Photovoltaic panel mounting platform

By utilizing the load-bearing capacity of the photovoltaic panel brackets, the hanging structure of the photovoltaic panel installation platform solves the problem of providing stable support for the installation platform in the desert environment, thereby achieving platform stability and construction flexibility, and improving construction safety and efficiency.

CN223634321UActive Publication Date: 2025-12-05INNER MONGOLIA ELECTRIC POWER SURVEY & DESIGN INST
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Patent Information

Application Number
CN202423213449.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-25
Publication Date
2025-12-05
Estimated Expiration
2034-12-25

AI Technical Summary

Technical Problem

In desert environments, traditional photovoltaic panel installation platforms struggle to provide stable support, leading to potential safety hazards during construction.

Method used

The photovoltaic panel installation platform adopts a hanging structure, which is suspended from the crossbeam of the photovoltaic panel bracket by connecting rods and hooks. It utilizes the load-bearing capacity of the photovoltaic panel bracket, combined with lockable pivots and self-locking baffles, to achieve the stability and flexibility of the platform.

Benefits of technology

It improves the stability and safety of the installation platform, adapts to the construction needs of the desert environment, reduces wind and sand interference, and enhances the flexibility and efficiency of construction.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a photovoltaic panel installation platform, and relates to the technical field of installation platforms. A bearing platform; the number of the connecting hanging rods is four, and the four connecting hanging rods are connected to the four corners of the bearing platform respectively; the hook is connected to the upper end of the connecting hanging rod, and the hook is matched with a cross beam of a photovoltaic panel bracket in a hanging manner; the rotating shaft is rotatably arranged in the hook and can be locked, and when the hook is matched with a cross beam of the photovoltaic panel support in a hanging mode, the rotating shaft abuts against the cross beam of the photovoltaic panel support. According to the scheme, the mounting platform is changed from a vertical type to a hanging type, so that the technical problem that the mounting platform is difficult to provide stable supporting force in a desert environment is solved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to installation platform technical field, especially a photovoltaic panel installation platform. BACKGROUND

[0002] In the construction process of photovoltaic panel power station, the traditional movable iron scaffold is used as the installation platform for the high-altitude operation of construction workers. However, in the specific geographical environment such as desert, this operation mode faces severe challenges. The sand in desert is often loose, flowing and not solid enough, which is difficult to provide stable support force, which leads to the inclination or even collapse of the iron scaffold, and brings great hidden danger to the safety of construction workers.

[0003] Therefore, there is an urgent need for a desert photovoltaic panel installation platform to solve the technical problem that the installation platform is difficult to provide stable support force in desert environment. CONTENT OF THE UTILITY MODEL

[0004] The utility model provides a photovoltaic panel installation platform, which aims to solve the technical problem that the installation platform is difficult to provide stable support force in desert environment.

[0005] To solve the above technical problems, the technical scheme of the utility model is as follows:

[0006] The utility model provides a photovoltaic panel installation platform, which comprises:

[0007] A bearing platform;

[0008] Four connecting hanging rods, wherein the four connecting hanging rods are connected to the four corners of the bearing platform respectively;

[0009] A hook connected to the upper end of the connecting hanging rod, and the hook is suspended with the cross beam of the photovoltaic panel support;

[0010] A rotatable and lockable rotating shaft arranged in the hook, and when the hook is suspended with the cross beam of the photovoltaic panel support, the rotating shaft abuts against the cross beam of the photovoltaic panel support.

[0011] Optionally, the bearing platform comprises:

[0012] Two first support rods, wherein the two ends of the first support rods in the length direction are connected to the bottom ends of the corresponding connecting hanging rods respectively;

[0013] A plurality of second support rods lapped and connected between the two first support rods.

[0014] Optionally, the bearing platform further comprises:

[0015] A plurality of limiting clamping rods are connected to the surface of the first supporting rod, and a limiting clamping part for clamping the end of the second supporting rod is formed between two adjacent limiting clamping rods.

[0016] Optionally, a vertical operation rod is vertically connected to the bottom surface of the first supporting rod.

[0017] Optionally, the device further comprises:

[0018] A self-locking baffle is slidably arranged on the connecting hanging rod, and when the self-locking baffle is raised to a first position, the opening of the hook is closed; when the self-locking baffle is lowered to a second position, the opening of the hook is opened.

