Photovoltaic panel aluminum frame glass removing equipment
Patent Information
- Application Number
- CN202522223203.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-21
- Publication Date
- 2026-09-25
- Estimated Expiration
- 2035-10-21
AI Technical Summary
[0003]本实用新型的目的在于提供一种光伏板铝边框去玻璃设备,解决现有技术无法高效、连续、自动化的完成铝边框的去玻璃操作的问题
一、本实用新型通过在支撑架上设置去玻璃结构,将光伏板的铝边框插入夹持结构后,通过步进电机驱动安装板A上设置的夹持结构旋转来夹持移动铝边框,同时通过电机驱动去除结构旋转对移动经过的铝边框进行玻璃去除,去除高效、连续、能自动化的完成铝边框的去玻璃操作,且占地面积小,空间利用率高,便于运输,能针对大部分出现弯折、破损的铝边框进行玻璃去除操作;
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Figure CN224794067U_ABST
Abstract
Description
Technical Field
[0001] A glass removal device for aluminum frames of photovoltaic panels is disclosed, which belongs to the technical field of glass removal equipment for aluminum frames of photovoltaic panels. Background Technology
[0002] With the rapid development of the photovoltaic industry, a large number of photovoltaic power plants are awaiting recycling. The recycling process involves removing the aluminum frames around the photovoltaic panels to separate the glass (the removed glass has silicone sealant on it). Currently, there are some specialized equipment on the market for removing glass from the aluminum frames of photovoltaic panels. However, the following technical problems exist: 1. Low production efficiency: It cannot efficiently, continuously, and automatically complete the glass removal operation of the aluminum frame; 2. Large space requirement: It occupies a large area, has low space utilization, and is inconvenient for transportation; 3. Poor reliability: If the aluminum frame is bent or damaged, it is impossible to remove the glass from the aluminum frame. 4. Poor environmental performance: It easily causes pollution to the environment; 5. Inconvenient transportation: It is not easy to change the location on the construction site. Utility Model Content
[0003] The purpose of this invention is to provide a glass removal device for aluminum frames of photovoltaic panels, which solves the problem that existing technologies cannot efficiently, continuously, and automatically complete the glass removal operation of aluminum frames.
[0004] To achieve the above objectives, the technical solution adopted by this utility model is as follows: A photovoltaic panel aluminum frame glass removal device includes a support frame and a glass removal structure disposed on the support frame; The glass removal structure includes two mounting plates A disposed opposite to each other on a support frame, a clamping structure disposed on the two mounting plates A to clamp an aluminum frame, a removal structure for removing glass from the aluminum frame, a stepper motor disposed on the support frame to drive the clamping structure to rotate and clamp the aluminum frame, and a motor disposed on the support frame to drive the removal structure to rotate.
[0005] Furthermore, the clamping structure includes a rotating shaft A that is rotatably mounted on two mounting plates A, and at least one I-shaped wheel is disposed opposite to each other on the two rotating shafts A located between the two mounting plates A; When there is one I-shaped wheel on the rotating shaft A, a rotating shaft B is rotatably inserted on any mounting plate A below the rotating shaft A. A top wheel corresponding to the I-shaped wheel and clamping the aluminum frame is installed on the rotating shaft B, located on the outside of the mounting plate A on which the rotating shaft B is installed. A gear B is installed on the rotating shaft B, and a gear A that meshes with the gear B is installed on the rotating shaft A. When there are two I-shaped wheels on the rotating shaft A, a rotating shaft B is rotatably inserted on each of the two mounting plates A below the rotating shaft A. The rotating shaft B is equipped with a top wheel that clamps the aluminum frame corresponding to the I-shaped wheel on the corresponding side. A gear B is provided on the rotating shaft B located outside the mounting plate A, and a gear A that meshes with the gear B is provided on the rotating shaft A. When there are three or more I-shaped wheels on the rotating shaft A, a rotating shaft B is rotatably inserted on the two mounting plates A below the rotating shaft A. The rotating shaft B is provided with a top wheel that clamps the aluminum frame corresponding to each I-shaped wheel. At least one mounting plate A has a gear B on the rotating shaft B on its outer side, and the rotating shaft A has a gear A that meshes with the gear B. The rotating shafts A or B corresponding to the meshing gears A and B are connected to the stepper motor via a coupling.
[0006] Furthermore, at the end where the aluminum frame begins to be removed from the glass and engages with the clamping structure, the mounting plate A is provided with a guide structure for limiting the movement of the aluminum frame.
