Warehouse logistics automatic cargo allocation device

By designing an automated loading and unloading device that includes transport racks, transfer components, and monitoring components, the problem of limited channel expansion in existing technologies has been solved, enabling efficient automated loading and unloading of goods and flexible transportation, thereby improving the transportation efficiency of warehousing and logistics.

CN224241856UActive Publication Date: 2026-05-15HEFEI NO 1 INTELLIGENT TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HEFEI NO 1 INTELLIGENT TECH CO LTD
Filing Date
2025-04-01
Publication Date
2026-05-15

AI Technical Summary

Technical Problem

The existing automated warehousing and logistics distribution equipment has limited access channels, resulting in low warehousing and logistics transportation efficiency.

Method used

An automated cargo sorting device is designed, comprising a transport frame, a transfer component, and a monitoring component. It utilizes a first electric conveyor belt, a scanner, and a touch screen all-in-one machine to achieve cargo identification and automated sorting. Multiple sorting frames provide multiple selectable channels, and the position of the conveyor belt is adjusted using a moving component and an electric linear slide to improve transport efficiency.

Benefits of technology

It enables highly efficient and automated cargo handling, improves the transportation efficiency and flexibility of warehousing and logistics, and can flexibly control the transfer of goods to designated loading racks according to demand.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the field of warehouse logistics cargo allocation equipment, and discloses a warehouse logistics automatic cargo allocation device which comprises a conveying rack, a first electric conveying belt is arranged on the surface of the top of the conveying rack, and a transferring assembly is arranged at one end of the conveying rack. A monitoring assembly is arranged at the position, close to the transferring assembly, of one end of the conveying rack and used for monitoring and recognizing goods codes of material conveying on the transferring assembly. A plurality of groups of cargo allocation racks are arranged on one side of the transfer assembly, a third electric conveying belt is arranged on the top surface of each group of cargo allocation racks, the third electric conveying belts are used for the cargo allocation racks to realize cargo allocation of warehouse logistics cargoes, the monitoring assembly comprises a portal frame, and a scanner is arranged in the middle of the top surface of an inner cavity of the portal frame. According to the utility model, the warehouse logistics can be automatically transported and allocated, so that the high-efficiency automation efficiency of the warehouse logistics can be improved.
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Description

Technical Field

[0001] This utility model relates to the field of warehousing and logistics distribution equipment, specifically to an automated warehousing and logistics distribution device. Background Technology

[0002] Warehouse logistics distribution equipment is an essential device for allocating transported goods during the logistics process. Its purpose is to distribute different types of transported goods. An existing patent describes an automated warehouse logistics distribution device, patent application number CN202120628596.5. The device uses a movable rod to drive a drive screw rod to rotate. The drive screw rod drives a driven screw rod to rotate through a rotating block. The driven screw rod drives the protective plates to move, thus opening the two protective plates and allowing the goods stuck at the entrance to enter. When the user releases the movable rod, the spring returns to its original position. When the scanner scans the goods, the electric telescopic rod moves up and down.

[0003] However, its channels are not convenient for users to expand, thus preventing efficient and automated order fulfillment in warehousing and logistics, which in turn reduces the efficiency of warehousing and logistics transportation. Therefore, we propose an automated order fulfillment device for warehousing and logistics to solve the above-mentioned problems. Utility Model Content

[0004] To address the aforementioned problems, this utility model provides an automated warehousing and logistics distribution device, which can automate the transportation and distribution of warehousing and logistics, thereby improving the efficiency of automated warehousing and logistics.

[0005] The technical solution of this utility model:

[0006] An automated warehousing and logistics distribution device includes a transport frame, a first electric conveyor belt on the top surface of the transport frame, a transfer component at one end of the transport frame, and a monitoring component at one end of the transport frame and near the transfer component. The monitoring component is used to monitor and identify the cargo code of the materials transported on the transfer component.

[0007] The transfer component is provided with multiple sets of sorting racks on one side. Each set of sorting racks is equipped with a third electric conveyor belt on its top surface. The third electric conveyor belt is used by the sorting rack to sort warehouse logistics goods.

[0008] Furthermore, the monitoring component includes a gantry, a scanner is provided in the middle of the top surface of the inner cavity of the gantry, and a touch screen all-in-one machine is provided on one side of the outer wall of the gantry.

[0009] Furthermore, the transfer assembly includes a first transfer frame, the inner cavity of which is provided with a second electric conveyor belt, a pallet is provided at the bottom of the first transfer frame, and a moving component is provided at the bottom of the pallet.

