Storage device and method of use thereof

By designing a sliding connection storage device and a reset structure, the problem of time-consuming and laborious retrieval of atomized material caused by the complex structure of existing storage boxes has been solved, enabling quick and convenient retrieval of atomized material and improving the user experience.

CN115039916BActive Publication Date: 2026-04-10SHENZHEN JIYOU TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-07-04
Publication Date
2026-04-10

AI Technical Summary

Technical Problem

Existing storage boxes have complex structures, making it time-consuming and laborious to retrieve the atomized material, resulting in a poor user experience.

Method used

A storage device is designed, including a housing and a transmission component. The storage box and the limiting component are slidably connected to enable the rapid sliding in and out of the atomized material. The automatic delivery of the atomized material is achieved by using a reset structure and a drive spring.

Benefits of technology

It enables quick and convenient removal of atomized material, enhancing the user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application provides a storage device and a use method thereof, and relates to the technical field of aerosol generating devices, and comprises a control assembly and a storage box. The control assembly comprises a shell and a transmission piece, the shell has a material outlet hole, the transmission piece has a loading channel, and the transmission piece is slidingly connected to the shell. The storage box comprises a box body and a first limiting piece, the first limiting piece is slidingly connected to the box body, the box body has a first storage channel capable of storing atomized material, the first limiting piece can be slid to open the first storage channel, the atomized material in the first storage channel can slide into the loading channel, and the transmission piece can slide relative to the shell so that the atomized material in the loading channel slides out of the shell through the material outlet hole. When the atomized material needs to be taken out, the first limiting piece is first slid to open the first storage channel, the atomized material slides into the loading channel, then the transmission piece is slid so that the loading channel is aligned with the material outlet hole, and the atomized material stored in the loading channel can slide out through the material outlet hole, so that the atomized material is quickly and conveniently picked up, and the user experience is good.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of aerosol generating device, in particular to a storage device and a method for using the same. BACKGROUND

[0002] The heating non-combustion atomization product is composed of a packaging body and a combustion grass placed in the packaging body. The working principle is that the combustion grass is heated by a heating element, and the heating temperature is controlled at a low temperature to avoid cracking reaction of the combustion grass, thereby reducing the generation of harmful substances. Therefore, the heating non-combustion atomization product is more and more popular and favored by users. In order to facilitate carrying, usually a plurality of atomization products are stored in a storage box. However, the existing storage box has a complex structure, and it is time-consuming and laborious to take the atomization product, and the user experience is poor. SUMMARY

[0003] Therefore, it is necessary to provide a storage device and a method for using the same to solve the problems of complex structure of the storage box, time-consuming and laborious to take the atomization product, and poor user experience.

[0004] The present application provides a storage device, comprising:

[0005] A control assembly comprising a housing and a transmission member, the housing having an outlet hole, and the transmission member having a hollow loading channel, the transmission member being slidingly connected to the housing;

[0006] A storage box comprising a box body and a first limiting member, the first limiting member being slidingly connected to the box body, the box body having a first storage channel capable of storing atomization products, and the first limiting member being capable of sliding relative to the box body to unblock the first storage channel, the atomization products in the first storage channel being capable of sliding into the loading channel, and the transmission member being capable of sliding relative to the housing to make the atomization products in the loading channel slide out of the housing through the outlet hole.

[0007] The storage box included in the above-mentioned storage device can be used to store a plurality of atomization products. When it is necessary to take out the atomization products, the first limiting member can be first slid to unblock the first storage channel, and then the atomization products can be slid into the loading channel of the transmission member. Then, the transmission member can be slid to align the loading channel with the outlet hole, and the atomization products stored in the loading channel can slide out through the outlet hole. The present application is fast and convenient in picking up the atomization products, and the user experience is good.

[0008] In one of the embodiments, the storage box further comprises a first reset member, the first reset member is connected to the box body and the first limiting member, when the box body is connected to the shell, the first limiting member opens the first storage channel, and the first reset member accumulates a first reset force; when the box body is separated from the shell, the first reset member releases the first reset force to drive the first limiting member to close the first storage channel, so as to limit the atomized objects in the first storage channel from sliding out.

