A device and method for producing a packaging box with a built-in radio frequency tag in a corrugated paper interlayer

Through the production device composed of support, guide rod, corrugated roller, etc., the quality problems of corrugated cardboard during processing and transportation are solved, and the stability and anti-counterfeiting function of corrugated cardboard are improved.

CN116160720BActive Publication Date: 2025-08-22SHANDONG TAIBAO PREVENTING COUNTERFEIT
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Patent Information

Application Number
CN202310197981.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-02-27
Publication Date
2025-08-22
Estimated Expiration
2043-02-27

AI Technical Summary

Technical Problem

The existing corrugated cardboard packaging boxes are prone to bend and broken during processing and transportation, wrinkles, lowered height of the crescent peak and damaged labels, affecting the quality and anti-counterfeiting effect.

Method used

The production device consisting of a support, guide rod, corrugated roller, drive motor, uniform glue coating mechanism, drying and transportation mechanism and feeding mechanism is used to ensure the stability and anti-counterfeiting function of corrugated cardboard through steam softening, uniform glue coating, drying and molding and built-in radio frequency labels.

Benefits of technology

It improves the finished product quality of corrugated cardboard, avoids label damage during transportation, and enhances the anti-counterfeiting function of the packaging box.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to the technical field of packaging box production, and in particular to a packaging box production device and method with a radio frequency tag built into a corrugated paper interlayer. The device comprises a support, the support is fixedly connected to a symmetrically distributed first guide rod, the first guide rod is slidably provided with a first sliding frame, the support is fixedly connected to a first bracket, the first bracket is rotatably provided with a first corrugated roller and a second corrugated roller, one end of the first corrugated roller and the second corrugated roller are connected by a gear set, the first bracket is fixedly connected to a first driving motor through a connecting seat, the first bracket is provided with a uniform gluing mechanism, the support is provided with a drying and transporting mechanism, and the support is provided with a loading mechanism. The present invention puts the soft cardboard in a taut state through a first spring to avoid wrinkles before the soft cardboard is bent, and the corrugated paper is adsorbed and shaped through the uniform gluing mechanism and the cylindrical hole of the second corrugated roller to ensure the stability of the supporting strength of the corrugated cardboard, and the extrusion of the corrugated paper peaks during the transportation of double-layer corrugated paper is reduced through the drying and transporting mechanism.
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Description

Technical Field

[0001] The present invention relates to the technical field of packaging box production, and in particular to a packaging box production device and method with a radio frequency tag built into a corrugated paper interlayer. Background Art

[0002] After the production of liquor is completed, it is often packaged and protected in boxes. During the subsequent sales process of liquor, the circulation process of the liquor needs to be recorded. The recording method is often to stick a label on the outside of the box. The processing and production process of liquor boxes is as follows: the material is processed by corrugated rollers to form corrugated cardboard. The processed corrugated cardboard is then passed through two cutting machines to form the unfolded box, leaving indentations at the bends, and finally folded and glued to form the box.

[0003] During the processing of existing corrugated cardboard packaging boxes, soft cardboard needs to be squeezed and bent by corrugating rollers to form corrugated paper. During this process, the corrugated paper is easily bent and broken by the squeezing of the corrugating rollers, and is also prone to wrinkles, which affects the quality of the corrugated cardboard products. During the transportation of the bent double-layer corrugated paper, under the squeezing action of the two guide rollers, the corrugated paper that is not firmly pasted slides and flattens relative to each other, resulting in a decrease in the height of the flute peaks of the double-layer corrugated paper, making the thickness of the corrugated paper uneven after processing, resulting in a decrease in the quality of the finished corrugated paper product. At the same time, during transportation, the packaging boxes often rub against each other, causing the labels on the outside of the packaging boxes to be damaged, making the packaging boxes unable to play an anti-counterfeiting effect.

[0004] To address the above problems, we have developed a packaging box production device with a built-in radio frequency tag in the corrugated paper interlayer. Summary of the Invention

[0005] In order to overcome the above-mentioned shortcomings, the present invention provides a packaging box production device with a radio frequency tag built into a corrugated paper interlayer.

[0006] The technical solution of the present invention is: a packaging box production device with a built-in radio frequency tag in a corrugated paper interlayer, including a support, the support is fixedly connected to a control terminal through a connecting plate, the support is fixedly connected to equidistantly distributed material rollers through a connecting frame, the support is respectively provided with a steam roller and a conveying mechanism through a supporting frame, the top of the support is fixedly connected to a symmetrically distributed first guide rod, the first guide rod is slidably provided with a first sliding frame, the first sliding frame is rotatably provided with a guide roller for conveying soft cardboard, a first spring is installed between the first sliding frame and the support, the support is fixedly connected to a first bracket, the first bracket is rotatably provided with a first corrugated roller and a second corrugated roller, the first corrugated roller and the second corrugated roller are driven by a gear set, the first bracket is fixedly connected to a first drive motor through a connecting seat, the first The output shaft of a driving motor is fixedly connected to the first corrugated roller. The first bracket is rotated by the connecting frame and is provided with a pressure roller. The pressure roller and the first corrugated roller are driven by a pulley and a belt. The support is fixedly connected to the second bracket. The second bracket is provided with a guide roller for conveying hard cardboard. The first bracket is provided with a uniform gluing mechanism for smearing glue on the corrugated paper. The support is provided with a drying and transporting mechanism for pulling and drying the corrugated paper. The support is provided with a feeding mechanism for randomly adding radio frequency tags into the corrugated cardboard. The conveying mechanism, the first driving motor, the uniform gluing mechanism, the drying and transporting mechanism and the feeding mechanism are all electrically connected to the control terminal. During the production and processing of corrugated paper, the elastic force of the first spring is used to keep the wet soft cardboard in a taut state at all times.

[0007] More preferably, a support baffle is provided in the second corrugated roller, one end of the support baffle is fixedly connected to the first bracket, the support baffle contacts and cooperates with the second corrugated roller to form a circumferentially distributed chamber, the support baffle is fixed with symmetrically distributed conduits, the symmetrically distributed conduits are respectively connected to adjacent chambers on the second corrugated roller, and the groove of the second corrugated roller is provided with evenly distributed cylindrical holes.

