Desert photovoltaic panel mounting platform

The hanging structure of the desert photovoltaic panel installation platform solves the problem of unstable construction platforms in desert environments, achieving stable support and safe construction.

CN223634318UActive Publication Date: 2025-12-05INNER MONGOLIA ELECTRIC POWER SURVEY & DESIGN INST
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Patent Information

Application Number
CN202423213426.3
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 construction platforms struggle to provide stable support, leading to safety hazards for construction workers.

Method used

Design a desert photovoltaic panel installation platform with a hanging structure. The platform is suspended from the crossbeams of the photovoltaic panel support by connecting rods, avoiding direct contact with the ground and transferring the load to the photovoltaic panel support.

Benefits of technology

It provides stable support in desert environments, improves construction safety and platform flexibility, and reduces assembly difficulty and operating costs.

✦ 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 construction platforms. The technical scheme of the utility model comprises 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; and the hook is connected with the upper end of the connecting hanging rod and is connected with a cross beam of the photovoltaic panel bracket in a hanging manner. 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 construction platform technical field, especially a desert photovoltaic panel installation platform. BACKGROUND

[0002] In the construction process of photovoltaic panel power station, the traditional movable iron scaffold is relied on as the support 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 desert photovoltaic panel installation platform, aims at solving 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 desert 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, wherein the hook is suspendedly connected to the cross beam of the photovoltaic panel support.

[0010] Optionally, the bearing platform comprises:

[0011] Two first support rods, wherein the two ends of the first support rod are connected to the bottom ends of the two connecting hanging rods respectively;

[0012] A plurality of second support rods lapped and connected between the two first support rods.

[0013] Optionally, the first support rod comprises:

[0014] A center sleeve rod with a hollow structure;

[0015] A connecting cross rod slidingly arranged in the two ends of the center sleeve rod, wherein the bottom end of the connecting hanging rod is connected to the connecting cross rod;

[0016] Two ends of the length direction of the center sleeve rod are provided with first length-adjusting positioning through holes;

[0017] The side surfaces of the two connecting horizontal rods are provided with a plurality of second length-adjusting positioning through holes;

[0018] A plurality of first positioning pins, the ends of the plurality of first positioning pins sequentially penetrating the first length-adjusting positioning through holes and the second length-adjusting positioning through holes.

[0019] Optionally, the center sleeve rod and the connecting horizontal rod are both square tube structures, and the connecting horizontal rod is gap-fitted with the inner cavity of the center sleeve rod.

[0020] Optionally, the bottom surface of the center sleeve rod is vertically connected with an operation vertical rod.

[0021] Optionally, the ends of the two connecting horizontal rods away from each other are respectively provided with first limiting clamping rods, and the first limiting clamping rods and the corresponding connecting hanging rods form first limiting spaces for limiting and fixing the ends of the second support rods.

[0022] The surface of the center sleeve rod is provided with a plurality of second limiting clamping rods, and the second limiting clamping rods form second limiting spaces for limiting and fixing the ends of the second support rods.

[0023] Optionally, the bottom surface of any end of the second support rod is provided with two limiting blocks, and the limiting blocks form a third limiting space for accommodating the connecting horizontal rod or the center sleeve rod.

[0024] Optionally, the connecting hanging rod comprises:

[0025] A first hanging rod connected with the connecting horizontal rod, the first hanging rod being a hollow tube;

[0026] A second hanging rod slidingly arranged in the first hanging rod, the upper end of the second hanging rod penetrating out of the first hanging rod, and the upper end of the second hanging rod being connected with the hook;

[0027] The upper end of the first hanging rod is provided with a first height-adjusting positioning through hole;

[0028] The outer side of the second hanging rod is provided with a plurality of second height-adjusting positioning through holes;

[0029] A second positioning pin, the end of the second positioning pin sequentially penetrating the first height-adjusting positioning through hole and any second height-adjusting positioning through hole.

[0030] Optionally, the first hanging rod and the second hanging rod are both square tubes, and the second hanging rod is gap-fitted with the inner cavity of the first hanging rod.

