Photovoltaic support mounting platform

By designing a photovoltaic support installation platform with ladders, work platforms, and support frames, the safety risks and low efficiency of high-altitude welding operations have been solved, achieving a stable and convenient support installation process.

CN224063881UActive Publication Date: 2026-03-31CHINA THREE GORGES RENEWABLES (GRP) CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-28
Publication Date
2026-03-31

AI Technical Summary

Technical Problem

In photovoltaic projects, the installation of support structures requires multiple climbs of ladders at heights for welding operations, which poses safety risks and results in low construction efficiency.

Method used

A photovoltaic support installation platform was designed, including a ladder, a working platform, and a support frame. It is connected to the pipe pile by clamps. The working platform is supported on the support frame and fixed to the ground by support rods to form a stable working surface, which facilitates welding operations by workers in multiple positions.

Benefits of technology

It improves the safety and efficiency of bracket installation, avoids repeated ladder climbing and adjustment, expands the work area, and increases the installation efficiency of workers.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of photovoltaic equipment, and provides a photovoltaic support mounting platform. The photovoltaic support installation platform comprises a crawling ladder, two working platforms and two bearing frames. A hoop used for being connected with a pipe pile is arranged at the top end of the crawling ladder, and the two bearing frames are connected to the two sides of the hoop in the horizontal direction. The two working platforms are arranged on the two sides of the hoop in the horizontal direction, the working platform on each side can be supported on at least one bearing frame, and the two working platforms are connected with each other so that the two working platforms can form a working face which surrounds the pipe pile and is used for bearing workers; the working platform is provided with an inlet / outlet which is opposite to the top of the crawling ladder in the vertical direction; the bottom side of the working platform is detachably connected with a supporting rod, and the bottom end of the supporting rod can be supported on the ground. The bearing frame and the supporting rod can jointly support the working platform so that the working platform can be installed on the pipe pile. The two working platforms can form a working face, the working range of workers is expanded, and the efficiency of installing the photovoltaic support is improved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of photovoltaic equipment, and particularly relates to a photovoltaic support installation platform. BACKGROUND

[0002] In the process of new energy photovoltaic project engineering construction, the support needs to be installed on the upper part of the preset pipe pile, and welding needs to be performed at multiple positions when the support is installed, so that the support can be stably installed on the preset pipe pile.

[0003] However, the installation position on the pipe pile is relatively high from the ground, and the operation of the staff climbing the ladder for installation is relatively dangerous, and the range in which the staff can perform welding operation on the ladder is limited, so that the staff needs to repeatedly perform the operations of climbing down the ladder, adjusting the position of the ladder and climbing the ladder again for welding, thereby affecting the construction efficiency. CONTENT OF THE UTILITY MODEL

[0004] In order to solve the above technical problems or at least partially solve the above technical problems, the present application provides a photovoltaic support installation platform.

[0005] The present application provides a photovoltaic support installation platform, which comprises a ladder, two working platforms and two supporting frames.

[0006] The top end of the ladder is provided with a hoop for connecting with the pipe pile, and the two supporting frames are connected to the two sides of the hoop in the horizontal direction.

[0007] The two working platforms are arranged on the two sides of the hoop in the horizontal direction, and the working platform on each side can be supported on at least one supporting frame, and the two working platforms are connected to each other, so that the two working platforms form a working surface surrounding the pipe pile and used for carrying the staff.

[0008] The working platform is provided with an entrance and exit arranged opposite to the top of the ladder in the vertical direction.

[0009] The bottom side of the working platform is detachably connected with a supporting rod, and the bottom end of the supporting rod can be supported on the ground.

[0010] Optionally, the two supporting frames are arranged opposite to each other in a first direction, the supporting frame is a rod body extending in a second direction, and the two ends of the supporting frame extend to the two sides of the hoop along the second direction.

[0011] The two working platforms are arranged on the two sides of the hoop in the second direction, and the working platform on each side is supported on the two supporting frames.

[0012] The first direction is perpendicular to the second direction.

[0013] Optionally, the working platform comprises a bottom plate and a surrounding plate, one side edge of the bottom plate along the second direction is an abutting edge, the other side edge is provided with the surrounding plate, two ends of the surrounding plate along the first direction are a first end and a second end respectively, and the first end and the second end respectively extend to two ends of the abutting edge along the first direction.

[0014] When the two working platforms are connected with each other, the two abutting edges abut against each other, the first ends of the two surrounding plates are connected with each other, and the second ends of the two surrounding plates are connected with each other, so that the two surrounding plates and the two bottom plates jointly enclose an operation space for accommodating workers.

