Cigarette identification inspection sample auxiliary sequencing device and control program and operation method thereof
By designing an auxiliary sorting device for cigarette identification and inspection samples and utilizing automated code scanning and comparison technology, the problem of tedious and time-consuming manual sorting in cigarette identification and inspection has been solved, and the operating process has been simplified and the accuracy of the results has been improved.
Patent Information
- Application Number
- CN202510810384.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-17
- Publication Date
- 2025-09-23
AI Technical Summary
In cigarette identification and testing, the manual sorting and comparison process is cumbersome, time-consuming, inefficient, easily fatigued, and difficult to guarantee accuracy. Errors are particularly prone to occur when multiple specifications are mixed for testing, affecting the authority of the identification and testing results.
An auxiliary sorting device for cigarette identification and inspection samples is designed, including a tray, a display, a barcode scanning bracket, a drive mechanism, a barcode scanning gun, a remote control and an external controller. Through automated barcode scanning and comparison, the operation process is simplified, the sorting difficulty is reduced, and the efficiency and accuracy are improved.
There is no need for inspectors to repeatedly check the order of cigarette arrangement, which simplifies the operating process, reduces the workload, and improves the accuracy and authority of the inspection results.
Smart Images

Figure CN120685406A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of cigarette identification and testing, and more particularly to a cigarette identification and testing sample auxiliary sorting device and a control program and operation method thereof. Background Art
[0002] Cigarette identification and inspection usually requires the signing of an "Inspection Entrustment Agreement", which is a key step to ensure the legality of cigarette identification and inspection, the validity of the report and risk control. The inspection object must be clearly stated in the entrustment agreement, and the sample information sheet is the concrete carrier of these contents. The first procedure for cigarette identification and inspection is the pre-acceptance of cigarette samples. The inspectors must arrange the cigarette cartons in order according to the sample information sheet, and then disassemble the cigarette cartons in turn to take out the cigarette boxes inside, and arrange them in the same order on the inspection tray for inspection. When arranging cigarette cartons, taking out cigarette boxes, and arranging cigarette boxes, the inspectors must also strictly follow the arrangement order, that is, they need to go through three inspections, so as to avoid the final order of cigarette boxes being disordered when multiple specifications are mixed. When re-inspecting or questioning the inspection results in the later stage, the retained samples can be quickly located in the original order to meet the needs of later traceability and review.
[0003] However, the entire pre-acceptance procedure currently relies too much on manual sorting and comparison, resulting in the following problems: first, the operation process is cumbersome and time-consuming, and inspectors need to complete the arrangement of cigarette strips, disassembly and removal of boxes, and arrangement of cigarette boxes in the order of the sample information sheet; second, manual operation is inefficient, especially in the case of mixed inspection of multiple specifications, the operator needs to repeatedly check the information sheet; third, high-intensity repetitive work can easily lead to personnel fatigue; finally, the accuracy of manual operation is difficult to guarantee, mainly manifested in errors in the correspondence between strips and boxes and confusion of specifications. These errors not only increase the cost of re-inspection, but are also likely to affect the authority of the identification test results. Summary of the Invention
[0004] In view of the above situation, in order to overcome the current cigarette sample pre-acceptance procedure in cigarette identification and inspection work, the inspectors need to complete the arrangement of cigarette strips, disassembly and removal of boxes, and arrangement of boxed cigarettes in the order of the sample information table, and perform three strict sequence comparisons at the same time, which leads to cumbersome and time-consuming operation procedures, low manual operation efficiency, easy fatigue of personnel, and difficulty in ensuring the accuracy of manual operation. The purpose of the present invention is to provide a sorting device that can reduce the difficulty of sorting in the cigarette sample pre-acceptance process, and does not require inspectors to repeatedly check the arrangement order of cigarettes, thereby simplifying the operation process and greatly improving efficiency and accuracy.
[0005] In order to achieve the above object, the technical solution of the present invention is:
[0006] An auxiliary sorting device for cigarette identification and inspection samples includes a tray, a display, a code scanning bracket, a driving mechanism, a code scanning gun, a remote control and an external controller. The tray is placed on the display screen of the display. The tray is made of transparent material. The display establishes a communication connection with the external controller. The external controller is installed with a control program. The control interface of the control program is displayed on the display screen, and the external controller establishes a communication connection with the cloud server to call and collect data. The code scanning bracket is arranged on the top of the display. The driving mechanism is mounted on the code scanning bracket. The code scanning gun is connected to the driving mechanism and establishes a communication connection with the external controller. The driving mechanism has a control circuit board. The control circuit board is integrated with a wireless communication module. The control circuit board is paired with the remote control through the wireless communication module. The driving mechanism can drive the code scanning gun to move along the X-axis direction or along the Y-axis direction.
