A multi-layered compartmentalized storage box

By incorporating a multi-layered partitioned structure within the storage container, the problems of goods being crushed and damaged, and being disorganized in existing storage containers are solved. This enables layered storage and intelligent management, improving storage efficiency and safety.

CN116553024BActive Publication Date: 2026-02-27NINGBO YONGYAO ELECTRIC POWER INVESTMENT GRP CO
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Patent Information

Application Number
CN202310682573.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-06-09
Publication Date
2026-02-27
Estimated Expiration
2043-06-09

AI Technical Summary

Technical Problem

Existing storage containers typically have only one storage space inside. Goods piled up in a single space are prone to mutual crushing and damage, especially large goods when loaded by cranes. The damage is also severe, and the goods are disorganized, making it inconvenient to put them in and take them out of the container.

Method used

A multi-layered storage box is designed. By setting fixed partitions and first and second movable partitions inside the storage box, multi-layered separation is achieved by using connecting components and positioning components. Goods trigger the extension of the partitions from top to bottom, forming a multi-layered separation effect, avoiding crushing damage, and can adapt to the height adjustment of the goods.

Benefits of technology

It enables layered storage of goods, avoiding crushing damage, simplifies the boxing and unboxing operations, improves warehousing efficiency, and supports intelligent control and adaptive adjustment to adapt to any cargo height, thereby enhancing warehouse management efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application relates to the technical field of storage boxes, and discloses a multi-layer separated storage box, which comprises a storage box body, an inner cavity is arranged in the storage box body, two layering mechanisms are symmetrically arranged on the inner walls of the two sides of the inner cavity, the layering mechanism comprises a fixed partition plate, a plurality of first movable partition plates and a plurality of second movable partition plates which are sequentially arranged on the inner cavity from bottom to top, the fixed partition plate extends out of the inner cavity of the inner cavity, and the plurality of first movable partition plates and the plurality of second movable partition plates are accommodated in the inner cavity of the inner cavity; the fixed partition plate, the plurality of first movable partition plates and the plurality of second movable partition plates are sequentially connected through a first connecting assembly and a plurality of second connecting assemblies in pairs; the multi-layer separated storage box can sequentially trigger the extension of the plurality of partition plates to form a multi-layer separation effect in the process that goods are placed into the box top by a crane, so that the goods are prevented from being damaged due to mutual extrusion, and the goods are also conducive to being sorted.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of storage boxes, in particular to a multi-layer partition type storage box. BACKGROUND

[0002] The storage box is also called a storage cage, which is a kind of storage and logistics equipment for storing and storing goods. Storage is a temporary storage of products and goods due to order advance or market forecast advance in the production and circulation process. At the same time, around the storage entity activity, clear and accurate reports, documents and accounts, accurate information of accounting department are also carried out, so the storage is the combination of logistics, information flow and document flow. Storage is one of the important links of production and commodity circulation, and is also an important link of logistics activities.

[0003] The goods are loaded in the storage box, which can be stored in the warehouse with the storage box, or transported with the storage box. The function of the storage box is an important part of the whole storage function, which reflects the status of factory material activities, and is a transfer station connecting production, supply and sales, which plays an important auxiliary role in promoting production and improving efficiency.

[0004] The existing storage box usually only has one storage space inside, and the goods are stacked in the single storage space, which is easy to cause mutual extrusion, especially for some large storage boxes, the goods need to be put into the box from the top of the box by the crane, at this time, the fragile goods will be damaged due to extrusion, and the single storage space will also cause the goods to be sorted disorderly, which causes inconvenience for entering and leaving the box. SUMMARY

[0005] The present application provides a multi-layer partition type storage box, which has the beneficial effect of avoiding mutual extrusion and damage of goods by triggering the extension of several partitions in sequence to form a multi-layer partition effect during the process of putting goods into the box from the top of the box by the crane, which solves the problem of the existing storage box mentioned in the above background technology, that is, the inside of the storage box usually only has one storage space, the goods are stacked in the single storage space, which is easy to cause mutual extrusion, especially for some large storage boxes, the goods need to be put into the box from the top of the box by the crane, at this time, the fragile goods will be damaged due to extrusion, and the single storage space will also cause the goods to be sorted disorderly, which causes inconvenience for entering and leaving the box.

