Photovoltaic power generation support frame manufacturing equipment
Through the coordination of the inner and outer clamping structure and the cutting structure, the problem of the photovoltaic panel support frame is easily deformed during cutting, and the stable cutting and precise positioning of the support frame are achieved.
Patent Information
- Application Number
- CN202422107870.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-29
- Publication Date
- 2025-08-01
- Estimated Expiration
- 2034-08-29
AI Technical Summary
The existing photovoltaic panel support frame is prone to deform during cutting, and the existing clamping device can only apply inward clamping force, resulting in inconvenient cutting.
A photovoltaic power generation support frame manufacturing equipment is designed, adopting an inner and outer clamping structure. The inner clamping plate applies an inner to the outside of the support frame through the pressing block controlled by the first cylinder. The outer clamping plate is attached to the outer wall surface of the support frame through the outer clamp controlled by the second cylinder, and combines the clamping and cutting blade of the cutting structure to achieve stable cutting.
It effectively prevents deformation of the cut parts of the support frame and ensures the stability and accuracy of the cutting process.
Smart Images

Figure CN223172458U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of photovoltaic support manufacturing equipment, in particular to a manufacturing equipment for a photovoltaic power generation support frame. Background Technique
[0002] The photovoltaic panel support frame is a structural system installed on the ground or roof to support photovoltaic (solar) panels. Its main function is to fix and support the solar panels so that they can be stably installed at the correct angle to maximize the absorption of solar energy and convert it into electrical energy. In the actual production and manufacturing of the photovoltaic panel support frame, it is necessary to customize and cut the support frame according to the actual use size to adapt to the specific terrain and ground contour to ensure the installation and stability of the photovoltaic panels. A photovoltaic panel support positioning and cutting device with the publication number of CN220073403U discloses a workbench. A moving device is provided at the top of the workbench. The moving device includes two fixing plates and two fixed T-shaped plates. Both of the two fixing plates are fixedly connected to the workbench. A sliding groove is opened on one side of the fixing plate. A slider is slidably connected inside the sliding groove. One ends of the two sliders away from the sliding groove are fixedly connected to a fixed long plate. A sliding slot is opened inside the fixed long plate. A sliding block is slidably connected inside the sliding slot; the photovoltaic panel support frame generally uses C-shaped steel, that is, the inside of the C-shaped steel is a hollow structure. In this patent document, the gripper can only apply an inward clamping force to the photovoltaic panel support frame, which is likely to cause deformation during cutting and is inconvenient to use.
[0003] In view of the above problems, there may already be technical means to solve them in the prior art, but this case wants to provide an alternative or replacement technical solution. Content of the Utility Model
[0004] To solve the problems raised in the background technique, the utility model is realized through the following technical solutions: A manufacturing equipment for a photovoltaic power generation support frame includes a base. A cutting structure is installed on the base. Two clamping structures are also installed on the base and near the cutting structure. The cutting structure is located in the middle of the two clamping structures;
[0005] Both of the two clamping structures include two symmetrically arranged connecting frames. A return frame is installed at the end of the two connecting frames. Right-angled trapezoidal blocks are symmetrically and movably inserted on the return frame. The inclined surface of the right-angled trapezoidal block is located inside the return frame, and the vertical surface of the right-angled trapezoidal block is located outside the return frame. An inner clamping plate is installed on the vertical surface of the right-angled trapezoidal block. A plurality of spring columns are installed between the inner clamping plate and the outer wall surface of the return frame. A first cylinder is inserted on the upper wall surface of the return frame. A pressing block is installed at the telescopic end of the first cylinder. The pressing block is movably attached to the inclined surface of the right-angled trapezoidal block. External clamping components are installed on both of the two connecting frames.
[0006] Preferably, the external clamping assembly includes a second cylinder, the second cylinder is installed on the connecting frame, and an outer clamping plate is installed at the telescopic end of the second cylinder.
[0007] Preferably, the cutting structure includes a gantry frame, a third cylinder is installed on the lower wall surface of the gantry frame, a motor is installed at the telescopic end of the third cylinder, a cutting tool disc is installed at the driving end of the motor, and the cutting tool disc is located in the middle of the two clamping structures.
[0008] Preferably, an avoidance groove is formed on the upper wall surface of the base, and the avoidance groove is correspondingly formed with the cutting tool disc.
[0009] Preferably, the pressing block is of a cylindrical structure.
