Automatic identification and code scanning device for logistics
By designing a logistics automatic identification and scanning device, and automatically scanning and processing cargo information using conveyor belts and automation equipment, the problem of manual scanning of codes consumes a lot of human resources, improving labor efficiency and realizing automated processing.
Patent Information
- Application Number
- CN202421654769.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-13
- Publication Date
- 2025-06-10
- Estimated Expiration
- 2034-07-13
AI Technical Summary
In the transfer of logistics goods, it is necessary to manually scan the code to record and process the unloaded goods, resulting in large workloads, high-consuming human resources and low labor efficiency.
A logistics automatic identification and scanning device is designed, including a U-shaped base, transmission structure, code scanner, display screen, electric telescopic rod, servo motor, etc., to transmit goods through conveyor belts, and to automatically scan and process cargo information using code scanner and servo motor.
Automatic identification and scanning of goods is realized, the scanning range is improved, the labor intensity of workers is reduced, labor efficiency is improved, and the unscanned goods are transported into the collection box through the adjustment structure.
Smart Images

Figure CN222965679U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of logistics, in particular to a logistics automatic identification and code scanning device. Background Technique
[0002] Barcodes are composed of combinations of black and white lines. Barcode scanners judge the width of barcodes by means of the different degrees of infrared reflection of black and white. There are sensors in barcode scanners, which generate high and low voltages according to the different intensities of reflected light, and then generate logical data. In the transfer of logistics goods, when the goods arrive after transportation, manual code scanning and recording are required for the unloaded goods during unloading to record and store the information of the goods entering the logistics. The workload of manual code scanning for goods is relatively large, which requires a large amount of human resources and has a low labor efficiency. Therefore, we propose a logistics automatic identification and code scanning device. Content of the Utility Model
[0003] Aiming at the deficiencies of the prior art, the utility model provides a logistics automatic identification and code scanning device, which solves the problems put forward in the above background technique.
[0004] To achieve the above purposes, the utility model is realized through the following technical solutions: A logistics automatic identification and code scanning device, including a U-shaped base, a transmission structure is arranged on the U-shaped base, connecting plates are fixedly installed at the top of both sides of the U-shaped base, brackets are fixedly installed at the top of the two connecting plates, barcode scanners are arranged above both sides of the bracket, a moving plate is arranged between the two connecting plates, an auxiliary structure is arranged on the moving plate, a display screen is inlaid on one side of one of the connecting plates, the display screen is electrically connected to the two barcode scanners, baffles are fixedly installed on one side of the two connecting plates, both baffles are fixedly connected to the U-shaped base, a fixing block and a blanking plate are fixedly installed between the two baffles, a side plate is fixedly installed on one side of the U-shaped base, and an adjusting structure is arranged on the U-shaped base.
[0005] Preferably, the adjusting structure includes a mounting block fixedly installed between the inner walls on both sides of the U-shaped base. A rotating plate is rotatably connected between the two baffles through a rotating shaft. The fixed block is rotatably connected to the rotating plate. Two electric telescopic rods are arranged inside the mounting block. Both electric telescopic rods penetrate through the mounting block and are fixedly connected thereto. The output ends of both electric telescopic rods are fixedly installed with first auxiliary blocks. One side of both first auxiliary blocks away from the electric telescopic rods is rotatably connected to a support block through a rotating shaft. One side of both support blocks away from the first auxiliary blocks is rotatably connected to a second auxiliary block through a rotating shaft. Both second auxiliary blocks are inserted into the rotating plate and are slidably connected thereto. Two guide rods are fixedly installed inside the rotating plate. The guide rods penetrate through the second auxiliary blocks and are slidably connected thereto. When scanning with the scanner, for the goods that are not scanned successfully, through the synchronous operation of the two electric telescopic rods, the electric telescopic rods drive the support blocks to move, and then through the sliding of the second auxiliary blocks and the rotating plate, the angle of the rotating plate is adjusted, so that the goods that have not passed the scan rotate with the rotating plate and are thus conveyed into the collection box.
[0006] Preferably, a buffer pad is fixedly installed at the bottom of the rotating plate. A collection box is arranged below the rotating plate. The transmission structure is composed of a transmission rod, a conveyor belt, a belt, a pulley, and a driving motor. The buffer pad provided plays a buffering effect when the rotating plate contacts the collection box. The goods are placed on the top of the conveyor belt provided on the transmission structure for transmission of the goods.