[0007] Furthermore, the guide structure includes a U-shaped plate disposed on the mounting plate A, a limiting plate disposed on both sides of the U-shaped plate, and an elastic piece disposed on the limiting plate on one side of the mounting plate A to reset and push the aluminum frame towards the limiting plate on the other side.
[0008] Furthermore, the removal structure includes a rotating shaft C that rotates through the two mounting plates A, and a razor mounted on the rotating shaft C to remove glass from the aluminum frame held by the clamping structure. The rotating shaft C is connected to a motor via a coupling.
[0009] Furthermore, the support frame includes multiple sets of support rods arranged opposite to each other, each set of support rods having at least two support rods, a horizontal crossbar and a horizontal vertical bar set on the top of the support rod, and a mounting rod for mounting the mounting plate A set on the support rod with the horizontal crossbar. The support frame is equipped with a protective shell to protect the clamping structure and the removal structure.
[0010] Furthermore, a shielding plate A is provided on each of the two mounting plates A, and a shielding plate B is provided on the mounting rod located between the shielding plates.
[0011] Furthermore, a mounting plate B is also provided on the mounting rod, and the stepper motor is mounted on the support frame through the mounting plate B; A horizontal and vertical mounting rod is provided on the support rod on the opposite side of the stepper motor. A mounting platform is provided on the horizontal and vertical mounting rod, and the motor is mounted on the mounting platform.
[0012] Furthermore, a triangular bracket is installed on each support rod, and an electrical cabinet for controlling the motor and stepper motor is installed on the triangular bracket; Except for the triangular bracket, the support rod is equipped with diagonal braces to support the mounting rod.
[0013] Furthermore, a handrail is provided on the horizontal vertical mounting rod, and casters are provided on the support rod located on the opposite side of the handrail.
[0014] Compared with the prior art, the advantages of this utility model are: I. This utility model sets up a glass removal structure on the support frame. After the aluminum frame of the photovoltaic panel is inserted into the clamping structure, the clamping structure set on the mounting plate A is rotated by a stepper motor to clamp the moving aluminum frame. At the same time, the removal structure is rotated by the motor to remove the glass from the moving aluminum frame. The removal is efficient, continuous and automated, and the glass removal operation of the aluminum frame can be completed automatically. It also has a small footprint, high space utilization, and is easy to transport. It can remove the glass from most aluminum frames that are bent or broken. II. The clamping structure in this utility model clamps the aluminum frame by setting rotating shaft A and rotating shaft B on the mounting plate A, and setting I-shaped wheels and top wheels on rotating shaft A and rotating shaft B. At the same time, meshing gears A and gear B are set on rotating shaft A and rotating shaft B. When the stepper motor drives rotating shaft A or rotating shaft B to rotate, gears A and gear B rotate synchronously and in opposite directions to clamp and move the aluminum frame. The purpose of setting two rotating shafts A and corresponding mating components is to facilitate the movement of the aluminum frame. Third, this utility model has a guide structure set at one end of the aluminum frame where the glass is removed and where it cooperates with the clamping structure. This structure not only supports the aluminum frame through the limiting plate on the U-shaped plate on the opposite side of the mounting plate, but also pushes the aluminum frame to cooperate with another limiting plate through the reset action of the elastic sheet set on the limiting plate on one side of the mounting plate. This not only does not affect the stepper motor driving the clamping structure to clamp and move the aluminum frame, but also makes it easier for the aluminum frame to cooperate with the removal structure, so as to facilitate the removal of glass from the aluminum frame. IV. The removal structure in this utility model uses a motor to drive the rotating shaft C to rotate, thereby driving the razor to rotate and cut or break the glass on the aluminum frame that is clamped and moved through, thus removing the glass. The structure is simple and the glass is easy to remove. Fifth, the supporting structure of this utility model is simple and easy to install and repair. The protective shell on it cooperates with the shielding plate A and shielding plate B, so that the glass falls below, making it easy to put on a recycling bag for recycling, effectively avoiding the problem of easy environmental pollution. VI. The purpose of setting casters and handrails in this utility model is to facilitate the relocation of equipment on the construction site. Attached Figure Description
[0015] To more clearly illustrate the technical solutions of the embodiments of this utility model, the drawings used in the embodiments will be briefly introduced below. It should be understood that the following drawings only show some embodiments of this utility model and should not be regarded as a limitation on the scope. For those skilled in the art, other related drawings can be obtained based on these drawings without creative effort.
