Logistics classification management device

By using a rotating partition and sliding plate design in the logistics classification management device, the overall deceleration problem caused by the buffer belt was solved, enabling the classification management of large and small packages and improving work efficiency.

CN223988770UActive Publication Date: 2026-03-13SHANDONG NORMAL UNIV
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-03
Publication Date
2026-03-13

AI Technical Summary

Technical Problem

When existing logistics sorting equipment uses buffer belts, it causes all packages to slow down, reducing the efficiency of handling small packages.

Method used

A logistics classification management device was designed. By setting rotatable partitions and sliding plates in the conveyor compartment, combined with a rotary mechanism and damping rod, it is possible to classify and manage packages of different weights, with light and heavy packages being transported through different paths.

Benefits of technology

It enables the slow descent of large packages and the rapid descent of small packages, avoiding damage to large packages and improving overall work efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a logistics classification management device, and belongs to the technical field of logistics. Comprising a supporting frame, a conveying management mechanism and a swing mechanism, a conveying belt is installed on the supporting frame, the conveying management mechanism comprises a conveying bin, the conveying bin is installed on the outer side face of the supporting frame, a sliding roller is installed on the inner side of the conveying bin, and a sliding plate is installed on one side of the interior of the conveying bin; a partition plate is further arranged in the conveying bin, and one end of the partition plate is arranged on one side of the sliding plate. The rotatable partition plate is arranged on the conveying bin, the sliding plate is arranged at one end of the interior of the conveying bin, and the initial end of the partition plate makes contact with one side face of the sliding plate, so that small-weight packages can slide to the sliding plate to rapidly fall, large-weight packages can slide on the sliding rollers, the partition plate is pushed, and the large-weight packages slowly fall; and according to the device, the falling speed of the parcels can be controlled in a classified mode, and the working efficiency is improved.
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Description

Technical Field

[0001] This utility model relates to the field of logistics technology, and more specifically, to a logistics classification management device. Background Technology

[0002] With the development of society, more and more people prefer to shop online, increasing the volume of goods. These goods are concentrated in logistics stations, which need to send these packages to different destinations. To facilitate the screening of packages by region, intelligent identification equipment and conveying equipment are combined. The intelligent equipment identifies the region of the package, and the conveying equipment transports the package to the collection location, thus realizing the classification and management of packages.

[0003] Currently, when the equipment is in use, a buffer belt is installed on the side of the conveyor to slow down large and fragile packages, allowing them to move slowly to the collection device. However, because of the buffer belt, all packages slow down when they reach the buffer belt, while small packages do not need to slow down, thus reducing work efficiency. Utility Model Content

[0004] To overcome the above deficiencies, this utility model provides a logistics classification management device that overcomes or at least partially solves the above technical problems.

[0005] This utility model is implemented as follows:

[0006] This utility model provides a logistics classification management device, including a support frame, and a conveyor belt is installed on the support frame;

[0007] The conveying management mechanism includes:

[0008] A conveying bin is installed on the outer side of the support frame, and a sliding roller is installed on the inner side of the conveying bin;

[0009] A sliding plate is installed on one side inside the conveying chamber, and a partition is also provided inside the conveying chamber, with one end of the partition located on one side of the sliding plate;

[0010] A rotary mechanism, installed on the conveyor bin, is used to control the partitions to return to their original position and continue the sorting and conveying of packages.

[0011] In a preferred embodiment, the rotary mechanism includes a groove, a round rod, and a sliding block. The groove is located on one side of the conveying chamber, and the round rod is stably installed inside the groove.

[0012] In a preferred embodiment, a sliding block is stably mounted on the outside of the round rod. The sliding block is disposed inside the groove and slidably connected to the inside of the groove. A connecting rod is rotatably mounted on one side of the sliding block, and one end of the connecting rod is rotatably connected to the outer surface of the partition.

[0013] In a preferred embodiment, a damping rod is also stably mounted on the inner wall of the groove, and the telescopic end of the damping rod is stably connected to the outer surface of the sliding block.

[0014] In a preferred embodiment, a spring is installed at the bottom of the sliding block, one end of the spring is stably connected to the inner wall of the groove, and the spring is positioned on the outside of the damping rod.

[0015] In a preferred embodiment, a partition is rotatably mounted inside the conveying chamber, and the bottom of the partition is slidably connected to the outer surface of the sliding roller.

[0016] In a preferred embodiment, a rectangular platform is stably installed at one end of the conveying chamber, and the surface of the rectangular platform is fitted and connected to the bottom end of the conveying chamber.

[0017] In a preferred embodiment, a positioning frame is stably mounted on the top of the support frame, and an infrared identifier is stably mounted on the top of the positioning frame.

[0018] The logistics classification management device provided by this utility model has the following beneficial effects:

[0019] 1. By installing a rotatable partition on the conveyor bin and a sliding plate at one end inside the conveyor bin, one end of the partition initially contacts one side of the sliding plate. This allows small packages to slide onto the sliding plate and fall quickly, while heavy packages slide on the sliding roller and push the partition to fall slowly, avoiding damage to large packages. This device can classify and control the falling speed of packages, improving work efficiency.