[0008] The axially extending support plate is fixed to the support plate, and the axially extending support plate is fixed to the support plate, and the axially extending support plate is connected to the support plate, wherein the support plate is fixed to the support plate, and the support plate is connected to the support plate, wherein the support plate is fixed to the support plate, and the support plate is connected to the support plate, and the support plate is connected to the support plate, and the support plate is connected to the support plate, and the support plate is connected to the support plate, and the support plate is connected to the support plate, and the support plate is connected to the support plate, and the support plate is connected to the support plate, and the support plate is connected to the support plate, and the support plate is connected to the support plate, and the support plate is connected to the support plate, and the support plate is connected to the support plate, and the support plate is connected to the support plate, and the support plate is connected to the support plate, and the support plate is connected to the support plate, and the support plate is connected to the support plate, and the support plate is connected to the support plate, and the support plate is connected to the support plate, and the support plate is connected to the support plate,

[0009] More preferably, the drying and transporting mechanism includes a support shell, the support shell is fixedly connected to the upper end of the support through a connecting frame, the support shell is filled with dry hot air, the support shell is provided with a symmetrically distributed rotating shaft, the support shell is fixedly connected to a second driving motor, the output shaft of the second driving motor is fixedly connected to one of the rotating shafts, the upper and lower adjacent rotating shafts are driven by a gear set, and the left and right adjacent rotating shafts are driven by a pulley and a second transmission belt, the interior of the support shell is provided with symmetrically distributed guide grooves, the second transmission belt symmetrically distributed on the upper side is fixedly connected to a uniformly distributed second fixed block, the second transmission belt symmetrically distributed on the lower side is fixedly connected to a uniformly distributed third fixed block, the second fixed block and the third fixed block are both provided with cylindrical rods that cooperate with adjacent guide grooves, the third fixed block is slidably provided with a second sliding frame, a second spring is installed between the second sliding frame and the adjacent third fixed block, a symmetrically distributed first limit plate is fixedly connected to the support shell, the first limit plate is used to guide the second sliding frame, and the second driving motor is electrically connected to the control terminal.

[0010] More preferably, the feeding mechanism includes a fixed frame, the fixed frame is fixed to the upper end of the support, the fixed frame is provided with an electric slider, the upper end of the electric slider is fixed to a fixed shell through a connecting plate, the side wall of the fixed shell is provided with a feed port, the fixed shell is fixed to a fixed plate through a connecting plate, the fixed plate is fixed to a servo motor, the fixed plate is fixed to an electric coating machine through a connecting plate, the output shaft of the servo motor is provided with a pop-up component for popping out a radio frequency tag through a connecting block, the second bracket is provided with a synchronization component for moving synchronously with the material, and the electric slider, servo motor and electric coating machine are all electrically connected to the control terminal.

[0011] More preferably, the pop-up assembly includes a fourth fixed block, the fourth fixed block is fixedly connected to the output shaft of the servo motor through a connecting block, the fourth fixed block is slidably provided with a third sliding frame, a first tension spring is installed between the third sliding frame and the fourth fixed block, the third sliding frame is slidably provided with a sliding block, a third spring is installed between the sliding block and the third sliding frame, the sliding block is slidably provided with an air guide shell for adsorbing the radio frequency tag, the sliding block is fixedly connected with a first limiting column, the third sliding frame is slidably provided with a second limiting column, the third sliding frame is slidably provided with a connecting rod, a second tension spring is installed between the connecting rod and the third sliding frame, one end of the connecting rod is fixedly connected to the second limiting column, the other end of the connecting rod is configured to be telescopic and fixed to the air guide shell, and the fixed plate is fixedly connected with the second limiting plate, the third limiting plate and the fourth limiting plate.

[0012] More preferably, the second limiting plate is configured to be gradient, one section of which is arc-shaped and the other section is inclined, the second limiting plate contacts and cooperates with the second limiting column, one end of the third limiting plate is configured to be bent, and the fourth limiting plate is L-shaped, and the third limiting plate and the fourth limiting plate both contact and cooperate with the first limiting column.

[0013] More preferably, the synchronization component includes a limit block, which is fixed to the air guide housing, and the adjacent guide rollers of the second bracket are driven by a pulley and a third transmission belt. The second bracket is fixed with a symmetrically distributed fixed rod, and the fixed rod is slidably provided with a fourth sliding frame, and a fourth spring is installed between the fourth sliding frame and the second bracket. The symmetrically distributed fourth sliding frame is slidably provided with a fifth sliding frame, and a fifth spring is installed between the fifth sliding frame and the fourth sliding frame. The fifth sliding frame is fixed with an electromagnetic block that cooperates with the third transmission belt.

[0014] More preferably, the outer side wall of the third transmission belt is evenly provided with triangular grooves, and the third transmission belt is built with iron sheet, and the electromagnetic block cooperates with the third transmission belt to enhance the friction between the two.

[0015] More preferably, a method for producing a packaging box with a built-in radio frequency tag in a corrugated paper interlayer comprises the following specific steps:

[0016] S1: The operator installs the required material rollers and makes the material rollers pass around the designated steam rollers, conveying mechanism, first corrugating roller, second corrugating roller, pressing roller, etc., and then the operator makes corresponding settings on the control terminal;

[0017] S2: After the settings are completed, the operator starts the packaging box production line through the control terminal. The first and second corrugating rollers rotate to process the corrugated paper. The squeezed and bent corrugated paper passes through the swing shell for gluing. Then, the pressure roller and the second corrugating roller act to make the corrugated paper stick together with a layer of cardboard. The combined double-layer corrugated paper is alternately squeezed and pulled by the four second fixed blocks and the second sliding frame for transportation. At the same time, the dry air in the swing shell dries and shapes the adhered corrugated paper, completing the production and processing of the double-layer corrugated paper.

[0018] S3: The control terminal controls the electric slider and servo motor to work intermittently, causing the air guide shell to sequentially absorb the RFID tags and swing. During the swinging process, the electric coating machine works to apply colloid to the absorbed RFID tags. The air guide shell then ejects the absorbed RFID tags onto the hardboard. The ejected air guide shell and the hardboard move synchronously. Then the control terminal stops the air guide shell from absorbing the attached RFID tags. Subsequently, the glue roller of the second bracket applies glue to the double-layer corrugated paper. At the same time, under the action of the guide roller of the second bracket, the hardboard with the RFID tags attached is adhered to the other side of the double-layer corrugated paper, completing the assembly of the corrugated paper.

