A logistics sorting device dedicated to clothes

CN224657395UActive Publication Date: 2026-08-21GUANGZHOU FUTURE FIRST HAND NETWORK TECH CO LTD
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Patent Information

Application Number
CN202522389029.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-11-11
Publication Date
2026-08-21
Estimated Expiration
2035-11-11

AI Technical Summary

Technical Problem

衣服物流出库也需要用到物流分拣设备,目前常见的衣服专用的物流分拣设备都是半自动设备,先将装有衣服的货物放于传送带上,然后通过人工对应具体的订单进行拾取并扫描出库,整个出库过程繁琐,且费时费力,只适用于小规模的衣服的物流出库,难以胜任大批量的衣服的物流分拣和出库

Benefits of technology

[0013]本实用新型的有益效果为:通过此衣服专用的物流分拣设备,通过上料机构、检测机构、分拣机构、收料机构和控制系统的配合安装,能快速对每一张出货单的衣服进行识别并分拣,整个过程效率高,且分拣准度高,便于大批量的衣服的物流分拣和出库。

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Abstract

The utility model provides a kind of clothes special logistics sorting equipment, comprising: feeding mechanism, detection mechanism, sorting mechanism, material receiving mechanism and control system;Feeding mechanism includes installation platform, drive motor, feeding belt and two workbenches, drive motor, feeding belt and two workbenches are all set on installation platform, drive motor is used to drive feeding belt, and two workbenches are located at the two sides of feeding belt respectively;Detection mechanism is set on installation platform, and detection mechanism part is located above feeding belt, sorting mechanism is set on the end of detection mechanism away from feeding belt, and material receiving mechanism is located at the two sides of sorting mechanism;Drive motor, detection mechanism, sorting mechanism and material receiving mechanism are all connected with control system electric signal connection.Each invoice of clothes can be quickly identified and sorted, the whole process is efficient, and the sorting accuracy is high, which is convenient for large quantities of clothes logistics sorting and delivery.
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Description

Technical Field

[0001] This utility model relates to the field of logistics equipment technology, and in particular to a logistics sorting device specifically for clothing. Background Technology

[0002] Logistics sorting equipment is specifically designed to improve the efficiency and accuracy of logistics sorting. Clothing logistics outbound also requires sorting equipment. Currently, most common clothing-specific logistics sorting equipment is semi-automatic. Goods containing clothing are first placed on a conveyor belt, and then manually picked up and scanned according to specific orders for outbound processing. The entire outbound process is cumbersome, time-consuming, and labor-intensive, suitable only for small-scale clothing outbound operations, and unsuitable for handling large-volume clothing sorting and outbound. Utility Model Content

[0003] To solve the above problems, the present invention adopts the following technical solution: a logistics sorting device for clothing, comprising: a feeding mechanism, a detection mechanism, a sorting mechanism, a receiving mechanism, and a control system; The feeding mechanism includes a mounting platform, a drive motor, a feeding belt, and two worktables. The drive motor, the feeding belt, and the two worktables are all mounted on the mounting platform. The drive motor is used to drive the feeding belt, and the two worktables are located on both sides of the feeding belt. The detection mechanism is mounted on the mounting platform, and part of the detection mechanism is located above the feeding belt. The sorting mechanism is located at the end of the detection mechanism away from the feeding belt, and the receiving mechanism is located on both sides of the sorting mechanism. The drive motor, the detection mechanism, the sorting mechanism, and the receiving mechanism are all electrically connected to the control system.

[0004] Furthermore, the feeding belt is divided into several placement areas, and the several placement areas are arranged at equal intervals.

[0005] Furthermore, the detection mechanism includes a housing, a first detector, a second detector, a first conveying component, and a second conveying component. The housing, the first conveying component, and the second conveying component are all disposed on the mounting platform. The first conveying component and the second conveying component are spaced apart, and the first detector, the second detector, the first conveying component, and the second conveying component are all located inside the housing.

[0006] Furthermore, the first conveying component includes a first conveying motor and a first conveyor belt, wherein the first conveying motor is used to drive the first conveyor belt.

[0007] Furthermore, the second conveying component includes a second conveying motor and a second conveyor belt, wherein the second conveying motor is used to drive the second conveyor belt.

[0008] Furthermore, the first detector is located above the first conveyor belt.

[0009] Furthermore, the second detector is located above the second conveyor belt.

[0010] Furthermore, the sorting mechanism includes a mounting frame, a conveyor chain, and several sorting components. The conveyor chain is spaced apart from the housing, the mounting frame is disposed on the conveyor chain, and the several sorting components are rotatably disposed on the mounting frame in sequence.

[0011] Furthermore, each of the sorting components includes a sorting motor and a sorting belt, each of the sorting motors and each of the sorting belts is mounted on the mounting frame, each of the sorting motors is used to drive a sorting belt, and the transmission direction of each sorting belt is perpendicular to the transmission direction of the conveyor chain.

