Mountain photovoltaic support assembly installation work platform

Through the triangular support frame and walkway plate support rod structure, the stability and material adjustment complexity of the mountain photovoltaic support assembly installation platform are solved, and efficient and flexible construction results are achieved.

CN223164194UActive Publication Date: 2025-07-29CHINA HYDROPOWER ELEVENTH ENG BUREAU (ZHENGZHOU) CO LTD +1
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Patent Information

Application Number
CN202422243632.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-13
Publication Date
2025-07-29
Estimated Expiration
2034-09-13

AI Technical Summary

Technical Problem

The existing mountain photovoltaic bracket assembly installation operation platform has poor stability on mountainous terrain, poses safety risks, and is complex in material adjustments, which cannot adapt to the needs of different terrains.

Method used

The triangular support frame and walkway plate support rod structure is adopted. The walkway plate and support rod can be detachably connected, and stable fixation is achieved through hooks and clamps. It is flexibly connected with the support column to reduce material adjustment needs.

Benefits of technology

It improves construction efficiency and flexibility, enhances the applicability of the platform, reduces the impact of mountain terrain on the platform, and facilitates material turnover.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of photovoltaic support assembly installation, in particular to a mountain photovoltaic support assembly installation work platform. Comprising a triangular supporting frame, walkway plate supporting rods and a walkway plate and is arranged between the walkway plate supporting rods, and the walkway plate is detachably connected with the walkway plate supporting rods; the walkway plate is of a rectangular plate-shaped structure, the walkway plate is arranged between the two walkway plate supporting rods, connecting assemblies are arranged on the two sides of the walkway plate, and the walkway plate is connected with the walkway plate supporting rods through the connecting assemblies; the construction efficiency and the construction flexibility are improved; meanwhile, the platform is high in applicability, and material turnover is convenient; and the influence of mountain terrain and steep and slow gradient is weakened, and the applicability is high.
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Description

Technical Field

[0001] The utility model relates to the field of installation of photovoltaic support components, and particularly relates to an installation operation platform for mountain photovoltaic support components. Background Art

[0002] Since the height of the photovoltaic support from the ground generally exceeds 2m, a working platform at height is required for the installation of support components. At present, the commonly used working methods for the installation of mountain photovoltaic support components are mainly the folding ladder and the erection of a simple working platform at height.

[0003] In mountainous areas, the surface is characterized by large undulations and unevenness. The standing surface of the folding ladder is uneven, with poor stability and great potential safety hazards. There are mainly two forms of working platforms at height relatively suitable for the installation of mountain photovoltaic support components. One is to use a steel bar with a hook, hang one end on the inclined beam, and suspend the steel pipe at the other end, with a walkway laid between the steel pipes; the other is to use a separate channel steel column and a connecting piece with two triangular supports on both sides to fix to the support foundation, and a working platform is erected by laying a walkway between adjacent triangular supports (Patent Application No.: 202320117422.1). However, both of the above two working platforms have deficiencies. The former requires the inclined beam to be installed first for erection. At the same time, it is easy to shake during the operation, with insufficient stability. When the weight on the platform increases significantly, the steel bar hook is likely to wear the galvanized layer on the surface of the inclined beam. If the weight is too large, the inclined beam is likely to deform; the latter has a large usage rate of bolts, the platform erection and disassembly procedures are relatively complex, the adjustment of the triangular support and the walkway position is restricted by the bolt holes, and every time the working site is changed, or when the terrain of the installation area of the same group of support components has large undulations, in order to ensure the flatness of the installation of the same group of support components, it is necessary to adjust the length or bolt holes of the channel steel column according to the terrain of the same group of the ground and the distance from the ground of the 4 inclined beams. The channel steel column cannot be unified into one model, and more platform materials are invested. Summary of the Invention

[0004] To solve the problems of the prior art, the utility model provides an installation operation platform for mountain photovoltaic support components.

[0005] To achieve the above purpose, the utility model adopts the following technical scheme: an installation operation platform for mountain photovoltaic support components, comprising a triangular support frame, with a support column arranged on one side, and the triangular support frame is connected to the support column; a support base is fixedly arranged at the lower part of the support column;

[0006] A walkway board support rod, which is in a round rod shape, and its end passes through the triangular support frame, and the walkway board support rod is detachably connected to the triangular support frame,

[0007] A walkway board is arranged between the walkway board support rods, and the walkway board is detachably connected to the walkway board support rods;

[0008] The walkway board is a rectangular plate structure. The walkway board is arranged between two walkway board support rods. Connecting components are arranged on both sides of the walkway board. The walkway board is connected to the walkway board support rods through the connecting components;

[0009] The connecting components include:

[0010] The hooks are in a bent hook structure. One end of each hook is fixedly connected to one side of the walkway board. The main body of the hook contacts the walkway board support rod. The number of hooks is two and they are arranged side by side;

[0011] The clamp is fixedly connected to the walkway board support rod. One side of the clamp protrudes from the outer surface of the walkway board support rod. The clamp is arranged on one side of the walkway board.

