A rapid coding automatic stacking mechanism for color boxes

The automatic stacking mechanism for rapid coding of color boxes solves the problems of low coding accuracy and chaotic stacking during the transportation process, achieving stable transportation and efficient stacking of color boxes, and improving production efficiency and equipment reliability.

CN224530031UActive Publication Date: 2026-07-21YINGDE BEST TOP TOYS CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
YINGDE BEST TOP TOYS CO LTD
Filing Date
2025-07-16
Publication Date
2026-07-21

AI Technical Summary

Technical Problem

During rapid transport, color boxes are prone to collisions, bouncing, and displacement, resulting in low coding accuracy and disordered stacking, which affects the smooth progress of the transport process.

Method used

An automatic stacking mechanism for rapid coding of color boxes was designed, including a pressure frame, a laser coding machine, a vibration motor, and a manual adjustment device. The stability of the color boxes during the conveying process is ensured by the cooperation of guide columns and guide bars, and the rapid stacking of color boxes is achieved by the vibration motor and the adjustable baffle plate.

Benefits of technology

It improves the accuracy and production efficiency of color box coding, reduces manual intervention, ensures the stability and smooth stacking of color boxes during transportation, avoids the bouncing and displacement of color boxes, and enhances the reliability of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a kind of quick coding automatic stacking mechanisms of colour box, including colour box coding conveying frame, the lower pressing frame for preventing colour box bounce is installed in colour box coding conveying frame top, the laser coding machine of colour box coding conveying frame one side and with lower pressing frame cooperation, stack material guide groove is installed in colour box coding conveying frame end, and colour box stacking frame is located in stack material guide groove end, stack material guide groove includes material guide groove body, hinged shaft is welded in the both sides of material guide groove body close to one end of colour box coding conveying frame, vibration motor is fixedly installed in the middle part below material guide groove body, manually regulated device is installed in the both sides of material guide groove body close to one end of colour box stacking frame, and material guide groove body is close to the baffle bottom plate of colour box stacking frame and is movably installed in the below one end of colour box stacking frame;The mechanism can improve production efficiency, ensure coding accuracy, optimize stacking process simultaneously, enhance the reliability and flexibility of equipment.
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Description

Technical Field

[0001] This utility model relates to an automatic stacking mechanism for rapid coding of color boxes. Background Technology

[0002] Before toy packaging boxes are folded and formed, they need to be labeled with the product, production date, and product number so that consumers can easily identify and check production information.

[0003] Traditional laser marking devices for color boxes use laser marking equipment to mark color boxes during transport. However, this method has the following problems: First, during the rapid transport of color boxes, friction and inertia cause them to collide, bounce, and shift, resulting in low marking accuracy and easy deviation from the marking position. Second, because the color box marking process is rapid, the marked color boxes tend to stack at the discharge point. However, there is no device to optimize stacking, leading to chaotic stacking of color boxes. Excessive accumulation can also pile up on the conveyor belt used for laser marking, which is detrimental to the marking process during transport. Summary of the Invention

[0004] In view of the shortcomings of the existing technology, the purpose of this utility model is to provide an automatic stacking mechanism for rapid coding of color boxes.

[0005] The technical solution adopted by this utility model to solve its technical problem is:

[0006] An automatic stacking mechanism for rapid coding of color boxes includes a color box coding conveyor frame, a pressure frame installed above the color box coding conveyor frame to prevent color boxes from bouncing, a laser coding machine located on one side of the color box coding conveyor frame and cooperating with the pressure frame, a stacking guide trough installed at the end of the color box coding conveyor frame, and a color box stacking frame located at the end of the stacking guide trough. The stacking guide trough includes a guide trough body, hinge shafts welded to both sides of the guide trough body near the end of the color box coding conveyor frame, a vibration motor fixedly installed in the middle of the lower part of the guide trough body, manual adjustment devices installed on both sides of the guide trough body near the end of the color box stacking frame, and a baffle base plate movably installed below the end of the guide trough body near the end of the color box stacking frame and movably assembled with the color box stacking frame.

