Full-automatic efficient multi-layer laminating machine

The drive system and counterweight design of the fully automatic and efficient multi-layer laminator solves equipment problems caused by asynchronous lifting mechanisms and heating modes, achieving a stable and efficient material conveying and lamination process.

CN223355162UActive Publication Date: 2025-09-19QINHUANGDAO BRANCH OF YINGKOU JINCHEN SOLAR ENERGY EQUIP CO LTD
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Patent Information

Application Number
CN202422765328.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-13
Publication Date
2025-09-19
Estimated Expiration
2034-11-13

AI Technical Summary

Technical Problem

The lifting mechanism of existing laminators is prone to asynchrony, which can cause cylinder damage and equipment failure. The heating mode also causes equipment deformation, affecting production efficiency and equipment stability.

Method used

A fully automatic and efficient multi-layer laminator is used, which utilizes a combination of a drive system and a counterweight block to ensure the synchronization of the lifting process, and improves the stability and precision of the equipment through a laminating heating mechanism and a guide rail mechanism.

Benefits of technology

It realizes efficient and stable material conveying and lamination process, reduces equipment failure rate, and improves production efficiency and equipment reliability.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of solar cell module packaging and manufacturing equipment, and discloses a full-automatic efficient multi-layer laminating machine which comprises a feeding conveying table, a laminating main machine hot-pressing section and a discharging conveying table, and mounting frames are arranged outside the feeding conveying table and the discharging conveying table respectively. A lifting device is arranged on one side of the interior of the mounting frame, a horizontal conveying system is mounted in the middle of the lifting device, a battery assembly is mounted at the top of the lifting device, a driving system is arranged at the bottom of the lifting device, and a power device is arranged on the middle side of the interior of the mounting frame. According to the utility model, the components conveyed by the assembly line are accurately received through the up-down lifting motion, and are conveyed to each layer of the hot pressing section of the laminating main machine by the feeding device in a layered manner as required. The feeding efficiency is improved, and the labor cost and the possibility of misoperation are reduced. And moreover, the stable proceeding of the feeding process is ensured, and the service life of equipment is prolonged.
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Description

Technical Field

[0001] The utility model relates to the field of solar cell assembly packaging and manufacturing equipment, in particular to a full-automatic high-efficiency multi-layer laminating machine. Background Art

[0002] Solar energy is a clean, renewable energy source of vital importance to human life. The core of solar technology is the use of solar radiation to generate electricity, converting sunlight into electricity through solar panels. As a crucial piece of equipment in the solar panel packaging and manufacturing industry, the performance of solar cell module laminators directly determines the quality of solar cell modules. The laminator works by bonding the various layers of solar cell modules (glass panels, cell strings, backsheet, etc.) together with EVA adhesive in a high-temperature, vacuum environment, creating a highly transparent, integrated structure.

[0003] At present, most of the existing equipment lifting mechanisms use multiple independent cylinders for lifting, which makes it easy to cause the lifting process to be asynchronous. Long-term use may cause damage to the cylinder at the very least, or equipment failure at the worst, affecting the company's production. At the same time, the laminating machine often adopts the single-sided heating mode of the heating plate, which will cause the upper chamber mechanism to be in an internal vacuum state under the action of external atmospheric pressure during lamination work, which is prone to deformation, causing a series of problems during use and difficult maintenance. Utility Model Content

[0004] In order to make up for the above shortcomings, the utility model provides a fully automatic and efficient multi-layer laminating machine, which aims to improve the problem in the existing technology that multiple points of separate cylinders are used for lifting, which easily causes the lifting process to be asynchronous. Long-term use may cause damage to the cylinder at the least and cause equipment failure at the worst.

