Anti-counterfeit printing detection device for wine packaging box

By introducing load-bearing positioning, synchronous adaptive cleaning and automatic cleaning devices of the scanner into the wine packaging box detection device, the problems of electrical failure and contamination are solved, the accurate positioning and weight detection of the packaging box are achieved, and the quality of the wine and the accuracy of the detection are ensured.

CN120800534AActive Publication Date: 2025-10-17LUZHOU YUTONG PACKAGING TECH CO LTD

Patent Information

Application Number
CN202511308334.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-09-15
Publication Date
2025-10-17
Estimated Expiration
2045-09-15

AI Technical Summary

Technical Problem

Existing wine packaging box detection devices are prone to stoppage due to electrical component failure, detection scanners are easily damaged or contaminated, and cannot detect the weight of the packaging box, resulting in substandard wine quality.

Method used

It adopts load-bearing positioning mechanism, synchronous adaptive cleaning device and automatic cleaning device for scanner, and realizes positioning, weight detection and cleaning of packaging boxes through arc-shaped positioning splint, adaptive pressure plate and protective slide plate, ensuring the cleanliness of detection scanner.

Benefits of technology

It achieves accurate positioning and weight detection of packaging boxes, ensures the quality of wine, improves the reliability and accuracy of the detection device, and avoids detection failures caused by electrical failures and contamination.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses an anti-counterfeit printing detection device for a wine packaging box, and relates to the field of anti-counterfeit printing detection devices.The anti-counterfeit printing detection device comprises a detection rack, a conveying belt and two mounting frames are mounted on the detection rack, and a detection scanner is movably mounted on one mounting frame; the system further comprises a bearing positioning mechanism and a scanner automatic cleaning device. It needs to be explained that the position of the packaging box is corrected through the two arc-shaped positioning clamping plates, the weight of the packaging box is detected through the bearing rotating plate, and the problem that wine in the packaging box is lost due to evaporation or breakage is solved; dust collection and cleaning are performed on the surface of the packaging box through a plurality of dust collection heads, so that the cleanliness of the packaging box is ensured, and the detection accuracy is further ensured; besides, the detection scanner moves to drive the protection sliding plate to move, and the protection sliding plate continuously moves, so that the extrusion sliding strip scrapes and cleans the detection scanner through the cleaning scraping strip, the cleanliness of the detection scanner is ensured, and the accuracy of the detection effect is further ensured.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of anti-fake printing detection devices, and particularly relates to an anti-fake printing detection device for a wine packaging box. BACKGROUND

[0002] Anti-fake packaging refers to a packaging form that prevents commodities from being counterfeited or tampered with through technical means, mainly including two types of pasting anti-fake marks and integration with packaging, involving technical fields such as material application, printing design, digital verification, and realizing anti-fake functions through technologies such as laser, ink, and two-dimensional code. Anti-fake packaging application scenarios cover electronic products, daily chemical products, and medicine packaging, and anti-fake packaging has been widely used in wine packaging boxes.

[0003] The application No. CN202410001688.9 discloses an anti-fake printing detection device for a packaging box, which relates to the technical field of anti-fake printing detection devices and comprises a fixed installation base, a transmission conveying belt fixedly connected to the top end of the fixed installation base, and an anti-fake printing detection box fixedly connected to the top end of the transmission conveying belt. One side of the anti-fake printing detection box is fixedly connected with a motion sensor one, and the top end of the transmission conveying belt is fixedly connected with a motion sensor two. When personnel place goods on the transmission conveying belt, the motion sensor two will first sense the goods, and at this time, the motion sensor two will control the transmission motor one to rotate, and at this time, the transmission plate will pull one end of the steel structure transmission rod on both sides to move, so that the other end of the steel structure transmission rod pulls the movable alignment plate to move closer to each other, and at this time, the movable alignment plate will clamp and align the goods. However, the above-mentioned patent device uses a large number of sensors and other electrical elements when detecting the packaging box, and once one or more of these electrical elements are damaged or malfunction, the entire device will directly stop running, so that a large number of products cannot be timely detected in busy production work. In addition, since the detection scanner does not have any protection measures when scanning the anti-fake mark of the packaging box, the detection scanner is easily scratched or adhered with impurities due to accidental touch or scratching of the packaging box, which further causes the detection scanner to be unable to accurately identify and scan, further delaying the detection work of the packaging box. In addition, since the weight of the packaging box cannot be detected, when the quality of the wine in the packaging box does not meet the standard due to evaporation or damage of the wine, even if the anti-fake detection is correct, the consumer will still complain because of the lack of wine. SUMMARY

[0004] The present application aims to provide an anti-fake printing detection device for a wine packaging box to solve the problems in the background art.