[0015] Optionally, the first end of each of the two surrounding plates is provided with a first lap joint ring, and the second end of each of the two surrounding plates is provided with a second lap joint ring.

[0016] When the two working platforms are connected, the two first lap joint rings can be coaxially arranged, and a fastener is arranged in the coaxial two first lap joint rings, so that the two first ends are connected with each other; and the two second lap joint rings are coaxially arranged, and a fastener is arranged in the coaxial two second lap joint rings, so that the two second ends are connected with each other.

[0017] Optionally, the hoop is connected with a vertical rod on two sides along the first direction, and the vertical rod is used for being attached to the surface side of the pipe pile.

[0018] The edge of the working platform close to each other is provided with a notch for avoiding the vertical rod, so that a part of the vertical rod can be on the top side of the working surface.

[0019] And / or, the top side of the hoop is connected with a containing box, and the containing box is arranged on the top side of the supporting frame, so that when the two working platforms are connected, the containing box is on the top side of the working surface.

[0020] Optionally, at least one supporting rod is arranged on the side of the ladder along the first direction and is detachably connected with the ladder.

[0021] Optionally, the ladder comprises two ladder body parts, the two ladder body parts are oppositely arranged along the second direction, the top of each of the two ladder body parts is detachably connected with the hoop, the two working platforms are oppositely arranged with the two ladder body parts along the vertical direction, and the entrance and exit are oppositely arranged with the top of one of the ladder body parts.

[0022] Optionally, the supporting rod comprises a plurality of telescopic joints arranged in sequence, and each adjacent two telescopic joints are slidably connected, so that the adjacent two telescopic joints can be close to each other and away from each other.

[0023] A limiting structure is provided between each pair of adjacent expansion joints, and the two adjacent expansion joints can be limited by the limiting structure to restrict the relative sliding of the two adjacent expansion joints.

[0024] Optionally, each of the work platforms has a slot on its bottom side, and the support rod is engaged with the slot.

[0025] Optionally, a reinforcing rib is provided between the two work platforms, and the reinforcing rib is detachably connected to the two work platforms.

[0026] The technical solution provided in this application has the following advantages compared with the prior art:

[0027] The photovoltaic support installation platform provided in this application features a clamp at the top of a ladder, with two support brackets connected to the clamp. Two working platforms are supported on the two support brackets, and each working platform has an entrance / exit opposite to the ladder. Support rods are installed on the working platforms to support the platform on the ground. The clamp at the top of the ladder can be fixedly connected to the pipe pile, ensuring the two support brackets are stably positioned on both sides of the pipe pile. The two working platforms can be stably placed on the two support brackets, facilitating the connection of the two working platforms to form a working surface. Workers can also easily enter and exit the working surface via the ladder and the entrance / exit. Each working platform is supported by a support rod on the ground support, ensuring the platform remains stable on the pipe pile. Workers can move on the working surface and perform welding operations between the support and the pipe pile at multiple locations, avoiding the need for repeated ladder climbing and adjusting. Through the cooperation of ladders, two working platforms, and two support frames, the support frames can position the working platforms to facilitate their placement at the set height of the pipe piles. The support frames and support rods can jointly support the working platforms, ensuring their stable position on the pipe piles. The two working platforms can form a working surface, thereby expanding the working range. Workers can complete multi-point welding operations between the brackets and the pipe piles on the working surface, improving the efficiency of photovoltaic bracket installation. Attached Figure Description

[0028] The accompanying drawings, which are incorporated in and form part of this specification, illustrate embodiments consistent with this application and, together with the description, serve to explain the principles of this application.

[0029] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, for those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0030] Figure 1 This is a schematic diagram of the structure of the photovoltaic support mounting platform described in the embodiments of this application;

[0031] Figure 2 This is a perspective structural diagram of the photovoltaic support mounting platform described in the embodiments of this application;

[0032] Figure 3 This is a top view of the photovoltaic bracket installation platform described in the embodiments of this application.

[0033] Among them, 1. Ladder; 11. Hoop; 12. Ladder body; 2. Support frame; 21. Vertical rod; 22. Container box; 3. Working platform; 31. Entrance / exit; 32. Base plate; 321. Abutment edge; 322. Slot; 33. Enclosure; 34. Support rod; 351. First lap ring; 352. Second lap ring; 36. Reinforcing rib; 37. Secondary reinforcing rib; 4. Pipe pile. Detailed Implementation

[0034] To better understand the above-mentioned objectives, features, and advantages of this application, the solution of this application will be further described below. It should be noted that, unless otherwise specified, the embodiments and features described in these embodiments can be combined with each other.