[0010] Preferably, a linear laser locator is installed on the side wall surface of the gantry frame, and the linear laser locator is correspondingly installed with the cutting tool disc.
[0011] Beneficial effects
[0012] The utility model provides a manufacturing device for a photovoltaic power generation support frame. Compared with the prior art, the following beneficial effects are achieved: The support frame is placed on the base with the opening facing upward, and the support frame is horizontally moved so that both clamping structures are located inside the support frame. When the target cutting position of the support frame is aligned with the cutting structure, the first cylinder is controlled to extend, so that the pressing block descends. The pressing block slides on the inclined surface of the right-angled trapezoidal block, pushing the right-angled trapezoidal block to move outward until the inner clamping plate fits against the inner wall of the support frame, applying an outward support force to the support frame. At the same time, the second cylinder extends, so that the outer clamping plate fits against the outer wall surface of the support frame, realizing the fixation of the support frame and preventing the deformation of the cut part of the support frame during the operation of the cutting structure. Description of the drawings
[0013] Figure 1 It is a three-dimensional structure schematic diagram of the manufacturing device for a photovoltaic power generation support frame of the utility model from a top view angle.
[0014] Figure 2 It is a three-dimensional structure schematic diagram of the manufacturing device for a photovoltaic power generation support frame of the utility model from a bottom view angle. C
[0015] Figure 3 It is a side view sectional structure schematic diagram of the manufacturing device for a photovoltaic power generation support frame of the utility model.
[0016] In the figure: 1. Base, 2. Connecting frame, 3. Return frame, 4. Right-angled trapezoidal block, 5. Inner clamping plate, 6. Spring column, 7. First cylinder, 8. Pressing block, 9. Second cylinder, 10. Outer clamping plate, 11. Gantry frame, 12. Motor, 13. Cutting tool disc, 14. Avoidance groove, 15. Linear laser locator, 16. Third cylinder. Detailed implementation mode
[0017] Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.
[0018] Embodiment: Through those skilled in the art, all electrical components in this case are connected to their adapted power supplies through wires, and a suitable controller should be selected according to the actual situation to meet the control requirements. For the specific connection and control sequence, reference should be made to the sequence of operations among the electrical components in the following working principle to complete the electrical connection. The detailed connection means are well-known techniques in the art. The following mainly introduces the working principle and process, and no further description of electrical control will be made.
[0019] Please refer to Figures 1-3 , in order to solve the problem that the photovoltaic panel support frame of C-shaped steel is prone to deformation during cutting, this technical solution is designed, and the detailed technical solution is as follows;
[0020] A manufacturing device for a photovoltaic power generation support frame includes a base 1, a cutting structure is installed on the base 1, and two clamping structures are also installed on the base 1 and near the cutting structure. The cutting structure is located in the middle of the two clamping structures;
[0021] Specifically, each of the two clamping structures includes two symmetrically arranged connecting frames 2. The ends of the two connecting frames 2 are installed with a return frame 3. Right-angled trapezoidal blocks 4 are symmetrically and movably inserted on the return frame 3. The inclined surfaces of the right-angled trapezoidal blocks 4 are located inside the return frame 3, and the vertical surfaces of the right-angled trapezoidal blocks 4 are located outside the return frame 3. Inner clamping plates 5 are installed on the vertical surfaces of the right-angled trapezoidal blocks 4. A plurality of spring columns 6 are installed between the inner clamping plates 5 and the outer wall surface of the return frame 3. A first cylinder 7 is inserted on the upper wall surface of the return frame 3. The telescopic end of the first cylinder 7 is installed with a pressing block 8. The pressing block 8 is movably attached to the inclined surface of the right-angled trapezoidal block 4. External clamping components are installed on both connecting frames 2;
[0022] Specifically, the external clamping component includes a second cylinder 9. The second cylinder 9 is installed on the connecting frame 2, and the telescopic end of the second cylinder 9 is installed with an outer clamping plate 10;
[0023] It should be noted that the support frame is placed on the base 1 with the opening facing upward, and the support frame is horizontally moved so that both clamping structures are located inside the support frame. When the target cutting position of the support frame is aligned with the cutting structure, control the first cylinder 7 to extend, so that the pressing block 8 descends. The pressing block 8 slides on the inclined surface of the right-angled trapezoidal block 4, pushing the right-angled trapezoidal block 4 to move outward until the inner clamping plate 5 fits against the inner wall of the support frame, applying an outward support force to the support frame. At the same time, the second cylinder 9 extends, so that the outer clamping plate 10 fits against the outer wall surface of the support frame, realizing the fixation of the support frame and preventing the deformation of the cut part of the support frame during the operation of the cutting structure;
