Logistics rack for logistics management

The automated design of the logistics racks solves the problem of the inability of the racks to classify automatically, enabling automatic sorting, transportation and storage of logistics items, and improving the efficiency and precision of logistics management.

CN121974071APending Publication Date: 2026-05-05BEIJING TECH & BUSINESS UNIV
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
BEIJING TECH & BUSINESS UNIV
Filing Date
2026-03-03
Publication Date
2026-05-05

AI Technical Summary

Technical Problem

Existing logistics racks cannot be automatically sorted, relying on manual operation, which is inefficient and makes it difficult to improve the efficiency of logistics management.

Method used

A logistics rack for logistics management was designed, which includes a swing wheel sorting machine, a storage mechanism and a transportation mechanism to realize the automatic sorting, transportation and classified storage of logistics items. Combined with the data entry component, it can automatically identify and verify information, replacing manual operation.

Benefits of technology

It has achieved fully automated operation of logistics shipments, improved the efficiency and precision of logistics management, ensured the safety and stability of transportation and storage, and reduced information errors.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of classification material racks, and discloses a logistics rack for logistics management, comprising: a plurality of storage mechanisms which are respectively arranged on two sides of a balance wheel sorting machine, each storage mechanism comprises a goods shelf, a plurality of input assemblies and a limiting plate, and the storage mechanisms are used for storing corresponding logistics pieces and inputting information through the input assemblies; and the conveying mechanisms are arranged between the balance wheel sorting machines and the corresponding storage mechanisms correspondingly, and each conveying mechanism comprises a rotary drum, a plurality of conveying plates and a transmission belt. According to the logistics frame for logistics management, a linkage structure of the balance wheel sorting machine, the conveying mechanism and the storage mechanism is arranged, so that the sorting function of the balance wheel sorting machine is utilized, full-process automatic operation from automatic sorting, precise conveying to classified storage of logistics pieces is achieved, manual participation in sorting and storage links is not needed, and the labor intensity of workers is reduced. Therefore, the problem of low efficiency caused by the fact that a traditional logistics frame depends on manual classification is solved, and the overall efficiency of logistics management is greatly improved.
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Description

Technical Field

[0001] This invention relates to the field of material sorting rack technology, specifically a logistics rack for logistics management. Background Technology

[0002] Logistics racks are structured storage devices used in logistics warehousing scenarios to store, classify, manage, and efficiently access goods. They are typically composed of components such as columns, beams, shelves, and connectors. They can be flexibly designed according to the characteristics of goods, storage space conditions, and operational processes, and are one of the indispensable core infrastructures in modern logistics systems.

[0003] In existing technologies, logistics racks have relatively simple structures and limited functions, only capable of storing and managing goods. Furthermore, the storage of goods still requires manual labor, which is prone to errors and inefficient, making it difficult to improve the overall efficiency of logistics management. Summary of the Invention

[0004] (a) Technical problems to be solved:

[0005] To address the shortcomings of existing technologies, this invention provides a logistics rack for logistics management, which solves the problems mentioned in the background art, such as the inability of logistics racks to automatically classify, the need for manual classification, and the low efficiency of storage.

[0006] (II) Technical Solution:

[0007] To achieve the above objectives, the present invention provides the following technical solution: a logistics rack for logistics management, comprising a plurality of logistics components, a swing wheel sorting machine for automatically sorting the plurality of logistics components, and side baffles for restricting the movement of the logistics components, comprising:

[0008] Several storage mechanisms are respectively set on both sides of the swing wheel sorting machine, including shelves, several input components and limiting plates, for storing the corresponding logistics items and inputting information through the input components;

[0009] Several transport mechanisms are respectively arranged between the swing wheel sorting machine and the corresponding storage mechanism, including a rotating drum, several transport plates and a transmission belt. They are used to receive the logistics items sorted by the swing wheel sorting machine through the several transport plates, transport the corresponding logistics items to the shelf for storage by the rotation of the rotating drum, and use the transmission belt to drive the limiting plate to horizontally strike all the logistics items located in the shelf to prevent the logistics items from deviating and affecting the entry of subsequent logistics items.

[0010] Preferably, it further includes:

[0011] A collection box, placed at the end of the balance wheel sorter, is used to collect the logistics items that have not been sorted by the balance wheel sorter.

