An order information collecting device

CN224727967UActive Publication Date: 2026-09-08JUFU TECHNOLOGY (GUANGZHOU) CO LTD
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Patent Information

Application Number
CN202522278111.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-28
Publication Date
2026-09-08
Estimated Expiration
2035-10-28

AI Technical Summary

Technical Problem

[0003]针对现有技术的不足,本实用新型提供一种订单信息采集装置,解决了在现有技术中当订单数据量庞大时,扫描过程中难免出现遗漏情况,降低了订单信息采集的完整性和可靠性的问题

Benefits of technology

[0018] This utility model utilizes the pressure plate, support part, and guide component of the limiting component to work together. The guide component can adjust the spacing according to the order size through the telescopic part, and the guide wheel can effectively limit and guide the order surface to prevent the order from deviating or getting stuck, ensuring that the order maintains the correct path during transportation.

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Abstract

The utility model relates to e -commerce logistics information input technical field, specifically disclose order information collection device, including the conveying assembly for conveying order and set up the limiting component and install scanning input assembly on the conveying assembly on the conveying assembly, be used for scanning input to order information, the conveying assembly includes the frame, install the conveying belt on the frame, the both sides of conveying belt are located at the frame and are adapted with limiting component, the order is conveyed on the conveying belt, the inside of limiting component is adapted with order, the utility model discloses through the pressing plate of limiting component, the support part and the cooperative work of guide component, and the guide component can adjust the interval according to the order size through the telescopic part, and the guide wheel can effectively limit and guide to order surface, prevent order deviation, and the guarantee order keeps correct path in the conveying process.
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Description

Technical Field

[0001] This utility model relates to the field of e-commerce logistics information entry technology, specifically an order information collection device. Background Technology

[0002] E-commerce orders tend to increase during promotional periods, and the order information needs to be entered after being exported. Traditionally, manual entry is used, which can lead to errors. Modern logistics uses scanning for entry, but when there is a large amount of order data, scanning is prone to omissions. Therefore, this application provides an order information collection device. Utility Model Content

[0003] In view of the shortcomings of the prior art, this utility model provides an order information collection device, which solves the problem that when the order data volume is large, omissions are inevitable during the scanning process, which reduces the integrity and reliability of order information collection.

[0004] The order information collection device of this utility model includes a conveying component for conveying orders, a limiting component disposed on the conveying component, and a scanning and input component installed on the conveying component for scanning and inputting order information.

[0005] The conveying assembly includes a frame on which a conveyor belt is mounted, and the two sides of the conveyor belt are adapted to the limiting assembly at the frame.

[0006] The conveyor belt is used to transport orders, and the inner side of the limiting component is adapted to the order.

[0007] The limiting component includes a pressure plate, a support part is provided on one side of the bottom of the pressure plate, the support part is fixed to the frame, and a guide component is provided near the center of the bottom of the pressure plate for limiting the order.

[0008] As a further improvement of this utility model, a mounting groove is provided at the bottom of the pressure plate near the center, and a positioning ring is provided at the mounting groove at equal intervals, the inner side of the positioning ring being adapted to the guide component.

[0009] As a further improvement of this utility model, a telescopic component is installed on the inner side of the positioning ring, and the piston rod of the telescopic component is fixed to one side of the guide assembly.

[0010] As a further improvement of this utility model, the guide assembly includes a circular plate, the bottom of which is provided with an inner ring, and one or more guide wheels are installed in the middle of the inner ring for restricting the order surface.

[0011] As a further improvement of this utility model, one side of the pressure plate is provided with an insertion area on the side of the support part. The insertion area is higher than the conveyor belt, which facilitates order insertion.

[0012] As a further improvement of this utility model, a support frame is provided at the bottom of the frame, and height-increasing frames are provided on both sides of the support frame, with adjustment components installed on the height-increasing frames.

[0013] As a further improvement of this utility model, the two adjustment components are adapted to the scanning and input device for scanning and inputting order information.

[0014] As a further improvement of this utility model, a driving component is provided on one side of the frame, and a rotating wheel is installed at one end of the driving component. There are two rotating wheels, and the other rotating wheel is located at the other end of the frame and is sleeved with the conveyor belt.

[0015] As a further improvement of this utility model, a roller is installed on the inner side of the frame, located inside the conveyor belt, for cooperating with the conveyor belt to transport orders.

