Flexible assembly turnover machine
The flexible component flipping machine addresses the issue of imprecise handling by using adjustable positioning and fixation mechanisms, ensuring accurate and efficient flipping and handling of components of varying sizes.
Patent Information
- Application Number
- CN202422424718.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-09
- Publication Date
- 2025-07-15
- Estimated Expiration
- 2034-10-09
AI Technical Summary
The existing flip machine has a simple structure and cannot effectively position the flexible components, resulting in flip deviation and cannot adapt to flexible components of different sizes, reducing the flip effect.
The combined design of suction profile assembly, connecting frame, mounting seat, first gear, second motor, chain, second gear assembly, first slide rail, first sliding seat, first sprocket, third motor and second sprocket is adopted to achieve accurate adsorption and flip of the flexible component through sliding connection and gear meshing; combined with the feed rack, first motor, pulley assembly, loading belt, installation groove, slider, adjustment screw, second slide rail, second sliding seat and limit roller, the conveying and positioning of the flexible component is achieved; using frames, connecting blocks, long sponge suction cups, connecting clips and connecting bolts, the size of the suction profile assembly is adjusted to adapt to components of different sizes.
It realizes the precise flipping and conveying of flexible components, adapts to flexible components of different sizes, and improves the positioning accuracy and flipping effect of the flipping machine.
Smart Images

Figure CN223102045U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of flexible component processing, and specifically relates to a flexible component turnover machine. Background Technique
[0002] A flexible component is a new type of photovoltaic component with lighter weight, thinner thickness and better flexibility. The flexible component adopts new materials, which greatly reduces the weight of the component. At the same time, it can be easily bent and folded, and can be cut into different sizes and shapes according to needs, and directly pasted on light-load and curved roofs without brackets or other installation systems, greatly reducing the installation cost and time; it has good weather resistance and ultraviolet resistance, and can maintain stable performance in harsh environments, thus extending the service life and adapting to various complex shapes and installation environments. In order to better meet the installation of photovoltaic components in different positions, flexible photovoltaic components have emerged, which are convenient for processing and production. When processing flexible photovoltaic components, double-sided processing is required, and a turnover machine is needed to turn over the flexible components.
[0003] After retrieval, in the prior art, the publication number CN217626289U discloses a flexible photovoltaic component turnover machine, which relates to the technical field of photovoltaic components and aims to solve the problems that in the existing processing, the work of turning it over is mainly carried out by manual or ordinary robotic arms, which is easy to damage the processed products during the work, and the processing and production speed is relatively slow. The key points of its technical solution are that the turnover mechanism is movably installed on the adjustment slide rail, a transfer mechanism is arranged at the lower end of the turnover mechanism, the turnover mechanism includes a rotating arm and a grasping bracket, the grasping bracket is fixedly installed on the rotating arm, an adjustment roller and a positioning bracket are arranged on the grasping bracket, and a grasping suction cup is movably installed at the lower end of the positioning bracket. It achieves the effect of better grasping the processed products and better discharging after turning over, which is convenient for subsequent processing and production.
[0004] However, the following defects still exist in this device and the prior art:
[0005] The existing turnover machine has a simple structure and can simply turn over the flexible components. The turnover machine does not position the flexible components to be turned over, which will cause deviations in the turned-over flexible components. The fixed structure of the flexible components cannot be adjusted, which is inconvenient for turning over flexible components of different sizes and reduces the turnover effect of the flexible components. Content of the Utility Model
[0006] The purpose of the utility model is to provide a flexible component turnover machine.
