Material picking registration equipment with face recognition function
By introducing face recognition and weighing and photo shooting mechanisms into the warehouse management system, the problems of false collection and inaccurate quantity in material collection are solved, and accurate recording and management of the quantity of material collection is achieved.
Patent Information
- Application Number
- CN202422448152.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-10
- Publication Date
- 2025-07-08
- Estimated Expiration
- 2034-10-10
AI Technical Summary
In the existing warehouse management system, material collection is prone to problems such as false collection or inaccurate quantity, especially when collecting standard parts and small parts.
A material picking and registration device with face recognition function is adopted, combined with face recognition, weighing and photographing mechanism, through the identification of the material picking person and the image and weight recording of the material in the material frame, the accuracy of the material picking quantity and registration quantity is ensured.
It effectively avoids material fiction, ensures that the quantity of material is collected and the registered quantity matches, and improves the accuracy and efficiency of warehouse management.
Smart Images

Figure CN223073356U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of warehouse material requisition management equipment, and particularly to a requisition registration device with a face recognition function. Background Art
[0002] Warehouse management in production enterprises plays a crucial role in the production and operation of enterprises, including key links such as material warehousing, warehouse management, material outbound, and inventory management. An efficient and reasonable warehouse management system can improve the production efficiency of enterprises, reduce costs, etc., making enterprises more competitive in the market competition.
[0003] Currently, warehouse management mainly relies on manual registration or barcode scanning registration, but there are still cases of unauthorized requisition. Moreover, when receiving standard parts and small parts, there are often situations where the quantity of materials received does not match the registered quantity due to inaccurate quantity counting, which causes great trouble to the material management link in the warehouse. Summary of the Invention
[0004] The technical problem to be solved by the utility model is to provide a requisition registration device with a face recognition function to solve the situation that it is easy to have unauthorized requisition or inaccurate received quantity and registered quantity in the current warehouse material requisition link.
[0005] The technical solution adopted by the utility model is: a requisition registration device with a face recognition function, including a first rack, on which a face recognition mechanism for identifying the requisitioner and a first conveyor belt for transporting materials are installed. A material box for holding materials is placed on the first conveyor belt, a first weighing mechanism is arranged below the first conveyor belt, and a first photographing mechanism for photographing and recording the material box is also arranged above the first conveyor belt.
[0006] After adopting the above structure, the following beneficial effects are obtained:
[0007] 1. The face recognition device can identify and record the requisitioner, effectively avoiding the situation of unauthorized requisition of materials.
[0008] 2. The first photographing mechanism can identify and photograph the material box and the materials inside the material box, and at the same time, the first weighing mechanism records the weight of the materials in the material box. Through the combination of the image and the weight, the type and quantity of the materials can be judged and calculated to ensure that the received quantity matches the registered quantity.
[0009] Preferably, a shaking mechanism is further provided on one side of the first conveyor belt for feeding. The shaking mechanism includes a shaking platform and a driving assembly for driving the shaking platform to shake. A plurality of first driving rollers are arranged on the shaking platform. The driving assembly includes a driving member, a driving disc connected to the driving member, and a transmission rod rotatably connected to an eccentric position of the driving disc. One end of the transmission rod away from the driving disc is rotatably connected to the bottom surface of the shaking platform.
[0010] The setting of the shaking mechanism can shake the material box, flatten the materials in the material box, and facilitate photographing and recognition. At the same time, if different types of materials are mixed in the material box, they can also be shown through the shaking process, avoiding the situation where the weight does not match the photographing result and resulting in the inability to calculate the quantity of materials. At the same time, the driving member drives the driving disc to rotate, causing the transmission rod to move along with the driving disc, and then driving the connected shaking platform to shake reciprocally, making the material box shake together. Such a structure is simple and compact.
[0011] Preferably, a second conveying mechanism is further provided between the shaking mechanism and the first conveyor belt. The second conveying mechanism includes a second frame and a plurality of second driving rollers installed on the second frame, and the second driving rollers are arranged obliquely. A baffle is also installed on the frame.
[0012] The third conveying mechanism can make the material box moving above it continuously move towards the side through the obliquely arranged second driving rollers and abut against the baffle. Such a setting can ensure that the material box can stably pass under the first photographing mechanism when entering the first conveyor belt, so as to be photographed and recognized.