[0024] When the inner clamping plate 5 is attached to the inner wall of the support frame, the spring column 6 is stretched. When there is no need to clamp the support frame, the first cylinder 7 contracts. Under the action of the contraction force of the spring column 6, the inner clamping plate 5 leaves the inner wall of the support frame, and the second cylinder 9 contracts, causing the outer clamping plate 10 to leave the outer wall surface of the support frame, releasing the clamping of the support frame;
[0025] Specifically, the cutting structure includes a gantry 11. A third cylinder 16 is installed on the lower wall surface of the gantry 11. The telescopic end of the third cylinder 16 is installed with a motor 12, and the driving end of the motor 12 is installed with a cutting tool disc 13. The cutting tool disc 13 is located in the middle of the two clamping structures;
[0026] It should be noted that when the motor 12 works, it drives the cutting tool disc 13 to rotate. At the same time, the third cylinder 16 extends, causing the cutting tool disc 13 to descend to cut the support frame;
[0027] Preferably, further, an avoidance groove 14 is provided on the upper wall surface of the base 1. The avoidance groove 14 is correspondingly provided with the cutting tool disc 13 for avoiding the cutting tool disc 13;
[0028] Preferably, further, the pressing block 8 is of a cylindrical structure;
[0029] Preferably, further, a linear laser locator 15 is installed on the side wall surface of the gantry 11. The linear laser locator 15 is correspondingly installed with the cutting tool disc 13. The light emitted by the linear laser locator 15 and projected on the support frame is the part aligned with the cutting tool disc 13, which is convenient for positioning.
[0030] Although the embodiments of the present invention have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A manufacturing device for a photovoltaic power generation support frame, including a base (1), wherein a cutting structure is installed on the base (1), and it is characterized in that, On the base (1) and near the cutting structure, two clamping structures are also installed, and the cutting structure is located in the middle of the two clamping structures; Both of the two clamping structures include two symmetrically arranged connecting frames (2). At the ends of the two connecting frames (2), a return frame (3) is installed. On the return frame (3), right-angled trapezoidal blocks (4) are symmetrically and movably inserted. The inclined surface of the right-angled trapezoidal block (4) is located inside the return frame (3), and the vertical surface of the right-angled trapezoidal block (4) is located outside the return frame (3). An inner clamping plate (5) is installed on the vertical surface of the right-angled trapezoidal block (4). A plurality of spring columns (6) are installed between the inner clamping plate (5) and the outer wall surface of the return frame (3). A first cylinder (7) is inserted into the upper wall surface of the return frame (3). The telescopic end of the first cylinder (7) is provided with a pressing block (8). The pressing block (8) is movably attached to the inclined surface of the right-angled trapezoidal block (4). External clamping components are installed on both of the two connecting frames (2).
2. The manufacturing equipment of a photovoltaic power generation support frame according to claim 1, characterized in that, The external clamping component includes a second cylinder (9). The second cylinder (9) is installed on the connecting frame (2), and the telescopic end of the second cylinder (9) is provided with an outer clamping plate (10).
3. The manufacturing equipment for a photovoltaic power generation support frame according to claim 1, characterized in that, The cutting structure includes a gantry (11). A third cylinder (16) is installed on the lower wall surface of the gantry (11). The telescopic end of the third cylinder (16) is provided with a motor (12). The driving end of the motor (12) is provided with a cutting cutter head (13). The cutting cutter head (13) is located in the middle of the two clamping structures.
4. The manufacturing equipment of a photovoltaic power generation support frame according to claim 3, characterized in that, An avoidance groove (14) is formed on the upper wall surface of the base (1), and the avoidance groove (14) is correspondingly formed with the cutting cutter head (13).
5. The manufacturing equipment of a photovoltaic power generation support frame according to claim 1, characterized in that, The pressing block (8) is of a cylindrical structure.
6. The manufacturing equipment of a photovoltaic power generation support frame according to claim 3, characterized in that, A linear laser locator (15) is installed on the side wall surface of the gantry (11), and the linear laser locator (15) is correspondingly installed with the cutting cutter head (13).
Citation Information
Patent Citations
Photovoltaic panel support positioning and cutting equipment
CN220073403U