Rapid installation device for photovoltaic module

Through the combination of lifting parts, auxiliary parts and guide parts, the pulley set and cylinder are used to drive the photovoltaic panel to slide into the installation position, solving the problem of cumbersome installation and safety hazards of photovoltaic modules, and achieving an efficient and safe installation process.

CN223225654UActive Publication Date: 2025-08-15SHANXI INSTALLATION GRP CO LTD
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Patent Information

Application Number
CN202422598457.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-28
Publication Date
2025-08-15
Estimated Expiration
2034-10-28

AI Technical Summary

Technical Problem

The installation process of existing photovoltaic modules is cumbersome, inefficient, and has safety hazards on steep terrain.

Method used

The combination device of lifting parts, auxiliary parts and guides is adopted, and the pulley set and cylinder are used to drive the photovoltaic panel to slide into the installation position, so that the guides are positioned to avoid manual high-altitude operation.

Benefits of technology

It improves installation efficiency, reduces manpower and material resources, ensures the safety and simplicity of the installation process, and is suitable for different terrains.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of photovoltaic equipment, in particular to a rapid installation device for a photovoltaic module, which is used for rapidly installing a photovoltaic panel on a photovoltaic support and comprises a hoisting piece, an auxiliary piece and a guide piece, the hoisting piece is inserted into the upper end of the upper surface of the photovoltaic support, and the auxiliary piece is inserted into the lower end of the upper surface of the photovoltaic support. The guide parts are movably arranged between the hoisting part and the auxiliary part, the two groups of guide parts are oppositely arranged and fixedly connected, each group of guide parts comprises two oppositely arranged guide plates, the photovoltaic panel is located between the two guide plates of one group of guide parts, the photovoltaic panel is in sliding connection with the guide plates, a plurality of pulleys are arranged in the hoisting part, a hoisting rope is wound on the pulleys, and the hoisting rope is connected with the hoisting part. One end of the lifting rope is fixedly connected with the photovoltaic panel, and the other end extends to one end away from the photovoltaic support. According to the utility model, the photovoltaic panel is pulled to slide into the corresponding installation position through the arranged pulley block, and the photovoltaic panel is guided and positioned through the guide piece, so that the installation efficiency is high, and time and labor are saved.
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Description

Technical Field

[0001] The utility model relates to the technical field of photovoltaic equipment, in particular to a photovoltaic component quick installation device. Background Art

[0002] With the saturation of my country's power construction, the construction of existing coal-fired units has gradually decreased, and new energy power generation has become the main direction of power construction. Among them, photovoltaic power generation is one of the main power sources for the construction of new energy power stations. One of the main tasks of photovoltaic power generation construction is the installation of photovoltaic modules. Photovoltaic project construction has the characteristics of "short, flat and fast". The project construction cycle is short and the grid-connected time requirements are high. Therefore, there are high requirements for the installation efficiency of photovoltaic equipment and components. At the same time, in some photovoltaic plant areas with steeper terrain, the installation location of photovoltaic modules is relatively rugged. The use of traditional installation methods may lead to slower installation progress, and it is prone to safety accidents and material damage incidents, and the installation efficiency is low.

[0003] In the existing technology, since photovoltaic panels usually need to be installed at a higher position, the photovoltaic bracket is generally installed first. One worker delivers the photovoltaic panels on the ground, and another worker receives the photovoltaic panels on the photovoltaic bracket, and then the photovoltaic panels are installed on the photovoltaic bracket. However, due to the elevated installation position, the installation steps are cumbersome and require a lot of manpower and material resources. In addition, the terrain in the area where photovoltaic power generation is installed is poor, and it is dangerous and inconvenient for workers to perform installation operations on the photovoltaic bracket. Utility Model Content

[0004] The main purpose of the utility model is to provide a photovoltaic module quick installation device, which can effectively solve the above problems.

[0005] The utility model provides the following technical solution: a photovoltaic component quick installation device for quickly installing a photovoltaic panel on a photovoltaic bracket, comprising a lifting member, an auxiliary member and a guide member, the lifting member comprising an upper mounting block, the upper mounting block is plugged into the cross beam at the upper end of the photovoltaic bracket, the auxiliary member is plugged into the cross beam at the lower end of the photovoltaic bracket, and the two ends of the guide member are respectively overlapped with the cross beams at the upper and lower ends of the photovoltaic bracket. The guide members are provided with two groups in total, and the lifting member and the auxiliary member are arranged between the two groups of guide members, each group of guide members comprises two symmetrically arranged guide plates, the photovoltaic panel is located between the two groups of guide members and is slidably connected to the guide plates. A first pulley and a second pulley are provided in the lifting member, the first pulley is connected to the upper mounting block, and the second pulley is arranged on the ground near one side of the first pulley, a lifting rope is wound around the first pulley and the second pulley, one end of the lifting rope is fixedly connected to the photovoltaic panel, and the other end extends to one end away from the photovoltaic bracket.