[0019] S4: The assembled corrugated cardboard passes through a cutting machine to form the unfolded shape of the packaging box. The packaging box shape is then processed by a folding device and a gluing device to form a packaging box.

[0020] The beneficial effects are as follows: the present invention utilizes a steam roller to soften the soft cardboard to avoid bending and breaking during the processing of corrugated paper; the first spring and the first sliding frame enable the soft cardboard to be kept in a tight state when entering between the first corrugated roller and the second corrugated roller, to avoid wrinkles before the soft cardboard is bent; the glue is evenly applied to the peaks of the corrugated paper by a uniform gluing mechanism, and then the corrugated paper is adsorbed and shaped in combination with the cylindrical hole of the second corrugated roller, to ensure the stability of the supporting strength of the corrugated cardboard; the second fixed block and the second sliding frame in the drying and transportation mechanism are alternately squeezed to reduce the squeezing of the peaks of the corrugated paper during the transportation of the double-layer corrugated paper; the air guide shell is used to stick the adsorbed radio frequency tag to the hard cardboard through the feeding mechanism; the air guide shell and the hard cardboard move synchronously to avoid glue overflow during the pasting of the radio frequency tag; at the same time, the built-in radio frequency tag is prevented from being damaged during transportation, thereby improving the anti-counterfeiting function of the packaging box. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] Figure 1 It is a schematic diagram of the three-dimensional structure of the present invention.

[0022] Figure 2 This is a structural diagram of the first bracket of the present invention.

[0023] Figure 3 This is a schematic structural diagram of the second corrugated roller of the present invention.

[0024] Figure 4 It is a cross-sectional view of the second corrugating roller of the present invention.

[0025] Figure 5 It is a structural schematic diagram of the swing shell of the present invention.

[0026] Figure 6 It is a cross-sectional view of the uniform glue coating mechanism of the present invention.

[0027] Figure 7 It is a cross-sectional view of the supporting shell of the present invention.

[0028] Figure 8 It is a cross-sectional view of the drying and transporting mechanism of the present invention.

[0029] Figure 9 It is a schematic diagram of the three-dimensional structure of the feeding mechanism of the present invention.

[0030] Figure 10 It is a schematic diagram of the three-dimensional structure of the air guide shell of the present invention.

[0031] Figure 11 It is a schematic diagram of the three-dimensional structure of the pop-up component of the present invention.

[0032] Figure 12 It is a schematic diagram of the three-dimensional structure of the fixing plate of the present invention.

[0033] Figure 13 Schematic diagram of the structure of the synchronization component of the present invention.

[0034] Figure numbers: 1. Support, 101. Control terminal, 102. Material roller, 103. Steam roller, 104. Conveying mechanism, 105. First guide rod, 106. First sliding frame, 107. First spring, 108. First bracket, 109. First corrugated roller, 110. Second corrugated roller, 111. First drive motor, 112. Pressing roller, 113. Second bracket, 2. Support baffle, 201. Conduit, 202. Cylindrical hole, 3. Swing shell, 3011. Support plate, 301. Torsion spring, 302. L-shaped fixing block, 303. First fixing block, 304. Sliding shell, 305. Second guide rod, 306. Rotating shaft, 307. First transmission belt, 4. Support shell, 401. Rotating shaft, 402. Second drive motor, 403. Second transmission belt, 404. Guide groove, 405. Second fixing block , 406, the third fixed block, 407, the second sliding frame, 408, the second spring, 409, the first limit plate, 5, the fixed frame, 501, the electric slider, 502, the fixed shell, 503, the fixed plate, 504, the servo motor, 505, the electric coating machine, 506, the fourth fixed block, 507, the third sliding frame, 508, the first tension spring, 509, the sliding block, 510, the third spring, 511, the air guide shell, 512, the first limit column, 513, the second limit column, 514, the connecting rod, 515, the second tension spring, 516, the second limit plate, 517, the third limit plate, 518, the fourth limit plate, 6, the limit block, 601, the third transmission belt, 602, the fixed rod, 603, the fourth sliding frame, 604, the fourth spring, 605, the fifth sliding frame, 606, the fifth spring, 607, the electromagnetic block. DETAILED DESCRIPTION

[0035] It should be understood that the specific embodiments described herein are only used to explain the present invention and are not intended to limit the present invention.

[0036] Example 1

[0037] A packaging box production device with built-in radio frequency tags in corrugated paper interlayer, referring to Figures 1-13As shown, it includes a support 1, the support 1 is connected to a control terminal 101 through a connecting plate bolt, the support 1 is connected to three sets of material rollers 102 through a connecting frame bolt, the support 1 is respectively connected to a steam roller 103 and a conveying mechanism 104 through a supporting frame bolt, and two symmetrical first guide rods 105 are welded to the top of the support 1, and the two first guide rods 105 are slidably connected to a first sliding frame 106, and a guide roller is rotatably provided on the first sliding frame 106, and the soft cardboard on one of the material rollers 102 bypasses the steam roller 103 and the first sliding frame. The guide roller of the bracket 106, two first springs 107 are fixed between the first sliding bracket 106 and the support 1, and the two first springs 107 are respectively sleeved on the two first guide rods 105. The elastic force of the first spring 107 is used to keep the wet material in a tight state at all times to avoid wrinkles before the soft cardboard is bent to form corrugated paper. The support 1 is bolted to the first bracket 108, and the first bracket 108 is rotatably provided with a first corrugated roller 109 and a second corrugated roller 110. The rear ends of the first corrugated roller 109 and the second corrugated roller 110 are connected by the first bracket 108. The gear set is connected, the first corrugated roller 109 and the second corrugated roller 110 rotate to squeeze the soft cardboard and bend it to form corrugated paper. The first bracket 108 is connected to the first drive motor 111 through the connecting seat bolt. The output shaft of the first drive motor 111 is fixed to the front end of the first corrugated roller 109. The first bracket 108 is rotated through the connecting frame and is provided with a pressing roller 112 for pressing corrugated paper and hard cardboard. The pressing roller 112 and the first corrugated roller 109 are driven by a pulley and a belt. The support 1 is bolted to the second bracket 113, and the second The bracket 113 is provided with a guide roller and a glue coating roller. The first bracket 108 is provided with a uniform glue coating mechanism for coating glue. The support 1 is provided with a drying and transportation mechanism for pulling and drying the corrugated paper to prevent the double-layer corrugated paper from being squeezed by the guide roller and causing its flute peak to be lowered. The support 1 is provided with a loading mechanism for randomly adding radio frequency tags to prevent dealers from discovering the radio frequency tags, effectively playing an anti-counterfeiting function. The conveying mechanism 104, the first drive motor 111, the uniform glue coating mechanism, the drying and transportation mechanism and the loading mechanism are all electrically connected to the control terminal 101.