[0012] Preferably, the storage mechanism further includes:

[0013] Several rotating doors are located on the side of the shelf away from the swing wheel sorting machine;

[0014] Several horizontal partitions are all horizontally arranged inside the shelf, dividing the inside of the shelf into several horizontal spaces for storing different logistics items;

[0015] Several elastic components are disposed on the side of the shelf near the swing wheel sorting machine, with one end fixedly connected to the inner wall of the shelf and the other end fixedly connected to the limiting plate, providing elasticity to the limiting plate;

[0016] A cam is rotatably connected to the top of the shelf and is driven by the transmission belt.

[0017] Several through slots are provided on the side wall of the corresponding shelf near the transport mechanism to allow the corresponding transport plate to pass through, and to work with the shelf side wall to block the logistics items located on top of the transport plate into the shelf.

[0018] Preferably, the input component includes:

[0019] The motherboard is entered and fixedly connected to the bottom of the corresponding horizontal partition near the end of the corresponding transportation mechanism;

[0020] A camera is fixedly connected to the bottom of the input motherboard near the end of the transportation mechanism, and is used to photograph the logistics items entering the shelf and upload the photographing results;

[0021] The scanning dock is fixedly connected to the bottom of the input motherboard near the transportation mechanism. It is used to identify the information of the logistics items entering the shelf and cooperate with the input motherboard to complete the verification and status update of the input information.

[0022] A telescopic rod is located at the bottom of the input motherboard at the end furthest from the transport mechanism.

[0023] Preferably, the limiting plate is slidably connected to the shelf, and the top of the limiting plate extends to the outer side of the top of the shelf, and is horizontally displaced within the shelf by the rotation of the cam.

[0024] Preferably, the transport plates are respectively set at different heights to match the height of the horizontal partitions, and the end of the transport plate near the rotating drum extends into the interior of the rotating drum and is rotatably connected to the rotating drum in the vertical direction, so that all the transport plates cannot overlap in a top view.

[0025] Preferably, the transportation mechanism further includes:

[0026] A drive motor is installed inside the rotating drum, and its output end is fixedly connected to the rotating drum to drive the rotating drum to rotate.

[0027] Several limiting stops are fixedly connected to the outer side wall of the top of the rotating drum to prevent the logistics items sorted by the swing wheel sorter from falling into the end of the transport plate and tipping over.

[0028] Several buffer components are provided, each with one end fixedly connected to the rotating drum and the other end fixedly connected to the upper and lower side walls of the corresponding transport plate extending into the rotating drum, and are symmetrically distributed with respect to the fixedly connected transport plates.

[0029] Several push rods are fixedly connected to the side wall at one end of the corresponding rotation direction of the transport plate.

[0030] Preferably, the outer sides of the rotating drum, the limiting stop, and the pushing rod are all coated with a layer of elastic material.

[0031] Preferably, the telescopic rod is configured such that when the sweeping dock detects the presence of the logistics item, the output end retracts, and when the logistics item is detected to have moved to its bottom, the output end extends.

[0032] Preferably, the rotating drum is connected to the drive belt.

[0033] (III) Beneficial Effects:

[0034] The logistics rack for logistics management provided by this invention has the following beneficial effects:

[0035] 1. This logistics rack for logistics management, by setting up a linkage structure of a swing wheel sorting machine, a transportation mechanism and a storage mechanism, utilizes the sorting function of the swing wheel sorting machine to realize the fully automated operation of logistics items from automatic sorting, accurate transportation to classified storage, without the need for manual participation in sorting and storage, thereby solving the problem of low efficiency caused by the reliance on manual classification in traditional logistics racks, and greatly improving the overall efficiency of logistics management.

[0036] 2. This logistics rack for logistics management automatically completes the shooting, identification, verification and status update of logistics information through the input component in the storage mechanism, replacing the traditional manual input method. It not only avoids the information errors caused by manual operation, but also provides accurate and real-time data support for subsequent inventory management and cargo traceability, thereby improving the level of precision in logistics management.

