A multi-grating photovoltaic module repair device and repair method

By designing a multi-set grating photovoltaic module repair device, a rotary control motor and a clamping and flipping control component are used to achieve multi-point fixing and automatic flipping of the photovoltaic module, which solves the problems of difficult positioning and fixing and low repair efficiency in the existing technology, and improves the continuity and efficiency of the repair work.

CN117207150BActive Publication Date: 2026-01-30江苏悦阳光伏科技有限公司
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Patent Information

Application Number
CN202311035736.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-08-16
Publication Date
2026-01-30
Estimated Expiration
2043-08-16

AI Technical Summary

Technical Problem

In the current photovoltaic panel module repair process, positioning and fixing are difficult, the repair range is limited, the operation is difficult, the work efficiency is low, and frequent disassembly and assembly are required after the repair is completed, which affects the continuity of work.

Method used

Design a multi-group grating photovoltaic module repair device, including a repair worktable, a rotary control motor, a support turntable, a single-point rotation control component, and a clamping and flipping control component. Through the coordinated use of these components, multi-point fixing and automatic flipping adjustment of photovoltaic modules can be achieved, supporting the simultaneous repair of multiple photovoltaic modules.

Benefits of technology

It improves the continuity and efficiency of photovoltaic panel module repair work, reduces the waste of repair time, provides convenient operating conditions, and meets the actual repair work needs.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention relates to the field of photovoltaic module technology, specifically to a multi-grating photovoltaic module repair device and method, including a repair workbench, a rotary control motor, a support turntable, a single-point rotation control component, an auxiliary component, and a clamping and flipping control component. Through the coordinated use of the single-point rotation control component, the auxiliary component, and the clamping and flipping control component, the position of the photovoltaic module can be adjusted according to different operators. Disassembling a repaired photovoltaic module does not delay the repair of another photovoltaic module, providing excellent work continuity, reducing wasted repair time, facilitating operation for repair personnel, and improving repair efficiency while ensuring repair quality.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of photovoltaic cell components, in particular to a multi-group grating photovoltaic component repairing device and method. BACKGROUND

[0002] The existing Chinese patent document with publication number CN208637444U discloses a repairing device applied to multi-main grid photovoltaic components, which provides a repairing device applied to multi-main grid photovoltaic components, comprising: an infrared welding lamp box, a welding heating bottom plate, a first welding bottom plate and a second welding bottom plate, the infrared welding lamp box is used for heating the photovoltaic component to be repaired, the tin layer of the photovoltaic component to be repaired is melted after being heated by the infrared welding lamp box, the first welding bottom plate and the second welding bottom plate are oppositely arranged and horizontally slidably connected on the welding heating bottom plate, the first welding bottom plate is used for fixing the back interconnection strip of the photovoltaic component to be repaired, and the second welding bottom plate is used for fixing the front interconnection strip of the photovoltaic component to be repaired; through the repairing device, the disassembly and reassembly work of the photovoltaic component to be repaired can be realized, time and labor are saved, the repairing process is simple and convenient, the working efficiency is effectively improved, and many variables in the manual repairing process can be avoided, the appearance of the welding position is neat and tidy, the photovoltaic welding component is suitable for various layout structures, and therefore the flexibility is high.

[0003] In the prior art, the photovoltaic panel components that need to be repaired and maintained are generally supported and positioned on a repairing workbench through a positioning structure, and then a worker performs disassembly and repairing work, and the worker repairs and maintains the photovoltaic panel components through corresponding repairing tools; in this process, the photovoltaic panel components are usually fixed horizontally, the repairing range is limited, and in the repairing process, the worker may need to adjust his own position to facilitate the repairing operation, which brings trouble to the worker's repairing work, if the back surface needs to be repaired and operated, the photovoltaic panel component needs to be disassembled and reassembled again for maintenance, which increases the operation difficulty; in addition, after the repairing is completed, the repaired photovoltaic panel component needs to be removed, and then another photovoltaic panel component needs to be installed and positioned for repairing, when the number of photovoltaic panel components to be repaired is large, the operation difficulty is great, there is a lot of intermittent time in the repairing process, which has an impact on the work efficiency, it is difficult to meet the actual repairing work demand, and improvement and optimization are needed.

