A solar panel laminator
By working in concert with multiple coating mechanisms, the problem of time-consuming individual film grabbing in existing technologies has been solved, enabling efficient coating of multiple films on solar panels and improving production efficiency.
Patent Information
- Application Number
- CN202310601966.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-05-25
- Publication Date
- 2026-02-06
- Estimated Expiration
- 2043-05-25
AI Technical Summary
Existing solar panel coating machines have a long time-consuming process of picking up multiple films one by one when multiple films need to be placed, resulting in low coating efficiency.
Multiple film-coating mechanisms are employed, including a material conveying mechanism, a film conveying mechanism, a material gripping assembly, and an installation assembly. Through coordinated work, multiple films can be gripped and fixed simultaneously. Multiple drive components and moving plate assemblies are used to adjust the position for efficient film gripping and installation.
It improves the efficiency of solar panel coating, enabling the simultaneous gripping and fixing of multiple films, reducing operation time and increasing production efficiency.
Smart Images

Figure CN116573214B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of solar panel film coating equipment, and particularly relates to a solar panel film coating machine. BACKGROUND
[0002] A solar panel is an assembly of a plurality of solar cell pieces combined together, which can generate electricity through a photovoltaic effect. After the solar panel is produced, a plurality of sheet-shaped adhesive films are coated on the solar panel, so as to protect the structure of the solar panel and improve the performance of the solar panel.
[0003] At present, a solar panel film coating machine is disclosed in the related art, which comprises a workbench, a film grabbing assembly arranged on the workbench, and a placing area for placing adhesive films arranged on the workbench. A plurality of adhesive films can be placed in the placing area, and a solar panel can be placed on the workbench. The film grabbing assembly can grab the adhesive films one by one and place them on the specified positions of the solar panel in sequence for installation.
[0004] According to the related scheme in the above, the present application believes that the following defects exist: when the number of adhesive films to be placed on the solar panel is large, the process of driving the film grabbing assembly to grab the adhesive films one by one and place them is time-consuming, thereby resulting in low efficiency of coating the solar panel with the adhesive films. SUMMARY
[0005] In order to improve the efficiency of coating the solar panel with the adhesive films, the present application provides a solar panel film coating machine.
[0006] The solar panel film coating machine provided by the present application adopts the following technical scheme:
[0007] The solar panel film coating machine comprises a workbench, a material conveying mechanism for conveying the solar panel arranged on the workbench, a film conveying mechanism for conveying a plurality of adhesive films arranged on the workbench, and a plurality of film coating mechanisms arranged on the workbench.
[0008] Each of the film coating mechanisms comprises a material grabbing assembly and an installation assembly. The material grabbing assembly is arranged on the workbench, and the installation assembly is arranged on the material grabbing assembly. The material grabbing assembly is used for grabbing the adhesive films and placing them on the specified positions of the solar panel. The installation assembly is used for fixing the adhesive films on the solar panel.
[0009] By adopting the above technical scheme, the solar panel is first conveyed to the specified position by the material conveying mechanism. Then, a plurality of adhesive films are placed on each of the film conveying mechanisms. Then, the plurality of film conveying mechanisms are driven to convey the plurality of adhesive films to the positions to be grabbed by the plurality of material grabbing assemblies. Then, the plurality of material grabbing assemblies are driven to grab the adhesive films and place them on the specified positions of the solar panel. Then, the plurality of installation assemblies are driven to fix the plurality of adhesive films on the solar panel. The plurality of film coating mechanisms work simultaneously, thereby accelerating the coating efficiency of the solar panel.
[0010] Preferably, the film conveying mechanism comprises a first driving member arranged on the workbench, a mounting frame is arranged on the first driving member, and the first driving member is used to drive the mounting frame to reciprocate.