[0006] The present application provides the following technical scheme: a multi-layer partition type storage box, comprising a storage box body, an inner cavity is arranged in the storage box body, two layering mechanisms are symmetrically arranged on the inner walls of the two sides of the inner cavity;

[0007] The layering mechanism comprises a fixed partition plate, a plurality of first moving partition plates and a plurality of second moving partition plates arranged in the inner cavity in sequence from bottom to top, wherein the fixed partition plate extends out of the inner cavity of the inner cavity body, and the plurality of first moving partition plates and the plurality of second moving partition plates are accommodated in the inner cavity of the inner cavity body.

[0008] The fixed partition plate, the plurality of first moving partition plates and the plurality of second moving partition plates are connected in sequence by a first connecting assembly and a plurality of second connecting assemblies, and the plurality of first moving partition plates and the plurality of second moving partition plates are controlled to slide out of the inner cavity of the inner cavity body in sequence by the first connecting assembly and the plurality of second connecting assemblies to complete layering.

[0009] As an optional solution of the multi-layer partition type storage box, the first connecting assembly comprises a first rotating shaft arranged in the inner cavity body, a first transmission rod is arranged on the first rotating shaft, a first sliding groove is formed in the fixed partition plate, one end of the first transmission rod is slidingly connected in the first sliding groove, and the other end of the first transmission rod is connected with the first moving partition plate.

[0010] As an optional solution of the multi-layer partition type storage box, the first connecting assembly further comprises a first connecting rod, a first connecting seat is arranged on the first moving partition plate, and two ends of the first connecting rod are rotatably connected to the first transmission rod and the first connecting seat respectively.

[0011] As an optional solution of the multi-layer partition type storage box, the second connecting assembly comprises a second rotating shaft arranged in the inner cavity body, a second transmission rod is arranged on the second rotating shaft, one end of the second transmission rod is slidingly arranged with a third transmission rod, a second sliding groove is formed in the first moving partition plate, the third transmission rod is slidingly connected in the second sliding groove, and the other end of the second transmission rod is connected with the second moving partition plate.

[0012] As an optional solution of the multi-layer partition type storage box, the second connecting assembly further comprises a second connecting rod, a second connecting seat is arranged on the second moving partition plate, and two ends of the second connecting rod are rotatably connected to the second transmission rod and the second connecting seat respectively.

[0013] As an optional solution of the multi-layer partition type storage box, the first moving partition plate comprises a first sliding plate and a second sliding plate, wherein the first sliding plate is slidingly arranged on the inner cavity body, the second sliding plate is slidingly arranged on the first sliding plate, and the second sliding plate is elastically connected with the first sliding plate by a first spring.

[0014] The second connecting assembly further comprises a push rod arranged on the second sliding plate, and the push rod is matched with the third transmission rod.

[0015] As an optional solution of the multi-layer separated storage box, the homing assembly is further connected with the first connecting assembly and the second connecting assembly, and the first moving partition plate and the second moving partition plate are driven to slide and be accommodated into the inner cavity of the inner cavity body through the homing assembly.

[0016] As an optional solution of the multi-layer separated storage box, the homing assembly comprises a pull rod slidingly arranged on the inner cavity body, the pull rod is elastically connected with the inner wall of the inner cavity body through a second spring, and a plurality of third sliding grooves are formed in the pull rod.

[0017] The homing assembly further comprises a plurality of third connecting rods, one end of each of the third connecting rods is slidingly connected in the third sliding groove, and the other end of each of the third connecting rods is rotatably connected to the first transmission rod and the second transmission rod.

[0018] As an optional solution of the multi-layer separated storage box, the storage box body is provided with a side door, a top door and an intelligent control system, and the intelligent control system comprises two intelligent locks arranged on the side door and the top door, respectively.

[0019] As an optional solution of the multi-layer separated storage box, the intelligent control system further comprises a plurality of RFID antennas, an RFID reader / writer, a plurality of lithium batteries and a PCB circuit board arranged in the storage box body, and the two intelligent locks, the plurality of RFID antennas, the RFID reader / writer, the plurality of lithium batteries and the PCB circuit board are electrically connected with each other.

[0020] The present application has the following advantages:

[0021] 1. The multi-layer separated storage box separates the single storage space in the storage box body by sequentially arranging the fixed partition plate, the first moving partition plate and the second moving partition plate from bottom to top, so that the goods can be stacked separately, and the goods can be conveniently taken from the side door, and at the same time, when large goods are loaded from the top by a crane, some fragile goods can be prevented from being damaged due to mutual stacking and extrusion.