[0004] Therefore, the present application provides a multi-group grating photovoltaic component repairing device and method to solve the above problems. SUMMARY

[0005] The present application aims to provide a multi-group grating photovoltaic component repairing device and method to solve the problems in the background art.

[0006] In order to achieve the above object, the present application provides the following technical scheme: a multi-group grating photovoltaic module repair device, comprising a repair workbench, a rotary control motor, a support turntable, a single-point rotary control assembly, an auxiliary assembly, and a clamping and overturning control assembly; the rotary control motor is fixedly arranged at the top center of the repair workbench, a rotating shaft is connected to the rotary control motor, the support turntable is fixedly arranged at one end of the rotating shaft, the single-point rotary control assembly is equidistantly arranged on the support turntable, the auxiliary assembly is connected to the single-point rotary control assembly, and the clamping and overturning control assembly is connected to the auxiliary assembly; the clamping and overturning control assembly clamps and fixes the photovoltaic panel assembly.

[0007] Preferably, the single-point rotary control assembly comprises a bearing box, a rotary guide groove, a rotary disc, an annular limiting sliding groove, a rotary auxiliary ball, a limiting threaded hole, a limiting screw, a guide auxiliary ball, a locking threaded hole, a locking threaded column, a knob, a stabilizing protrusion, a support, a horizontal rod, and a vertical cylinder; the bearing box is equidistantly fixedly arranged on the support turntable, the rotary guide groove is arranged at the inner bottom end of the bearing box, the rotary disc is movably arranged in the bearing box, the outer sidewall of the rotary disc is provided with the annular limiting sliding groove, the rotary auxiliary ball is equidistantly movably embedded at the bottom surface of the rotary disc, the limiting threaded hole is equidistantly arranged in the sidewall of the bearing box and is threadedly connected to the limiting screw, the guide auxiliary ball is movably embedded at one end of the limiting screw, the locking threaded hole is arranged in the bearing box and is threadedly connected to the locking threaded column, the knob is fixedly arranged at one end of the locking threaded column, the stabilizing protrusion is equidistantly fixedly arranged at the end surface of the other end of the locking threaded column, the support is fixedly arranged on the rotary disc and is provided with the horizontal rod, the vertical cylinders are symmetrically fixedly arranged on the upper sides of the two ends of the horizontal rod, and the vertical cylinders are connected to the auxiliary assembly.

[0008] Preferably, the rotary auxiliary ball and the rotary guide groove are arranged in a corresponding position, and the rotary auxiliary ball rolls in the rotary guide groove.

[0009] Preferably, the limiting screw, the limiting threaded hole, and the annular limiting sliding groove are arranged in corresponding positions, and the diameter of the limiting screw is equal to the slot width of the annular limiting sliding groove.

[0010] Preferably, the auxiliary assembly comprises a movable insertion rod, an auxiliary spring, a control fastening screw, a fixed body, a placement groove and a fixed disc body; the movable insertion rod is inserted into the vertical cylinder and the end of the movable insertion rod extending into the vertical cylinder is fixedly provided with the auxiliary spring, one end of the auxiliary spring is fixedly provided in the vertical cylinder, the control fastening screw is threadedly connected to one side of the vertical cylinder and the control fastening screw extrudes and locks the movable insertion rod, the fixed disc body is fixedly provided at the top end of the movable insertion rod, the fixed body is fixedly provided at one side of the vertical cylinder and the placement groove is equidistantly provided on the vertical cylinder, and the fixed disc body is connected with the clamping and overturning control assembly.

[0011] Preferably, the fixed body is obliquely provided at the side of the vertical cylinder and one end of the placement groove extends to the side of the fixed body.

[0012] Preferably, the clamping and overturning control assembly comprises a fixed clamping frame, a placement clamping groove, a clamping pressing frame, a connecting threaded groove, a through hole, a connecting screw, a connecting shaft, a limiting convex disc, an extension body, a positioning clamping groove, a positioning clamping pin, a pin head and a connecting spring; the two ends of the fixed clamping frame are symmetrically fixedly provided with the connecting shafts, one of the connecting shafts extends to the outside of the fixed disc body, the end is fixedly provided with the limiting convex disc, the connecting shaft is inserted into the fixed disc body, the placement clamping groove is arranged on the fixed clamping frame, the two sides of the fixed clamping frame are symmetrically provided with the connecting threaded grooves, the two sides of the clamping pressing frame are symmetrically provided with the through holes, the connecting screw is threadedly connected to the connecting threaded grooves through the through holes, one side of the limiting convex disc is integrally formed with the extension body, the positioning clamping pin is movably inserted into the extension body, one end of the positioning clamping pin extends to the outside of the extension body and the end is fixedly provided with the pin head, the connecting spring is fixedly provided at one end of the pin head, and one end of the connecting spring is fixedly provided on the extension body.