[0037] 3. This logistics management rack, through the transmission belt between the transportation and storage mechanisms, uses the rotation of the drum to drive the limit plate to reciprocate horizontally within the rack, thereby achieving continuous organization of logistics items within the rack, preventing logistics items from shifting and blocking the entry of subsequent goods, ensuring the safety and stability of logistics item transportation and storage, as well as the continuity of the sorting process. Attached Figure Description

[0038] Figure 1 This is a schematic diagram of the overall structure of the present invention;

[0039] Figure 2 This is a first schematic diagram showing the cooperation between the transportation mechanism and the storage mechanism of the present invention;

[0040] Figure 3 This is a second schematic diagram showing the cooperation between the transportation mechanism and the storage mechanism of the present invention;

[0041] Figure 4 For the present invention Figure 3 Enlarged structural diagram at point A in the middle;

[0042] Figure 5 This is a schematic diagram of the overall structure of the transportation mechanism of the present invention;

[0043] Figure 6 This is a schematic cross-sectional view of the transportation mechanism of the present invention;

[0044] Figure 7 This is a schematic cross-sectional view of the storage mechanism of the present invention;

[0045] Figure 8 This is a schematic diagram of the side structure of the storage mechanism of the present invention;

[0046] Figure 9 This is a schematic diagram of the overall structure of the data entry component of this invention;

[0047] Figure 10 This is a third schematic diagram illustrating the cooperation between the transportation mechanism and the storage mechanism of the present invention;

[0048] Figure 11 For the present invention Figure 9 Enlarged structural diagram at point B;

[0049] Figure 12 This is a schematic diagram of the connection structure between the limiting plate and the elastic element of the present invention.

[0050] In the diagram: 10. Swing wheel sorter; 11. Side baffle; 20. Collection frame; 30. Rotary drum; 31. Drive motor; 32. Limit stop bar; 33. Transport plate; 34. Buffer; 35. Push rod; 40. Shelf; 41. Revolving door; 42. Horizontal partition; 43. Input motherboard; 431. Camera; 432. Sweeping dock; 433. Telescopic rod; 44. Limit plate; 45. Elastic component; 46. Cam; 47. Through groove; 50. Drive belt; 60. Logistics component. Detailed Implementation

[0051] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0052] Example 1

[0053] refer to Figures 1 to 6 A preferred embodiment of the present invention for logistics management will be described in detail below: It includes a plurality of logistics components 60, a swing wheel sorting machine 10 for automatically sorting the plurality of logistics components 60, and side baffles 11 for restricting the movement of the logistics components 60. The notches in the side baffles 11 correspond to a plurality of transport plates 33 of the transport mechanism, so that the logistics components 60 sorted from the swing wheel sorting machine 10 can fall directly and vertically onto the transport plates 33 after being blocked and adjusted by the side baffles 11, avoiding deviation. It includes:

[0054] Several storage mechanisms are respectively set on both sides of the swing wheel sorting machine 10, including a shelf 40, several input components and a limiting plate 44, for storing the corresponding logistics items 60 and inputting information through the input components, providing data support for subsequent inventory management and goods traceability, and avoiding errors and delays caused by manual input.

[0055] Several transport mechanisms are respectively arranged between the swing wheel sorting machine 10 and the corresponding storage mechanism, including a rotating drum 30, several transport plates 33, and a drive belt 50. These mechanisms receive the logistics items 60 sorted by the swing wheel sorting machine 10 via the transport plates 33, transport the corresponding logistics items 60 to the shelf 40 for storage via the rotation of the rotating drum 30, and use the drive belt 50 to drive the limiting plate 44 to horizontally strike all the logistics items 60 located within the shelf 40, preventing the logistics items 60 from shifting and affecting the entry of subsequent logistics items 60, thereby ensuring unobstructed storage channels and improving the efficiency of automatic sorting and storage. Furthermore, to prevent the drive belt 50 from slipping during transmission, it can be configured such that both ends of the drive belt 50 are connected to pulleys for transmission, and the top of the rotating drum 30 and the top of the shelf 40 are respectively fixedly connected to these two pulleys to transmit power, thus avoiding the situation where the drive belt 50 slips and fails to transmit power smoothly.

[0056] Also includes:

[0057] The collection box 20 is placed at the end of the swing wheel sorter 10 to collect the logistics items 60 that have not been sorted by the swing wheel sorter 10. Goods that the swing wheel sorter 10 cannot sort will generally have logistics items 60 with abnormal information or incorrect size. Therefore, they need to be collected in the collection box 20 to avoid such logistics items 60 remaining on the swing wheel sorter 10 and affecting the overall operation. At the same time, it is convenient for staff to handle them uniformly afterward and ensure the continuity of the sorting line.

