A tile packing mechanism

CN224727287UActive Publication Date: 2026-09-08GUANGDONG SINID TECH
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202521559374.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-07-24
Publication Date
2026-09-08
Estimated Expiration
2035-07-24

AI Technical Summary

Technical Problem

[0002]现有的多边形瓷砖打包装置,打包的均是四边形瓷砖,打包时,先将瓷砖放到纸箱上,再将纸箱连同上面的瓷砖传输到纸箱折叠工位上,然后,通过前后折叠机构、左右折叠机构,将纸箱折叠,由于是前后、左右折叠,因此,前后折叠机构、左右折叠机构可以分别设置在输送线上的前后位置、左右位置上,此种布设技术,都是很成熟的技术,而且,打包速度快;但是,对于五边形或者以上的多边形瓷砖,由于纸箱的折叠,是多重折叠,每个折叠机构的结构复杂,机构体积大,传统的折叠机构难以设置在打包工位上,以实现自动完成五边形或者以上的多边形瓷砖的打包

Benefits of technology

[0011] Compared with existing technologies, this invention has the advantage of being able to automatically produce pentagonal or more polygonal tiles.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224727287U_ABST
    Figure CN224727287U_ABST
Patent Text Reader

Abstract

The utility model relates to a ceramic tile packing mechanism relates to ceramic machinery technical field, including by up and down moving mechanism drive's platform, the number of side matches the number of ceramic tile side and is provided with the roller to the edge of polygon frame, the space surrounded by the roller on each side of polygon frame matches the polygon shape after the folding of carton, and is provided with the edge of polygon frame below the roller with the edge folding component driven by power mechanism, and the platform driven by up and down moving mechanism is located in the middle part of polygon frame. Compared with prior art, the utility model has the advantages of automatic completion of pentagon or above polygon ceramic tile.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the field of ceramic machinery technology, and in particular to a ceramic tile packaging mechanism. Background Technology

[0002] Existing polygonal tile packaging devices primarily package quadrilateral tiles. During packaging, the tiles are first placed on a cardboard box, and then the box, along with the tiles, is conveyed to a folding station. The box is then folded using front-to-back and left-to-right folding mechanisms. Since these folds are front-to-back and left-to-right, these mechanisms can be positioned at the front and back, and left and right, respectively, on the conveyor line. This layout technology is mature and offers fast packaging speeds. However, for pentagonal or larger polygonal tiles, the folding of the cardboard box involves multiple folds, each with a complex structure and large volume. Traditional folding mechanisms are difficult to install at the packaging station to achieve automated packaging of pentagonal or larger polygonal tiles. Summary of the Invention

[0003] The purpose of this invention is to provide a tile packing mechanism that can automatically pack pentagonal or larger polygonal tiles.

[0004] The polygonal tile packaging device of this utility model is implemented as follows: it includes a platform driven by a vertical moving mechanism, a polygonal frame with the number of sides matching the number of sides of the tile, a roller on each side of the polygonal frame, the space enclosed by the rollers on each side of the polygonal frame matching the polygonal shape of the folded carton, a folding edge component driven by a power mechanism on the side of the polygonal frame below the rollers, and the platform driven by the vertical moving mechanism located in the middle of the polygonal frame.

[0005] During tile packaging, the clamping mechanism of the carton storage and conveying mechanism clamps the flat carton at the carton storage mechanism and sends it to the tile packaging mechanism, where it is moved up to a higher platform by the up-and-down moving mechanism. The front-and-back tile conveying mechanism then lowers the tile onto the flat carton on the tile packaging mechanism. The up-and-down moving mechanism of the tile packaging mechanism moves the platform down. As the platform moves down below the polygonal frame, the folding cover of the flat carton bends and stands upright along the side of the tile under the action of rollers, covering all sides of the tile. After the platform is in place, each folding component, driven by its respective power mechanism, bends the upper part of the side cover towards the upper surface of the tile, covering the upper surface of the tile, thus completing the carton packaging of the tile. After the carton packaging is completed, the tile is conveyed by the conveyor line to the subsequent workstation for the next step of processing.