[0035] Many specific details are set forth in the following description in order to provide a full understanding of this application, but this application may also be implemented in other ways different from those described herein; obviously, the embodiments in the specification are only some embodiments of this application, and not all embodiments.

[0036] Reference Figures 1 to 3 As shown, the photovoltaic support installation platform provided in this embodiment includes a ladder 1, two working platforms 3, and two support frames 2. The top of the ladder 1 is provided with a clamp 11 for connecting to the pipe pile 4, and the two support frames 2 are connected to the clamp 11 on both sides in the horizontal direction. The two working platforms 3 are arranged on both sides of the clamp 11 in the horizontal direction, and each working platform 3 can be supported on at least one support frame 2. The two working platforms 3 are connected to each other so that the two working platforms 3 form a working surface around the pipe pile 4 and for carrying workers. The working platform 3 is provided with an entrance and exit 31 that is vertically opposite to the top of the ladder 1. The bottom side of the working platform 3 is detachably connected with a support rod 34, and the bottom end of the support rod 34 can be supported on the ground.

[0037] Specifically, the ladder 1 can include two legs, which are parallel and spaced apart in the horizontal direction, with multiple steps installed between the two legs. One end of the ladder 1 is supported on the ground, and the other end is supported on the pipe pile 4. The end of the ladder 1 supported on the ground is the bottom end of the ladder 1, and the end of the ladder 1 supported on the pipe pile 4 is the top end of the ladder 1. The clamp 11 can be installed on the top of the ladder 1 by bolts or welding, so that after the ladder 1 is supported between the ground and the pipe pile 4, the clamp 11 can be connected to the pipe pile 4, thus keeping the position of the ladder 1 stable.

[0038] The aforementioned clamp 11 can be designed as a split unit, consisting of two semi-circular rings arranged opposite each other in the horizontal direction. Each ring has multiple through holes, which can be overlapped to allow bolts to pass through, connecting the two rings together. By aligning the through holes at different positions on the rings, the dimensions of the connected rings can be adjusted. The two rings are respectively installed on both sides of the pipe pile 4 in the horizontal direction and then locked with bolts to achieve a rigid connection between the clamp 11 and the pipe pile 4. The two support brackets 2 can be optionally installed on the two rings respectively.

[0039] Alternatively, the clamp 11 can include a horizontally bent positioning piece. One end of the positioning piece is fixedly connected to the ladder 1, and the other end is a free end. After the free end of the positioning piece wraps around the pipe pile 4, the two ends of the positioning piece are connected to each other, thus rigidly connecting the clamp 11 to the pipe pile 4. Two support brackets 2 are set on the side of the positioning piece away from the pipe pile 4. The support brackets 2 can be connected to the clamp 11 by welding or by bolts.

[0040] The direction of the two legs of the ladder 1 is the first direction a, the direction perpendicular to the first direction a in the horizontal direction is the second direction b, and the third direction c is the vertical direction and is perpendicular to the first direction a and the second direction b.

[0041] The aforementioned support frame 2 can be a rod structure. Two support frames 2 can be set on both sides of the clamp 11 along the first direction a, and the support frames 2 extend along the second direction b, so that the two ends of the support frame 2 are on both sides of the pipe pile 4 along the second direction b. The part of the support frame 2 on both sides of the pipe pile 4 along the second direction b is the first part and the second part. Two working platforms 3 are set on both sides of the pipe pile 4 along the second direction b. One working platform 3 can be supported on the first part of the two support frames 2, and the other working platform 3 can be supported on the second part of the two support frames 2, so that the two working platforms 3 can remain stable on both sides of the pipe pile 4.

[0042] Alternatively, two support frames 2 can be arranged along the second direction b on both sides of the clamp 11, and the support frames 2 can extend along the first direction a. The two ends of the support frames 2 are on both sides of the pipe pile 4 along the first direction a. The parts of the support frames 2 on both sides of the pipe pile 4 along the first direction a are the first part and the second part. Two working platforms 3 are respectively arranged on both sides of the pipe pile 4 along the first direction a. One working platform 3 can be supported on the first part of the two support frames 2, and the other working platform 3 can be supported on the second part of the two support frames 2, so that the working platform 3 on each side can be placed on the corresponding part of the two support frames 2.

[0043] Alternatively, the support frame 2 can be a frame structure, with two support frames 2 arranged on both sides of the clamp 11 along the first direction a, and the two support frames 2 extending in a direction away from each other along the first direction a. The two working platforms 3 are arranged on both sides of the clamp 11 along the first direction a and supported on the two support frames 2 respectively. Alternatively, the two support frames 2 can be arranged on both sides of the clamp 11 along the second direction b, and the two support frames 2 extending in a direction away from each other along the second direction b. The two working platforms 3 are arranged on both sides of the clamp 11 along the second direction b and supported on the two support frames 2 respectively.