[0013] Preferably, the positioning clamping groove is arranged at a position corresponding to the positioning clamping pin, the positioning clamping groove is a circular groove and the positioning clamping groove is adapted to be clamped with the positioning clamping pin.

[0014] Preferably, the clamping pressing frame and the fixed clamping frame are arranged at positions corresponding to each other and cooperate to form a stable placement frame body, and the stable placement frame body clamps and fixes the photovoltaic panel assembly.

[0015] A use method of a multi-group grating photovoltaic assembly repairing device, the use method comprises the following steps:

[0016] The photovoltaic panel assembly is placed in the placing groove on the fixed clamping frame in the clamping and overturning control assembly, and then the photovoltaic panel assembly is tightly fixed by the clamping pressure frame, four groups of single-point rotary control assemblies are equidistantly arranged on the supporting turntable, four photovoltaic panel assemblies can be simultaneously fixed on the supporting turntable when the staff uses the repair tool to repair, the single-point rotary control assembly is used in cooperation with the auxiliary assembly and the clamping and overturning control assembly, the position of the photovoltaic panel assembly can be adjusted, the position is adjusted according to different operators, the working continuity is good, the continuity of the repair work is ensured, and convenience is brought to the staff.

[0017] Compared with the prior art, the photovoltaic panel assembly repair device has the beneficial effects that:

[0018] The photovoltaic panel assembly repair device is designed, four photovoltaic panel assemblies can be simultaneously fixed on the supporting turntable when the staff uses the repair tool to repair, the single-point rotary control assembly is used in cooperation with the auxiliary assembly and the clamping and overturning control assembly, the position of the photovoltaic panel assembly can be adjusted, the position is adjusted according to different operators, multiple staff can simultaneously repair on the workbench during operation, after one repair is completed, the staff does not need to walk to another position of the photovoltaic panel assembly to be repaired, the next photovoltaic panel assembly to be repaired is automatically moved to the repair work position point through rotation of the supporting turntable driven by the rotary control motor, in addition, when the repaired photovoltaic panel assembly is disassembled, the repair work of another photovoltaic panel assembly to be repaired is not affected, the working continuity is good, the waste of repair working hours is reduced, the operation of the repair staff is facilitated, the repair quality is ensured, the repair work efficiency is improved, and the actual repair work demand is met. BRIEF DESCRIPTION OF DRAWINGS

[0019] Figure 1 It is a structure connection schematic view of the photovoltaic panel assembly repair device of the present application;

[0020] Figure 2 It is a structure connection enlarged schematic view of A in the present application; Figure 1

[0021] Figure 3 It is a structure connection partial sectional view of the repair device of the present application;

[0022] Figure 4 It is a structure connection top view of the single-point rotary control assembly of the present application;

[0023] Figure 5 It is a structure connection bottom view of the single-point rotary control assembly of the present application;

[0024] Figure 6 It is a structure connection enlarged schematic view of A in the present application; Figure 5 ​Structure connection enlarged schematic view at A in the figure;

[0025] Figure 7 Structure connection schematic view of the clamping and overturning control assembly and the auxiliary assembly of the application;

[0026] Figure 8 Structure connection schematic view of the clamping and overturning control assembly and the auxiliary assembly of the application; Figure 7 Structure connection enlarged schematic view at A in the figure;

[0027] Figure 9 Structure connection schematic view of the clamping and overturning control assembly and the auxiliary assembly of the application; Figure 7 Structure connection enlarged schematic view at B in the figure.