[0005] In order to achieve the above-mentioned purpose, the utility model adopts the following technical solutions: a fully automatic and efficient multi-layer laminating machine, comprising a feeding and conveying platform, a laminating main machine hot pressing section, and a discharging and conveying platform, the outside of the feeding and conveying platform and the discharging and conveying platform are respectively provided with mounting frames, a lifting device is provided on one side of the inside of the mounting frame, a horizontal transmission system is installed in the middle of the lifting device, a battery assembly is installed on the top of the lifting device, a driving system is provided at the bottom of the lifting device, a power device is provided on the middle side of the inside of the mounting frame, a loading device is provided inside the mounting frame, a protective frame is provided on the outside of the laminating main machine hot pressing section, a laminating conveying device is provided inside the protective frame, a power assembly is installed on one side of the bottom of the laminating conveying device, and lifting assemblies are respectively provided on the outside of the laminating conveying device;

[0006] The drive system is respectively externally mounted on the inner side of the feed conveyor platform and the discharge conveyor platform, the drive system includes a first motor and a first transmission shaft, the output end of the first motor is fixedly connected to a first sprocket, the ends of the first transmission shaft are respectively fixedly connected to a second sprocket and a third sprocket, the first sprocket is meshed and connected to the second sprocket through a first chain, the outer portion of the third sprocket is sleeved with a second chain, and the outer portion of the second chain is fixedly connected to a connecting block;

[0007] The outside of the power device is installed on the inner side of the feed conveyor platform and the discharge conveyor platform, and the power device includes a second motor and a second transmission shaft, the output end of the second motor is fixedly connected to the first driving sprocket, and the ends of the second motor are respectively installed with the first driven sprocket and the second driven sprocket, the first driving sprocket is meshed with the third chain, the first driving sprocket is connected to one of the first driven sprockets through the third chain, the outside of the second driven sprocket is respectively meshed with the fourth chain, the second driven sprocket is connected to multiple sets of bearings through the fourth chain, the outside of the fourth chain is installed with a connecting fixed seat, and the inside of the mounting frame is provided with a slide device.

[0008] As a further description of the above technical solution:

[0009] A counterweight system is provided on the outside of the lifting device, a counterweight block is installed inside the counterweight system, four connecting seats are fixedly connected to the outside of the counterweight block, and rail wheels are installed on the four connecting seats. A plurality of rail bodies are installed on the outside of the mounting frame, and the rail wheels are in rolling contact with the plurality of rail bodies.

[0010] As a further description of the above technical solution:

[0011] The lamination conveying device includes a lamination heating mechanism, which is installed inside the lamination conveying device, an active roller mechanism is installed at one end of the lamination heating mechanism, a driven roller mechanism is installed at the other end of the lamination heating mechanism, a guide rail mechanism is installed outside the lamination heating mechanism, and the outside of the guide rail mechanism is arranged on a vacuum pipeline mechanism.

[0012] As a further description of the above technical solution:

[0013] The bottom of the power assembly is installed on the inner side of the hot pressing section of the laminating main machine. The power assembly includes multiple power systems. A jacking platform is set on the top of the multiple power systems. A hole groove is opened in the middle of the jacking platform, and the hole groove is used to install a pad.

[0014] As a further description of the above technical solution:

[0015] The lifting assembly includes a limit plate, which is installed on the inner side of the hot pressing section of the laminating main machine. A lower fixed seat is installed at the bottom of the limit plate, an upper fixed seat is installed at the top of the limit plate, a plurality of limit blocks are installed on the left side of the limit plate, a plurality of second guide wheels are installed on the right side of the limit plate, and a first guide wheel is arranged outside the second guide wheel.

[0016] As a further description of the above technical solution:

[0017] A hoisting part is installed on the outside of the feeding and conveying platform, the right side of the feeding and conveying platform is connected to the hot pressing section of the laminating main machine, a vacuum pipeline device is installed on the top of the two hot pressing sections of the laminating main machine, a transition platform is set at the end of the two hot pressing sections of the laminating main machine, and an electric control device is installed on the outside of the hot pressing section of the laminating main machine.