[0022] 2、The multi-layer partition type storage box can be self-adaptively adjusted according to the height of goods in addition to the fixed height layered storage space. When the height of a certain goods is large, the single fixed height storage space is not enough, the first movable partition plate is blocked by the existing goods, and the next layer or multiple layers of storage space are unfolded, so that the goods of any height can be stacked.

[0023] 3、The multi-layer partition type storage box, after taking goods, only needs to press the pull rod to drive the first movable partition plate and the second movable partition plate to be stored back, which is simple and convenient to operate, and can repeatedly separate the storage space.

[0024] 4、The multi-layer partition type storage box is used for improving the operation and management efficiency of the storage library, standardizing the business operation of the warehouse, and building a new material intelligent management and control platform according to the storage construction standard and information construction requirement of the State Grid Company, so as to facilitate the business docking with the third party system (such as WMS) in the future. The built-in RFID read-write module of the storage box body automatically identifies the RFID tag to realize the business docking with the third party system. The intelligent lock is combined with the intelligent storage cage, the RFID tag in the storage cage is identified through the on-off state of the intelligent lock, and the in-transit path and data details are drawn. BRIEF DESCRIPTION OF DRAWINGS

[0025] Figure 1 It is a schematic diagram of the overall structure of the present application.

[0026] Figure 2 It is a schematic diagram of the structure of the inner cavity of the present application.

[0027] Figure 3 It is a schematic diagram of the sectional structure of the inner cavity of the present application.

[0028] Figure 4 It is a schematic diagram of the local enlarged structure of A in the present application. Figure 3

[0029] Figure 5 It is a schematic diagram of the local enlarged structure of B in the present application. Figure 3

[0030] Figure 6 It is a schematic diagram of the local enlarged structure of C in the present application. Figure 3

[0031] Figure 7 It is an exploded structural schematic diagram of the layering mechanism of the present application.

[0032] Figure 8 It is an exploded structural schematic diagram of the first connecting assembly and the second connecting assembly of the present application.

[0033] ​​​Figure 9 Figure 1 is a structural diagram of the intelligent control system of the application.

[0034] In the figure: 100, storage box body; 110, side box door; 120, box top door; 200, inner cavity; 300, layering mechanism; 310, fixed partition; 320, first movable partition; 321, first sliding plate; 322, second sliding plate; 323, first spring; 330, second movable partition; 340, first connecting assembly; 341, first rotating shaft; 342, first transmission rod; 343, first sliding groove; 344, first connecting rod; 345, first connecting seat; 350, second connecting assembly; 351, second rotating shaft; 352, second transmission rod; 353, third transmission rod; 354, second sliding groove; 355, second connecting rod; 356, second connecting seat; 357, push rod; 360, homing assembly; 361, pull rod; 362, third sliding groove; 363, third connecting rod; 364, second spring; 400, intelligent control system; 410, intelligent lock; 420, RFID antenna; 430, RFID reader-writer; 440, lithium battery; 450, PCB circuit board. DETAILED DESCRIPTION

[0035] The technical solutions in the embodiments of the application will be clearly and completely described below with reference to the drawings in the embodiments of the application. Obviously, the described embodiments are only part of the embodiments of the application, rather than all the embodiments of the application. Based on the embodiments in the application, all other embodiments obtained by those skilled in the art without creative work fall within the protection scope of the application.

[0036] Embodiment 1

[0037] When the goods are stored in the inner cavity 200 by placing the goods on the top of the storage box body 100 through a crane, in order to make the storage space in the inner cavity 200 be able to be sequentially separated into multiple layers of storage space from bottom to top as the goods are stacked, and the process is automatic and simple to adapt to the structure of the storage box body 100, embodiment 1 is proposed;

[0038] Please refer to Figures 1-7 A multi-layer separated storage box, comprising a storage box body 100, an inner cavity 200 is arranged in the storage box body 100, two layering mechanisms 300 are symmetrically arranged on the inner walls of the two sides of the inner cavity 200;

[0039] The layering mechanism 300 comprises a fixed partition 310, a plurality of first movable partitions 320 and a second movable partition 330 arranged in the inner cavity 200 from bottom to top, wherein the fixed partition 310 extends out of the inner cavity of the inner cavity 200, and the plurality of first movable partitions 320 and the second movable partition 330 are accommodated in the inner cavity of the inner cavity 200;

[0040] The fixed partition plate 310, the plurality of first movable partition plates 320 and the second movable partition plate 330 are connected in sequence by the first connecting assembly 340 and the plurality of second connecting assemblies 350, and the plurality of first movable partition plates 320 and the second movable partition plate 330 are controlled to slide out of the inner cavity of the inner cavity body 200 in sequence to complete the layering.