[0058] The transportation organization also includes:

[0059] The drive motor 31 is located inside the rotating drum 30 and its output end is fixedly connected to the rotating drum 30. It is used to drive the rotating drum 30 to rotate and also to precisely control the rotation angle and speed of the rotating drum 30 through the sorting instructions of the logistics component 60, so as to achieve precise docking between the transport plate 33 and the storage mechanism.

[0060] Several limiting rods 32 are fixedly connected to the outer sidewall of the top of the rotating drum 30 to prevent the logistics item 60 sorted by the swing wheel sorter 10 from falling into the end of the transport plate 33 and tipping over. The limiting rods 32 can be configured so that their projection is located between two adjacent transport plates 33, so that the logistics item 60 blocked by the limiting rods 32 can fall into the middle of the transport plate 33 adjacent to the limiting rods 32, ensuring the safety and stability of the transportation of the logistics item 60.

[0061] Several buffer components 34 are fixedly connected at one end to the rotating drum 30, and at the other end to the upper and lower side walls of the corresponding transport plate 33 extending into the rotating drum 30. They are symmetrically distributed with respect to the fixedly connected transport plate 33. The buffer components 34 can specifically be springs. Their symmetrical distribution structure allows the transport plate 33 to receive bidirectional buffering force when receiving the logistics component 60, weakening the impact force when the logistics component 60 falls, reducing the damage to the logistics component 60 caused by the impact, and also preventing the logistics component 60 from bouncing off the transport plate 33 due to excessive impact force when it falls.

[0062] Several push rods 35 are fixedly connected to the side wall at one end of the corresponding rotation direction of the transport plate 33, so that the push rods 35 contact the transport plate 33 and the logistics component 60 on the transport plate 33 before contacting the logistics component 60 that was originally in the shelf 40. This causes the logistics component 60 that was originally in the shelf 40 to move deeper into the shelf 40, leaving the original position for the logistics component 60 that has just followed the transport plate 33 into the shelf 40, thereby completing a new entry of the logistics component 60.

[0063] The outer sides of the rotating drum 30, the limiting stop bar 32, and the pushing rod 35 are all coated with a layer of elastic material, specifically rubber or silicone, which provides cushioning and anti-slip capabilities. This allows the elastic material to buffer the force exerted on the material 60 when it comes into contact with the rotating drum 30 and the limiting stop bar 32 during sorting on the rotating wheel sorting machine 10. This protects the material 60 and prevents it from being "rebounded" and falling to the outside of the bottom transport plate 33, thus preventing it from being transported by the transport plate 33. The elastic material on the outer side of the pushing rod 35 increases the contact area with the material 60 through deformation, preventing damage when pushing the material 60.

[0064] The telescopic rod 433 is configured such that when the sweeping dock 432 detects the presence of the logistics component 60, the output end retracts, and when the logistics component 60 is detected to have moved to its bottom, the output end extends. Specifically, as follows: Figure 4 As shown, when a new logistics item 60 enters the shelf 40 and is recognized by the camera 431 and the scanning dock 432, the output end of the telescopic rod 433 retracts, and the push rod 35 pushes the logistics item 60, which was originally located inside the shelf 40 (also located at the bottom of the input motherboard 43), into a position further inside the shelf 40. The newly entered logistics item 60 then stays in the position of the previous logistics item 60, during which time the camera 431 takes pictures and the scanning dock 432 recognizes and records the data, until the next logistics item 60 arrives.

[0065] The rotating drum 30 is connected to the transmission belt 50, so that the rotational power of the rotating drum 30 can be synchronously transmitted to the transmission belt 50, realizing the power linkage between the transportation mechanism and the storage mechanism.