[0018] As a further description of the above technical solution:

[0019] A lifting drive device is installed at the bottom of the transition material platform, a lifting active chain is installed on the outside of the lifting drive device, a lifting driven chain is installed at one end of the lifting active chain, a conveying mechanism is provided on the inner side of the lifting driven chain, and a maintenance platform is provided on the top of the conveying mechanism. A transition section frame is installed on the top of the transition material platform.

[0020] As a further description of the above technical solution:

[0021] A laminating main machine cooling section is installed on one side of one of the transition material tables, a first conveying device and a dynamic upper cover pressing device are installed inside the laminating main machine cooling section, and a plurality of lifting devices are installed on the top of the protective frame.

[0022] The utility model has the following beneficial effects:

[0023] 1. In this utility model, components conveyed from the assembly line are accurately received through an up-and-down lifting motion, and a loading device delivers them layer by layer to each layer of the hot-pressing section of the laminating machine as needed. The entire process is highly automated, requiring no excessive human intervention, significantly improving feeding efficiency and reducing labor costs and the possibility of operational errors. A sprocket chain drive system driven by a first motor drives the horizontal transmission system and counterweights, ensuring a smooth feeding process. The counterweights effectively offset the horizontal transmission system's own gravity, reducing motor load and extending the equipment's service life.

[0024] 2. In this utility model, the lifting platform is driven upward by multiple power systems within the power assembly, allowing each laminating conveyor to fit tightly together, ensuring the tightness and stability of the lamination. The coordination of the stop block, stop plate, first guide wheel, and second guide wheel ensures that the position of each laminating conveyor does not shift during the lifting process, improving the precision and consistency of the lamination. The upper and lower fixing bases are securely connected to the frame, further enhancing the stability and reliability of the equipment. BRIEF DESCRIPTION OF THE DRAWINGS

[0025] Figure 1 This is a three-dimensional schematic diagram of a fully automatic and efficient multi-layer laminating machine proposed in the present invention;

[0026] Figure 2 This is a structural schematic diagram of a feeding and conveying platform of a fully automatic and efficient multi-layer laminating machine proposed in the present invention;

[0027] Figure 3 This is a structural diagram of the hot pressing section of the laminating main machine of a fully automatic and efficient multi-layer laminating machine proposed in the present invention;

[0028] Figure 4 This is a structural schematic diagram of a transition material table of a fully automatic and efficient multi-layer laminating machine proposed in the present invention;

[0029] Figure 5 This is a structural schematic diagram of the cooling section of the laminating main machine of a fully automatic and efficient multi-layer laminating machine proposed in the present invention;

[0030] Figure 6 This is a structural schematic diagram of a discharging and conveying platform of a fully automatic and efficient multi-layer laminating machine proposed in the present invention;

[0031] Figure 7 This is a structural schematic diagram of a laminating conveying device of a fully automatic and efficient multi-layer laminating machine proposed in the utility model;

[0032] Figure 8 This is a schematic structural diagram of a power assembly of a fully automatic and efficient multi-layer laminating machine proposed in the present invention;

[0033] Figure 9 This is a structural schematic diagram of a limit plate of a fully automatic and efficient multi-layer laminating machine proposed in the utility model;

[0034] Figure 10 This is a structural schematic diagram of a hoisting component of a fully automatic and efficient multi-layer laminating machine proposed in the utility model;

[0035] Figure 11 This is a structural schematic diagram of a lifting device for a fully automatic and efficient multi-layer laminating machine proposed in the utility model;

[0036] Figure 12 This is a structural schematic diagram of the first motor of a fully automatic and efficient multi-layer laminating machine proposed in the present invention;

[0037] Figure 13 This is a structural schematic diagram of a counterweight block for a fully automatic and efficient multi-layer laminating machine proposed in the present invention;

[0038] Figure 14 This is a structural schematic diagram of the second transmission shaft of a fully automatic and efficient multi-layer laminating machine proposed in the utility model.