[0006] Furthermore, the auxiliary component includes a lower mounting block, which is plugged into and fixedly connected to the beam set at the lower edge of the photovoltaic bracket, and the end of the guide plate is slidably connected to the beam located at the upper or lower end of the photovoltaic bracket.

[0007] Furthermore, a moving block is fixedly provided at one end of the guide plate, a guide bar is fixedly provided on the moving block, the guide bar extends to the other end of the guide plate, the cross-section of the guide plate is L-shaped, a guide groove is formed between the two side walls of the guide bar, the side of the guide bar close to the other group of guide plates is a slope, and the photovoltaic panel is located between the two guide grooves of the two groups of guide members and is slidably connected to the guide grooves.

[0008] Furthermore, two first cylinders are symmetrically provided at both ends of the upper mounting block, and two second cylinders are symmetrically provided at both ends of the lower mounting block, and the piston rod ends of the first cylinder and the second cylinder are fixedly connected to the moving blocks of the corresponding guide plates.

[0009] Furthermore, a splicing groove is provided on the outer side of one end of the guide bar away from the moving block, a connecting column is fixedly arranged in the splicing groove, the ends of the two guide bars in the same group of guide parts are aligned, and the corresponding two splicing grooves are connected to form an installation groove, a splicing plate is inserted in the installation groove, and the splicing plates are respectively inserted into the corresponding connecting columns and fixedly connected by nuts.

[0010] Furthermore, the lifting component also includes a support block and a connecting block. The support block is fixedly set on the ground, and a support frame is fixedly set on the middle part of the upper end of the upper mounting block. A first pulley is rotatably set on the upper part of the support frame, and a second pulley is rotatably set on the upper part of the support block. One end of the lifting rope is fixedly connected to the connecting block, and the other end passes around the first pulley and the second pulley in sequence and extends to one end away from the photovoltaic bracket. The end of the connecting block away from the lifting rope is fixedly and detachably connected to the photovoltaic panel.

[0011] Furthermore, the auxiliary part also includes two auxiliary plates, which are symmetrically arranged at the lower part of the lower mounting block away from the lifting part. The upper ends of the auxiliary plates are rotatably connected to the lower mounting block, and the lower ends of the auxiliary plates are slidably provided with support members. The support members are telescopically connected to the auxiliary plates and fastened by tightening screws, and the lower ends of the support members are in contact with or separated from the ground.

[0012] Furthermore, a plurality of first auxiliary wheels are rotatably arranged at intervals in the middle of the auxiliary panel, a plurality of second auxiliary wheels are rotatably arranged at intervals on the side of the lower mounting block away from the lifting member, and a third auxiliary wheel is rotatably arranged on the movable blocks on both sides of the auxiliary member. The first auxiliary wheel, the second auxiliary wheel and the third auxiliary wheel are arranged on the same side, and the photovoltaic panel is rollingly connected to the first auxiliary wheel, the second auxiliary wheel and the third auxiliary wheel.

[0013] Furthermore, a scale bar is provided on a side of the guide bar away from the guide groove.

[0014] Compared with the prior art, the present invention has the following beneficial effects:

[0015] 1. In the utility model, the photovoltaic panel is pulled into the corresponding installation position by the pulley set, which is more labor-saving than the traditional installation method. The photovoltaic panel is guided and positioned by the guide member. After it is in place, the guide plate is moved to transfer the photovoltaic panel from the guide plate to the beam. The installation efficiency is high, and there is no need for workers to climb onto the photovoltaic bracket to manually connect the photovoltaic panel, which saves time and effort and protects the safety of workers.

[0016] 2. In the present invention, the auxiliary parts provided can prevent the photovoltaic panels from colliding with the photovoltaic brackets during the installation process. The auxiliary wheels provided can make the process of transferring the photovoltaic panels from the ground to the guide parts smoother. In addition, all components are detachably connected and easy to use, making the installation steps of the entire photovoltaic panel more concise.