[0005] To achieve the above object, the present application provides the following technical solutions: A false printing detection device for wine packaging boxes, comprising a detection rack, a conveying belt and two mounting racks are mounted on the detection rack, a detection scanner is movably mounted on one of the mounting racks; Further comprising a load positioning mechanism mounted on the detection rack, the load positioning mechanism is used for positioning and load detection of the packaging box; the load positioning mechanism comprises two arc-shaped positioning clamping plates, both of which are movably mounted on the detection rack, and a load rotating plate is rotatably mounted on each of the two arc-shaped positioning clamping plates, two limiting insertion racks are movably mounted on both sides of the mounting rack, and the two limiting insertion racks are in transmission connection with the two load rotating plates; A synchronous adaptive cleaning device is mounted on the mounting rack, which is used for cleaning the packaging box; the synchronous adaptive cleaning device comprises an adaptive pressing plate, two adaptive rods are movably mounted on the mounting rack, the adaptive pressing plate is mounted on the bottom end of the two adaptive rods, a lifting linkage frame is mounted on the top end of the two adaptive rods, a dust suction box is mounted on one side of the adaptive pressing plate, a dust collector is mounted on one side of the mounting rack, and the dust suction box is connected to the dust collector; Further comprising a scanner automatic cleaning device mounted on the detection scanner, the scanner automatic cleaning device is used for automatically cleaning the detection scanner; the scanner automatic cleaning device comprises a protection slide plate, the protection slide plate is slidably mounted on the detection scanner, an extrusion slide bar is movably mounted on the protection slide plate, a cleaning scraping strip is mounted on the top side of the extrusion slide bar, and the protection slide plate moves through the extrusion slide bar to drive the cleaning scraping strip to move, so as to clean the detection scanner.

[0006] Further, in the preferred embodiment of the present application, the load positioning mechanism further comprises two limiting supports, both of which are mounted on the detection rack, and a U-shaped linkage frame is slidably mounted on each of the two limiting supports, and the two arc-shaped positioning clamping plates are respectively mounted on the two U-shaped linkage frames; A synchronous adjusting frame is movably mounted on one side of the detection rack, a synchronous driving plate is mounted on each of the two U-shaped linkage frames, a synchronous adjusting groove is formed in each of the two synchronous driving plates, two synchronous adjusting shafts are mounted on the synchronous adjusting frame, and each of the two synchronous adjusting shafts is movably installed in the synchronous adjusting groove.

[0007] Further, in the preferred embodiment of the present application, one side of the detection rack is provided with an adjusting screw groove, an adjusting screw is screw-mounted in the adjusting screw groove, an adjusting rotation groove is formed in the synchronous adjusting frame, a rotating ring is rotatably mounted in the adjusting rotation groove, the adjusting screw passes through the adjusting rotation groove, the rotating ring is sleeved on the adjusting screw, and a handle is mounted at the end of the adjusting screw; One side of the detection rack is provided with a pulling groove, and a pulling plate is movably mounted in the pulling groove.

[0008] Further, in the preferred embodiment of the present application, two load-bearing rotation grooves are formed in the arc-shaped positioning clamping plate, and load-bearing rotation shafts are rotatably mounted in the two load-bearing rotation grooves. A load-bearing torsional spring is mounted on the inner wall of the load-bearing rotation groove and mounted on the load-bearing rotation shaft.

[0009] Further, in the preferred embodiment of the present application, a load-bearing adapter rod is mounted at one end of the load-bearing rotation shaft, a lifting limiting frame is slidably mounted on the U-shaped linkage frame, an unlocking frame is mounted on the lifting limiting frame, and the load-bearing adapter rod is movably mounted on the unlocking frame. An extrusion pushing frame is slidably mounted on the unlocking frame and the mounting frame, the extrusion pushing frame is used for extruding the limiting insertion frame, an unlocking spring is mounted on the limiting insertion frame, and the unlocking spring is mounted on the mounting frame.

[0010] Further, in the preferred embodiment of the present application, the synchronous self-adapting cleaning device further comprises a plurality of dust collection heads, and the plurality of dust collection heads are mounted on the bottom side of the dust collection box. An adapter communication pipe is mounted on the dust collection box, a transfer box is mounted on the mounting frame, the adapter communication pipe is movably mounted in the transfer box, a dust collection pipe is mounted on the transfer box, and the dust collection pipe is connected to the dust collector.

[0011] Further, in the preferred embodiment of the present application, two retraction springs are mounted on the bottom side of the lifting linkage frame, and the two retraction springs are mounted on the mounting frame, and the retraction springs are used to drive the lifting linkage frame to reset.

[0012] Further, in the preferred embodiment of the present application, the automatic cleaning device of the scanning machine further comprises two follow-up lifting frames, and the two follow-up lifting frames are mounted on the lifting linkage frame, and the detection scanning machine is mounted on the two follow-up lifting frames. The wedge-shaped plate is installed on the inner wall of one side of the mounting frame, the bottom side of the protection sliding plate is provided with a follow-up push rod, the follow-up push rod is pressed by the wedge-shaped plate, and the protection sliding plate is driven to move.

[0013] Further, in the preferred embodiment of the application, two mounting seats are installed on the top side of the detection scanner, two telescopic frames are movably installed in the two mounting seats, and the two telescopic frames are installed on the protection sliding plate. The cleaning spring is installed on the inner wall of the mounting seat.

[0014] Further, in the preferred embodiment of the application, a back-up groove is formed in the protection sliding plate, and the cleaning scraping strip is movably installed in the back-up groove. A back-up spring is installed on the inner wall of the bottom side of the back-up groove, and the back-up spring is installed on the pressing sliding strip.