[0031] Optionally, the center sleeve rod, the connecting cross rod, the first hanging rod, the second hanging rod and the limiting clamping rod are all hollow tube structures.

[0032] The above scheme of the utility model has at least the following beneficial effects:

[0033] The connecting hanging rod is connected to the four corners of the bearing platform, forming a stable structure, and also making 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 in direct contact with the ground, and the required bearing capacity of the bearing platform is not directly obtained from the ground, but is transferred to the photovoltaic panel support with stronger bearing capacity through the hook. BRIEF DESCRIPTION OF DRAWINGS

[0034] Figure 1 is a schematic view of a desert photovoltaic panel mounting platform structure of the utility model;

[0035] Figure 2 is a front view of the utility model;

[0036] Figure 3 is a schematic view of a connecting hanging rod structure of the utility model;

[0037] Figure 4 is a schematic view of a first supporting rod structure of the utility model;

[0038] Figure 5 is a schematic view of a second supporting rod structure of the utility model.

[0039] BRIEF DESCRIPTION OF DRAWINGS

[0040] 1, bearing platform; 11, first supporting rod; 111, center sleeve rod; 112, connecting cross rod; 113, first length-adjusting positioning through hole; 114, first positioning pin; 115, second length-adjusting positioning through hole; 12, second supporting rod; 121, limiting block; 122, third limiting space; 2, connecting hanging rod; 21, first hanging rod; 22, second hanging rod; 23, first height-adjusting positioning through hole; 24, second positioning pin; 25, second height-adjusting positioning through hole; 3, hook; 4, operation vertical rod; 51, first limiting clamping rod; 511, first limiting space; 52, second limiting clamping rod; 521, second limiting space. DETAILED DESCRIPTION

[0041] Exemplary embodiments of the present application will be described in greater detail below with reference to the accompanying drawings. While exemplary embodiments of the present application are shown in the drawings, it is understood that the present application can be embodied in various forms without being limited by the embodiments set forth herein. Rather, these embodiments are provided so that this disclosure will be thorough and complete, and will fully convey the scope of the present application to those skilled in the art.

[0042] As shown in Figure 1 the embodiment of the present application proposes a desert photovoltaic panel installation platform, comprising: a bearing platform 1;

[0043] The connecting hanging rods 2 are provided with four rods, and the four connecting hanging rods 2 are respectively connected to the four corners of the bearing platform 1.

[0044] The hooks 3 connected to the upper end of the connecting hanging rods 2 are suspended and connected with the cross beams of the photovoltaic panel support.

[0045] In the embodiment, the connecting hanging rods 2 are connected to the four corners of the bearing platform 1, forming a stable structure, and also making the bearing platform 1 bear evenly, the hooks 3 are suspended and connected with the cross beams of the photovoltaic panel support, so that the bearing platform 1 is not in direct contact with the ground, and the required bearing capacity of the bearing platform 1 is not directly obtained from the ground, but the force is transferred to the photovoltaic panel support with stronger bearing capacity through the hooks 3, and the technical problem that the installation platform is difficult to provide stable supporting force in the desert environment is solved by changing the installation platform from vertical to hanging type.

[0046] As shown in Figure 1 In an optional embodiment of the present application, the bearing platform 1 comprises:

[0047] The first support rods 11 are provided with two rods, and the two ends of the first support rods 11 are respectively connected to the bottom ends of the two connecting hanging rods 2.

[0048] The second support rods 12 are lapped and connected between the two first support rods 11.

[0049] In the embodiment, the two first support rods 11 are arranged in parallel, the connecting hanging rods 2 are arranged perpendicularly to the first support rods 11, and the second support rods 12 lapped and connected between the two first support rods 11 can be increased or decreased in number according to the actual needs of the project under the premise of ensuring safety, improving the flexibility of the installation platform.