[0039] Legend:

[0040] 1. Feeding and conveying platform; 2. Laminating machine hot pressing section; 3. Transition platform; 4. Laminating machine cooling section; 5. Discharging and conveying platform; 6. Mounting frame; 7. Hoisting parts; 8. Loading device; 9. Lifting device; 10. Battery assembly; 11. Protective frame; 12. Power assembly; 13. Laminating conveying device; 14. Lifting assembly; 15. Vacuum pipe device; 16. Electronic control device; 17. Transition section frame; 18. Lifting drive device; 19. Lifting active chain; 20. Lifting driven chain; 21. Conveying mechanism; 22. Maintenance platform; 23. First conveying device; 24. Dynamic upper cover pressing device; 25. Lifting device; 26. Active roller mechanism; 27. Laminating heating mechanism; 28. Guide rail mechanism; 29. ​​Vacuum pipe mechanism; 30. Driven roller mechanism; 31. Lifting platform Platform; 32. Power system; 33. Limit plate; 34. Lower fixed seat; 35. Limit block; 36. Upper fixed seat; 37. First guide wheel; 38. Second guide wheel; 39. Drive system; 40. Horizontal transmission system; 41. Counterweight system; 42. First motor; 43. First sprocket; 44. First chain; 45. Second sprocket; 46. First transmission shaft; 47. Second chain; 48. Third sprocket; 49. Counterweight; 50. Connecting seat; 51. Track wheel; 52. Track body; 53. Slide device; 54. Power device; 55. Second motor; 56. First driving sprocket; 57. Third chain; 58. First driven sprocket; 59. Second transmission shaft; 60. Second driven sprocket; 61. Fourth chain; 62. Connecting seat; 63. Multiple sets of bearings. DETAILED DESCRIPTION

[0041] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0042] Reference Figure 1、 Figure 2 、 Figure 6 The present invention provides an embodiment of a fully automatic, efficient, multi-layer laminating machine, comprising a feed conveyor 1, a laminating machine hot-pressing section 2, and a discharge conveyor 5. Mounting brackets 6 are provided on the exterior of each of the feed conveyor 1 and the discharge conveyor 5. The feed conveyor 1, serving as the initial portion of the machine, receives the material to be laminated and delivers it to the laminating machine hot-pressing section 2. The mounting brackets 6 provide stable support for the feed conveyor 1 and the discharge conveyor 5, ensuring stability during operation and improving reliability and safety.

[0043] A lifting device 9 is provided on one side of the interior of the mounting frame 6, and a horizontal transmission system 40 is installed in the middle of the lifting device 9. The lifting device 9 can adjust its height according to different production requirements to adapt to the input and output of materials of different specifications. The horizontal transmission system 40 can smoothly transport the material from the feed transmission platform 1 to the laminating main machine hot pressing section 2, thereby improving the transmission efficiency and reducing the risk of damage to the material during the transmission process. A battery assembly 10 is installed on the top of the lifting device 9, and a drive system 39 is provided at the bottom of the lifting device 9. The drive system 39 provides power for the lifting device 9 and the horizontal transmission system 40 to ensure that the equipment can operate efficiently and improve production efficiency. A power device 54 is provided on the middle side of the interior of the mounting frame 6, and a loading device 8 is provided inside the mounting frame 6 to transport the material from the feed transmission platform 1 to the laminating main machine hot pressing section 2. A protective frame 11 is provided on the outside of the laminating main machine hot pressing section 2, and a laminating conveying device 13 is provided inside the protective frame 11. A power component 12 is installed on one side of the bottom of the laminating conveying device 13, and lifting components 14 are provided on the outside of the laminating conveying device 13.