[0019] A driving assembly is connected to the self-locking baffle, and the self-locking baffle is raised to the first position or lowered to the second position under the driving of the driving assembly.

[0020] Optionally, the driving assembly comprises:

[0021] A blocking platform is arranged on the inner wall of a first cavity in the connecting hanging rod;

[0022] A vertical handle is slidably arranged in a blocking through hole on the surface of the blocking platform, and the upper end of the vertical handle is connected to the bottom surface of the self-locking baffle;

[0023] A spring is sleeved on the outer side of the vertical handle, and the spring is in abutment with the bottom surface of the self-locking baffle and the surface of the blocking platform, respectively;

[0024] A steel rope is connected to the bottom end of the vertical handle.

[0025] Optionally, the driving assembly further comprises:

[0026] A plurality of first pulleys are rotatably arranged in a first cavity in the connecting hanging rod;

[0027] A plurality of second pulleys are rotatably arranged in a second cavity in the first supporting rod, and the second cavity is in communication with the first cavity;

[0028] A plurality of third pulleys are rotatably arranged in a third cavity in the vertical operation rod, and the third cavity is in communication with the second cavity;

[0029] The end of the steel rope is guided to pass out of the third cavity through the plurality of first pulleys, the plurality of second pulleys and the plurality of third pulleys in sequence.

[0030] Optionally, the driving assembly further comprises:

[0031] A U-shaped base is connected to the outer side of the vertical operation rod;

[0032] The drive shaft and winding shaft, which are located inside the U-shaped base, are rotated, and the steel rope is wound onto the winding shaft;

[0033] The drive shaft is provided with a drive gear, and the winding shaft is provided with a driven gear, and the drive gear and the driven gear mesh with each other;

[0034] A control handle connected to the outer end of the drive shaft.

[0035] Optional, also includes:

[0036] A double-hole retaining plate is connected to the outer end of the rotating shaft, the double-hole retaining plate being away from the opening of the hook;

[0037] Multiple positioning holes are provided through the surface of the double-hole card plate, and the multiple positioning holes are evenly distributed around the axis of the rotating shaft.

[0038] A threaded hole is provided on the side wall of the hook;

[0039] A self-locking bolt, wherein the end of the self-locking bolt passes through any positioning hole and is threadedly connected to the threaded hole.

[0040] Optionally, the connecting rod includes:

[0041] The bottom square tube connected to the first support rod;

[0042] A lifting square tube is slidably disposed in the inner cavity of the bottom square tube, and the upper end of the lifting square tube is connected to the hook;

[0043] A first height adjustment hole is provided through the upper part of the bottom square tube;

[0044] The surface of the lifting square tube is provided with a second height adjustment hole, which is evenly distributed along the vertical direction.

[0045] The end of the fixing pin passes through the first height adjustment hole and is inserted into any of the second height adjustment holes.

[0046] The above-described solution of this utility model has at least the following beneficial effects:

[0047] The connecting hanging rod is connected at the four corners of the bearing platform, forms a stable structure, meanwhile makes the bearing platform bear force evenly, the hook is suspendedly connected with the cross beam of the photovoltaic panel support, so that the bearing platform is not directly contacted with the ground, the required bearing capacity of the bearing platform is not directly obtained from the ground, but the force is transferred to the photovoltaic panel support with stronger bearing capacity through the hook, the hook has a certain arc radially, when the hook is contacted with the cross beam of the photovoltaic panel support, the hook cannot be completely attached, the lockable rotating shaft is arranged in the hook, the rotating shaft and the cross beam of the photovoltaic panel support abut to realize complete attachment, and the stability of the bearing platform is further improved. BRIEF DESCRIPTION OF DRAWINGS

[0048] Figure 1 It is a photovoltaic panel mounting platform structure schematic view of the utility model;

[0049] Figure 2 It is a hook structure schematic view of the utility model;

[0050] Figure 3 It is a structure schematic view of the connecting relation of the connecting hanging rod, the first supporting rod and the operating vertical rod of the utility model;

[0051] Figure 4 It is a vertical section view of the first cavity, the second cavity and the third cavity of the utility model;

[0052] Figure 5 It is a structure schematic view of the driving assembly of the utility model;

[0053] Figure 6 It is a structure schematic view of the connecting hanging rod of the utility model.