[0009] In one of the embodiments, the control assembly further comprises a fixing flange arranged on the shell, when the box body is connected to the shell, the fixing flange presses against the first limiting member, so that the first limiting member opens the first storage channel, and the first reset member accumulates a first reset force; when the box body is separated from the shell, the fixing flange is separated from the first limiting member, and the first reset member releases the first reset force to drive the first limiting member to close the first storage channel.

[0010] In one of the embodiments, the storage box further comprises a second limiting member, the box body further has a second storage channel capable of storing atomized objects, the second limiting member is connected to the first reset member, the box body can be connected to the shell, so that the shell drives the second limiting member to open the second storage channel, and the first reset member accumulates a first reset force; the box body can be separated from the shell, so that the first reset member releases the first reset force to drive the second limiting member to close the second storage channel.

[0011] In one of the embodiments, the control assembly further comprises a reset structure, the reset structure is connected to the shell and the transmission member, the reset structure is movable relative to the shell to drive the transmission member to slide relative to the shell, so as to switch between a loading position and a releasing position; when the transmission member is located at the releasing position, the atomized objects in the loading channel slide out of the shell through the object outlet; when the transmission member is located at the loading position, the atomized objects in the first storage channel can slide into the loading channel.

[0012] In one of the embodiments, the reset structure comprises a sliding rod and a rotating member, two ends of the rotating member are rotatably connected to the sliding rod and the transmission member respectively, the sliding rod is capable of sliding back and forth relative to the shell to drive the transmission member to switch between the loading position and the releasing position through the rotating member.

[0013] In one of the embodiments, the reset structure further comprises a second reset member and a control button, the second reset member connects the control button and the shell, the control button can slide relative to the shell to drive the slide rod to slide towards the rotating member, the slide rod drives the transmission member to slide to the release position through the rotating member, and the second reset member accumulates a second reset force; the second reset member can release the second reset force to drive the control button to slide the slide rod away from the rotating member, and the slide rod drives the transmission member to slide to the loading position through the rotating member.

[0014] In one of the embodiments, the storage box further comprises a driving spring, the driving spring is arranged in the first storage channel, and the driving spring can drive the atomized substance in the first storage channel to slide into the loading channel.

[0015] The application further provides a use method of the storage device, the storage device is the above-mentioned storage device, and the use method comprises the following steps:

[0016] The first limiting member is driven to slide relative to the box body to unblock the first storage channel, and the atomized substance in the first storage channel slides into the loading channel;

[0017] The transmission member is slid relative to the shell to the position of the discharging hole to make the atomized substance in the loading channel slide out of the discharging hole to the outside of the shell for picking up;

[0018] The transmission member is reversely slid relative to the shell to be aligned with the first storage channel to make the atomized substance in the first storage channel slide into the loading channel.

[0019] In one of the embodiments, the use method further comprises the following steps:

[0020] The storage box is detached from the control assembly, the storage box is turned over by 180°, and then the storage box is connected with the control assembly again, and the steps in claim 9 are executed again to take out the atomized substance. BRIEF DESCRIPTION OF DRAWINGS

[0021] Figure 1 It is a structural schematic view of the storage device of the application;

[0022] Figure 2 It is an exploded structural schematic view of the storage device of the application;

[0023] Figure 3 It is a driving structural schematic view of the driving transmission member to slide back and forth;

[0024] Figure 4A sectional exploded structural schematic view of the storage device of the present application;

[0025] Figure 5 A structural schematic view of the storage box of the present application;

[0026] Figure 6 A structural schematic view of the storage device when the first atomized object is received by the transmission member in the loading position;

[0027] Figure 7 A structural schematic view of the storage device when the transmission member is in the releasing position;

[0028] Figure 8 A structural schematic view of the storage device when the first atomized object slides out of the object outlet hole;

[0029] Figure 9 A structural schematic view of the storage device when the first atomized object is released and the release control button is pressed.