[0017] 3. In the present invention, the auxiliary plate is rotatably connected to the lower mounting block, which is suitable for photovoltaic brackets with different inclination angles, and the sliding support is fixed relative to the auxiliary plate by tightening the screws, which is suitable for photovoltaic brackets of different heights, making the entire device more applicable. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] The present invention will be further described below with reference to the accompanying drawings.

[0019] Figure 1 This is a schematic diagram of the structure of the utility model;

[0020] Figure 2 for Figure 1 A in the middle is an enlarged schematic diagram;

[0021] Figure 3 This is a structural schematic diagram of another perspective of the utility model;

[0022] Figure 4 This is a schematic diagram of the connection structure between the lifting member and the corresponding guide member of the utility model;

[0023] Figure 5 This is a schematic diagram of the connecting block structure of the utility model;

[0024] Figure 6 This is a schematic diagram of the connection structure between the auxiliary member and the corresponding guide member of the utility model;

[0025] Figure 7 for Figure 6 The enlarged schematic diagram of point B in the middle;

[0026] Figure 8 This is a right view of the connection structure between the auxiliary part and the corresponding guide part of the utility model.

[0027] 1. Photovoltaic support; 12. Vertical column; 13. Inclined beam; 14. Horizontal beam; 2. Lifting parts; 21. Upper mounting block; 211. Support frame; 212. Upper mounting slot; 22. First pulley; 23. Support block; 24. Second pulley; 25. First cylinder; 26. Connecting block; 261. Slot; 262. Connecting ring; 27. Lifting rope; 3. Auxiliary parts; 31. Lower mounting block; 311. Lower mounting slot; 32. Auxiliary plate; 32 1. Slide groove; 322. First auxiliary wheel; 33. Support member; 331. Support plate; 332. Bottom plate; 333. Tighten screws; 34. Second auxiliary wheel; 35. Second cylinder; 4. Guide member; 41. Guide plate; 411. Moving block; 412. Guide bar; 413. Scale bar; 414. Guide groove; 415. Third auxiliary wheel; 416. Splicing groove; 417. Connecting column; 42. Splicing plate; 5. Photovoltaic panel. DETAILED DESCRIPTION

[0028] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0029] Specific implementation examples Figure 1-6 As shown: A photovoltaic assembly quick installation device is used to quickly install a photovoltaic panel 5 on a photovoltaic bracket 1, including a hanging piece 2, an auxiliary piece 3 and a guide piece 4. The hanging piece 2 includes an upper mounting block 21, which is plugged into the crossbeam 14 at the upper end of the photovoltaic bracket 1. The auxiliary piece 3 is plugged into the crossbeam 14 at the lower end of the photovoltaic bracket 1. The two ends of the guide piece 4 are respectively overlapped with the crossbeam 14 at the upper end and the lower end of the photovoltaic bracket 1. There are two groups of guide pieces 4. The hanging piece 2 and the auxiliary piece 3 are set between the two groups of guide pieces 4 Each set of guide members 4 includes two symmetrically arranged guide plates 41. The photovoltaic panel 5 is located between the two sets of guide members 4 and is slidably connected to the guide plates 41. The hanging member 2 is provided with a first pulley 22 and a second pulley 24. The first pulley 22 is connected to the upper mounting block 21. The second pulley 24 is arranged on the ground near the side of the first pulley 22. A hanging rope 27 is wound around the first pulley 22 and the second pulley 24. One end of the hanging rope 27 is fixedly connected to the photovoltaic panel 5, and the other end extends to the end away from the photovoltaic bracket 1.

[0030] Furthermore, the photovoltaic bracket 1 includes a plurality of inclined beams 13, which are arranged on the ground at intervals through columns 12, and a plurality of cross beams 14 are arranged on the upper surface of the inclined beams 13 at intervals along the length direction of the inclined beams 13. The cross beams 14 and the inclined beams 13 are perpendicular to each other. An upper mounting groove 212 is provided on the side of the upper mounting block 21 close to the auxiliary part 3. The upper mounting groove 212 is plugged into the cross beam 14 at the upper edge of the inclined beam 13 and fixedly connected by screws. The auxiliary part 3 includes a lower mounting block 31, and a lower mounting groove 311 is provided on the side of the lower mounting block 31 close to the hanging part 2. The lower mounting groove 311 is plugged into and fixedly connected to the cross beam 14 at the lower edge of the inclined beam 13. The end of the guide plate 41 is slidably connected to the cross beam 14 located at the upper or lower end of the photovoltaic bracket 1, and the upper part of the end of the lower mounting block 31 away from the hanging part 2 is arc-shaped.