[0066] The following is the complete working process and working principle of the above embodiments:

[0067] The logistics item 60 is first automatically sorted by the swing wheel sorter 10. After sorting, the logistics item 60 falls to the corresponding transport mechanism. The limit bar 32 in the transport mechanism prevents the logistics item 60 from falling into the end of the transport plate 33, preventing it from tipping over and ensuring that the logistics item 60 falls smoothly into the middle of the transport plate 33. Furthermore, when the logistics item 60 comes into contact with the transport plate 33, the buffer 34 can weaken the impact force of the logistics item 60 falling, reducing the possibility of damage or falling off the logistics item 60. At the same time, the rotary drum 30 precisely controls the rotation angle and speed according to the sorting instructions, so that the transport plate 33 is precisely aligned with the corresponding storage mechanism. During the rotation of the rotary drum 30, the transport plate 33 rotates and transports the logistics item 60 to the shelf 40. The push rod 35 at the end of the transport plate 33 contacts the logistics item 60 already stored in the shelf 40 before the transport plate 33, causing the original logistics item 60 to move deeper into the shelf 40, making room for the new logistics item 60. When the scanning dock 432 of the input component identifies a new logistics item 60, the output end of the telescopic rod 433 retracts, without affecting the original logistics item 60 being pushed and moved. When the new logistics item 60 moves to the bottom of the input mainboard 43, the output end of the telescopic rod 433 extends, working with the camera 431 to capture information about the logistics item 60 and the scanning dock 432 to identify and input information, completing information verification and status update. Logistics items 60 that are not sorted by the swing wheel sorter 10 are collected and stored in the collection box 20 at the end, ensuring the smooth and efficient operation of the entire sorting and transportation process. At the same time, the drive motor 31 drives the rotating drum 30 to rotate, and the rotational power of the rotating drum 30 is synchronously transmitted to the transmission belt 50, realizing the power linkage between the transportation mechanism and the storage mechanism.

[0068] Example 2

[0069] refer to Figures 1 to 4 , Figures 7 to 12 The storage mechanism further includes:

[0070] Several rotating doors 41 are located on the side of the shelf 40 away from the swing wheel sorting machine 10, allowing staff to conveniently access the logistics items 60 within the shelf 40. When closed, the rotating doors create a sealed storage environment, preventing dust and debris from entering and contaminating the logistics items 60, while also preventing accidental drops during storage, ensuring the safety and cleanliness of the stored logistics items 60. Furthermore, the center of the rotating doors 41 can be made of transparent material, allowing staff to directly observe the information of the logistics items 60 stored within the shelf 40 through the transparent material.

[0071] Several horizontal partitions 42 are horizontally arranged inside the shelf 40, dividing the interior of the shelf 40 into several horizontal spaces for storing different logistics items 60. The spacing of the horizontal partitions 42 can be adjusted according to the size and specifications of the logistics items 60, realizing flexible division of the internal space of the shelf 40. This allows logistics items 60 of different types, destinations, and sizes to be stored separately, which facilitates quick retrieval and storage, and makes full use of the vertical space of the shelf 40 to increase storage capacity.

[0072] Several elastic components 45 are disposed on the side of the shelf 40 near the swing wheel sorting machine 10, with one end fixedly connected to the inner wall of the shelf 40 and the other end fixedly connected to the limiting plate 44. These components provide elasticity to the limiting plate 44, allowing it to quickly return to its original position after striking the tilted logistics item 60, thus preparing for the next sorting action. The elasticity also prevents excessive striking force from damaging the logistics item 60 and can pull the limiting plate 44 to prevent it from displacing too much and striking the normally placed logistics item 60, causing it to shift.

[0073] Cam 46 is rotatably connected to the top of the shelf 40 and is connected to the transmission belt 50. According to its own eccentric structure, it can periodically push the limiting plate 44 to make horizontal reciprocating motion during rotation, so as to continuously strike the logistics component 60 inside the shelf 40 and prevent it from tilting inside the shelf 40 and blocking the entry of subsequent logistics components 60.

[0074] Several through slots 47 are provided on the side wall of the corresponding shelf 40 near the transport mechanism to allow the corresponding transport plate 33 to pass through. They also work with the side wall of the shelf 40 to block the logistics component 60 located on top of the transport plate 33 into the shelf 40. The size of the through slots 47 matches the thickness and width of the corresponding transport plate 33 to ensure that the transport plate 33 can pass through smoothly.