[0016] Figure 1 This is a perspective view of the present invention from one side of the motor. Figure 2 This is a perspective view of the stepper motor side in this utility model; Figure 3 This is a bottom view of the present invention; Figure 4 This is a perspective view of the present invention without a protective shell, in conjunction with the aluminum frame, and viewed from the motor side. Figure 5 This is a perspective view of the present invention without a protective shell, in conjunction with the aluminum frame, and viewed from the side of the stepper motor. Figure 6 for Figure 4 or Figure 5 Top view; Figure 7 for Figure 4 or Figure 5 A bottom view; Figure 8 This is a schematic diagram of the glass-removing structure in this utility model; Figure 9 for Figure 8 A structural diagram from another angle; In the diagram: 1-Support frame, 2-Glass removal structure, 3-Mounting plate A, 4-Clamping structure, 5-Removal structure, 6-Stepper motor, 7-Motor, 8-Aluminum frame, 9-Shaft A, 10-I-shaped wheel, 11-Shaft B, 12-Top wheel, 13-Gear B, 14-Gear A, 15-Guide structure, 16-U-shaped plate, 17-Limiting plate, 18-Elastic sheet, 19-Shaft C, 20-Razor, 21-Support rod, 22-Horizontal crossbar, 23-Horizontal vertical bar, 24-Mounting rod, 25-Protective shell, 26-Baffle plate A, 27-Baffle plate B, 28-Mounting plate B, 29-Horizontal and vertical mounting rods, 30-Mounting platform, 31-Triangular bracket, 32-Electrical cabinet, 33-Diagonal brace, 34-Handrail, 35-Cast. Detailed Implementation
[0017] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this utility model, not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of this utility model.
[0018] It should be noted that similar labels and letters in the following figures indicate similar items. Therefore, once an item is defined in one figure, it does not need to be further defined and explained in subsequent figures.
[0019] In the description of this utility model, it should be noted that if terms such as "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer" appear to indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, or the orientation or positional relationship commonly used when the utility model product is in use, they are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this utility model.
[0020] Furthermore, the terms "first," "second," and "third" are used only for distinguishing descriptions and should not be interpreted as indicating or implying relative importance.
[0021] Furthermore, the use of terms such as "horizontal," "vertical," and "suspended" does not imply that the component must be absolutely horizontal or suspended, but rather that it can be slightly tilted. For example, "horizontal" simply means that its direction is more horizontal relative to "vertical," and does not mean that the structure must be completely horizontal, but can be slightly tilted.
[0022] In the description of this utility model, it should also be noted that, unless otherwise explicitly specified and limited, the terms "set," "install," "connect," and "link" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.
[0023] It should be noted that, where there is no conflict, the features in the embodiments of this utility model can be combined with each other.
[0024] Example 1
[0025] To address the problem that existing technologies cannot efficiently, continuously, and automatically complete the glass removal process for aluminum frames. For example... Figure 1-9 As shown, a photovoltaic panel aluminum frame glass removal device is provided, including a support frame 1 and a glass removal structure 2 disposed on the support frame 1. The glass removal structure 2 includes two mounting plates A3 disposed opposite to each other on the support frame, a clamping structure 4 disposed on the two mounting plates A3 to clamp the aluminum frame, and a removal structure 5 for removing the glass on the aluminum frame 8, a stepper motor 6 disposed on the support frame 1 to drive the clamping structure 4 to rotate and clamp the aluminum frame 8, and a motor 7 disposed on the support frame 1 to drive the removal structure 5 to rotate.
[0026] In practice, moving the equipment to a designated location, such as Figure 4-7 As shown, the aluminum frame 8 to be glass removed is inserted into the clamping structure 4 on the mounting plate A3 from one side. Then, the clamping structure 4 on the mounting plate A3 is rotated by the stepper motor 6 to clamp the moving aluminum frame 8. At the same time, the removal structure 5 is rotated by the motor 7 to remove the glass from the moving aluminum frame 8. The glass removal is efficient, continuous and automated, and the aluminum frame glass removal operation is completed. It has a small footprint, high space utilization, and is easy to transport. It can remove glass from most aluminum frames that are bent or broken.