[0031] Furthermore, the guide plate 41 is arranged parallel to the inclined beam 13, and a moving block 411 is fixedly provided at one end of the guide plate 41, and a guide bar 412 is fixedly provided on the moving block 411, and the guide bar 412 extends to the other end of the guide plate 41, and the cross-section of the guide plate 41 is L-shaped, and a guide groove 414 is formed between the two side walls of the guide bar 412. The side of the guide bar 412 close to the other group of guide plates 41 is an inclined surface, which can prevent the photovoltaic panel 5 from colliding when falling from the guide groove 414 to the beam 14, thereby avoiding damage to the photovoltaic panel 5. The photovoltaic panel 5 is located between the two guide grooves 414 of the two groups of guide members 4 and is slidably connected to the guide groove 414.

[0032] Furthermore, two first cylinders 25 are symmetrically provided at both ends of the upper mounting block 21, and two second cylinders 35 are symmetrically provided at both ends of the lower mounting block 31. The piston rod ends of the first cylinder 25 and the second cylinder 35 are fixedly connected to the moving block 411 of the corresponding guide plate 41.

[0033] Furthermore, a splicing groove 416 is provided on the outer side of the end of the guide bar 412 away from the moving block 411, and a connecting column 417 is fixedly arranged in the splicing groove 416. The ends of the two guide bars 412 in the same group of guide members 4 are aligned, and the corresponding two splicing grooves 416 are connected to form an installation groove, and a splicing plate 42 is inserted into the installation groove. The splicing plates 42 are respectively plugged into the corresponding connecting columns 417 and fixedly connected by nuts. The upper part of the end of the moving block 411 away from the lifting member 2 is arc-shaped.

[0034] Furthermore, the lifting member 2 also includes a support block 23 and a connecting block 26. The support block 23 is fixedly set on the ground, and a support frame 211 is fixedly set in the middle of the upper end of the upper mounting block 21. The first pulley 22 is rotatably set on the upper part of the support frame 21, and the second pulley 24 is rotatably set on the upper part of the support block 23. A connecting ring 262 is fixedly set on the end of the connecting block 26 close to the lifting member 2. One end of the lifting rope 27 is fixedly connected to the connecting ring 262, and the other end passes around the first pulley 22 and the second pulley 24 in turn and extends to the end away from the photovoltaic bracket 1. The lifting rope 27 can be pulled by manpower or connected to an electrical device such as a winder. A slot 261 is opened at the end of the connecting block 26 away from the lifting rope 27, and the slot 261 is plugged into the photovoltaic panel 5 and fixedly connected by bolts.

[0035] Furthermore, the auxiliary part 3 also includes two auxiliary plates 32, which are symmetrically arranged at the lower part of the lower mounting block 31 away from the end of the lifting part 2, the upper end of the auxiliary plate 32 is rotatably connected to the lower mounting block 31, and a sliding groove 321 is provided on the lower surface of the auxiliary plate 32. A supporting plate 331 is fixedly provided on the upper end of the support member 33, and the supporting plate 331 is inserted into the sliding groove 321 and slidably connected to the sliding groove 321. A bottom plate 332 is fixedly provided at the lower end of the support plate 331, and the lower surface of the bottom plate 332 abuts or separates from the ground, and a sliding hole is provided on the outer side of the sliding groove 321 The cam 331 is fixed to the upper and lower frames 321 so that the cam 332 can be fixed to the upper and lower frames 321 at the same time.

[0036] Furthermore, a plurality of first auxiliary wheels 322 are rotatably provided at intervals in the middle of the auxiliary plate 32, a plurality of second auxiliary wheels 34 are rotatably provided at intervals on the side of the lower mounting block 31 away from the lifting member 2, and a third auxiliary wheel 415 is rotatably provided on the moving blocks 411 on both sides of the auxiliary member 3. The first auxiliary wheel 322, the second auxiliary wheel 34 and the third auxiliary wheel 415 are arranged on the same side, and the photovoltaic panel 5 is rollingly connected to the first auxiliary wheel 322, the second auxiliary wheel 34 and the third auxiliary wheel 415. The auxiliary member 3 can prevent the photovoltaic panel 5 from colliding with the photovoltaic bracket 1 during installation. The auxiliary wheels can make the process of transferring the photovoltaic panel 5 from the ground to the guide member 4 smoother, and each component is detachably connected and easy to use, making the installation steps of the entire photovoltaic panel 5 more concise.