[0041] In this embodiment, the upper end of the inner cavity body 200 is open to form an internal storage space, and the inner cavity body 200 is a hollow structure. Two layering mechanisms 300 are symmetrically installed on the left and right inner walls of the inner cavity body 200. Among them, the two fixed partition plates 310 are fixed on the inner walls of the inner cavity body 200, and the plurality of first movable partition plates 320 and the two second movable partition plates 330 can slide along the inner walls of the inner cavity body 200 and the left and right cavities.

[0042] From bottom to top, the fixed partition plate 310, the lowermost first movable partition plate 320 forming the lower layer storage space, the plurality of first movable partition plates 320 forming the plurality of middle layer storage spaces, and the uppermost first movable partition plate 320 and the second movable partition plate 330 forming the upper layer storage space.

[0043] And the fixed partition plate 310 and the lowermost first movable partition plate 320 are driven by the first connecting assembly 340, when the goods touch the fixed partition plate 310, the first connecting assembly 340 is triggered, so that the lowermost first movable partition plate 320 slides out of the inner cavity of the inner cavity body 200 to expand for the next goods stacking.

[0044] And the lowermost first movable partition plate 320 and the plurality of first movable partition plates 320 between the intermediate sides are connected in sequence by the plurality of second connecting assemblies 350, and the uppermost first movable partition plate 320 and the second movable partition plate 330 are connected by one second connecting assembly 350. When the next goods touch the lowermost first movable partition plate 320, the next lower first movable partition plate 320 is triggered to slide out by the corresponding second connecting assembly 350. By analogy, the lower layer storage space, the plurality of middle layer storage spaces and the upper layer storage space are expanded in sequence according to the stacking of the goods.

[0045] Embodiment 2

[0046] In order to make the goods stacked on the fixed partition plate 310 can automatically drive the lowermost first movable partition plate 320 to pop out for the next goods stacking, forming a layered space, embodiment 2 is proposed;

[0047] This embodiment is an improvement on the basis of embodiment 1. For details, please refer to Figures 3-8The first connecting assembly 340 comprises a first rotating shaft 341 rotatably arranged in the inner cavity 200, and a first transmission rod 342 arranged on the first rotating shaft 341. A first sliding groove 343 is formed in the fixed partition plate 310, and one end of the first transmission rod 342 is slidably connected to the first sliding groove 343. The other end of the first transmission rod 342 is connected to the first movable partition plate 320.

[0048] The first connecting assembly 340 further comprises a first connecting rod 344, and a first connecting seat 345 is arranged on the first movable partition plate 320. The two ends of the first connecting rod 344 are rotatably connected to the first transmission rod 342 and the first connecting seat 345, respectively.

[0049] In the embodiment, the first transmission rod 342 fixed on the first rotating shaft 341 arranged between the front and rear inner walls of the inner cavity 200 is in a broken line shape. The lower end of the first transmission rod 342 is a round head for easy sliding. The lower end of the first transmission rod 342 is slidably arranged in the first sliding groove 343 formed in the fixed partition plate 310. The first sliding groove 343 is arc-shaped.

[0050] When the first goods are stacked on the fixed partition plate 310 from top to bottom, the first transmission rod 342 extending to the upper end of the fixed partition plate 310 is pressed, and the first transmission rod 342 is rotated based on the first rotating shaft 341. Thus, the first connecting seat 345 fixed at the lower end of the first movable partition plate 320 and the first movable partition plate 320 at the lowermost side are driven by the first connecting rod 344 to slide to the right and extend out of the inner cavity of the inner cavity 200.

[0051] Embodiment 3

[0052] In order to enable the upper first movable partition plate 320 or the second movable partition plate 330 to be automatically popped out when the goods are stacked on the first movable partition plates 320, thereby forming a layered space, embodiment 3 is proposed.