[0044] Reference Figure 11 、 Figure 12 The drive system 39 is externally mounted on the inner side of the feed conveyor platform 1 and the discharge conveyor platform 5. The drive system 39 includes a first motor 42 and a first transmission shaft 46. The output end of the first motor 42 is fixedly connected to a first sprocket 43. The ends of the first transmission shaft 46 are fixedly connected to a second sprocket 45 and a third sprocket 48. The first sprocket 43 is meshed with the second sprocket 45 via a first chain 44. The third sprocket 48 is externally sleeved with a second chain 47. The second chain 47 is externally fixedly connected to a connecting block. The first motor 42 provides power for the entire drive system 39. Through the transmission system of the sprockets and chains, the power is accurately transmitted to various parts, achieving efficient motion control. The connecting block connects the second chain 47 to the horizontal transmission system 40 to ensure that the horizontal transmission system 40 can move up and down smoothly with the movement of the chain.

[0045] Reference Figure 13 、 Figure 14The power unit 54 is externally mounted on the inside of the feed and discharge conveyor platforms 1 and 5, providing power for the forward and backward movement of the loading device 8. The power unit 54 includes a second motor 55 and a second transmission shaft 59. The output end of the second motor 55 is fixedly connected to a first driving sprocket 56. The second motor 55 is driven by a sprocket and chain transmission system. The ends of the second motor 55 are respectively mounted with a first driven sprocket 58 and a second driven sprocket 60. The first driving sprocket 56 meshes with a third chain 57, transmitting power to the loading device 8 and achieving precise motion control.

[0046] The first driving sprocket 56 is connected to one of the first driven sprockets 58 through the third chain 57, and the outside of the second driven sprocket 60 is respectively engaged with the fourth chain 61. The second driven sprocket 60 is connected to multiple groups of bearings 63 through the fourth chain 61. The outside of the fourth chain 61 is equipped with a connecting fixed seat 62. The interior of the mounting frame 6 is provided with a slide device 53 to provide stable guidance for the movement of the feeding device 8, ensuring that the feeding device 8 remains stable during the movement, and improving the reliability and precision of the equipment.

[0047] Reference Figure 1-Figure 3 A counterweight system 41 is provided on the outside of the lifting device 9, and a counterweight block 49 is installed inside the counterweight system 41. The counterweight block 49 balances the weight of the lifting device 9 and the horizontal transmission system 40. Four connecting seats 50 are fixedly connected to the outside of the counterweight block 49. The four connecting seats 50 are installed with track wheels 51. Multiple track bodies 52 are installed on the outside of the mounting frame 6. The track wheels 51 roll against the multiple track bodies 52 to ensure that the counterweight block 49 can move smoothly along the track bodies during the lifting process, thereby improving the stability and safety of the equipment.

[0048] Reference Figure 3 、 Figure 9 The lamination conveyor 13 includes a lamination heating mechanism 27, which is installed within the lamination conveyor 13 and can heat the materials, allowing them to better bond together during the lamination process and improving lamination quality. A driving roller mechanism 26 is mounted on one end of the lamination heating mechanism 27, and a driven roller mechanism 30 is mounted on the other end of the lamination heating mechanism 27. Drive sprockets are mounted on both sides of the driving roller. The sprockets drive the chain, transmitting power to the driven roller mechanism 30, forming a circular motion.

[0049] The driven roller mechanism 30 is composed of a driven roller, a driven sprocket and a mounting plate. It has no power of its own and is used in conjunction with the active roller mechanism 26. At the same time, two sets of pull rod mechanisms are installed at both ends of the chain, and two sets of high-temperature cloth are installed between the pull rod mechanisms for the transmission of the battery assembly 10. A guide rail mechanism 28 is installed on the outside of the laminating heating mechanism 27, and a vacuum pipeline mechanism 29 is set on the outside of the guide rail mechanism 28. The laminating heating mechanism 27 is made of iron plate, and two sets of independent vacuum channels are opened inside the iron plate, which are used to connect the upper vacuum system and the lower vacuum system of the equipment respectively. Among them, the lower vacuum channel slot is opened on the top of the iron plate, and the upper vacuum channel slot is opened on the bottom of the iron plate. The vacuum pipeline slots are distributed and arranged according to the law of fluid movement. A vacuum pipeline mechanism 29 is installed on the side of the iron plate to connect the upper and lower vacuum channels in the iron plate.