[0044] The aforementioned entrance / exit 31 avoids obstruction from the support frame 2, ensuring that the support frame 2 does not block workers from passing through the entrance / exit 31. One work platform 3 can be selected with a through hole as the entrance / exit 31; alternatively, two work platforms 3 can be selected with notches on their adjacent edges, and the two notches can be joined together to form the entrance / exit 31. The entrance / exit 31 is vertically aligned with the top of the ladder 1, allowing workers to directly access the work surface via the ladder 1.

[0045] The working platform 3 can be a panel structure or a frame structure formed by connecting multiple planes. The edges of the two working platforms 3 that are close to each other can be connected to each other by bolts or hinges, so that the two working platforms 3 can form a working surface for supporting the workers. The workers can stand on the working surface to weld the photovoltaic bracket to the preset pipe pile 4.

[0046] The support rod 34 can be selected as a vertically extending rod. The length of the support rod 34 is determined according to the required height of the work platform 3. The support rod 34 can be made of steel bars or hollow steel pipes. After the support rod 34 is supported between the work platform 3 and the bottom surface, the top of the support rod 34 can be connected to the work platform 3 by welding or bolts. Alternatively, the support rod 34 can be selected as a telescopic rod, which is connected to the work platform 3 by welding or bolts, and extends vertically to support the ground.

[0047] One support rod 34 can be installed on each work platform 3, or two support rods 34 can be installed on each work platform 3. The two support rods 34 are set on both sides of the ladder 1 along the first direction a to avoid the support rods 34 affecting the workers going up and down the ladder 1.

[0048] In practical use, the photovoltaic support installation platform provided in this application is used by supporting the ladder 1 on the pre-set pipe pile 4, and the workers climb the ladder 1 and fix the clamp 11 to the pipe pile 4. Then, the two working platforms 3 can be placed on the two support frames 2 by hoisting equipment, or the workers can carry the working platforms 3 up the ladder 1 and then manually place the working platforms 3 on the two support frames 2. After the workers climb the ladder 1, they can position their upper body on the top side of the working surface through the inlet and outlet 31. Then, the workers connect the two working platforms 3 to form a working surface and support the support rod 34 on the ground.

[0049] When welding the bracket onto the pipe pile 4, the workers enter the working face through the inlet and outlet 31 and stand on the working face to complete the operation of welding the bracket onto the pipe pile 4.

[0050] The photovoltaic support installation platform provided in this application has a clamp 11 at the top of the ladder 1, with two support frames 2 connected to the clamp 11. Two working platforms 3 are supported on the two support frames 2, and the working platforms 3 have an entrance / exit 31 opposite to the ladder 1. The working platforms 3 are equipped with support rods 34 that can be supported on the ground. The clamp 11 at the top of the ladder 1 can be fixedly connected to the pipe pile 4, so that the two support frames 2 are stably set on both sides of the pipe pile 4, and the two working platforms 3 can be stably placed on the two support frames 2. This makes it convenient for workers to connect the two working platforms 3 to form a working surface, and workers can also easily enter and exit the working surface through the ladder 1 and the entrance / exit 31. Each working platform 3 is supported by a support rod 34 on the ground support, so that the working platform 3 can maintain a stable position on the pipe pile 4. Workers can move on the working surface and perform welding operations between the support and the pipe pile 4 at multiple positions, avoiding the need for workers to repeatedly climb up and down the ladder and adjust the ladder position. Through the cooperation of the ladder 1, two working platforms 3 and two support frames 2, the support frames 2 can position the working platform 3 to facilitate the setting of the working platform 3 at the set height of the pipe pile 4. The support frames and support rods 34 can jointly support the working platform 3, so that the working platform 3 can maintain a stable position on the pipe pile 4. The two working platforms 3 can form a working surface, thereby expanding the working range. Workers can complete multi-point welding operations between the bracket and the pipe pile 4 on the working surface, improving the efficiency of the workers in installing photovoltaic brackets.

[0051] Reference Figure 1 and Figure 2As shown, in some embodiments, two support frames 2 are arranged opposite each other along a first direction, the support frame 2 is a rod extending along a second direction, and both ends of the support frame 2 extend to both sides of the clamp 11 along the second direction; two working platforms 3 are arranged on both sides of the clamp 11 along the second direction, and each working platform 3 is supported on the two support frames 2; the first direction is perpendicular to the second direction.