[0054] BRIEF DESCRIPTION OF DRAWINGS:

[0055] 1. Supporting platform; 11. First support rod; 111. Second cavity; 12. Second support rod; 2. Connecting rod; 21. First cavity; 22. Bottom square tube; 221. First height adjustment hole; 23. Lifting square tube; 231. Second height adjustment hole; 24. Fixing pin; 3. Hook; 31. Rotating shaft; 32. Double-hole clamping plate; 321. Positioning hole; 33. Threaded hole; 34. Self-locking bolt; 4. Operating vertical rod; 4 1. Third cavity; 5. Drive assembly; 51. Barrier platform; 511. Barrier through hole; 52. Spring; 53. Steel rope; 54. First pulley; 55. Second pulley; 56. Third pulley; 57. U-shaped base; 58. Drive shaft; 581. Drive gear; 582. Control handle; 59. Winding spool; 591. Driven gear; 6. Self-locking baffle; 61. Vertical handle; 7. Limiting lever; 71. Limiting part. Detailed Implementation

[0056] Exemplary embodiments of the present invention will now be described in more detail with reference to the accompanying drawings. While exemplary embodiments of the present invention are shown in the drawings, it should be understood that the present invention may be implemented in various forms and should not be limited to the embodiments set forth herein. Rather, these embodiments are provided so that this invention will be thorough and complete, and will fully convey the scope of the invention to those skilled in the art.

[0057] like Figure 1 As shown, an embodiment of this utility model proposes a photovoltaic panel installation platform, including: a support platform 1;

[0058] Connecting rods 2, four connecting rods 2 are provided, and the four connecting rods 2 are respectively connected to the four corners of the bearing platform 1;

[0059] Hook 3 is connected to the upper end of the connecting rod 2, and hook 3 is suspended in cooperation with the crossbeam of the photovoltaic panel bracket;

[0060] When the hook 3 is rotated and locked within the hook 3, and the hook 3 is suspended in conjunction with the crossbeam of the photovoltaic panel bracket, the rotating shaft 31 abuts against the crossbeam of the photovoltaic panel bracket.

[0061] In the embodiment, the connecting hanging rod 2 is connected at the four corners of the bearing platform 1, and a stable structure is formed, and meanwhile, the bearing platform 1 is uniformly stressed, the hook 3 is suspendedly connected with the cross beam of the photovoltaic panel support, so that the bearing platform 1 is not directly contacted with the ground, and the required bearing force of the bearing platform 1 is not directly obtained from the ground, but the acting force is transferred to the photovoltaic panel support with stronger bearing capacity through the hook 3, the hook 3 internally has a certain arc, and when being contacted with the cross beam of the photovoltaic panel support, the hook 3 cannot be completely fitted, a lockable rotating shaft 31 is arranged in the hook 3, the rotating shaft 31 is abutted with the cross beam of the photovoltaic panel support, and complete fitting can be realized, and the stability of the bearing platform 1 is further improved; meanwhile, when the construction position needs to be adjusted, the rotating shaft 31 is unlocked, the hook 3 can be moved on the cross beam of the photovoltaic panel support through the rotating shaft 31, the position of the bearing platform 1 is adjusted, the rotating shaft 31 is locked after adjustment, and the stability of the bearing platform 1 is ensured, and the construction demand in different positions can be met. The mounting platform is changed from a vertical type to a hanging type, and the technical problem that the mounting platform is difficult to provide stable supporting force in a desert environment is solved.

[0062] As shown in the figure, Figure 1 In an optional embodiment of the utility model, the bearing platform 1 includes:

[0063] Two first support rods 11, and the two ends of the length direction of the two first support rods 11 are connected with the bottom ends of the corresponding connecting hanging rods 2 respectively.

[0064] A plurality of second support rods 12 are lap-connected between the two first support rods 11.

[0065] In the embodiment, the two first support rods 11 are arranged in parallel, the connecting hanging rod 2 is arranged perpendicularly to the first support rod 11, and the second support rod 12 lap-connected between the two first support rods 11 can be increased or decreased in number according to the actual demand on the project under the premise of ensuring safety, and the flexibility of the mounting platform is improved.