[0007] Preferably, a clamping block is arranged on one side of the side plate away from the U-shaped base. A threaded rod is arranged on one side of the side plate away from the clamping block. The threaded rod penetrates through the side plate and is threadedly connected thereto. The threaded rod is inserted into the clamping block and is rotatably connected thereto. An auxiliary plate is fixedly installed on one side of the threaded rod and is rotatably connected to the clamping block. Through the cooperation of the side plate and the clamping block provided, it is convenient to limit the collection box according to the position where the rotating plate rotates.
[0008] Preferably, the auxiliary structure includes two limiting plates respectively fixedly installed on the corresponding sides of the moving plate. Both limiting plates are inserted into the U-shaped base and are slidably connected thereto. A sliding plate is fixedly installed on one side of both limiting plates away from each other. Both sliding plates are slidably connected to the U-shaped base. A first servo motor is fixedly installed inside the U-shaped base. The output end of the first servo motor is fixedly installed with a lead screw. The lead screw is rotatably connected to the U-shaped base. The lead screw penetrates through one of the sliding plates and is threadedly connected thereto. A limiting rod is fixedly installed inside the U-shaped base. The limiting rod penetrates through the other sliding plate and is slidably connected thereto. Top plates are fixedly installed at the tops of both the lead screw and the limiting rod. By driving the first servo motor, the sliding plate on the outer side of the lead screw drives the moving plate to move longitudinally, so that the moving plate contacts one side of the goods.
[0009] Preferably, support seats are fixedly installed at the tops of both sides of the bracket. Scanners are rotatably connected inside both support seats. Rotating rods are fixedly installed on one side of both scanners. The rotating rods are inserted into the support seats and rotatably connected thereto. Second servo motors are fixedly installed inside both support seats. The output ends of the second servo motors are fixedly connected to the rotating rods. A controller is embedded on one side of the U-shaped base. The controller is electrically connected to the scanners, the display screen, the electric telescopic rods, the first servo motor, and the second servo motor. The second servo motor drives the rotating rod to drive the scanner to rotate. The goods transported on the conveyor belt of the transmission structure are scanned by the cooperation of the two scanners. The equipment on the device is controlled by the controller.
[0010] The utility model provides a logistics automatic identification and scanning device, which has the following beneficial effects:
[0011] 1. For this logistics automatic identification and scanning device, the goods are placed on the top of the conveyor belt arranged on the transmission structure, and the goods are transported. After being scanned by the scanner, they are further output through the blanking plate. The goods transported on the conveyor belt of the transmission structure are scanned by the cooperation of the two scanners, which improves the scanning range and reduces the labor intensity of workers.
[0012] 2. For this logistics automatic identification and scanning device, the first servo motor drives the slide plate outside the lead screw to drive the moving plate to move longitudinally, so that the moving plate contacts one side of the goods, realizing the alignment of the position of the goods, and then facilitating the scanner to scan. At the same time, for the goods that are not successfully scanned, the two electric telescopic rods operate synchronously to adjust the angle of the rotating plate, so that the goods that do not pass the scan rotate with the rotating plate, and thus are transported into the collection box, which is more convenient to use. BRIEF DESCRIPTION OF THE DRAWINGS
[0013] Figure 1 It is a schematic structural diagram of the utility model;
[0014] Figure 2 It is a side sectional view of the utility model;
[0015] Figure 3 It is a front sectional view of the utility model;
[0016] Figure 4 It is a schematic diagram of the adjustment structure of the utility model;
[0017] Figure 5 It is a schematic diagram of the auxiliary structure of the utility model;
[0018] Figure 6 It is a schematic diagram of the partial structure of the utility model;
[0019] Figure 7This is a schematic diagram of the transmission structure of the present utility model.
[0020] In the figure: 1, U-shaped base; 2, transmission structure; 3, connecting plate; 4, bracket; 5, support base; 6, barcode scanner; 7, fixing block; 8, baffle; 9, display screen; 10, rotating plate; 11, electric telescopic rod; 12, first auxiliary block; 13, support block; 14, second auxiliary block; 15, guide rod; 16, buffer pad; 17, side plate; 18, clamping block; 19, threaded rod; 20, collection box; 21, blanking plate; 22, moving plate; 23, limiting plate; 24, sliding plate; 25, lead screw; 26, first servo motor; 27, top plate; 28, limiting rod; 29, rotating rod; 30, second servo motor; 31, controller; 32, mounting block. Specific embodiments
[0021] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments.