[0007] Preferably, the driving mechanism includes a motor seat, a bridge seat, a transverse driving motor, a power supply, a transverse guide rail, a slide, a first transmission belt, a first transmission wheel, a first vertical pole and a second transmission wheel. The transverse driving motor and the power supply are electrically connected to the control circuit board. The motor seat and the bridge seat are symmetrically arranged on the left and right sides of the code scanning bracket. The transverse driving motor, power supply and control circuit board are all arranged on the motor seat. The two ends of the transverse guide rail are respectively connected to the motor seat and the bridge seat. The slide is slidably connected to the transverse guide rail. The code scanning gun is connected to the slide. The first transmission wheel is arranged on the output end of the transverse driving motor, the first vertical pole is arranged on the bridge seat, the second transmission wheel is arranged on the first vertical pole, the first transmission belt is wound around the first transmission wheel and the second transmission wheel, and both ends are connected to the slide.
[0008] Preferably, the driving mechanism also includes a longitudinal guide rail, a longitudinal drive motor, a second vertical pole, a third vertical pole, a third transmission wheel, a fourth transmission wheel, a fifth transmission wheel and a second transmission belt. The longitudinal drive motor is electrically connected to the control circuit board. The longitudinal drive motor is arranged on the rear side of the motor seat. The second vertical pole is correspondingly arranged on the code scanning brackets on the front and rear sides of the motor seat. The third vertical pole is arranged on the motor seat. The third transmission wheel and the fourth transmission wheel are respectively correspondingly arranged on the second vertical pole and the third vertical pole. The fifth transmission wheel is correspondingly arranged on the output end of the longitudinal drive motor. The second transmission belt is wound around the third transmission wheel, the fourth transmission wheel and the fifth transmission wheel.
[0009] Preferably, a positioning plate is provided on the barcode scanning gun, the positioning plate and the slide are connected by a locking bolt, and a damping gasket is sleeved on the locking bolt.
[0010] Preferably, the communication connection established between the display and the external controller is a wired communication connection or a wireless communication connection.
[0011] Preferably, the external controller is a notebook computer or a computer.
[0012] A control program for the above-mentioned cigarette identification and inspection sample auxiliary sorting device, which includes a control interface, the control interface includes a product specification queue area on the left, and an operation area on the right, the product specification queue area has horizontal queues in sequence, each horizontal queue has multiple placement grids, the placement grids are color-changeable, and the placement grids have cigarette box information, the operation area has a barcode column, a box barcode column, a sample status information column, a cigarette product specification library, a commissioned product specification queue, a reset button and a progress bar in sequence, the barcode column displays the barcode on the outer packaging of the cigarette sample, the box barcode column displays the QR code on the outer packaging of the cigarette sample, the sample status information column is used to paste the cigarette sample information copied from the cloud server, and click the commissioned product specification queue to generate a scan code queue, the cigarette product specification library is used to view the cigarette product specification information included in the cloud server, the reset button can reset the scan code queue, and the progress bar is used to intuitively display the work progress.
[0013] Preferably, the cigarette pack information includes brand information, specification information and item barcode information.
[0014] Preferably, the control interface also has a prompt window frame. After the bar code sample and the box code sample are scanned, a prompt window frame is generated on the control interface to prompt that the scanning is completed.
[0015] An operating method of the above-mentioned cigarette identification and inspection sample auxiliary sorting device comprises the following steps:
[0016] S1: The cigarette sample information on the cloud server is copied to the sample status information column of the control interface of the external controller control program, and the code scanning queue is generated after the entrusted product specification queue is clicked. The external controller retrieves the cigarette information corresponding to the code scanning queue from the product specification queue library, activates the corresponding number of placement squares in the horizontal queue of the product specification queue area of the control interface, and displays a specific color. The activated placement squares display the generated cigarette box information;
[0017] S2: Select any cigarette sample and align the QR code on the cigarette sample box with the barcode scanner. The barcode scanner records the QR code and feeds it back to the external controller. After the external controller processes and compares it, the color of the placement square that matches the cigarette sample changes and is illuminated;
[0018] S3: disassemble the cigarette sample and take out the box of cigarette samples, and place them on the tray with the barcode facing upwards, facing the corresponding lit placement square;
[0019] S4: Repeat S1 to S3 until all activated placement grids are correspondingly placed with cigarette sample packs, and a prompt window frame is displayed on the control interface of the control program, prompting the inspector to proceed to the next step of scanning the cigarette sample packs;
[0020] S5: Control the remote control to send control instructions to the control circuit board of the drive mechanism, so that the drive mechanism drives the barcode scanner to move along the X-axis and Y-axis directions to scan the codes of each box of cigarette samples, and feeds back to the external controller for secondary comparison to confirm that the placement order of the cigarette samples is correct. After the scanning is completed, the progress bar is filled, and the placement grid changes color again. A prompt window frame is generated on the control interface of the control program to remind the inspector that the process has ended.
