Internet food raw material traceability device
By introducing a buffer feeding mechanism and an automatic identification and positioning scanner into the Internet-based food raw material traceability equipment, the problems of complex operation and food damage have been solved, achieving automated scanning and protection, and improving efficiency and safety.
Patent Information
- Application Number
- CN202211672061.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-12-26
- Publication Date
- 2025-11-28
- Estimated Expiration
- 2042-12-26
AI Technical Summary
Existing internet-based food ingredient traceability equipment is complex to operate, has a low degree of automation, and is inefficient for manual operation. Furthermore, food is easily damaged during transportation.
An internet-connected food ingredient traceability device was designed, which includes a buffer feeding mechanism and an automatic identification and positioning scanner. The device uses a pressure sensor to control the rotation of an electric push rod and a scanner, thereby achieving automated scanning and buffer protection of the food.
It enables automated traceability of food ingredients, improves scanning efficiency, reduces the risk of food damage, and enhances operational convenience and safety.
Smart Images

Figure CN116341592B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the field of food raw material traceability equipment, in particular to an internet food raw material traceability equipment. BACKGROUND
[0002] Food raw materials refer to all materials used for food processing, which can be divided into three categories: food main materials, food ingredients and food additives. In order to enable buyers to know the composition of food raw materials and to make them eat with confidence, internet-based food raw material traceability equipment is now widely used, which can complete the query work of food raw materials, and has the advantages of simple operation, accurate detection and stable use in actual use. It mainly scans the food raw material two-dimensional code through the scanner connected with the display device (the scanner connected with the internet is a form of the internet), and displays the name, production and shelf life of the food and detailed information of the raw materials through the display screen.
[0003] In the real society, due to the weak legal and health consciousness of some food producers and operators, the abuse of pesticides and additives has not been effectively controlled, resulting in excessive harmful substances in food. Therefore, according to the regulations, food raw materials produced in batches need to be detected in turn through the traceability equipment to display the detailed information of the food raw materials, so as to screen out unqualified products. However, the normal food raw material traceability is controlled by a scanning instrument with one hand and the other hand to turn over the goods (find the two-dimensional code) and correspond to the scanning instrument, which is complicated and has low automation. At the same time, the transmission belt transmits a large number of food, and the efficiency of manual operation is low.
[0004] In addition, due to the large number of food waiting for traceability, after the food is scanned and traced, the scanned food raw materials will be directly dropped on the transmission belt for conveying away in pursuit of efficiency. The impact during the dropping process is easy to cause damage to the food, which not only cannot guarantee the safety of the food, but also greatly reduces the value of the food.
[0005] In view of the above problems, it is urgent to make innovative design on the basis of the original internet food raw material traceability equipment. SUMMARY
[0006] The technical scheme of the present application provides a significantly different solution from the prior art to solve the problem of the prior art solution being too single. Specifically, the purpose of the present application is to provide an internet food raw material traceability equipment to solve the problem of the above background technology that the food raw material traceability is controlled by a scanning instrument with one hand and the other hand to turn over the goods (find the two-dimensional code) and correspond to the scanning instrument, which is complicated and has low automation. At the same time, the transmission belt transmits a large number of goods, and the efficiency of manual operation is low.
[0007] In order to achieve the above object, the present application provides the following technical scheme: an internet food raw material traceability equipment, comprising an operation table, the upper surface of the operation table is respectively fixed with a vertical plate and a partition plate, a display device is installed on one side of the vertical plate, a buffer material guiding mechanism is arranged on the surface of the partition plate, a support plate is fixed on the side of the vertical plate, and a scanner with automatic identification and positioning function is installed on the end of the support plate.
[0008] Preferably, the buffer material guiding mechanism comprises a damper, a supporting plate, a return spring, a sliding rail and a sliding rod, the bottom of the damper is fixed on the side of the partition plate, the output end of the damper is hinged with the supporting plate, the outer wall of the damper is wound with the return spring, one end of the return spring is welded to the bottom of the damper, and the other end of the return spring is fixed to the outer wall of the output end of the damper.
[0009] Preferably, the inside of the partition plate is provided with a sliding rail, one end of the sliding rod is slidably arranged in the sliding rail, and the other end of the sliding rod is hinged to the lower surface of the supporting plate.
[0010] Preferably, the supporting plate is of "L" type structure, the upper half of the sliding rail is vertically arranged, and the lower half of the sliding rail is arranged in a circular arc shape.