[0016] As a further improvement of this utility model, a brush is provided below one of the rotating wheels to cooperate with the conveyor belt and separate the orders laid on the conveyor belt from the conveyor belt.

[0017] Compared with the prior art, the beneficial effects of this utility model are as follows:

[0018] This utility model utilizes the pressure plate, support part, and guide component of the limiting component to work together. The guide component can adjust the spacing according to the order size through the telescopic part, and the guide wheel can effectively limit and guide the order surface to prevent the order from deviating or getting stuck, ensuring that the order maintains the correct path during transportation.

[0019] The scanning and input component features multiple high-resolution scanning heads mounted on an adjustable bracket. With the help of an adjustment mechanism, its position and height can be precisely adjusted to adapt to different order scanning needs. The intelligent control system automatically adjusts the spacing of the guide components based on the order size, ensuring the order accurately passes through the scanning area and improving scanning accuracy. A brush separates the order from the conveyor belt, preventing orders from sticking and affecting scanning, while also cleaning the conveyor belt and reducing scanning errors caused by debris. The support frame's height-adjustable extension bracket allows for precise horizontal adjustment of the scanning and input device's position, enabling optimized setup based on the specific scenario and order characteristics. Attached Figure Description

[0020] The accompanying drawings, which are included to provide a further understanding of this application and form part of this application, illustrate exemplary embodiments and are used to explain this application, but do not constitute an undue limitation of this application. In the drawings:

[0021] Figure 1 This is a three-dimensional structural diagram of the conveying component of this utility model;

[0022] Figure 2 This is a bottom view of the conveying component of this utility model;

[0023] Figure 3 This is a top view of the combined conveying component, limiting component, and scanning and input device of this utility model;

[0024] Figure 4 This is a side view of the conveying assembly of this utility model.

[0025] Figure 5 This is a three-dimensional structural diagram of the limiting component of this utility model;

[0026] Figure 6 This is a top view of the limiting component of this utility model;

[0027] Figure 7 This is a side view of the limiting component of this utility model;

[0028] Figure 8 This utility model Figure 6 Schematic diagram of the cross-sectional structure of the middle AA section;

[0029] Figure 9 This is a bottom view of the guide component of this utility model.

[0030] In the diagram: 1. Conveying component; 2. Limiting component; 3. Adjusting component; 4. Scanning and input device;

[0031] 11. Frame; 12. Support frame; 13. Drive unit; 14. Rotating wheel; 15. Roller; 16. Elevator; 17. Conveyor belt; 18. Brush;

[0032] 21. Pressure plate; 22. Mounting groove; 23. Insertion area; 24. Positioning ring; 25. Support; 26. Telescopic component; 27. Guide assembly;

[0033] 271. Circular plate; 272. Inner ring; 273. Guide wheel. Detailed Implementation

[0034] The following illustrations will reveal several embodiments of the present invention. For clarity, many physical details will be described in the following description. However, it should be understood that these physical details should not be used to limit the present invention. That is, in some embodiments of the present invention, these physical details are not essential. Furthermore, for the sake of simplicity, some conventional structures and components will be shown in the illustrations in a simple schematic manner.

[0035] Furthermore, the technical solutions of the various embodiments can be combined with each other, but this must be based on the ability of those skilled in the art to implement them. When the combination of technical solutions is contradictory or cannot be implemented, it should be considered that such combination of technical solutions does not exist and is not within the scope of protection claimed by this utility model.

[0036] Please see Figure 1-9 In the e-commerce sector, order volume increases significantly during promotional periods. After order information is exported, it needs to be entered into the system. Traditionally, this relies on manual entry, which is prone to errors, affecting the accuracy and efficiency of order processing. While modern logistics uses scanning for order information entry, omissions are inevitable during scanning when order data is massive, reducing the completeness and reliability of order information collection. To address the issues of error-prone manual entry and scan-prone omissions, it is necessary to provide a new order information collection device, including a conveying component 1 for transporting orders, a limiting component 2 mounted on the conveying component 1, and a scanning and entry component mounted on the conveying component 1 for scanning and entering order information.

[0037] The conveying assembly 1 includes a frame 11, on which a conveyor belt 17 is mounted, and both sides of the conveyor belt 17 are adapted to the limiting assembly 2 at the frame 11.