[0053] This embodiment is an improvement on the basis of embodiment 1. For details, please refer to Figures 3-8 The second connecting assembly 350 comprises a second rotating shaft 351 rotatably arranged in the inner cavity 200, and a second transmission rod 352 arranged on the second rotating shaft 351. One end of the second transmission rod 352 is slidably provided with a third transmission rod 353. A second sliding groove 354 is formed in the first movable partition plate 320, and the third transmission rod 353 is slidably connected to the second sliding groove 354. The other end of the second transmission rod 352 is connected to the second movable partition plate 330.

[0054] The second connecting assembly 350 further comprises a second connecting rod 355, and a second connecting seat 356 is arranged on the second movable partition plate 330. The two ends of the second connecting rod 355 are rotatably connected to the second transmission rod 352 and the second connecting seat 356, respectively.

[0055] In this embodiment, the second connecting assembly 350 located at the lower left side is taken as an example. The second connecting assembly 350 is similar to the first connecting assembly 340 in structure, except that the right end of the second rotating shaft 351 is an opening, and the third transmission rod 353 is slidingly installed in the opening to form an extendable structure. When the first movable partition 320 located at the lowermost side slides to the right, the third transmission rod 353 is pushed by the falling of the goods, thereby driving the second transmission rod 352 to rotate. The second transmission rod 352 drives the second connecting seat 356 fixed to the first movable partition 320 located at the next lower side and the first movable partition 320 located at the next lower side to slide to the right through the second connecting rod 355.

[0056] By analogy, the second connecting seat 356 located at the uppermost side is fixed to the lower end of the second movable partition 330. Thus, the first movable partitions 320 and the second movable partitions 330 are sequentially ejected from the partition space.

[0057] Embodiment 4

[0058] In the above embodiments, the goods are placed in the space between the fixed partition 310 and the first movable partition 320 located at the lowermost side, between the first movable partitions 320, between the first movable partition 320 located at the uppermost side and the second movable partition 330, and above the second movable partition 330, which matches the length, width and height of the goods. However, when the height of one of the goods is larger, it cannot match. To solve this problem, Embodiment 4 is proposed.

[0059] This embodiment is an improvement based on Embodiment 3. For details, please refer to Figures 3-8 The first movable partition 320 includes a first sliding plate 321 and a second sliding plate 322. The first sliding plate 321 is slidingly arranged on the inner cavity 200, and the second sliding plate 322 is slidingly arranged on the first sliding plate 321. The second sliding plate 322 is elastically connected to the first sliding plate 321 through the first spring 323.

[0060] The second connecting assembly 350 further includes a push rod 357 arranged on the second sliding plate 322, and the push rod 357 is matched with the third transmission rod 353.

[0061] In this embodiment, the first movable partition 320 is composed of the first sliding plate 321 and the second sliding plate 322. The first sliding plate 321 is slidingly installed in the sliding groove between the inner cavity and the inner wall of the inner cavity 200, and the second sliding plate 322 is slidingly installed at the left end of the first sliding plate 321 and is elastically connected through the first spring 323. The second sliding groove 354 is formed in the first sliding plate 321, and the second connecting seat 356 is fixed to the second sliding plate 322.

[0062] When the height of the goods matches, the second sliding plate 322 is driven to slide right by the second connecting assembly 350, and at this time the first sliding plate 321 slides right under the elastic support of the first spring 323.

[0063] When the height of the goods is larger, the sliding track of one or more first sliding plates 321 is blocked before the goods fall down. At this time, the first sliding plate 321 is blocked at the left end of the goods, and the second sliding plate 322 continues to move right driven by the second connecting assembly 350 and presses the first spring 323, at this time the push rod 357 fixed on the second sliding plate 322 will gradually touch the third transmission rod 353, and the same effect of pressing down is achieved, which drives the corresponding second connecting assembly 350 to operate.

[0064] Thus, the ejection of one or more first moving partitions 320 matched with the height of the goods is skipped.