[0011] Preferably, the upper surface of the support plate is respectively fixed with a controller and an electric push rod, the controller is electrically connected with the scanner and the electric push rod, the end of the support plate is connected with a rotating sleeve through a bearing, the upper end of the electric push rod is fixed with a connecting plate, the lower surface of the other end of the connecting plate is fixed with the upper end of a lifting rod, and the lower end of the lifting rod is fixedly connected with the scanner through the rotating sleeve.
[0012] Preferably, the outer wall of the scanner is fixed with a half ring plate, the inside of the half ring plate is slidably provided with a sliding plate, the outer wall of the sliding plate is symmetrically provided with a stop block on the upper and lower surfaces of the half ring plate about the central axis of the half ring plate, the sliding plate and the rotating sleeve are in snap type sliding connection, the outer wall of the rotating sleeve is fixed with a fixed plate, the inner side of the lower end of the fixed plate is fixed with a touch sensor electrically connected with the controller, the inner wall of the rotating sleeve is provided with a limiting groove, the limiting block is slidably arranged in the limiting groove, the end of the limiting block is fixed to the outer wall of the lifting rod, the upper end of the limiting groove is vertically arranged, and the lower end of the limiting groove is in a circular arc shape.
[0013] Preferably, the upper surface of the operation table is respectively provided with a first transmission platform, a first transmission belt and a second transmission belt, and the back side of the partition plate is installed with an output transmission mechanism.
[0014] Preferably, the output transmission mechanism comprises a motor, a belt, a first rotating shaft, a first gear, a second gear and a second rotating shaft, and one end of the inner side transmission roller of the first transmission belt is fixedly connected with the output end of the motor penetrating through the partition plate, and the motor is fixed to the outer wall of the back side of the partition plate, the outer wall of the end part of the first transmission belt end transmission roller is sleeved with one end of the belt, the other end of the belt is internally provided with the first rotating shaft, and the end part of the first rotating shaft is mounted to the outer wall of the partition plate, the outer wall of the first rotating shaft is fixedly provided with the first gear, the end part of the first gear is meshingly connected with the second gear, the center of the second gear is fixedly provided with the second rotating shaft, and the end part of the second rotating shaft is fixedly connected with the end part of the inner side transmission roller of the second transmission belt.
[0015] Compared with the prior art, the present application has the following advantages:
[0016] On the basis of the existing Internet food raw material traceability equipment, the scanning mode of the food raw material is optimized and adjusted, when the food is contacted to the touch pressure sensor through the transmission of the transmission belt, the touch pressure sensor will immediately feed back the signal to the controller, and then the controller retracts the electric push rod, so that the lifting rod drives the scanner to vertically fall down, and the sleeve falls down a distance first and then rotates 180 degrees, so that the sliding plate vertically falls down a distance and is attached to the surface of the food, and then the whole rotates 180 degrees and drives the food to rotate 180 degrees, which is convenient for scanning the two-dimensional code on the surface of the food, and finally the sliding plate is tightly attached to the surface of the food, and the food after turning will be smoothly conveyed out along the transmission belt, so as to realize automatic food traceability, free the hands of the operator, and the scanning efficiency is higher.
[0017] In addition, when the food raw material after scanning and tracing continues to be transmitted a distance along the upper transmission belt and is stably dropped on the supporting plate, the supporting plate will quickly react and press down the damper and the return spring after being impacted by the food, and under the cooperation of the sliding rod and the sliding rail, the supporting plate first vertically falls down a distance and then rotates a small angle clockwise, so as to realize the inclination of the supporting plate, and make the food raw material fall on the lower transmission belt at a relatively low height, effectively reducing the impact when the food falls. BRIEF DESCRIPTION OF DRAWINGS
[0018] Figure 1 It is a front view of the sectional structure of the present application;
[0019] Figure 2 It is a back side structure diagram of the partition plate of the present application;
[0020] Figure 3 It is a top view of the lifting rod and the rotating sleeve of the present application;
[0021] Figure 4 It is a front view of the sectional structure of the rotating sleeve of the present application;
[0022] Figure 5 Extraction and amplification structure diagram of the buffer guide mechanism of the present application;
[0023] Figure 6 Extraction and amplification structure diagram of the present application Figure 1 Extraction and amplification structure diagram of the present application
[0024] Figure 7 Extraction and amplification structure diagram of the present application
[0025] Figure 8 Extraction and amplification structure diagram of the present application
[0026] In the figure: 1, operating table; 2, vertical plate; 3, display device; 4, partition; 41, damper; 42, supporting plate; 43, return spring; 44, slide rail; 45, slide rod; 5, support plate; 51, controller; 52, electric push rod; 53, connecting plate; 54, lifting rod; 55, rotating sleeve; 56, slide plate; 57, fixed plate; 58, touch pressure sensor; 59, limiting groove; 510, limiting block; 511, scanner; 512, half circle plate; 6, first transmission platform; 7, first transmission belt; 8, second transmission belt; 9, motor; 91, belt; 92, first rotating shaft; 93, first gear; 94, second gear; 95, second rotating shaft. DETAILED DESCRIPTION
[0027] The technical solutions in the embodiments of the present application will be described clearly and completely below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work fall within the scope of protection of the present application.