[0050] Reference Figure 7 、 Figure 8 The bottom of the power assembly 12 is mounted inside the hot press section 2 of the laminating machine. The power assembly 12 includes multiple power systems 32, which are located below the lifting platform 31 and use hydraulic pressure to ensure smooth operation during the lifting process. The lifting platform 31 is located on top of the multiple power systems 32. The lifting platform 31 has a hole in the middle for mounting a backing plate, which can be adjusted according to different materials and lamination requirements.

[0051] Reference Figure 9 The lifting assembly 14 includes a limit plate 33, which is installed on the inner side of the hot pressing section 2 of the laminating main machine. The limit plate 33 and the limit block 35 limit the lifting height of the laminating conveyor 13. A lower fixing seat 34 is installed at the bottom of the limit plate 33, and an upper fixing seat 36 is installed on the top of the limit plate 33, which firmly fixes the limit plate 33 on the inner side of the hot pressing section 2 of the laminating main machine. A plurality of limit blocks 35 are installed on the left side of the limit plate 33, and a plurality of second guide wheels 38 are installed on the right side of the limit plate 33. A first guide wheel 37 is provided on the outside of the second guide wheel 38 to provide guidance for the lifting and lowering of the laminating conveyor 13, ensuring that it maintains the correct position during the lifting process.

[0052] Reference Figure 4 、 Figure 5 The outside of the feed and transfer platform 1 is equipped with a hoisting piece 7 to facilitate the installation and maintenance of the equipment. The right side of the feed and transfer platform 1 is connected to the hot-pressing section 2 of the laminating main machine. The tops of the two hot-pressing sections 2 of the laminating main machine are equipped with a vacuum pipe device 15. The ends of the two hot-pressing sections 2 of the laminating main machine are equipped with a transition platform 3. The outside of the hot-pressing section 2 of the laminating main machine is equipped with an electronic control device 16, which can provide a vacuum environment for the hot-pressing section 2 of the laminating main machine and improve the lamination quality. The transition platform 3 plays a transition role between the hot-pressing sections 2 of the laminating main machine, ensuring the smooth transfer of materials.

[0053] The electronic control device 16 can precisely control each part of the equipment, thereby improving the degree of automation and reliability of the equipment. A lifting drive device 18 is installed at the bottom of the transition material platform 3, and a lifting active chain 19 is installed on the outside of the lifting drive device 18. A lifting driven chain 20 is installed at one end of the lifting active chain 19. A conveying mechanism 21 is provided on the inner side of the lifting driven chain 20, and a maintenance platform 22 is provided on the top of the conveying mechanism 21. A transition section frame 17 is installed on the top of the transition material platform 3, which drives the conveying mechanism 21 up and down through chain transmission to realize the transmission of materials between transition material platforms 3 at different heights. The maintenance platform 22 facilitates the maintenance and overhaul of the equipment and improves the maintainability of the equipment. The transition section frame 17 provides stable support for the transition material platform 3, ensuring that the equipment remains stable during operation.

[0054] A laminating machine cooling section 4 is mounted on one side of one of the transition platforms 3. Inside this section, a first conveyor device 23 and a dynamic upper cover pressing device 24 are installed. Multiple lifting devices 25 are mounted on top of the protective frame 11 to cool the laminated material and improve its performance and stability. The first conveyor device 23 transports the laminated material to the cooling section, enabling an automated production process. The dynamic upper cover pressing device 24 further presses the material, improving lamination quality.