[0007] To achieve the above purpose, the utility model provides the following technical solutions:
[0008] A flexible component flipping machine includes a machine base and a flexible component. A storage rack body is arranged on one side of the machine base. Fixed seats are arranged below both the machine base and the storage rack body, and the fixed seats are connected to the machine base and the storage rack body by screws. An installation seat is arranged on one side of the machine base, and the installation seat is arranged above the storage rack body. Two first sliding rails are arranged on one side of the machine base, and the first sliding rails are fixedly connected to the machine base. Two first sliding seats are arranged on the back of the installation seat, and the first sliding seats are fixedly connected to the installation seat. The first sliding seats are slidably connected to the first sliding rails. A connecting frame is arranged on one side of the installation seat. A first gear is arranged at one end of the connecting frame, and the first gear is fixedly connected to the connecting frame. The first gear is rotatably connected to the installation seat. A second motor is arranged on one side of the installation seat, and the second motor is connected to the installation seat by screws. A second gear assembly is arranged on one side of the first gear, and the second gear assembly is meshed and connected to the first gear. The second gear assembly is connected to the output end of the second motor. A suction profile component is arranged below the connecting frame, and the suction profile component is connected to the connecting frame by screws.
[0009] By adopting the above technical solution, the flexible component is placed flat on the storage rack body. The installation seat and the machine base are slidably connected through the first sliding rails and the first sliding seats. The installation seat is lowered along the first sliding rails, and the suction profile component contacts the flexible component. The flexible component is adsorbed and fixed by the suction profile component. Then the installation seat is raised along the first sliding rails, and the second motor is started to drive the second gear assembly to rotate. The second gear assembly is meshed and connected to the first gear. As the second gear assembly rotates, the connecting frame is driven to rotate, realizing the flipping of the flexible component.
[0010] Furthermore, a third motor is arranged at the bottom of the machine base, and the third motor is connected to the machine base by screws. A second sprocket is arranged on one side of the third motor, and the second sprocket is connected to the output end of the third motor. A first sprocket is arranged at the top of the machine base, and the first sprocket is rotatably connected to the machine base. A chain is arranged between the first sprocket and the second sprocket, and the chain is in transmission connection with the first sprocket and the second sprocket. The chain is fixedly connected to the installation seat.
[0011] By adopting the above technical solution, the third motor drives the second sprocket to rotate. The second sprocket and the first sprocket are in transmission connection through the chain. As the second sprocket rotates, the chain is driven to run. As the chain moves, the installation seat is driven to move up and down along the first sliding rails, changing the height of the suction profile component.
[0012] Furthermore, a loading rack is arranged above the storage rack body. There are four loading racks, and the loading racks are fixedly connected to the storage rack body. The four loading racks are equidistantly arranged above the storage rack body. Belt wheel assemblies are arranged at both ends of the four loading racks, and the belt wheel assemblies are rotatably connected to the loading racks. A loading belt is arranged between the two belt wheel assemblies, and the loading belt is drivingly connected to the belt wheel assemblies. A first motor is arranged on one side of the loading rack, and the first motor is connected to the loading rack by screws. A drive shaft is arranged between the output end of the first motor and the belt wheel assembly.
[0013] By adopting the above technical solution, the first motor drives one belt wheel assembly to rotate. The four belt wheel assemblies at one end are drivingly connected through the drive shaft. As the belt wheel assemblies rotate, the loading belt is driven to move. The flexible component is placed flat on the loading belt, and the flexible component is conveyed by means of the loading belt, and the flexible component is finely adjusted.
[0014] Furthermore, second slide rails are arranged above both sides of the storage rack body. There are two second slide rails, and the second slide rails are fixedly connected to the storage rack body. Second sliding seats are arranged above the two second slide rails, and the second sliding seats are slidably connected to the second slide rails. A connecting plate is arranged above the second sliding seats, and the connecting plate is fixedly connected to the second sliding seats. Limiting rollers are arranged above both ends of the connecting plate, and the limiting rollers are rotatably connected to the connecting plate.
[0015] By adopting the above technical solution, the second sliding seat slides along the second slide rail to adjust the distance between the two second sliding seats. The limiting rollers are brought into contact with both ends of the flexible component to position the flexible component, ensuring that the suction profile component accurately adsorbs and fixes the flexible component.
[0016] Furthermore, installation grooves are arranged at the centers of one ends of the four loading racks, and the installation grooves are arranged in a long strip shape. Sliders are arranged inside the installation grooves, and the sliders are slidably connected to the loading racks. The sliders are rotatably connected to the belt wheel assemblies. Adjusting screws are arranged inside the installation grooves, and the adjusting screws are threadedly connected through the sliders.