[0030] In the drawings, the components represented by the respective reference numerals are listed as follows:

[0031] 100, storage device;

[0032] 1, control assembly; 11, housing; 111, accommodating cavity; 112, object outlet hole; 113, mounting slot; 114, clamping hole; 115, fixing flange; 116, inlet; 12, transmission member; 121, loading channel; 13, rotating member; 14, sliding rod; 15, control button; 16, second reset member;

[0033] 2, storage box; 21, box body; 211, first storage channel; 212, second storage channel; 213, first outlet; 214, second outlet; 215, clamping flange; 22, first limiting member; 23, second limiting member; 24, driving spring; 25, first reset member;

[0034] 3, atomized object. DETAILED DESCRIPTION

[0035] In order to make the above objectives, features and advantages of the present application more apparent and comprehensible, the specific embodiments of the present application are described clearly and completely below in conjunction with the drawings. Obviously, the specific details described below are only some embodiments of the present application, and the present application can also be implemented in many other embodiments different from those described herein. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without making creative efforts fall within the protection scope of the present application.

[0036] It should be noted that when an element is referred to as being "on" another element, it can be directly on the other element or intervening elements can also be present. When an element is referred to as being "connected" to another element, it can be directly connected to the other element or intervening elements can also be present. As used herein the terms "vertical", "horizontal", "left", "right" and similar terms are used for explanation only and are not intended to limit the embodiments.

[0037] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this application belongs. The terminology used in the description herein is for describing particular embodiments only and is not intended to be limiting of the application.

[0038] With reference to Figure 1 , the application provides a storage device 100, which can be used to store a plurality of rod-shaped objects, such as atomized objects 3 Figure 6 The user can quickly take out the plurality of atomized objects 3 in the storage device 100 one by one for smoking. The way of taking out the atomized objects 3 is quick and convenient, and the user experience is good.

[0039] With reference to Figure 2 , the storage device 100 comprises a control assembly 1 and a storage box 2, which is detachably connected to the control assembly 1. It can be understood that in other embodiments, the control assembly 1 and the storage box 2 can also be connected by other detachable ways, such as magnetic attraction connection. Even the control assembly 1 and the storage box 2 can be a one-piece structure, which is not limited here.

[0040] The storage box 2 can store a plurality of atomized objects 3, and after the storage box 2 is connected to the control assembly 1, when the user wants to take out the atomized objects 3, the user can manually control the control assembly 1 to control the plurality of atomized objects 3 in the storage box 2 to slide out one by one. The process of taking out the atomized objects 3 by the user is quick and convenient, and the user experience is good.

[0041] With reference to Figure 3 and Figure 4 , the control assembly 1 comprises a shell 11, a transmission member 12, a rotating member 13, a sliding rod 14, a control button 15, and a second reset member 16. The transmission member 12 is slidingly connected to the shell 11 in a first direction, the two ends of the rotating member 13 are rotatably connected to the transmission member 12 and the sliding rod 14 respectively, the sliding rod 14 is slidingly connected to the shell 11 in a second direction, the sliding rod 14 is connected to the control button 15, and the second reset member 16 is connected to the shell 11 and the control button 15.

[0042] The rotating member 13, the sliding rod 14, the control button 15, and the second reset member 16 form a reset structure, which is used to drive the transmission member 12 to slide back and forth relative to the shell 11.

[0043] The shell 11 is provided with a receiving cavity 111 for accommodating the slide rod 14 and the transmission member 12, both of which can slide back and forth along the cavity wall of the receiving cavity 111.

[0044] The shell 11 is provided with an ejection hole 112 near the transmission member 12, which communicates the receiving cavity 111 with the outside of the shell 11. The ejection hole 112 allows the atomized substance 3 to slide out and be picked up by the user.

[0045] With reference to Figure 2 , one side of the shell 11 is provided with a mounting groove 113, which is shaped to match the shape of the storage box 2 so that the storage box 2 can be mounted in the mounting groove 113 and detachably connected with the shell 11.