[0038] Reference Figure 4As shown, a support baffle 2 is provided in the second corrugating roller 110, and the front end of the support baffle 2 is fixedly connected to the first bracket 108. The support baffle 2 contacts and cooperates with the second corrugating roller 110 to form three chambers. The support baffle 2 is fixedly connected to two symmetrical conduits 201. The symmetrically distributed conduits 201 are respectively connected to the two upper chambers of the second corrugating roller 110. An external air pressure pump and two conduits 201 are used to make the two chambers on the upper side of the second corrugating roller 110 suck air and eject air respectively. The groove of the second corrugating roller 110 is provided with evenly distributed cylindrical holes 202. The left chamber of the second corrugating roller 110 sucks air through the cylindrical holes 202 on it, so that the extruded corrugated paper is firmly adsorbed on the second corrugated roller 110, and at the same time absorbs moisture in the corrugated paper, and performs preliminary shaping of the corrugation, which is convenient for subsequent gluing and combination processing.

[0039] Reference Figure 3 、 Figure 5 and Figure 6 As shown, the uniform glue-spreading mechanism includes symmetrically distributed support plates 3011, which are fixed to the upper end of the first bracket 108. A swing shell 3 is rotatably connected between the symmetrically distributed support plates 3011. The swing shell 3 is filled with glue, and the outer wall of the swing shell 3 is provided with a heating mechanism. The heating mechanism prevents the glue in the swing shell 3 from clumping, which affects the subsequent adhesion between the corrugated paper and the hard cardboard. The side wall of the swing shell 3 is provided with a rubber discharge port that contacts and cooperates with the second corrugating roller 110. The rubber discharge port of the swing shell 3 evenly applies glue to the corrugated paper. A torsion spring 301 is fixed between the swing shell 3 and the support plate 3011. The torsion spring 301 is sleeved on the swing shell 3. The swing shell 3 is welded with an L-shaped fixing block 302, and the support plate 3011 is welded with a member for limiting the L-shaped fixing block 302. The first fixed block 303 swings, and the front end of the swing shell 3 is slidably provided with a sliding shell 304, one end of the sliding shell 304 is provided with a threaded groove, and the swing shell 3 is provided with a convex column that cooperates with the threaded groove on the sliding shell 304. The support plate 3011 is bolted to the second guide rod 305, and the sliding shell 304 is provided with a blind hole that slides with the second guide rod 305. The swing shell 3 is rotatably connected with a rotating shaft 306, and the side wall of the rotating shaft 306 is evenly circumferentially provided with stirring rods. The rotating shaft 306 rotates to stir the rubber material in the swing shell 3 through the stirring rod thereon, so that the rubber material is evenly heated. The rotating shaft 306 rotates in coordination with the sliding shell 304, and the front end of the rotating shaft 306 is driven by the output shaft of the first drive motor 111 through a pulley and a first transmission belt 307. The heating mechanism of the swing shell 3 is electrically connected to the control terminal 101.

[0040] Reference Figure 7 and Figure 8As shown, the drying and transporting mechanism includes a support shell 4, which is connected to the upper end of the support 1 through a connecting frame bolt. The support shell 4 is located on the right side of the first bracket 108. The support shell 4 is filled with dry hot air to dry and shape the corrugated paper and hard cardboard stuck together. The support shell 4 is provided with four symmetrical rotating shafts 401 for rotation. The support shell 4 is bolted to a second drive motor 402. The output shaft of the second drive motor 402 is connected to one of the rotating shafts 401 through a coupling. The two upper and lower adjacent rotating shafts 401 are driven by a gear set, and the left and right adjacent rotating shafts 401 are driven by a pulley and two second transmission belts 403. Four symmetrical guide grooves 404 are provided inside the support shell 4. The two upper second transmission belts 403 are fixed with four evenly distributed second fixing blocks 405, and the two lower second transmission belts 40 Four evenly distributed third fixed blocks 406 are fixedly connected. The second and third fixed blocks 405 and 406 are each provided with a cylindrical rod that cooperates with the adjacent guide slots 404. The third fixed block 406 is slidably connected to a second sliding frame 407. A second spring 408 is fixedly connected between the second sliding frame 407 and the adjacent third fixed block 406. The second spring 408 is sleeved on the adjacent second sliding frame 407. Two front-to-back symmetrical first limiting plates 409 are fixedly connected to the support shell 4. The first limiting plates 409 are used to guide the second sliding frame 407 so that the second sliding frame 407 pops out and squeezes the double-layer corrugated paper onto the second fixed block 405. The second sliding frame 407 squeezes the flutes of the corrugated paper to prevent the flutes of the corrugated paper from being squeezed and deformed, which affects the product quality of the corrugated paperboard. The second drive motor 402 is electrically connected to the control terminal 101.

[0041] Reference Figures 9-13 As shown, the feeding mechanism includes a fixed frame 5, which is bolted to the upper end of the support 1, and the fixed frame 5 is slidingly provided with an electric slider 501, and the upper end of the electric slider 501 is bolted to a fixed shell 502 through a connecting plate bolt, and the side wall of the fixed shell 502 is provided with a feeding port, and the fixed shell 502 is bolted to a fixed plate 503 through a connecting plate bolt, and the fixed plate 503 is bolted to a servo motor 504, and the fixed plate 503 is welded with an electric coating machine 505 through the connecting plate, and the output shaft of the servo motor 504 is provided with a pop-up component for popping out the radio frequency tag through a connecting block, and the second bracket 113 is provided with a synchronization component for moving synchronously with the material, the electric slider 501, the servo motor 504 and the electric coating machine 505 are all electrically connected to the control terminal 101, and the operator changes the position of the electric slider 501 and the working interval duration of the servo motor 504 through the control terminal 101 to adjust the position of the radio frequency tag in the corrugated cardboard.