[0010] Furthermore, the moving component includes an electric linear slide and a second transfer frame disposed on the bottom surface of the electric linear slide, the output end of the electric linear slide being connected to the bottom surface of the pallet.

[0011] Furthermore, the bottom ends of the two side walls of the gantry frame are respectively connected to the two side walls of the transport frame.

[0012] Furthermore, the first electric conveyor belt, the second electric conveyor belt, and the third electric conveyor belt all run in the same direction.

[0013] Furthermore, the touch screen all-in-one machine is electrically connected to the first electric conveyor belt, the scanner, the second electric conveyor belt, the electric linear slide, and the third electric conveyor belt via wires.

[0014] Compared with existing technologies, the advantages of this utility model are:

[0015] (1) In this scheme, when it is necessary to store or distribute goods in the warehouse, the staff can place the goods on the first electric conveyor belt in the transport rack. Then, the goods can be transported forward by the first electric conveyor belt, so that the goods can pass the position of the monitoring component. Then, the monitoring component can scan and record the identification code on the goods. Finally, the first electric conveyor belt can cool the goods and deliver them to the transfer component. Then, the monitoring component controls the operation of the transfer component, so that the goods on the transfer component can be transported to the third electric conveyor belt in the corresponding distribution rack, thereby completing the automated distribution of goods. Since there are multiple distribution racks, multiple goods storage and logistics selection channels can be conveniently provided, thereby improving the efficiency of efficient automation of storage and logistics.

[0016] (2) In this solution, the scanner and touch screen all-in-one machine can be installed on the gantry in the monitoring component. Then, the scanner can scan and record the identification code of the goods transported on the first electric conveyor belt and send the monitoring data to the touch screen all-in-one machine. The touch screen all-in-one machine can flexibly control the operation of the transfer component according to the needs, so that the goods can be rotated to the designated loading rack, and thus the goods can be efficiently and automatically distributed.

[0017] (3) In this scheme, when the transfer component needs to transfer goods, the second electric conveyor belt on the transfer frame can be turned off by the touch screen all-in-one machine, and then the moving component can be controlled to run, so that the input end of the second electric conveyor belt is aligned with the output end of the first electric conveyor belt, so that the first electric conveyor belt can transport the goods to the second electric conveyor belt. Then, the information is scanned by the scanner, so that the touch screen all-in-one machine can control the operation of the moving component, so that the position of the transfer frame and the second electric conveyor belt can be adjusted by the pallet, so that the second electric conveyor belt can be close to the third electric conveyor belt on the corresponding loading frame. Then, the second electric conveyor belt is turned on, so that the goods can be transferred to the third electric conveyor belt, thus completing the transfer and transportation of the goods. Attached Figure Description

[0018] Figure 1 This is a three-dimensional structural diagram of the present invention.

[0019] Figure 2 This is a schematic diagram of the monitoring component structure of this utility model.

[0020] Figure 3 This is a schematic diagram of the transfer component structure of this utility model.

[0021] Figure 4 This is a side view of the transfer component of this utility model.

[0022] Explanation of the labels in the diagram:

[0023] 1. Transport frame; 2. First electric conveyor belt; 3. Monitoring components; 301. Gantry; 302. Scanner; 303. Touch screen all-in-one machine; 4. Transfer components; 401. First transfer frame; 402. Second electric conveyor belt; 403. Pallet; 404. Electric linear slide; 405. Second transfer frame; 5. Cargo loading frame; 6. Third electric conveyor belt. Detailed Implementation

[0024] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of the present utility model without creative effort are within the protection scope of the present utility model. Example

[0025] Please see Figure 1An automated warehousing and logistics distribution device includes a transport frame 1, a first electric conveyor belt 2 on the top surface of the transport frame 1, a transfer component 4 at one end of the transport frame 1, and a monitoring component 3 at one end of the transport frame 1 and close to the transfer component 4. The monitoring component 3 is used to monitor and identify the cargo code of the material transported on the transfer component 4.

[0026] Multiple sets of loading racks 5 are installed on one side of the transfer component 4. Each loading rack 5 has a third electric conveyor belt 6 on its top surface. The third electric conveyor belt 6 is used by the loading rack 5 to load and distribute warehouse logistics goods.