[0038] The conveyor belt 17 is used to transport orders, and the inner side of the limiting component 2 is adapted to the order.

[0039] The limiting component 2 includes a pressure plate 21. A support part 25 is provided on one side of the bottom of the pressure plate 21. The support part 25 is fixed to the frame 11. A guide component 27 is provided near the center of the bottom of the pressure plate 21 for limiting the order.

[0040] The frame 11, serving as the fundamental support structure for the entire conveying assembly 1, is made of high-strength metal materials (such as aluminum alloy) to ensure sufficient stability and load-bearing capacity. The frame 11 is rectangular in shape, with its four corners reinforced by welding to prevent deformation during long-term use. Adjustable feet are installed at the bottom of the frame 11 to facilitate leveling the device according to the actual usage scenario.

[0041] The conveyor belt 17, mounted on the frame 11, is made of rubber and offers excellent wear resistance and anti-slip properties. The surface of the conveyor belt 17 undergoes special treatment to increase friction with orders, ensuring smooth transport of orders along the belt. The conveyor belt 17 is driven by a motor, which is connected to the drive rollers of the conveyor belt 17 via a reducer, allowing for speed adjustment to accommodate different order processing needs. Raised side guards are provided on both sides of the conveyor belt 17 to prevent orders from slipping during transport.

[0042] The pressure plate 21 is made of high-strength plastic, possessing a certain degree of flexibility and impact resistance. The pressure plate 21 is elongated, its length matching the width of the conveyor belt 17. Reinforcing ribs are provided at the top of the pressure plate 21 to enhance its structural strength.

[0043] The support 25, located on one side of the bottom of the pressure plate 21, is made of metal and is fixedly connected to the frame 11 by bolts. The height of the support 25 can be adjusted according to the thickness of the order to ensure that the pressure plate 21 can effectively limit orders of different thicknesses.

[0044] A guide assembly 27 is located near the center of the bottom of the pressure plate 21 and is used to limit and guide the order. The guide assembly 27 includes two symmetrically arranged guide plates made of smooth plastic material to reduce friction with the order. The bottom of the guide plates is inclined to facilitate smooth entry of the order into the guiding area. The spacing between the guide plates can be adjusted using adjusting bolts to accommodate orders of different sizes.

[0045] The scanning and data entry component is mounted on the conveyor assembly 1, located above the conveyor belt 17. The component includes multiple scanning heads, each employing a high-resolution image sensor in conjunction with a camera, enabling rapid and accurate scanning of information on the order. The scanning heads are fixed to the frame 11 by brackets whose height and angle are adjustable to ensure optimal scanning of the order. The component also includes a data processing module and a storage module. Order information collected by the scanning heads is processed by the data processing module and then stored in the storage module for subsequent retrieval and use.

[0046] Working principle

[0047] Once an order is placed on conveyor belt 17, conveyor belt 17 starts operating, transporting the order forward. During transport, the pressure plate 21 of the limiting component 2 and the guide component 27 limit and guide the order, ensuring that the order is transported along the predetermined path. When the order passes under the scanning and input component, the scanning head scans the information on the order and transmits the scanning results to the data processing module for processing. The processed order information is stored in the storage module, completing the order information collection.

[0048] This order information collection device, through the coordinated operation of the conveying component 1, the limiting component 2, and the scanning and input component, can efficiently and accurately collect order information even when there are a large number of orders. The conveying component 1 ensures the smooth transport of orders, the limiting component 2 prevents orders from shifting or slipping during transport, and the scanning and input component can quickly and accurately scan order information, avoiding the errors and omissions that are common in traditional manual data entry, thus improving the efficiency and accuracy of order processing.

[0049] The bottom of the pressure plate 21 is provided with a mounting groove 22 near the center, and the mounting groove 22 is provided with positioning rings 24 arranged at equal intervals. The inner side of the positioning rings 24 is adapted to the guide component 27.

[0050] A telescopic component 26 is installed on the inner side of the positioning ring 24, and the piston rod of the telescopic component 26 is fixed to one side of the guide assembly 27.