[0066] As shown in the figure, Figure 3 In an optional embodiment of the utility model, the bearing platform 1 further includes:

[0067] A plurality of limiting clamping rods 7 are connected on the surface of the first support rod 11, and a limiting clamping part 71 for clamping and fixing the end part of the second support rod 12 is formed between the two adjacent limiting clamping rods 7.

[0068] In this embodiment, the overlapping and engagement process between the second support rod 12 and the first support rod 11 is prone to sliding along the length direction of the first support rod 11. The limiting part 71 formed between two adjacent second limiting rods 7 is used to limit and fix the end of the second support rod 12, further improving the stability of the bearing platform 1 structure.

[0069] like Figure 1 As shown, in an optional embodiment of the present invention, the bottom surface of the first support rod 11 is vertically connected to an operating vertical rod 4.

[0070] In this embodiment, the height of the photovoltaic panel bracket is much higher than that of an average adult, making it difficult for the construction worker to suspend and connect the hook 3 to the crossbeam of the photovoltaic panel bracket. Therefore, the bottom surface of the central sleeve rod is vertically connected to the operating vertical rod 4. The operating vertical rod 4 extends the overall longitudinal height on the one hand, and provides a good force application point on the other hand, improving the ease of construction.

[0071] like Figure 2 As shown, in an optional embodiment of the present invention, it further includes:

[0072] A self-locking baffle 6 that can be raised and lowered is slidably mounted on the connecting rod 2. When the self-locking baffle 6 rises to the first position, the self-locking baffle 6 closes the opening of the hook 3; when the self-locking baffle 6 falls to the second position, the opening of the hook 3 opens.

[0073] The drive assembly 5 is connected to the self-locking baffle 6, and the self-locking baffle 6 is driven by the drive assembly 5 to rise to a first position or fall to a second position.

[0074] In this embodiment, in the specific geographical environment of the desert, the environment is open and windy. During the operation of the bearing platform 1, in addition to the vertical load, the horizontal load caused by the wind cannot be ignored. Strong winds and sand will cause the internal space of the hook 3 to interfere with the crossbeam of the photovoltaic panel support, resulting in safety hazards. Therefore, it is necessary to reduce the internal space of the hook 3 to reduce the gap and reduce interference vibration. However, when the size of the hook 3 is reduced, if the wind is too strong and causes the center of the bearing platform 1 to shift, the hook 3 will fall off the crossbeam of the photovoltaic panel support, causing more serious accidents. Therefore, it is necessary to set the self-locking baffle 6 to control the opening and closing state of the hook 3.

[0075] Because the load caused by the wind is in the horizontal direction, the self-locking baffle 6 controls the opening and closing state of the opening of the hook 3 through the lifting sliding track, when the self-locking baffle 6 is in the first position, the opening of the hook 3 is closed, no matter how large the wind is, the longitudinal component force will not cause the self-locking baffle 6 to drop to the second position, further improving the stability and safety of the bearing platform 1.

[0076] As shown in Figure 2 An optional embodiment of the utility model, the drive assembly 5 includes:

[0077] The blocking platform 51 of the inner wall of the first cavity 21 arranged in the connecting hanging rod 2;

[0078] The vertical handle 61 is slidingly arranged in the blocking through hole 511 on the surface of the blocking platform 51, and the upper end of the vertical handle 61 is connected with the bottom surface of the self-locking baffle 6;

[0079] The spring 52 is sleeved on the outer side of the vertical handle 61, and the spring 52 is respectively abutted with the bottom surface of the self-locking baffle 6 and the surface of the blocking platform 51;

[0080] The steel wire 53 is connected with the bottom end of the vertical handle 61.

[0081] In the embodiment, the blocking platform 51 of the inner wall of the first cavity 21 arranged in the connecting hanging rod 2 is used to provide upward bearing force, the cross-sectional diameter of the vertical handle 61 is less than the diameter of the blocking through hole 511, and the length of the bottom edge of the self-locking baffle 6 and the diameter of the spring 52 are both greater than the diameter of the blocking through hole 511, so that the blocking through hole 511 arranged on the surface of the blocking platform 51 provides a channel for downward force, the spring 52 is always in a compressed state and continuously provides upward force, so that the self-locking baffle 6 is in a force balance state when being in the first position in general, and the opening of the hook 3 is in a closed state; when it is necessary to open the opening of the hook 3, the steel wire 53 is pulled to overcome the elastic force of the spring 52, so that the vertical handle 61 drives the self-locking baffle 6 to drop, and the opening of the hook 3 is opened.