[0022] Please refer to Figures 1 to 7 , the present utility model provides a technical solution: a logistics automatic identification and scanning device, including a U-shaped base 1, a transmission structure 2 is arranged on the U-shaped base 1, connecting plates 3 are fixedly installed on both top sides of the U-shaped base 1, brackets 4 are fixedly installed on the tops of the two connecting plates 3, barcode scanners 6 are arranged above both sides of the bracket 4, a moving plate 22 is arranged between the two connecting plates 3, an auxiliary structure is arranged on the moving plate 22, a display screen 9 is inlaid on one side of one of the connecting plates 3, the display screen 9 is electrically connected to the two barcode scanners 6, baffles 8 are fixedly installed on one side of the two connecting plates 3, both baffles 8 are fixedly connected to the U-shaped base 1, a fixing block 7 and a blanking plate 21 are fixedly installed between the two baffles 8, a side plate 17 is fixedly installed on one side of the U-shaped base 1, and an adjusting structure is arranged on the U-shaped base 1.
[0023] The adjusting structure includes a mounting block 32, which is fixedly installed between the inner walls on both sides of the U-shaped base 1. A rotating plate 10 is rotatably connected between two baffles 8 through a rotating shaft. A fixed block 7 is rotatably connected to the rotating plate 10. Two electric telescopic rods 11 are arranged inside the mounting block 32. Both electric telescopic rods 11 penetrate through the mounting block 32 and are fixedly connected thereto. The output ends of both electric telescopic rods 11 are fixedly installed with first auxiliary blocks 12. One side of both first auxiliary blocks 12 away from the electric telescopic rods 11 is rotatably connected to a support block 13 through a rotating shaft. One side of both support blocks 13 away from the first auxiliary blocks 12 is rotatably connected to a second auxiliary block 14 through a rotating shaft. Both second auxiliary blocks 14 are inserted into the inside of the rotating plate 10 and are slidably connected thereto. Two guide rods 15 are fixedly installed inside the rotating plate 10. The guide rods 15 penetrate through the second auxiliary blocks 14 and are slidably connected thereto. When scanning by the scanner 6, for the goods that are not successfully scanned, through the synchronous operation of both electric telescopic rods 11, the electric telescopic rods 11 drive the support blocks 13 to move, and then through the sliding of the second auxiliary blocks 14 and the rotating plate 10, the angle of the rotating plate 10 is adjusted, so that the goods that have not passed the scan rotate along with the rotating plate 10, and thus are conveyed into the collection box 20.
[0024] A buffer pad 16 is fixedly installed at the bottom of the rotating plate 10. A collection box 20 is arranged below the rotating plate 10. The transmission structure 2 is composed of a transmission rod, a conveyor belt, a belt, a pulley, and a driving motor. The buffer pad 16 provided plays a buffering effect when the rotating plate 10 contacts the collection box 20. The goods are placed on the top of the conveyor belt provided on the transmission structure 2 for transmission of the goods.
[0025] A clamping block 18 is arranged on one side of the side plate 17 away from the U-shaped base 1. A threaded rod 19 is arranged on one side of the side plate 17 away from the clamping block 18. The threaded rod 19 penetrates through the side plate 17 and is threadedly connected thereto. The threaded rod 19 is inserted into the inside of the clamping block 18 and is rotatably connected thereto. An auxiliary plate is fixedly installed on one side of the threaded rod 19, and the auxiliary plate is rotatably connected to the clamping block 18. Through the cooperation of the side plate 17 and the clamping block 18 provided, it is convenient to limit the collection box 20 according to the position where the rotating plate 10 rotates, and further prevent the position of the collection box 20 from moving when the rotating plate 10 contacts the collection box 20.