[0021] Compared with the prior art, the advantages of the present invention are:
[0022] When using the cigarette identification inspection sample auxiliary sorting device of the present invention for pre-acceptance, the inspector does not need to repeatedly compare the order of the cigarette carton samples and the order of the cigarette box samples with the sample information table. It is only necessary to perform a comparison once after the cigarette box sample is scanned. This simplifies the operation process and reduces the workload of the inspector. The inspector will not easily get tired during the pre-acceptance procedure. In the case of mixed inspection of multiple specifications, the authority of the final inspection result is guaranteed. BRIEF DESCRIPTION OF THE DRAWINGS
[0023] Figure 1 It is a schematic diagram of the overall structure of the sorting device of the present invention when it is in communication with an external controller;
[0024] Figure 2 It is a schematic diagram of the overall structure of the sorting device of the present invention;
[0025] Figure 3 This is a schematic diagram of the overall structure of the drive mechanism of the sorting device of the present invention and the connected barcode scanning gun;
[0026] Figure 4 It is a partial structural diagram of the driving mechanism of the sorting device of the present invention;
[0027] Figure 5 This is a partial structural diagram of the slide of the driving mechanism of the sorting device of the present invention and the connected barcode scanning gun;
[0028] Figure 6 is a schematic diagram of a control interface of a control program of the present invention;
[0029] Figure 7 It is a partial schematic diagram of a horizontal queue when it is the control interface of the control program of the present invention;
[0030] Figure 8 This is a block diagram of the connection between the display and remote control of the sorting device of the present invention after communication with the external controller and the cloud server.
[0031] As shown in the figure:
[0032] 1. Tray; 2. Display; 201. Display screen; 3. Scanning bracket; 4. Driving mechanism; 401. Motor base; 402. Bridge base; 403. Transverse drive motor; 404. Power supply; 405. Transverse guide rail; 406. Slide; 407. First transmission belt; 408. First transmission wheel; 409. First vertical pole; 410. Second transmission wheel; 411. Longitudinal guide rail; 412. Longitudinal drive motor; 413. Second vertical pole; 414. Third vertical pole; 415. Third transmission wheel; 416. Fourth transmission wheel; 417. Fifth transmission wheel; 418. Second transmission belt; 41 9. Control circuit board; 419a. Wireless communication module; 5. Barcode scanner; 501. Positioning plate; 502. Locking bolt; 503. Damping gasket; 6. Remote control; 7. External controller; 8. Control interface; 801. Product specification queue area; 802. Operation area; 803. Horizontal queue; 804. Placement grid; 804a. Pack of cigarette information; 805. Barcode column; 806. Box barcode column; 807. Sample status information column; 808. Roll sample specification library; 809. Entrusted product specification queue; 810. Reset button; 811. Progress bar; 9. Cloud server; 10. Control program. DETAILED DESCRIPTION
[0033] The present invention will be further described in detail below with reference to the accompanying drawings and specific embodiments.
[0034] In the description of the present invention, it should be noted that the terms "upper", "lower", "left", "right", "inside", "outside", etc. indicate directions or positional relationships based on the directions or positional relationships shown in the accompanying drawings, or the directions or positional relationships in which the product of the invention is usually placed when in use. They are only for the convenience of simplifying the description, and do not indicate or imply that the directions are specific directions that must be possessed, specific direction structures and operations, and therefore should not be understood as limiting the present invention.