[0015] The anti-fake printing detection device for wine packaging boxes has the following advantages: In the application, the positions of the two arc-shaped positioning clamping plates are adjusted by the load-bearing positioning mechanism, so that the position of the packaging box is corrected. In addition, the packaging box moves downward between the two arc-shaped positioning clamping plates by gravity, and drives the load-bearing rotating plate to rotate. When the weight of the wine in the packaging box reaches the standard, the load-bearing rotating plate can be flipped to the same position as the arc-shaped positioning clamping plate, so that the packaging box can be smoothly placed on the conveyor belt, and the self-adaptive pressing plate is unlocked, the weight of the packaging box is detected, and the problem of missing of the wine in the packaging box due to evaporation or breakage is avoided, so that the packaging box is fully detected, and the production quality of the wine is ensured.

[0016] Further, in the application, when the packaging box is moved by the conveyor belt, the packaging box is pressed to move upward on the self-adaptive pressing plate. The self-adaptive pressing plate moves the lifting linkage frame through the two self-adaptive rods, and the two back-up springs are stretched under stress. When the self-adaptive pressing plate moves, the dust collection box drives the adapter communication pipe to move, so that the adapter communication pipe moves in the transfer box, and then the adapter communication pipe is communicated with the dust collection pipe. At this time, the dust collector is used for dust collection, and finally the surface of the packaging box is cleaned by the plurality of dust collection heads, so as to ensure the cleanliness of the packaging box, and then ensure the accuracy of detection.

[0017] Further, in the application, through the arrangement of the automatic cleaning device of the scanning machine, when the lifting linkage frame moves, the detection scanning machine is driven to move by the movement of the follow-up lifting frame, the detection scanning machine drives the protection sliding plate to move, so that the protection sliding plate drives the follow-up push rod to disengage from the wedge-shaped plate, at this time, under the rebound force of the cleaning spring, the telescopic frame slides horizontally on the mounting seat, thereby driving the protection sliding plate to slide and open, the protection sliding plate drives the extrusion sliding bar to move, so that the extrusion sliding bar is extruded into the back lifting groove, and the back lifting spring is stressed, at this time, the protection sliding plate continues to move, so that the extrusion sliding bar is scraped and cleaned by the cleaning scraping strip on the detection scanning machine, ensuring the cleanliness of the detection scanning machine, and further ensuring the accuracy of the detection effect. BRIEF DESCRIPTION OF DRAWINGS

[0018] Figure 1 A three-dimensional structural schematic view of a counterfeit printing detection device for wine packaging boxes is provided for the embodiments of the application. Figure 2 A structure schematic view of a load-bearing positioning mechanism and a synchronous self-adaptive cleaning device connected to the structure of a counterfeit printing detection device for wine packaging boxes is provided for the embodiments of the application. Figure 3 A structure schematic view of an arc-shaped positioning clamp plate and a dust collector connected to the structure of a counterfeit printing detection device for wine packaging boxes is provided for the embodiments of the application. Figure 4 A structure schematic view of an arc-shaped positioning clamp plate and a synchronous adjusting frame connected to the structure of a counterfeit printing detection device for wine packaging boxes is provided for the embodiments of the application. Figure 5 A local structure schematic view of a synchronous driving plate and a synchronous adjusting frame connected to the structure of a counterfeit printing detection device for wine packaging boxes is provided for the embodiments of the application. Figure 6 A local sectional view structural schematic view of a detection rack and an adjusting screw connected to the structure of a counterfeit printing detection device for wine packaging boxes is provided for the embodiments of the application. Figure 7 A sectional view structural schematic view of an arc-shaped positioning clamp plate and a load-bearing rotating plate connected to the structure of a counterfeit printing detection device for wine packaging boxes is provided for the embodiments of the application. Figure 8 A structure schematic view of a counterfeit printing detection device for wine packaging boxes is provided for the embodiments of the application. Figure 3 A structure schematic view of part A of the counterfeit printing detection device for wine packaging boxes is provided for the embodiments of the application. Figure 9 A local structure schematic view of an extrusion push frame and a limiting plug frame connected to the structure of a counterfeit printing detection device for wine packaging boxes is provided for the embodiments of the application. Figure 10A partial cross-sectional structural schematic view of a switching communication pipe of a forgery printing detection device for wine packaging boxes provided by the embodiment of the present application is connected with a transfer box and the like structure; Figure 11 A structural schematic view of a self-adaptive pressing plate of a forgery printing detection device for wine packaging boxes provided by the embodiment of the present application is connected with a dust suction box and the like structure; Figure 12 A structural schematic view of a dust suction pipe of a forgery printing detection device for wine packaging boxes provided by the embodiment of the present application is connected with a dust suction device and the like structure; Figure 13 A structural schematic view of a protection sliding plate of a forgery printing detection device for wine packaging boxes provided by the embodiment of the present application is connected with an extrusion sliding strip and the like structure; Figure 14 A partial cross-sectional structural schematic view of a telescopic frame of a forgery printing detection device for wine packaging boxes provided by the embodiment of the present application is connected with a mounting seat and the like structure.