[0050] As shown in Figure 4 In an optional embodiment of the present application, the first support rods 11 comprise:

[0051] Hollow structure center sleeve 111;

[0052] A connecting crossbar 112 is slidably disposed within both ends of the central sleeve 111, and the bottom end of the connecting hanging rod 2 is connected to the connecting crossbar 112;

[0053] The two ends of the central sleeve rod 111 in the length direction are provided with first length adjustment positioning through holes 113;

[0054] Both of the connecting crossbars 112 are provided with multiple second length adjustment positioning through holes 115 on their sides;

[0055] Multiple first positioning pins 114, the ends of which sequentially pass through the first length adjustment positioning through hole 113 and the second length adjustment positioning through hole 115.

[0056] In this embodiment, the position of the connecting rod 2 represents the boundary of the bearing platform 1. Connecting the bottom end of the connecting rod 2 to the connecting crossbar 112 can maximize the area of ​​the bearing platform 1. On the other hand, since the connecting crossbar 112 is slidably disposed inside both ends of the central sleeve 111, the pressure on the platform erected at the central sleeve 111 can be effectively distributed to the connecting rods 2 on both sides, further improving the reliability of the installation platform.

[0057] The end of the first positioning pin 114 passes through the first length adjustment positioning through hole 113 and the second length adjustment positioning through hole 115 in sequence. The mechanical strength of the first positioning pin 114 stops the relative sliding between the central sleeve rod 111 and the connecting cross rod 112, which is simple and reliable to operate. This makes the length of the first support rod 11 variable, which can adapt to photovoltaic panel brackets of different specifications and improves the flexibility of the installation platform.

[0058] like Figure 4 As shown, in an optional embodiment of the present invention, both the central sleeve rod 111 and the connecting cross rod 112 are square tube structures, and the connecting cross rod 112 is in clearance fit with the inner cavity of the central sleeve rod 111.

[0059] In this embodiment, during the overlap process between the central sleeve rod 111 and the connecting cross rod 112 and the second support rod 12, the square bottom surface can make the contact surface fit better, further improving the stability of the installation platform structure.

[0060] At the same time, it facilitates the stable sliding of the connecting crossbar 112 in the inner cavity of the central sleeve 111, and makes it easy for the first length adjustment positioning through hole 113 and the second length adjustment positioning through hole 115 to accurately correspond, thereby facilitating the insertion of the first positioning pin 114 to realize the length adjustment and fixation of the first support rod 11;

[0061] The clearance fit between the inner cavities of the central sleeve 111 and the connecting crossbar 112 offers several advantages. First, it allows the bearing platform 1 to absorb and mitigate vibrations and impacts when subjected to vertical external forces, thereby improving its stability and durability. Second, the clearance fit enables easy installation and relative sliding without requiring excessive external force, reducing assembly difficulty and operating costs. Third, it facilitates easy disassembly, simplifying maintenance. Finally, the clearance fit prevents deformation and compression caused by thermal expansion and contraction, reducing wear and friction, especially in desert environments with large diurnal temperature variations.

[0062] like Figure 2 As shown, in an optional embodiment of the present invention, the bottom surface of the central sleeve rod 111 is vertically connected to the operating vertical rod 4.

[0063] 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 111 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.

[0064] like Figure 4 As shown, in an optional embodiment of the present invention, the ends of the two connecting crossbars 112 that are far apart from each other are respectively provided with first limiting rods 51, and the two first limiting rods 51 and the corresponding connecting hanging rods 2 form a first limiting space 511 for limiting and fixing the end of the second support rod 12.

[0065] The surface of the central sleeve rod 111 is provided with multiple second limiting rods 52, and a second limiting space 521 is formed between two adjacent second limiting rods 52 to limit and fix the end of the second support rod 12.

[0066] In this embodiment, the overlapping and engagement process of the second support rod 12 with the connecting crossbar 112 or the second support rod 12 with the central sleeve rod 111 is prone to sliding along the length direction of the first support rod 11. The first limiting space 511 formed between the two first limiting rods 51 and the corresponding connecting rod 2 is used to limit and fix the end of the second support rod 12, preventing sliding along the length direction of the first support rod 11 within the range of the connecting crossbar 112. The second limiting space 521 formed between two adjacent second limiting rods 52 is used to limit and fix the end of the second support rod 12, preventing sliding along the length direction of the first support rod 11 within the range of the central sleeve rod 111, further improving the stability of the bearing platform 1 structure.