[0007] Preferably, the feed trough is fitted with a trough hinge lug at the location where the baffle plate is installed.

[0008] Preferably, the manual adjustment device includes two Z-shaped guide plates that are fixed to the feed trough body by screws and are symmetrically arranged, a movable locking block whose lower end is located between the two Z-shaped guide plates and is fastened to the two Z-shaped guide plates, a lead screw whose end passes through the movable locking block and is movably assembled with the movable locking block, a lead screw support sleeve that is fitted on the lead screw and fixed to the feed trough body by screws, and a lever fixedly installed on the other end of the lead screw support sleeve.

[0009] Preferably, the bottom plate of the baffle is welded with hinge shafts on both sides of one end facing the guide trough, and the bottom plate of the baffle is welded with baffle hinge ears on both sides of the other end.

[0010] Preferably, the pressure frame includes pressure frame legs, a support bar horizontally mounted above the pressure frame legs, a pressure cylinder vertically mounted above the support bar, guide bars vertically mounted on both sides below the support bar, an assembly angle steel located below the support bar and fixedly mounted in the middle to the output end of the pressure cylinder, and two pressure strip plates symmetrically arranged below the assembly angle steel.

[0011] Furthermore, the two ends of the assembly angle steel are provided with upper and lower strip holes, and guide posts are also installed laterally at both ends of the assembly angle steel; an assembly head is welded to the upper center of the lower pressure strip plate.

[0012] Preferably, the color box stacking rack includes a support frame, a stacking slot fixed to the top of the support frame by screws, a mounting slot on both sides of the front end of the stacking slot, and a baffle guide strip with a strip-shaped groove welded to the support frame.

[0013] The beneficial effects of this utility model are as follows:

[0014] 1. This mechanism, by combining a vibrating motor, a manual adjustment device, and an adjustable baffle plate, enables rapid stacking of color boxes, improves production efficiency, and reduces manual intervention in the stacking of color boxes;

[0015] 2. The design of the pressure frame and laser marking machine ensures that the color boxes remain stable during the conveying process, avoiding bouncing and displacement, and ensuring that each color box can be accurately marked. In addition, the combination of guide columns and guide bars in the pressure frame effectively improves the stability of the assembly angle steel, thereby ensuring the reliability of the equipment in long-term operation.

[0016] 3. The design of the manual adjustment device and movable locking block allows the angle of the stacking guide chute to be adjusted according to actual needs, thereby ensuring the best stacking effect under different process conditions. Moreover, the adjustment function of the stacking guide chute and the movable cooperation of the baffle base plate prevent the color box from falling off during the stacking process, ensuring the smooth progress of the stacking process. Attached Figure Description

[0017] Figure 1 This is a structural diagram of an automatic stacking mechanism for rapid coding of color boxes according to the present invention;

[0018] Figure 2 for Figure 1 Structural diagram of the middle and lower pressure frame;

[0019] Figure 3 for Figure 1 Side view of the stacked feed chute;

[0020] Figure 4 for Figure 3 Structural diagram of the manual adjustment device;

[0021] Figure 5 for Figure 1 Structural diagram of the color box stacking rack;

[0022] Figure 6 for Figure 1 Side view;

[0023] Figure 7 for Figure 6 Enlarged view of the local structure at point A in the middle. Detailed Implementation

[0024] The present invention will be further described below with reference to the accompanying drawings and specific embodiments, so that those skilled in the art can better understand the present invention and implement it. However, the embodiments are not intended to limit the present invention.

[0025] Example

[0026] A fast coding and automatic stacking mechanism for color boxes, such as Figure 1-7 As shown, it includes a color box coding conveyor 1, a pressure frame 2 installed above the color box coding conveyor 1 to prevent the color boxes from bouncing, a laser coding machine 3 located on one side of the color box coding conveyor 1 and cooperating with the pressure frame 2, a stacking guide trough 4 installed at the end of the color box coding conveyor 1, and a color box stacking rack 5 located at the end of the stacking guide trough 4.