[0011] A second driving member is arranged on the mounting frame, a first moving plate group is arranged on the output end of the second driving member, and the second driving member is used to drive the first moving plate group to move away from the fixed plate group; a third driving member is arranged on the mounting frame, a second moving plate group is arranged on the output end of the third driving member, and the third driving member is also used to drive the second moving plate group to move away from the fixed plate group; the fixed plate group, the first moving plate group and the second moving plate group are all used to place the adhesive film.
[0012] By adopting the above technical scheme, the first driving member can be driven to adjust the position of the mounting frame, so as to adjust the positions of the fixed plate group, the first moving plate group and the second moving plate group, so as to facilitate feeding, then the first moving plate group can be moved by driving the second driving member, and the second moving plate group can be moved by driving the third driving member, and this design can make the distance between the fixed plate group, the first moving plate group and the second moving plate group increase, so as to facilitate the grabbing of the adhesive film by the plurality of grabbing assemblies.
[0013] Preferably, the first driving member can drive the mounting frame to reach the central position of the workbench, and the first moving plate group and the second moving plate group are arranged on the two sides of the fixed plate group.
[0014] By adopting the above technical scheme, driving the first driving member can also make the fixed plate group, the first moving plate group and the second moving plate group move to the central position of the workbench, at this time, the second driving member and the third driving member are started at the same time, and the first moving plate group and the second moving plate group can move away from the fixed plate group at the same time, and this design can make the first moving plate group and the second moving plate group quickly reach the specified position.
[0015] Preferably, a plurality of fixing rods are arranged on the fixed plate group, the first moving plate group and the second moving plate group, and each fixing rod is used to limit the position of the adhesive film.
[0016] By adopting the above technical scheme, the fixing rod can fix the placed adhesive film, so as to prevent the adhesive film from falling off during the movement of the fixed plate group, the first moving plate group and the second moving plate group.
[0017] Preferably, a sliding block is arranged on each fixing rod, a plurality of sliding grooves are correspondingly formed on the fixed plate group, the first moving plate group and the second moving plate group, each sliding block is clamped in the corresponding sliding groove, and each fixing rod is slidable.
[0018] By adopting the technical scheme, the position of the fixed rod can be adjusted to adjust the placement position of the adhesive film, thereby facilitating subsequent grabbing of the grabbing assembly.
[0019] Preferably, the grabbing assembly comprises a first driving member arranged on the workbench, the first driving member is provided with a first fixing frame, and the first driving member is used to drive the first fixing frame to move transversely; the first fixing frame is provided with a second driving member, the second driving member is provided with a plurality of second fixing frames, and the second driving member is also used to drive the plurality of second fixing frames to move transversely; each second fixing frame is provided with a third driving member, the output end of the third driving member is provided with a third fixing frame, the third fixing frame is provided with a plurality of grabbing members, and the third driving member is used to drive the third fixing frame to move vertically.
[0020] By adopting the technical scheme, the first driving member and the second driving member can drive the plurality of grabbing members to move transversely, and the third driving member can drive the third fixing frame to move vertically, thereby driving the plurality of grabbing members to move vertically.
[0021] Preferably, the mounting assembly comprises a driving rotating member, the driving rotating member is arranged on the second fixing frame, the output end of the driving rotating member is provided with a mounting member used for fixing the adhesive film on the solar panel, and the driving rotating member is used to drive the mounting member to move vertically.
[0022] By adopting the technical scheme, the driving rotating member can drive the second fixing frame to move vertically, thereby driving the mounting member to move vertically, and then the mounting member can fix the adhesive film on the solar panel.
[0023] Preferably, the second fixing frame is further provided with a spring, one end of the spring away from the mounting member is provided with a pressing block, and the pressing block is provided with a through hole.
[0024] By adopting the technical scheme, when the mounting member moves downward, the pressing block will first contact the adhesive film and press the adhesive film tightly, then the spring will be compressed, and then the mounting member can contact the adhesive film and fix the adhesive film on the solar panel, and this design can prevent the adhesive film from moving when the mounting member fixes the adhesive film on the solar panel.