[0065] Embodiment 5

[0066] In order to make the goods taken, the next time the goods are stacked, the first moving partition 320 and the second moving partition 330 are withdrawn into the inner cavity 200, embodiment 5 is proposed;

[0067] This embodiment is an improvement on the basis of embodiment 1, for details, please refer to Figures 2-8 The layering mechanism 300 further comprises a homing assembly 360, the homing assembly 360 is connected with the first connecting assembly 340 and the plurality of second connecting assemblies 350, and the plurality of first moving partitions 320 and the plurality of second moving partitions 330 are driven to slide and be stored in the inner cavity of the inner cavity body 200 by the homing assembly 360;

[0068] The homing assembly 360 comprises a pull rod 361 slidingly arranged on the inner cavity body 200, the pull rod 361 is elastically connected with the inner wall of the inner cavity body 200 through a second spring 364, and a plurality of third sliding grooves 362 are formed in the pull rod 361;

[0069] The homing assembly 360 further comprises a plurality of third connecting rods 363, one end of each of the plurality of third connecting rods 363 is slidingly connected in the plurality of third sliding grooves 362, and the other end of each of the plurality of third connecting rods 363 is rotatably connected to the first transmission rod 342 and the plurality of second transmission rods 352.

[0070] In this embodiment, when the plurality of first moving partitions 320 and the plurality of second moving partitions 330 are not sliding out of the inner cavity of the inner cavity body 200, the left ends of the plurality of third connecting rods 363 are located at the lowermost side of the plurality of third sliding grooves 362. With the rotation of the first transmission rod 342 and the plurality of second transmission rods 352 in turn, the plurality of third connecting rods 363 are respectively slid to the uppermost side of the plurality of third sliding grooves 362.

[0071] At this time, by pressing the pull rod 361, several third connecting rods 363 are driven to rotate in the opposite direction, so that the second moving partition plate 330 and several first moving partition plates 320 are reset. After resetting, the pull rod 361 is released, and the pull rod 361 is reset under the elastic force of the second spring 364.

[0072] Embodiment 6

[0073] To adapt to the current concept of intelligent storage, embodiment 6 is proposed;

[0074] This embodiment is an improved description based on embodiment 1. For details, please refer to Figure 1 and Figure 8 The storage box body 100 is provided with a side door 110, a top door 120, and an intelligent control system 400. The intelligent control system 400 includes two intelligent locks 410 respectively arranged on the side door 110 and the top door 120.

[0075] The intelligent control system 400 further includes several RFID antennas 420, an RFID reader 430, several lithium batteries 440, and a PCB circuit board 450 arranged in the storage box body 100. The two intelligent locks 410, the several RFID antennas 420, the RFID reader 430, the several lithium batteries 440, and the PCB circuit board 450 are electrically connected to each other.

[0076] In this embodiment, the electronic lock intelligent lock 410 installed on the side door 110 and the top door 120 is used to control the opening and closing thereof. The RFID antenna 420 installed on three sides of the storage box body 100 is an RFID ultra-high frequency reading and writing antenna, which can be selected from the UHF RFID model series. The RFID reader 430 hiddenly installed in the inner wall of the storage box body 100 can be selected from the 915MHZ model series.

[0077] The several lithium batteries 440 can be selected from lithium iron phosphate batteries, and the PCB circuit board 450 can be selected from the CEM-3 model series.

[0078] The goods in modern intelligent storage usually have RFID tags. The PCB circuit board 450 integrates a control module and a wireless communication module. The RFID tags of the goods can be read by the three RFID antennas 420 to intelligently identify the types and numbers of the goods. The PCB circuit board 450 can also control the opening and closing of the two intelligent locks 410 and can be controlled through a mobile phone connected to the PCB circuit board 450. The intelligent lock 410 can also have a GPS intelligent positioning function. When the empty storage box body 100 is opened, the GPS positioning information is automatically collected, and the real-time tracking position is tracked to achieve accurate positioning of the storage box body 100. The lithium battery 440 is used to power the above-mentioned electronic devices.

[0079] It is to be noted that, in the present text, relational terms such as first and second and the like can be used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Moreover, the terms "comprises", "comprising", or any other variations thereof, are intended to cover a non-exclusive inclusion such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but can also include other elements not expressly listed or inherent to such process, method, article, or apparatus.

[0080] The above description is merely preferred embodiments of the present application, and it should be pointed out that, for those skilled in the art, some improvements and refinements can be made without departing from the technical principles of the present application, and these improvements and refinements should also be considered as the protection scope of the present application.