[0046] The two groove walls of the mounting groove 113 are both provided with a plurality of clamping holes 114 for detachable clamping with the storage box 2.

[0047] The groove bottom of the mounting groove 113 is provided with two fixed flanges 115, which are arranged at intervals. When the storage box 2 is mounted in the mounting groove 113, the two fixed flanges 115 can simultaneously press against the storage box 2, so that the storage box 2 is always in an open state, and the atomized substance 3 stored in the storage box 2 can slide into the receiving cavity 111 of the shell 11 through the gap between the two fixed flanges 115.

[0048] The shell 11 is provided with an inlet 116 near the storage box 2. When the storage box 2 is mounted in the mounting groove 113, the atomized substance 3 stored in the storage box 2 can successively slide into the receiving cavity 111 through the gap between the two fixed flanges 115 and the inlet 116.

[0049] With reference to Figure 4 , the transmission member 12 is a hollow pipe with open ends and has a loading channel 121. The transmission member 12 can slide back and forth relative to the shell 11 along the first direction to switch between a loading position and a release position. When the transmission member 12 is located at the loading position, the loading channel 121 can receive the atomized substance 3 that slides out of the storage box 2. When the transmission member 12 is located at the release position, the loading channel 121 corresponds in position to the ejection hole 112, and the atomized substance 3 loaded in the loading channel 121 can slide out through the ejection hole 112 for the user to pick up.

[0050] With reference to Figure 3 , the rotating member 13 is in the shape of a strip, one end of which is rotatably connected to the transmission member 12 by a pin, and the other end is rotatably connected to the slide rod 14 by a pin.

[0051] The slide rod 14 is in the shape of a rod, one end of the slide rod 14 is rotatably connected to the rotating member 13 through a pin, and the other end of the slide rod 14 abuts against the second reset member 16. When the slide rod 14 slides in the second direction away from the second reset member 16, the slide rod 14 can drive the rotating member 13 to rotate relative to the slide rod 14, and the other end of the rotating member 13 rotates relative to the transmission member 12. Since the position of the slide rod 14 in the first direction does not change, the rotating member 13 drives the transmission member 12 to slide in the first direction away from the slide rod 14, so that the transmission member 12 slides to the release position and releases the atomized substance 3 through the outlet hole 112.

[0052] When the slide rod 14 slides in the second direction towards the second reset member 16, the slide rod 14 can drive the transmission member 12 to slide towards the slide rod 14 through the rotating member 13, so that the transmission member 12 slides from the release position to the loading position, and at this time the transmission member 12 can reload the atomized substance 3 slid out of the storage box 2. The transmission member 12 is controlled to slide back and forth in this way, and all the atomized substance 3 in the storage box 2 can be completely delivered out.

[0053] It should be noted that the first direction and the second direction are perpendicular to each other. It can be understood that the first direction and the second direction can also be arranged at other angles, such as 45°, 60°, etc., which are not limited herein. The sliding direction of the slide rod 14 and the sliding direction of the transmission member 12 are arranged at an angle, compared with the embodiment in which the sliding direction of the slide rod 14 and the sliding direction of the transmission member 12 are consistent, the embodiment can reduce the size of the shell 11 in the first direction, since the slide rod 14 slides in the second direction, the size of the shell 11 in the first direction does not need to be set too long, and the slide rod 14 and the transmission member 12 can be installed and accommodated at the same time, and the slide rod 14 can also drive the transmission member 12 to slide.

[0054] The second reset member 16 is a spring, when the slide rod 14 slides in the second direction away from the second reset member 16, the slide rod 14 abuts against the second reset member 16, and drives the second reset member 16 to accumulate the second reset force, which is the elastic force. The second reset member 16 can also release the second reset force to drive the slide rod to slide towards the second reset member 16.

[0055] The control button 15 is connected to one end of the slide rod 14 away from the rotating member 13, and the control button 15 is slidably connected to the shell 11 in the second direction. It can be understood that in other embodiments, one end of the control button 15 can be rotatably connected to the shell 11, and the other end of the control button 15 abuts against the slide rod 14, which is not limited herein.