[0012] The walkway board support rods are perpendicular to the triangular support frame. The number of walkway board support rods is two and they are arranged in parallel. The two walkway board support rods are respectively arranged at both ends of the triangular support frame.

[0013] The triangular support frame includes:

[0014] The inclined pipe is in a square pipe structure and is arranged obliquely upward;

[0015] The horizontal pipe is in a square pipe structure and is arranged horizontally. The upper end surface of the inclined pipe is fixedly connected to the end of the horizontal pipe. The horizontal pipe is perpendicular to the support column;

[0016] The first hoop is welded and fixed to one end of the inclined pipe on one side. The first hoop is arranged horizontally and is fixedly connected to the support column;

[0017] The second hoop is welded and fixed to one end of the horizontal pipe on one side. The second hoop is arranged horizontally and is located above the first hoop. The second hoop is fixedly connected to the support column.

[0018] Perforations are opened at positions near the ends on both sides of the horizontal pipe. The perforations are circular holes. Cylindrical pipes are fixedly arranged in the perforations. The cylindrical pipes are in a circular pipe structure and the cylindrical pipes are fixedly passed through the perforations in a matching manner.

[0019] The walkway board support rods pass through the cylindrical pipes. The diameter of the walkway board support rods is smaller than the diameter of the cylindrical pipes.

[0020] The beneficial effects of the utility model are as follows: improving construction efficiency and construction flexibility; at the same time, the platform has strong applicability and convenient material turnover; reducing the influence of mountain terrain and steepness of slopes, and having strong applicability. Description of the Drawings

[0021] Figure 1 It is a schematic side view structure diagram of the utility model.

[0022] Figure 2 It is a schematic three-dimensional structure diagram of the utility model.

[0023] Figure 3 It is a schematic structural diagram of the walkway board support rod and the cylindrical pipe in the present utility model.

[0024] Figure 4 It is a schematic structural diagram of the connection between the triangular support frame and the walkway board support rod in the present utility model.

[0025] Figure 5 It is a schematic structural diagram of the walkway board and the walkway board support rod in the present utility model.

[0026] Figure 6 It is a schematic diagram of the clamp structure in the present utility model Figure 1 .

[0027] Figure 7 It is a schematic diagram of the clamp structure in the present utility model Figure 2 .

[0028] Wherein: 1. Bracket base; 2. Bracket column; 3. Triangular support frame; 5. Cylindrical pipe; 6. Walkway board support rod; 8. Walkway board; 7. Plug pin; 31. Inclined pipe; 32. Horizontal pipe; 41. Hoop one; 42. Hoop two; 9. Hook; 10. Clamp; 101. Protrusion; 102. Threaded hole; 103. Bolt; 321. Perforation. Specific implementation manner

[0029] A mountain photovoltaic bracket assembly installation operation platform includes a triangular support frame 3, with a bracket column 2 arranged on one side, and the triangular support frame 3 is connected to the bracket column 2; a bracket base 1 is fixedly arranged at the lower part of the bracket column 2. Both the bracket base 1 and the bracket column 2 are cylindrical structures, the diameter of the bracket base 1 is larger than that of the bracket column 2, and the center lines of the bracket base 1 and the bracket column 2 coincide. The bracket base 1 is fixed on the ground, and the bracket base 1 plays a role in stably supporting the bracket column 2; the number of bracket columns 2 is two and they are arranged side by side at intervals, and a triangular support frame 3 is arranged on each bracket column 2;

[0030] The walkway board support rod 6 is a round rod-shaped structure, and its end passes through the triangular support frame 3. The walkway board support rod 6 is detachably connected to the triangular support frame 3, and the walkway board support rod 6 is perpendicular to the triangular support frame 3. The number of walkway board support rods 6 is two and they are arranged in parallel. The two walkway board support rods 6 are respectively arranged at both ends of the triangular support frame 3; the triangular support frame 3 plays a role in supporting the walkway board support rod 6. The walkway board support rod 6 is arranged between the two bracket columns 2. A triangular support frame 3 is arranged on one side of each bracket column 2, and two triangular support frames 3 are arranged between the same sides of the two bracket columns 2. The walkway board support rod 6 is arranged between the two triangular support frames 3. One side of the walkway board support rod 6 is connected to one triangular support frame 3, and the other end of the walkway board support rod 6 is connected to the other triangular support frame 3;

[0031] The walkway board 8 is arranged between the walkway board support rods 6. The walkway board 8 is detachably connected to the walkway board support rods 6, and the walkway board 8 can be a non-slip walkway board.