[0019] In the figure: 1-detection frame; 2-conveying belt; 3-mounting frame; 4-detection scanning machine; 5-bearing positioning mechanism; 501-arc-shaped positioning clamping plate; 502-limiting support; 503-U-shaped linkage frame; 504-synchronous driving plate; 505-synchronous adjusting frame; 506-synchronous adjusting groove; 507-synchronous adjusting shaft; 508-adjusting screw groove; 509-adjusting screw rod; 510-handle; 511-adjusting rotation groove; 512-rotation ring; 513-pulling plate; 514-pulling groove; 515-bearing rotating plate; 516-bearing rotating shaft; 517-bearing rotating groove; 518-bearing torsional spring; 519-bearing adapter rod; 520-unlocking frame; 521-lifting limiting frame; 522-extrusion pushing frame; 523-limiting insertion frame; 524-releasing spring; 6-synchronous self-adaptive cleaning device; 601-self-adaptive pressing plate; 602-self-adaptive rod; 603-lifting linkage frame; 604-retraction spring; 605-dust suction box; 606-switching communication pipe; 607-transfer box; 608-dust suction pipe; 609-dust suction device; 610-dust suction head; 7-scanning machine automatic cleaning device; 701-protection sliding plate; 702-extrusion sliding strip; 703-cleaning scraping strip; 704-lifting groove; 705-lifting spring; 706-wedge-shaped plate; 707-follower pushing rod; 708-telescopic frame; 709-mounting seat; 710-cleaning spring; 711-follower lifting frame. DETAILED DESCRIPTION

[0020] In order to make the objects, technical solutions and advantages of the embodiments of the present application clearer, the following will clearly and completely describe the technical solutions in the embodiments of the present application with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only some but not all of the embodiments of the present application. The components of the embodiments of the present application described and shown in the drawings can be arranged and designed in various different configurations.

[0021] Therefore, the following detailed description of the embodiments of the present application provided in the drawings is not intended to limit the scope of the claimed application, but only represents selected embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative work fall within the scope of protection of the present application.

[0022] It should be noted that: similar reference numerals and letters represent similar items in the following drawings, therefore, once an item is defined in one drawing, it does not need to be further defined and explained in subsequent drawings.

[0023] In addition, in the description of the present application, it should be noted that the terms "center", "upper", "lower", "vertical", "horizontal", "inner", "outer" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, or the orientation or positional relationship in which the product of the present application is usually placed, and are only for the convenience of describing the present application and simplifying the description, and therefore cannot be understood as indicating or implying that the indicated device or element must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the present application. In addition, the terms "first", "second", "third" and the like are only used for differentiation and cannot be understood as indicating or implying relative importance.

[0024] In addition, the terms "horizontal", "vertical", "perpendicular" and the like do not mean that the components must be absolutely vertical, but can be slightly inclined. For example, "vertical" only means that its direction is more vertical relative to "horizontal", and does not mean that the structure must be completely vertical, but can be slightly inclined.

[0025] In the description of the present application, it should also be noted that unless otherwise explicitly specified and limited, the terms "arrangement", "installation", "connection", "connection" should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or integrally connected; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium, or it can be the communication inside two elements. For those of ordinary skill in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.

[0026] Please refer to the drawings in the description of the present application Figures 1-2The embodiment of the present application provides a kind of anti-fake printing detection device for wine packaging box, it includes detection rack 1, detection rack 1 is equipped with conveying belt 2 and two mounting frames 3, one mounting frame 3 is movably installed with detection scanner 4.

[0027] Further, please refer to the drawings of the specification Figures 3-9 The embodiment of the present application provides a kind of anti-fake printing detection device for wine packaging box, it also includes load positioning mechanism 5, load positioning mechanism 5 is installed on detection rack 1, load positioning mechanism 5 is used to position and load detection to packaging box;Specifically, load positioning mechanism 5 includes two arc-shaped positioning clamping plates 501, two arc-shaped positioning clamping plates 501 are movably installed on detection rack 1, and two arc-shaped positioning clamping plates 501 are rotatably installed with load rotating plate 515, the two sides of one mounting frame 3 are movably installed with limit plug-in frame 523, two limit plug-in frames 523 are drivingly connected with two load rotating plates 515.It needs to be explained that, in the embodiment of the present application, when packaging box is detected, the position of packaging box is corrected by two arc-shaped positioning clamping plates 501, while packaging box is moved downward between two arc-shaped positioning clamping plates 501 by gravity and drives load rotating plate 515 to rotate, so that limit plug-in frame 523 is pulled back and separated from self-adapting pressing plate 601, so that packaging box can smoothly pass through self-adapting pressing plate 601, realize the detection of the weight of packaging box, to avoid the problem of missing caused by evaporation or breakage of wine in packaging box, realize the full detection of packaging box.

[0028] Further specifically, in the embodiment of the present application, synchronous self-adapting cleaning device 6 is installed on mounting frame 3, and synchronous self-adapting cleaning device 6 is used for cleaning packaging box;Synchronous self-adapting cleaning device 6 includes self-adapting pressing plate 601, two self-adapting rods 602 are movably installed on mounting frame 3, self-adapting pressing plate 601 is installed on the bottom end of two self-adapting rods 602, the top end of two self-adapting rods 602 is installed with lifting linkage frame 603, dust suction box 605 is installed on one side of self-adapting pressing plate 601, dust collector 609 is installed on one side of mounting frame 3, dust suction box 605 is connected to dust collector 609.It needs to be explained that, in the embodiment of the present application, when packaging box is moved by conveying belt 2, packaging box is pressed to move upward on self-adapting pressing plate 601, self-adapting pressing plate 601 moves lifting linkage frame 603 by two self-adapting rods 602, so that adapter communication pipe 606 is communicated with dust suction pipe 608, at this time, dust collector 609 carries out dust collection, and finally the surface of packaging box is cleaned by multiple dust suction heads 610, to ensure the cleanliness of packaging box, and then ensure the accuracy of detection result.

