Glass magnesium board glue spraying production line with automatic cutting function

By introducing automatic cutting function in the glass magnesium plate coating production line, the problem of low efficiency of traditional production lines for fixed-size glass magnesium plate coating is solved, online cutting and glue coating are realized, and production efficiency and quality are improved.

CN223099596UActive Publication Date: 2025-07-15CHINA ELECTRONICS CHUANGDA CONSTR EQUIP TECH CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202421925327.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-09
Publication Date
2025-07-15
Estimated Expiration
2034-08-09

AI Technical Summary

Technical Problem

The traditional glass magnesium plate glue coating production line can only glue the fixed-size glass magnesium plates. When facing large-size glass magnesium plates, it needs to be cut before transportation, resulting in low production efficiency and reduced production volume.

Method used

A glass magnesium plate glue coating production line with automatic cutting function is designed, including a mobile cutting mechanism and a pick-up and placement mechanism to realize online cutting and glue coating, avoid additional transportation and improve production efficiency.

Benefits of technology

It realizes efficient cutting and glue coating for glass magnesium plates of different sizes, improves production quality and efficiency, and increases the production volume of glass magnesium plates.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223099596U_ABST
    Figure CN223099596U_ABST
Patent Text Reader

Abstract

The utility model discloses a glass magnesium board glue spraying production line with an automatic cutting function, which can realize on-line cutting, can realize on-line cutting and glue spraying for glass magnesium boards with different sizes without additionally increasing transportation cost, and is high in production efficiency. The device comprises a supporting frame, a conveying line is arranged below the supporting frame, and magnesium oxide board taking and placing mechanisms are arranged at the ends, away from the conveying line, of two parallel rib pipes at the top of the supporting frame in the direction of cutting off the conveying line. And a movable cutting mechanism matched with the magnesium oxide board is arranged on the rib tube close to the conveying line.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The utility model relates to the technical field of magnesium oxychloride board cutting and gluing equipment, and specifically relates to a magnesium oxychloride board gluing production line with an automatic cutting function. Background Art

[0002] Magnesium oxychloride board is a building and decoration material, often used in interior walls, exterior walls, ceilings and partition walls, mainly composed of magnesium oxide board reinforced by fiberglass mesh. In order to improve its surface performance and durability, glue is applied to the surface of the magnesium oxychloride board, that is, a special glue coating is applied. Traditional magnesium oxychloride board gluing production lines have a single function and can only manually feed magnesium oxychloride boards of fixed sizes into the gluing machine for gluing processing. When facing larger-sized magnesium oxychloride boards, they need to be transported to the cutting point, wait to be cut, and then transported back to the gluing machine, resulting in low production efficiency and reduced production volume of magnesium oxychloride boards. Content of the Utility Model

[0003] Aiming at the disadvantages of traditional magnesium oxychloride board gluing production lines, which can only glue magnesium oxychloride boards of fixed sizes, resulting in low production efficiency and reduced production volume of magnesium oxychloride boards, the utility model provides a magnesium oxychloride board gluing production line with an automatic cutting function, which can achieve online cutting. For magnesium oxychloride boards of different sizes, online cutting and gluing can be achieved without additional transportation costs, and the production efficiency is high.

[0004] The utility model provides the following technical solutions:

[0005] It includes a support frame, a conveying line is arranged below the support frame, and magnesium oxychloride board picking and placing mechanisms are arranged at the ends of two rib pipes parallel to the cutting conveying line direction on the top of the support frame away from the conveying line. It is characterized in that: between two vertically downward support rib pipes on the left part of the support frame, a mobile cutting mechanism matching the magnesium oxychloride board is arranged on the rib pipe close to the conveying line.

[0006] It further includes the following features:

[0007] The support frame includes a support beam at its top, two support beams perpendicular to the conveying direction, slide rails are respectively arranged on its sides, and racks are respectively arranged on its top;

[0008] The magnesium oxychloride board picking and placing mechanism includes a horizontal sliding column. A lifting base is installed on the side of the solid end of the horizontal sliding column. A rotating cylinder is installed outside the lifting base. A suction cup sliding tube is arranged inside the lifting base. A lifting rack is installed on the front of the suction cup sliding tube, and sliding guide rails are symmetrically installed on the sides. Auxiliary limiting blocks matching the sliding guide rails of the suction cup sliding tube are arranged inside the lifting base. After the rotating shaft of the rotating cylinder passes through the lifting base, a rotating gear is installed at the shaft head. The rotating gear meshes with the lifting rack. A connecting moving plate is installed on the horizontal sliding column. A slider matching the slide rail is arranged below the connecting moving plate, and a motor gearbox is installed on the protruding surface in the middle of the connecting moving plate. A moving seat is installed on the surface of the connecting moving plate below the solid end of the horizontal sliding column. A moving block matching the slide rail is arranged on the side of the moving seat facing the support frame;