[0028] Please refer to Figures 1-8 The present application provides a technical solution: an internet food raw material traceability device, comprising an operating table 1, the upper surface of the operating table 1 is respectively fixed with a vertical plate 2 and a partition 4, and the vertical plate 2 is installed with a display device 3 on one side, and the surface of the partition 4 is provided with a buffer guide mechanism, the edge side of the vertical plate 2 is fixed with a support plate 5, and the end of the support plate 5 is installed with a scanner 511 with automatic identification and positioning function.
[0029] The buffer guide mechanism comprises a damper 41, a supporting plate 42, a reset spring 43, a sliding rail 44 and a sliding rod 45, the damper 41 is fixed on the side of the partition plate 4, the output end of the damper 41 is hinged with the supporting plate 42, the outer wall of the damper 41 is wound with the reset spring 43, one end of the reset spring 43 is welded to the base of the damper 41, and the other end of the reset spring 43 is fixed to the outer wall of the output end of the damper 41, and the cooperation between the damper 41 and the reset spring 43 realizes the impact buffering of the supporting plate 42.
[0030] The sliding rail 44 is arranged in the partition plate 4, one end of the sliding rod 45 is arranged in the sliding rail 44, and the other end of the sliding rod 45 is hinged to the lower surface of the supporting plate 42, the sliding rail 44 limits the supporting plate 42, and the directional sliding and rotation of the supporting plate 42 are realized.
[0031] The supporting plate 42 is in an L-shaped structure, the upper half of the sliding rail 44 is vertically arranged, and the lower half of the sliding rail 44 is arranged in an arc shape, when the supporting plate 42 falls, the sliding rod 45 falls along the vertical segment of the sliding rail 44, and then the sliding rod 45 falls along the arc segment of the sliding rail 44 to rotate the supporting plate 42.
[0032] The upper surface of the supporting plate 5 is fixed with a controller 51 and an electric push rod 52, the controller 51 is electrically connected with a scanner 511 and the electric push rod 52, the end of the supporting plate 5 is connected with a rotating sleeve 55 through a bearing, the upper end of the electric push rod 52 is fixed with a connecting plate 53, the lower surface of the other end of the connecting plate 53 is fixed with the upper end of a lifting rod 54, the lower end of the lifting rod 54 is fixed with the scanner 511 through the rotating sleeve 55, the controller 51 can control the opening and closing of the electric push rod 52, when the food raw material touches the touch sensor 58, the touch sensor 58 immediately feeds back information to the controller 51, and the electric push rod 52 is started through the controller 51.
[0033] The outer wall of the scanner 511 is fixed with a half circle plate 512, and the inside of the half circle plate 512 is slidingly provided with a sliding plate 56, the outer wall of the sliding plate 56 is symmetrically provided with a stop block about the central axis of the half circle plate 512, which is attached to the upper and lower surfaces of the half circle plate 512 respectively, and the sliding plate 56 is slidingly connected with the rotating sleeve 55 in a clamping manner, the outer wall of the rotating sleeve 55 is fixed with a fixed plate 57, and the inside of the lower end of the fixed plate 57 is fixed with a touch pressure sensor 58 electrically connected with the controller 51, the inner wall of the rotating sleeve 55 is provided with a limiting groove 59, and the inside of the limiting groove 59 is slidingly provided with a limiting block 510, the end of the limiting block 510 is fixed to the outer wall of the lifting rod 54, and the upper end of the limiting groove 59 is vertically arranged, and the lower end of the limiting groove 59 is in an arc shape, when the lifting rod 54 falls, the lifting rod 54 will first drive the limiting block 510 to fall along the vertical segment of the limiting groove 59, at this time the rotating sleeve 55 remains stationary, when the lower end of the sliding plate 56 touches the food, at this time the limiting block 510 just enters the arc segment of the limiting groove 59, thereby driving the rotating sleeve 55 to rotate adaptively, and in turn driving the fixed plate 57 and the sliding plate 56 to rotate adaptively.