[0013] Preferably, a plurality of guide wheels are arranged on the baffle.
[0014] The setting of the guide wheels can reduce the friction between the material box and the baffle, making the material box move more smoothly along the baffle.
[0015] Preferably, a second weighing mechanism is provided on the side of the first frame, and the second weighing mechanism is located on the ground.
[0016] The setting of the second weighing mechanism can weigh some larger and heavier materials that are not convenient to enter the first conveyor belt. Installing the second weighing mechanism on the ground can weigh the trolley and the parts together when placing the parts on the trolley, ensuring the stable progress of the weighing work.
[0017] Preferably, a second photographing mechanism is provided on the first frame, and the second photographing mechanism is rotatably connected to the first frame.
[0018] The second photographing mechanism can weigh the materials passing through the second weighing mechanism. At the same time, the second photographing mechanism is rotatably connected to the first rack and can be retracted during normal times to avoid obstructing the passing personnel. Only when it needs to be used, it can be flipped to take pictures.
[0019] Preferably, a baffle is rotatably connected inside the material box. A boss is provided at the end of the baffle, and a first card slot for clamping the boss is provided on the material box.
[0020] The setting of the baffle can enable the material box to load multiple types of materials at the same time, and the materials are separated by the baffle and will not be mixed together. At the same time, the baffle is connected to the first card slot in the material box through the boss, which can ensure that the baffle will not easily flip and ensure the stable separation of materials during the outbound stage.
[0021] Preferably, a first chute is provided below the material box. A rotating shaft is provided at the bottom of the baffle, and the rotating shaft is slidably connected in the first chute. A second card slot is provided at the bottom of the first chute.
[0022] The rotating shaft can slide in the first chute, so that the height of the baffle can be adjusted, so as to facilitate the boss on the baffle to be clamped into the first card slot. At the same time, the setting of the second card slot can also limit the rotating shaft and make the rotating shaft be clamped in the second card slot to prevent the baffle from rotating during use.
[0023] Preferably, a receiving groove is further provided at the bottom of the material box, and a third card slot is provided in the receiving groove.
[0024] The setting of the receiving groove can enable the baffle to rotate and be placed in the receiving groove when not in use, which will neither affect the loading capacity of the material box nor improve the integrity of the material box with better visual appearance. At the same time, the boss can be clamped in the third card slot to prevent the baffle from rotating during use. Description of the Drawings
[0025] Figure 1 is a schematic three-dimensional structure diagram of a fruit bagging and packaging device of the present invention in Embodiment 1.
[0026] Figure 2 is a schematic front view structure diagram of a fruit bagging and packaging device of the present invention in Embodiment 1.
[0027] Figure 3 is Figure 2 a schematic cross-sectional structure diagram of the "A-A" area in
[0028] Figure 4 is a schematic three-dimensional structure diagram of a fruit bagging and packaging device of the present invention in Embodiment 2.
[0029] Figure 5It is a three-dimensional structural schematic diagram of a fruit and vegetable bagging packaging device of the present utility model after the second photographing mechanism is flipped in Embodiment 2.
[0030] Figure 6 It is a three-dimensional structural schematic diagram of the material frame after the baffle is erected in Embodiment 3.
[0031] Figure 7 It is a three-dimensional structural schematic diagram of the material frame after the baffle is stored in Embodiment 3.
[0032] Wherein, the first conveyor belt 10, the material frame 20, the baffle 21, the convex platform 22, the first card slot 23, the second card slot 24, the rotating shaft 25, the accommodating groove 26, the third card slot 27, the first weighing mechanism 31, the second weighing mechanism 32, the first photographing mechanism 41, the second photographing mechanism 42, the shaking mechanism 50, the third machine frame 51, the shaking platform 52, the driving assembly 53, the driving member 531, the driving disk 532, the transmission rod 533, the first driving roller 54, the second conveying mechanism 60, the second machine frame 61, the second driving roller 62, the baffle 63, the guide wheel 64, the face recognition mechanism 70. Specific embodiments
[0033] The present utility model will be further described below in conjunction with the accompanying drawings and specific embodiments.