[0067] like Figure 5 As shown, in an optional embodiment of the present invention, two limiting blocks 121 are provided on the bottom surface of either end of the second support rod 12, and a third limiting space 122 is formed between the two limiting blocks 121 to accommodate the connecting crossbar 112 or the central sleeve rod 111.

[0068] In this embodiment, the overlapping and engagement process of the second support rod 12 with the connecting crossbar 112 or the second support rod 12 with the central sleeve rod 111 is prone to sliding along the length direction of the second support rod 12. The bottom surface of either end of the second support rod 12 is provided with a third limiting space 122 formed by two limiting blocks 121, which can clamp the connecting crossbar 112 or the central sleeve rod 111 in the middle, effectively preventing the second support rod 12 from sliding along the length direction of the second support rod 12, and further improving the reliability of the installation platform.

[0069] like Figure 3 As shown, in an optional embodiment of this utility model, the connecting rod 2 includes:

[0070] A first hanging rod 21 connected to the connecting crossbar 112, wherein the first hanging rod 21 is a hollow tube;

[0071] A second hanging rod 22 is slidably disposed inside the first hanging rod 21, the upper end of the second hanging rod 22 extends out of the first hanging rod 21, and the upper end of the second hanging rod 22 is connected to the hook 3;

[0072] The first hanging rod 21 has a first height adjustment and positioning through hole 23 through its upper end;

[0073] The second hanging rod 22 has several second height adjustment and positioning through holes 25 extending through its outer side;

[0074] The second positioning pin 24 has its end passing through the first height adjustment positioning through hole 23 and any one of the second height adjustment positioning through holes 25 in sequence.

[0075] In this embodiment, the end of the second positioning pin 24 passes through the first height adjustment positioning through hole 23 and the second height adjustment positioning through hole 25 in sequence. The mechanical strength of the second positioning pin 24 stops the relative sliding between the first hanging rod 21 and the second hanging rod 22, making the operation simple and reliable. This allows the length of the connecting hanging rod 2 to be variable, which can adapt to photovoltaic panel supports with different height differences and improves the flexibility of the bearing platform 1.

[0076] like Figure 3 As shown, in an optional embodiment of the present invention, both the first hanging rod 21 and the second hanging rod 22 are square tubes, and the inner cavity of the second hanging rod 22 is fitted with the inner cavity of the first hanging rod 21 with clearance.

[0077] In this embodiment, during the overlapping process of the first support rod 11 and the second support rod 12, the square sidewalls can make the contact surfaces fit better, further improving the stability of the installation platform structure.

[0078] The clearance fit between the inner cavities of the second hanging rod 22 and the first hanging rod 21 offers several advantages. First, the clearance fit allows the bearing platform 1 to absorb and mitigate vibrations and impacts when subjected to horizontal external forces, thereby improving its stability and durability. Second, the clearance fit allows for easy installation and relative sliding without requiring excessive external force, reducing assembly difficulty and operating costs. Third, the clearance fit facilitates easy disassembly, simplifying maintenance. Finally, due to the large temperature difference between day and night in the desert environment, the clearance fit prevents deformation and compression caused by thermal expansion and contraction, thus reducing wear and friction.

[0079] like Figures 2-4 As shown, in an optional embodiment of this utility model, the central sleeve rod 111, the connecting crossbar 112, the first hanging rod 21, the second hanging rod 22, and the limiting rod are all hollow tube structures.

[0080] In this embodiment, the central sleeve rod 111, the connecting crossbar 112, the first hanging rod 21, the second hanging rod 22 and the limiting rod are all hollow tube structures. On the one hand, this reduces the weight, thereby reducing the longitudinal load on the bearing platform 1. On the other hand, it reduces the use of materials and saves production costs.

[0081] In addition, the center sleeve rod 111, the connecting horizontal rod 112, the first hanging rod 21 and the second hanging rod 22 are all hollow tubes, which are convenient for being drilled in the machining process and save machining cost.