[0025] Preferably, the material conveying mechanism comprises a plate frame arranged on the workbench, the plate frame is provided with a plurality of reciprocating driving assemblies, one end of the workbench forms a feeding area, the other end of the workbench forms a discharging area, and the plurality of reciprocating driving assemblies are used to place the solar panel and can convey the solar panel from the feeding area to the discharging area.
[0026] By adopting the technical scheme, the solar panels can be placed on the reciprocating driving assemblies in the feeding area, and then the solar panels can be conveyed to the designated positions to be coated and to the discharging area to be discharged by driving the reciprocating driving assemblies.
[0027] Preferably, the plate frame is further provided with a jacking member, which is used to jack up the solar panels.
[0028] By adopting the technical scheme, the jacking member can jack up the solar panels placed on the reciprocating driving assemblies, thereby facilitating the discharging of the solar panels.
[0029] In summary, the present application has at least one of the following beneficial technical effects:
[0030] 1. First, the solar panels need to be conveyed to the designated positions by the material conveying mechanism, then a plurality of adhesive films are placed on each film conveying mechanism, and then the adhesive films are conveyed to the positions to be grabbed by the plurality of grabbing assemblies by driving the plurality of film conveying mechanisms, and then the adhesive films are placed on the designated positions of the solar panels by driving the plurality of grabbing assemblies, and then the plurality of adhesive films are fixed on the solar panels by driving the plurality of installing assemblies, and the plurality of film coating mechanisms work simultaneously to accelerate the film coating efficiency of the solar panels.
[0031] 2. The first driving member can be driven to adjust the position of the mounting frame, thereby adjusting the positions of the fixed plate group, the first moving plate group and the second moving plate group to facilitate feeding, and the first driving member can also be driven to move the fixed plate group, the first moving plate group and the second moving plate group to the central position of the workbench, and then the first moving plate group is moved by driving the second driving member, and the second moving plate group is moved by driving the third driving member, so that the first moving plate group and the second moving plate group move away from the fixed plate group at the same time, and the distance between the fixed plate group, the first moving plate group and the second moving plate group is increased, thereby facilitating the grabbing of the adhesive films by the plurality of grabbing assemblies. BRIEF DESCRIPTION OF DRAWINGS
[0032] Figure 1 is a schematic view of the overall structure of a solar panel film coating machine in the embodiment of the present application;
[0033] Figure 2 is a top view of a solar panel film coating machine in the embodiment of the present application;
[0034] Figure 3 is a schematic view of the structure for embodying the material conveying mechanism;
[0035] Figure 4 is a schematic view of the structure for embodying the film conveying mechanism;
[0036] Figure 5 is Figure 4 is an enlarged view of part A in FIG. 8;
[0037] Figure 6 is a structural schematic diagram for embodying the film covering mechanism;
[0038] Figure 7 is Figure 2 is an enlarged view of part B in figure 1;
[0039] Figure 8 is Figure 6 is an enlarged view of part C in figure 1.
[0040] In the drawings, 1 is a workbench, 11 is a feeding area, 12 is a discharging area, 2 is a material conveying mechanism, 21 is a plate frame, 22 is a reciprocating driving assembly, 23 is a jacking piece, 3 is a film conveying mechanism, 31 is a first driving piece, 32 is a mounting frame, 33 is a fixed plate set, 34 is a second driving piece, 35 is a first moving plate set, 36 is a third driving piece, 37 is a second moving plate set, 38 is a fixed rod, 381 is a sliding block, 382 is a sliding groove, 4 is a film covering mechanism, 41 is a material grabbing assembly, 411 is a first actuating piece, 412 is a first fixed frame, 413 is a second actuating piece, 414 is a second fixed frame, 415 is a third actuating piece, 416 is a third fixed frame, 417 is a grabbing piece, 42 is a mounting assembly, 421 is a driving rotating piece, 422 is a mounting piece, 423 is a spring, 424 is a pressing block, 4241 is a through hole. DETAILED DESCRIPTION
[0041] The application will be further described below in conjunction with the drawings.
