset
storage device
sliding
Prior art date
Legal status (The legal status 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 status listed.)
Ceased
Application number
PCT/CN2022/124900
Other languages
English (en)
Chinese (zh)
Inventor
龙西军
廖振龙
赵贯云
赵波洋
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Shenzhen Woody Vapes Technology Co Ltd
Original Assignee
Shenzhen Woody Vapes Technology Co Ltd
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 Shenzhen Woody Vapes Technology Co Ltd filed Critical Shenzhen Woody Vapes Technology Co Ltd
Publication of WO2024007468A1 publication Critical patent/WO2024007468A1/fr
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

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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
    • 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
    • A24F40/20Devices using solid 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
    • A24F40/42Cartridges or containers for inhalable precursors

Definitions

  • the present invention relates to the technical field of aerosol generating devices, and in particular, to a storage device and a method of using the same.
  • the heat-not-burn atomizer consists of a packaging body and tobacco placed in the packaging body. Its working principle is to heat the tobacco through a heating element and control the heating temperature at a lower temperature, which can avoid the cracking reaction of the tobacco, thereby reducing the release of harmful substances. Therefore, heat-not-burn atomizers are becoming more and more popular and favored by users. For portability, multiple atomizers are usually stored in storage boxes. However, the existing storage box has a complex structure, which is time-consuming and labor-intensive in the process of taking out the atomizer, and the user experience is poor.
  • the invention provides a storage device, including:
  • a storage box is connected to the control shell.
  • the storage box includes a box body, a sliding member and a first reset member.
  • the sliding member is slidingly connected to the box body.
  • the first reset member is connected to the sliding member and the first reset member.
  • the box body, the sliding member has a transition channel, the box body has a storage channel and an outlet, the storage channel, the transition channel, the outlet and the outside of the box body are connected in sequence; the control shell
  • the sliding member can be driven to slide forward, so that the transition channel and the storage channel are misaligned, and the transition channel is fully connected with the outlet, and the first reset member accumulates a first reset force;
  • the first reset member can release the first reset force to drive the sliding member to slide reversely, so that the transition channel and the storage channel are fully connected, and the transition channel is misaligned with the outlet.
  • the storage channel included in the above-mentioned storage device can store atomized matter.
  • the storage channel In a natural state, the storage channel is completely connected to the transition channel of the sliding member, and the atomized matter can slide into the transition channel.
  • the control shell can be manually manipulated to drive the sliding member to slide forward, so that the transition channel and the outlet are completely connected, and the atomized matter can slide out from the transition channel through the outlet.
  • the first reset member accumulates the first reset force.
  • the atomized material is completely taken out, the external force exerted on the control shell is cancelled, and the control shell also cancels the force on the sliding member.
  • the first reset member releases the first reset force and drives the sliding member to slide in the reverse direction, so that the transition channel and the storage
  • the channels are fully connected and the next atomizer from the storage channel is able to slide into the transition channel.
  • the transition channel and the storage channel are misaligned to prevent the atomized matter from protruding from the outlet hole.
  • the storage device provided by the present invention can quickly and conveniently retrieve atomized matter, and has a good user experience.
  • control housing includes a housing, a control part and a driving part, the driving part is slidingly connected to the housing along a first direction, and the control part is slidingly connected to the housing along a second direction, The first direction and the second direction are arranged at an angle; the control member can press the driving member to drive the driving member to drive the sliding member to slide forward.
  • control shell further includes a second reset member connected to the driving member and the housing.
  • the second reset member accumulates a second reset force, and the second reset force can release the second reset force to drive the driving member to slide reversely and reset.
  • control shell further includes a third reset member, which connects the control member and the housing.
  • a third reset member which connects the control member and the housing.
  • the storage box further includes a driving spring provided in the storage channel.
  • the driving spring can drive the atomizer in the storage channel. Slide into the transition channel.
  • one of the control shell and the storage box has a card slot, and the other has a locking flange, and the carding slot and the locking flange are detachably engaged.
  • the storage member has multiple sets of storage channels, sliding members and outlets, and each sliding member can slide relative to the box body, so that the sliding member can The transition channel is completely connected to the corresponding storage channel and is misaligned with the corresponding outlet, or the transition channel of the slider is completely connected to the corresponding outlet and is misaligned with the corresponding storage channel.
  • the storage device further includes a movable plug that is movable relative to the control housing to close or open the outlet.
  • the present invention also provides a method of using a storage device.
  • the storage device is the above-mentioned storage device.
  • the method of using includes the following steps:
  • the transition channel can be slid into the transition channel, and the transition channel is misaligned with the outlet to restrict the atomized matter from sliding out of the outlet.
  • the method of use further includes the following steps:
  • Figure 1 is a schematic structural diagram of a storage device according to the present invention.
  • Figure 2 is a schematic diagram of the exploded structure of the storage device of the present invention.
  • Figure 3 is a schematic cross-sectional structural diagram of the storage device of the present invention.
  • Figure 4 is a schematic cross-sectional exploded structural view of the storage device of the present invention.
  • Figure 5 is a schematic structural diagram of the connection between the sliding rod and the driving member of the present invention.
  • Figure 6 is a schematic structural diagram of multiple sliding members in the storage box of the present invention in a natural state
  • Figure 7 is a schematic structural diagram of the first sliding member of the present invention after being pushed
  • Figure 8 is a schematic structural diagram of the atomized object in the first sliding member of the present invention when it is about to extend.
  • the present invention provides a storage device 100 , which can be used to store multiple rod-shaped objects.
  • the rod-shaped objects may be atomized objects 3 , for example.
  • the user can quickly take out multiple atomizers 3 from the storage device one by one for inhalation.
  • the method of taking the atomized substance 3 is quick and convenient, and the user experience is good.
  • the storage device 100 includes a control shell 1 and a storage box 2.
  • the storage box 2 is detachably connected to the control shell 1. It can be understood that in other embodiments, the control shell 1 and the storage box 2 can also be connected in other detachable ways, such as magnetic connection; even the control shell 1 and the storage box 2 can also be an integrally formed structure, which will not be discussed here. Too limited.
  • Multiple atomizers 3 can be stored in the storage box 2. After the storage box 2 is installed on the control shell 1, when the user wants to take out the atomizers 3, the control shell 1 can be manually manipulated to control the multiple atomizers 3 in the storage box 2. Stretching out one by one, the process of taking out the atomizer 3 is quick and convenient for the user, and the user experience is good.
  • the control housing 1 includes a housing 11 , a second return member 12 , a driving member 13 , a sliding rod 14 , a third return member 15 , a control member 16 and a movable plug 17 .
  • the driving member 13, the sliding rod 14, the control member 16 and the movable plug 17 are all slidingly connected to the housing 11.
  • the two ends of the second reset member 12 are connected to the housing 11 and the driving member 13 respectively.
  • the two ends of the third reset member 15 are respectively connected to the housing 11.
  • the housing 11 is connected to the sliding rod 14, and the sliding rod 14 is connected to the control member 16.
  • the housing 11 is provided with an outlet hole 111 close to the movable plug 17 , and the movable plug 17 can slide back and forth relative to the housing 11 to close or open the outlet hole 111 .
  • the movable plug 17 can be slid relative to the housing 11 to open the outlet hole 111.
  • the control member 16 is manually pressed to control the atomized substance 3 to extend from the outlet hole 111, and then the user can manually remove the atomized substance 3 from the outlet hole 111. Just extract the atomized substance 3.
  • the movable plug 17 can be slid relative to the housing 11 to close the discharge hole 111 to prevent dust from entering the inside of the housing 11 and affecting the extension of the atomized substance 3.
  • the movable plug 17 can also be rotationally connected to the housing 11, or connected to the housing 11 through a plastic connecting rope, both of which can close or open the outlet hole 111.
  • a mounting slot 112 is provided on one side of the housing 11 .
  • the shape of the mounting slot 112 matches the shape of the storage box 2 so that the storage box 2 can be installed in the mounting slot 112 and detachably snap-fitted with the housing 11 .
  • the two opposite groove walls of the installation slot 112 are provided with a plurality of card slots 113 , and the plurality of card slots 113 are used for detachable clamping to the storage box 2 .
  • the second restoring member 12 is a spring.
  • the second restoring member 12 can be squeezed by the driving member 13 to accumulate a second restoring force.
  • the second restoring force is elastic force.
  • the second reset member 12 can also release a second reset force to drive the drive member 13 to slide in the reverse direction and reset.
  • the driving member 13 can slide back and forth relative to the housing 11 in the first direction.
  • the drive member 13 can press the second return member 12 to
  • the second reset member 12 accumulates the second reset force; at the same time, the end of the drive member 13 can extend from the bottom of the installation groove 112 to press the storage box 2, so that the atomizer 3 in the storage box 2 can exit from the outlet.
  • the object hole 111 extends.
  • the second reset member 12 can release the second reset force to drive the drive member 13 to slide in the opposite direction (slide away from the second reset member 12 ), so that the drive member 13 is reset.
  • the end of the drive member 13 is lifted from the bottom of the installation groove 112 return.
  • the side of the driving member 13 has a guide protrusion 131 .
  • the guide protrusion 131 can also be replaced by a slope, which is not limited here.
  • the sliding rod 14 can slide back and forth relative to the housing 11 in a second direction that is perpendicular to the first direction. It can be understood that the second direction and the first direction can also be arranged at other angles, such as 45°, 60°, etc., which are not too limited here.