[0012] Furthermore, the receiving mechanism includes several receiving positions, several sensors, and several receiving frames. Some of the receiving positions are equidistantly arranged on one side of the conveyor chain, and other receiving positions are equidistantly arranged on the other side of the conveyor chain. Each receiving position is provided with one sensor and one receiving frame.

[0013] The beneficial effects of this utility model are as follows: Through the coordinated installation of this dedicated logistics sorting equipment for clothing, including the feeding mechanism, detection mechanism, sorting mechanism, receiving mechanism and control system, the clothing on each shipping order can be quickly identified and sorted. The whole process is highly efficient and the sorting accuracy is high, which facilitates the logistics sorting and outbound of large quantities of clothing. Attached Figure Description

[0014] The accompanying drawings further illustrate the present invention, but the embodiments in the drawings do not constitute any limitation on the present invention.

[0015] Figure 1 This is a schematic diagram of the overall structure of a logistics sorting device specifically for clothing, provided as an embodiment. Figure 2 for Figure 1 Enlarged diagram of point A in the diagram; Figure 3 This is a schematic diagram of the internal installation of the housing provided in one embodiment. Detailed Implementation

[0016] The technical solution of this utility model will be further described below with reference to the accompanying drawings of the embodiments. This utility model is not limited to the following specific embodiments. It should be noted that, unless otherwise specified, the embodiments and features in the embodiments of this utility model can be combined with each other.

[0017] like Figures 1 to 3 As shown, a logistics sorting device for clothing includes: a feeding mechanism, a detection mechanism, a sorting mechanism, a receiving mechanism, and a control system. The feeding mechanism includes a mounting platform 110, a drive motor, a feeding belt 120, and two workbenches 130. The drive motor, the feeding belt 120, and the two workbenches 130 are all mounted on the mounting platform 110. The drive motor drives the feeding belt 120, and the two workbenches 130 are located on both sides of the feeding belt 120. The detection mechanism is mounted on the mounting platform 110, and part of the detection mechanism is located above the feeding belt 120. The sorting mechanism is located at the end of the detection mechanism away from the feeding belt 120, and the receiving mechanisms are located on both sides of the sorting mechanism. The drive motor, the detection mechanism, the sorting mechanism, and the receiving mechanism are all electrically connected to the control system.

[0018] Specifically, the feeding belt 120 is divided into several placement areas 121, which are equidistantly arranged. In other words, simply drawing lines on the feeding belt 120 divides the entire loop into several equidistant placement areas 121, meaning that one garment can be placed in each placement area 121. The detection mechanism includes a housing 210, a first detector 220, a second detector 230, a first conveying component, and a second conveying component. The housing 210, the first conveying component, and the second conveying component are all mounted on the mounting platform 110. The first and second conveying components are spaced apart, and the first detector 220, the second detector 230, the first conveying component, and the second conveying component are all located inside the housing 210. The first conveying component includes a first conveyor motor 241 and a first conveyor belt 242, with the first conveyor motor 241 driving the first conveyor belt 242. The second conveying component includes a second conveyor motor 251 and a second conveyor belt 252, with the second conveyor motor 251 driving the second conveyor belt 252. The first detector 220 is located above the first conveyor belt 242. The second detector 230 is located above the second conveyor belt 252. It is worth mentioning that both the first detector 220 and the second detector 230 are high-speed cameras.

[0019] In the above embodiment, the sorting mechanism includes a mounting frame 310, a conveyor chain 320, and a plurality of sorting components. The conveyor chain 320 is spaced apart from the housing 210, and the mounting frame 310 is disposed on the conveyor chain 320. The plurality of sorting components are sequentially rotatably disposed on the mounting frame 310. Each sorting component includes a sorting motor and a sorting belt 330. Each sorting motor and each sorting belt 330 are disposed on the mounting frame 310. Each sorting motor drives a sorting belt 330, and the transmission direction of each sorting belt 330 is perpendicular to the transmission direction of the conveyor chain 320. The receiving mechanism includes several receiving positions 410, several sensors 420, and several receiving frames 430. Some of the receiving positions 410 are equidistantly arranged on one side of the conveyor chain 320, and other receiving positions 410 are equidistantly arranged on the other side of the conveyor chain 320. Each receiving position 410 is provided with one sensor 420 and one receiving frame 430.

[0020] Using this special logistics sorting equipment for clothing, only two workers are needed to load the materials; all other steps are fully automated. In other words, the entire logistics sorting equipment is controlled by a PLC control system.