[0034] Embodiment 1
[0035] According to the attached Figures 1 - 3 As shown in the figure, the present utility model provides a material receiving registration device with a face recognition function, including a first machine frame, on which a face recognition mechanism 70 for identifying the material receiver and a first conveyor belt 10 for transporting materials are installed. A material frame 20 for holding materials is placed on the first conveyor belt 10. A first weighing mechanism 31 is arranged below the first conveyor belt 10. Above the first conveyor belt 10, a first photographing mechanism 41 for photographing and recording the material frame 20 is also arranged. In this embodiment, a first sensor for monitoring the position of the material frame 20 is further installed on the side of the first conveyor belt. The first sensor is located directly below the first photographing mechanism 41, and the first weighing mechanism 31 is also located directly below the first photographing mechanism 41.
[0036] In this embodiment, a shaking mechanism 50 is further provided on the side of the first conveyor belt 10 for feeding. The shaking mechanism 50 includes a third frame 51, a shaking platform, and a driving component 53 for driving the shaking platform to shake. A number of first driving rollers 54 are provided on the shaking platform. The driving component 53 includes a driving member 531, a driving disk 532 connected to the driving member 531, and a transmission rod 533 rotatably connected to an eccentric position of the driving disk 532. One end of the transmission rod away from the driving disk 532 is rotatably connected to the bottom surface of the shaking platform. Among them, the driving member 531 uses a motor, and the motor is fixedly installed on the third frame 51. By driving the driving member 531 to drive the driving disk 532 to rotate, the transmission rod 533 follows the driving disk 532 to move, and then drives the connected shaking platform 52 to shake reciprocally, so that the material box 20 shakes together. Such a structure is simple and compact. At the same time, the setting of the shaking mechanism 50 can shake the material box 20, flatten the materials in the material box 20, and facilitate photographing and recognition. At the same time, if different types of materials are mixed in the material box 20, they can also be shown through the shaking process, avoiding the problem that the material quantity cannot be calculated due to the mismatch between the weight and the photographing result. In this embodiment, a second sensor for monitoring the position of the material box 20 is further installed on the side of the shaking mechanism 50 close to the first conveyor belt 10.
[0037] A second conveying mechanism 60 is further provided between the shaking mechanism 50 and the first conveyor belt 10. The second conveying mechanism 60 includes a second frame 61 and a number of second driving rollers 62 installed on the second frame 61, and the second driving rollers 62 are arranged obliquely. A baffle 21 is also installed on the frame. In this embodiment, the second driving rollers 62 and the baffle 21 are arranged at an angle of 45°, so that when the material box 20 moves along with the second driving rollers 62, it moves towards the direction of the first conveyor belt 10 while moving towards the direction of the baffle 21, and then the material box 20 moves along the baffle 21. At the same time, a number of guide wheels 64 are provided on the baffle 21, which can effectively reduce the friction between the baffle 21 and the material box 20 and make the baffle 21 play a better guiding effect.
[0038] The working principle is as follows: After the staff takes the materials in the warehouse and places them in the material box 20, when leaving the warehouse, the material box 20 is placed on the shaking mechanism 50. The shaking mechanism 50 shakes while driving the material box 20 to move through the first driving roller 54 until it moves to the side of the shaking mechanism 50 close to the first conveyor belt 10. After the second sensor detects the signal, it stops shaking and transports the material box 20 onto the first conveyor belt 10. The material box 20 moves with the first conveyor belt 10 to the first sensor, where it is photographed and identified by the first photographing mechanism 41, and weighed and recorded by the first weighing mechanism 31. At the same time, when the person picking up the materials passes by, the face recognition mechanism 70 records the identity of the person picking up the materials, thus ensuring that both the person picking up the materials and the materials picked up can be recorded, avoiding the situation of unauthorized picking, and also being able to record the type and weight information of the materials to ensure that the picking record is consistent with the actual picking situation.
[0039] Embodiment 2
[0040] According to the attached drawing of the specification Figures 4 - 5 As shown, a second weighing mechanism 32 is provided on the side of the first rack. The second weighing mechanism 32 is located on the ground. At the same time, a second photographing mechanism 42 is provided on the first rack. The second photographing mechanism 42 is rotatably connected to the first rack.