[0029] Further, the scanning machine automatic cleaning device 7 is installed on the detection scanning machine 4, and the scanning machine automatic cleaning device 7 is used for automatically cleaning the detection scanning machine 4; the scanning machine automatic cleaning device 7 comprises a protection sliding plate 701, the protection sliding plate 701 is slidingly installed on the detection scanning machine 4, a pressing sliding strip 702 is movably installed on the protection sliding plate 701, a cleaning scraping strip 703 is installed on the top side of the pressing sliding strip 702, the protection sliding plate 701 moves through the pressing sliding strip 702 to drive the cleaning scraping strip 703 to move, and the cleaning scraping strip 703 is used for cleaning the detection scanning machine 4. It should be noted that, in the embodiment of the present application, when the lifting linkage frame 603 moves upwards, the protection sliding plate 701 is automatically slid open, thereby driving the pressing sliding strip 702 to drive the cleaning scraping strip 703 to scrape and clean the detection scanning machine 4, so as to ensure the cleanliness of the detection scanning machine 4 and further ensure the accuracy of the detection effect.

[0030] Please continue to refer to the drawings of the specification Figures 3-9 Further, the anti-fake printing detection device for the wine packaging box provided by the embodiment of the present application further comprises two limiting supports 502, the two limiting supports 502 are both installed on the detection rack 1, and two U-shaped linkage frames 503 are slidingly installed on the two limiting supports 502; two arc-shaped positioning clamping plates 501 are respectively installed on the two U-shaped linkage frames 503. In addition, a synchronous adjusting frame 505 is movably installed on one side of the detection rack 1, two synchronous driving plates 504 are installed on the two U-shaped linkage frames 503, synchronous adjusting grooves 506 are formed in the two synchronous driving plates 504, two synchronous adjusting shafts 507 are installed on the synchronous adjusting frame 505, and the two synchronous adjusting shafts 507 are movably installed in the two synchronous adjusting grooves 506. It should be noted that, in the embodiment of the present application, when the distance between the two arc-shaped positioning clamping plates 501 is adjusted, the handle 510 is rotated to drive the adjusting screw 509 to rotate, so that the synchronous adjusting frame 505 moves, the synchronous adjusting frame 505 moves through the two synchronous adjusting shafts 507 to move in the two synchronous adjusting grooves 506, thereby driving the two synchronous driving plates 504 to move, the two synchronous driving plates 504 drive the two U-shaped linkage frames 503 to move, so that the two U-shaped linkage frames 503 move horizontally in the two limiting supports 502, thereby driving the two U-shaped linkage frames 503 to move, and the adjustment of the two arc-shaped positioning clamping plates 501 is realized.

[0031] More specifically, in the embodiment of the present invention, an adjustment thread groove 508 is formed on one side of the detection frame 1, an adjustment screw 509 is threadedly installed in the adjustment thread groove 508, an adjustment rotation groove 511 is formed on the synchronous adjustment frame 505, a rotating ring 512 is rotatably installed in the adjustment rotation groove 511, the adjustment screw 509 passes through the adjustment rotation groove 511, the rotating ring 512 is sleeved on the adjustment screw 509, and a handle 510 is installed at the end of the adjustment screw 509; In addition, a pull-out slot 514 is provided on one side of the detection frame 1, in which a pull-out plate 513 is movably installed, and the pull-out plate 513 is installed on the synchronous driving plate 504. It should be noted that in the embodiment of the present invention, when adjusting the spacing between the two arc-shaped positioning clamps 501, the handle 510 is rotated so that the handle 510 drives the adjusting screw 509 to rotate in the adjusting thread groove 508, thereby moving the adjusting screw 509. At the same time, when the adjusting screw 509 rotates, it rotates on the synchronous adjustment frame 505 through the rotating ring 512, and the adjusting screw 509 drives the synchronous adjustment frame 505 to move through the rotating ring 512. The synchronous adjustment frame 505 slides horizontally in the pull-out slot 514 through the pull-out plate 513, thereby achieving the purpose of driving the two synchronous driving plates 504 to move synchronously.

[0032] More specifically, in the embodiment of the present invention, the arc-shaped positioning clamping plate 501 is provided with two load-bearing rotation grooves 517, in which a load-bearing rotation shaft 516 is rotatably mounted, and the load-bearing rotation plate 515 is mounted on the load-bearing rotation shaft 516. In addition, a load-bearing torsion spring 518 is mounted on the inner wall of the load-bearing rotation groove 517, and the load-bearing torsion spring 518 is mounted on the load-bearing rotation shaft 516. It should be noted that in the embodiment of the present invention, when the packaging box falls on the load-bearing rotation plate 515, it drives the load-bearing rotation shaft 516 to rotate in the load-bearing rotation groove 517, and the load-bearing torsion spring 518 is subjected to force. The rotation of the load-bearing rotation shaft 516 drives the load-bearing transfer rod 519 to rotate, thereby automatically unlocking the adaptive pressure plate 601.

[0033] Please continue to refer to the instructions attached Figures 3-9 , more specifically, in the embodiment of the present invention, a load-bearing transfer rod 519 is installed at one end of the load-bearing shaft 516, a lifting and lowering limit frame 521 is slidably installed on the U-shaped linkage frame 503, an unlocking frame 520 is installed on the lifting and lowering limit frame 521, and the load-bearing transfer rod 519 is movably installed on the unlocking frame 520; an extrusion push frame 522 is slidably installed on the unlocking frame 520, the extrusion push frame 522 is slidably installed on the mounting frame 3, the extrusion push frame 522 is used to squeeze the limiting plug-in frame 523, and a release spring 524 is installed on the limiting plug-in frame 523, and the release spring 524 is installed on the mounting frame 3.