[0028] In the figure: repair workbench 1, rotary control motor 2, rotating shaft 3, supporting turntable 4, photovoltaic panel assembly 5, single-point rotary control assembly 6, bearing circular box 601, rotary guide groove 602, rotary disc 603, annular limiting sliding groove 604, rotary auxiliary ball 605, limiting screw hole 606, limiting screw 607, guide auxiliary ball 608, locking screw hole 609, locking threaded column 610, knob 611, stabilizing protrusion 612, supporting member 613, horizontal rod 614, vertical cylinder 615, auxiliary assembly 7, movable insertion rod 701, auxiliary spring 702, control fastening screw 703, fixed body 704, placement groove 705, fixed disc body 706, clamping and overturning control assembly 8, fixed clamping frame 801, placement clamping groove 802, clamping pressing frame 803, connecting threaded groove 804, through hole 805, connecting screw 806, connecting shaft 807, limiting protruding disc 808, extension body 809, positioning clamping groove 810, positioning clamping pin 811, pin head 812, connecting spring 813. DETAILED DESCRIPTION

[0029] The technical solutions in the embodiments of the application will be described clearly and completely below. All other embodiments obtained by those of ordinary skill in the art without creative labor on the basis of the embodiments in the application belong to the protection scope of the application.

[0030] Please refer to Figures 1-9 The application provides the following technical scheme: a multi-group photovoltaic panel repair device, comprising a repair workbench 1, a rotary control motor 2, a supporting turntable 4, a single-point rotary control assembly 6, an auxiliary assembly 7, and a clamping and overturning control assembly 8; the rotary control motor 2 is fixedly arranged at the top center of the repair workbench 1; the rotating shaft 3 is connected to the rotary control motor 2; the supporting turntable 4 is fixedly arranged at one end of the rotating shaft 3; the single-point rotary control assembly 6 is equidistantly arranged on the supporting turntable 4; the auxiliary assembly 7 is connected to the single-point rotary control assembly 6; the auxiliary assembly 7 is connected to the clamping and overturning control assembly 8; and the clamping and overturning control assembly 8 clamps and fixes the photovoltaic panel assembly 5.

[0031] Please refer to Figure 7 and Figure 9 Preferably, the clamping and overturning control assembly 8 comprises a fixed clamping frame 801, a placing clamping groove 802, a clamping pressing frame 803, a connecting threaded groove 804, a through hole 805, a connecting screw 806, a connecting shaft 807, a limiting convex disc 808, an extension body 809, a positioning clamping groove 810, a positioning clamping pin 811, a pin head 812, a connecting spring 813; the two ends of the fixed clamping frame 801 are symmetrically provided with the connecting shaft 807, and one of the connecting shafts 807 extends to the outside of the fixed disc body 706, and the end is fixedly provided with the limiting convex disc 808; the connecting shaft 807 is inserted into the fixed disc body 706; the fixed clamping frame 801 is provided with the placing clamping groove 802, and the two sides of the fixed clamping frame 801 are symmetrically provided with the connecting threaded groove 804; the two sides of the clamping pressing frame 803 are symmetrically provided with the through hole 805; the connecting screw 806 is threadedly connected with the connecting threaded groove 804 through the through hole 805; one side of the limiting convex disc 808 is integrally provided with the extension body 809; the positioning clamping pin 811 is movably inserted into the extension body 809; one end of the positioning clamping pin 811 extends to the outside of the extension body 809, and the end is fixedly provided with the pin head 812; the pin head 812 is fixedly provided with the connecting spring 813 at the end connected with the positioning clamping pin 811; one end of the connecting spring 813 is fixedly provided on the extension body 809; the positioning clamping grooves 810 are equidistantly arranged on the limiting convex disc 808; preferably, the positioning clamping groove 810 corresponds to the setting position of the positioning clamping pin 811, and the positioning clamping groove 810 is a circular groove; the positioning clamping groove 810 is matched with the positioning clamping pin 811; preferably, the clamping pressing frame 803 corresponds to the setting position of the fixed clamping frame 801, and the two form a stable placing frame body; the stable placing frame body clamps and fixes the photovoltaic panel assembly 5; the photovoltaic panel assembly 5 is placed in the placing clamping groove 802 on the fixed clamping frame 801 in the clamping and overturning control assembly 8, and then the photovoltaic panel assembly 5 is pressed tightly by the clamping pressing frame 803, and then connected and fixed by the connecting screw 806; when the staff uses the repair tool to repair, four photovoltaic panel assemblies 5 can be simultaneously installed and fixed on the supporting turntable 4; when the photovoltaic panel assembly 5 needs to be overturned and adjusted, first pull the pin head 812, so that the positioning clamping pin 811 is separated from the positioning clamping groove 810 on the limiting convex disc 808, the position of the fixed clamping frame 801 is positioned, and then the photovoltaic panel assembly 5 can be overturned and adjusted; when the required overturning angle is reached, the pin head 812 is loosened; the positioning clamping pin 811 is clamped with the positioning clamping groove 810 on the limiting convex disc 808 in the rebounding action of the connecting spring 813, so that the position of the fixed clamping frame 801 is positioned, the overturning adjustment of the photovoltaic panel assembly 5 is completed, and the staff's repair work is facilitated.