[0052] With this configuration, the two support frames 2, extending along the second direction b, form a support structure on both sides of the pipe pile 4 to support the working platform 3. This allows the support frame 2, even with a small space-consuming rod structure, to stably support the working platform 3. The symmetrical arrangement of the two support frames 2 ensures that the center of gravity of the working platform 3 on the two support frames 2 is between them, avoiding the risk of overturning due to eccentric loading.

[0053] Specifically, such as Figure 1 and Figure 2 As shown, the direction of the two legs of the ladder 1 relative to each other is the first direction a, the direction perpendicular to the first direction a in the horizontal direction is the second direction b, and the third direction c is the vertical direction and is perpendicular to the first direction a and the second direction b. The first direction a is the width direction of the ladder 1, and the two support frames 2 are set on both sides of the clamp 11 along the first direction a, so that workers can climb to the top of the ladder 1 through the space between the two support frames 2 along the first direction a.

[0054] The support frame 2 can be a steel beam or a steel frame. The rod of the support frame 2 extends along the second direction b. The rods of the two support frames 2 are on the same plane. The parts of the rods of the support frame 2 along the second direction b on both sides of the clamp 11 are the first part and the second part. The first part of the two support frames 2 can form a first support structure on one side of the pipe pile 4, and the second part of the two support frames 2 can form a second support structure on the other side of the pipe pile 4. One working platform 3 is supported on the first support structure, and the other working platform 3 is supported on the second support structure.

[0055] Reference Figure 1 and Figure 2 As shown, in some embodiments, the work platform 3 includes a base plate 32 and a surrounding plate 33. One edge of the base plate 32 along the second direction is an abutment edge 321, and the other edge is provided with a surrounding plate 33. The two ends of the surrounding plate 33 along the first direction are a first end and a second end, respectively, which extend to the two ends of the abutment edge 321 along the first direction. When the two work platforms 3 are connected to each other, the two abutment edges 321 abut against each other, the first ends of the two surrounding plates 33 are connected to each other, and the second ends of the two surrounding plates 33 are connected to each other, so that the two surrounding plates 33 and the two base plates 32 together form an operating space for accommodating workers.

[0056] With this configuration, the abutting edges 321 of the two base plates 32 abut against each other to form a working surface. The abutting edges 321 abut against each other can reduce the gap between the two working platforms 3 and improve the positional stability after the two working platforms 3 are connected. After the surrounding plates 33 are connected, they can prevent workers from falling from the edge of the working surface, thus improving the safety of workers when working on the working platform 3.

[0057] Specifically, the base plate 32 can be a planar plate structure or a semi-circular plate. A notch is provided in the middle of the straight edge of the plate to avoid the pipe pile 4. The straight edge of the plate is the abutment edge. The surrounding plate 33 is set on the arc-shaped edge of the plate, with both ends of the surrounding plate 33 located at the straight edge of the plate. After the two base plates 32 are spliced, the abutment edges 321 fit together. The first ends of the two surrounding plates 33 fit together and are connected by bolts or clips. The second ends of the two surrounding plates 33 fit together and are connected by bolts or clips, forming a ring-shaped plate. The space enclosed by the ring-shaped plate and the two base plates 32 is the operating space. Workers weld the support to the pipe pile 4 within the operating space. Workers can move within the operating space to perform welding operations at different positions on the pipe pile 4.

[0058] Alternatively, the base plate 32 can be a rectangular plate, with one edge along the second direction b serving as the abutment edge 321 and the other edge as the mounting edge. The surrounding plate 33 is positioned on the mounting edge and extends to the two adjacent edges of the abutment edge 321, such that the first and second ends of the surrounding plate 33 are located at the two ends of the abutment edge 321 along the first direction a. The abutment edges 321 of the two base plates 32 are fitted together, so that the first ends of the two surrounding plates 33 are fitted together and connected to each other, and the second ends of the two surrounding plates 33 are fitted together and connected to each other.

[0059] The plane formed by connecting the two base plates 32 is the working surface. The surrounding plate 33 is set around the working surface so that the surrounding plate 33 can prevent workers from falling from the edge of the working surface.

[0060] Reference Figures 1 to 3 As shown, in some embodiments, a first overlapping ring 351 is provided on the first end of each of the two enclosure plates 33, and a second overlapping ring 352 is provided on the second end of each of the two enclosure plates 33; when the two working platforms 3 are connected, the two first overlapping rings 351 can be coaxially arranged, and fasteners are passed through the two coaxial first overlapping rings 351 to connect the two first ends to each other; the two second overlapping rings 352 are coaxially arranged, and fasteners are passed through the two coaxial second overlapping rings 352 to connect the two second ends to each other.

[0061] With this configuration, fasteners can be inserted into the two first overlapping rings 351 and the two second overlapping rings 352 to complete the connection operation of the two enclosures 33, thus improving the ease of operation for connecting the two enclosures 33 to each other.