[0006] Using a polygonal frame and rollers, when a cardboard box containing tiles falls relative to the polygonal frame, all the folding flaps of the box are folded upright. Once fully upright, the folding components on the polygonal frame, driven by their respective power mechanisms, bend the upper part of the side flaps towards the upper surface of the tiles, thus covering the upper surface of the tiles and completing the cardboard box packaging. Using a polygonal frame, even polygons with more than 5 sides can complete the packaging of cardboard boxes containing tiles. Moreover, after packaging, the packaged item is located below the polygonal frame and falls onto the conveyor line. The polygonal frame and its components do not affect the transport of the packaged item, allowing it to be smoothly transported to the next workstation to complete the next packaging task (such as bundling).

[0007] Preferably, vertical plates are provided on both sides of the roller, and the distance between the two vertical plates corresponds to the width of the carton folding cover. When the carton folding cover falls into the range of action of the roller, it also falls between the vertical plates on both sides of the roller. Under the guidance of the two vertical plates, the carton folding cover is smoothly erected.

[0008] Preferably, an outward-flaring inclined plate is provided on the vertical plate on the side of the roller corresponding to the small side of the carton folding cover. As the carton folding cover falls into the range of the roller, it also falls between the vertical plates on both sides of the roller. Simultaneously, the small sides of the folding cover bend towards the roller under the action of the inclined plate. The carton folding cover rises to cover the side of the corresponding tile, and the small side also covers the adjacent side of the corresponding tile, thus completing the folding packaging of the small side. By using the small side, adjacent carton folding covers with small sides can be locked together, ensuring secure packaging.

[0009] Preferably, the rollers used for folding the carton folding cover with the small edge are higher than the rollers used for folding the carton folding cover without the small edge. When folding the carton folding cover, the rollers with higher height will fold the carton folding cover with the small edge first, and will be used to fold the carton folding cover without the small edge after the folding of the carton folding cover with the small edge. This way, the rollers used to fold the carton folding cover without the small edge can cover the small edge of the carton folding cover with the small edge.

[0010] Preferably, there are two pairs of rollers on each side of the polygonal frame, positioned on both sides of each side. A guide plate is provided between the two pairs of rollers, with the vertical guide surface of the guide plate flush with the vertical rolling tangent of the two pairs of rollers. An outwardly sloping guide plate is provided above the guide plate. Under the guidance of the guide plate, the rollers bend the cardboard box folding cover more smoothly.

[0011] Compared with existing technologies, this invention has the advantage of being able to automatically produce pentagonal or more polygonal tiles. Attached Figure Description

[0012] Figure 1 This is a schematic diagram of the structure of the ceramic tile packaging mechanism of this utility model; Figure 2 This is a schematic diagram of the ceramic tile packaging mechanism of this utility model from another perspective; Figure 3 This is a schematic diagram of the ceramic tile packaging mechanism of this utility model applied to a packaging production line; Figure 4 This is a diagram illustrating the process of ceramic tile packaging. Figure 5 This is a schematic diagram of the structure of the tile packaging mechanism of this utility model used in conjunction with other mechanisms of the polygonal tile packaging device; Figure 6 A schematic diagram of the conveyor line for a polygonal ceramic tile packaging device; Figure 7 A schematic diagram of the front and rear tile transfer mechanism of a polygonal tile packaging device; Figure 8 A schematic diagram of the vertical moving mechanism of the polygonal tile packaging device; Figure 9 A schematic diagram of the centering and vertical moving mechanism of a polygonal ceramic tile packaging device; Figure 10 A schematic diagram of the carton storage and conveying mechanism for a polygonal ceramic tile packaging device; Figure 11 This is a schematic diagram of the power clamp part of the polygonal tile packing device.