[0027] The lower pressure frame 2 includes a pressure frame support leg 21, a support square bar 22 horizontally mounted above the pressure frame support leg 21, a lower pressure cylinder 23 vertically mounted above the support square bar 22, guide bars 24 vertically mounted on both sides below the support square bar 22, an assembly angle steel 25 located below the support square bar 22 and fixedly mounted in the middle to the output end of the lower pressure cylinder 23, and two lower pressure strip plates 26 symmetrically arranged below the assembly angle steel 25.

[0028] The assembly angle steel 25 has an upper strip hole 251 and a lower strip hole 252 at both ends. Guide posts 253 are also horizontally inserted at both ends of the assembly angle steel 25. Specifically, the guide posts 253 are assembled with the guide strips 24 on both sides below the supporting square strip 22. When the lowering cylinder 23 presses down the assembly angle steel 25, the guide strips 24 cooperate with the guide posts 253 to improve the movement stability of the assembly angle steel 25.

[0029] An assembly head 261 is welded to the upper center of the pressure strip 26. When the pressure strip 26 is assembled with the assembly angle steel 25, the assembly head 261 contacts the assembly angle steel 25. Then, a stud is screwed into the assembly head 261 after passing through the upper strip hole 251. The part of the pressure strip 26 that contacts the assembly angle steel 25 is screwed into the pressure strip 26 after passing through the lower strip hole 252, thereby completing the fixed installation of the pressure strip 26.

[0030] It should be further explained that there is a gap between the pressure strip 26 and the color box coding conveyor 1. Therefore, the function of the pressure strip 26 is to prevent the color boxes from colliding and bouncing during transportation and shifting. In addition, the gap between the two pressure strips 26 can be adjusted after loosening the studs, so as to facilitate the laser coding machine 3 to perform accurate coding.

[0031] The stacking guide trough 4 includes a guide trough body 41, hinge shafts 42 welded to both sides of the guide trough body 41 near the color box coding conveyor 1, a vibration motor 43 fixedly installed in the middle of the lower part of the guide trough body 41, manual adjustment devices 44 installed on both sides of the guide trough body 41 near the color box stacking rack 5, and a baffle base plate 45 movably installed below the end of the guide trough body 41 near the color box stacking rack 5 and movably assembled with the color box stacking rack 5.

[0032] The guide trough 41 is equipped with a trough hinge lug 411 at the location where the baffle base plate 45 is installed, which facilitates the movable assembly of the baffle base plate 45.

[0033] The manual adjustment device 44 includes two symmetrically arranged Z-shaped guide plates 441 fixed to the feed trough 41 by screws, a movable locking block 442 located between the two Z-shaped guide plates 441 and fastened to them, a lead screw 443 passing through the movable locking block 442 and movably assembled with it, a lead screw support sleeve 444 fitted on the lead screw 443 and fixed to the feed trough 41 by screws, and a lever 445 fixedly installed on the other end of the lead screw support sleeve 444. Specifically, by manually levering the lever 445 on the lead screw 443, the lead screw 443 moves with the lead screw support sleeve 444 as a support point, causing the movable locking block 442 to move between the two Z-shaped guide plates 441.

[0034] The bottom plate 45 facing the material guide trough 41 has hinge shafts 451 welded on both sides of one end and the bottom plate 45 has baffle hinge ears 452 welded on both sides of the other end. Specifically, the bottom plate 45 is hinged to the trough hinge ears 411 through the hinge shafts 451.