[0027] When warehousing or logistics distribution is required, staff can place goods on the first electric conveyor belt 2 within the transport rack 1. The goods are then transported forward via the first electric conveyor belt 2, allowing them to pass through the monitoring component 3. The monitoring component 3 then scans and records the identification codes on the passing goods. Finally, the first electric conveyor belt 2 cools the goods and delivers them to the transfer component 4. The monitoring component 3 then controls the operation of the transfer component 4, which transports the goods on the transfer component 4 to the third electric conveyor belt 6 within the corresponding distribution rack 5. This completes the automated distribution process. Since there are multiple distribution racks 5, multiple warehousing and logistics channels can be conveniently provided, thereby improving the efficiency of warehousing and logistics automation.

[0028] See Figure 2 The monitoring component 3 includes a gantry 301. A scanner 302 is installed in the middle of the top surface of the inner cavity of the gantry 301, and a touch screen all-in-one machine 303 is installed on one side of the outer wall of the gantry 301. The scanner 302 and the touch screen all-in-one machine 303 can be installed through the gantry 301 in the monitoring component 3. Then, the scanner 302 can scan and record the identification code of the goods transported on the first electric conveyor belt 2, and send the monitoring data to the touch screen all-in-one machine 303. Through the touch screen all-in-one machine 303, the operation of the transfer component 4 can be flexibly controlled according to the needs, so that the goods can be rotated to the designated loading rack 5, thereby enabling efficient and automated distribution of goods.

[0029] See Figure 3 , Figure 4The transfer component 4 includes a first transfer frame 401, with a second electric conveyor belt 402 installed inside the first transfer frame 401. A pallet 403 is installed at the bottom of the first transfer frame 401, and a moving component is installed at the bottom of the pallet 403. When the transfer component 4 needs to transfer goods, the second electric conveyor belt 402 on the first transfer frame 401 can be shut down via the touch screen all-in-one machine 303, and then the moving component can be controlled to operate. This allows the input end of the second electric conveyor belt 402 to align with the output end of the first electric conveyor belt 402, facilitating the transfer of goods. The electric conveyor belt 2 transports the goods to the second electric conveyor belt 402. Then, the scanner 302 scans the information, which enables the touch screen all-in-one machine 303 to control the operation of the moving components. This allows the pallet 403 to adjust the position of the first transfer frame 401 and the second electric conveyor belt 402, so that the second electric conveyor belt 402 is close to the third electric conveyor belt 6 on the corresponding loading frame 5. Then, the second electric conveyor belt 402 is started to run, thereby transferring the goods to the third electric conveyor belt 6, thus completing the transfer and transportation of the goods.

[0030] See Figure 3 , Figure 4 The moving assembly includes an electric linear slide 404 and a second transfer frame 405 disposed on the bottom surface of the electric linear slide 404. The output end of the electric linear slide 404 is connected to the bottom surface of the pallet 403. The electric linear slide 404 can be installed through the second transfer frame 405 in the moving assembly. Then, the electric linear slide 404 can be moved flexibly according to the control of the touch screen all-in-one machine 303, thereby adjusting the position of the second electric conveyor belt 402.

[0031] See Figure 1 , Figure 2 The bottom ends of the two side walls of the gantry 301 are connected to the two side walls of the transport frame 1, which can improve the stability of the gantry 301 in use.

[0032] See Figure 1 , Figure 3 The first electric conveyor belt 2, the second electric conveyor belt 402 and the third electric conveyor belt 6 all run in the same direction, which facilitates the transportation of goods on each electric conveyor belt.

[0033] See Figure 1 , Figure 3 The touch screen all-in-one machine 303 is electrically connected to the first electric conveyor belt 2, the scanner 302, the second electric conveyor belt 402, the electric linear slide 404 and the third electric conveyor belt 6 via wires, which allows the touch screen all-in-one machine 303 to flexibly control the operation of each device, thereby enabling automated distribution processing of warehousing and logistics and improving the efficiency of warehousing and logistics transportation.

[0034] In use: When it is necessary to carry out warehousing or logistics distribution, the staff can place the goods on the first electric conveyor belt 2 in the transport rack 1. Then, the goods can be transported forward by the first electric conveyor belt 2, so that the goods pass the position of the monitoring component 3. Then, the monitoring component 3 can scan and record the identification code on the goods. Finally, the first electric conveyor belt 2 can cool the goods and deliver them to the transfer component 4. Then, the monitoring component 3 controls the operation of the transfer component 4, so that the goods on the transfer component 4 can be transported to the third electric conveyor belt 6 in the corresponding distribution rack 5, thereby completing the automated distribution of goods. Since there are multiple distribution racks 5, multiple goods storage and logistics selection channels can be provided, thereby improving the efficiency of warehousing and logistics automation.