[0034] It should be noted that in the embodiment of the present application, when the packaging box falls on the load transfer plate 515, if the weight is sufficient to make the load transfer plate 515 drive the unlocking frame 520 to move through the load transfer rod 519, and then make the unlocking frame 520 move vertically on the U-shaped linkage frame 503 through the lifting limiting frame 521, the movement of the unlocking frame 520 drives the extrusion push frame 522 to move, so that the extrusion push frame 522 no longer extrudes the limiting plug-in frame 523, at this time, under the resilience of the release spring 524, the limiting plug-in frame 523 is pulled back and separated from the adaptive pressing plate 601, so that the packaging box can smoothly pass through the adaptive pressing plate 601, thereby realizing the detection of the weight of the packaging box; similarly, if the weight of the packaging box is not up to standard, the packaging box cannot push the adaptive pressing plate 601, and thus cannot continue to move, thereby timely reminding the staff that the weight of the packaging box is not up to standard.

[0035] Further, the anti-fake printing detection device for wine packaging boxes provided by the embodiment of the present application also comprises a synchronous adaptive cleaning device 6, the synchronous adaptive cleaning device 6 comprises a dust suction box 605, the dust suction box 605 is installed on the bottom side of the adaptive pressing plate 601, and a plurality of dust suction heads 610 are installed on the bottom side of the dust suction box 605.

[0036] Please refer to the drawings in the specification Figure 3 and Figures 10-12 Further, in the embodiment of the present application, the bottom side of the lifting linkage frame 603 is provided with two retraction springs 604, and the two retraction springs 604 are both installed on the mounting frame 3, and the retraction spring 604 is used to drive the lifting linkage frame 603 to reset. It should be noted that in the embodiment of the present application, when the packaging box is separated from the adaptive pressing plate 601 and the dust suction box 605, the lifting linkage frame 603 drives the adaptive pressing plate 601 to reset through the two adaptive rods 602 under the contraction force of the two retraction springs 604.

[0037] Further, please refer to the drawings in the specification Figure 3 and Figures 13-14 The anti-fake printing detection device for wine packaging boxes provided by the embodiment of the present application also comprises a scanning machine automatic cleaning device 7, the scanning machine automatic cleaning device 7 comprises two follow-up lifting frames 711, the two follow-up lifting frames 711 are both installed on the lifting linkage frame 603, and the detection scanning machine 4 is installed on the two follow-up lifting frames 711. Further, the wedge-shaped plate 706 is installed on one side inner wall of the mounting frame 3, the bottom side of the protection sliding plate 701 is provided with the follow-up push rod 707, the follow-up push rod 707 is extruded by the wedge-shaped plate 706, and the protection sliding plate 701 is driven to move. It should be noted that in the embodiment of the application, when the detection scanner 4 is reset to move downward, the protection sliding plate 701 is driven to move downward, so that the protection sliding plate 701 drives the follow-up push rod 707 to move downward and is extruded by the wedge-shaped plate 706, and then the follow-up push rod 707 drives the protection sliding plate 701 to move, and the protection sliding plate 701 moves horizontally on the mounting seat 709 through the telescopic frame 708, and then drives the protection sliding plate 701 to slide and close.

[0038] Further specifically, in the embodiment of the application, two mounting seats 709 are installed on the top side of the detection scanner 4, the telescopic frame 708 is movably installed in each of the two mounting seats 709, and the two telescopic frames 708 are installed on the protection sliding plate 701. Further, the telescopic frame 708 is provided with the cleaning spring 710, and the cleaning spring 710 is installed on the inner wall of the mounting seat 709. It should be noted that in the embodiment of the application, when the detection scanner 4 moves upward, the protection sliding plate 701 is driven to move, so that the protection sliding plate 701 drives the follow-up push rod 707 to disengage from the wedge-shaped plate 706, and at this time, under the resilience of the cleaning spring 710, the telescopic frame 708 slides horizontally on the mounting seat 709, and then drives the protection sliding plate 701 to slide and open.

[0039] Please continue to refer to the description of the drawings Figure 3 and Figures 13-14 Further specifically, in the embodiment of the application, the protection sliding plate 701 is provided with the back-up groove 704, and the cleaning scraping strip 703 is movably installed in the back-up groove 704; in addition, the back-up spring 705 is installed on the inner wall of the bottom side of the back-up groove 704, and the back-up spring 705 is installed on the extrusion sliding strip 702. It should be noted that in the embodiment of the application, when the protection sliding plate 701 moves to drive the extrusion sliding strip 702 to move, the extrusion sliding strip 702 is extruded into the back-up groove 704, and the back-up spring 705 is stressed, so that under the resilience of the back-up spring 705, the extrusion sliding strip 702 drives the cleaning scraping strip 703 to be in close contact with the detection scanner 4, thereby ensuring the cleaning effect of the detection scanner 4.