[0041] The working principle of this embodiment is that when some larger parts cannot be transported by the material box 20 and the first conveyor belt 10, they can be contained in a trolley and then pushed to the second weighing mechanism 32 for weighing. At the same time, the second photographing mechanism 42 is flipped so that the second photographing mechanism takes a picture of the trolley below, thus completing the function of recording the materials picked up.
[0042] Embodiment 3
[0043] According to the attached drawing of the specification Figures 6 - 7 As shown, a baffle 21 is rotatably connected inside the material box 20. A boss 22 is provided at the end of the baffle 21. A first card slot 23 for clamping the boss 22 is provided on the material box 20. A first chute is provided below the material box 20. A rotating shaft 25 is provided at the bottom of the baffle 21, and the rotating shaft 25 is slidably connected in the first chute. A second card slot 24 is provided at the bottom of the first chute. A receiving groove 26 is further provided at the bottom of the material box 20, and a third card slot 27 is provided in the receiving groove 26.
[0044] The working principle of this embodiment is that when it is necessary to load multiple materials, the boss 22 is taken out from the third card slot 27, the baffle 21 is rotated, and the boss 22 is snapped into the first card slot 23 to keep the baffle 21 in a vertical state. The setting of the baffle 21 enables the material frame 20 to load multiple materials at the same time, and the materials are separated by the baffle 21 and will not be mixed together. It is notified that the baffle 21 is connected to the first card slot 23 in the material frame 20 through the boss 22, which can ensure that the baffle 21 will not easily flip and ensure the stable separation of materials during the outbound stage.
[0045] The directional terms mentioned in this utility model, such as "up", "down", "left", "right", etc., are only for better and clearer description and understanding of this utility model, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be construed as a limitation to this utility model.
Claims
1. A material requisition registration device with a face recognition function, including a first frame, characterized in that, A face recognition mechanism for identifying the material picker and a first conveyor belt for transporting materials are installed on the first rack. A material box for containing materials is placed on the first conveyor belt. A first weighing mechanism is arranged below the first conveyor belt, and a first photographing mechanism for photographing and recording the material box is also arranged above the first conveyor belt.
2. The material requisition registration device with a face recognition function according to claim 1, characterized in that, A shaking mechanism is further arranged on one side of the first conveyor belt for feeding. The shaking mechanism includes a shaking platform and a driving component for driving the shaking platform to shake. A plurality of first driving rollers are arranged on the shaking platform. The driving component includes a driving member, a driving disk connected to the driving member, and a transmission rod rotatably connected to an eccentric position of the driving disk. One end of the transmission rod away from the driving disk is rotatably connected to the bottom surface of the shaking platform.
3. The material requisition registration device with a face recognition function according to claim 2, characterized in that, A second conveying mechanism is also arranged between the shaking mechanism and the first conveyor belt. The second conveying mechanism includes a second rack and a plurality of second driving rollers installed on the second rack, and the second driving rollers are arranged obliquely. A baffle is also installed on the rack.
4. The material requisition registration device with a face recognition function according to claim 3, characterized in that, A plurality of guide wheels are arranged on the baffle.
5. The material requisition registration device with a face recognition function according to claim 1, characterized in that, A second weighing mechanism is arranged on the side of the first rack and is located on the ground.
6. The material requisition registration device with a face recognition function according to claim 4, characterized in that, A second photographing mechanism is arranged on the first rack, and the second photographing mechanism is rotatably connected to the first rack.
7. The material requisition registration device with a face recognition function according to claim 1, characterized in that, A baffle is rotatably connected inside the material box. A boss is arranged at the end of the baffle, and a first clamping groove for clamping the boss is arranged on the material box.
8. The material requisition registration device with a face recognition function according to claim 7, characterized in that A first sliding groove is arranged below the material box. A rotating shaft is arranged at the bottom of the baffle, and the rotating shaft is slidably connected in the first sliding groove. A second clamping groove is arranged at the bottom of the first sliding groove.
9. The material requisition registration device with a face recognition function according to claim 8, characterized in that, A receiving groove is further arranged at the bottom of the material box, and a third clamping groove is arranged in the receiving groove.