[0013] Diagram labeling: a-Conveyor line; b-Tile centering mechanism; c-Tile packaging mechanism; d-Carton storage and conveying mechanism; e-Tile front-to-back transfer mechanism; f-Carton; g-Tile; 1-Frame; 2-Up-and-down moving mechanism; 201-Motor mechanism; 202-Gear; 203-Rack; 3-Platform; 4-Polygonal frame; 401-Hexagonal frame; 402-Hexagonal plate; 403-Hexagonal hole; 5-Roller; 6-Power mechanism; 601-Power fixing seat; 602-Fixing groove; 7-Folding component; 8-Centering up-and-down moving mechanism; 801-Centering motor mechanism; 802-Centering gear; 803-Centering rack; 9-Centering platform; 10-Centering clamping component; 1001-Cylinder; 1002-Pressure roller; 11-Front-to-back transfer mechanism; 12-Transverse track; 13-Sliding seat; 14-Up-and-down moving power mechanism; 15 - Vertical track; 16- Clamping plate base; 17- Power clamp; 18- Carton storage compartment; 19- Carton suction cup component; 20- Suction cup up-and-down movement power mechanism; 21- Clamping horizontal drive power mechanism; 22- Horizontal guide rail; 23- Carton power clamp; 24- Carton guide platform; 25- Vertical plate; 2501- Vertical plate seat; 2502- Vertical plate seat fixing groove; 26- Folding cover plate; 27- Small side; 28- Inclined plate; 29- Guide plate; 2901- Guide surface; 2902- Guide plate seat; 2903- Guide plate seat fixing groove; 30- Inclined guide plate; 31- Belt transmission mechanism; 32- Position adjustment mechanism; 33- Centering position adjustment mechanism; 34- Clamping position adjustment mechanism; 35- Side plate; 36- Rear plate; 37- Front plate; 38- Side plate position adjustment mechanism; 39- Rear plate position adjustment mechanism. Detailed Implementation

[0014] The ceramic tile packaging mechanism of this utility model will now be described in further detail with reference to the accompanying drawings and embodiments: like Figure 1 As shown in Figure 4, the ceramic tile packaging mechanism c of this utility model is implemented as follows: a platform 3 that receives the carton f (the carton f is a hexagonal carton, and each of the six sides of the carton is provided with a carton folding cover plate 26) conveyed by the carton storage and conveying mechanism, driven by a vertical moving mechanism 2 (including a gear 202 driven by a motor mechanism 201 and a rack 203 driven by the gear 202 to move vertically), a polygonal frame 4 (in this embodiment, a hexagonal frame) whose number of sides matches the number of sides of the ceramic tile g (hexagonal ceramic tile), each side of the polygonal frame 4 is provided with a roller 5, the space enclosed by the rollers 5 on each side of the polygonal frame 4 matches the polygonal shape of the folded carton f, and a folding edge component 7 (L-shaped plate) driven by a power mechanism 6 (cylinder) is provided on the side of the polygonal frame 4 below the rollers 5. Preferably, vertical plates 25 are provided on both sides of the roller 5, and the distance between the two vertical plates corresponds to the width of the carton folding cover 26.

[0015] Preferably, an outwardly flared inclined plate 28 is provided on the vertical plate 25 on the side of the roller 5 corresponding to the small edge 27 on the side of the folding cover 26 of the carton.

[0016] Preferably, the height of the roller 5 used for folding the carton folding cover 26 with the small edge 27 is higher than that of the roller 5 used for folding the carton folding cover 26 without the small edge 27.

[0017] Preferably, there are two pairs of rollers 5 on each side of the polygonal frame 4, which are arranged on both sides of each side of the polygonal frame 4. A guide plate 29 is arranged between the two pairs of rollers 5. The vertical guide surface 2901 of the guide plate 29 is flush with the vertical rolling tangent of the two pairs of rollers 5. An outwardly inclined guide plate 30 is arranged above the guide plate 29.

[0018] Preferably, the polygonal frame 4 is a hexagonal frame, which includes a hexagonal frame 401 made of U-shaped profile and a hexagonal plate 402 fixed to the bottom of the hexagonal frame 401. The hexagonal plate 402 has a hexagonal hole 403 in the middle. The bottom of the guide plate 29 is provided with a guide plate seat 2901. The guide plate seat 2902 is provided with a guide plate seat fixing groove 2903. Screws pass through the guide plate seat fixing groove 2903 and are screwed onto the hexagonal plate 402 to fix the guide plate 29 onto the hexagonal plate 402. Two pairs of rollers 5 are connected to both sides of the guide plate 29 through roller shafts. Two vertical plates 25 set at a 60-degree angle are provided on the vertical plate seat 2501. The vertical plate seat 2501 is provided with a vertical plate seat fixing groove 2502. Screws pass through the vertical plate seat fixing groove 2502 and are screwed onto the hexagonal plate 402 to fix the two vertical plates 25 set at a 60-degree angle onto the hexagonal plate 402. By using a guide plate seat 2901 with a guide plate seat fixing groove 2902 and a vertical plate seat 2501 with a vertical plate seat fixing groove 2502, the positions of the roller 5, guide plate 29 and vertical plate 25 can be adjusted according to the specifications of the tile g to meet the packaging requirements of different specifications of tiles g.