[0035] like Figure 1 、 Figure 2 and Figure 8As shown, the present invention first relates to an auxiliary sorting device for cigarette identification and inspection samples, which is mainly used to assist inspection personnel in reducing the difficulty of cigarette sorting in the pre-acceptance procedure of cigarette identification and inspection, so that there is no need to repeatedly check the arrangement order, simplify the operation process, and achieve improved efficiency and accuracy. The device includes a tray 1, a display 2, a code scanning bracket 3, a drive mechanism 4, a code scanning gun 5, a remote control 6 and an external controller 7, wherein the top of the display 2 has a display screen 201, and the tray 1 is placed on the display screen 201. The tray 1 is made of transparent material, so that the images and texts displayed on the display can enter the field of view through the tray 1, avoiding blocking of the information on the display screen 201. The display 2 establishes a communication connection with the external controller 7, and the external controller 7 is connected to the cloud server. 9 establishes a communication connection to call the collected data. The cloud server 9 records the cigarette sample information corresponding to the sample information table. The external controller 7 is installed with a control program 10, so that the control interface 8 of the control program 10 can be displayed on the display screen 201. The control interface 8 includes an operation area 802 on the right and a product specification queue area 801 on the left. The product specification queue area 801 has horizontal queues 803 in sequence, that is, there are multiple horizontal queues 803, each horizontal queue 803 has multiple placement grids 804, the color of the placement grid 804 can be changed, and the placement grid 804 has the box cigarette information 804a. The placement grid 804 can be presented to the inspector's field of view through the transparent tray 1. The operation area 802 has barcodes in sequence. Column 805, box barcode column 806, sample status information column 807, roll sample specification library 808, entrusted specification queue 809, reset button 810, progress bar 811, the barcode column 805 displays the barcode on the outer packaging of the cigarette sample, and the box barcode column 806 displays the QR code on the outer packaging of the box cigarette sample. The sample status information column 807 is used to paste the cigarette sample information copied from the cloud server 9, and generate a scan queue after clicking the entrusted specification queue 809. The external controller 7 retrieves the cigarette information corresponding to the scan queue in the specification queue library, so that the corresponding number of placement squares 804 in the horizontal queue 803 of the specification queue area 801 of the control interface 8 is activated and displays a specific color. The box cigarette information is generated in the activated placement square 804. Information 804a, and the colors or brightness displayed by adjacent grids 804 are different, making the boundaries of adjacent grids 804 clearer, the volume sample specification library 808 can view the various types of volume sample specification information included in the cloud server 9. For some rare cigarettes, they may not be included in the product specification information library. In this case, the inspector is supported to manually enter the information of the cigarette. The reset button 810 can reset the scanning queue generated in the sample status information bar 807. The progress bar 811 is used to intuitively reflect the work progress. The scanning bracket 3 is provided on the top of the display 2. The scanning bracket 3 has two, and both scanning brackets 3 are door-type. The driving mechanism 4 is mounted on the scanning bracket 3 and supported by the scanning bracket 3. The scanning gun 5 is connected to the driving mechanism 4.And establish a communication connection with the external controller 7, the barcode scanning gun 5 is used to scan the barcodes on the cigarette sample packaging box and the box cigarette sample packaging box. After each scanning is completed, a prompt sound will be generated and fed back to the external controller 7 for comparison with the sample information in the sample status information column 807. If there is no corresponding information in the sample status information column 807, the barcode scanning gun 5 will emit a buzzer prompt sound to indicate a scanning error. If there is corresponding information, a short beep sound will be emitted to indicate that the scanning is successful. The driving mechanism has a control circuit board 419, and a wireless communication module is integrated on the control circuit board 419. The control circuit board 419 is paired with the remote control 6 through the wireless communication module. That is to say, the driving mechanism 4 is controlled by the remote control 6, and the driving mechanism 4 can drive the barcode scanning gun 5 along the X-axis direction or along the Y-axis direction. Moving to the front, the auxiliary sorting device of the present invention is used in the pre-acceptance procedure of cigarette identification and inspection. The inspector first ensures that the above-mentioned communication connection is correct, and copies the cigarette sample information on the cloud server 9 to the sample status information column 807 of the control interface 8 of the control program 10. At the same time, a scan queue is generated, and a corresponding number of placement grids 804 in the horizontal queue 803 of the specification queue area 801 of the control interface 8 are activated and displayed in a specific color. After activation, the colors of adjacent placement grids 804 in the present invention are distinguished by different shades of gray, and the generated box cigarette information 804a is displayed in the activated placement grid 804. Then, the tray 1 is placed on the display screen 201 of the display 2. The presence of the placement grid 804 can be observed through the transparent tray 1. In the process, the inspector selects any cigarette sample, aligns the QR code on the cigarette sample packaging box with the probe of the barcode scanner 5, and the barcode scanner 5 scans the QR code and feeds it back to the external controller 7. After the external controller 7 processes and compares it, the placement grid 804 that matches the cigarette sample is lit. In the present invention, red is used to represent the lit state. At this time, the inspector can disassemble the cigarette sample and take out the cigarette sample box, place it on the tray with the barcode facing upward, and place it opposite to the corresponding lit placement grid 804. The color difference can effectively avoid the placement error of the cigarette sample box, and repeat the above steps until all the activated placement grids 804 are placed with cigarette sample boxes. In this process, the progress of the progress bar 811 changes accordingly. At this time, the control of the control program 10 A prompt window frame 812 is