[0042] In the description of the application, it should be understood that the orientation description, such as the orientation or position relationship indicated by up, down, front, back, left, right, etc., is based on the orientation or position relationship shown in the drawings, and is only for the convenience of describing the application and simplifying the description, and therefore cannot be understood as a limitation on the application.
[0043] The application embodiment discloses a solar panel film covering machine. The solar panel film covering machine is used for placing and mounting a plurality of adhesive films on a solar panel at the same time, thereby improving the efficiency of covering the solar panel with the adhesive films. In the application embodiment, three adhesive films are fixed on the solar panel as an example. Figure 1 and Figure 2 The solar panel film covering machine comprises a workbench 1. One end of the workbench 1 is formed with a feeding area 11, and the other end of the workbench 1 is formed with a discharging area 12. The workbench 1 is further provided with a material conveying mechanism 2 and a film conveying mechanism 3. The workbench 1 is further provided with three film covering mechanisms 4 for grabbing and fixing the adhesive films. The material conveying mechanism 2 can receive the solar panel from the feeding area 11 and convey the solar panel to the central position of the workbench 1. The film conveying mechanism 3 can also receive a plurality of adhesive films from the feeding area 11 and convey the adhesive films to the specified positions to be grabbed by the three film covering mechanisms 4.
[0044] Firstly, the solar panel needs to be placed on the material conveying mechanism 2 in the feeding area 11, and three groups of adhesive films are placed on the film conveying mechanism 3, then the material conveying mechanism 2 is driven to convey the solar panel to the central position of the workbench 1, and the film conveying mechanism 3 is driven to convey the three groups of adhesive films to the specified position grabbed by the film covering mechanism 4, then the three film covering mechanisms 4 are simultaneously driven to grab the three adhesive films and fix them on the solar panel.
[0045] The following structural description is performed in the above action sequence:
[0046] With reference to Figure 3 The material conveying mechanism 2 comprises a panel frame 21, in combination with Figure 2 The panel frame 21 is arranged on the workbench 1, and a plurality of reciprocating driving assemblies 22 are arranged on the panel frame 21, the reciprocating driving assemblies 22 are belt conveying assemblies in the embodiment of the application, the plurality of reciprocating driving assemblies 22 are used for placing the solar panel and conveying the solar panel from the feeding area 11 to the feeding area 11, and a plurality of jacking members 23 are further arranged on the panel frame 21, the jacking members 23 are jacking cylinders in the embodiment of the application, after the solar panel is placed on the plurality of reciprocating driving assemblies 22, the plurality of jacking members 23 can be driven to jack up the solar panel, so as to facilitate unloading of the solar panel.
[0047] Firstly, the solar panel needs to be placed on the plurality of reciprocating driving assemblies 22 in the feeding area 11, then the plurality of reciprocating driving assemblies 22 are driven to convey the solar panel to the central position of the workbench 1 to be covered with the film, after the film covering is completed, the plurality of reciprocating driving assemblies 22 are driven again to convey the solar panel to the discharging area 12, at this time, the plurality of jacking members 23 are driven to jack up the solar panel, so as to facilitate unloading.
[0048] With reference to Figure 4 The film conveying mechanism 3 comprises a first driving member 31, in combination with Figure 1The first driving member 31 is arranged on the workbench 1, and the first driving member 31 is a belt conveying member in the embodiment of the application. The first driving member 31 is provided with a mounting frame 32, and the first driving member 31 is used to drive the mounting frame 32 to reciprocate between the feeding area 11 and the discharging area 12. The mounting frame 32 is provided with a fixed plate group 33. The mounting frame 32 is also provided with a second driving member 34, which is a pneumatic cylinder in the embodiment of the application. The output end of the second driving member 34 is provided with a first moving plate group 35, which is located on the left side of the fixed plate group 33. The second driving member 34 is used to drive the first moving plate group 35 to move away from the fixed plate group 33. The mounting frame 32 is also provided with a third driving member 36. The output end of the third driving member 36 is provided with a second moving plate group 37, which is located on the right side of the fixed plate group 33. The third driving member 36 is also used to drive the second moving plate group 37 to move away from the fixed plate group 33. The first driving member 31 can drive the mounting frame 32 to reach the central position of the workbench 1. The fixed plate group 33, the first moving plate group 35 and the second moving plate group 37 are used to place the adhesive films.