  • the sliding direction of the sliding rod 14 and the sliding direction of the driving member 13 are arranged at an included angle, which can reduce the size of the housing 11 in the first direction. Since the sliding rod 14 slides in the second direction, the housing 11 is in the first direction. The dimension in the direction does not need to be very long, and the sliding rod 14 can be installed and accommodated.
  • the sliding rod 14 has a driving slope 141 close to the driving member 13 .
  • the driving slope 141 can press the guide protrusion 131 , thereby driving the driving member 13 to move forward. Slide towards.
  • the driving inclined surface 141 on the sliding rod 14 can be replaced by an arc surface, which is not limited here.
  • the third reset member 15 is a spring.
  • the slide rod 14 slides toward the driving member 13 in the second direction, the slide rod 14 presses the third reset member 15, driving the third reset member 15 to accumulate the third reset force.
  • the third restoring force is the elastic force.
  • the third reset member 15 can release the third reset force to drive the slide bar 14 away from the driving member 13 to reset the slide bar 14 .
  • the control member 16 is in the shape of a cover, and the control member 16 can also slide back and forth relative to the housing 11 in the second direction.
  • the control member 16 can slide toward the slide bar 14 in the second direction, and the control member 16 slides toward the driving member 13 in the second direction against the slide bar 14 , and at the same time, the slide bar 14 Pressing the third reset member 15 drives the third reset member 15 to accumulate the third reset force.
  • the sliding rod 14 continues to slide.
  • the driving slope 141 of the sliding rod 14 presses against the guide protrusion 131 of the driving member 13 to drive the driving member 13 to slide forward.
  • the driving member 13 presses against the storage box 2 so that the mist in the storage box 2
  • the atomized substance 3 can extend from the substance outlet hole 111 to facilitate the user to pick up the atomized substance 3.
  • the external force applied to the control member 16 can be cancelled.
  • the third reset member 15 releases the third reset force to drive the slide rod 14 to slide away from the driving member 13, so that the slide rod 14 and the control member 16 are reset, and the second reset member 12 releases the second reset force to drive the driving member 13 to reset.
  • the storage box 2 includes a box body 21 , a first sliding member 22 , a second sliding member 23 , a first returning member 24 and a driving spring 25 .
  • the first sliding part 22 and the second sliding part 23 are slidingly connected to the box body 21, the first restoring part 24 is located between the first sliding part 22 and the second sliding part 23, and the two ends of the first restoring part 24 are connected respectively.
  • the first sliding member 22 and the second sliding member 23, and the driving spring are provided inside the box body 21.
  • the shape of the box body 21 matches the shape of the mounting slot 112 of the housing 11 , both of which are approximately rectangular parallelepiped, so that the box body 21 can be installed in the mounting slot 112 .
  • the side of the box body 21 has a plurality of locking flanges 213, and the locking flanges 213 are used to detachably lock into the slots 113 on the housing 11, so that the storage box 2 and the control shell 1 can be detachably connected.
  • the positions of the clamping slot 113 on the control shell 1 and the clamping flange 213 on the storage box 2 can be interchanged, and the storage box 2 and the control shell 1 can also be detachably connected.
  • the storage box 2 and the control shell 1 can also be connected in other detachable ways, such as magnetic connection, which is not limited here.
  • the box body 21 has two storage channels 211, and each storage channel 211 can store multiple atomizers.
  • the number of storage channels 211 provided by the box body 21 can also be one, three or other numbers, which are not limited here.
  • each storage channel 211 can store up to four atomizers.
  • the maximum number of atomizers that can be stored in the storage channel 211 is different depending on the length of the atomizers.
  • the length extension directions of the multiple atomizers are all located in a straight line and are arranged in a stack.
  • the shape and diameter of the storage channel 211 are adapted to the atomized material, and both are cylindrical, so that the atomized material can move stably in the storage channel 211 and protrude from the outlet hole 111 one by one.
  • the bottom of the box body 21 is provided with two outlets 212, and the two outlets 212 are respectively connected with the two storage channels 211, so that the atomized matter in the storage channel 211 can move to the outlet hole 111 of the housing 11 through the corresponding outlet 212. Then extend outside.
  • the number of the driving springs 25 is two.
  • the two driving springs 25 are respectively provided in the corresponding storage channels 211.
  • One end of the driving spring 25 is connected to the top of the corresponding storage channel 211, and the other end of the driving spring 25 is used to resist and drive.
  • Recent aerosols Since multiple atomizers are stacked and connected end to end, the driving spring 25 can drive the atomizer farthest away from it to protrude from the outlet hole 111 . As the atomized objects are taken out one by one, the driving spring 25 gradually stretches and releases the elastic force until all the atomized objects are driven out of the storage channel 211, and then returns to its natural length. Driven by the driving spring 25, it is easier and faster for the user to pick up the atomized matter.
  • the first sliding member 22 and the second sliding member 23 are each provided with a transition channel 221.
  • the two transition channels 221 are both hollow and connected to the corresponding storage channel 211 and the outlet 212 respectively, so that the atomized matter in the storage channel 211 It can be extended to the outside through corresponding transition channels and exits.
  • the first sliding member 22 and the second sliding member 23 are both slidingly connected to the box body 21 along the first direction.