[0082] As shown in Figure 4 An optional embodiment of the utility model, the drive assembly 5 further includes:

[0083] A plurality of first pulleys 54 are rotationally arranged in the first cavity 21 in the connecting hanging rod 2;

[0084] A plurality of second pulleys 55 are rotationally arranged in the second cavity 111 in the first supporting rod 11, and the second cavity 111 is communicated with the first cavity 21;

[0085] a plurality of third pulleys 56 are arranged in rotation inside a third cavity in the operating vertical rod 4, and the third cavity is communicated with the second cavity 111;

[0086] The end of the steel rope 53 is guided to pass out of the third cavity through the first pulley 54, the second pulley 55 and the third pulley 56 in sequence.

[0087] In the embodiment, the steel rope 53 is used to conduct force, the steel rope 53 arranged between every two adjacent pulleys is in a taut state, the first pulley 54, the second pulley 55 and the third pulley 56 are used to change the direction of force, the first pulley 54, the second pulley 55 and the third pulley 56 are consistent in structure, the middle part is formed with a rope groove, and only the installation position is different. The plurality of pulleys are arranged to reduce the interval between adjacent pulleys and increase the stability of the conducting path.

[0088] As shown in the figure, Figure 5 In an optional embodiment of the utility model, the driving assembly 5 further comprises:

[0089] A U-shaped base 57 connected to the outside of the operating vertical rod 4;

[0090] A driving shaft 58 and a winding shaft 59 arranged in rotation inside the U-shaped base 57, and the steel rope 53 is wound on the winding shaft 59;

[0091] The driving shaft 58 is provided with a driving gear 581, the winding shaft 59 is provided with a driven gear 591, and the driving gear 581 is engaged with the driven gear 591;

[0092] A control handle 582 connected to the outer end of the driving shaft 58.

[0093] In the embodiment, the U-shaped base 57 is used to bear and install the driving shaft 58 and the winding shaft 59, and the steel rope 53 is arranged in a coil on the winding shaft 59, the driving shaft 58 is provided with a driving gear 581, and the winding shaft 59 is provided with a driven gear 591;

[0094] When the constructor wants to make the self-locking baffle 6 descend to the second position, the control handle 582 is rotated to drive the rotation of the driving gear 581, the driving gear 581 drives the rotation of the driven gear 591 through the meshing teeth, the driven gear 591 further drives the rotation of the winding shaft 59 to make the steel rope 53 coil on the winding shaft 59, the force is changed through the third pulley 56, the second pulley 55 and the first pulley 54, the vertical handle 61 moves downward through the blocking through hole 511 until the self-locking baffle 6 descends to the second position.

[0095] The diameter of the winding shaft 59 is required to be larger than the diameter of the driving shaft 58 to meet the winding of the longer steel rope 53, the winding shaft 59 and the driving shaft 58 are arranged at intervals, so that the steel rope 53 cannot contact the driving shaft 58, to exclude the interference of the steel rope 53 to the driving shaft 58.

[0096] As shown in the optional embodiment of the utility model, Figure 2 As shown in the optional embodiment of the utility model,

[0097] The double-hole clamping plate 32 is connected to the outer end of the rotating shaft 31, and the opening of the double-hole clamping plate 32 is away from the hook 3;

[0098] A plurality of positioning holes 321 are arranged through the surface of the double-hole clamping plate 32, and the plurality of positioning holes 321 are uniformly distributed in the circumference based on the axis of the rotating shaft 31;

[0099] The threaded hole 33 is arranged on the side wall of the hook 3;

[0100] The self-locking bolt 34 is arranged through the positioning hole 321, and the end of the self-locking bolt 34 is threadedly connected with the threaded hole 33.