[0017] By adopting the above technical solution, rotating the adjusting screw drives the slider to slide along the installation groove to adjust the distance between the two belt wheel assemblies on one loading rack, thereby adjusting the tension of the loading belt and better conveying the flexible component.
[0018] Further, the material suction profile assembly includes a frame, a connecting block, a strip-shaped sponge suction cup, a connecting clip and a connecting bolt. The strip-shaped sponge suction cup is arranged below the frame. There are at least four strip-shaped sponge suction cups, and the strip-shaped sponge suction cups are equidistantly arranged below the frame. A connecting clip is arranged above the strip-shaped sponge suction cup, and the connecting clip is connected to the strip-shaped sponge suction cup by screws. A connecting block is arranged above the frame, and the connecting block is slidably connected to the frame. A connecting bolt is arranged between the connecting block and the connecting clip, and one end of the connecting bolt is rotatably connected to the connecting clip. The connecting bolt is threadedly connected through the connecting block.
[0019] By adopting the above technical solution, the connecting block, the connecting clip and the connecting bolt fix the strip-shaped sponge suction cup. The connecting block is slidably connected to the frame. By sliding the connecting block, the installation position of the strip-shaped sponge suction cup can be changed, and the size of the material suction profile assembly can be adjusted to meet the suction effect of flexible components of different sizes.
[0020] In summary, the beneficial technical effects of the present utility model are as follows:
[0021] 1. The material suction profile assembly, the connecting frame, the mounting seat, the first gear, the second motor, the chain, the second gear assembly, the first slide rail, the first sliding seat, the first sprocket, the third motor and the second sprocket are adopted. The mounting seat is slidably connected to the machine base through the first slide rail and the first sliding seat. The third motor drives the second sprocket to rotate. The second sprocket and the first sprocket are connected by chain drive. As the second sprocket rotates, the chain runs. As the chain moves, the mounting seat moves up and down along the first slide rail, changing the height of the material suction profile assembly. Lower the mounting seat along the first slide rail, and the material suction profile assembly contacts the flexible component. The flexible component is adsorbed and fixed by the material suction profile assembly. The second motor drives the second gear assembly to rotate. The second gear assembly is meshed with the first gear. As the second gear assembly rotates, the connecting frame rotates, realizing the flipping of the flexible component.
[0022] 2. The loading rack, the first motor, the pulley assembly, the loading belt, the installation groove, the slider, the adjusting screw, the second slide rail, the second sliding seat, the connecting plate and the limiting roller are adopted. The first motor drives one pulley assembly to rotate. The four pulley assemblies at one end are connected by a drive shaft. As the pulley assembly rotates, the loading belt moves. Place the flexible component flat on the loading belt. The flexible component is conveyed by means of the loading belt. Fine-tune the flexible component. Rotate the adjusting screw to drive the slider to slide along the installation groove, adjusting the distance between the two pulley assemblies on one loading rack, thereby adjusting the tension of the loading belt, better conveying the flexible component. The second sliding seat slides along the second slide rail, adjusting the distance between the two second sliding seats. Contact the limiting roller with both ends of the flexible component to position the flexible component, ensuring that the material suction profile assembly accurately adsorbs and fixes the flexible component.
[0023] 3. A frame, connecting blocks, long strip-shaped sponge suction cups, connecting clips and connecting bolts are adopted. The connecting blocks, connecting clips and connecting bolts fix the long strip-shaped sponge suction cups. The connecting blocks are slidably connected to the frame. By sliding the connecting blocks, the installation position of the long strip-shaped sponge suction cups can be changed, and the size of the material suction profile assembly can be adjusted to meet the suction effects of flexible components of different sizes. Description of the Drawings
[0024] The drawings are used to provide a further understanding of the present invention and constitute a part of the specification, but do not constitute a limitation to the present invention. In the drawings:
[0025] Figure 1 is a schematic diagram of the overall structure of the present utility model;
[0026] Figure 2 is the present utility Figure 1 partial enlarged view of Area A;
[0027] Figure 3 is the connection structure diagram of the third motor and the machine base of the present utility model;
[0028] Figure 4 is the connection structure diagram of the limiting roller and the storage rack body of the present utility model;
[0029] Figure 5 is the present utility Figure 1 partial enlarged view of Area B.