[0037] Furthermore, a scale bar 413 is provided on the side of the guide bar 412 away from the guide groove 414, so that the staff can judge in real time whether the photovoltaic panel 5 has reached the designated installation position.

[0038] Furthermore, in this embodiment, when the auxiliary plate 32 is parallel to the vertical plane, the edges of the first auxiliary wheel 322, the second auxiliary wheel 34 and the third auxiliary wheel 415 are all tangent to the same vertical plane. When used for a photovoltaic bracket 1 with other tilt angles, as the auxiliary plate 32 rotates to be parallel to the vertical plane, not all edges of the first auxiliary wheel 322 and the edge of the second auxiliary wheel 34 are tangent to the same vertical plane. At this time, manual intervention is required in the process of transferring the photovoltaic panel 5 from the auxiliary plate 32 to the guide plate 41. Slightly pull the connecting block 26 to make the edge of the photovoltaic panel 5 pass over the second auxiliary wheel 34 and the third auxiliary wheel 415.

[0039] When the cam 32 is in the upright position, the cam 32 is in the upright position, and the cam 32 is in the upright position, and the cam 32 is in the upright position, and the cam 32 is in the upright position, and the cam 32 is in the upright position, and the cam 32 is in the upright position, and the cam 32 is in the upright position, and the cam 32 is in the upright position, and the cam 32 is in the upright position, and the cam 32 is in the upright position, and the cam 32 is in the upright position, and the cam 32 is in the upright position, and the cam 32 is in the upright position, and the cam 32 is in the upright position, and the cam 32 is in the upright position, and the cam 32 is in the upright position, and the cam 32 is in the upright position, and the cam 32 is in the upright position, and the cam 32 is in the upright position, and the cam After the first auxiliary wheel 322 is fixed, the lifting rope 27 is slightly pulled, so that the connecting block 26 drives the photovoltaic panel 5 to be close to the first auxiliary wheel 322. When the lifting rope 27 is pulled, the connecting block 26 drives the photovoltaic panel 5 to move in the direction close to the first pulley 22. The photovoltaic panel 5 is rotated from vertical to inclined under the action of the first auxiliary wheel 322, the second auxiliary wheel 34 and the third auxiliary wheel 415, and slides into a group of guide members 4 corresponding to the auxiliary member 3. Under the action of tension, the photovoltaic panel 5 slides along the guide groove 414 to the guide groove 414 of the other group of guide members 4. The installation position of the photovoltaic panel 5 is determined according to the scale bar 413. When the photovoltaic panel 5 reaches the appropriate position, the lifting rope 27 is stopped, and the first cylinder 25 and the second cylinder 35 are started. The corresponding piston rods extend, driving the two guide plates 41 in the corresponding group to move away from each other, and the photovoltaic panel 5 slides along the inclined surface of the guide groove 414 to the crossbeam 14, fixing the photovoltaic panel 5 to the crossbeam 14, removing the connecting block 26, and so on to complete the installation of other photovoltaic panels 5. When the device is in use, the photovoltaic panel 5 is pulled into the corresponding installation position through the set pulley group, which is more labor-saving than the traditional installation method. The photovoltaic panel 5 is guided and positioned by the guide member 4. After it is in place, the guide plate 41 is moved to transfer the photovoltaic panel 5 from the guide plate 41 to the beam 14. The installation efficiency is high, and there is no need for workers to climb onto the photovoltaic bracket 1 to manually connect the photovoltaic panel 5, which saves time and effort and protects the safety of the workers.

Claims

1. A photovoltaic assembly quick installation device for quickly installing a photovoltaic panel (5) on a photovoltaic bracket (1), characterized in that: The invention comprises a hanging part (2), an auxiliary part (3) and a guide part (4), wherein the hanging part (2) comprises an upper mounting block (21), the upper mounting block (21) is plugged into the crossbeam (14) at the upper end of the photovoltaic support (1), the auxiliary part (3) is plugged into the crossbeam (14) at the lower end of the photovoltaic support (1), and the two ends of the guide part (4) are respectively overlapped with the crossbeam (14) at the upper end and the lower end of the photovoltaic support (1), and the guide part (4) is provided with two groups, the hanging part (2) and the auxiliary part (3) are provided between the two groups of guide parts (4), and each group of guide parts (4) comprises two symmetrically arranged The photovoltaic panel (5) is located between the two groups of guide members (4) and is slidably connected to the guide member (41); a first pulley (22) and a second pulley (24) are provided in the hanging member (2); the first pulley (22) is connected to the upper mounting block (21); the second pulley (24) is provided on the ground near one side of the first pulley (22); a hanging rope (27) is wound around the first pulley (22) and the second pulley (24); one end of the hanging rope (27) is fixedly connected to the photovoltaic panel (5), and the other end extends toward one end away from the photovoltaic bracket (1).