[0035] The color box stacking rack 5 includes a support frame 51, a stacking groove 52 fixed to the top of the support frame 51 by screws, a mounting groove 53 on both sides of the front end of the stacking groove 52, and a baffle guide strip 54 with an internal strip groove welded to the support frame 51. Specifically, the mounting groove 53 can cooperate with the movable locking block 442. When adjusting the tilt angle of the stacking guide groove 4, the stacking guide groove 4 is raised or lowered, so that the movable locking block 442 faces the mounting groove 53 at the corresponding angle. This can be achieved by manually turning the lever. The lever 445 on the moving screw 443 causes the screw 443 to push the movable block 442 into the mounting groove 53, completing the angle adjustment of the stacking guide groove 4. At the same time, the baffle guide strip 54 and the baffle hinge ear 452 abut against each other. The baffle base plate 45 and the baffle guide strip 54 are movably assembled by the through-mounted movable shaft. When the stacking guide groove 4 is adjusted, the baffle base plate 45 is moved to avoid gaps between the stacking guide groove 4 and the color box stacking rack 5, which can prevent the stacked color boxes from falling off the color box stacking rack 5.

[0036] The above embodiments of this utility model are not intended to limit the scope of protection of this utility model. The implementation of this utility model is not limited thereto. All other modifications, substitutions or alterations made to the above structure of this utility model based on the above content of this utility model and in accordance with the common technical knowledge and conventional means in the field, without departing from the basic technical idea of ​​this utility model, shall fall within the scope of protection of this utility model.

Claims

1. A rapid coding and automatic stacking mechanism for color boxes, comprising a color box coding conveyor frame, a pressure frame installed above the color box coding conveyor frame to prevent color boxes from bouncing, a laser coding machine located on one side of the color box coding conveyor frame and cooperating with the pressure frame, a stacking guide trough installed at the end of the color box coding conveyor frame, and a color box stacking frame located at the end of the stacking guide trough, characterized in that, The stacking guide trough includes a guide trough body, hinge shafts welded to both sides of the guide trough body near the color box coding conveyor, a vibration motor fixedly installed in the middle of the lower part of the guide trough body, manual adjustment devices installed on both sides of the guide trough body near the color box stacking frame, and a baffle base plate movably installed below the guide trough body near the color box stacking frame and movably assembled with the color box stacking frame.

2. The automatic stacking mechanism for rapid coding of color boxes according to claim 1, characterized in that, The feed trough is fitted with hinged lugs at the locations where the baffle plate is installed.

3. The automatic stacking mechanism for rapid coding of color boxes according to claim 1, characterized in that, The manual adjustment device includes two Z-shaped guide plates that are fixed to the feed trough body by screws and are symmetrically arranged; a movable locking block whose lower end is located between the two Z-shaped guide plates and is fastened to the two Z-shaped guide plates; a lead screw whose end passes through the movable locking block and is movably assembled with the movable locking block; a lead screw support sleeve that is fitted on the lead screw and fixed to the feed trough body by screws; and a lever that is fixedly installed on the other end of the lead screw support sleeve.

4. The automatic stacking mechanism for rapid coding of color boxes according to claim 1, characterized in that, The bottom plate of the baffle is welded with hinge shafts on both sides of one end facing the guide trough, and the bottom plate of the baffle is welded with baffle hinge ears on both sides of the other end.

5. The automatic stacking mechanism for rapid coding of color boxes according to claim 1, characterized in that, The pressure frame includes pressure frame legs, a support bar horizontally mounted above the pressure frame legs, a pressure cylinder vertically mounted above the support bar, guide bars vertically mounted on both sides below the support bar, an assembly angle steel located below the support bar and fixedly mounted in the middle to the output end of the pressure cylinder, and two pressure strip plates symmetrically arranged below the assembly angle steel.

6. The automatic stacking mechanism for rapid coding of color boxes according to claim 5, characterized in that, The assembly angle steel has upper and lower strip holes at both ends, and guide posts are also installed laterally at both ends; an assembly head is welded to the upper center of the lower pressure strip plate.

7. The automatic stacking mechanism for rapid coding of color boxes according to claim 1, characterized in that, The color box stacking rack includes a support frame, a stacking slot fixed to the top of the support frame by screws, a mounting slot on both sides of the front end of the stacking slot, and a baffle guide strip with a strip-shaped groove welded to the support frame.