  • the opposite parts of the two sliding parts are exposed outside the box body 21, which can press the part of one of the sliding parts exposed outside the box body 21, driving the sliding part towards the other sliding part, and at the same time, the first reset part 24 accumulates The first restoring force.
  • the first reset member 24 releases the first reset force to drive the sliding member to reset.
  • the first restoring member 24 is a spring, and the first restoring force is an elastic force.
  • the cross-street areas of the storage channel 211, the transition channel and the exit 212 are the same.
  • the transition channel 221 is completely connected to the storage channel 211, the transition channel and the storage channel 211 are directly opposite. At this time, the atomized matter in the storage channel 211 3 can slide into the transition channel 221 by the action of the drive spring 25 .
  • transition channel 221 When the transition channel 221 is completely connected to the outlet 212, the transition channel 221 is directly opposite to the outlet 212. At this time, the atomized matter 3 in the transition channel 221 can extend out of the box 21 through the outlet 212.
  • transition channel 221 and the storage channel 211 are misaligned, the atomized matter 3 in the storage channel 211 cannot slide into the transition channel 221.
  • the transition channels 221 of the two sliding members are fully connected with the corresponding storage channels 211, and the atomized matter 3 in the two storage channels 211 can pass through the corresponding storage channels 211.
  • the pressure of the driving spring 25 slides into the corresponding transition channel 221 .
  • the two transition channels 221 are misaligned with the corresponding outlets 212. After the atomized object 3 slides into the transition channel 221, the atomized object 3 is stuck on the edge of the outlet 212 of the housing 11.
  • the first sliding member 22 slides toward the second sliding member 23 while pressing the first restoring member 24 to accumulate the first restoring force.
  • the first sliding member 22 slides until its transition channel 221 is fully connected with the corresponding outlet 212 , the atomized substance 3 stored in the transition channel 221 in the first sliding member 22 can protrude from the corresponding outlet 212 .
  • the previous atomizer 3 adjacent to the extended atomizer 3 slides toward the first slider 22 until it abuts the first slider 22 under the pressure of the driving spring 25 .
  • the first reset member 24 releases the first reset force to drive the first sliding member 22 to reset.
  • the transition channel 221 of the first sliding member 22 is completely connected with the corresponding storage channel 211.
  • the adjacent atomizer 3 slides into the transition channel 221. In this cycle, multiple atomizers 3 can be taken out one by one.
  • the above-mentioned storage box 2 is installed in the control housing 1 for use.
  • the first sliding member 22 abuts against the driving member 13 of the control housing 1 .
  • the user needs to take out the atomizer 3, he can manually press the control member 16 on the top of the control shell 1 to drive the driving member 13 to slide forward and press against the first sliding member 22 until the transition channel 221 in the first sliding member 22 stores the The atomized object 3 extends out.
  • the user takes away the atomized object 3 he releases the control part 16, and the control part 16, the driving part 13 and the first sliding part 22 are all reset.
  • the next piece of atomized substance 3 in the storage channel 211 slides into the transition channel 221 of the first sliding member 22.
  • the sliding member 22 corresponds to all the atomized objects 3 in the storage channel 211 .
  • the storage box 2 can be removed from the control shell 1 first, and the storage box 2 can be turned over 180° so that the second sliding member 23 faces the driving member 13 , install the storage box 2 on the control shell 1.
  • the driving member 13 slides forward and presses against the second sliding member 23 until the atomized substance 3 stored in the transition channel 221 in the second sliding member 23 protrudes.
  • Part 23 corresponds to all atomized objects 3 in the storage channel 211.
  • the present invention also provides a method of using the storage device, through which the atomized substances stored in the storage device can be quickly taken out one by one.
  • This usage method is implemented using the above-mentioned storage device. Specifically, the usage method includes the following steps:
  • Manually pressing the control member 16 drives the control member 16 to slide toward the third reset member 15 in the second direction.
  • the control member 16 presses the third reset member 15 to accumulate the third reset force.
  • the control member 16 drives the slide rod 14 along the second direction. Sliding toward the driving member 13 , the sliding rod 14 presses the guide protrusion 131 of the driving member 13 to drive the driving member 13 to slide forward in the first direction.
  • the driving member 13 presses the first sliding member 22 to drive the first sliding member 22 toward The second sliding member 23 slides, and the first sliding member 22 presses the first restoring member 24, driving the first restoring member 24 to accumulate the first restoring force.
  • the transition channel 221 of the first sliding member 22 is misaligned with the corresponding storage channel 211. Until the transition channel 221 and the outlet 212 are completely connected, the atomized matter located in the transition channel 221 can sequentially slide out to the outside through the outlet 212 and the outlet hole 111 for the user to pick up.
  • the control member 16 After picking up the aerosol, the control member 16 is released, and the first reset member 24 releases the first reset force to drive the first sliding member 22 to slide in the reverse direction, so that the transition channel 221 of the first sliding member 22 is completely aligned with the corresponding storage channel 211 Connected, the next piece of atomized material in the storage channel 211 slides into the transition channel 221, and the transition channel and the outlet are misaligned to restrict the next piece of atomized material from sliding out of the outlet 212.