[0056] When the user needs to take out the atomized substance 3, the control button 15 can be manually pressed to drive the slide rod 14 to slide back to the second reset member 16, and at the same time, the second reset force of the second reset member 16 is accumulated. During the sliding process of the slide rod 14, the rotating member 13 is driven to rotate relative to the slide rod 14 and the transmission member 12, so that the rotating member 13 drives the transmission member 12 to slide to the release position, and the stored atomized substance 3 of the transmission member 12 can slide out through the outlet hole 112 and be picked up by the user.

[0057] When the user picks up the atomized substance 3, the control button 15 can be released to release the second reset force of the second reset member 16 to drive the slide rod 14 and the control button 15 to reset, and at the same time, the slide rod 14 drives the transmission member 12 to slide to the loading position through the rotating member 13, so that the next atomized substance 3 in the storage box 2 slides into the loading passage 121 of the transmission member 12. When the user presses the control button 15 again, the next atomized substance 3 can be sent out through the outlet hole 112. In this way, the control button 15 is pressed and released in a cycle, and all the atomized substances 3 in the storage box 2 can be taken out.

[0058] In addition to the structure composed of the rotating member 13, the slide rod 14, the control button 15 and the second reset member 16, the reset structure can also be a spring and a sliding block in other embodiments. The spring is connected to the housing 11 and the transmission member 12, and the sliding block is connected to the transmission member 12. The sliding block can drive the transmission member 12 to slide to the release position, and at the same time, the spring accumulates the elastic force. The spring can also release the elastic force to drive the transmission member 12 to slide to the loading position to reset. The specific structure of the reset structure has many kinds, which are not limited here.

[0059] Reference Figure 4 and Figure 5 The storage box 2 includes a box body 21, a first limiting member 22, a second limiting member 23, a driving spring 24 and a first reset member 25. The first limiting member 22, the second limiting member 23 and the driving spring 24 are located in the box body 21, and the two ends of the first reset member 25 are respectively connected to the first limiting member 22 and the second limiting member 23.

[0060] The box body 21 is provided with a first storage passage 211 and a second storage passage 212, both of which are used for storing the atomized substance 3. The atomized substance 3 can be in a rod shape, and a plurality of atomized substances 3 can be stored in a corresponding storage passage in an up-down stacked manner along a straight line, which facilitates individual output.

[0061] The box body 21 is provided with a first outlet 213 and a second outlet 214. The first outlet 213 corresponds to the first storage channel 211 in position, and the first outlet 213 can output the atomized substance 3 in the first storage channel 211. The second outlet 214 corresponds to the second storage channel 212 in position, and the second outlet 214 can output the atomized substance 3 in the second storage channel 212. It can be understood that in other embodiments, the box body 21 can also be provided with only one outlet, which is equivalent to connecting the first outlet 213 and the second outlet 214, and the outlet can simultaneously output the atomized substance 3 in the first storage channel 211 and the second storage channel 212.

[0062] The side of the box body 21 has a clamping flange 215, and the clamping flange 215 has four. Two clamping flanges 215 in the length direction of the box body 21 form a group, and the two groups of clamping flanges 215 are symmetrically arranged. Each group of clamping flanges 215 can be clamped in the clamping hole 114 in the mounting groove 113, so that any one of the two opposite sides of the box body 21 can face the mounting groove 113 and be mounted in the shell 1.

[0063] The drive spring 24 has two, and the two drive springs 24 are respectively arranged in the first storage channel 211 and the second storage channel 212, and are respectively used to drive the atomized substance 3 in the corresponding storage channel to slide out to the outside of the box body 21.

[0064] The first limiting piece 22 is approximately cuboid-shaped, and the first limiting piece 22 is located inside the box body 21 and is slidingly connected to the box body 21. The first limiting piece 22 can slide towards the second limiting piece 23 to open the first storage channel 211, and at the same time, the first limiting piece 22 presses the first reset piece 25 to accumulate the first reset force. At this time, the atomized substance 3 in the first storage channel 211 can be output to the outside of the box body 21 through the first outlet 213 under the pressing of the corresponding drive spring 24.