[0034] The upper surface of the operation table 1 is provided with a first transmission platform 6, a first transmission belt 7 and a second transmission belt 8 respectively, and the back side of the partition plate 4 is provided with an output transmission mechanism.
[0035] The output transmission mechanism comprises a motor 9, a belt 91, a first rotating shaft 92, a first gear 93, a second gear 94 and a second rotating shaft 95, one end of the transmission roller inside the first transmission belt 7 penetrates through the partition plate 4 and is fixedly connected with the output end of the motor 9, and the motor 9 is fixed to the outer wall of the back side of the partition plate 4, the outer wall of the end transmission roller of the first transmission belt 7 is sleeved with one end of the belt 91, the other end of the belt 91 is provided with the first rotating shaft 92 inside, and the end of the first rotating shaft 92 is mounted to the outer wall of the partition plate 4, the outer wall of the first rotating shaft 92 is fixed with the first gear 93, the end of the first gear 93 is meshingly connected with the second gear 94, the center of the second gear 94 is fixed with the second rotating shaft 95, and the end of the second rotating shaft 95 is fixedly connected with the end of the transmission roller inside the second transmission belt 8.
[0036] Working principle: when using the internet food raw material traceability equipment, first, as shown in Figure 1 the food raw materials to be scanned for traceability are placed on the upper surface of the first transmission belt 7, at this time, as shown in Figure 2 the motor 9 is started, the motor 9 drives the first transmission belt 7 to transmit counterclockwise, at the same time, the first transmission belt 7 synchronously drives the first gear 93 to rotate through the belt 91, and then the first gear 93 drives the second gear 94 and the second rotating shaft 95 to rotate, so that the second transmission belt 8 transmits clockwise.
[0037] With the transmission effect of the first transmission belt 7, the food graduallyFigure 1 The contact pressure sensor 58 shown in contact with the side of the fixed plate 57 (where the model of the controller 51 is KY02S, and the model of the contact pressure sensor 58 is ANT-35) will immediately feed back information to the controller 51 at this time, and the controller 51 will quickly start the electric push rod 52, causing the electric push rod 52 to quickly retract and drive the connecting plate 53 to fall, and the connecting plate 53 will simultaneously drive the lifting rod 54 and the scanner 511 to vertically fall, at which time, as shown in the figure, Figure 4 The lifting rod 54 drives the limiting block 510 to enter the vertical section of the limiting groove 59, and during this period, the rotating sleeve 55 will remain in a stationary state, and the lifting rod 54 will push the half-turn plate 512 to drive the sliding plate 56 to vertically fall until the lower end of the sliding plate 56 is attached to the surface of the food raw material, at which time, the limiting block 510 has just entered the arc-shaped section of the limiting groove 59, and under the vertical pushing and extruding action of the limiting block 510, the rotating sleeve 55 will immediately rotate counterclockwise to adapt, so that, as shown in the figure, Figure 7 and Figure 8 The rotating sleeve 55 will simultaneously drive the sliding plate 56, the fixed plate 57, and the food raw material to rotate counterclockwise, and the rotation period is 180 degrees. During the rotation period, the scanner 511 will quickly scan the two-dimensional code on the surface of the food raw material and display the food information on the display device 3 beside the vertical plate 2. After the sliding plate 56, the fixed plate 57, and the food raw material are synchronously rotated by 180 degrees, the blocking effect of the fixed plate 57 on the food raw material is immediately removed, and at the same time, since the food raw material has been located on the upper surface of the first conveying belt 7, the first conveying belt 7 will drive the food raw material to overcome the attachment limiting effect of the sliding plate 56 and horizontally transmit to the left, so that the food raw material is separated from the side of the contact pressure sensor 58. When the contact pressure sensor 58 interrupts the signal transmission, the controller 51 will control the electric push rod 52 to rise again, thereby restoring the initial state of the rotating sleeve 55, the sliding plate 56, the fixed plate 57, and other parts, so as to carry out subsequent food traceability.
[0038] Finally, the food raw material transmitted from the upper surface of the first conveying belt 7 will fall on the tray 42 as shown in the figure, Figure 1 and the figure, when the food raw material impacts on the tray 42, the tray 42 will quickly press down the damper 41 and the return spring 43, and the tray 42 will simultaneously drive the sliding rod 45 to vertically fall along the slide rail 44. When it falls to a certain extent, the sliding rod 45 enters the lower half of the slide rail 44, and the sliding rod 45 will drive the tray 42 to rotate clockwise by a small angle, until the food raw material falls from a lower position to the surface of the second conveying belt 8, so as to buffer and protect the food raw material and automatically receive and discharge the food raw material, and then the food raw material is horizontally transmitted to the right by the second conveying belt 8.