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Abstract

L'invention concerne un dispositif de stockage (100) et son procédé d'utilisation appartenant au domaine technique des dispositifs de génération d'aérosol. Le dispositif de stockage (100) comprend un boîtier de commande (1) et une boîte de stockage (2); la boîte de stockage (2) est reliée au boîtier de commande (1); la boîte de stockage (2) comprend un corps de boîte (21), des éléments coulissants (22, 23) et un premier élément de rappel (24); le premier élément de rappel (24) est relié aux éléments coulissants (22, 23) et au corps de boîte (21); chacun des éléments coulissants (22, 23) est pourvu d'un canal de transition (221); le corps de boîte (21) est pourvu de canaux de stockage (211) et de sorties (212); les canaux de stockage (211), les canaux de transition (221), les sorties (212) et l'extérieur du corps de boîte (21) sont en communication séquentielle; lorsqu'un objet à atomiser doit être retiré, le boîtier de commande (1) peut être actionné pour entraîner les éléments coulissants (22, 23) à coulisser vers l'avant, de telle sorte que les canaux de transition (221) et les canaux de stockage (211) ne soient pas alignés et que les canaux de transition (221) soient complètement en communication avec les sorties (212), que l'objet à atomiser puisse s'étendre hors de la sortie correspondante (212), et que le premier élément de rappel (24) accumule une première force de rappel. Selon le dispositif de stockage, il est rapide et pratique d'extraire un objet à atomiser, et une bonne expérience utilisateur est obtenue.
PCT/CN2022/124900 2022-07-04 2022-10-12 Dispositif de stockage et son procédé d'utilisation Ceased WO2024007468A1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN202210786752.X 2022-07-04
CN202210786752.XA CN114983026B (zh) 2022-07-04 2022-07-04 存储装置及其使用方法

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WO2024007468A1 true WO2024007468A1 (fr) 2024-01-11

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CN114983026B (zh) * 2022-07-04 2025-11-14 深圳市吉迩科技有限公司 存储装置及其使用方法

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CN210735045U (zh) * 2019-10-10 2020-06-12 温州绚彩科技有限公司 糖果包装盒
CN212212686U (zh) * 2020-01-10 2020-12-25 深圳麦克韦尔科技有限公司 电子雾化装置及其雾化器
CN213523850U (zh) * 2020-11-07 2021-06-25 深圳市恒万升科技有限公司 一种电子烟存储盒
CN113397229A (zh) * 2021-07-21 2021-09-17 洛阳市顺常电子科技有限公司 一种给电子烟无线充电的电子烟盒
CN114983026A (zh) * 2022-07-04 2022-09-02 深圳市吉迩科技有限公司 存储装置及其使用方法

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