[0030] In the figures, 1. Machine base; 2. Fixed seat; 3. Storage rack body; 4. Loading rack; 5. First motor; 6. Belt pulley assembly; 7. Loading belt; 8. Flexible component; 9. Material suction profile assembly; 10. Connecting frame; 11. Mounting seat; 12. First gear; 13. Second motor; 14. Chain; 15. Second gear assembly; 16. First slide rail; 17. First sliding seat; 18. First sprocket; 19. Third motor; 20. Second sprocket; 21. Installation groove; 22. Slide block; 23. Adjusting screw; 24. Second slide rail; 25. Second sliding seat; 26. Connecting plate; 27. Limiting roller; 28. Frame; 29. Connecting block; 30. Long strip-shaped sponge suction cup; 31. Connecting clip; 32. Connecting bolt; 33. Driving shaft. Detailed Embodiment
[0031] The following further details the present invention with reference to the drawings.
[0032] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.
[0033] Please refer to Figures 1-5 , the present invention provides a technical solution: a flexible component turnover machine, including a machine base 1 and a flexible component 8. A storage rack body 3 is arranged on one side of the machine base 1. Fixed seats 2 are arranged below both the machine base 1 and the storage rack body 3, and the fixed seats 2 are connected to the machine base 1 and the storage rack body 3 by screws. An installation seat 11 is arranged on one side of the machine base 1, and the installation seat 11 is arranged above the storage rack body 3. Two first slide rails 16 are arranged on one side of the machine base 1, and the first slide rails 16 are fixedly connected to the machine base 1. Two first sliding seats 17 are arranged on the back of the installation seat 11, and the first sliding seats 17 are fixedly connected to the installation seat 11. The first sliding seats 17 are slidably connected to the first slide rails 16. A connecting frame 10 is arranged on one side of the installation seat 11. A first gear 12 is arranged at one end of the connecting frame 10, and the first gear 12 is fixedly connected to the connecting frame 10. The first gear 12 is rotatably connected to the installation seat 11. A second motor 13 is arranged on one side of the installation seat 11, and the second motor 13 is connected to the installation seat 11 by screws. A second gear assembly 15 is arranged on one side of the first gear 12, and the second gear assembly 15 is meshed with the first gear 12. The second gear assembly 15 is connected to the output end of the second motor 13. A suction profile assembly 9 is arranged below the connecting frame 10, and the suction profile assembly 9 is connected to the connecting frame 10 by screws. Place the flexible component 8 flat on the storage rack body 3. The installation seat 11 and the machine base 1 are slidably connected through the first slide rails 16 and the first sliding seats 17. Lower the installation seat 11 along the first slide rails 16 so that the suction profile assembly 9 contacts the flexible component 8, and adsorb and fix the flexible component 8 through the suction profile assembly 9. Then raise the installation seat 11 along the first slide rails 16, start the second motor 13 to drive the second gear assembly 15 to rotate. The second gear assembly 15 is meshed with the first gear 12. As the second gear assembly 15 rotates, it drives the connecting frame 10 to rotate, realizing the turnover of the flexible component 8.
[0034] Please refer to Figure 1 and Figure 3, a third motor 19 is provided at the bottom of the machine base 1, and the third motor 19 is connected to the machine base 1 by screws. A second sprocket 20 is provided on one side of the third motor 19, and the second sprocket 20 is connected to the output end of the third motor 19. A first sprocket 18 is provided at the top of the machine base 1, and the first sprocket 18 is rotatably connected to the machine base 1. A chain 14 is provided between the first sprocket 18 and the second sprocket 20, and the chain 14 is in transmission connection with the first sprocket 18 and the second sprocket 20. The chain 14 is fixedly connected to the mounting base 11. The third motor 19 drives the second sprocket 20 to rotate. The second sprocket 20 and the first sprocket 18 are in transmission connection through the chain 14. As the second sprocket 20 rotates, the chain 14 runs. As the chain 14 moves, the mounting base 11 moves up and down along the first slide rail 16, changing the height of the material suction profile assembly 9.