[0027] Example 2
[0028] Based on embodiment 1, the clamping structure 4 includes a rotating shaft A9 that is rotatably mounted on two mounting plates A3, and at least one I-shaped wheel 10 (which can be an integral structure or assembled from two T-shaped wheels) is arranged opposite to each other on the two rotating shafts A9 located between the two mounting plates A3. When there is one I-shaped wheel 10 on the rotating shaft A9, a rotating shaft B11 is rotatably inserted on any mounting plate A3 located below the rotating shaft A9. A top wheel 12 corresponding to the I-shaped wheel 10 and clamping the aluminum frame 8 is provided on the rotating shaft B11, located on the outside of the mounting plate A3 on which the rotating shaft B11 is provided. A gear B13 is provided on the rotating shaft B11, and a gear A14 meshing with the gear B13 is provided on the rotating shaft A9. In this embodiment, the glass can only be removed one by one from the aluminum frame 8.
[0029] When two I-shaped wheels 10 are provided on the rotating shaft A9, a rotating shaft B11 is rotatably mounted on each of the two mounting plates A3 located below the rotating shaft A9. A top wheel 12 is provided on the rotating shaft B11 to clamp the aluminum frame 8, corresponding to the I-shaped wheel 10 on the corresponding side. A gear B13 is provided on the rotating shaft B11 located outside the mounting plate A3, and a gear A14 meshing with the gear B13 is provided on the rotating shaft A9. This embodiment can simultaneously remove glass from both aluminum frame pieces 8. In this embodiment, the rotating shafts B11 are respectively located on the two mounting plates A3 to facilitate easy installation and the removal of the glass.
[0030] When there are three or more I-shaped wheels 10 on the rotating shaft A9, a rotating shaft B11 is rotatably inserted on the two mounting plates A3 located below the rotating shaft A9. The rotating shaft B11 is provided with top wheels 12 that clamp the aluminum frame 8 corresponding to each I-shaped wheel 10. At least one mounting plate A3 has a gear B13 on the outer side of the rotating shaft B11, and the rotating shaft A9 has a gear A14 that meshes with the gear B13. This embodiment can remove glass from three or more aluminum frame 8 simultaneously.
[0031] The rotating shafts A9 or B11 corresponding to the meshing gears A14 and B13 are connected to the stepper motor 6 via a coupling.
[0032] In practice, when a stepper motor 6 is connected to either shaft A9 or shaft B11, the stepper motor 6 drives the gear A14 or gear B13 on shaft A9 or shaft B11 to rotate. When gear A14 or gear B13 rotates, the gear B13 or gear A14 that meshes with it will also rotate. The I-shaped wheel 10 and the top wheel 12 set on it will rotate synchronously and in opposite directions to clamp the moving aluminum frame 8, which facilitates the automatic movement of the aluminum frame 8 when removing the glass. The purpose of setting two shafts A and corresponding mating components is to make it easier to drive the movement of the aluminum frame.
[0033] Example 3
[0034] Based on Embodiment 2, at the end where the glass begins to be removed from the aluminum frame 8 and it engages with the clamping structure, a guide structure 15 is provided on the mounting plate A3 to limit the movement of the aluminum frame 8. The guide structure 15 includes a U-shaped plate 16 on the mounting plate A3, limiting plates 17 on both sides of the U-shaped plate 16, and an elastic piece 18 on one side of the limiting plate 17 on the mounting plate A3 to push the aluminum frame 8 towards the other limiting plate 17. Figure 8 , 9 As shown, one end of the elastic sheet is connected to the limiting plate and has an opening along the forward direction of the aluminum frame 8. Of course, in practice, it is possible that other settings or different structures may also be used.
[0035] In practice, the aluminum frame 8 is first placed in the guide structure 15, and one side of the aluminum frame 8 (which is an L-shaped structure) (the side where the glass does not need to be removed) is placed between the elastic sheet and the limiting plate 17 located on the opposite side of the mounting plate A3 (referring to the mounting plate A on which the corresponding U-shaped plate 16 is installed). The side where the glass needs to be removed is placed on the limiting plate 17 located on the opposite side of the mounting plate A3. At this time, the aluminum frame 8 is limited by the reset action of the elastic sheet. Then, the aluminum frame 8 is pushed into the matching I-shaped wheel 10 and top wheel 12. Under the drive of the stepper motor, the I-shaped wheel 10 and top wheel 12 can drive the aluminum frame 8 forward and remove the glass when passing through the removal structure. In this embodiment, a guide structure is set at one end of the aluminum frame where the glass removal begins and where it cooperates with the clamping structure. This structure not only supports the aluminum frame through the limiting plate on the U-shaped plate located on the opposite side of the mounting plate, but also pushes the aluminum frame to cooperate with another limiting plate through the reset action of the elastic sheet set on the limiting plate on one side of the mounting plate. This not only does not affect the stepper motor driving the clamping structure to clamp and move the aluminum frame, but also facilitates the cooperation of the aluminum frame with the removal structure, so as to facilitate the removal of glass from the aluminum frame.