[0019] Preferably, a power mounting base 601 is provided. The power mechanism 6 (cylinder) of the folding component 7 is fixed on the power mounting base 601. The power mounting base 601 is provided with a fixing groove 602. Screws pass through the fixing groove 602 and are screwed onto the back of the hexagonal plate 402 to fix the power mounting base 601 to the back of the hexagonal plate 402. By using the power mounting base 601 with the fixing groove 602, the position of the power mechanism 6 on the hexagonal plate 402 can be adjusted by adjusting the position of the screws in the fixing groove 602, so that the position of the power mechanism 6 can adapt to the packaging requirements of different sizes of ceramic tiles g.

[0020] Preferably, the vertical plates 25 on both sides of the roller 5 on the first side of the hexagonal frame are provided with outward-flaring inclined plates 28; the vertical plates 25 on both sides of the roller 5 on the second side adjacent to the right side of the first side are not provided with outward-flaring inclined plates 28; one of the vertical plates 25 on both sides of the roller 5 on the third side adjacent to the left side of the first side is not provided with an outward-flaring inclined plate 28, while the other vertical plate 25 on both sides of the roller 5 on the third side adjacent to the left side of the first side is provided with an outward-flaring inclined plate 28. The vertical plates 25 on both sides of the roller 5 on the fourth side adjacent to the left side of the third side do not have outward-flaring inclined plates 28. One of the vertical plates 25 on both sides of the roller 5 on the fifth side adjacent to the right side of the second side has an outward-flaring inclined plate 28 on the vertical plate 25 closer to the right side of the second side. The other vertical plate 25 on both sides of the roller 5 on the fifth side adjacent to the right side of the second side does not have an outward-flaring inclined plate 28. The vertical plates 25 on both sides of the roller 5 on the sixth side adjacent to the right side of the fifth side have outward-flaring inclined plates 28.

[0021] like Figure 4 As shown, due to the configuration of the hexagonal tile g, to ensure stable packaging, some of the folding cover plates 26 of the carton f need to have small edges, while some folding cover plates 26 have no small edges 27 or only one side, to ensure that the folding cover plates 26 can lock together. For this purpose, some vertical plates 25 need to be equipped with inclined plates 28. Theoretically, if all vertical plates 25 are equipped with inclined plates 28, even if some inclined plates 28 are redundant, it will not affect the bending of the small edges 27. However, due to the position of adjacent vertical plates 25, if all vertical plates 25 are equipped with inclined plates 28, the two adjacent vertical plates 25 will interfere with each other. The above-mentioned technology of this patent application can solve this problem, ensuring that the small edges 27 can be bent smoothly without interference between the vertical plates 25.

[0022] Preferably, the power mechanism 6 of the folding component 7, which is driven by the power mechanism 6 and corresponds to the left and right sides of the tile g, consists of two cylinders arranged in front and behind on the frame 1, and the folding component 7 is an L-shaped plate that extends directly to the rear end of the conveyor line a.