[0035] Please refer to Figure 1 , a loading rack 4 is provided above the storage rack body 3. There are four loading racks 4, and the loading rack 4 is fixedly connected to the storage rack body 3. The four loading racks 4 are equidistantly arranged above the storage rack body 3. Belt pulley assemblies 6 are provided at both ends of the four loading racks 4, and the belt pulley assemblies 6 are rotatably connected to the loading rack 4. A loading belt 7 is provided between the two belt pulley assemblies 6, and the loading belt 7 is in transmission connection with the belt pulley assemblies 6. A first motor 5 is provided on one side of the loading rack 4, and the first motor 5 is connected to the loading rack 4 by screws. A drive shaft 33 is provided between the output end of the first motor 5 and the belt pulley assembly 6. The first motor 5 drives one belt pulley assembly 6 to rotate. The four belt pulley assemblies 6 at one end are in transmission connection through the drive shaft 33. As the belt pulley assembly 6 rotates, the loading belt 7 moves. The flexible assembly 8 is placed flat on the loading belt 7, and the flexible assembly 8 is conveyed by means of the loading belt 7, and the flexible assembly 8 is finely adjusted.
[0036] Please refer to Figure 1 and Figure 4 , second slide rails 24 are provided above both sides of the storage rack body 3. There are two second slide rails 24, and the second slide rails 24 are fixedly connected to the storage rack body 3. Second sliding seats 25 are provided above the two second slide rails 24, and the second sliding seats 25 are slidably connected to the second slide rails 24. A connecting plate 26 is provided above the second sliding seat 25, and the connecting plate 26 is fixedly connected to the second sliding seat 25. Limiting rollers 27 are provided above both ends of the connecting plate 26, and the limiting rollers 27 are rotatably connected to the connecting plate 26. The second sliding seat 25 slides along the second slide rail 24 to adjust the distance between the two second sliding seats 25, and the limiting rollers 27 are brought into contact with both ends of the flexible assembly 8 to position the flexible assembly 8, ensuring that the material suction profile assembly 9 accurately adsorbs and fixes the flexible assembly 8.
[0037] Please refer to Figure 1 and Figure 3, at the center of one end of each of the four loading racks 4, there is an installation groove 21 provided, and the installation groove 21 is arranged in a long strip shape. Inside the installation groove 21, there is a slider 22, and the slider 22 is slidably connected to the loading rack 4. The slider 22 is rotationally connected to the belt pulley assembly 6. Inside the installation groove 21, there is an adjusting screw 23, and the adjusting screw 23 is threadedly connected through the slider 22. Rotating the adjusting screw 23 drives the slider 22 to slide along the installation groove 21, adjusting the distance between the two belt pulley assemblies 6 on one loading rack 4, thereby adjusting the tension of the loading belt 7 and better conveying the flexible component 8.
[0038] Please refer to Figure 1 and Figure 5 , the material suction profile assembly 9 includes a frame 28, a connecting block 29, a long strip-shaped sponge suction cup 30, a connecting clip 31, and a connecting bolt 32. The long strip-shaped sponge suction cup 30 is arranged below the frame 28. There are at least four long strip-shaped sponge suction cups 30, and the long strip-shaped sponge suction cups 30 are equidistantly arranged below the frame 28. Above the long strip-shaped sponge suction cup 30, there is a connecting clip 31, and the connecting clip 31 is connected to the long strip-shaped sponge suction cup 30 by screws. Above the frame 28, there is a connecting block 29, and the connecting block 29 is slidably connected to the frame 28. Between the connecting block 29 and the connecting clip 31, there is a connecting bolt 32, and one end of the connecting bolt 32 is rotationally connected to the connecting clip 31. The connecting bolt 32 is threadedly connected through the connecting block 29. The connecting block 29, the connecting clip 31, and the connecting bolt 32 fix the long strip-shaped sponge suction cup 30. The connecting block 29 is slidably connected to the frame 28. By sliding the connecting block 29, the installation position of the long strip-shaped sponge suction cup 30 can be changed, and the size of the material suction profile assembly 9 can be adjusted to meet the suction effect of flexible components 8 of different sizes.