[0075] The input component includes:

[0076] The input motherboard 43 is fixedly connected to the bottom of the corresponding horizontal partition 42 near the end of the corresponding transportation mechanism;

[0077] Camera 431 is fixedly connected to the bottom of the input motherboard 43 near the transport mechanism. It is used to photograph the logistics item 60 entering the shelf 40 and upload the results. Specifically, camera 431 can be equipped with a high-definition wide-angle lens, which can completely capture the appearance, labels, and other information of the logistics item 60. The uploaded image data can serve as a visual record of the storage status of the logistics item 60, facilitating remote monitoring of the goods by staff. Furthermore, in case of information identification anomalies, the cause of the problem can be traced through the image.

[0078] The scanning dock 432 is fixedly connected to the bottom of the input main board 43 near the end of the transportation mechanism. It is used to identify the information of the logistics item 60 entering the shelf 40. It works with the input main board 43 to complete the verification and status update of the input information, thereby replacing manual scanning and input, greatly improving work efficiency, and avoiding information errors caused by manual operation.

[0079] The telescopic rod 433 is located at the bottom of the input motherboard 43 at the end away from the transportation mechanism. It is used to extend the output end to block the logistics item 60 from quickly entering the shelf 40, so that the camera 431 and the scanning dock 432 cannot record the information of the logistics item 60. At the same time, it can retract the output end without affecting the entry of the logistics item 60 for information recording.

[0080] The limiting plate 44 is slidably connected to the shelf 40, and the top of the limiting plate 44 extends to the outer side of the top of the shelf 40. The cam 46 rotates and moves horizontally within the shelf 40 so that the top of the limiting plate 44 can effectively contact the cam 46 to receive the power transmitted by the logistics item 60. During the horizontal displacement, it can cover the entire storage area within the shelf 40, ensuring that all tilted logistics items 60 can be knocked into place and avoiding dead corners.

[0081] Several transport plates 33 are respectively set at different heights to match the heights of several horizontal partitions 42. The end of each transport plate 33 near the rotating drum 30 extends into the interior of the rotating drum 30 and is rotatably connected to the rotating drum 30 in the vertical direction. All transport plates 33 cannot overlap from a top-view perspective. This height-matching design between the rotating drum 30 and the corresponding horizontal partitions 42 allows the logistics item 60 to be directly transported from the rotating drum 30 to the corresponding storage layer without the need for an additional lifting mechanism, simplifying the transportation process and improving transportation efficiency. Simultaneously, by ensuring that all transport plates 33 cannot overlap from a top-view perspective, the overlapping of adjacent transport plates 33, which would affect the reception of the logistics item 60, is avoided, while also maximizing the area of ​​the transport plates 33 to guarantee the receiving capacity of the logistics item 60.

[0082] The following is the complete working process and working principle of the above embodiments:

[0083] After being sorted by the wheel sorter 10, the logistics item 60 is sent into the shelf 40 by the transport mechanism. Specifically, the push rod 35 at the end of the transport plate 33 first pushes the existing logistics item 60 in the shelf 40 to move deeper, and then passes through the through slot 47 to place the logistics item 60 into the shelf 40. At this time, when the scanning dock 432 in the data entry component recognizes the new logistics item 60, the telescopic rod 433 retracts. After the new logistics item 60 moves to the bottom of the data entry main board 43, the telescopic rod 433 extends to a limit position, allowing the camera 431 to capture the image, the scanning dock 432 to recognize the information, and complete the verification and update. At the same time, the cam 46 rotates periodically to push the limit plate 44, which is slidably connected to the shelf 40. The limit plate 44 provides elasticity to assist its horizontal reciprocating movement, continuously striking the tilted logistics item 60 in the shelf 40 to prevent it from shifting. Workers can access goods through the rotating door 41 on the side of the shelf 40 away from the sorter.

[0084] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A logistics rack for logistics management, comprising a plurality of logistics components (60), a swing wheel sorting machine (10) for automatically sorting the plurality of logistics components (60), and side baffles (11) for restricting the movement of the logistics components (60), characterized in that, include: Several storage mechanisms are respectively set on both sides of the swing wheel sorting machine (10), including a shelf (40), several input components and a limiting plate (44), for storing the corresponding logistics items (60) and inputting information through the input components; Several transport mechanisms are respectively set between the swing wheel sorting machine (10) and the corresponding storage mechanism, including a rotating drum (30), several transport plates (33) and a transmission belt (50), for receiving the logistics items (60) sorted by the swing wheel sorting machine (10) through several transport plates (33), transporting the corresponding logistics items (60) to the shelf (40) for storage by rotating the rotating drum (30), and using the transmission of the transmission belt (50) to drive the limiting plate (44) to horizontally strike all the logistics items (60) located in the shelf (40) to prevent the logistics items (60) from shifting and affecting the entry of subsequent logistics items (60).