generated on the interface 8, prompting the inspector to proceed to the next step of scanning the cigarette sample. The inspector sends a control instruction to the control circuit board 419 of the control drive mechanism 4 through the remote control 6. After receiving the control instruction, the control circuit board 419 drives the drive mechanism 4 to operate. The drive mechanism 4 will drive the code scanning gun 5 to move and scan the codes of each cigarette sample, and feedback is sent to the external controller 7 for a second comparison to confirm that the order of the cigarette sample is correct. After the code scanning is completed, the progress bar 811 is filled, and the placement grid 804 changes color to green again. A prompt window frame 812 is generated on the control interface 8 of the control program 10 to prompt the inspector that the process is finished. It should be mentioned that the chip of the control circuit board 419 has the movement path parameters of the code scanning gun 5.After receiving the control command to operate, the control circuit board 419 of the drive mechanism 4 will drive the slide 406 and the connected barcode scanner 5 to move along a preset path. The inspector can send a control command to stop the movement through the remote control 6, thereby determining the movement stroke of the barcode scanner 5 based on the actual number of cigarette pack samples. During the entire pre-acceptance process, the inspector does not need to repeatedly compare the order of the cigarette carton samples and the order of the cigarette pack samples with the sample information table. The comparison only needs to be performed once the cigarette pack samples are scanned. This simplifies the operation process and reduces the workload of the inspector. The inspector will be less likely to become fatigued during the pre-acceptance process. In the case of mixed inspection of multiple specifications, the authority of the final inspection results is guaranteed.
[0036] like Figures 2 to 4 As shown, the driving mechanism 4 includes a motor base 401, a bridge base 402, a transverse driving motor 403, a power supply 404, a transverse guide rail 405, a slide 406, a first transmission belt 407, a first transmission wheel 408, a first vertical rod 409 and a second transmission wheel 410, wherein the motor base 401 and the bridge base 402 are respectively arranged on the left and right sides of the code scanning bracket 3 and are kept opposite to each other, and the transverse driving motor 403, the power supply 404 and the control circuit board 419 are all arranged on the motor base 40 1, the lateral drive motor 403 and the power supply 404 are electrically connected to the control circuit board 419, the power supply 404 supplies power to the lateral drive motor 403, and the lateral drive motor 403 is controlled by the control circuit board 419. The two ends of the transverse guide rail 405 are respectively connected to the motor base 401 and the bridge base 402, and the slide 406 is slidably connected to the transverse guide rail 405. Relying on the transverse guide rail 405, it can move between the motor base 401 and the bridge base 402, that is, it can be displayed on the screen. The device 2 moves in the X-axis direction, and the code scanning gun 5 is connected to the slide 406. When the slide 406 moves, it drives the code scanning gun 5 to move synchronously, so that the box cigarette samples placed on the tray 1 can be fully scanned. The first transmission wheel 408 is arranged on the output end of the transverse driving motor 403, the first vertical rod 409 is arranged on the bridge seat 402, and the second transmission wheel 410 is arranged on the first vertical rod 409. The first transmission belt 407 is wound around the first transmission wheel 408 and the second transmission wheel 410, and both ends are connected to the slide 406. The transverse driving motor 403 runs when the control circuit board 419 receives the control command issued by the remote control 6. The output end of the transverse driving motor 403 drives the first transmission wheel 408 to rotate, and the first transmission wheel 408 drives the first transmission belt 407 to transmit, and causes the second transmission wheel 410 on the bridge seat 402 on the other side to rotate, so that the first transmission belt 407 can drive the slide 406 and the connected one to move back and forth on the transverse guide rail 405.
[0037] like Figures 2 to 4As shown, the driving mechanism 4 also includes a longitudinal guide rail 411, a longitudinal driving motor 412, a second vertical rod 413, a third vertical rod 414, a third transmission wheel 415, a fourth transmission wheel 416, a fifth transmission wheel 417 and a second transmission belt 418, wherein the longitudinal guide rail 411 is set between the two code scanning brackets 3, and the height is lower than the top of the code scanning bracket 3, and the motor base 401 is slidably connected to the longitudinal guide rail 411, so that when the motor base 401 slides along the longitudinal guide rail 411, it can be affected by the code scanning brackets on both sides. 3 is blocked to avoid dislocation. The longitudinal drive motor 412 is arranged on the motor base 401 and is electrically connected to the control circuit board 419, so that it is controlled by the control circuit board 419. The motor base 401 is provided with a partition, which separates the longitudinal drive motor 412 and the transverse drive motor 403 on the front and rear sides of the motor base 401. The longitudinal motor is also electrically connected to the power supply 404 and is powered by the power supply 404. The second vertical pole 413 is correspondingly arranged on the code scanning bracket 3 on the front and rear sides of the motor base 401, and the third vertical pole 414 is provided on the motor base 401, and the number of the third transmission is equal to the second vertical rod 413, that is, there are two, two third transmission wheels 415 are correspondingly installed on the second vertical rod 413, the fourth transmission wheel 416 is provided on the third vertical rod 414, the fifth transmission wheel 417 is provided on the output end of the longitudinal drive motor 412, the second transmission belt 418 is wound around the second transmission wheel 410, the third transmission wheel 415 and the fourth transmission wheel 416, and the longitudinal drive motor 412 receives the remote control signal on the control circuit board 419. The controller 6 sends a control instruction, and its output end first drives the fifth transmission wheel 417 to rotate, and the fifth transmission belt drives the second transmission belt 418 to transmit. Under the action of the second transmission belt 418, the third transmission wheel 415 and the fourth transmission wheel 416 rotate synchronously, and drive the motor base 401 to move along the Y-axis direction. At this time, the bridge base 402 connected to the motor base 401 through the transverse guide rail 405, the slide 406 slidably connected to the bridge base 402, and the barcode scanner 5 will also move synchronously along the Y-axis direction.