[0062] Specifically, the first overlapping rings 351 on the two working platforms 3 can be staggered in the vertical direction, so that after the two first ends are attached to each other, the two first overlapping rings 351 are vertically spaced apart in the vertical direction, so that the two first overlapping rings 351 are coaxial; the second overlapping rings 352 on the two working platforms 3 can be staggered in the vertical direction, so that after the two second ends are attached to each other, the two second overlapping rings 352 are vertically spaced apart in the vertical direction, so that the two second overlapping rings 352 are coaxial.

[0063] The fastener can be a cylindrical or rivet-like cylindrical structure. The fastener is inserted vertically into the two first overlapping rings 351, thereby restricting the relative movement of the two first overlapping rings 351 in the horizontal direction.

[0064] Reference Figures 1 to 3 As shown, in some embodiments, the clamp 11 is connected to vertical rods 21 on both sides along the first direction, and the vertical rods 21 are used to fit against the surface of the pipe pile 4; the edges of the working platform 3 that are close to each other are provided with notches to avoid the vertical rods 21, so that a part of the vertical rods 21 can be on the top side of the working surface.

[0065] With this configuration, when the clamp 11 is fixedly connected to the pipe pile 4, the vertical rod 21 can increase the contact area between the clamp 11 and the pipe pile 4 by fitting against the surface of the pipe pile 4, thus preventing external vibrations from causing the ladder 1 and the clamp 11 to deflect in the vertical direction and ensuring that the two support frames 2 are on the same horizontal plane to stably support the working platform 3.

[0066] Specifically, the vertical rod 21 can be connected to the clamp 11 by welding or bolting, or it can be connected to the support frame 2. When the clamp 11 is connected to the pipe pile 4, both vertical rods 21 can be attached to the surface of the pipe pile 4.

[0067] The edges of the aforementioned work platforms 3 that are close to each other have notches corresponding to the positions of the vertical rods 21. When the two work platforms 3 are arranged opposite each other and connected to each other, the notches on the two work platforms 3 can form through holes, and the vertical rods 21 are inserted into the through holes, so that a part of the vertical rods 21 are on the top side of the work surface.

[0068] Reference Figures 1 to 3As shown, in some embodiments, a container 22 is connected to the top side of the clamp 11. The container 22 is disposed on the top side of the support frame 2 so that when the two work platforms 3 are connected, the container 22 is on the top side of the work surface.

[0069] With this configuration, when the clamp 11 is connected to the pipe pile 4, the container 22 can also be set on the pipe pile 4. The container 22 can store tools and consumables. When the workers are installing the photovoltaic bracket on the working surface, they can take the tools and consumables from the container 22, avoiding the need for workers to climb up and down the ladder 1 multiple times to get the tools or consumables, and making it convenient for workers to work on the working surface for a long time.

[0070] Specifically, when the clamp 11 is equipped with a vertical rod 21, the container 22 can be installed on any one of the vertical rods 21; or the clamp 11 can be equipped with a mounting block on its top side, and the container 22 can be connected to the mounting block. The edges of the two working platforms 3 that are close to each other are provided with notches corresponding to the mounting blocks, so that after the two working platforms 3 are connected to each other, the mounting block can be on the top side of the working surface, so that the container 22 is on the top side of the working surface.

[0071] The aforementioned container 22 has an internal storage space, and the top of the container 22 has a movable cover that can be opened to reveal the storage space. The storage space of the container 22 can be used to store welding rods or other consumables required for welding. The storage space of the container 22 can also be used to store labor protection supplies and commonly used tools, thereby avoiding the need for workers to climb up and down the ladder 1 multiple times to retrieve tools or consumables when installing photovoltaic brackets.

[0072] Reference Figures 1 to 3 As shown, in some embodiments, at least one support rod 34 is disposed on the side of the ladder 1 along a first direction and is detachably connected to the ladder 1.

[0073] With this configuration, after the support rod 34 is supported on the ground, the ladder 1 is connected to the support rod 34. The force on the work platform 3 can be transmitted to the ground through the support rod 34 and the ladder 1, so that the ladder 1, the support rod 34 and the support frame 2 together form a frame structure, which improves the stability of the work platform 3.

[0074] Specifically, a support rod 34 can be provided on a work platform 3. The support rod 34 is located on the side of the ladder 1 along the first direction a. The support rod 34 can be detachably connected to the ladder 1 by bolts. Alternatively, a positioning hole can be provided on the support rod 34, and an installation hole can be provided on the side wall of the ladder 1. A pin can be inserted into the positioning hole and the installation hole to make the support rod 34 detachably connected to the ladder 1.