[0082] The utility model provides a photovoltaic panel mounting platform, through with mounting platform becomes from vertical type changes into hanging type, solves desert environment, mounting platform is difficult to provide stable supporting force technical problem.

[0083] The above is the preferred embodiment of the utility model, it should be pointed out that, for ordinary skilled person in the art, under the premise of not departing from the principle described in the utility model, still can make a number of improvements and refinements, these improvements and refinements also should be regarded as the protection scope of the utility model.

Claims

1. A desert photovoltaic panel installation platform, characterized in that, include: Platform (1); 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); The hook (3) is connected to the upper end of the connecting rod (2), and the hook (3) is suspended from the crossbeam of the photovoltaic panel bracket.

2. The desert photovoltaic panel installation platform according to claim 1, characterized in that, The carrier platform (1) includes: The first support rod (11) has two parts, and the two ends of the first support rod (11) are respectively connected to the bottom ends of the two connecting rods (2); Multiple second support rods (12) are lapped between two first support rods (11).

3. The desert photovoltaic panel installation platform according to claim 2, characterized in that, The first support rod (11) includes: Hollow structure center sleeve (111); A connecting crossbar (112) is slidably disposed within both ends of the central sleeve (111), and the bottom end of the connecting hanging rod (2) is connected to the connecting crossbar (112); The two ends of the central sleeve rod (111) in the length direction are provided with first length adjustment positioning through holes (113). Both of the connecting crossbars (112) are provided with multiple second length adjustment positioning through holes (115) on their sides. Multiple first positioning pins (114) are provided, with the ends of the multiple first positioning pins (114) passing through the first length adjustment positioning through hole (113) and the second length adjustment positioning through hole (115) in sequence.

4. The desert photovoltaic panel installation platform according to claim 3, characterized in that, Both the central sleeve rod (111) and the connecting cross rod (112) are square tube structures, and the connecting cross rod (112) and the inner cavity of the central sleeve rod (111) are fitted with a clearance.

5. The desert photovoltaic panel installation platform according to claim 3, characterized in that, The bottom surface of the central sleeve (111) is vertically connected to the operating vertical rod (4).

6. The desert photovoltaic panel installation platform according to claim 3, characterized in that, The ends of the two connecting crossbars (112) that are far apart from each other are respectively provided with first limiting rods (51), and the two first limiting rods (51) and the corresponding connecting rods (2) form a first limiting space (511) for limiting and fixing the end of the second support rod (12). The surface of the central sleeve (111) is provided with multiple second limiting rods (52), and a second limiting space (521) is formed between two adjacent second limiting rods (52) to limit and fix the end of the second support rod (12).

7. The desert photovoltaic panel installation platform according to claim 6, characterized in that, Two limiting blocks (121) are provided on the bottom surface of either end of the second support rod (12), and a third limiting space (122) is formed between the two limiting blocks (121) to accommodate the connecting crossbar (112) or the central sleeve rod (111).

8. The desert photovoltaic panel installation platform according to claim 3, characterized in that, The connecting rod (2) includes: A first hanging rod (21) connected to the connecting crossbar (112), wherein the first hanging rod (21) is a hollow tube; A second hanging rod (22) is slidably disposed inside the first hanging rod (21), the upper end of the second hanging rod (22) extends out of the first hanging rod (21), and the upper end of the second hanging rod (22) is connected to the hook (3); The first hanging rod (21) has a first height adjustment and positioning through hole (23) through its upper end; The second hanging rod (22) has several second height adjustment and positioning through holes (25) through its outer side; The second positioning pin (24) has its end passing through the first height adjustment positioning through hole (23) and any second height adjustment positioning through hole (25) in sequence.

9. The desert photovoltaic panel installation platform according to claim 8, characterized in that, Both the first hanging rod (21) and the second hanging rod (22) are square tubes, and the inner cavity of the second hanging rod (22) is fitted with the first hanging rod (21) with a clearance.

10. The desert photovoltaic panel installation platform according to claim 8, characterized in that, The central sleeve rod (111), the connecting crossbar (112), the first hanging rod (21) and the second hanging rod (22) are all hollow tube structures.