[0032] Please refer to Figure 3 andFigure 7, preferably, the single-point rotating control assembly 6 comprises a bearing circular box 601, a rotating guide groove 602, a rotating disc 603, an annular limiting sliding groove 604, a rotating auxiliary ball 605, a limiting screw hole 606, a limiting screw 607, a guide auxiliary ball 608, a locking screw hole 609, a locking screw column 610, a knob 611, a stabilizing protrusion 612, a support 613, a horizontal rod 614, and a vertical cylinder 615; the bearing circular box 601 is fixedly arranged on the support turntable 4 at equal intervals, and the inner bottom end of the bearing circular box 601 is provided with the rotating guide groove 602; the rotating disc 603 is movably arranged in the bearing circular box 601, and the outer side wall of the rotating disc 603 is provided with the annular limiting sliding groove 604; the bottom end face of the rotating disc 603 is movably connected with the rotating auxiliary ball 605 at equal intervals; the limiting screw hole 606 is arranged in the side wall of the bearing circular box 601 at equal intervals, and the limiting screw hole 606 is threadedly connected with the limiting screw 607; one end of the limiting screw 607 is movably connected with the guide auxiliary ball 608; the locking screw hole 609 is arranged in the bearing circular box 601, and the locking screw hole 609 is threadedly connected with the locking screw column 610; one end of the locking screw column 610 is fixedly provided with the knob 611, and the other end is fixedly provided with the stabilizing protrusion 612 at equal intervals; the support 613 is fixedly arranged on the rotating disc 603, and the support 613 is fixedly provided with the horizontal rod 614; the horizontal rod 614 is symmetrically fixedly provided with the vertical cylinder 615 on the upper sides of the two ends; the vertical cylinder 615 is connected with the auxiliary assembly 7; preferably, the rotating auxiliary ball 605 corresponds to the position of the rotating guide groove 602, and the rotating auxiliary ball 605 rolls in the rotating guide groove 602; preferably, the limiting screw 607 corresponds to the positions of the limiting screw hole 606 and the annular limiting sliding groove 604, and the diameter of the limiting screw 607 is equal to the slot width of the annular limiting sliding groove 604; preferably, the auxiliary assembly 7 comprises a movable plug rod 701, an auxiliary spring 702, a control fastening screw 703, a fixed body 704, a placement groove 705, and a fixed disc body 706; the movable plug rod 701 is telescopically connected with the vertical cylinder 615, and the end of the movable plug rod 701 extending into the vertical cylinder 615 is fixedly provided with the auxiliary spring 702; one end of the auxiliary spring 702 is fixedly arranged in the vertical cylinder 615; the control fastening screw 703 is threadedly arranged on one side of the vertical cylinder 615, and the control fastening screw 703 extrudes and locks the movable plug rod 701; the fixed disc body 706 is fixedly arranged at the top end position of the movable plug rod 701; the fixed body 704 is fixedly arranged on one side of the vertical cylinder 615, and the vertical cylinder 615 is movably provided with the placement groove 705; the fixed disc body 706 is connected with the clamping and overturning control assembly 8; preferably, the fixed body 704 is obliquely arranged on the side of the vertical cylinder 615, and one end of the placement groove 705 extends to the side position of the fixed body 704.During the repairing process, the supporting and fixing height of the photovoltaic panel assembly 5 and the rotating angle in the horizontal direction are regulated according to the height of different workers and the repairing posture, the movable inserting rod 701 is movably inserted in the vertical cylinder 615, the height position of the movable inserting rod 701 is changed by changing the position of the movable inserting rod 701 in the vertical cylinder 615, then the movable inserting rod 701 is extruded and locked by the regulating and fastening screw 703, the operation is simple, and during the actual operation process, the small parts used or replaced can be temporarily placed in the placing groove 705 on the fixed body 704, so as to facilitate the workers to find and use the small parts and avoid the loss problem, the fixed body 704 is inclined, and the slot opening of the placing groove 705 extends to the side position of the fixed body 704, so as to facilitate the workers to take and store, further bringing convenience to the operation of the workers; then the rotating regulation of the horizontal direction is realized by rotating the disc 603 on the rotating setting of the bearing circular box 601, and the disc 603 is extruded and locked by the locking screw column 610, so as to ensure the stability after the regulation; during the operation process, multiple workers can simultaneously perform the repairing work on the workbench, and after the repairing of one is completed, the worker does not need to walk to another position of the photovoltaic panel assembly 5 to be repaired, the rotation of the supporting turntable 4 is driven by the rotating control motor 2, and the next photovoltaic panel assembly 5 to be repaired is automatically moved to the repairing work position; in addition, when the repaired photovoltaic panel assembly 5 is disassembled, the repairing work of another photovoltaic panel assembly 5 to be repaired is not affected, the work continuity is good, the waste of repairing working hours is reduced, and the operation of the repairing worker is facilitated.