[0036] Example 4
[0037] Based on embodiment 3, the removal structure 5 includes a rotating shaft C19 that rotatably passes through the two mounting plates A3, and a razor 20 mounted on the rotating shaft C19 for removing glass from the aluminum frame 8 held by the clamping structure 4. The rotating shaft C19 is connected to the motor 7 via a coupling. The removal structure is mounted on the mounting plate A between the two rotating shafts; however, other mounting methods are not excluded.
[0038] In practice, as the aluminum frame 8 passes by, the glass removal structure uses a motor 7 to drive the rotating shaft C19 to rotate, which in turn drives the razor 20 to rotate, thereby cutting or breaking the glass on the aluminum frame 8 that is clamped and moving through, thus removing the glass. The structure is simple and the glass is easy to remove.
[0039] Example 5
[0040] Based on Embodiment 2, the support frame 1 includes multiple sets of support rods 21 arranged opposite to each other. Each set of support rods 21 has at least two support rods 21, a horizontal crossbar 22 and a horizontal vertical bar 23 set on the top of the support rods 21, and a mounting rod 24 for mounting mounting plates A3 set on the support rod with the horizontal crossbar 22. The support frame 1 is provided with a protective shell 25 to protect the clamping structure 4 and the removal structure 5. A shielding plate A26 is provided on each of the two mounting plates A3, and a shielding plate B27 is provided on the mounting rod 24 located between the shielding plates A26. The support structure is simple and easy to install and maintain for the glass removal structure. The protective shell on it cooperates with the shielding plates A and B, so that the glass falls below, making it easy to put on a recycling bag for recycling, effectively avoiding the problem of environmental pollution.
[0041] Example 6
[0042] Based on embodiment 5, a mounting plate B28 is further provided on the mounting rod 24, and the stepper motor 6 is mounted on the support frame 1 through the mounting plate B28; a horizontal vertical mounting rod 29 is provided on the support rod 21 located on the opposite side of the stepper motor 6, and a mounting platform 30 is provided on the horizontal vertical mounting rod 29, on which the motor 7 is mounted. A triangular bracket 31 is provided on any support rod 21, and an electrical cabinet 32 for controlling the motor 7 and the stepper motor 6 is provided on the triangular bracket 31; of course, in practice, other configuration methods are not excluded. This method simply makes reasonable use of space.
[0043] Except for the triangular bracket 31, the support rod 21 is provided with a diagonal brace 33 to support the mounting rod 24.
[0044] Example 7
[0045] Based on Embodiment 6, a handrail 34 is provided on the horizontal vertical mounting rod 29, and a caster 35 is provided on the support rod 21 located on the opposite side of the handrail 34. The purpose of providing casters and handrails is to facilitate the relocation of the equipment on the construction site; that is, by lifting one side of the handrail 34, the equipment can be easily moved by using the caster 35.
Claims
1. A device for removing glass from aluminum frames of photovoltaic panels, characterized in that: Includes a support frame (1) and a glass removal structure (2) disposed on the support frame (1); The glass removal structure (2) includes two mounting plates A (3) arranged opposite to each other on the support frame, a clamping structure (4) arranged on the two mounting plates A (3) to clamp the aluminum frame and a removal structure (5) to remove the glass on the aluminum frame (8), a stepper motor (6) arranged on the support frame (1) to drive the clamping structure (4) to rotate and clamp the aluminum frame (8), and a motor (7) arranged on the support frame (1) to drive the removal structure (5) to rotate.