[0020] 2. A groove is provided on the inner wall of the conveying compartment, and a round rod is installed inside the groove. The sliding block slides on the round rod. When the partition rotates in the direction of the groove in the conveying compartment, it controls the linkage to rotate and drives the sliding block to move and compress the spring. When the partition moves in the opposite direction, the spring rebound pushes the sliding block to move, so that the partition can return to the initial position so that the package sorting and management can continue. Attached Figure Description

[0021] To more clearly illustrate the technical solutions of the embodiments of this utility model, the drawings used in the embodiments will be briefly introduced below. It should be understood that the following drawings only show some embodiments of this utility model and should not be regarded as a limitation of the scope. For those skilled in the art, other related drawings can be obtained from these drawings without creative effort.

[0022] Figure 1 This is a schematic diagram of the structure of this utility model;

[0023] Figure 2 This is a schematic diagram of the partition structure of this utility model;

[0024] Figure 3 This is a schematic diagram of the conveyor bin structure of this utility model;

[0025] Figure 4 This is a schematic diagram of the inner wall structure of the conveying bin of this utility model.

[0026] In the diagram: 1. Support frame; 2. Conveyor belt; 3. Conveying management mechanism; 31. Conveying bin; 311. Sliding roller; 32. Sliding plate; 321. Partition plate; 4. Rotary mechanism; 41. Groove; 42. Round rod; 43. Sliding block; 6. Connecting rod; 7. Damping rod; 8. Spring; 9. Rectangular platform; 10. Positioning frame; 11. Infrared detector. Detailed Implementation

[0027] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this utility model, not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this utility model.

[0028] Example

[0029] Reference Figures 1-4 This utility model provides a technical solution: a logistics classification management device, including a support frame 1, a conveying management mechanism 3, and a rotary mechanism 4. A conveyor belt 2 is installed on the support frame 1. The conveying management mechanism 3 includes a conveying bin 31, which is installed on the outer side of the support frame 1. A sliding roller 311 is installed on the inner side of the conveying bin 31. A sliding plate 32 is installed on one side inside the conveying bin 31. A partition 321 is also provided inside the conveying bin 31, with one end of the partition 321 located on one side of the sliding plate 32. The rotary mechanism 4 is installed on the conveying bin 31 to control the partition 321 to return to the correct position and continue the classification and conveying of packages.

[0030] In a preferred embodiment, the rotary mechanism 4 includes a groove 41, a round rod 42, and a sliding block 43. The groove 41 is located on one side of the conveying chamber 31, and the round rod 42 is stably installed inside the groove 41. The sliding block 43 is stably installed outside the round rod 42. The sliding block 43 is located inside the groove 41 and is slidably connected to the inside of the groove 41. A connecting rod 6 is rotatably installed on one side of the sliding block 43. One end of the connecting rod 6 is rotatably connected to the outer surface of the partition 321. A damping rod 7 is also stably installed on the inner wall of the groove 41. The telescopic end of the damping rod 7 is stably connected to the outer side of the sliding block 43. A spring 8 is installed at the bottom of the sliding block 43. One end of the spring 8 is stably connected to the inner wall of the groove 41 and is located on the outer side of the damping rod 7. A partition 321 is rotatably installed inside the conveying chamber 31. The bottom of the partition 321 is slidably connected to the outer surface of the sliding roller 311.

[0031] In actual use, the partition 321 will be pushed by the heavy package, causing it to move closer to the inner wall of the conveyor 31. After the package leaves the position of the partition 321, the partition 321 will no longer have the squeezing force. At this time, the spring 8 will rebound. When the spring 8 rebounds, it will push the sliding block 43 to move inside the groove 41. Under the restriction of the damping rod 7, the partition 321 will slowly move back to the initial position. The damping rod 7 used in this device is a damping rod with two-stage telescopic function, which can meet the long-distance movement of the sliding block 43. In this way, the partition 321 can be straightened, and the package classification management can continue.

[0032] A rectangular platform 9 is stably installed at one end of the conveyor 31. The surface of the rectangular platform 9 is fitted and connected to the bottom of the conveyor 31. By setting the rectangular platform 9 at the end of the conveyor 31, the packages conveyed and falling from the conveyor 31 can be directly moved to the rectangular platform 9, making it convenient for staff to take the packages from the rectangular platform 9.

[0033] By stably installing a positioning frame 10 at the top of the support frame 1, and stably installing an infrared reader 11 at the top of the positioning frame 10, the infrared reader 11 can be installed above the support frame 1 to identify the information on the package, identify the destination of the package, and move the corresponding diversion port to the corresponding conveyor 31 for transport, thus classifying and managing the package.