[0042] Reference Figure 10-12As shown, the pop-up assembly includes a fourth fixed block 506, which is welded to the output shaft of the servo motor 504 through a connecting block, and the fourth fixed block 506 is slidably connected to the third sliding frame 507, and a first tension spring 508 is fixed between the third sliding frame 507 and the fourth fixed block 506, and the first tension spring 508 is sleeved on the third sliding frame 507, and the third sliding frame 507 is slidably connected to a sliding block 509, and a third spring 510 is fixed between the sliding block 509 and the third sliding frame 507, and the third spring 510 is sleeved on the third sliding frame 507, and the sliding block 509 is slidably connected to an air guide shell 511 for adsorbing radio frequency tags, and a first limiting column 512 is welded to the rear side of the sliding block 509, and a second limiting column 513 is slidably connected to the rear side of the third sliding frame 507, and the third sliding frame 507 is slidably connected to a connecting rod 514, and the connecting rod 514 is fixed to the third sliding frame 507. The second limit plate 516 is welded to the second limit column 513, and the third limit plate 517 and the fourth limit plate 518 are welded to the fixed plate 503. The second limit plate 516 is used to cooperate with the second limit column 513 for limiting. The second limit plate 516 is set to two sections, one of which is arc-shaped and the other is inclined. One end of the third limit plate 517 is set to a bent shape, and the fourth limit plate 518 is L-shaped, so that the first tension spring 508 is in a stretched state and the third spring 510 is in a compressed state in the initial state. The third limit plate 517 and the fourth limit plate 518 are used to cooperate with the first limit column 512 for limiting. The servo motor 504 works to make the air guide shell 511 absorb the radio frequency tag and then apply glue, which is ejected and attached to the hard cardboard.

[0043] Reference Figure 13As shown, the synchronization assembly includes a limit block 6, which is bolted to the side wall of the air guide housing 511. The adjacent guide rollers of the second bracket 113 are driven by a pulley and a third transmission belt 601. The rotation rate of the third transmission belt 601 is the same as the movement rate of the hard cardboard. The second bracket 113 is fixed with two symmetrical fixed rods 602. The fixed rods 602 are slidably connected to a fourth sliding frame 603. A fourth spring 604 is fixed between the fourth sliding frame 603 and the second bracket 113. The fourth spring 604 is sleeved on the adjacent fixed rod 602. The two symmetrical fourth sliding frames 603 are slidably connected to a fifth sliding frame 605. A fifth spring 606 is fixed between the fifth sliding frame 605 and the fourth sliding frame 603. The fifth spring 606 is sleeved on the fifth On the sliding frame 605, the fifth sliding frame 605 is welded with an electromagnetic block 607 that cooperates with the third transmission belt 601. The outer wall of the third transmission belt 601 is evenly provided with triangular grooves, and the third transmission belt 601 has an iron sheet built in. The electromagnetic block 607 cooperates with the third transmission belt 601 to enhance the friction between the two. The pop-up air guide shell 511 drives the limit block 6 to move and squeeze the fifth sliding frame 605, so that the third transmission belt 601 and the electromagnetic block 607 are in contact for transmission. At this time, the fifth sliding frame 605 squeezes the air guide shell 511 to move, so that the movement rate of the air guide shell 511 is the same as the movement rate of the hard cardboard, thereby avoiding relative displacement between the radio frequency tag adsorbed on the air guide shell 511 and the hard cardboard, causing the glue to overflow the radio frequency tag, affecting subsequent processing and production.

[0044] After the operator has installed the three corresponding material rollers 102, he starts the steam roller 103, the conveying mechanism 104, the first drive motor 111 and the second drive motor 402 through the control terminal 101. The conveying mechanism 104 transports the hard cardboard at a constant speed. The first drive motor 111 drives the first corrugated roller 109 and the second corrugated roller 110 to rotate and squeeze the soft cardboard through the gear set, pulley and belt. During this process, the steam roller 103 continuously sprays steam onto the soft cardboard, which facilitates the subsequent first corrugated roller 109 and the second corrugated roller 110 to squeeze the soft cardboard and bend it to form corrugated paper. During the conveying process, the soft cardboard is acted upon by the first spring 107, and the guide roller of the first sliding frame 106 always squeezes the soft cardboard, so that the soft cardboard is in a taut state. The taut soft cardboard then enters between the first corrugated roller 109 and the second corrugated roller 110 for corrugated paper processing.

[0045] At the same time, the control terminal 101 uses an external air pump to respectively draw air in and out of the two conduits 201, so that the cavity on the left side of the second corrugating roller 110 continuously extracts gas, and at the same time, the squeezed and deformed corrugated paper is firmly adsorbed on it through the cylindrical hole 202 on the second corrugating roller 110. In this process, the adsorption force of the air draws away the moisture on the corrugated paper, thereby accelerating the drying and shaping of the corrugated paper.

[0046] During the rotation of the second corrugated roller 110, the rubber discharge port of the swing shell 3 is intermittently toggled, and at the same time, the swing shell 3 is intermittently swung by the torsion spring 301. Since the threaded groove of the sliding shell 304 cooperates with the convex column of the swing shell 3 and is guided by the second guide rod 305, the swing shell 3 drives the sliding shell 304 to move toward the swing shell 3 during the swing process, so that the rubber material in the swing shell 3 is evenly extruded from the rubber discharge port thereof. With the rotation of the second corrugated roller 110, the extruded rubber material is evenly smeared on the flute peaks of the corrugated paper, and finally the rubber discharge port of the swing shell 3 intermittently smears the rubber material on the flute peaks of the corrugated paper. At the same time, the first drive motor 111 drives the rotating shaft 306 to rotate through the pulley and the first transmission belt 307. The stirring rod of the rotating shaft 306 continuously stirs the material in the swing shell 3, and the heating device of the swing shell 3 continuously heats the rubber material therein. The two cooperate to ensure that the rubber material is continuously and evenly heated, thereby avoiding agglomeration of the rubber material and affecting the subsequent extrusion processing of the corrugated paper.

[0047] The second corrugating roller 110 rotates through the pulley and belt to drive the pressing roller 112 to rotate. The pressing roller 112 rotates in coordination with the rotating second corrugating roller 110 to squeeze and combine the hard cardboard and the corrugated paper coated with glue. The combined double-layer corrugated paper enters the supporting shell 4, and the cylindrical hole 202 at the right chamber of the second corrugating roller 110 continuously sprays gas to ensure that the corrugated paper is separated from the second corrugating roller 110.