[0039] Working principle: Place the flexible component 8 flat on the loading rack 4, turn on the first motor 5 to drive a pulley component 6 to rotate, and the four pulley components 6 at one end are connected through the driving shaft 33. As the pulley component 6 rotates, the loading belt 7 is driven to move, and the loading belt 7 is used to transport the flexible component 8. The second sliding seat 25 slides along the second slide rail 24, and the distance between the two second sliding seats 25 is adjusted. The limiting roller 27 is brought into contact with both ends of the flexible component 8 to position the flexible component 8; the mounting seat 11 is slidably connected to the machine base 1 through the first slide rail 16 and the first sliding seat 17, and the third motor 19 drives the second sprocket 20 to rotate. The second sprocket 20 and the first sprocket 18 are connected through the chain 14. As the second sprocket 20 rotates, the chain 14 is driven to run, and as the chain 14 moves, the mounting seat 11 is driven to move up and down along the first slide rail 16, thereby changing the height of the suction profile component 9 and moving the mounting seat 11 along the first slide rail 16 descends, the suction profile assembly 9 contacts with the flexible assembly 8, and the flexible assembly 8 is adsorbed and fixed by the suction profile assembly 9, and then the mounting seat 11 is raised along the first slide rail 16, and the second motor 13 is turned on to drive the second gear assembly 15 to rotate, and the second gear assembly 15 is meshed and connected with the first gear 12. As the second gear assembly 15 rotates, the connecting frame 10 is driven to rotate to realize the flipping of the flexible assembly 8; the adjusting screw 23 is rotated to drive the slider 22 to slide along the mounting groove 21, and the distance between the two pulley assemblies 6 on a loading rack 4 is adjusted, thereby adjusting the tension of the loading belt 7 to better transport the flexible assembly 8; the connecting block 29, the connecting clamp 31 and the connecting bolt 32 fix the elongated sponge suction cup 30, and the connecting block 29 is slidably connected to the frame 28. The installation position of the elongated sponge suction cup 30 can be changed by sliding the connecting block 29, and the size of the suction profile assembly 9 can be adjusted to meet the suction effect of flexible components 8 of different sizes.
[0040] It should be noted that, in this article, relational terms such as first and second, etc. are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Moreover, the terms "include", "comprise" or any other variants thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements includes not only those elements, but also other elements not explicitly listed, or also includes elements inherent to such process, method, article or device.
[0041] Finally, it should be noted that the above are only the preferred embodiments of the present utility model and are not intended to limit the present utility model. Although the present utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions recorded in the foregoing embodiments or perform equivalent replacements for some of the technical features. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present utility model shall be included within the protection scope of the present utility model.
Claims
1. A flexible component turnover machine, comprising a machine base (1) and a flexible component (8), characterized in that: On one side of the machine base (1), a storage rack body (3) is provided. Fixed seats (2) are provided below both the machine base (1) and the storage rack body (3), and the fixed seats (2) are connected to the machine base (1) and the storage rack body (3) by screws. On one side of the machine base (1), a mounting seat (11) is provided, and the mounting seat (11) is arranged above the storage rack body (3). On one side of the machine base (1), two first slide rails (16) are provided, and the first slide rails (16) are fixedly connected to the machine base (1). On the back of the mounting seat (11), two first sliding seats (17) are provided, and the first sliding seats (17) are fixedly connected to the mounting seat (11). The first sliding seats (17) are slidably connected to the first slide rails (16). On one side of the mounting seat (11), a connecting frame (10) is provided. At one end of the connecting frame (10), a first gear (12) is provided, and the first gear (12) is fixedly connected to the connecting frame (10). The first gear (12) is rotatably connected to the mounting seat (11). On one side of the mounting seat (11), a second motor (13) is provided, and the second motor (13) is connected to the mounting seat (11) by screws. On one side of the first gear (12), a second gear assembly (15) is provided, and the second gear assembly (15) is meshed with the first gear (12). The second gear assembly (15) is connected to the output end of the second motor (13). Below the connecting frame (10), a material suction profile assembly (9) is provided, and the material suction profile assembly (9) is connected to the connecting frame (10) by screws.