[0101] In the embodiment, the rotating shaft 31 directly contacts the cross beam of the photovoltaic panel support, the rotating shaft 31 can freely rotate along the axis, so when it is required to move the bearing platform 1 along the length direction of the cross beam of the photovoltaic panel support, the bearing platform 1 is only required to be pushed along the length direction of the cross beam of the photovoltaic panel support, and the specified position can be reached, and it is not necessary to repeatedly disassemble, and the working efficiency is further improved;

[0102] After the bearing platform 1 reaches the specified position, the end of the self-locking bolt 34 is arranged through the positioning hole 321, and the end of the self-locking bolt 34 is threadedly connected with the threaded hole 33, to limit the rotational direction freedom degree of the rotating shaft 31, realize the self-locking of the rotating shaft 31, and improve the working efficiency while having stability and safety;

[0103] The plurality of positioning holes 321 are uniformly distributed in the circumference based on the axis of the rotating shaft 31, to realize the rotation of the rotating shaft 31 to any angle, and the positioning hole 321 corresponding to the threaded hole 33 is connected, and the flexibility of the mounting platform is further improved.

[0104] As shown in the optional embodiment of the utility model, Figure 6 As shown in the optional embodiment of the utility model,

[0105] The bottom square tube 22 is connected with the first supporting rod 11;

[0106] A lifting square tube 23 is slidably arranged in the inner cavity of the bottom square tube 22, and the upper end of the lifting square tube 23 is connected with the hook 3;

[0107] A first height adjusting hole 221 is arranged through the upper portion of the bottom square tube 22;

[0108] A second height adjusting hole 231 is arranged through the surface of the lifting square tube 23, and the second height adjusting holes 231 are uniformly distributed in the vertical direction;

[0109] The end of the fixing pin shaft 24 penetrates the first height adjusting hole 221 and is inserted into any second height adjusting hole 231.

[0110] In the embodiment, the end of the fixing pin shaft 24 penetrates the first height adjusting hole 221 and is inserted into any second height adjusting hole 231, the relative sliding between the bottom square tube 22 and the lifting square tube 23 is stopped by the mechanical strength of the fixing pin shaft 24, the operation is simple and reliable, the length of the connecting hanging rod 2 is variable, the photovoltaic panel support capable of adapting to different height differences is obtained, and the flexibility of the installation platform is improved.

[0111] The gap fit is adopted between the bottom square tube 22 and the lifting square tube 23, first, the gap fit between the bottom square tube 22 and the lifting square tube 23 enables the bearing platform 1 to absorb and reduce vibration and impact when subjected to horizontal external force, thereby improving the stability and durability of the bearing platform 1; second, the gap fit between the bottom square tube 22 and the lifting square tube 23 enables the installation process and the relative sliding process to be easily positioned without exerting excessive external force, thereby reducing the assembly difficulty and use cost; then, the gap fit between the bottom square tube 22 and the lifting square tube 23 enables the bearing platform 1 to be easily disassembled, thereby simplifying the maintenance process; finally, due to the large diurnal temperature difference in the desert environment, the gap fit between the bottom square tube 22 and the lifting square tube 23 avoids deformation and extrusion caused by thermal expansion and cold contraction, thereby reducing wear and friction.

[0112] The photovoltaic panel installation platform is provided, the installation platform is changed from a vertical type to a hanging type, and the technical problem that the installation platform is difficult to provide stable supporting force in a desert environment is solved.

[0113] The above is the preferred embodiment of the utility model, and it should be noted that, for ordinary skilled persons in the art, without departing from the principle of the utility model, a number of improvements and refinements can be made, and these improvements and refinements should be regarded as the protection range of the utility model.

Claims

1. A photovoltaic panel mounting platform, characterized by, Include: Bearing platform (1); Connecting hanging rod (2), the connecting hanging rod (2) is provided with four, and four connecting hanging rods (2) are connected at the four corners of the bearing platform (1) respectively; Hook (3), the hook (3) is connected on the upper end of the connecting hanging rod (2), and the hook (3) is hung with the crossbeam of photovoltaic panel support cooperation; Rotary setting in the hook (3) and the lockable rotating shaft (31), when the hook (3) is hung with the crossbeam of photovoltaic panel support cooperation, the rotating shaft (31) is in contact with the crossbeam of photovoltaic panel support.

2. The photovoltaic panel mounting platform of claim 1, wherein, The bearing platform (1) comprises: Two first support rods (11), the two ends of the length direction of the two first support rods (11) are connected with the bottom end of the corresponding connecting hanging rod (2) respectively; Lap joint is connected between two first support rods (11) multiple second support rods (12).