[0048] The control terminal 101 controls the second drive motor 402 to work. The second drive motor 402 drives the four rotating shafts 401 to rotate through the gear set, so that the second transmission belts 403 symmetrically distributed above and below rotate relatively. During the rotation of the second transmission belt 403 on the upper side, the four third fixed blocks 406 and the second sliding frame 407 on it rotate synchronously. During the rotation of the second sliding frame 407, it is limited by the first limiting plate 409 and moves away from the second fixed block 405. When the second sliding frame 407 rotates to a vertical state, and at this time the adjacent second sliding frame 407 is facing the second fixed block 405, the subsequent The second transmission belt 403 rotates, causing the second sliding frame 407 to disengage from the first limit plate 409. Under the action of the second spring 408, the second sliding frame 407 pops out to contact and extrude the double-layer corrugated paper and contacts the second fixed block 405, so that the second fixed block 405 and the second sliding frame 407 intermittently work to clamp the double-layer corrugated paper. During this process, the second sliding frame 407 pops out to extrude the corrugated paper, avoiding contact and extrusion of the flute peaks of the double-layer corrugated paper during the swinging process of the second sliding frame 407. At the same time, the dry hot air in the support shell 4 is used to dry the glue of the corrugated paper, thereby accelerating the drying and shaping of the double-layer corrugated paper.

[0049] The control terminal 101 starts the external negative pressure pump to make the air guide shell 511 continuously suck gas, and at the same time, the control terminal 101 adds a single radio frequency tag into it through the feed port of the fixed shell 502. In the initial state, the air guide shell 511 is facing the fixed shell 502, so that the radio frequency tag is adsorbed on the side wall of the air guide shell 511. Then the control terminal 101 starts the servo motor 504 to rotate, and the servo motor 504 drives the fourth fixed block 506, the third sliding frame 507, the sliding block 509 and the air guide shell 511 and other connected parts to swing together. During the swinging process of the above parts, the first limit column 512 always cooperates with the third limit plate 517, and at the same time, the second limit column 513 swings and contacts the second limit plate 516, so that the first tension spring 508 is in a stretched state and the third spring 510 is in a compressed state. When the air guide shell 511 swings to a vertical state, the control terminal 101 starts the electric coating machine 505 to spray glue onto the radio frequency tag.

[0050] Finally, the first limiting column 512 swings and contacts the fourth limiting plate 518, and the third limiting plate 517 breaks away from the first limiting contact. Under the action of the third spring 510, the sliding block 509 drives the air guide shell 511 to extend so that the RFID tag moves toward the cardboard. During the pop-up process of the air guide shell 511, the limiting block 6 moves synchronously, so that the limiting block 6 contacts and squeezes the fifth sliding frame 605, the fourth sliding frame 603 and the electromagnetic block 607, and compresses the fourth spring 604. At the same time, the control terminal 101 starts the electromagnetic block 60 7 is magnetized, causing the electromagnetic block 607 to firmly adhere to the iron sheet of the third transmission belt 601, thereby increasing the friction between the electromagnetic block 607 and the third transmission belt 601. The third transmission belt 601 drives the fifth sliding frame 605 to move through the electromagnetic block 607 and compress the fifth spring 606. The fifth sliding frame 605 moves at the same speed as the transportation of the cardboard. The fifth sliding frame 605 squeezes the air guide housing 511, the connecting rod 514, and the second limiting post 513, causing them to move synchronously, so that the pop-up and installed RFID tag moves synchronously with the cardboard.

[0051] During the movement of the connecting rod 514, the second tension spring 515 is stretched, and the movement of the second limit column 513 will disengage from the contact with the second limit plate 516. Under the action of the first tension spring 508, the third sliding frame 507 drives the third spring 510, the sliding block 509 and the air guide shell 511 away from the hard cardboard. At the same time, the control terminal 101 stops the negative pressure pump of the air guide shell 511 to complete the pasting of the RFID tag. Subsequently, the gluing roller of the second bracket 113 glues the flute peaks of the double-layer corrugated paper after shaping, and passes through the guide roller of the second bracket 113 together with the hard cardboard with the RFID tag pasted to complete the combination of three layers of corrugated paper. The RFID tag is hidden in the inner wall of the packaging box paper shell to prevent it from being damaged during transportation, effectively playing the role of anti-counterfeiting and anti-counterfeiting. In this process, the RFID tag is intermittently placed in the corrugated cardboard.

[0052] During the process of adding RFID tags, the operator changes the position of the added RFID tags in the corrugated cardboard by changing the position of the electric slider 501 and the starting time of the servo motor 504 through the control terminal 101. The randomness of the RFID tag position makes it difficult for dealers to find it, preventing counterfeiters from cracking data information, and further improving the anti-counterfeiting effect of the packaging box. After the corrugated cardboard is processed, it is formed into a single packaging box through a cutting machine and a folding machine, and then the packaging box is transported to other links for corresponding work.

[0053] Example 2

[0054] Based on Example 1, a method for producing a packaging box with a built-in radio frequency tag in a corrugated paper interlayer is provided, wherein the specific steps are as follows:

[0055] S1: The operator installs the required material roller 102 and makes the material roller 102 pass around the designated steam roller 103, conveying mechanism 104, first corrugating roller 109, second corrugating roller 110, pressing roller 112, etc., and then the operator makes corresponding settings on the control terminal 101;

[0056] S2: After the settings are completed, the operator starts the packaging box production line through the control terminal 101. The first corrugating roller 109 and the second corrugating roller 110 rotate to process the corrugated paper. The corrugated paper after being squeezed and bent passes through the swing shell 3 for gluing. Then, the pressure roller 112 and the second corrugating roller 110 act to make the corrugated paper and a layer of cardboard stick together. The combined double-layer corrugated paper is alternately squeezed and pulled by the four second fixed blocks 405 and the second sliding frame 407 for transportation. At the same time, the dry gas in the swing shell 3 dries and shapes the corrugated paper after sticking, completing the production and processing of the double-layer corrugated paper.

[0057] S3: The control terminal 101 controls the electric slider 501 and the servo motor 504 to work intermittently, causing the air guide housing 511 to sequentially adsorb the RFID tags and swing. During the swinging process, the electric coating machine 505 works to apply colloid to the adsorbed RFID tags. The air guide housing 511 then ejects the adsorbed RFID tags onto the hardboard. The ejected air guide housing 511 and the hardboard move synchronously. Then the control terminal 101 stops the air guide housing 511 from adsorbing the attached RFID tags. Subsequently, the glue roller of the second bracket 113 applies glue to the double-layer corrugated paper. At the same time, under the action of the guide roller of the second bracket 113, the hardboard with the RFID tags attached is adhered to the other side of the double-layer corrugated paper, completing the assembly of the corrugated paper.