2. The flexible component turnover machine according to claim 1, wherein: At the bottom of the machine base (1), a third motor (19) is provided, and the third motor (19) is connected to the machine base (1) by screws. On one side of the third motor (19), a second sprocket (20) is provided, and the second sprocket (20) is connected to the output end of the third motor (19). At the top of the machine base (1), a first sprocket (18) is provided, and the first sprocket (18) is rotatably connected to the machine base (1). A chain (14) is provided between the first sprocket (18) and the second sprocket (20), and the chain (14) is in transmission connection with the first sprocket (18) and the second sprocket (20). The chain (14) is fixedly connected to the mounting seat (11).
3. A flexible component flipping machine according to claim 1, characterized in that: Above the storage rack body (3), four loading racks (4) are provided. The loading racks (4) are fixedly connected to the storage rack body (3). The four loading racks (4) are equidistantly arranged above the storage rack body (3). At both ends of the four loading racks (4), pulley assemblies (6) are provided, and the pulley assemblies (6) are rotatably connected to the loading racks (4). A loading belt (7) is provided between the two pulley assemblies (6), and the loading belt (7) is in transmission connection with the pulley assemblies (6). On one side of the loading rack (4), a first motor (5) is provided, and the first motor (5) is connected to the loading rack (4) by screws. A drive shaft (33) is provided between the output end of the first motor (5) and the pulley assembly (6).
4. The flexible component turnover machine according to claim 3, characterized in that: Above both sides of the storage rack body (3), second slide rails (24) are provided. There are two second slide rails (24), and the second slide rails (24) are fixedly connected to the storage rack body (3). Above both of the second slide rails (24), second sliding seats (25) are provided, and the second sliding seats (25) are slidably connected to the second slide rails (24). Above the second sliding seats (25), connecting plates (26) are provided, and the connecting plates (26) are fixedly connected to the second sliding seats (25). Above both ends of the connecting plates (26), limiting rollers (27) are provided, and the limiting rollers (27) are rotatably connected to the connecting plates (26).
5. A flexible component turnover machine according to claim 4, characterized in that: At the center of one end of each of the four loading racks (4), installation grooves (21) are provided, and the installation grooves (21) are arranged in a long strip shape. Inside the installation grooves (21), sliders (22) are provided, and the sliders (22) are slidably connected to the loading racks (4). The sliders (22) are rotatably connected to the belt pulley assembly (6). Inside the installation grooves (21), adjusting screws (23) are provided, and the adjusting screws (23) are threadedly connected through the sliders (22).
6. A flexible component flipping machine according to claim 1, characterized in that: The material suction profile assembly (9) includes a frame (28), a connecting block (29), a long strip-shaped sponge suction cup (30), a connecting clip (31), and a connecting bolt (32). The long strip-shaped sponge suction cup (30) is arranged below the frame (28). There are at least four long strip-shaped sponge suction cups (30), and the long strip-shaped sponge suction cups (30) are arranged at equal intervals below the frame (28). Above the long strip-shaped sponge suction cups (30), connecting clips (31) are provided, and the connecting clips (31) are connected to the long strip-shaped sponge suction cups (30) by screws. Above the frame (28), a connecting block (29) is provided, and the connecting block (29) is slidably connected to the frame (28). A connecting bolt (32) is arranged between the connecting block (29) and the connecting clip (31), and one end of the connecting bolt (32) is rotatably connected to the connecting clip (31). The connecting bolt (32) is threadedly connected through the connecting block (29).
Citation Information
Patent Citations
Flexible photovoltaic module turnover machine
CN217626289U