[0026] The auxiliary structure includes two limit plates 23 which are respectively and fixedly installed on the corresponding two sides of the moving plate 22. Both of the two limit plates 23 are inserted into the inside of the U-shaped base 1 and are slidably connected thereto. On the side of each of the two limit plates 23 away from each other, a sliding plate 24 is fixedly installed. Both of the two sliding plates 24 are slidably connected to the U-shaped base 1. A first servo motor 26 is fixedly installed inside the U-shaped base 1. The output end of the first servo motor 26 is fixedly installed with a lead screw 25. The lead screw 25 is rotatably connected to the U-shaped base 1. The lead screw 25 penetrates through one of the sliding plates 24 and is threadedly connected thereto. A limit rod 28 is fixedly installed inside the U-shaped base 1. The limit rod 28 penetrates through the other sliding plate 24 and is slidably connected thereto. At the top of both the lead screw 25 and the limit rod 28, a top plate 27 is fixedly installed. By driving the first servo motor 26, the sliding plate 24 on the outer side of the lead screw 25 drives the moving plate 22 to move longitudinally, so that the moving plate 22 contacts one side of the goods, realizing the alignment of the position of the goods, and thus facilitating the scanner 6 to perform scanning.
[0027] On the top of both sides of the bracket 4, support seats 5 are fixedly installed. Inside both of the two support seats 5, a scanner 6 is rotatably connected. On one side of each of the two scanners 6, a rotating rod 29 is fixedly installed. The rotating rod 29 is inserted into the inside of the support seat 5 and is rotatably connected thereto. Inside both of the two support seats 5, a second servo motor 30 is fixedly installed. The output end of the second servo motor 30 is fixedly connected to the rotating rod 29. A controller 31 is embedded on one side of the U-shaped base 1. The controller 31 is electrically connected to the scanner 6, the display screen 9, the electric telescopic rod 11, the first servo motor 26 and the second servo motor 30. By driving the second servo motor 30, the rotating rod 29 drives the scanner 6 to rotate. Through the cooperation of the two scanners 6, the goods transported on the conveyor belt of the transmission structure 2 are scanned, improving the scanning range. The operation of the devices on the device is controlled by the controller 31.
[0028] In summary, when using this automatic logistics identification and scanning device, the goods are placed on the top of the conveyor belt arranged on the transmission structure 2, and the goods are transported. After being scanned by the scanner 6, they are further output through the blanking plate 21. By controlling the second servo motor 30 to drive through the controller 31, the rotating rod 29 rotates to drive the scanner 6 to rotate. Through the cooperation of the two scanners 6, the goods transported on the conveyor belt of the transmission structure 2 are scanned, improving the scanning range, and the scanned goods are displayed through the display screen 9.
[0029] The slide plate 24 outside the lead screw 25 is driven by the first servo motor 26 to drive the moving plate 22 to move longitudinally, so that the moving plate 22 contacts one side of the goods, realizing the alignment of the goods position, which is convenient for the scanner 6 to scan. At the same time, when the scanner 6 scans, for the goods that are not scanned successfully, the two electric telescopic rods 11 operate synchronously, so that the electric telescopic rods 11 drive the support blocks 13 to move, and then through the sliding of the second auxiliary block 14 and the rotating plate 10, the angle of the rotating plate 10 is adjusted, so that the goods that are not scanned follow the rotation of the rotating plate 10, and thus are conveyed into the collection box 20. And through the arranged moving plate 22, when discharging the goods that are not scanned, the subsequent goods can be blocked, which is more convenient to use. And through the cooperation of the side plate 17 and the clamping block 18, it is convenient to limit the collection box 20 according to the rotating position of the rotating plate 10, further preventing the collection box 20 from moving when the rotating plate 10 contacts the collection box 20. At the same time, heat dissipation holes are provided on the device to cooperate with the first servo motor 26 and the second servo motor 30, as much as possible to prevent the first servo motor 26 and the second servo motor 30 from being damaged due to overheating during operation.
[0030] The above is only a preferred specific embodiment of the present invention, but the protection scope of the present invention is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present invention, according to the technical solution of the present invention and its inventive concept, makes equivalent replacements or changes, and should be covered by the protection scope of the present invention.