[0058] S4: The assembled corrugated cardboard passes through a cutting machine to form the unfolded shape of the packaging box. The packaging box shape is then processed by a folding device and a gluing device to form a packaging box.

[0059] It should be noted that the above preferred embodiments are merely illustrative of the technical concepts and features of the present invention. Their purpose is to enable those skilled in the art to understand the contents of the present invention and implement them accordingly. They are not intended to limit the scope of protection of the present invention. Any equivalent changes or modifications made in accordance with the spirit and essence of the present invention are intended to be encompassed within the scope of protection of the present invention.

Claims

1. A packaging box production device with a built-in radio frequency tag in a corrugated paper interlayer, comprising a support (1), the support (1) being fixedly connected to a control terminal (101) via a connecting plate, the support (1) being fixedly connected to equally spaced material rollers (102) via a connecting frame, the support (1) being respectively provided with a steam roller (103) and a conveying mechanism (104) via a supporting frame, characterized in that: The invention also includes a symmetrically distributed first guide rod (105), which is fixed to the top of the support (1), and the first guide rod (105) is provided with a first sliding frame (106) for sliding, and the first sliding frame (106) is provided with a guide roller for conveying soft cardboard, and a first spring (107) is installed between the first sliding frame (106) and the support (1), and the support (1) is fixed with a first bracket (108), and the first bracket (108) is provided with a first corrugated roller (109) and a second corrugated roller (110) for rotating, and the first corrugated roller (109) and the second corrugated roller (110) are driven by a gear set, and the first bracket (108) is fixed with a first drive motor (111) through a connecting seat, and the output shaft of the first drive motor (111) is fixed with the first corrugated roller (109), and the first bracket (108) is provided with a first drive motor (111) through a connecting seat, and the output shaft of the first drive motor (111) is fixed with the first corrugated roller (109), and the first bracket (10 8) A pressure roller (112) is provided through the connection frame for rotation, and the pressure roller (112) and the first corrugated roller (109) are driven by a pulley and a belt. The support (1) is fixedly connected to the second support (113), and the second support (113) is provided with a guide roller for conveying corrugated paper and hard cardboard. The first support (108) is provided with a uniform gluing mechanism for applying glue to the corrugated paper. The support (1) is provided with a drying and transporting mechanism for pulling and drying the corrugated paper. The support (1) is provided with a feeding mechanism for randomly adding radio frequency tags to the corrugated cardboard. The conveying mechanism (104), the first drive motor (111), the uniform gluing mechanism, the drying and transporting mechanism and the feeding mechanism are all electrically connected to the control terminal (101). During the production and processing of corrugated paper, the elastic force of the first spring (107) is used to keep the soft cardboard in a tight state after being moistened. The drying and transporting mechanism comprises a support shell (4), which is fixed to the upper end of the support (1) through a connecting frame, and the support shell (4) is filled with dry hot air. The support shell (4) is provided with symmetrically distributed rotating shafts (401) for rotation, and the support shell (4) is fixed with a second drive motor (402). The output shaft of the second drive motor (402) is fixed with one of the rotating shafts (401). The upper and lower adjacent rotating shafts (401) are driven by a gear set, and the left and right adjacent rotating shafts (401) are driven by a pulley and a second transmission belt (403). The interior of the support shell (4) is provided with symmetrically distributed guide grooves (404), and the upper side symmetrically distributed second transmission belt (403) is fixed with uniformly distributed guide grooves (404). The second fixed block (405) is distributed, and the second transmission belt (403) is symmetrically distributed on the lower side and fixed with a third fixed block (406) distributed evenly. The second fixed block (405) and the third fixed block (406) are both provided with a cylindrical rod that cooperates with the adjacent guide groove (404). The third fixed block (406) is slidably provided with a second sliding frame (407). A second spring (408) is installed between the second sliding frame (407) and the adjacent third fixed block (406). A symmetrically distributed first limit plate (409) is fixed in the support shell (4), and the first limit plate (409) is used to guide the second sliding frame (407). The second drive motor (402) is electrically connected to the control terminal (101).

2. The device for producing a packaging box with a built-in radio frequency tag in a corrugated paper interlayer according to claim 1, characterized in that: A support baffle (2) is provided inside the second corrugating roller (110), one end of the support baffle (2) is fixedly connected to the first bracket (108), the support baffle (2) and the second corrugating roller (110) are in contact and cooperate with each other to form a circumferentially distributed chamber, the support baffle (2) is fixedly connected to symmetrically distributed conduits (201), the symmetrically distributed conduits (201) are respectively connected to adjacent chambers on the second corrugating roller (110), and the groove of the second corrugating roller (110) is provided with uniformly distributed cylindrical holes (202).

3. The device for producing a packaging box with a built-in radio frequency tag in a corrugated paper interlayer according to claim 2, characterized in that: The uniform glue coating mechanism comprises symmetrically distributed support plates (3011), the symmetrically distributed support plates (3011) are fixedly connected to the first bracket (108), a swing shell (3) is rotatably connected between the symmetrically distributed support plates (3011), the swing shell (3) is filled with glue, and the outer wall of the swing shell (3) is provided with a heating mechanism, the side wall of the swing shell (3) is provided with a rubber discharge port that contacts and cooperates with the second corrugated roller (110), a torsion spring (301) is installed between the swing shell (3) and the support plate (3011), the swing shell (3) is fixedly connected to an L-shaped fixed block (302), the support plate (3011) is fixedly connected to a first fixed block (303) for limiting the swing of the L-shaped fixed block (302), and one end of the swing shell (3) slides A sliding shell (304) is provided, one end of the sliding shell (304) is provided with a threaded groove, the swing shell (3) is provided with a convex column that cooperates with the threaded groove on the sliding shell (304), the support plate (3011) is fixedly connected to a second guide rod (305), the sliding shell (304) is provided with a blind hole that slidably cooperates with the second guide rod (305), a rotating shaft (306) is rotatably provided in the swing shell (3), and a stirring rod for stirring the rubber material is uniformly provided on the side wall of the rotating shaft (306) in a circumferential direction. The rotating shaft (306) is rotatably cooperated with the sliding shell (304), the rotating shaft (306) and the output shaft of the first drive motor (111) are driven by a pulley and a first transmission belt (307), and the heating mechanism of the swing shell (3) is electrically connected to the control terminal (101).