[0040] In summary, the working principle of the anti-fake printing detection device for the wine packaging box provided in the embodiment of the application is as follows: When the packaging box is detected, the handle 510 is rotated, so that the handle 510 drives the adjusting screw 509 to rotate in the adjusting threaded groove 508, and then the adjusting screw 509 moves, and when the adjusting screw 509 rotates, the adjusting screw 509 rotates the synchronous adjusting frame 505 through the rotating ring 512, and the adjusting screw 509 drives the synchronous adjusting frame 505 to move through the rotating ring 512, the synchronous adjusting frame 505 slides in the pulling groove 514 through the pulling plate 513, the synchronous adjusting frame 505 moves in the two synchronous adjusting grooves 506 through the two synchronous adjusting shafts 507, and then the two synchronous adjusting shafts 507 drive the two synchronous driving plates 504 to move, the two synchronous driving plates 504 drive the two U-shaped linkage frames 503 to move, so that the two U-shaped linkage frames 503 move horizontally in the two limiting supports 502, and then the two U-shaped linkage frames 503 drive the two arc-shaped positioning clamping plates 501 to move, so that the two arc-shaped positioning clamping plates 501 are adjusted; Further, after the adjustment is completed, the packaging box is placed on the top side of the two arc-shaped positioning clamping plates 501, the position of the packaging box is corrected, and the packaging box moves downward between the two arc-shaped positioning clamping plates 501 through gravity, and drives the load bearing rotating plate 515 to rotate. It should be noted that when the weight of the wine in the packaging box meets the standard, the load bearing rotating plate 515 can be flipped to the same position as the arc-shaped positioning clamping plate 501, so that the packaging box can be smoothly placed on the conveyor belt 2, and the load bearing rotating plate 515 rotates to drive the load bearing rotating shaft 516 to rotate in the load bearing rotating groove 517, and the load bearing torsional spring 518 is stressed, the load bearing rotating shaft 516 rotates to drive the load bearing connecting rod 519 to rotate, the load bearing connecting rod 519 drives the unlocking frame 520 to move, so that the unlocking frame 520 moves vertically on the U-shaped linkage frame 503 through the lifting limiting frame 521, the unlocking frame 520 moves to drive the extrusion pushing frame 522 to move, so that the extrusion pushing frame 522 no longer extrudes the limiting plug-in frame 523, at this time, under the rebound force of the release spring 524, the limiting plug-in frame 523 is pulled back and separated from the adaptive pressing plate 601, so that the packaging box can smoothly pass through the adaptive pressing plate 601, and when the position of the arc-shaped positioning clamping plate 501 is adjusted, the unlocking frame 520 slides on the extrusion pushing frame 522, and does not affect the unlocking frame 520 driving the extrusion pushing frame 522 to move upward; Further, when the conveyor belt 2 drives the packaging box to move, the packaging box extrudes the adaptive pressing plate 601 to move upward, the adaptive pressing plate 601 drives the lifting linkage frame 603 to move through the two adaptive rods 602, and the two retractable springs 604 are stressed and stretched, the adaptive pressing plate 601 moves to drive the connecting pipe 606 to move in the transfer box 607 through the dust collection box 605, so that the connecting pipe 606 moves in the transfer box 607, and then the connecting pipe 606 communicates with the dust collection pipe 608, at this time, the dust collector 609 performs dust collection, and finally the surface of the packaging box is cleaned through the plurality of dust collection heads 610, so as to ensure the cleanliness of the packaging box, and then ensure the accuracy of the detection; Further, when the lifting linkage frame 603 moves upwards, the two follow-up lifting frames 711 are driven to move, the movement of the follow-up lifting frames 711 drives the detection scanner 4 to move, the movement of the detection scanner 4 drives the protection sliding plate 701 to move, so that the protection sliding plate 701 drives the follow-up push rod 707 to disengage from the wedge-shaped plate 706, at this time, under the rebounding force of the cleaning spring 710, the telescopic frame 708 slides horizontally on the mounting seat 709, thereby driving the protection sliding plate 701 to slide and open, the movement of the protection sliding plate 701 drives the extrusion sliding bar 702 to move, so that the extrusion sliding bar 702 is extruded into the back lifting groove 704, and the back lifting spring 705 is stressed, at this time, the continuous movement of the protection sliding plate 701 drives the extrusion sliding bar 702 to be scraped and cleaned by the cleaning scraping strip 703, so as to ensure the cleanliness of the detection scanner 4, thereby further ensuring the accuracy of the detection effect.

[0041] The above merely describes the preferred embodiments of the present application, but the protection scope of the present application is not limited to this. Any person skilled in the art, according to the technical solution and the inventive concept of the present application, can make equivalent replacements or changes within the technical range disclosed by the present application, which should be covered within the protection scope of the present application.