Claims
1. A logistics automatic identification and scanning device, comprising a U-shaped base (1), characterized in that: The U-shaped base (1) is provided with a transmission structure (2), connecting plates (3) are fixedly installed on the top of both sides of the U-shaped base (1), brackets (4) are fixedly installed on the top of the two connecting plates (3), and barcode scanners (6) are arranged on the top of both sides of the brackets (4), a movable plate (22) is arranged between the two connecting plates (3), and an auxiliary structure is arranged on the movable plate (22), one side of one of the connecting plates (3) is inlaid with a display screen (9), and the display screen (9) is electrically connected to the two barcode scanners (6), one side of the two connecting plates (3) is fixedly installed with a baffle (8), the two baffles (8) are fixedly connected to the U-shaped base (1), a fixed block (7) and a blanking plate (21) are fixedly installed between the two baffles (8), one side of the U-shaped base (1) is fixedly installed with a side plate (17), and an adjustment structure is arranged on the U-shaped base (1).
2. According to claim 1, a logistics automatic identification and scanning device is characterized by: The adjustment structure comprises a mounting block (32), wherein the mounting block (32) is fixedly mounted between the inner walls on both sides of the U-shaped base (1), a rotating plate (10) is rotatably connected between the two baffles (8) via a rotating shaft, the fixed block (7) is rotatably connected to the rotating plate (10), two electric telescopic rods (11) are arranged inside the mounting block (32), the two electric telescopic rods (11) both pass through the mounting block (32) and are fixedly connected thereto, and the output ends of the two electric telescopic rods (11) are fixedly mounted with a first auxiliary block (11). 2), the two first auxiliary blocks (12) are rotatably connected to the support block (13) via a rotating shaft on one side away from the electric telescopic rod (11), the two support blocks (13) are rotatably connected to the second auxiliary blocks (14) via a rotating shaft on one side away from the first auxiliary blocks (12), the two second auxiliary blocks (14) are inserted into the interior of the rotating plate (10) and are slidably connected thereto, and two guide rods (15) are fixedly installed inside the rotating plate (10), and the guide rods (15) pass through the second auxiliary blocks (14) and are slidably connected thereto.
3. The logistics automatic identification and scanning device according to claim 2 is characterized by: A buffer pad (16) is fixedly mounted on the bottom of the rotating plate (10), a collecting box (20) is arranged below the rotating plate (10), and the transmission structure (2) is composed of a transmission rod, a conveyor belt, a belt, a pulley, and a driving motor.
4. The logistics automatic identification and scanning device according to claim 1 is characterized by: A clamping block (18) is provided on one side of the side plate (17) away from the U-shaped base (1), a threaded rod (19) is provided on one side of the side plate (17) away from the clamping block (18), the threaded rod (19) penetrates the side plate (17) and is threadedly connected thereto, the threaded rod (19) is inserted into the inside of the clamping block (18) and is rotatably connected thereto, an auxiliary plate is fixedly mounted on one side of the threaded rod (19), and the auxiliary plate is rotatably connected to the clamping block (18).
5. The logistics automatic identification and scanning device according to claim 1 is characterized by: The auxiliary structure comprises two limit plates (23), the two limit plates (23) are respectively fixedly mounted on the corresponding two sides of the movable plate (22), the two limit plates (23) are both inserted into the interior of the U-shaped base (1) and are slidably connected thereto, a slide plate (24) is fixedly mounted on the side of the two limit plates (23) away from each other, the two slide plates (24) are both slidably connected to the U-shaped base (1), a first servo motor (26) is fixedly mounted inside the U-shaped base (1), a screw rod (25) is fixedly mounted on the output end of the first servo motor (26), the screw rod (25) is rotatably connected to the U-shaped base (1), the screw rod (25) passes through one of the slide plates (24) and is threadedly connected thereto, a limit rod (28) is fixedly mounted inside the U-shaped base (1), the limit rod (28) passes through the other slide plate (24) and is slidably connected thereto, and a top plate (27) is fixedly mounted on the top of the screw rod (25) and the limit rod (28).
6. The logistics automatic identification and scanning device according to claim 1 is characterized by: Support seats (5) are fixedly installed on the top of both sides of the bracket (4), and the interiors of the two support seats (5) are rotatably connected with a code scanner (6). A rotating rod (29) is fixedly installed on one side of the two code scanners (6), and the rotating rod (29) is inserted into the interior of the support seat (5) and rotatably connected thereto. A second servo motor (30) is fixedly installed on the interiors of the two support seats (5), and the output end of the second servo motor (30) is fixedly connected to the rotating rod (29). A controller (31) is embedded on one side of the U-shaped base (1), and the controller (31) is electrically connected to the code scanner (6), the display screen (9), the electric telescopic rod (11), the first servo motor (26) and the second servo motor (30).