[0075] Two support rods 34 can be optionally installed on the work platform 3. The two support rods 34 are located on both sides along the first direction a, and the ladder 1 can be detachably connected to the two support rods 34.

[0076] Reference Figures 1 to 3 As shown, in some embodiments, the ladder 1 includes two ladder sections 12, which are arranged opposite to each other along a second direction. The tops of the two ladder sections 12 are detachably connected to the clamps 11. Two working platforms 3 are respectively arranged opposite to the two ladder sections 12 in a vertical direction. The entrance / exit 31 is arranged opposite to the top of one ladder section 12.

[0077] With this configuration, both ladder sections 12 are connected to the clamps 11, and both ladder sections 12 can be supported on the ground. The two ladder sections 12 share the force on the clamps 11 and the support frame 2, thereby improving the stability of the work platform 3.

[0078] Specifically, the ladder section 12 includes two ladder rods, which are spaced apart and parallel to each other along a first direction a. Multiple treads are connected between the two ladder rods and are spaced apart along the extension direction of the ladder rods. The two ladder sections 12 are arranged along a second direction b. After the tops of both ladder sections 12 are connected to the clamps 11, the two ladder sections 12 can form an A-frame ladder structure.

[0079] You can choose to first install the clamp 11 on a ladder part 12, then support the ladder part 12 on one side of the pipe pile 4 along the second direction b, and fix the clamp 11 to the pipe pile 4. The other ladder part 12 is supported on the other side of the pipe pile 4 along the second direction b and connected to the clamp 11.

[0080] A connecting rod can be optionally provided between the two trapezoidal sections 12. The connecting rod extends along the second direction b, and its two ends are detachably connected to or limit the connection between the two trapezoidal sections 12. The number of connecting rods can be two, and the two connecting rods are spaced apart along the first direction a. Each connecting rod is detachably connected to the two trapezoidal sections 12. The connecting rod between the two trapezoidal sections 12 improves the structural stability between the two trapezoidal sections 12.

[0081] The inlet / outlet 31 is vertically opposite to the top of a ladder section 12, allowing workers to climb the ladder section 12 and enter the top side of the working surface through the inlet / outlet 31.

[0082] Reference Figures 1 to 3 As shown, in some embodiments, the support rod 34 includes a plurality of telescopic joints arranged in sequence, with each pair of adjacent telescopic joints slidably connected so that the two adjacent telescopic joints can move closer to each other and further away from each other; a limiting structure is provided between each pair of adjacent telescopic joints, and the two adjacent telescopic joints can be limited by the limiting structure to restrict the relative sliding of the two adjacent telescopic joints.

[0083] With this configuration, multiple telescopic joints work together to allow the support rod 34 to extend and retract, thereby facilitating the adjustment of the length of the support rod 34. When the work platform 3 is set at different heights, the support rod 34 can extend and retract accordingly to support the work platform 3 on the ground.

[0084] Specifically, the support rod 34 can be composed of multiple sections of tubular bodies with gradually decreasing or increasing diameters, used as expansion joints. It can also utilize pin holes and spring pins as limiting structures, with equally spaced pin holes on each section of the tubular wall and a spring pin at the end of each tube. The spring pin of one of two adjacent tubes can be inserted into any pin hole on the other tube. When the spring pin is inserted into a pin hole, the relative position of the two adjacent tubes remains stable. By adjusting the insertion of the spring pin into different pin holes, the relative position between the two adjacent tubes can be adjusted.

[0085] Alternatively, an elastic buckle and a serrated plate can be used as a limiting structure connecting each expansion joint. The serrated plate extends along the length of the expansion joint, and the elastic buckle is located at the end of the expansion joint. After multiple expansion joints are connected sequentially, the elastic buckle of one expansion joint engages with the serrated structure on the serrated plate of the other expansion joint, thus stabilizing the relative position of the two expansion joints. By adjusting the engagement of the elastic buckle with the serrated structure at different positions on the serrated plate, the relative position between two adjacent pipes can be adjusted.

[0086] Reference Figures 1 to 3 As shown, in some embodiments, each working platform 3 has a slot 322 on its bottom side, and the support rod 34 is snapped into the slot 322.

[0087] With this configuration, the slot 322 can position the support rod 34 and restrict its movement relative to the work platform 3, thereby improving the stability of the connection between the support rod 34 and the work platform 3. The installation of the support rod 34 can be completed by inserting it into the slot 322, making it convenient to support the support rod 34 between the work platform 3 and the ground.