2. The logistics rack for logistics management according to claim 1, characterized in that, Also includes: A collection box (20) is placed at the end of the balance wheel sorter (10) to collect the logistics items (60) that have not been sorted by the balance wheel sorter (10).

3. The logistics rack for logistics management according to claim 1, characterized in that, The storage mechanism also includes: Several rotating doors (41) are located on the side of the shelf (40) away from the swing wheel sorter (10); Several horizontal partitions (42) are horizontally arranged inside the shelf (40) to divide the inside of the shelf (40) into several horizontal spaces for storing different logistics items (60). Several elastic components (45) are provided on the side of the shelf (40) near the swing wheel sorting machine (10), with one end fixedly connected to the inner wall of the shelf (40) and the other end fixedly connected to the limiting plate (44) to provide elasticity to the limiting plate (44); The cam (46) is rotatably connected to the top of the shelf (40) and is connected to the drive belt (50) for transmission. Several through slots (47) are opened on the side wall of the corresponding shelf (40) near the transport mechanism to accommodate the corresponding transport plate (33) to pass through, and cooperate with the side wall of the shelf (40) to block the logistics component (60) located on the top of the transport plate (33) into the shelf (40).

4. A logistics rack for logistics management according to claim 3, characterized in that, The input component includes: The motherboard (43) is fixedly connected to the bottom of the corresponding horizontal partition (42) near the end of the corresponding transportation mechanism; A camera (431) is fixedly connected to the bottom of the input motherboard (43) near the end of the transportation mechanism, and is used to photograph the logistics item (60) entering the shelf (40) and upload the photographing results; The scanning dock (432) is fixedly connected to the bottom of the input motherboard (43) near the end of the transportation mechanism. It is used to identify the information of the logistics item (60) entering the shelf (40) and cooperate with the input motherboard (43) to complete the verification and status update of the input information. The telescopic rod (433) is located at the bottom of the input mainboard (43) at the end away from the transport mechanism.

5. A logistics rack for logistics management according to claim 3, characterized in that: The limiting plate (44) is slidably connected to the shelf (40), and the top of the limiting plate (44) extends to the outer side of the top of the shelf (40), and is horizontally displaced within the shelf (40) by the rotation of the cam (46).

6. A logistics rack for logistics management according to claim 3, characterized in that: Several transport plates (33) are respectively set at different heights to match the height of several horizontal partitions (42), and one end of the transport plate (33) near the rotating cylinder (30) extends into the interior of the rotating cylinder (30) and is rotatably connected to the rotating cylinder (30) in the vertical direction. All the transport plates (33) cannot overlap in a top view.

7. A logistics rack for logistics management according to claim 1, characterized in that, The transportation organization also includes: A drive motor (31) is installed inside the rotating drum (30), and its output end is fixedly connected to the rotating drum (30) to drive the rotating drum (30) to rotate. Several limiting stops (32) are fixedly connected to the outer side wall of the top of the rotating drum (30) to prevent the logistics parts (60) sorted from the swing wheel sorter (10) from falling into the end of the transport plate (33) and tipping over; Several buffer components (34) are fixedly connected at one end to the rotating drum (30) and at the other end to the upper and lower side walls of the corresponding transport plate (33) extending into the rotating drum (30), and are symmetrically distributed with respect to the fixedly connected transport plates (33); Several push rods (35) are fixedly connected to the side wall at one end of the corresponding transport plate (33) in the rotation direction.

8. A logistics rack for logistics management according to claim 7, characterized in that: The outer sides of the rotating drum (30), the limiting stop (32), and the pushing rod (35) are all covered with a layer of elastic material.

9. A logistics rack for logistics management according to claim 4, characterized in that: The telescopic rod (433) is configured such that when the sweeping dock (432) detects the presence of the logistics item (60), the output end retracts, and when the logistics item (60) is detected to have moved to its bottom, the output end extends.

10. A logistics rack for logistics management according to claim 1, characterized in that: The rotating drum (30) is connected to the transmission belt (50) for transmission.