[0049] When it is needed to place several adhesive films on the fixed plate group 33, the first moving plate group 35 and the second moving plate group 37, the first driving member 31 is first driven to move the fixed plate group 33, the first moving plate group 35 and the second moving plate group 37 into the feeding area 11. At this time, the spacing between the fixed plate group 33, the first moving plate group 35 and the second moving plate group 37 is small. Then, after the fixed plate group 33, the first moving plate group 35 and the second moving plate group 37 are placed with several adhesive films, the first driving member 31 is driven to move the fixed plate group 33, the first moving plate group 35 and the second moving plate group 37 to the central position of the workbench 1. Then, the second driving member 34 and the third driving member 36 are simultaneously started, so that the first moving plate group 35 and the second moving plate group 37 simultaneously move away from the fixed plate group 33. Specifically, the positions to which the first moving plate group 35 and the second moving plate group 37 need to move are determined according to the positions on the solar panel that need to be covered with the adhesive films, that is, the adhesive films need to be as close as possible to the positions on the solar panel that need to be covered. This design is to facilitate the subsequent simultaneous grabbing of the three adhesive films by the three film covering mechanisms 4 without mutual interference.
[0050] Referring to Figure 4 and Figure 5 , in order to limit the position of the adhesive film and prevent the adhesive film from falling off when the first driving member 31 drives the several adhesive films to move, the fixed plate group 33, the first moving plate group 35 and the second moving plate group 37 are each provided with a plurality of fixed rods 38. Each fixed rod 38 is provided with a sliding block 381. The fixed plate group 33, the first moving plate group 35 and the second moving plate group 37 are each provided with a plurality of sliding grooves 382 corresponding to the sliding blocks 381. Each sliding block 381 is clamped in the corresponding sliding groove 382. Each fixed rod 38 is slidable.
[0051] Firstly, a plurality of fixed holes are needed to be opened on the adhesive film, and then the fixed rod 38 is needed to be inserted into the fixed hole when the adhesive film is fed, at which time the position of the adhesive film can be limited; if the position of the adhesive film is deviated, the adhesive film can also be moved by moving the fixed rod 38.
[0052] With reference to Figure 6 Each film covering mechanism 4 comprises a grabbing assembly 41 and a mounting assembly 42, the grabbing assembly 41 is arranged on the workbench 1, and the mounting assembly 42 is arranged on the grabbing assembly 41, the grabbing assembly 41 is used for grabbing the adhesive film and placing it on the designated position of the solar panel, and the mounting assembly 42 is used for fixing the adhesive film on the solar panel.
[0053] With reference to Figure 6 And Figure 7 , specifically, the grabbing assembly 41 comprises a first actuator 411 arranged on the workbench 1, the first actuator 411 is a gear and rack transmission member, a first fixed frame 412 is arranged on the first actuator 411, the first actuator 411 is used for driving the first fixed frame 412 to do horizontal reciprocating motion, and the movement direction of the first fixed frame 412 is a first direction; a second actuator 413 is arranged on the first fixed frame 412, the second actuator 413 is also a gear and rack transmission member, a plurality of second fixed frames 414 are arranged on the second actuator 413, the second actuator 413 is used for driving the plurality of second fixed frames 414 to do horizontal reciprocating motion, the movement direction of the second fixed frame 414 is a second direction, and the first direction is perpendicular to the second direction; a third actuator 415 is arranged on each second fixed frame 414, the third actuator 415 is an electric cylinder, a third fixed frame 416 is arranged on the output end of the third actuator 415, a plurality of grabbing members 417 are arranged on the third fixed frame 416, the grabbing members 417 are suction cups, and the third actuator 415 is used for driving the third fixed frame 416 to do reciprocating motion in the vertical direction.