[0038] like Figure 4 and Figure 5 As shown, a positioning plate 501 is provided on the barcode scanning gun 5, and the positioning plate 501 and the slide 406 are connected by a locking bolt 502, thereby allowing the barcode scanning gun 5 to be rotated to change the orientation angle. When scanning cigarette samples, it is convenient for the inspector to bring the cigarette samples close to the barcode scanning gun 5. A damping gasket 503 is provided on the locking bolt 502, thereby allowing the barcode scanning gun 5 to perform adaptive angle adjustment. After the inspector changes the orientation angle of the barcode scanning gun 5 by rotating it, the locking force of the threaded structure of the locking bolt 502 is used to increase the friction between the positioning plate 501 and the damping gasket 503, so that the barcode scanning gun 5 can maintain the adjusted angle to avoid accidental swinging.
[0039] Furthermore, the communication connection established between the display 2 and the external controller 7 is a wired communication connection or a wireless communication connection. The wired communication connection uses a data line to establish a connection between the display 2 and the external controller 7. The wireless communication connection uses Bluetooth, WIFI, cellular network, etc. to establish a connection between the display 2 and the external controller 7.
[0040] like Figure 1 As shown, the external controller 7 is a laptop or a computer. The present invention uses a computer as a core control unit, which can interact with the display 2. Since it has powerful computing power and rich scalability, it can effectively cope with the pre-acceptance work of cigarette identification and inspection.
[0041] like Figures 6 to 8 As shown, the present invention also relates to a control program of the above-mentioned cigarette identification and inspection sample auxiliary sorting device, the control program 10 includes a control interface 8, the control interface 8 includes a product specification queue area 801 located on the left, and an operation area 802 located on the right, the product specification queue area 801 has horizontal queues 803 in sequence, each horizontal queue 803 has multiple placement grids 804, the color of the placement grid 804 is changeable, and the placement grid 804 has box cigarette information 804a, the operation area 802 has a barcode column 805, a box barcode column 806, a sample status column 807, and a sample status column 808. The status information bar 807, the roll sample specification library 808, the reset button 810 and the progress bar 811, the barcode bar 805 displays the barcode on the outer packaging of the cigarette sample, the box barcode bar 806 displays the QR code on the outer packaging of the box cigarette sample, the sample status information bar 807 is used to paste the cigarette sample information copied from the cloud server 9, and click the entrusted product specification queue 809 to generate a scan queue, the roll sample specification library 808 is used to view the roll sample specification information included in the cloud server 9, the reset button 810 can reset the scan queue, and the progress bar 811 is used to intuitively display the work progress.
[0042] like Figure 7 As shown, the cigarette pack information 804a includes brand information, specification information and item barcode information.
[0043] Furthermore, the control interface 8 also has a prompt window frame 812. After the cigarette sample and the cigarette box sample are scanned, the prompt window frame 812 is generated. The prompt window frame 812 reminds the inspector that the scanning is complete and can proceed to the next step, and reminds the inspector that the process is complete.