[0023] The tile packaging mechanism c is located at the rear end of the conveyor line a, the tile centering mechanism b is located at the front end of the conveyor line a, the carton storage and conveying mechanism d is located next to the rear end of the conveyor line a, the front and rear tile transfer mechanism e is located on the frame 1 above the conveyor line a, and the platform 3 that receives the carton f (the carton f is a hexagonal carton with a folding cover 26 on each of the six sides of the carton) from the carton storage and conveying mechanism is located on the frame 1 in the middle of the tile packaging mechanism c. The platform 3 that receives the carton f (the carton f is a hexagonal carton with a carton folding cover 26 on each of the six sides of the carton) is driven by the up and down moving mechanism 2 (including a gear 202 driven by the motor mechanism 201 and a rack 203 driven by the gear 202 to move up and down) is located on the frame 1 in the middle of the tile packaging mechanism c. The conveyor line a includes two sets of belt conveyor mechanisms 31. Each set of belt conveyor mechanism 31 is mounted on the frame 1 via a position adjustment mechanism 32. The centering clamping component 10 is mounted on the position adjustment mechanism 32 via a centering position adjustment mechanism 33. The clamping plate base 16 and a pair of power clamps 17 are connected to the clamping plate base 16 via a clamping position adjustment mechanism 34. The carton storage compartment 18 includes left and right side plates 35, a rear plate 36 located behind and between the side plates 35, and a front plate 37 located in front of and between the side plates 35. The side plates 35 are connected to the frame 1 via a side plate position adjustment mechanism 38, and the rear plate 36 is connected to the frame 1 via a rear plate position adjustment mechanism 39. The clamping lateral drive power mechanism 21 includes a stepper motor mechanism 2101 and a synchronous belt 2102 driven by the stepper motor mechanism 2101. The synchronous belt 2102 drives the carton power clamp 23. By using the aforementioned position adjustment mechanism, the positional relationship of the corresponding components can be easily adjusted according to the specifications of the packaged tiles to meet the packaging requirements of tiles of different specifications. The synchronous belt 2102 driven by the stepper motor mechanism 2101 can precisely control the distance of the carton power clamp 23 moving the carton f through the precise stepping rotation of the stepper motor mechanism 2101. Thus, the distance of the carton power clamp 23 moving the carton f can be adjusted according to the specifications of the tile g and the carton f to ensure that the carton f is accurately moved onto the platform 3.

[0024] The function of the tile centering mechanism b is to center and position the tile g at a set position on the conveyor line a. The tile centering mechanism b includes a centering platform 9 driven by a centering up-and-down moving mechanism 8 (including a centering gear 802 driven by a centering motor mechanism 801 and a centering rack 803 driven by the centering gear 802 to move up and down), and centering clamping components 10 (including cylinders 1001 and pressure rollers 1002 driven by cylinders 1001) located on the frame 1 on both sides of the conveyor line a and facing the four corners of the centering platform 9. The function of the front and rear tile conveying mechanism e is to convey the tile g, which is centered and positioned at a set position on the conveyor line a, to the tile packaging mechanism c. The front and rear tile conveying mechanism e includes a front and rear conveying mechanism 11 (using a belt conveying mechanism) set on the frame 1 above the conveyor line a, a sliding seat 13 driven by the front and rear conveying mechanism 11 to move back and forth along the transverse track 12, a clamping plate base 16 set on the sliding seat 13 driven by the up and down moving power mechanism 14 (cylinder) to move up and down along the vertical track 15, and a pair of power clamps 17 set on the clamping plate base 16. The function of the carton storage and conveying mechanism d is to store carton f and convey the stored carton f to the tile packaging mechanism c. The carton storage and conveying mechanism d includes a carton storage bin 18 with the carton inlet and outlet located at the top, a carton suction cup component 19 located above the top inlet and outlet of the carton storage bin 18, a suction cup up-and-down moving power mechanism 20 set on the frame 1 to drive the carton suction cup component 19 to move up and down, a carton storage bin 18 set on the frame 1, and a carton power clamp 23 driven by a clamp lateral driving power mechanism 21 to move along the lateral guide rail 22.

[0025] A cardboard box guide platform 24 is installed at the top entrance and exit of the cardboard box storage compartment 18, facing the tile packaging mechanism c.