[0051] A mounting groove 22 is provided at the bottom of the pressure plate 21 near the center. This design provides space and convenience for the installation and adjustment of the guide assembly 27. The mounting groove 22 is machined at the bottom of the pressure plate 21 using a milling process. Its length is adapted to the arrangement range of the guide assembly 27 in the length direction of the pressure plate 21, and its width is slightly larger than the width of the guide assembly 27 to ensure that the guide assembly 27 can be smoothly installed into the mounting groove 22. At the same time, a certain amount of room for movement is reserved to facilitate subsequent position adjustment of the guide assembly 27.

[0052] The positioning rings 24 are evenly spaced within the mounting groove 22. They are injection molded from high-strength engineering plastic, possessing good wear resistance and a certain degree of elasticity. The inner diameter of the positioning rings 24 matches the outer diameter of the guide assembly 27, providing an accurate installation position for the guide assembly 27. This ensures the installation accuracy of the guide assembly 27 within the mounting groove 22, allowing multiple guide assemblies 27 to be arranged neatly and systematically, thereby better limiting and guiding the order. The evenly spaced positioning rings 24 can be pre-designed according to common specifications of different order sizes. For example, if there are several typical widths for common orders, the distance between the positioning rings 24 is rationally arranged according to these dimensions to adapt to the guiding requirements of different orders.

[0053] The telescopic component 26 is installed inside the positioning ring 24, and it uses an electric actuator as its main actuating component. The electric actuator consists of a motor, a lead screw, a nut, and a push rod. The motor drives the lead screw to rotate, causing the nut to move linearly along the lead screw, which in turn drives the push rod to perform telescopic movements. This type of electric actuator has advantages such as compact structure, stable operation, and large thrust, and can meet the position adjustment requirements of the guide assembly 27.

[0054] The piston rod of the telescopic component 26 is fixedly connected to one side of the guide assembly 27 using a welding process to ensure a strong connection. When the position of the guide assembly 27 needs to be adjusted, the piston rod can be extended or retracted by controlling the forward and reverse rotation of the electric push rod motor, thereby driving the guide assembly 27 to move within the mounting groove 22 along the guide direction of the positioning ring 24.

[0055] To achieve precise control of the telescopic component 26, this order information acquisition device is equipped with an intelligent control system. This control system can automatically calculate and control the telescopic component 26's extension and retraction based on the order's size information, thereby adjusting the spacing of the guide components 27. For example, when the system receives an order with a wider size, the control system will send a command to the corresponding telescopic component 26, causing its piston rod to extend and push the guide components 27 to move to both sides, widening the spacing of the guide components 27 to accommodate the transport and guidance of wide-sized orders; conversely, when encountering a narrower order, the piston rod of the telescopic component 26 retracts, narrowing the spacing of the guide components 27.

[0056] This adjustable guide component 27 offers high flexibility and practicality in real-world applications. During e-commerce promotional periods, orders often come in various sizes. By adjusting the spacing of the guide component 27, it ensures that orders of different sizes can be transported smoothly and accurately on the conveyor belt 17, preventing issues such as order deviation or jamming during transport and improving the efficiency and accuracy of order information collection. Furthermore, this adjustable design allows the device to adapt to the needs of different e-commerce businesses, making it more widely applicable.

[0057] To ensure the long-term stable operation of the telescopic component 26 and the guide assembly 27, regular inspection and maintenance of the telescopic component 26 are required during routine maintenance. Check the motor, lead screw, nut, and other components of the electric actuator for wear, looseness, etc., and replace or tighten them promptly if any problems are found. At the same time, clean the surface of the guide assembly 27 to prevent dust, debris, etc., from affecting its guiding performance.

[0058] In terms of reliability, both the telescopic component 26 and the guide assembly 27 have undergone rigorous quality testing and lifespan testing. The design incorporates a redundancy concept, meaning that if one telescopic component 26 fails, the others can still maintain a certain guiding function, preventing the entire order information collection device from malfunctioning and improving the device's reliability and stability.

[0059] The guide assembly 27 includes a circular plate 271, an inner ring 272 at the bottom of the circular plate 271, and one or more guide wheels 273 mounted in the middle of the inner ring 272 for restricting the order surface.

[0060] One side of the pressure plate 21 is provided with an insertion area 23 on the side of the support part 25. The insertion area 23 is higher than the conveyor belt 17, which facilitates order insertion.

[0061] A support frame 12 is provided at the bottom of the frame 11, and a height-increasing frame 16 is provided on both sides of the support frame 12. An adjustment component 3 is installed on the height-increasing frame 16.