[0065] The first reset piece 25 can also release the first reset force to reset the first limiting piece 22 to re-close the first storage channel 211, preventing the atomized substance 3 in the first storage channel 211 from sliding out.

[0066] Similarly, the second sliding piece 23 can slide towards the first limiting piece 22 to open the second storage channel 212, and at the same time, the second limiting piece 23 presses the first reset piece 25 to accumulate the first reset force. At this time, the atomized substance 3 in the second storage channel 212 can be output to the outside of the box body 21 through the second outlet 214 under the pressing of the corresponding drive spring 24.

[0067] The first reset piece 25 can also release the first reset force to reset the second limiting piece 23 to re-close the second storage channel 212, preventing the atomized substance 3 in the second storage channel 212 from sliding out.

[0068] The first reset member 25 is a spring, and the first reset force is an elastic force. It can be understood that in other embodiments, the first reset member 25 can also be replaced by two magnetic attraction members, which accumulate magnetic repulsion when the first sliding member 22 and the second sliding member 23 are close to each other. The two magnetic attraction members can also release the magnetic repulsion to drive the first sliding member 22 and the second sliding member 23 away from each other.

[0069] It should be noted that when the storage box 2 is not installed on the shell 11, the first sliding member 22 and the second sliding member 23 respectively close the first storage channel 211 and the second storage channel 212, and the atomized objects 3 in the two storage channels cannot slide out. Therefore, when the storage box 2 is not installed on the shell 11, the storage box 2 is convenient to carry, and the atomized objects 3 inside will not fall off.

[0070] In addition, when the storage box 2 is not installed on the shell 11, the opposite parts of the first sliding member 22 and the second sliding member 23 are exposed outside the box body 21. Figure 2

[0071] When the storage box 2 is installed on the shell 11, the first sliding member 22 or the second sliding member 23 can face the groove bottom of the mounting groove 113.

[0072] Referring to Figure 5 , Figure 5 In the embodiment shown, the first sliding member 22 faces the groove bottom of the mounting groove 13, and the two fixed flanges 115 on the groove bottom of the mounting groove 13 simultaneously press the first sliding member 22, so that the first sliding member 22 presses the first reset member 25 to accumulate the first reset force, and at the same time, the first storage channel 211 is in an open state. The atomized object 3 in the first storage channel 211 is pressed by the corresponding drive spring 24, slides into the loading channel 121 of the transmission member 12 through the first outlet 213.

[0073] Referring to Figure 6 , Figure 7 and Figure 8 When the user wants to take out the atomized object 3, the control button 15 can be manually pressed to drive the transmission member 12 to slide to the release position through the slide rod 14 and the rotating member 13 in sequence, and the atomized object 3 in the loading channel 121 slides out to the outside through the object hole 112 and is picked up by the user.

[0074] It should be noted that when the transmission member 12 slides to the release position, the next atomized object 3 in the first storage channel 211 abuts against the top of the transmission member 12.

[0075] Referring to Figure 9 ​When the user picks up the atomizing article 3, the control button 15 is released, the second reset member 16 drives the control button 15, the slide rod 14 and the transmission member 12 to reset, and the transmission member 12 slides to the loading position. The next atomizing article 3 slides into the loading channel 121 of the transmission member 12. When the user wants to take out the next atomizing article 3, the control button 15 is pressed again, and in this way, the control button 15 is pressed in a cycle, and all the atomizing articles 3 in the first storage channel 211 can be taken out.

[0076] When all the atomizing articles 3 in the first storage channel 211 are taken out, the storage box 2 can be first detached from the shell 1, then the storage box 2 is turned over by 180°, the second limiting member 23 faces the groove bottom of the mounting groove 113, and the storage box 2 is installed in the mounting groove 113 again. At this time, the two fixed flanges 115 of the groove bottom of the mounting groove 113 press the second limiting member 23 at the same time, drive the second limiting member 23 to slide towards the first limiting member 22 to open the second storage channel 212, and the second limiting member 23 drives the first reset member 25 to accumulate the first reset force.