[0033] Although the embodiments of the present application have been shown and described, it is to be understood that various changes, modifications, substitutions and alterations can be made to the embodiments without departing from the principles and spirit of the present application, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A multi-group grating photovoltaic module repair device, characterized in that: The utility model provides a photovoltaic module repair device, including repair workbench (1), rotation control motor (2), support turntable (4) and single point rotary control assembly (6), auxiliary assembly (7), clamping overturning control assembly (8), repair workbench (1) top center position inlay fixedly set up with rotation control motor (2), rotation control motor (2) is connected and is provided with the pivot (3), and one end of pivot (3) is fixedly set up with support turntable (4), and support turntable (4) is provided with single point rotary control assembly (6) equidistantly, and single point rotary control assembly (6) is connected and is provided with auxiliary assembly (7), and auxiliary assembly (7) is connected with clamping overturning control assembly (8), and clamping overturning control assembly (8) carries out clamping fixed to photovoltaic module (5); The single point rotary control assembly (6) includes a bearing circular box (601), a rotary guide slot (602), a rotary disc (603), an annular limiting sliding groove (604), a rotary auxiliary ball (605), a limiting threaded hole (606), a limiting screw (607), a guide auxiliary ball (608), a locking threaded hole (609), a locking threaded column (610), a knob (611), a stabilizing protrusion (612), a support piece (613), a horizontal rod (614), and a vertical cylinder (615). The bearing circular box (601) is fixedly provided on the support turntable (4) equidistantly, and the rotary guide slot (602) is arranged at the inner bottom end of the bearing circular box (601). The rotary disc (603) is movably arranged in the bearing circular box (601), and the annular limiting sliding groove (604) is arranged on the outer side wall of the rotary disc (603). The rotary auxiliary ball (605) is movably arranged in the limiting threaded hole (606) equidistantly. The limiting threaded hole (606) is screw-connected with the limiting screw (607) in a threaded manner. The guide auxiliary ball (608) is movably arranged at one end of the limiting screw (607). The locking threaded hole (609) is arranged in the bearing circular box (601), and the locking threaded column (610) is screw-connected in the locking threaded hole (609). One end of the locking threaded column (610) is fixedly provided with the knob (611), and the other end is fixedly provided with the stabilizing protrusion (612) equidistantly. The support piece (613) is fixedly arranged on the rotary disc (603), and the horizontal rod (614) is fixedly arranged on the support piece (613). The vertical cylinder (615) is symmetrically fixedly arranged on the two ends of the horizontal rod (614). The vertical cylinder (615) is connected with the auxiliary assembly (7). The auxiliary assembly (7) comprises a movable plug rod (701), an auxiliary spring (702), a regulating fastening screw (703), a fixed body (704), a placing groove (705), and a fixed disc body (706); the movable plug rod (701) is inserted into the vertical cylinder (615) and the end of the movable plug rod (701) extending into the vertical cylinder (615) is fixedly provided with the auxiliary spring (702), one end of the auxiliary spring (702) is fixedly provided in the vertical cylinder (615), the regulating fastening screw (703) is threadedly connected to one side of the vertical cylinder (615) and the regulating fastening screw (703) extrudes and locks the movable plug rod (701), the fixed disc body (706) is fixedly provided at the top end of the movable plug rod (701), the fixed body (704) is fixedly provided at one side of the vertical cylinder (615) and the vertical cylinder (615) is provided with the placing grooves (705) at equal intervals, and the fixed disc body (706) is connected with the clamping and overturning control assembly (8).