[0044] Combine Figures 1 to 8 The present invention also relates to an operating method of the above-mentioned cigarette identification and inspection sample auxiliary sorting device, which comprises the following steps:
[0045] S1: The cigarette sample information on the cloud server 9 is copied to the sample status information column 807 of the control interface 8 of the control program 10 of the external controller 7, and the code scanning queue is generated after clicking the entrusted specification queue 809. The external controller 7 retrieves the cigarette information corresponding to the code scanning queue from the specification queue library, so that the corresponding number of placement squares 804 in the horizontal queue 803 of the specification queue area 801 of the control interface 8 are activated and displayed in a specific color. In the present invention, the placement squares 804 are displayed in gray after being activated, and there is a difference in brightness between adjacent activated placement squares 804, so that the inspector can better distinguish the box cigarette samples when placing them later. The generated box cigarette information 804a is displayed in the activated placement squares 804;
[0046] S2: The inspector selects any cigarette sample and aligns the QR code on the cigarette sample box with the probe of the barcode scanner 5. The barcode scanner 5 scans and records the QR code and feeds it back to the external controller 7. After the external controller 7 processes and compares it, the placement square 804 that matches the cigarette sample changes color and lights up. In the present invention, red represents the lighting state, and the red colors of adjacent placement squares 804 have different brightness, which facilitates identification when the inspector places the cigarette sample box later;
[0047] S3: Disassemble the cigarette sample and take out the cigarette pack sample, and place it on the tray with the barcode facing upwards, making sure that the cigarette pack sample is opposite to the corresponding lit placement grid 804. The color difference can effectively avoid the placement error of the cigarette pack sample;
[0048] S4: Repeat S1 to S3 until all activated placement grids 804 are corresponding to cigarette sample packs, and a prompt window frame 812 is generated on the control interface 8 of the control program, prompting the inspector to proceed to the next step of scanning the cigarette sample packs;
[0049] S5: Control the remote control 6 to send a control instruction to the control circuit board 419 of the driving mechanism 4, so that the driving mechanism 4 drives the barcode scanning gun 5 to move along the X-axis and Y-axis directions to scan the codes of each box of cigarette samples, and feeds back to the external controller 7 for secondary comparison to confirm that the placement order of the box of cigarette samples is correct. After the scanning is completed, the progress bar 811 is filled, and a prompt window frame 812 is generated on the control interface 8 of the control program to prompt the inspector that the process is completed.
[0050] The above embodiments and descriptions are only for explaining the principles and best embodiments of the present invention. Without departing from the spirit and scope of the present invention, the present invention may be subject to various changes and improvements, which shall fall within the scope of the invention to be protected.
Claims
1. A device for assisting sorting of cigarette identification and inspection samples, characterized in that: It comprises a tray (1), a display (2), a code scanning bracket (3), a driving mechanism (4), a code scanning gun (5), a remote controller (6) and an external controller (7). The tray (1) is placed on a display screen (201) of the display (2). The tray (1) is made of a transparent material. The display (2) establishes a communication connection with the external controller (7). The external controller (7) is installed with a control program (10). The control interface (8) of the control program (10) is displayed on the display screen (201). The external controller (7) establishes a communication connection with a cloud server (9) to call and collect data. The code scanning bracket (3) is arranged on the top of the display (2), the driving mechanism (4) is mounted on the code scanning bracket (3), the code scanning gun (5) is connected to the driving mechanism (4), and establishes a communication connection with the external controller (7), the driving mechanism (4) has a control circuit board (419), and a wireless communication module (419a) is integrated on the control circuit board (419). The control circuit board (419) is paired with the remote control (6) through the wireless communication module (419a), and the driving mechanism (4) can drive the code scanning gun (5) to move along the X-axis direction or along the Y-axis direction.
2. The cigarette identification and inspection sample auxiliary sorting device according to claim 1, characterized in that: The driving mechanism (4) comprises a motor seat (401), a bridge seat (402), a transverse driving motor (403), a power supply (404), a transverse guide rail (405), a slide seat (406), a first transmission belt (407), a first transmission wheel (408), a first vertical rod (409) and a second transmission wheel (410); the transverse driving motor (403) and the power supply (404) are electrically connected to a control circuit board (419); the motor seat (401) and the bridge seat (402) are symmetrically arranged on the left and right sides of the code scanning bracket (3); the transverse driving motor (403), the power supply (404) and the control circuit board (419) are all arranged on the motor seat (401). The base (401) is provided with a plurality of movable members, the plurality of movable members and the plurality of movable members being connected to each other. The movable members are provided with a plurality of movable members, the plurality of movable members being connected to each other. The movable members are provided with a plurality of movable members, the plurality of movable members being connected to each other. The movable members are provided with a plurality of movable members, the plurality of movable members being connected to each other.