[0077] The atomizing article 3 in the second storage channel 212 slides into the loading channel 121 of the transmission member 12 through the second outlet 214, and the control button 15 is pressed again, which can drive the transmission member 12 to slide to the release position, and the atomizing article 3 in the loading channel 121 slides out to the outside through the outlet hole 112. Through the cycle pressing, all the atomizing articles 3 in the second storage channel 212 can be taken out.

[0078] If all the atomizing articles 3 in the first storage channel 211 and the second storage channel 212 are taken out, the storage box 2 can be detached from the shell 1, new atomizing articles 3 are loaded into the first storage channel 211 and the second storage channel 212, and then the storage box 2 is installed in the mounting groove 113.

[0079] The application also provides a use method of the storage device, through which the atomizing articles stored in the storage device can be taken out one by one quickly.

[0080] The use method is realized by using the above-mentioned storage device. Specifically, the use method comprises the following steps:

[0081] The first limiting member 22 faces the groove bottom of the mounting groove 113, the storage box 2 full of atomizing articles 3 is installed in the mounting groove 113 of the control assembly 1, and the atomizing articles in the first storage channel 211 slide into the loading channel 121 of the transmission member 12 through the first outlet 213 and the inlet 116 under the pressing of the corresponding driving spring 24.

[0082] The control button 15 is pressed manually to drive the control button 15 to slide in the second direction away from the second reset member 16, the control button 15 presses the second reset member 16 to accumulate the second reset force, and meanwhile the control button 15 drives the slide rod 14 to slide in the second direction towards the driving member 13, the slide rod 14 drives the driving member 13 to rotate to make the driving member 13 press the transmission member 12, and the transmission member 12 is driven to slide to the releasing position, the atomized substance 3 in the loading channel 121 slides out of the discharging hole 112, and the user can pick up the atomized substance 3.

[0083] After the atomized substance is picked up, the user releases the control button 15, the second reset member 16 releases the second reset force to drive the control button 15 and the slide rod 14 to reset, and meanwhile the slide rod 14 drives the transmission member 12 to slide to the loading position through the rotating member 13 in the resetting process, and the next atomized substance in the first storage channel 211 slides into the loading channel 121.

[0084] The control button 15 is pressed again to make the next atomized substance 3 slide out of the discharging hole 112 to be picked up by the user. The above steps are repeated to take out all the atomized substances 3 in the first storage channel 211.

[0085] The storage box 2 is detached from the shell 11, the storage box 2 is turned over by 180° to make the second limiting member 23 face the groove bottom of the mounting groove 113, and the storage box 2 is mounted in the mounting groove 113 of the shell 11.

[0086] The above step of pressing the control button 15 is repeated to take out all the atomized substances 3 in the second storage channel 212.

[0087] In an alternative embodiment, the storage box 2 of the present application can be provided with only one storage channel, and one storage box 2 stores the atomized substances 3 through the storage channel. The number of limiting members can also be only one, and the limiting member is used to open or close the storage channel. When the limiting member opens the storage channel, the atomized substances in the storage channel can slide into the loading channel 121 of the transmission member 12. When the limiting member closes the storage channel, the limiting member can prevent the atomized substances 3 in the storage channel from sliding out.

[0088] The technical features of the above embodiments can be combined arbitrarily, and for the sake of brevity, all possible combinations of the technical features in the above embodiments are not described, however, as long as the combinations of the technical features do not exist contradictory, they should be considered as the scope of the present application.

[0089] The above embodiments only express several implementation manners of the present application, and the description is relatively specific and detailed, but should not be understood as a limitation on the patent scope of the present application. It should be noted that, for ordinary skilled persons in the art, without departing from the concept of the present application, several modifications, substitutions and improvements can be made, which should be covered within the protection scope of the present application. Therefore, the protection scope of the patent of the present application should be subject to the claims.