[0026] When packaging tiles, hexagonal tiles g, with two sides on the sides and the front and back sides on the front and back, enter the tile centering mechanism station driven by conveyor line a. The centering rack 803 of the centering vertical movement mechanism 8 of the tile centering mechanism b rises, lifting tile g from the centering platform 9 away from conveyor line a. The centering clamping components 10 at the four corners of the tile centering mechanism b actuate, and the pressure rollers 1002 of the centering clamping components 10 press against the front and back four sides of tile g, centering and positioning tile g. After centering and positioning, the centering clamping components 10 reset. The front and rear transmission mechanism 11 of the tile front and rear transmission mechanism e drives the sliding seat 13, which moves back and forth along the horizontal track 12, to move directly above tile g. The vertical movement power mechanism 14 (cylinder) drives the sliding seat 13, which moves back and forth along the vertical track, to move up and down. The clamping base 16, which moves downward along the vertical track 15, moves down to the tile g. A pair of power clamps 17 on the clamping base 16 clamp the aligned tile g. The vertical movement power mechanism 14 (cylinder) drives the clamping base 16 to move upward along the vertical track 15. The front and rear transmission mechanism 11 drives the sliding seat 13, which moves back and forth along the horizontal track 12, to move directly above the tile packaging mechanism c. At this time, the suction cup vertical movement power mechanism 20 of the carton storage and conveying mechanism d drives the carton suction cup component 19 to move up and down, picking up and lifting the carton g from the top of the carton storage bin 18 and leaving the carton storage bin 18. The clamp horizontal drive power mechanism 21 drives the carton power clamp 23, which moves along the horizontal guide rail 22, to move horizontally, clamping the carton f picked up by the carton suction cup component 19 to the... The tile packaging mechanism c is moved to a higher platform 3 by the up-and-down moving mechanism 2. The up-and-down moving power mechanism 14 (cylinder) directly above the tile packaging mechanism c drives the clamping plate base 16 to move downwards along the vertical track 15. A pair of power clamps 17 on the clamping plate base 16 lower the tile onto the flat cardboard box f on the platform 3 of the tile packaging mechanism c. The up-and-down moving mechanism 14 of the tile packaging mechanism c drives the platform 3 downwards. As the platform 3 moves below the polygonal frame 4, under the action of the rollers 5 and guide plates 29, the folding cover 26 of the flat cardboard box f bends and rises along the side of the tile g, covering all sides of the tile g. Simultaneously, the folding cover 26 of the cardboard box f falls into the range of action of the rollers 5, and also falls into the sides of the rollers 5. Between the vertical plates 25, guided by the two vertical plates 25, the folding cover 26 is smoothly erected. At the same time, the small edges 27 on both sides of the folding cover 26 are bent towards the roller 5 under the action of the inclined plate 28. As the folding cover 26 is erected, it covers the side of the corresponding tile g, and the small edges 27 also cover the adjacent side of the corresponding tile g, thus completing the folding and packaging of the small edges 27. When folding the folding cover 26 of the carton f, the roller 5 and guide plate 29, which are taller and used for folding the folding cover 26 of the carton f with small edges 27, will fold the folding cover 26 of the carton f with small edges 27 first. The folding cover 26 of the carton f without small edges will be used after the folding cover 26 of the carton f with small edges 27.Folding cover 26, used for folding cardboard boxes without small edges, can cover the small edges 27 of cardboard boxes with small edges 27. After the platform 3 descends to its position, the folding components 7, driven by the power mechanism 6 (cylinder), bend the upper part of the folding cover 26 towards the upper surface of the tile g, thus covering the upper surface of the tile g, thereby completing the cardboard box packaging of the tile g. The process of the folding components 7 driven by the power mechanism 6 (cylinder) bending the upper part of the folding cover 26 towards the upper surface of the tile g is as follows: the power mechanisms 6 located at the front and rear ends of the tile g act first, driving the corresponding folding components 7 to bend the upper parts of the four folding cover plates 26 at the front and rear ends towards the upper surface of the tile g. Then, the power mechanisms 6 located on the left and right sides of the tile g then... The action causes the L-shaped plate at the rear of the conveyor line a to bend the upper parts of the two left and right folding covers 26 towards the upper surface of the tile g, pressing the four folding covers 26 at both ends onto the upper surface of the tile g. After the carton is folded, the power mechanisms 6 at the front and rear ends of the tile g reset, while the power mechanisms 6 on the left and right sides of the tile g maintain the folding state. The folded carton, along with the packaged tiles, falls onto the conveyor line a. The conveyor line a then delivers the folded carton and packaged tiles to the next bundling station. During the conveying process, the L-shaped plate maintaining the folding state ensures that the folded carton and packaged tiles remain in a packaged state before being delivered to the next bundling station.