[0009] The magnesium oxychloride board picking and placing mechanism includes a suction cup frame. The suction cup frame is fixedly connected to the lower part of the suction cup sliding tube. A bending block is installed on the suction cup frame. Suction cups are installed on the bending blocks. Positioning blocks are equally divided and symmetrically installed on the long ends of both sides of the suction cup frame. A small cylinder is installed on the positioning block. After the piston rod of the small cylinder passes through the positioning block, it is rotationally connected to the tail of the pressure rod through a connecting rod. The pressure rod is located below the suction cup frame. The convex block below the positioning block is rotationally connected to the pressure rod through a limiting rod;

[0010] The mobile cutting mechanism includes a fixed seat. Long strip slide rails are installed at both the upper and lower ends of the concave surface of the fixed seat, and a cutting machine rack is installed on the surface of the lower long strip slide rail. A moving slide plate is installed on the fixed seat. Sliders are symmetrically installed on the back of the moving slide plate to match the long strip slide rails of the fixed seat. A rotating motor and a gear cylinder are installed side by side on the front of the moving slide plate. After the rotating shaft head of the rotating motor passes through the moving slide plate, a rotating gear is installed at its end. The rotating gear is meshed and connected with the cutting machine rack. The piston rod of the gear cylinder is fixedly connected to the lower cutting machine through a nut and a bolt. The machine base of the cutting machine is limited and installed on the moving slide plate through a slide rail and slider structure;

[0011] Above the conveyor line, a pressing roller is arranged. The two ends of the pressing roller are respectively installed on fixed blocks. The fixed blocks are installed on telescopic devices. The telescopic devices are installed on vertical plates. The vertical plates are installed on the support frame through small ribbed tubes.

[0012] In the above technical solution, the technical effects and advantages provided by the present utility model are as follows:

[0013] The setting of the mobile cutting mechanism in cooperation with the pressing roller can achieve high-quality cutting. After the magnesium oxychloride board can be more stably cut to the size required for production, it enters the gluing machine through the picking and placing mechanism, improving the production quality of the magnesium oxychloride board and being beneficial to increasing the production volume of the glued magnesium oxychloride board;

[0014] The picking and placing mechanism is arranged side by side, which can realize the transportation of the magnesium oxychloride board to be cut by the suction cup rack on the left, and the suction cup rack on the right continues to transport the magnesium oxychloride board that does not need to be cut. When waiting for the production of glue pouring, after the cutting is completed on the left, the left and right are transported together and ready to enter the production of glue pouring, which increases the production efficiency of the magnesium oxychloride board glue pouring and is beneficial to improving productivity. Description of the Drawings

[0015] Figure 1 Front view of the overall structure of the present invention;

[0016] Figure 2 Schematic diagram of the support frame structure of the present invention;

[0017] Figure 3 Schematic diagram of the magnesium oxychloride board picking and placing mechanism structure of the present invention;

[0018] Figure 4 Schematic diagram of the lifting base structure of the present invention;

[0019] Figure 5 Schematic diagram of the suction cup rack structure of the present invention;

[0020] Figure 6 Schematic diagram of the pressing plate rod structure of the present invention;

[0021] Figure 7 Schematic diagram of the mobile cutting mechanism structure of the present invention;

[0022] Figure 8 Front view of the cutting machine structure of the present invention;

[0023] Figure 9 Rear view of the cutting machine structure of the present invention.