2. A photovoltaic module rapid installation device according to claim 1, characterized in that: The auxiliary component (3) includes a lower mounting block (31), the lower mounting block (31) is plugged into and fixedly connected to a crossbeam (14) provided at the lower edge of the photovoltaic bracket (1), and the end of the guide plate (41) is slidably connected to the crossbeam (14) located at the upper end or the lower end of the photovoltaic bracket (1).

3. A photovoltaic module rapid installation device according to claim 2, characterized in that: A moving block (411) is fixedly provided at one end of the guide plate (41), a guide bar (412) is fixedly provided on the moving block (411), and the guide bar (412) extends toward the other end of the guide plate (41). The cross section of the guide plate (41) is L-shaped, and a guide groove (414) is formed between two side walls of the guide bar (412). The side of the guide bar (412) close to the other group of guide plates (41) is an inclined surface. The photovoltaic panel (5) is located between the two guide grooves (414) of the two groups of guide members (4) and is slidably connected to the guide grooves (414).

4. A photovoltaic module rapid installation device according to claim 2, characterized in that: Two first cylinders (25) are symmetrically provided at both ends of the upper mounting block (21), and two second cylinders (35) are symmetrically provided at both ends of the lower mounting block (31), and the piston rod ends of the first cylinder (25) and the second cylinder (35) are fixedly connected to the moving block (411) of the corresponding guide plate (41).

5. The photovoltaic module rapid installation device according to claim 3, characterized in that: A splicing groove (416) is provided on the outer side of one end of the guide bar (412) away from the moving block (411), and a connecting column (417) is fixedly provided in the splicing groove (416). The ends of two guide bars (412) in the same group of guide members (4) are aligned, and the corresponding two splicing grooves (416) are connected to form an installation groove. A splicing plate (42) is inserted into the installation groove, and the splicing plates (42) are respectively plugged into the corresponding connecting columns (417) and fixedly connected by nuts.

6. A photovoltaic module rapid installation device according to claim 4, characterized in that: The hanging member (2) further comprises a support block (23) and a connecting block (26); the support block (23) is fixedly arranged on the ground; a support frame (211) is fixedly arranged at the middle of the upper end of the upper mounting block (21); a first pulley (22) is rotatably arranged on the upper portion of the support frame (211); a second pulley (24) is rotatably arranged on the upper portion of the support block (23); one end of the hanging rope (27) is fixedly connected to the connecting block (26); the other end of the hanging rope (27) passes through the first pulley (22) and the second pulley (24) in sequence and then extends to an end away from the photovoltaic bracket (1); the end of the connecting block (26) away from the hanging rope (27) is fixedly and detachably connected to the photovoltaic panel (5).

7. The photovoltaic module rapid installation device according to claim 4, characterized in that: The auxiliary member (3) further comprises two auxiliary plates (32), the two auxiliary plates (32) being symmetrically arranged at the lower portion of one end of the lower mounting block (31) away from the hanging member (2), the upper ends of the auxiliary plates (32) being rotatably connected to the lower mounting block (31), the lower ends of the auxiliary plates (32) being slidably provided with support members (33), the support members (33) being telescopically connected to the auxiliary plates (32) and being fastened by tightening screws (333), and the lower ends of the support members (33) being in contact with or separated from the ground.

8. The photovoltaic module rapid installation device according to claim 7, characterized in that: A plurality of first auxiliary wheels (322) are rotatably arranged at intervals in the middle of the auxiliary plate (32); a plurality of second auxiliary wheels (34) are rotatably arranged at intervals on a side of the lower mounting block (31) away from the hanging member (2); a third auxiliary wheel (415) is rotatably arranged on the moving blocks (411) on both sides of the auxiliary member (3); the first auxiliary wheel (322), the second auxiliary wheel (34), and the third auxiliary wheel (415) are arranged on the same side; and the photovoltaic panel (5) is rollingly connected to the first auxiliary wheel (322), the second auxiliary wheel (34), and the third auxiliary wheel (415).

9. The photovoltaic module rapid installation device according to claim 5, characterized in that: A scale bar (413) is provided on one side of the guide bar (412) away from the guide groove (414).