3. The cigarette identification and inspection sample auxiliary sorting device according to claim 2, characterized in that: The driving mechanism (4) further comprises a longitudinal guide rail (411), a longitudinal drive motor (412), a second vertical rod (413), a third vertical rod (414), a third transmission wheel (415), a fourth transmission wheel (416), a fifth transmission wheel (417) and a second transmission belt (418); the longitudinal drive motor (412) is electrically connected to a control circuit board (419); the longitudinal drive motor (412) is arranged at the rear side of the motor seat (401); the second vertical rod (413) is correspondingly arranged at the motor seat ( The third vertical rod (414) is provided on the motor base (401), the third transmission wheel (415) and the fourth transmission wheel (416) are respectively provided on the second vertical rod (413) and the third vertical rod (414), the fifth transmission wheel (417) is provided on the output end of the longitudinal drive motor (412), and the second transmission belt (418) is wound around the third transmission wheel (415), the fourth transmission wheel (416) and the fifth transmission wheel (417).
4. The cigarette identification and testing sample auxiliary sorting device according to claim 3, characterized in that: The barcode scanning gun (5) is provided with a positioning plate (501), the positioning plate (501) and the slide seat (406) are connected via a locking bolt (502), and a damping washer (503) is sleeved on the locking bolt (502).
5. The cigarette identification and testing sample auxiliary sorting device according to any one of claims 1 to 4, characterized in that: The communication connection established between the display (2) and the external controller (7) is a wired communication connection or a wireless communication connection.
6. The cigarette identification and inspection sample auxiliary sorting device according to claim 5, characterized in that: The external controller (7) is a notebook computer or a computer.
7. A control program for the cigarette identification and inspection sample auxiliary sorting device according to any one of claims 1, 2, 3, 4, 6 or 7, characterized in that: It includes a control interface (8), the control interface (8) includes a product specification queue area (801) located on the left, and an operation area (802) located on the right, the product specification queue area (801) has horizontal queues (803) in sequence, each of the horizontal queues (803) has a plurality of placement grids (804), the color of the placement grids (804) is changeable, and the placement grids (804) have box cigarette information (804a), the operation area (802) has a barcode column (805), a box barcode column (806), a sample status information column (807), a cigarette product specification library (808) in sequence , entrusted product specification queue (809), reset button (810) and progress bar, the barcode column (805) displays the barcode on the outer packaging of the cigarette sample, the box barcode column (806) displays the QR code on the outer packaging of the box cigarette sample, the sample status information column (807) is used to paste the cigarette sample information copied from the cloud server (9), and click the entrusted product specification queue (809) to generate a scan queue, the cigarette product specification library (808) is used to view the cigarette product specification information included in the cloud server (9), the reset button (810) can reset the scan queue, and the progress bar is used to intuitively display the work progress.
8. A control program (10) according to claim 7, characterized in that: The cigarette pack information (804a) includes brand information, specification information and item barcode information.
9. A control program (10) according to claim 8, characterized in that: The control interface (8) also has a prompt window frame (812). After the bar code and the box code of the cigarette sample are scanned, the prompt window frame (812) is generated on the control interface (8) to prompt that the scanning is completed.
10. An operating method for the cigarette identification and inspection sample auxiliary sorting device according to any one of claims 1, 2, 3, 4, 6 or 7, characterized in that: It includes the following steps: S1: The cigarette sample information on the cloud server (9) is copied to the sample status information column (807) of the control interface (8) of the control program (10) of the external controller (7), and a code scanning queue is generated after clicking the entrusted product specification queue (809). The external controller (7) retrieves the cigarette information corresponding to the code scanning queue from the product specification queue library, and activates the corresponding number of placement squares (804) in the horizontal queue (803) of the product specification queue area (801) of the control interface (8) and displays a specific color. The activated placement squares (804) display the generated cigarette box information (804a); S2: Select any cigarette sample, place the QR code on the cigarette sample packaging box opposite to the code scanning gun (5), the code scanning gun (5) scans and records the QR code and feeds it back to the external controller (7), after the external controller (7) processes and compares it, the placement grid (804) that matches the cigarette sample changes color and is illuminated; S3: disassemble the cigarette sample and take out the box of cigarette samples, place them on the tray with the barcode facing upwards, and place them opposite to the corresponding lit placement grid (804); S4: Repeat S1 to S3 until all activated placement grids (804) are placed with corresponding cigarette samples, and a prompt window frame (812) is generated on the control interface (8) of the control program (10), prompting the inspector to proceed to the next step of scanning the cigarette sample; S5: Control the remote controller (6) to send a control instruction to the control circuit board (419) of the driving mechanism (4), so that the driving mechanism (4) drives the barcode scanning gun (5) to move along the X-axis and Y-axis directions to scan the barcodes of each box of cigarette samples, and feeds back to the external controller (7) for secondary comparison to confirm that the placement order of the box of cigarette samples is correct. After the barcode scanning is completed, the progress bar is filled, and the placement grid (804) changes color again. A prompt window frame (812) is generated on the control interface (8) of the control program (10) to prompt the inspector that the process is completed.