Claims

1. A ceramic tile packaging mechanism, characterized in that... It includes a platform driven by a vertical moving mechanism, a polygonal frame with the number of sides matching the number of tile sides, a roller on each side of the polygonal frame, the space enclosed by the rollers on each side of the polygonal frame matching the polygonal shape of the folded cardboard box, a folding edge component driven by a power mechanism on the side of the polygonal frame below the rollers, and a platform driven by the vertical moving mechanism located in the middle of the polygonal frame.

2. The tile packaging mechanism according to claim 1, characterized in that, Vertical plates are installed on both sides of the roller, and the spacing between the two vertical plates corresponds to the width of the folding cover of the carton.

3. The tile packaging mechanism according to claim 2, characterized in that, An outward-flaring slant plate is provided on the side vertical plate of the roller corresponding to the small side of the folding cover of the carton.

4. The tile packaging mechanism according to claim 3, characterized in that, The rollers used for folding carton flaps with small edges are higher than the rollers used for folding carton flaps without small edges.

5. The tile packaging mechanism according to claim 1, 2, 3, or 4, characterized in that, There are two pairs of rollers on each side of the polygonal frame, and a guide plate is set between the two pairs of rollers. The vertical guide surface of the guide plate is flush with the vertical rolling tangent of the two pairs of rollers. An outwardly inclined guide plate is set above the guide plate.

6. The tile packaging mechanism according to claim 1, 2, 3, or 4, characterized in that, The power mechanism for the folding components, which are driven by a power mechanism and are located on the left and right sides of the tile, consists of two cylinders mounted on the frame. The folding components are L-shaped plates that extend directly to the rear end of the conveyor line.

7. The tile packaging mechanism according to claim 5, characterized in that, The power mechanism for the folding components, which are driven by a power mechanism and are located on the left and right sides of the tile, consists of two cylinders mounted on the frame. The folding components are L-shaped plates that extend directly to the rear end of the conveyor line.

8. The tile packaging mechanism according to claim 5, characterized in that, The polygonal frame is a hexagonal frame, which includes a hexagonal frame made of U-shaped profile, a hexagonal plate fixed to the bottom of the hexagonal frame, a hexagonal hole in the center of the hexagonal plate, a guide plate seat at the bottom of the guide plate, a guide plate seat fixing groove on the guide plate seat, screws passing through the guide plate seat fixing groove and screwed onto the hexagonal plate to fix the guide plate on the hexagonal plate, two pairs of rollers connected to both sides of the guide plate through roller shafts, and two vertical plates set at a 60-degree angle are set on a vertical plate seat, the vertical plate seat is set with a vertical plate seat fixing groove, screws passing through the vertical plate seat fixing groove and screwed onto the hexagonal plate to fix the two vertical plates set at a 60-degree angle on the hexagonal plate.

9. The tile packaging mechanism according to claim 8, characterized in that, A power mounting base is provided, and the power mechanism of the folding component driven by the power mechanism is fixed on the power mounting base. The power mounting base is provided with a fixing groove, and screws pass through the fixing groove and are screwed onto the back of the hexagonal plate to fix the power mounting base to the back of the hexagonal plate.

10. The tile packaging mechanism according to claim 8 or 9, characterized in that, The vertical plates on both sides of the roller on the first side of the hexagonal frame have outward-flaring inclined plates. The vertical plates on both sides of the roller on the second side, adjacent to the right side of the first side, do not have outward-flaring inclined plates. On the third side, adjacent to the left side of the first side, one of the vertical plates on both sides of the roller, closer to the left side of the first side, does not have an outward-flaring inclined plate, while the other vertical plate on both sides of the roller on the third side, away from the left side of the first side, has an outward-flaring inclined plate. The vertical plates on both sides of the roller on the fourth side, adjacent to the left side of the third side, do not have outward-flaring inclined plates. On the fifth side, adjacent to the right side of the second side, one of the vertical plates on both sides of the roller, closer to the right side of the second side, has an outward-flaring inclined plate, while the other vertical plate on both sides of the roller on the fifth side, away from the right side of the second side, does not have an outward-flaring inclined plate. The vertical plates on both sides of the roller on the sixth side, adjacent to the right side of the fifth side, have outward-flaring inclined plates.