[0055] Working principle: The lifting device 9 of the feeding and conveying platform 1 receives the components transmitted from the assembly line through up and down movement, and then transports them layer by layer according to the set program to the loading device 8 corresponding to the hot pressing section 2 of the laminating main machine. The loading device 8 transmits them to each layer corresponding to the hot pressing section 2 of the laminating main machine as needed. During this process, the first motor 42 is started to rotate the first sprocket 43, and then drives the second sprocket 45 to rotate synchronously through the first chain 44, and drives the third sprocket 48 to rotate accordingly, thereby driving the second chain 47 to move, and the second chain 47 drives the horizontal transmission system 40 to move up and down through the connecting block, and And it drives the counterweight block 49 to move. During the movement of the counterweight block 49, the gravity of the horizontal transmission system 40 itself will be offset. At the same time, the track wheel 51 will move along the track 52. After the loading is completed, the second motor 55 is started to rotate the first driving sprocket 56, and the first driven sprocket 58 is driven to rotate through the third chain 57. When the first driven sprocket 58 rotates, the second driven sprocket 60 at the end of the second transmission shaft 59 is driven to rotate, so that the fourth chain 61 outside the second driven sprocket 60 moves, thereby driving the loading device 8 to move back and forth along the slide device 53, and then the components can be further transported;

[0056] Secondly, after entering the hot pressing section 2 of the laminating main machine, the laminating conveying device 13 starts to work. The multiple power systems 32 at the bottom of the power assembly 12 drive the lifting platform 31 to rise. During the rising process of the power assembly 12, the limit blocks 35 on the independent laminating devices will successively detach from the limit plate 33 from the bottom to the top until the rising process is completed, and each laminating conveying device 13 is tightly fitted together; during the descending process, each limit block 35 will successively descend from the top to the bottom to the limit step of the limit plate 33 until the descending process is completed. The first guide wheel 37 and the second guide wheel 38 are installed on the side of each laminating conveying device 13 to ensure that the position of each laminating conveying device 13 will not shift during the lifting process. The upper fixed seat 36 and the lower fixed seat 34 are respectively connected and fixed to the frame.

[0057] Finally, it should be noted that the above is only a preferred embodiment of the present invention and is not intended to limit the present invention. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art can still modify the technical solutions described in the aforementioned embodiments or make equivalent replacements for some of the technical features therein. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.

Claims

1. A fully automatic and efficient multi-layer laminating machine, comprising a feeding and conveying platform (1), a laminating main machine hot pressing section (2), and a discharging and conveying platform (5), characterized in that: The feeding and conveying platform (1) and the discharging and conveying platform (5) are respectively provided with mounting frames (6) on the outside, a lifting device (9) is provided on one side of the inside of the mounting frame (6), a horizontal transmission system (40) is installed in the middle of the lifting device (9), a battery assembly (10) is installed on the top of the lifting device (9), a driving system (39) is provided on the bottom of the lifting device (9), a power device (54) is provided on the middle side of the inside of the mounting frame (6), a loading device (8) is provided inside the mounting frame (6), a protective frame (11) is provided on the outside of the hot pressing section (2) of the laminating main machine, a laminating conveying device (13) is provided inside the protective frame (11), a power assembly (12) is installed on one side of the bottom of the laminating conveying device (13), and lifting assemblies (14) are respectively provided on the outside of the laminating conveying device (13); The driving system (39) is respectively installed on the inside of the feeding and conveying platform (1) and the discharging and conveying platform (5), and the driving system (39) includes a first motor (42) and a first transmission shaft (46). The output end of the first motor (42) is fixedly connected to the first sprocket (43), and the ends of the first transmission shaft (46) are respectively fixedly connected to the second sprocket (45) and the third sprocket (48). The first sprocket (43) is meshed and connected with the second sprocket (45) through the first chain (44). The outside of the third sprocket (48) is provided with a second chain (47), and the outside of the second chain (47) is fixedly connected to a connecting block. The outside of the power device (54) is installed on the inner side of the feeding and conveying platform (1) and the discharging and conveying platform (5), and the power device (54) includes a second motor (55) and a second transmission shaft (59). The output end of the second motor (55) is fixedly connected to the first driving sprocket (56), and the ends of the second motor (55) are respectively installed with a first driven sprocket (58) and a second driven sprocket (60). The first driving sprocket (56) is meshed with a third chain (57), and the first driving sprocket (56) is connected to one of the first driven sprockets (58) through the third chain (57). The outside of the second driven sprocket (60) is respectively meshed with a fourth chain (61), and the second driven sprocket (60) is connected to multiple sets of bearings (63) through the fourth chain (61). The outside of the fourth chain (61) is installed with a connecting fixed seat (62), and the inside of the mounting frame (6) is provided with a slide device (53).