[0054] With reference to Figure 6 And Figure 8 , specifically, the mounting assembly 42 comprises a driving member 421, the driving member 421 is an electric cylinder, the driving member 421 is arranged on the second fixed frame 414, an installation member 422 for fixing the adhesive film on the solar panel is arranged on the output end of the driving member 421, the installation member 422 is a spot welding head, and the driving member 421 is used for driving the installation member 422 to do reciprocating motion in the vertical direction. A spring 423 is further arranged on the second fixed frame 414, a pressing block 424 is arranged on the end of the spring 423 away from the installation member 422, and a through hole 4241 is opened on the pressing block 424.
[0055] After the solar panel and the film are both moved, first, the first, second and third driving members 411, 413 and 415 are combined to drive the grabbing member 417 to grab the film and place it on the solar panel, then the driving rotating member 421 is driven to drive the mounting member 422 to move downward, when the mounting member 422 moves downward, the pressing block 424 will first contact the film and press the film, then the spring 423 will be compressed, and then the mounting member 422 can contact the film and fix the film on the solar panel.
[0056] The implementation principle of the solar panel film coating machine in the embodiment of the application is as follows:
[0057] First, the solar panel needs to be placed on the plurality of reciprocating driving assemblies 22 in the feeding area 11, then the plurality of reciprocating driving assemblies 22 are driven to convey the solar panel to the central position of the workbench 1.
[0058] Then, the first driving member 31 is driven to move the fixed plate group 33, the first moving plate group 35 and the second moving plate group 37 to the feeding area 11, then after a plurality of films are placed on the fixed plate group 33, the first moving plate group 35 and the second moving plate group 37, the first driving member 31 is driven to move the fixed plate group 33, the first moving plate group 35 and the second moving plate group 37 to the central position of the workbench 1, then the second driving member 34 and the third driving member 36 are simultaneously started, so that the first moving plate group 35 and the second moving plate group 37 move away from the fixed plate group 33.
[0059] Then, after the solar panel and the film are both moved, first, the first, second and third driving members 411, 413 and 415 are combined to drive the grabbing member 417 to grab the film and place it on the solar panel, then the driving rotating member 421 is driven to drive the mounting member 422 to move downward, when the mounting member 422 moves downward, the pressing block 424 will first contact the film and press the film, then the spring 423 will be compressed, and then the mounting member 422 can contact the film and fix the film on the solar panel;
[0060] After the film coating is completed, the plurality of reciprocating driving assemblies 22 are driven again to convey the solar panel to the discharging area 12, at this time, the plurality of jacking members 23 are driven to jack up the solar panel to discharge.
[0061] The embodiments of the specific embodiment are the preferred embodiments of the application, but do not limit the protection scope of the application, so that: any equivalent changes made according to the structure, shape, principle of the application should be covered within the protection scope of the application.