[0024] Explanation of the reference numerals in the drawings:

[0025] 1. Conveyor line; 2. Support frame; 3. Suction cup rack; 4. Suction cup slide tube; 5. Horizontal slide column; 6. Lifting base; 7. Motor rotator; 8. Connecting moving plate; 9. Moving seat; 10. Lifting rack; 11. Suction cup; 12. Connecting plate; 13. Pressing rod; 14. Limiting rod; 15. Suction cup rack rack; 16. Slide rail; 17. Cutting machine rack; 18. Moving slide plate; 19. Rotating cylinder; 20. Cutting machine; 21. Rotating motor; 22. Rotating gear; 23. Glue pouring machine; 24. Expander; 25. Fixed block; 26. Vertical plate; 27. Pressing plate roller; 28. Bending block; 29. Positioning block; 30. Gear cylinder; 31. Fixed seat. Detailed implementation manners

[0026] The present invention provides as Figure 1A magnesite board gluing production line with an automatic cutting function, which includes a support frame 2. Below the support frame 2, there is a conveyor line 1. Along the direction of the conveyor line 1, two rib tube picking and placing mechanisms are arranged in parallel on the support frame 2. On both sides of the support frame 2, along the conveying direction of the conveyor line 1, a mobile cutting structure and a gluing structure are sequentially arranged on the conveyor line 1;

[0027] See Figure 2 , the support frame 2 includes a support beam at its top and two support beams perpendicular to the conveying direction. Slide rails 16 are respectively arranged on its sides, and racks are respectively arranged on its top;

[0028] See Figure 3 、 Figure 4 , the magnesite board picking and placing mechanism includes a horizontal sliding column 5, see Figure 3 , on the side of the solid end of the horizontal sliding column 5, a lifting base 6 is installed. An oscillating cylinder 19 is installed outside the lifting base 6. A suction cup sliding tube 4 is arranged inside the lifting base 6. A lifting rack 10 is installed on the front of the suction cup sliding tube 4, and sliding guide rails are symmetrically installed on the sides. Auxiliary limiting blocks matching the sliding guide rails of the suction cup sliding tube 4 are arranged inside the lifting base 5 (see Figure 4 ). After the rotating shaft of the oscillating cylinder 19 passes through the lifting base 6, a rotating gear is installed at its shaft end. The rotating gear meshes with the lifting rack 10. By starting the oscillating cylinder 19, the vertical up and down movement of the suction cup sliding tube 4 can be realized. A connecting moving plate 8 is installed on the horizontal sliding column 5. Below the connecting moving plate 8, a slider matching the slide rail 16 is arranged, and a motor gearbox 7 is installed on the protruding surface in the middle of the connecting moving plate 8. On the surface of the connecting moving plate 8 below the solid end of the horizontal sliding column 5, a moving seat 9 is installed. On the side of the moving seat 9 facing the support frame 2, a moving block matching the slide rail 16 is arranged. When the motor rotator 7 is started, the horizontal sliding column 5 will move along the suction cup rack 15 towards the conveyor line 1. The moving seat 9 plays a role in limiting and ensuring the orderly linear movement of the horizontal sliding column;

[0029] See Figure 3 、 Figure 5 、 Figure 6 , the magnesite board picking and placing mechanism includes a suction cup frame 3. The suction cup frame 3 is fixedly connected to the lower part of the suction cup sliding tube 4, see Figure 5 , a bending block 28 is installed on the suction cup frame 3. Suction cups 11 are installed on the bending blocks 28. The suction cups 11 are used to suck the magnesite board to increase the stability of transporting the magnesite board. Positioning blocks 29 are evenly and symmetrically installed on both long ends of the suction cup frame 3, see Figure 6, a positioning block 29 is installed with a small cylinder. The piston rod of the small cylinder passes through the positioning block 29 and is rotatably connected to the tail of the pressure rod 13 through a connecting rod 12. The pressure rod 13 is located below the suction cup holder 3. The convex block below the positioning block 29 is rotatably connected to the pressure rod 13 through a limiting rod 14, and the rotation point is A. By starting the small cylinder on the positioning block 29, the pressure rod 13 rotates with A as the fulcrum, so as to release and press the magnesium oxychloride board;

[0030] See Figure 7 、 Figure 8 、 Figure 9 , the mobile cutting mechanism includes a fixed seat 31. Long strip slide rails are installed at both the upper and lower ends of the concave surface of the fixed seat 31, and a cutting machine rack 17 is installed on the surface of the long strip slide rail located below. A moving slide plate 18 is installed on the fixed seat 31. Sliders are symmetrically installed on the back of the moving slide plate 18 to match the long strip slide rails of the fixed seat 31. A rotating motor 21 and a gear cylinder 30 are installed side by side on the front of the moving slide plate 18. See Figure 9 , the rotating shaft head of the rotating motor 21 passes through the moving slide plate 18 and a rotating gear 22 is installed at its end. The rotating gear 22 is meshed with the cutting machine rack 17. The piston rod of the gear cylinder 30 is fixedly connected to the cutting machine 20 below through a nut and a bolt. The machine base of the cutting machine 20 is limited and installed on the moving slide plate 18 through a slide rail and slider structure;