Claims

1. A multi-tiered compartmentalized storage bin comprising a storage bin body (100), characterized in that: The warehouse box (100) is provided with an inner cavity (200), and two layering mechanisms (300) are symmetrically arranged on the inner walls of the two sides of the inner cavity (200); The layering mechanism (300) comprises a fixed partition plate (310), a plurality of first moving partition plates (320) and a second moving partition plate (330) arranged in the inner cavity (200) from bottom to top, wherein the fixed partition plate (310) extends out of the inner cavity of the inner cavity (200), and the plurality of first moving partition plates (320) and the second moving partition plate (330) are accommodated in the inner cavity of the inner cavity (200); The fixed partition plate (310), the plurality of first moving partition plates (320) and the second moving partition plate (330) are connected in pairs by a first connecting assembly (340) and a plurality of second connecting assemblies (350) in sequence, and the plurality of first moving partition plates (320) and the second moving partition plate (330) are controlled to slide out of the inner cavity of the inner cavity (200) in sequence by the first connecting assembly (340) and the plurality of second connecting assemblies (350) to complete layering; The second connecting assembly (350) comprises a second rotating shaft (351) rotatably arranged in the inner cavity (200), a second transmission rod (352) arranged on the second rotating shaft (351), a third transmission rod (353) slidably arranged at one end of the second transmission rod (352), a second sliding groove (354) formed in the first moving partition plate (320), the third transmission rod (353) being slidably connected in the second sliding groove (354), and the other end of the second transmission rod (352) being connected with the second moving partition plate (330); The second connecting assembly (350) further comprises a second connecting rod (355), and the second moving partition plate (330) is provided with a second connecting seat (356), and the two ends of the second connecting rod (355) are rotatably connected to the second transmission rod (352) and the second connecting seat (356) respectively; The first moving partition plate (320) comprises a first sliding plate (321) and a second sliding plate (322), wherein the first sliding plate (321) is slidably arranged on the inner cavity (200), the second sliding plate (322) is slidably arranged on the first sliding plate (321), and the second sliding plate (322) is elastically connected to the first sliding plate (321) by a first spring (323); The second connecting assembly (350) further comprises a push rod (357) arranged on the second sliding plate (322), and the push rod (357) is matched with the third transmission rod (353).

2. The multi-layer compartmentalized bin of claim 1, wherein: The first connecting assembly (340) comprises a first rotating shaft (341) rotatably arranged in the inner cavity (200), a first transmission rod (342) arranged on the first rotating shaft (341), a first sliding groove (343) formed in the fixed partition plate (310), one end of the first transmission rod (342) being slidably connected in the first sliding groove (343), and the other end of the first transmission rod (342) being connected with the first moving partition plate (320).

3. A multi-compartment storage box according to claim 2, wherein: The first connecting assembly (340) further comprises a first connecting rod (344), and the first moving partition (320) is provided with a first connecting seat (345), and two ends of the first connecting rod (344) are respectively rotationally connected to the first transmission rod (342) and the first connecting seat (345).

4. The multi-layer compartmentalized bin of claim 1, wherein: The layering mechanism (300) further comprises a homing assembly (360), the homing assembly (360) is connected with the first connecting assembly (340) and the plurality of second connecting assemblies (350), and the plurality of first moving partitions (320) and the plurality of second moving partitions (330) are driven to slide and be accommodated into the inner cavity of the inner cavity body (200) through the homing assembly (360).

5. A multi-compartment storage box according to claim 4, wherein: The homing assembly (360) comprises a pull rod (361) which is slidably arranged on the inner cavity body (200), the pull rod (361) is elastically connected with the inner wall of the inner cavity body (200) through a second spring (364), and a plurality of third sliding grooves (362) are formed in the pull rod (361). The homing assembly (360) further comprises a plurality of third connecting rods (363), one end of each of the plurality of third connecting rods (363) is slidably connected in the plurality of third sliding grooves (362), and the other end of each of the plurality of third connecting rods (363) is rotationally connected to the first transmission rod (342) and the plurality of second transmission rods (352).

6. The multi-layer compartmentalized bin of claim 1, wherein: The storage box body (100) is provided with a side box door (110), a box top door (120) and an intelligent control system (400), and the intelligent control system (400) comprises two intelligent locks (410) arranged on the side box door (110) and the box top door (120) respectively.

7. A multi-compartment storage box according to claim 6, wherein: The intelligent control system (400) further comprises a plurality of RFID antennas (420), an RFID reader-writer (430), a plurality of lithium batteries (440) and a PCB circuit board (450) arranged in the storage box body (100), and the two intelligent locks (410), the plurality of RFID antennas (420), the RFID reader-writer (430), the plurality of lithium batteries (440) and the PCB circuit board (450) are electrically connected with each other.

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