[0039] Although the present application has been described in detail with reference to the foregoing embodiments, the technical solutions recorded in the foregoing embodiments can be modified, or some of the technical features can be replaced by equivalent features, by those skilled in the art, any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.
Claims
1. An internet food raw material traceability device comprising an operation table (1), characterized in that: The upper surface of the operation table (1) is respectively fixed with a vertical plate (2) and a partition plate (4), one side of the vertical plate (2) is provided with a display device (3), and the surface of the partition plate (4) is provided with a buffer material guiding mechanism, the side of the vertical plate (2) is fixed with a supporting plate (5), and the end of the supporting plate (5) is provided with a scanner (511) with automatic identification positioning function. The buffer material guiding mechanism comprises a damper (41), a supporting plate (42), a reset spring (43), a sliding rail (44) and a sliding rod (45), the side of the partition plate (4) is fixed with the base of the damper (41), the output end of the damper (41) is hinged with the supporting plate (42), and the outer wall of the damper (41) is wound with the reset spring (43), one end of the reset spring (43) is welded to the base of the damper (41), and the other end of the reset spring (43) is fixed to the outer wall of the output end of the damper (41). The inside of the partition plate (4) is provided with a sliding rail (44), and one end of the sliding rail (44) is provided with a sliding rod (45), and the other end of the sliding rod (45) is hinged to the lower surface of the supporting plate (42). The supporting plate (42) is of "L" type structure, and the upper half of the sliding rail (44) is vertically arranged, and the lower half of the sliding rail (44) is arranged in arc shape. The upper surface of the supporting plate (5) is respectively fixed with a controller (51) and an electric push rod (52), and the controller (51) and the electric push rod (52) are electrically connected with the scanner (511) and the electric push rod (52), respectively, the end of the supporting plate (5) is connected with a rotating sleeve (55) through a bearing, the upper end of the electric push rod (52) is fixed with a connecting plate (53), the other end of the connecting plate (53) is fixed with the upper end of a lifting rod (54), and the lower end of the lifting rod (54) is fixedly connected with the scanner (511) through the rotating sleeve (55). The outer wall of the scanner (511) is fixed with a half circle plate (512), and the inside of the half circle plate (512) is provided with a sliding plate (56), the outer wall of the sliding plate (56) is symmetrically provided with a stopper abutting with the upper and lower surfaces of the half circle plate (512) about the central axis of the half circle plate (512), and the sliding plate (56) is slidably connected with the rotating sleeve (55) in clamping mode, the outer wall of the rotating sleeve (55) is fixed with a fixed plate (57), and the inner side of the lower end of the fixed plate (57) is fixed with a touch sensor (58) electrically connected with the controller (51), the inner wall of the rotating sleeve (55) is provided with a limiting groove (59), and the inside of the limiting groove (59) is provided with a limiting block (510), the end of the limiting block (510) is fixed to the outer wall of the lifting rod (54), and the upper end of the limiting groove (59) is vertically arranged, and the lower end of the limiting groove (59) is arc-shaped. The upper surface of the operation table (1) is respectively provided with a first transmission platform (6), a first transmission belt (7) and a second transmission belt (8), and the back side of the partition plate (4) is provided with an output transmission mechanism.
2. The internet food material traceability device according to claim 1, wherein: The output transmission mechanism comprises a motor (9), a belt (91), a first rotating shaft (92), a first gear (93), a second gear (94) and a second rotating shaft (95), and one end of the inner drive roller of the first conveying belt (7) penetrates through the partition plate (4) and is fixedly connected with the output end of the motor (9), and the motor (9) is fixed to the outer wall of the back side of the partition plate (4), one end of the outer wall of the end drive roller of the first conveying belt (7) is sleeved with one end of the belt (91), the other end of the belt (91) is provided with the first rotating shaft (92) in the inside, and the end of the first rotating shaft (92) is mounted to the outer wall of the partition plate (4), the outer wall of the first rotating shaft (92) is fixedly connected with the first gear (93), the end of the first gear (93) is engagedly connected with the second gear (94), the center of the second gear (94) is fixedly connected with the second rotating shaft (95), and the end of the second rotating shaft (95) is fixedly connected with the end of the inner drive roller of the second conveying belt (8).
Citation Information
Patent Citations
Commodity input device based on Internet
CN212120846U
Fresh food source tracing equipment
CN217577233U