Claims

1. An anti-counterfeiting printing detection device for wine packaging, characterized in that: It includes a detection frame, on which a conveyor belt and two mounting frames are mounted, and a detection scanner is movably mounted on one of the mounting frames; The device further comprises a load-bearing positioning mechanism, the load-bearing positioning mechanism being mounted on the detection frame and being used for positioning and load-bearing detection of the packaging box; the load-bearing positioning mechanism comprises two arc-shaped positioning clamping plates, both of which are movably mounted on the detection frame, and both of which are rotatably mounted with load-bearing rotating plates, and both sides of one of the mounting frames are movably mounted with limiting plug-ins, and the two limiting plug-ins are transmission-connected to the two load-bearing rotating plates; A synchronous adaptive cleaning device is installed on the mounting frame, and the synchronous adaptive cleaning device is used to clean the packaging box; the synchronous adaptive cleaning device includes an adaptive pressing plate, and two adaptive rods are movably installed on the mounting frame, the adaptive pressing plate is installed on the bottom ends of the two adaptive rods, and the top ends of the two adaptive rods are installed with a lifting linkage frame, a dust box is installed on one side of the adaptive pressing plate, and a dust cleaner is installed on one side of the mounting frame, and the dust box is connected to the dust cleaner; It also includes an automatic cleaning device for the scanner, which is installed on the detection scanner and is used to automatically clean the detection scanner; the automatic cleaning device for the scanner includes a protective slide, which is slidably installed on the detection scanner, and an extrusion slide is movably installed on the protective slide, and a cleaning scraper is installed on the top side of the extrusion slide. The protective slide moves through the extrusion slide to drive the cleaning scraper to move, so as to clean the detection scanner.

2. The anti-counterfeiting printing detection device for wine packaging according to claim 1, characterized in that: The load-bearing positioning mechanism further includes two limiting brackets, both of which are mounted on the detection frame, both of which are slidably mounted with a U-shaped linkage bracket, and the two arc-shaped positioning clamps are respectively mounted on the two U-shaped linkage brackets; A synchronous adjustment frame is movably installed on one side of the detection frame, and a synchronous driving plate is installed on each of the two U-shaped linkage frames. A synchronous adjustment groove is provided on each of the two synchronous driving plates. Two synchronous adjustment shafts are installed on the synchronous adjustment frame, and the two synchronous adjustment shafts are movably installed in the two synchronous adjustment grooves respectively.

3. The anti-counterfeiting printing detection device for wine packaging according to claim 2, characterized in that: An adjusting thread groove is provided on one side of the detection frame, an adjusting screw is threadedly installed in the adjusting thread groove, an adjusting rotation groove is provided on the synchronous adjustment frame, a rotating ring is rotatably installed in the adjusting rotation groove, the adjusting screw passes through the adjusting rotation groove, the rotating ring is sleeved on the adjusting screw, and a handle is installed on the end of the adjusting screw; A pull-out slot is provided on one side of the detection frame. A pull-out plate is movably installed in the pull-out slot, and the pull-out plate is installed on the synchronous driving plate.

4. The anti-counterfeiting printing detection device for wine packaging according to claim 3, characterized in that: The arc-shaped positioning splint is provided with two load-bearing rotating grooves, and the load-bearing rotating shafts are rotatably installed in the two load-bearing rotating grooves, and the load-bearing rotating plate is installed on the load-bearing rotating shafts; A load-bearing torsion spring is installed on the inner wall of the load-bearing rotating groove, and the load-bearing torsion spring is installed on the load-bearing rotating shaft.

5. The anti-counterfeiting printing detection device for wine packaging according to claim 4, characterized in that: A load-bearing transfer rod is installed at one end of the load-bearing shaft, a lifting limit frame is slidably installed on the U-shaped linkage frame, an unlocking frame is installed on the lifting limit frame, and the load-bearing transfer rod is movably installed on the unlocking frame; An extrusion push frame is slidably mounted on the unlocking frame, and the extrusion push frame is slidably mounted on the mounting frame. The extrusion push frame is used to squeeze the limiting plug-in frame, and a release spring is mounted on the limiting plug-in frame, and the release spring is mounted on the mounting frame.

6. The anti-counterfeiting printing detection device for wine packaging according to claim 1, characterized in that: The synchronous adaptive cleaning device further comprises a plurality of dust collection heads, wherein the plurality of dust collection heads are mounted on the bottom side of the dust collection box; The dust box is provided with a transfer connecting pipe, the mounting frame is provided with a transfer box, the transfer connecting pipe is movably mounted in the transfer box, the transfer box is provided with a dust collecting pipe, and the dust collecting pipe is connected to the vacuum cleaner.

7. The anti-counterfeiting printing detection device for wine packaging according to claim 6, characterized in that: Two retraction springs are installed on the bottom side of the lifting linkage frame. The two retraction springs are both installed on the mounting frame. The retraction springs are used to drive the lifting linkage frame to reset.

8. The anti-counterfeiting printing detection device for wine packaging according to claim 1, characterized in that: The automatic cleaning device for the scanner further comprises two follow-up lifting frames, both of which are mounted on the lifting linkage frame, and the detection scanner is mounted on the two follow-up lifting frames; A wedge-shaped plate is installed on the inner wall of one side of the mounting frame, and a follower push rod is installed on the bottom side of the protection slide. The follower push rod is squeezed by the wedge-shaped plate to drive the protection slide to move.

9. The anti-counterfeiting printing detection device for wine packaging according to claim 8, characterized in that: Two mounting seats are installed on the top side of the detection scanner, and telescopic frames are movably installed in the two mounting seats, and the two telescopic frames are installed on the protective slide; A cleaning spring is installed on one side of the telescopic frame, and the cleaning spring is installed on the inner wall of the mounting seat.

10. The anti-counterfeiting printing detection device for wine packaging according to claim 9, characterized in that: The protective slide plate is provided with a recovery groove, and the cleaning scraper is movably installed in the recovery groove; A rebound spring is installed on the inner wall of the bottom side of the rebound groove, and the rebound spring is installed on the extrusion slide bar.

Citation Information

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