2. A multi-packaged photonic band gap photovoltaic module repair device according to claim 1, wherein: The rotating auxiliary ball (605) is arranged in the rotating guide groove (602) and rolls in the rotating guide groove (602).

3. A multi-packaged photonic band gap photovoltaic module repair device according to claim 1, wherein: The limiting screw (607) is arranged in the limiting threaded hole (606) and the annular limiting sliding groove (604) and the diameter of the limiting screw (607) is equal to the width of the annular limiting sliding groove (604).

4. A multi-packaged photonic band gap photovoltaic module repair apparatus according to claim 1, wherein: The fixed body (704) is obliquely arranged at the side of the vertical cylinder (615) and one end of the placing groove (705) extends to the side of the fixed body (704).

5. A multi-packaged photonic band gap photovoltaic module repair device according to claim 1, wherein: The clamping and overturning control assembly (8) comprises a fixed clamping frame (801), a placing clamping groove (802), a clamping pressing frame (803), a connecting threaded groove (804), a through hole (805), a connecting screw (806), a connecting shaft (807), a limiting convex disc (808), an extension body (809), a positioning clamping groove (810), a positioning clamping pin (811), a pin head (812), and a connecting spring (813). The two ends of the fixed clamping frame (801) are symmetrically provided with the connecting shaft (807), and one of the connecting shafts (807) extends to the outside of the fixed disc body (706). The end part is fixedly provided with the limiting convex disc (808). The connecting shaft (807) is inserted into the fixed disc body (706). The fixed clamping frame (801) is provided with the placing clamping groove (802). The two sides of the fixed clamping frame (801) are symmetrically provided with the connecting threaded groove (804). The two sides of the clamping pressing frame (803) are symmetrically provided with the through hole (805). The connecting screw (806) is threadedly connected with the connecting threaded groove (804) through the through hole (805). One side of the limiting convex disc (808) is integrally provided with the extension body (809). The extension body (809) is movably inserted with the positioning clamping pin (811). One end of the positioning clamping pin (811) extends to the outside of the extension body (809). The end part is fixedly provided with the pin head (812). The pin head (812) is fixedly provided with the connecting spring (813) at the end connected with the positioning clamping pin (811). One end of the connecting spring (813) is fixedly provided on the extension body (809). The positioning clamping grooves (810) are equidistantly arranged on the limiting convex disc (808).

6. A multi-packaged photonic band gap photovoltaic module repair device according to claim 5, wherein: The positioning clamping groove (810) and the positioning clamping pin (811) are arranged in a corresponding position. The positioning clamping groove (810) is a circular groove. The positioning clamping groove (810) is matched with the positioning clamping pin (811) for clamping.

7. A multi-packaged photonic band gap photovoltaic module repair device according to claim 5, wherein: The clamping pressing frame (803) and the fixed clamping frame (801) are arranged in a corresponding position. The two are matched to form a stable placing frame body. The stable placing frame body clamps and fixes the photovoltaic panel assembly (5).

8. A method of using a multi-pack of the photovoltaic module repair apparatus of any one of claims 1-7, wherein, The use method is: The photovoltaic panel assembly (5) is placed in the placing clamping groove (802) on the fixed clamping frame (801) in the clamping and overturning control assembly (8). Then the photovoltaic panel assembly (5) is tightly fixed by the clamping pressing frame (803). Four single-point rotary control assemblies (6) are equidistantly arranged on the supporting turntable (4). When the staff uses the repair tool to repair, four photovoltaic panel assemblies (5) can be simultaneously installed and fixed on the supporting turntable (4). The single-point rotary control assembly (6) is matched with the auxiliary assembly (7) and the clamping and overturning control assembly (8) for position control of the photovoltaic panel assembly (5). According to different operators, the position is adjusted accordingly. The work continuity is good, the continuity of the repair work is guaranteed, and convenience is brought to the staff.

Citation Information

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