Claims
1. A solar panel lamination machine characterized by: The utility model provides a solar panel film covering device, which comprises a workbench (1), a material conveying mechanism (2) for conveying solar panels and a film conveying mechanism (3) for conveying a plurality of films are arranged on the workbench (1), and a plurality of film covering mechanisms (4) are further arranged on the workbench (1); Each film covering mechanism (4) comprises a material grabbing assembly (41) and a mounting assembly (42), the material grabbing assembly (41) is arranged on the workbench (1), the mounting assembly (42) is arranged on the material grabbing assembly (41), the material grabbing assembly (41) is used for grabbing the film and placing the film on a designated position of the solar panel, and the mounting assembly (42) is used for fixing the film on the solar panel; The film conveying mechanism (3) comprises a first driving member (31) arranged on the workbench (1), a mounting frame (32) is arranged on the first driving member (31), and the first driving member (31) is used for driving the mounting frame (32) to reciprocate. A fixed plate group (33) is arranged on the mounting frame (32), a second driving member (34) is further arranged on the mounting frame (32), a first moving plate group (35) is arranged on an output end of the second driving member (34), the second driving member (34) is used for driving the first moving plate group (35) to move away from the fixed plate group (33), a third driving member (36) is further arranged on the mounting frame (32), a second moving plate group (37) is arranged on an output end of the third driving member (36), the third driving member (36) is also used for driving the second moving plate group (37) to move away from the fixed plate group (33), and the fixed plate group (33), the first moving plate group (35) and the second moving plate group (37) are used for placing the film.
2. The solar panel lamination machine of claim 1, wherein: The first driving member (31) can drive the mounting frame (32) to reach a central position of the workbench (1), and the first moving plate group (35) and the second moving plate group (37) are arranged on two sides of the fixed plate group (33) respectively.
3. The solar panel lamination machine of claim 1, wherein: A plurality of fixed rods (38) are arranged on the fixed plate group (33), the first moving plate group (35) and the second moving plate group (37), and each fixed rod (38) is used for limiting the position of the film.
4. The solar panel lamination machine of claim 3, wherein: A sliding block (381) is arranged on each fixed rod (38), a plurality of sliding grooves (382) are formed in the fixed plate group (33), the first moving plate group (35) and the second moving plate group (37) correspondingly, each sliding block (381) is clamped in the corresponding sliding groove (382), and each fixed rod (38) is slidable.
5. The solar panel lamination machine of claim 1, wherein: The grabbing assembly (41) comprises a first driving member (411) arranged on the workbench (1), a first fixing frame (412) is arranged on the first driving member (411), and the first driving member (411) is used for driving the first fixing frame (412) to move transversely and reciprocally; a second driving member (413) is arranged on the first fixing frame (412), a plurality of second fixing frames (414) are arranged on the second driving member (413), and the second driving member (413) is also used for driving the plurality of second fixing frames (414) to move transversely and reciprocally; a third driving member (415) is arranged on each of the second fixing frames (414), a third fixing frame (416) is arranged on the output end of the third driving member (415), a plurality of grabbing members (417) are arranged on the third fixing frame (416), and the third driving member (415) is used for driving the third fixing frame (416) to move reciprocally in the vertical direction.
6. The solar panel lamination machine of claim 5, wherein: The mounting assembly (42) comprises a driving rotating member (421), the driving rotating member (421) is arranged on the second fixing frame (414), a mounting member (422) for fixing the adhesive film on the solar panel is arranged on the output end of the driving rotating member (421), and the driving rotating member (421) is used for driving the mounting member (422) to move reciprocally in the vertical direction.
7. The solar panel lamination machine of claim 6, wherein: The second fixing frame (414) is further provided with a spring (423), a pressing block (424) is arranged at the end of the spring (423) away from the mounting member (422), and a through hole (4241) is formed in the pressing block (424).
8. The solar panel lamination machine of claim 1, wherein: The material conveying mechanism (2) comprises a plate frame (21) arranged on the workbench (1), a plurality of reciprocating driving assemblies (22) are arranged on the plate frame (21), one end of the workbench (1) forms a feeding area (11), the other end of the workbench (1) forms a discharging area (12), and the plurality of reciprocating driving assemblies (22) are used for placing the solar panel and conveying the solar panel from the feeding area (11) to the discharging area (12).
9. The solar panel lamination machine of claim 8, wherein: The plate frame (21) is further provided with a jacking member (23), and the jacking member (23) is used for jacking up the solar panel.
Citation Information
Patent Citations
Full-automatic laminator
CN112389725A