[0035] The scanner 302 and the touch screen all-in-one machine 303 can be installed on the gantry 301 in the monitoring component 3. The scanner 302 can scan and record the identification code of the goods transported on the first electric conveyor belt 2 and send the monitoring data to the touch screen all-in-one machine 303. The touch screen all-in-one machine 303 can flexibly control the operation of the transfer component 4 according to the needs, so that the goods can be rotated to the designated loading rack 5, thereby enabling efficient and automated distribution of goods.

[0036] When the transfer component 4 needs to transfer goods, the touch screen all-in-one machine 303 can control the second electric conveyor belt 402 on the first transfer frame 401 to shut down, and then control the moving component to operate, so that the input end of the second electric conveyor belt 402 is aligned with the output end of the first electric conveyor belt 2, facilitating the first electric conveyor belt 2 to transport goods onto the second electric conveyor belt 402. Then, by scanning information with the scanner 302, the touch screen all-in-one machine 303 can control the operation of the moving component, thereby adjusting the first transfer frame 401 and the pallet 403. The position of the second electric conveyor belt 402 is adjusted so that it can be brought close to the third electric conveyor belt 6 on the corresponding loading rack 5. Then, the second electric conveyor belt 402 is started to run, thereby transferring the goods to the third electric conveyor belt 6, thus completing the transfer and transportation of the goods. The electric linear slide 404 can be installed through the second transfer rack 405 in the moving assembly. The electric linear slide 404 can then be moved flexibly according to the control of the touch screen all-in-one machine 303, thereby adjusting the position of the second electric conveyor belt 402.

[0037] The above are merely preferred embodiments of this utility model; however, the scope of protection of this utility model is not limited thereto. Any equivalent substitutions or modifications made by those skilled in the art within the scope of the technology disclosed in this utility model, based on the technical solution and its improved concept, should be included within the scope of protection of this utility model.

Claims

1. An automated warehousing and logistics distribution device, comprising a transport frame (1), wherein a first electric conveyor belt (2) is provided on the top surface of the transport frame (1), characterized in that: A transfer component (4) is provided at one end of the transport frame (1), and a monitoring component (3) is provided at one end of the transport frame (1) and near the transfer component (4). The monitoring component (3) is used to monitor and identify the cargo code of the material transported on the transfer component (4). The transfer component (4) is provided with multiple sets of sorting racks (5) on one side. Each set of sorting racks (5) is provided with a third electric conveyor belt (6) on the top surface. The third electric conveyor belt (6) is used for sorting racks (5) to sort warehouse logistics goods.

2. The automated warehousing and logistics distribution device according to claim 1, characterized in that: The monitoring component (3) includes a gantry (301), a scanner (302) is provided in the middle of the top surface of the inner cavity of the gantry (301), and a touch screen all-in-one machine (303) is provided on one side of the outer wall of the gantry (301).

3. The automated warehousing and logistics distribution device according to claim 2, characterized in that: The transfer assembly (4) includes a first transfer frame (401), the inner cavity of the first transfer frame (401) is provided with a second electric conveyor belt (402), the bottom end of the first transfer frame (401) is provided with a pallet (403), and the bottom of the pallet (403) is provided with a moving component.

4. The automated warehousing and logistics distribution device according to claim 3, characterized in that: The moving component includes an electric linear slide (404) and a second transfer frame (405) disposed on the bottom surface of the electric linear slide (404), the output end of the electric linear slide (404) being connected to the bottom surface of the pallet (403).

5. The automated warehousing and logistics distribution device according to claim 2, characterized in that: The bottom ends of the two side walls of the gantry frame (301) are respectively connected to the two side walls of the transport frame (1).

6. The automated warehousing and logistics distribution device according to claim 4, characterized in that: The first electric conveyor belt (2), the second electric conveyor belt (402) and the third electric conveyor belt (6) all run in the same direction.

7. The automated warehousing and logistics distribution device according to claim 6, characterized in that: The touch screen all-in-one machine (303) is electrically connected to the first electric conveyor belt (2), the scanner (302), the second electric conveyor belt (402), the electric linear slide (404), and the third electric conveyor belt (6) via wires.