Claims

1. A storage device, characterized in that, include: A control assembly includes a housing and a transmission component, the housing having an outlet hole and the transmission component having a hollow loading channel, the transmission component being slidably connected to the housing; A storage box includes a box body and a first limiting member, the first limiting member being slidably connected to the box body. The box body has a first storage channel capable of storing atomized material. The first limiting member is slidable relative to the box body to unblock the first storage channel. The atomized material in the first storage channel can slide into the loading channel. The transmission member is slidable relative to the housing to allow the atomized material in the loading channel to slide out through the outlet hole to the outside of the housing. The storage box further includes a first reset member, which is connected to the box body and the first limiting member. When the box body is connected to the housing, the first limiting member opens the first storage channel and drives the first reset member to accumulate a first reset force. When the box body is separated from the housing, the first reset member releases the first reset force and drives the first limiting member to close the first storage channel, thereby restricting the atomized material from sliding out of the first storage channel; The control component also includes a fixing flange disposed on the housing. When the box is connected to the housing, the fixing flange abuts against the first limiting member to allow the first limiting member to unblock the first storage channel and drive the first reset member to accumulate a first reset force. When the box body is separated from the housing, the fixing flange is separated from the first limiting member, and the first reset member releases the first reset force to drive the first limiting member to close the first storage channel; The storage box further includes a second limiting member, and the box body also has a second storage channel capable of storing atomized material. The second limiting member is connected to the first reset member, and the box body can be connected to the housing so that the housing drives the second limiting member to open the second storage channel. The first reset member accumulates a first reset force. The box body can be separated from the housing so that the first reset member releases the first reset force and drives the second limiting member to close the second storage channel; After all the atomized material in the first storage channel has been removed, the storage box can be removed from the housing, then rotated 180° so that the second limiting piece faces the bottom of the mounting slot, and the storage box can be reinstalled in the mounting slot.

2. The storage device according to claim 1, characterized in that, The control component further includes a reset structure connected to the housing and the transmission member. The reset structure is movable relative to the housing to drive the transmission member to slide relative to the housing, switching between a loading position and a release position. When the transmission member is in the release position, the atomized material in the loading channel slides out of the housing through the outlet hole. When the transmission member is in the loading position, the atomized material in the first storage channel can slide into the loading channel.

3. The storage device according to claim 2, characterized in that, The reset structure includes a slide rod and a rotating component. The two ends of the rotating component are rotatably connected to the slide rod and the transmission component, respectively. The slide rod can slide back and forth relative to the housing so as to drive the transmission component to switch between the loading position and the release position through the rotating component.

4. The storage device according to claim 3, characterized in that, The reset structure further includes a second reset component and a control button. The second reset component connects the control button and the housing. The control button can slide relative to the housing to drive the slide rod to slide closer to the rotating component. The slide rod drives the transmission component to slide to the release position through the rotating component. The second reset component accumulates a second reset force. The second reset component can release the second reset force to drive the control button to drive the slide rod to slide away from the rotating component. The slide rod drives the transmission component to slide to the loading position through the rotating component.

5. The storage device according to claim 1, characterized in that, The storage box also includes a drive spring, which is disposed in the first storage channel and can drive the atomized material located in the first storage channel to slide into the loading channel.

6. A method of using a storage device, characterized in that, The storage device is the storage device as described in any one of claims 1-5, and the method of use includes the following steps: The first limiting member is driven to slide relative to the box body to unblock the first storage channel, and the atomized material in the first storage channel slides into the loading channel; The transmission component is slid relative to the housing to the outlet position so that the atomized material in the loading channel slides out through the outlet to the outside of the housing for pickup; The transmission component is slid in the opposite direction relative to the housing until it aligns with the first storage channel, so that the atomized material from the first storage channel slides into the loading channel.

7. The method of use according to claim 6, characterized in that, The method of use also includes the following steps: Disassemble the storage box from the control component, flip the storage box 180° and then reconnect it to the control component, and repeat the steps in claim 6 to remove the atomized material.

Citation Information

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