[0031] See Figure 7 , above the conveyor line 1, a pressing roller 27 is provided. Both ends of the pressing roller 27 are installed on a fixed block 25. The fixed block 25 is installed on an expander 24. The expander 24 is installed on a vertical plate 26. The vertical plate 26 is installed on the support frame 2 through a small ribbed tube;

[0032] See Figure 1 , along the conveying direction, a gluing machine 23 is provided at the end of the conveyor line 1 for gluing the magnesium oxychloride board.

Claims

1. A magnesite board gluing production line with an automatic cutting function, which includes a support frame. A conveyor line is arranged below the support frame. Magnesite board picking and placing mechanisms are arranged on the ends, far from the conveyor line, of two rib tubes parallel to the cutting conveyor line direction on the top of the support frame. It is characterized in that: Between two vertically downward support rib pipes on the left part of the support frame, a mobile cutting mechanism matching the magnesium oxychloride board is arranged on the rib pipe close to the conveying line. The support frame includes a support beam at its top and two support beams perpendicular to the conveying direction. Slide rails are respectively arranged on its sides, and racks are respectively arranged on its top. The magnesium oxychloride board picking and placing mechanism includes a horizontal sliding column. A lifting base is installed on the side of the solid end of the horizontal sliding column. A rotating cylinder is installed outside the lifting base. A sucker sliding pipe is arranged inside the lifting base. A lifting rack is installed on the front of the sucker sliding pipe, and sliding guide rails are symmetrically installed on the sides. An auxiliary limiting block matching the sliding guide rail of the sucker sliding pipe is arranged inside the lifting base. After the rotating shaft of the rotating cylinder passes through the lifting base, a rotating gear is installed at its shaft head. The rotating gear meshes with the lifting rack. A connecting moving plate is installed on the horizontal sliding column. A slider matching the slide rail is arranged below the connecting moving plate, and a motor gearbox is installed on the protruding surface in the middle of the connecting moving plate. A moving seat is installed on the surface of the connecting moving plate below the solid end of the horizontal sliding column. A moving block matching the slide rail is arranged on the side of the moving seat facing the support frame.

2. The magnesium oxychloride board gluing production line with an automatic cutting function according to claim 1, characterized in that: The magnesium oxychloride board picking and placing mechanism includes a sucker frame. The sucker frame is fixedly connected to the lower part of the sucker sliding pipe. A bending block is installed on the sucker frame. Suckers are installed on the bending blocks. Positioning blocks are equally divided and symmetrically installed on the long ends on both sides of the sucker frame. A small cylinder is installed on the positioning block. After the piston rod of the small cylinder passes through the positioning block, it is rotatably connected to the tail of a pressure rod through a connecting rod. The pressure rod is located below the sucker frame. The convex block below the positioning block is rotatably connected to the pressure rod through a limiting rod.

3. The magnesite board gluing production line with an automatic cutting function according to claim 2, characterized in that: The mobile cutting mechanism includes a fixed seat. Long strip slide rails are installed at both the upper and lower ends of the concave surface of the fixed seat, and a cutting machine rack is installed on the surface of the lower long strip slide rail. A moving slide plate is installed on the fixed seat. Sliders are symmetrically installed on the back of the moving slide plate to match the long strip slide rails of the fixed seat. A rotating motor and a gear cylinder are installed side by side on the front of the moving slide plate. After the rotating shaft head of the rotating motor passes through the moving slide plate, a rotating gear is installed at its end. The rotating gear is meshed and connected with the cutting machine rack. The piston rod of the gear cylinder is fixedly connected to the lower cutting machine through a nut and a bolt. The machine base of the cutting machine is limited and installed on the moving slide plate through a slide rail and slider structure.

4. The magnesium oxychloride board gluing production line with an automatic cutting function according to claim 3, wherein: Above the conveying line, a pressing roller is arranged. The two ends of the pressing roller are respectively installed on fixed blocks. The fixed blocks are installed on telescopic devices. The telescopic devices are installed on vertical plates. The vertical plates are installed on the support frame through small rib pipes.