[0032] The triangular support frame 3 includes:

[0033] The inclined pipe 31 is of a square pipe structure and is arranged inclined upward.

[0034] The horizontal pipe 32 is of a square pipe structure and is arranged horizontally. The upper end surface of the inclined pipe 31 is fixedly connected to the end of the horizontal pipe 32. The horizontal pipe 32 is perpendicular to the support column 2. The inclined pipe 31 plays a role in supporting the horizontal pipe 32.

[0035] The first hoop 41 is welded and fixed to one end of the inclined pipe 31 on one side. The first hoop 41 is arranged horizontally and is fixedly connected to the support column 2.

[0036] The second hoop 42 is welded and fixed to one end of the horizontal pipe 32 on one side. The second hoop 42 is arranged horizontally and is located above the first hoop 41. The second hoop 42 is fixedly connected to the support column 2. The first hoop 41 and the second hoop 42 can be fixedly connected to the support column 2 more flexibly, so as to facilitate the adjustment of the vertical position of the triangular support frame 3 on the support column 2. The triangular support frame 3 is formed by welding a square pipe and a hoop. The triangular support frame 3 is fastened to the support column 2 by using a hoop and a fixing bolt, which is beneficial for the two triangular support frames 3 on both sides to be adjusted vertically according to the needs of the workers' installation operations. Since the spacing of the mountain photovoltaic support bases 1 is generally 4 m or more, if the walkway board 8 is directly placed between the adjacent triangular support frames 3, the middle part of the walkway board 8 is easily bent and damaged due to concentrated force during the construction process, and the too long and too heavy walkway board 8 is not conducive to the turnover of the platform materials. Therefore, two walkway board support rods 6 are arranged perpendicular to the triangular support direction for laying the walkway board 8. Perforations 321 are opened at both ends near the end of both sides of the horizontal pipe 32. The perforations 321 are circular holes. A cylindrical pipe 5 is fixedly arranged in the perforations 321. The cylindrical pipe 5 is of a circular pipe structure. The cylindrical pipe 5 is fixedly passed through the perforations 321. Specifically, the cylindrical pipe 5 is welded and fixed to the horizontal pipe 32, and both ends of the cylindrical pipe 5 protrude from both end faces of the perforations 321. The cylindrical pipe 5 serves as a channel passing through the horizontal pipe 32.

[0037] The walkway board support rod 6 passes through the cylindrical pipe 5. The diameter of the walkway board support rod 6 is smaller than the diameter of the cylindrical pipe 5. A support rod hole (not shown in the figure) is opened through the walkway board support rod 6. A cylindrical pipe hole (not shown in the figure) is opened through the cylindrical pipe 5. The support rod hole (not shown in the figure) and the cylindrical pipe hole (not shown in the figure) are arranged in a matching manner. The pin 7 passes through the support rod hole (not shown in the figure) and the cylindrical pipe hole (not shown in the figure) at the same time, and the walkway board support rod 6 and the cylindrical pipe 5 are fixedly connected through the pin 7. The cylindrical pipes 5 are welded to both ends of one side of the right-angle edge at the top of the triangular support frame 3 and are connected to the walkway board support rod 6 by using the pin 7, which is convenient for installation.

[0038] The walkway board 8 is a rectangular plate structure. The walkway board 8 is arranged between two walkway board support rods 6. Connecting components are arranged on both sides of the walkway board 8, and the walkway board 8 is connected to the walkway board support rods 6 through the connecting components;

[0039] The connecting components include:

[0040] The hook 9, which is in a bent hook shape. One end of the hook 9 is fixedly connected to one side of the walkway board 8. The main body of the hook 9 contacts the walkway board support rod 6. The number of hooks 9 is two and they are arranged side by side; The hooks 9 are symmetrically arranged on both sides of the walkway board 8, and the connection between the walkway board 8 and the walkway board support rods 6 on both sides of the walkway board 8 is realized through the hooks 9.

[0041] The clamp 10, which is fixedly connected to the walkway board support rod 6. One side of the clamp 10 protrudes from the outer surface of the walkway board support rod 6. The clamp 10 is arranged on one side of the walkway board 8; Two hooks 9 are arranged at each end of the walkway board 8, and the walkway board 8 can be moved according to the needs of the construction position.