4. The device for producing a packaging box with a built-in radio frequency tag in a corrugated paper interlayer according to claim 3, characterized in that: The feeding mechanism includes a fixing frame (5), the fixing frame (5) is fixed to the upper end of the support (1), the fixing frame (5) is provided with an electric slider (501), the upper end of the electric slider (501) is fixed to a fixing shell (502) through a connecting plate, the side wall of the fixing shell (502) is provided with a feeding port, the fixing shell (502) is fixed to a fixing plate (503) through a connecting plate, the fixing plate (503) is fixed to a servo motor (504), the fixing plate (503) is fixed to an electric coating machine (505) through a connecting plate, the output shaft of the servo motor (504) is provided with an ejection component for ejecting a radio frequency tag through a connecting block, the second bracket (113) is provided with a synchronization component for moving synchronously with the material, and the electric slider (501), the servo motor (504) and the electric coating machine (505) are all electrically connected to the control terminal (101).

5. The device for producing a packaging box with a built-in radio frequency tag in a corrugated paper interlayer according to claim 4, characterized in that: The pop-up component includes a fourth fixed block (506), the fourth fixed block (506) is fixed to the output shaft of the servo motor (504) through a connecting block, the fourth fixed block (506) is slidably provided with a third sliding frame (507), a first tension spring (508) is installed between the third sliding frame (507) and the fourth fixed block (506), the third sliding frame (507) is slidably provided with a sliding block (509), a third spring (510) is installed between the sliding block (509) and the third sliding frame (507), the sliding block (509) is slidably provided with an air guide shell (511) for adsorbing a radio frequency tag, and the sliding The block (509) is fixedly connected with a first limiting column (512), the third sliding frame (507) is slidably provided with a second limiting column (513), the third sliding frame (507) is slidably provided with a connecting rod (514), a second tension spring (515) is installed between the connecting rod (514) and the third sliding frame (507), one end of the connecting rod (514) is fixedly connected to the second limiting column (513), the other end of the connecting rod (514) is configured to be telescopic and fixedly connected to the air guide housing (511), and the fixed plate (503) is fixedly connected with a second limiting plate (516), a third limiting plate (517) and a fourth limiting plate (518).

6. The device for producing a packaging box with a built-in radio frequency tag in a corrugated paper interlayer according to claim 5, characterized in that: The second limiting plate (516) is configured to be in a gradient shape, one section of which is in an arc shape and the other section is in an inclined shape. The second limiting plate (516) is in contact with the second limiting column (513). One end of the third limiting plate (517) is configured to be in a bent shape. The fourth limiting plate (518) is in an L shape. Both the third limiting plate (517) and the fourth limiting plate (518) are in contact with the first limiting column (512).

7. The device for producing a packaging box with a built-in radio frequency tag in a corrugated paper interlayer according to claim 6, characterized in that: The synchronization component includes a limit block (6), the limit block (6) is fixed to the air guide housing (511), adjacent guide rollers of the second bracket (113) are driven by a pulley and a third transmission belt (601), the second bracket (113) is fixed with a symmetrically distributed fixed rod (602), the fixed rod (602) is slidably provided with a fourth sliding frame (603), a fourth spring (604) is installed between the fourth sliding frame (603) and the second bracket (113), the symmetrically distributed fourth sliding frame (603) is slidably provided with a fifth sliding frame (605), a fifth spring (606) is installed between the fifth sliding frame (605) and the fourth sliding frame (603), and the fifth sliding frame (605) is fixed with an electromagnetic block (607) that cooperates with the third transmission belt (601).

8. The device for producing a packaging box with a built-in radio frequency tag in a corrugated paper interlayer according to claim 7, characterized in that: The outer side wall of the third transmission belt (601) is evenly provided with triangular grooves, and the third transmission belt (601) is internally provided with iron sheets. The electromagnetic block (607) cooperates with the third transmission belt (601) to enhance the friction between the two.

9. The method for producing a packaging box with a built-in radio frequency tag in a corrugated paper interlayer according to claim 8, comprising the following steps: S1: The operator installs the required material roller (102), and at the same time, the material roller (102) is wound around the designated steam roller (103), the conveying mechanism (104), the first corrugating roller (109), the second corrugating roller (110), and the pressing roller (112), and then the operator makes corresponding settings on the control terminal (101); S2: After the setting is completed, the operator starts the packaging box production line through the control terminal (101), and the first corrugated roller (109) and the second corrugated roller (110) rotate to process the corrugated paper. The corrugated paper after being squeezed and bent passes through the swing shell (3) for gluing, and then the corrugated paper is glued together with a layer of cardboard by the action of the pressure roller (112) and the second corrugated roller (110). The combined double-layer corrugated paper is transported by the alternating squeezing and pulling of the four second fixed blocks (405) and the second sliding frame (407). At the same time, the dry gas in the swing shell (3) dries and shapes the corrugated paper after gluing, completing the production and processing of the double-layer corrugated paper. S3: The control terminal (101) controls the electric slider (501) and the servo motor (504) to work intermittently, so that the air guide shell (511) sequentially absorbs the radio frequency tag and swings. During the swinging process, the electric coating machine (505) works to apply colloid to the absorbed radio frequency tag. Then, the air guide shell (511) ejects the absorbed radio frequency tag onto the hard cardboard. The ejected air guide shell (511) moves synchronously with the hard cardboard. Then, the control terminal (101) stops the air guide shell (511) from absorbing the radio frequency tag. Subsequently, the glue roller of the second bracket (113) glues the double-layer corrugated paper. At the same time, under the action of the guide roller of the second bracket (113), the hard cardboard with the radio frequency tag attached is adhered to the other side of the double-layer corrugated paper, thereby completing the assembly of the corrugated cardboard. S4: The assembled corrugated cardboard passes through a cutting machine to form the unfolded shape of the packaging box. The packaging box shape is then processed by a folding device and a gluing device to form a packaging box.

Citation Information

Patent Citations

  • Method for inserting RFID tags in corrugated cardboard

    CN101024314A

  • Corrugated paper gluing equipment and gluing process

    CN114872384A