[0062] The two adjustment components 3 are adapted to the scanning and input device 4 for scanning and inputting order information.

[0063] A drive unit 13 is provided on one side of the frame 11. A rotating wheel 14 is installed at one end of the drive unit 13. There are two rotating wheels 14. The other rotating wheel 14 is located at the other end of the frame 11 and is fitted with the conveyor belt 17.

[0064] A roller 15 is installed on the inner side of the frame 11, which is located inside the conveyor belt 17, to transport orders in conjunction with the conveyor belt 17.

[0065] A brush 18 is provided below one of the rotating wheels 14 to work with the conveyor belt 17 to separate the orders laid on the conveyor belt 17 from the conveyor belt 17.

[0066] The circular plate 271, serving as the basic structure of the guide assembly 27, is made of high-strength aluminum alloy and undergoes precision casting and machining processes to ensure a smooth surface and high strength and stability. The diameter of the circular plate 271 is rationally determined based on the actual order dimensions and the overall design of the device, generally slightly larger than the order width to ensure effective coverage. The inner ring 272 is securely connected to the bottom of the circular plate 271 via welding. Made of wear-resistant engineering plastic, it not only reduces the overall weight of the guide assembly 27 but also provides excellent wear resistance, minimizing friction with the order surface and preventing scratches.

[0067] Guide wheels 273 are installed in the center of the inner ring 272, and their number is selected according to the size of the order and the stability requirements of the conveying. For smaller and lighter orders, one guide wheel 273 can be installed; while for larger and heavier orders, multiple guide wheels 273 are installed, usually 2-3, evenly spaced. The guide wheels 273 are made of rubber, with a certain degree of elasticity and friction, which can effectively restrict and guide the order without damaging its surface. The guide wheels 273 are mounted on the inner ring 272 via bearings, ensuring flexible rotation, reducing friction with the order, and making the order smoother during conveying.

[0068] The insertion area 23 on one side of the pressure plate 21, located on the side of the support 25, is specifically designed to facilitate the smooth insertion of orders into the conveyor. The insertion area 23 is higher than the conveyor belt 17 by a carefully designed height, typically 2-5 cm, ensuring easy insertion while preventing the order from wobbling or shifting during insertion due to excessive height. The surface of the insertion area 23 is polished for a smoother finish, reducing resistance during order insertion. Additionally, rounded corners are provided at the edges of the insertion area 23 to prevent scratching the order.

[0069] The support frame 12 at the bottom of the frame 11 is welded from channel steel, which has high strength and stability and can withstand the weight of the entire device as well as the impact force generated during order transportation. The bottom of the support frame 12 is equipped with anti-slip rubber pads to increase friction with the ground and prevent the device from sliding during operation.

[0070] The riser frame 16 is installed on both sides of the support frame 12. It adopts an adjustable telescopic structure and consists of multiple sleeve sections, which are fixed by bolts. The design of the riser frame 16 allows the installation height of the scanning and input device 4 to be adjusted according to actual needs to accommodate the scanning requirements of orders with different thicknesses. The riser frame 16 is made of high-strength steel pipe to ensure that it has sufficient supporting force.

[0071] The adjustment assembly 3 is mounted on the riser frame 16 and mainly consists of a slider, a guide rail, and a lead screw. The slider is fixedly connected to the scanning and input device 4 and can slide on the guide rail. The lead screw is driven by a motor; when it rotates, it moves the slider on the guide rail, thereby adjusting the horizontal position of the scanning and input device 4. The adjustment assembly 3 has a precision down to the millimeter level, meeting the precise scanning requirements of different order positions.

[0072] The drive unit 13 on one side of frame 11 adopts an integrated design of motor and reducer, featuring a compact structure and high transmission efficiency. The motor power is rationally selected based on the length and width of conveyor belt 17 and the order conveying speed to ensure sufficient power is provided. The drive unit 13 is connected to the shaft of rotating wheel 14 via a coupling to ensure smooth power transmission.

[0073] There are two rotating wheels 14, located at both ends of the frame 11. The rotating wheels 14 are made of cast iron and have undergone surface hardening treatment to improve their hardness and wear resistance. The outer diameter of the rotating wheels 14 is matched to the width of the conveyor belt 17, ensuring that the conveyor belt 17 can be tightly fitted onto the rotating wheels 14 to prevent slippage. The shafts of the rotating wheels 14 are mounted on the frame 11 via bearings, ensuring their flexible rotation.