[0034] Specifically, the working process or working principle of a logistics classification management device is as follows: Currently, when the equipment is in use, a buffer belt is installed on the side of the conveyor to slow down some large and fragile packages and make them move slowly to the collection device. However, due to the setting of the buffer belt, all packages slow down when they reach the buffer belt, while some small packages do not need to slow down, thus reducing work efficiency. Therefore, this device was designed to solve this problem.

[0035] This device can classify and collect goods of different weights, allowing lighter goods to move quickly and heavier goods to move slowly. Specifically, the device is connected to an external power source, and the logistics package is placed on the conveyor belt 2. The conveyor belt 2 then transports the package. During transport, the information side of the package must face upwards so that the infrared sensor 11 can scan the package information, including its weight and destination. The package is then transported by the conveyor belt 2 to the distribution point. A pushing device on the support frame 1 then pushes the package to its destination.

[0036] After being diverted, the packages will move into the interior of the conveying chamber 31. Several sliding rollers 311 are installed inside the conveying chamber 31, which can rotate under the influence of the sliding of the packages.

[0037] When the package contains light-weight goods, it enters the conveyor 31 through the diversion port and moves to the outer side of the partition 321. The light-weight goods cannot push the partition 321 and will slide along the outer side of the partition 321 and slide to the upper surface of the sliding plate 32. The sliding plate 32 is a smooth stainless steel panel and is set to an inclined state. When the light-weight goods slide to the upper surface of the sliding plate 32, they can slide down quickly and slide to the upper surface of the rectangular platform 9, where the staff will collect the package.

[0038] When the package contains heavy goods, it enters the inner side of the conveyor 31 through the diversion port. When the package comes into contact with the outer surface of the partition 321, the kinetic energy generated by the movement of the package will push the partition 321. As the package moves downward inside the conveyor 31, it will continue to push the partition 321, causing the partition 321 to rotate. When the partition 321 rotates, it will push the connecting rod 6, causing it to rotate as well, and push the sliding block 43 to slide on the round rod 42. This will compress the spring 8, allowing the partition 321 to move closer and closer to one side wall of the conveyor 31. During this process, the package will slowly move downward and slide down on the sliding roller 311 until it slides onto the upper surface of the rectangular platform 9. The staff will then remove the goods from the rectangular platform 9, thus protecting heavy goods, especially fragile items, from breakage.

[0039] Finally, after the package leaves the side of the partition 321, the compressed spring 8 will automatically rebound and push the sliding block 43 to slide on the round rod 42. The sliding block 43 will slow down its movement speed due to the restriction of the damping rod 7. During the movement, the sliding block 43 will control the connecting rod 6 to rotate and push the partition 321 to the initial position so that the package can continue to be sorted and managed.

Claims

1. A logistics sorting management apparatus characterized by comprising: It comprises a support frame (1), and a conveying belt (2) is installed on the support frame (1); A conveying management mechanism (3) comprises: A conveying bin (31) is installed on the outer side of the support frame (1), and a sliding roller (311) is installed on the inner side of the conveying bin (31); A sliding plate (32) is installed on the inner side of the conveying bin (31), and a partition plate (321) is further arranged inside the conveying bin (31), one end of the partition plate (321) being arranged on one side of the sliding plate (32); A rotating mechanism (4) is installed on the conveying bin (31) to control the rotation of the partition plate (321) and continue to classify and convey the packages.

2. The logistics sorting management device according to claim 1, characterized in that, The rotating mechanism (4) comprises a groove (41), a round rod (42) and a sliding block (43), the groove (41) being arranged on the side of the conveying bin (31), and the round rod (42) being stably installed inside the groove (41).

3. The logistics sorting management device according to claim 2, characterized in that, The sliding block (43) is stably installed on the outer side of the round rod (42), the sliding block (43) being arranged inside the groove (41) and being in sliding connection with the inner side of the groove (41), one side of the sliding block (43) being rotatably connected with a connecting rod (6), one end of the connecting rod (6) being rotatably connected with the outer surface of the partition plate (321).

4. The logistics sorting management device according to claim 3, characterized in that, The inner wall of the groove (41) further stably installs a damping rod (7), the telescopic end of the damping rod (7) being stably connected with the outer side of the sliding block (43).

5. The logistics sorting management device according to claim 4, characterized in that, A spring (8) is installed at the bottom of the sliding block (43), one end of the spring (8) being stably connected with the inner wall of the groove (41), and the spring (8) being arranged on the outer side of the damping rod (7).

6. The logistics sorting management device according to claim 5, characterized in that, The partition plate (321) is rotatably installed inside the conveying bin (31), the bottom of the partition plate (321) being in sliding connection with the outer surface of the sliding roller (311).

7. The logistics sorting management device according to claim 6, characterized in that, A rectangular table (9) is stably installed at one end of the conveying bin (31), the table top of the rectangular table (9) being in abutting connection with the bottom end of the conveying bin (31).

8. The logistics sorting management device according to claim 7, characterized in that, A positioning frame (10) is stably installed at the top of the support frame (1), and an infrared recognizer (11) is stably installed at the top of the positioning frame (10).