[0042] A convex block 101 is welded and fixed on one side of the clamp 10. The convex block 101 is a rectangular plate structure, and the side of the convex block 101 faces the walkway board 8;

[0043] The two end faces of the convex block 101 are flush with the two end faces of the clamp 10. Threaded holes 102 are through - opened on the convex block 101. The number of threaded holes 102 is three and they are arranged side by side. Bolts 103 are arranged in the threaded holes 102 in a matching way. One end of the bolt 103 protrudes from the end face of the threaded hole 102. The length of the bolt 103 can be selected according to needs. One end of the bolt 103 can contact the side surface of the walkway board 8. The protruding part of the bolt 103 contacts the side surface of the walkway board 8 to play a role in pushing the walkway board 8. The number of bolts 103 is at least one. Rotating the bolt 103 can control the length of the bolt 103 protruding from the side end face of the convex block 101; Due to the existence of some large - slope areas in the mountainous terrain, in order to prevent the walkway board 8 from sliding down under gravity, the clamp 10 is used to limit one side of the walkway board 8 in the downhill direction. Specifically, one end of the bolt 103 can contact the side surface of the walkway board 8 to prevent the walkway board 8 from sliding and shifting.

[0044] Preferably, triangular support frames 3 are arranged on both sides of each support column 2. The triangular support frames 3 on both sides of the support column 2 are arranged staggeredly in the vertical direction. The number of support columns 2 is two and they are arranged side by side. The triangular support frames 3 on the same side of the two support columns 2 are at the same horizontal height, and two walkway board support rods 6 are arranged between the triangular support frames 3 on the same side and adjacent to each other, and the walkway board 8 is arranged between the walkway board support rods 6.

[0045] In a 24MW photovoltaic project in a certain place and a 2MW photovoltaic project in another place, the maximum height difference is 255m, and the terrain slope is generally between 10° and 35°. The construction volume of the support components is relatively large. If a simple working platform made of a folding ladder or a steel bar with a hook and a steel pipe is used, there are relatively large safety hazards for working at heights. Therefore, according to the actual situation on site, a photovoltaic support component installation working platform applicable to mountainous terrain is used, and the specific erection process is as follows:

[0046] Erection preparation → Fix the triangular support frame 3 → Erection of the walkway board support rod 6 → Placement of the walkway board 8 → (Fix the clamp 10 →) Start working.

Claims

1. A mountain photovoltaic support assembly installation operation platform, characterized in that, It includes a triangular support frame with a support column provided on one side, and the triangular support frame is connected to the support column; a support base is fixedly provided at the lower part of the support column. The walkway board support rod is in a round rod shape, and its end passes through the triangular support frame. The walkway board support rod is detachably connected to the triangular support frame. The walkway board is arranged between the walkway board support rods and is detachably connected to the walkway board support rods. The walkway board is in a rectangular plate shape and is arranged between two walkway board support rods. Connection components are provided on both sides of the walkway board, and the walkway board is connected to the walkway board support rods through the connection components. The connection components include: The hook is in a bent hook shape. One end of the hook is fixedly connected to one side of the walkway board, and the main body of the hook contacts the walkway board support rod. The number of hooks is two and they are arranged side by side. The clamp is fixedly connected to the walkway board support rod. One side of the clamp protrudes from the outer surface of the walkway board support rod, and the clamp is arranged on one side of the walkway board.

2. The installation operation platform of the mountain photovoltaic support assembly according to claim 1, wherein The walkway board support rod is perpendicular to the triangular support frame. The number of walkway board support rods is two and they are arranged in parallel. The two walkway board support rods are respectively arranged at both ends of the triangular support frame.

3. The installation operation platform of the mountain photovoltaic support assembly according to claim 2, characterized in that The triangular support frame includes: The inclined pipe is in a square pipe structure and is arranged obliquely upward. The horizontal pipe is in a square pipe structure and is arranged horizontally. The upper end surface of the inclined pipe is fixedly connected to the end of the horizontal pipe, and the horizontal pipe is perpendicular to the support column. The first hoop is welded and fixed to one end of the inclined pipe on one side. The first hoop is arranged horizontally and is fixedly connected to the support column. The second hoop is welded and fixed to one end of the horizontal pipe on one side. The second hoop is arranged horizontally and is located above the first hoop. The second hoop is fixedly connected to the support column.

4. The installation operation platform of the mountain photovoltaic support assembly according to claim 3, characterized in that, Perforations are provided at positions near the ends on both sides of the horizontal pipe. The perforations are in a round hole shape, and cylindrical pipes are fixedly arranged in the perforations. The cylindrical pipes are in a round pipe structure, and the cylindrical pipes are fixedly passed through the perforations in a matching manner.

5. The installation operation platform for the mountain photovoltaic support assembly according to claim 4, characterized in that, The walkway board support rod passes through the cylindrical pipe, and the diameter of the walkway board support rod is smaller than the diameter of the cylindrical pipe.

Citation Information

Patent Citations

  • Construction platform suitable for installation of photovoltaic support assembly

    CN219753897U