[0074] The rollers 15, installed inside the frame 11 and located inside the conveyor belt 17, are made of stainless steel with a smooth surface. The number of rollers 15 is arranged according to the length of the conveyor belt 17 and the weight of the order, generally one roller at regular intervals. The function of the rollers 15 is to support the conveyor belt 17, reduce the sagging of the conveyor belt 17, and work with the conveyor belt 17 to smoothly transport the order, improving the stability of the conveying process.

[0075] A brush 18, made of nylon bristles, is positioned below one of the rotating wheels 14. The bristles possess a certain degree of hardness and elasticity. The length of the brush 18 is the same as the width of the conveyor belt 17. It is mounted on an adjustable bracket, allowing for adjustment of the contact pressure between the brush 18 and the conveyor belt 17 according to actual conditions. The function of the brush 18 is to separate the order from the conveyor belt 17 when it reaches the rotating wheel 14, preventing the order from sticking to the conveyor belt 17 and ensuring that the order can smoothly proceed to the next processing step. Simultaneously, the brush 18 can also clean the surface of the conveyor belt 17, removing dust and debris, and extending the service life of the conveyor belt 17.

[0076] The above description is merely an embodiment of this utility model and is not intended to limit the scope of this utility model. Various modifications and variations can be made to this utility model by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principle of this utility model should be included within the scope of the claims of this utility model.

Claims

1. An order information collection device, comprising a conveying component (1) for conveying orders, a limiting component (2) disposed on the conveying component (1), and a scanning and input component mounted on the conveying component (1) for scanning and inputting order information; Its features are: The conveying assembly (1) includes a frame (11) on which a conveyor belt (17) is mounted, and the two sides of the conveyor belt (17) are adapted to the limiting assembly (2) at the frame (11). The conveyor belt (17) is used to transport orders, and the inner side of the limiting component (2) is adapted to the order; The limiting component (2) includes a pressure plate (21), and a support part (25) is provided on one side of the bottom of the pressure plate (21). The support part (25) is fixed to the frame (11). A guide component (27) is provided near the center of the bottom of the pressure plate (21) for limiting the order.

2. The order information collection device according to claim 1, characterized in that: The bottom of the pressure plate (21) is provided with a mounting groove (22) near the center, and a positioning ring (24) is provided at equal intervals in the mounting groove (22). The inner side of the positioning ring (24) is adapted to the guide component (27).

3. The order information collection device according to claim 2, characterized in that: A telescopic component (26) is installed on the inner side of the positioning ring (24), and the piston rod of the telescopic component (26) is fixed to one side of the guide assembly (27).

4. The order information collection device according to claim 1, characterized in that: The guide assembly (27) includes a circular plate (271) with an inner ring (272) at the bottom and one or more guide wheels (273) mounted in the middle of the inner ring (272) for restricting the order surface.

5. The order information collection device according to claim 1, characterized in that: The pressure plate (21) has an insertion area (23) on one side of the support (25), which is higher than the conveyor belt (17) to facilitate order insertion.

6. The order information collection device according to claim 1, characterized in that: The bottom of the frame (11) is provided with a support frame (12), and both sides of the support frame (12) are provided with height-increasing frames (16), and the height-increasing frames (16) are equipped with adjustment components (3).

7. The order information collection device according to claim 6, characterized in that: The two adjustment components (3) are adapted to the scanning and input device (4) for scanning and inputting information on orders.

8. The order information collection device according to claim 1, characterized in that: A drive unit (13) is provided on one side of the frame (11), and a rotating wheel (14) is installed at one end of the drive unit (13). There are two rotating wheels (14), and the other rotating wheel (14) is located at the other end of the frame (11) and is sleeved with the conveyor belt (17).

9. The order information collection device according to claim 1, characterized in that: The inner side of the frame (11) is equipped with rollers (15) located inside the conveyor belt (17) for conveying orders in conjunction with the conveyor belt (17).

10. An order information collection device according to claim 8, characterized in that: A brush (18) is provided below one of the rotating wheels (14) for use with the conveyor belt (17) to separate the order laid on the conveyor belt (17) from the conveyor belt (17).