3. The photovoltaic panel mounting platform of claim 2, wherein, The bearing platform (1) further comprises: Multiple limit clamping rods (7) are connected on the surface of the first support rod (11), and the limit clamping part (71) for clamping and fixing the end of the second support rod (12) is formed between the adjacent two limit clamping rods (7).

4. The photovoltaic panel mounting platform of claim 2, wherein, The bottom surface of the first support rod (11) is vertically connected with an operation vertical rod (4).

5. The photovoltaic panel mounting platform of claim 4, wherein, Further comprising: Self-locking baffle (6) is slidably arranged on the connecting hanging rod (2), when the self-locking baffle (6) is raised to the first position, the opening of the hook (3) is closed;When the self-locking baffle (6) is lowered to the second position, the opening of the hook (3) is opened; The driving assembly (5) connected with the self-locking baffle (6), the self-locking baffle (6) is raised to the first position or lowered to the second position under the driving of the driving assembly (5).

6. The photovoltaic panel mounting platform of claim 5, wherein, The driving assembly (5) comprises: The blocking platform (51) is arranged on the inner wall of the first cavity (21) in the connecting hanging rod (2); The vertical handle (61) is slidably arranged in the blocking through hole (511) on the surface of the blocking platform (51), and the upper end of the vertical handle (61) is connected with the bottom surface of the self-locking baffle (6); Spring (52) is sleeved on the outer side of the vertical handle (61), and the spring (52) is respectively in contact with the bottom surface of the self-locking baffle (6) and the surface of the blocking platform (51); The steel wire (53) is connected with the bottom end of the vertical handle (61).

7. The photovoltaic panel mounting platform of claim 6, wherein, The driving assembly (5) further comprises: A plurality of first pulleys (54) are rotatably arranged in the first cavity (21) in the connecting hanging rod (2); A plurality of second pulleys (55) are rotatably arranged in the second cavity (111) in the first support rod (11), and the second cavity (111) is communicated with the first cavity (21); A plurality of third pulleys (56) are rotatably arranged in the third cavity (41) in the operation vertical rod (4), and the third cavity (41) is communicated with the second cavity (111); The end of the steel wire (53) is guided to pass out of the third cavity (41) through the plurality of first pulleys (54), the plurality of second pulleys (55) and the plurality of third pulleys (56) in sequence.

8. The photovoltaic panel mounting platform of claim 7, wherein, The driving assembly (5) further comprises: A U-shaped base (57) is connected to the outside of the operating vertical rod (4); A drive shaft (58) and a winding shaft (59) are rotatably arranged inside the U-shaped base (57), and the steel wire (53) is wound on the winding shaft (59); A driving gear (581) is arranged on the drive shaft (58), and a driven gear (591) is arranged on the winding shaft (59), and the driving gear (581) is engaged with the driven gear (591); A control handle (582) is connected to the outer end of the drive shaft (58).

9. The photovoltaic panel mounting platform of claim 1, wherein, Further comprising: A double-hole clamping plate (32) is connected to the outer end of the rotating shaft (31), and the double-hole clamping plate (32) is away from the opening of the hook (3); A plurality of positioning holes (321) are arranged on the surface of the double-hole clamping plate (32), and the plurality of positioning holes (321) are uniformly distributed in a circle with the axis of the rotating shaft (31) as the center; A threaded hole (33) is arranged on the side wall of the hook (3); A self-locking bolt (34) penetrates through any positioning hole (321) and is threadedly connected with the threaded hole (33) at the end.

10. The photovoltaic panel mounting platform of claim 2, wherein, The connecting hanging rod (2) comprises: A bottom square tube (22) connected with the first supporting rod (11); A lifting square tube (23) is slidably arranged in the inner cavity of the bottom square tube (22), and the upper end of the lifting square tube (23) is connected with the hook (3); A first height adjusting hole (221) is arranged on the upper part of the bottom square tube (22); A second height adjusting hole (231) is arranged on the surface of the lifting square tube (23), and the second height adjusting hole (231) is uniformly distributed in the vertical direction; The end of the fixed pin shaft (24) penetrates through the first height adjusting hole (221) and is inserted into any second height adjusting hole (231).