2. The photovoltaic panel aluminum frame glass removal equipment according to claim 1, characterized in that: The clamping structure (4) includes a rotating shaft A (9) that is rotatably mounted on two mounting plates A (3), and at least one I-shaped wheel (10) is provided on the two rotating shafts A (9) located between the two mounting plates A (3). When there is one I-shaped wheel (10) on the rotating shaft A (9), a rotating shaft B (11) is rotatably inserted on any mounting plate A (3) below the rotating shaft A (9). A top wheel (12) corresponding to the I-shaped wheel (10) and clamping the aluminum frame (8) is provided on the rotating shaft B (11). It is located on the outside of the mounting plate A (3) where the rotating shaft B (11) is provided. A gear B (13) is provided on the rotating shaft B (11). A gear A (14) meshing with the gear B (13) is provided on the rotating shaft A (9). When there are two I-shaped wheels (10) on the rotating shaft A (9), a rotating shaft B (11) is rotatably inserted on the two mounting plates A (3) below the rotating shaft A (9). A top wheel (12) is provided on the rotating shaft B (11) to clamp the aluminum frame (8) corresponding to the I-shaped wheel (10) on the corresponding side. A gear B (13) is provided on the rotating shaft B (11) on the outside of the mounting plate A (3). A gear A (14) is provided on the rotating shaft A (9) to mesh with the gear B (13). When there are three or more I-shaped wheels (10) on the rotating shaft A (9), a rotating shaft B (11) is rotatably passed through the two mounting plates A (3) below the rotating shaft A (9). A top wheel (12) is provided on the rotating shaft B (11) to clamp the aluminum frame (8) corresponding to each I-shaped wheel (10). A gear B (13) is provided on the rotating shaft B (11) on the outside of at least one mounting plate A (3), and a gear A (14) is provided on the rotating shaft A (9) to mesh with the gear B (13). The rotating shafts A (9) or B (11) corresponding to the meshing gears A (14) and B (13) are connected to the stepper motor (6) via a coupling.
3. A photovoltaic panel aluminum frame glass removal device according to claim 1 or 2, characterized in that: At the end where the aluminum frame (8) begins to be removed from the glass and engages with the clamping structure, the mounting plate A (3) is provided with a guide structure (15) for moving and limiting the aluminum frame (8).
4. The photovoltaic panel aluminum frame glass removal equipment according to claim 3, characterized in that: The guide structure (15) includes a U-shaped plate (16) disposed on the mounting plate A (3), a limiting plate (17) disposed on both sides of the U-shaped plate (16), and an elastic piece (18) disposed on the limiting plate (17) on one side of the mounting plate A (3) to push the aluminum frame (8) toward the limiting plate (17) on the other side.
5. The photovoltaic panel aluminum frame glass removal equipment according to claim 4, characterized in that: The removal structure (5) includes a rotating shaft C (19) that rotates through the two mounting plates A (3), and a razor (20) that is mounted on the rotating shaft C (19) to remove the glass on the aluminum frame (8) held by the clamping structure (4). The rotating shaft C (19) is connected to the motor (7) via a coupling.
6. A photovoltaic panel aluminum frame glass removal device according to claim 1 or 2, characterized in that: The support frame (1) includes multiple sets of support rods (21) arranged opposite to each other. Each set of support rods (21) has at least two support rods (21), a horizontal crossbar (22) and a horizontal vertical bar (23) set on the top of the support rod (21), and an installation rod (24) for installing the mounting plate A (3) is set on the support rod where the horizontal crossbar (22) is set. The support frame (1) is provided with a protective shell (25) to protect the clamping structure (4) and the removal structure (5).
7. The photovoltaic panel aluminum frame glass removal equipment according to claim 6, characterized in that: A shielding plate A (26) is provided on each of the two mounting plates A (3), and a shielding plate B (27) is provided on the mounting rod (24) located between the shielding plates A (26).
8. The photovoltaic panel aluminum frame glass removal equipment according to claim 7, characterized in that: A mounting plate B (28) is also provided on the mounting rod (24), and the stepper motor (6) is mounted on the support frame (1) through the mounting plate B (28); A horizontal vertical mounting rod (29) is provided on the support rod (21) on the opposite side of the stepper motor (6), and a mounting platform (30) is provided on the horizontal vertical mounting rod (29). The motor (7) is mounted on the mounting platform (30).
9. The photovoltaic panel aluminum frame glass removal equipment according to claim 8, characterized in that: A triangular bracket (31) is provided on any support rod (21), and an electrical cabinet (32) for controlling the motor (7) and the stepper motor (6) is provided on the triangular bracket (31). In addition to the triangular bracket (31), the support rod (21) is provided with a diagonal brace (33) to support the mounting rod (24).
10. A photovoltaic panel aluminum frame glass removal device according to claim 8, characterized in that: A handrail (34) is provided on the horizontal vertical mounting rod (29), and a caster (35) is provided on the support rod (21) located on the opposite side of the handrail (34).