2. A fully automatic and efficient multi-layer laminating machine according to claim 1, characterized in that: A counterweight system (41) is provided on the outside of the lifting device (9), a counterweight block (49) is installed inside the counterweight system (41), four connecting seats (50) are fixedly connected to the outside of the counterweight block (49), and rail wheels (51) are installed on the four connecting seats (50). A plurality of rail bodies (52) are installed on the outside of the mounting frame (6), and the rail wheels (51) are in rolling contact with the plurality of rail bodies (52).

3. The fully automatic and efficient multi-layer laminating machine according to claim 1, characterized in that: The lamination conveying device (13) includes a lamination heating mechanism (27), which is installed inside the lamination conveying device (13), an active roller mechanism (26) is installed at one end of the lamination heating mechanism (27), and a driven roller mechanism (30) is installed at the other end of the lamination heating mechanism (27), a guide rail mechanism (28) is installed outside the lamination heating mechanism (27), and the outside of the guide rail mechanism (28) is arranged on a vacuum pipeline mechanism (29).

4. The fully automatic and efficient multi-layer laminating machine according to claim 1, characterized in that: The bottom of the power assembly (12) is installed on the inner side of the hot pressing section (2) of the laminating main machine. The power assembly (12) includes a plurality of power systems (32). A jacking platform (31) is provided on the top of the plurality of power systems (32). A hole groove is opened in the middle of the jacking platform (31), and the hole groove is used to install a pad.

5. The fully automatic and efficient multi-layer laminating machine according to claim 1, characterized in that: The lifting assembly (14) includes a limit plate (33), the limit plate (33) is installed on the inner side of the hot pressing section (2) of the laminating main machine, a lower fixed seat (34) is installed at the bottom of the limit plate (33), an upper fixed seat (36) is installed at the top of the limit plate (33), a plurality of limit blocks (35) are installed on the left side of the limit plate (33), a plurality of second guide wheels (38) are installed on the right side of the limit plate (33), and a first guide wheel (37) is provided outside the second guide wheel (38).

6. The fully automatic and efficient multi-layer laminating machine according to claim 1, characterized in that: A hoisting part (7) is installed on the outer side of the feeding and conveying platform (1), and the right side of the feeding and conveying platform (1) is connected to the laminating main machine hot pressing section (2). A vacuum pipe device (15) is installed on the top of the two laminating main machine hot pressing sections (2). A transition platform (3) is provided at the end of the two laminating main machine hot pressing sections (2), and an electric control device (16) is installed on the outer side of the laminating main machine hot pressing section (2).

7. The fully automatic and efficient multi-layer laminating machine according to claim 6, characterized in that: A lifting drive device (18) is installed at the bottom of the transition material platform (3), a lifting active chain (19) is installed on the outside of the lifting drive device (18), a lifting driven chain (20) is installed at one end of the lifting active chain (19), a conveying mechanism (21) is provided on the inner side of the lifting driven chain (20), and a maintenance platform (22) is provided on the top of the conveying mechanism (21). A transition section frame (17) is installed on the top of the transition material platform (3).

8. The fully automatic and efficient multi-layer laminating machine according to claim 7, characterized in that: A laminating main machine cooling section (4) is installed on one side of one of the transition material tables (3), a first conveying device (23) and a dynamic upper cover pressing device (24) are installed inside the laminating main machine cooling section (4), and a plurality of lifting devices (25) are installed on the top of the protective frame (11).