[0021] Specifically, one worker is positioned on one workbench 130, and another worker is positioned on another workbench 130. The entire logistics sorting equipment is then started. Once operational, the workers simply place each garment flat in a placement area 121 and then convey it forward along the feed belt 120. That is, the goods enter the first conveyor belt 242 from the feed belt 120 and continue to be conveyed. At this time, the first detector 220 above the first conveyor belt 242 photographs the identification tag of the goods and uploads the image to the control system. The goods then move along the first conveyor belt 242 to the second conveyor belt 252 and continue to be conveyed. At this time, the second detector 230 above the second conveyor belt 252 photographs the entire goods and uploads the image to the control system. In other words, through the images captured by the first detector 220 and the second detector 230, and by comparison by the control system, the system can quickly identify which delivery note the specific goods belong to, and then determine which receiving position 410 the goods should be placed in next. In other words, after being conveyed by the second conveyor belt 252, the goods will eventually fall onto any of the sorting belts 330 on the conveyor chain 320. It is worth mentioning that a third detector is also installed on the outside of the housing 210, facing the conveyor chain 320. Each sorting belt 330 has a number, meaning all sorting belts 330 are numbered starting from 1. Therefore, when goods fall onto any of the sorting belts 330 on the conveyor chain 320, the third detector captures the number on the sorting belt 330 and sends it to the control system. The control system then confirms which receiving position 410 the goods on that sorting belt 330 will be placed at. In other words, as the sorting belt 330 moves forward along the conveyor chain 320 and is about to reach its corresponding receiving position 410, the corresponding sorting motor starts, causing the sorting motor to rotate the sorting belt 330, thus conveying the goods out. Since the transmission direction of each sorting belt 330 is perpendicular to the transmission direction of the conveyor chain 320, goods can be efficiently conveyed to either of the receiving positions 410 on both sides. In other words, the sorting belt 330, under the action of the sorting motor rotating forward or reverse, can convey goods to both sides. Therefore, it can achieve a rapid sorting function. Specifically, after goods enter the receiving position 410, the sensor 420 senses them and sends a signal to the control system, essentially informing the control system that the corresponding goods have fallen to the corresponding receiving position 410 and are falling into the receiving frame 430 along the receiving position 410.

[0022] In other words, this dedicated logistics sorting equipment for clothing can quickly identify and sort the clothing on each shipping order. The whole process is highly efficient and accurate, making it convenient for the logistics sorting and outbound shipment of large quantities of clothing.

[0023] In summary, the above embodiments are not limiting embodiments of this utility model. Any modifications or equivalent variations made by those skilled in the art based on the substantive content of this utility model are within the technical scope of this utility model.

Claims

1. A logistics sorting device specifically for clothing, characterized in that, include: Feeding mechanism, testing mechanism, sorting mechanism, receiving mechanism, and control system; The feeding mechanism includes a mounting platform, a drive motor, a feeding belt, and two worktables. The drive motor, the feeding belt, and the two worktables are all mounted on the mounting platform. The drive motor is used to drive the feeding belt, and the two worktables are located on both sides of the feeding belt. The detection mechanism is mounted on the mounting platform, and part of the detection mechanism is located above the feeding belt. The sorting mechanism is located at the end of the detection mechanism away from the feeding belt, and the receiving mechanism is located on both sides of the sorting mechanism. The drive motor, the detection mechanism, the sorting mechanism, and the receiving mechanism are all electrically connected to the control system.

2. The logistics sorting equipment for clothing as described in claim 1, characterized in that: The feeding belt is divided into several placement areas, and the several placement areas are arranged at equal intervals.

3. The logistics sorting equipment for clothing as described in claim 2, characterized in that: The detection mechanism includes a housing, a first detector, a second detector, a first transmission component, and a second transmission component. The housing, the first transmission component, and the second transmission component are all disposed on the mounting platform. The first transmission component and the second transmission component are spaced apart, and the first detector, the second detector, the first transmission component, and the second transmission component are all located inside the housing.

4. The logistics sorting equipment for clothing as described in claim 3, characterized in that: The first conveying component includes a first conveyor motor and a first conveyor belt, wherein the first conveyor motor is used to drive the first conveyor belt.

5. The clothing-specific logistics sorting equipment according to claim 4, characterized in that: The second conveying component includes a second conveyor motor and a second conveyor belt, wherein the second conveyor motor is used to drive the second conveyor belt.

6. The clothing-specific logistics sorting equipment according to claim 5, characterized in that: The first detector is located above the first conveyor belt.

7. The logistics sorting equipment for clothing as described in claim 6, characterized in that: The second detector is located above the second conveyor belt.

8. The logistics sorting equipment for clothing as described in claim 7, characterized in that: The sorting mechanism includes a mounting frame, a conveyor chain, and several sorting components. The conveyor chain is spaced apart from the housing, the mounting frame is mounted on the conveyor chain, and the several sorting components are rotatably mounted on the mounting frame in sequence.

9. The logistics sorting equipment for clothing as described in claim 8, characterized in that: Each of the sorting components includes a sorting motor and a sorting belt. Each sorting motor and each sorting belt are mounted on the mounting frame. Each sorting motor drives a sorting belt, and the transmission direction of each sorting belt is perpendicular to the transmission direction of the conveyor chain.

10. The logistics sorting equipment for clothing as described in claim 9, characterized in that: The receiving mechanism includes several receiving positions, several sensors, and several receiving frames. Some of the receiving positions are equidistantly arranged on one side of the conveyor chain, and other receiving positions are equidistantly arranged on the other side of the conveyor chain. Each receiving position is provided with one sensor and one receiving frame.