[0088] Specifically, the bottom of the work platform 3 is recessed upward to form a slot 322. The shape of the slot 322 matches the support rod 34, so that the support rod 34 can be inserted into the slot 322. Alternatively, an elastic buckle can be set inside the slot 322, and the support rod 34 can be inserted into the slot 322 to make the support rod 34 and the elastic buckle snap together.

[0089] Reference Figures 1 to 3 As shown, in some embodiments, a reinforcing rib 36 is provided between the two working platforms 3, and the reinforcing rib 36 is detachably connected to the two working platforms 3.

[0090] With this configuration, the reinforcing rib 36 can share the force on the two working platforms 3, thereby improving the stability of the connection between the two working platforms 3.

[0091] Specifically, the reinforcing rib 36 can be a rod structure, such as a steel bar or a steel pipe, or it can be a sheet structure, such as a steel plate. The reinforcing rib 36 can be extended along the second direction b, so that the two ends of the reinforcing rib 36 are respectively on the two working platforms 3. The reinforcing rib 36 can be detachably connected to the working platform 3 by bolts or clips.

[0092] The number of reinforcing ribs 36 can be selected as two, with the two reinforcing ribs 36 spaced apart along the first direction a, and the two reinforcing ribs 36 are located on both sides of the clamp 11 along the first direction a.

[0093] The work platform 3 can also be optionally equipped with a secondary reinforcing rib 37 extending along the second direction b. The secondary reinforcing rib 37 is detachably connected to the reinforcing rib 36. When there are two reinforcing ribs 36, the secondary reinforcing rib 37 on each work platform 3 can be connected between the two reinforcing ribs 36, so that the reinforcing ribs 36 and the secondary reinforcing rib 37 together form a rectangular frame structure.

[0094] In practical use, the photovoltaic support installation platform provided in this application involves supporting one ladder section 12 on a pre-set pipe pile 4, with workers climbing the ladder section 12 to fix the clamp 11 to the pipe pile 4, and connecting the other ladder section 12 to the clamp 11; using hoisting equipment, the base plates 32 of the two working platforms 3 are placed on two support frames 2, with the abutting edges 321 of the two base plates 32 abutting against each other; workers move to the top side of the base plate 32 through the inlet / outlet 31, inserting one fastener into the two first overlapping rings 351, and inserting another fastener into the two first overlapping rings 351; connecting reinforcing ribs 36 between the two base plates 32 to connect the two working platforms 3 and form a working surface; adjusting the length of the support rod 34 to match the distance between the base plate 32 and the ground; inserting the top of the support rod 34 into the slot 322 and supporting the bottom of the support rod 34 on the ground; the support rod 34 is detachably connected to the side of the ladder 1.

[0095] When welding the photovoltaic bracket onto the pipe pile 4, the staff enters the working face through the inlet and outlet 31. The staff stands on the working face to carry out the welding operation. During the welding process, the staff can take tools and consumables from the holding box 22.

[0096] It should be noted that, in this document, relational terms such as "first" and "second" are used merely to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or apparatus. Without further limitations, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the process, method, article, or apparatus that includes said element.

[0097] The above description is merely a specific embodiment of this application, enabling those skilled in the art to understand or implement this application. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of this application. Therefore, this application is not to be limited to the embodiments described herein, but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.

Claims

1. A photovoltaic racking mounting platform, characterized by, The ladder (1), two working platforms (3) and two support frames (2); The top end of the ladder (1) is provided with a hoop (11) for connecting with the pipe pile (4), and the two support frames (2) are connected to the two sides of the hoop (11) in the horizontal direction; The two working platforms (3) are arranged on the two sides of the hoop (11) in the horizontal direction, and the working platform (3) on each side can be supported on at least one support frame (2), and the two working platforms (3) are connected to each other to form a working surface around the pipe pile (4) and used for carrying workers; The working platform (3) is provided with an entrance and exit (31) arranged opposite to the top of the ladder (1) in the vertical direction; The bottom side of the working platform (3) is detachably connected with a support rod (34), and the bottom end of the support rod (34) can be supported on the ground.

2. The photovoltaic racking mount platform of claim 1, wherein, The two support frames (2) are oppositely arranged along a first direction, the support frame (2) is a rod body extending along a second direction, and the two ends of the support frame (2) extend to the two sides of the hoop (11) along the second direction; The two working platforms (3) are arranged on the two sides of the hoop (11) along a second direction, and the working platform (3) on each side is supported on two support frames (2); The first direction is perpendicular to the second direction.

3. The photovoltaic racking mount platform of claim 2, wherein, The working platform (3) comprises a bottom plate (32) and a surrounding plate (33), one side edge of the bottom plate (32) along the second direction is an abutting edge (321), and the other side edge is provided with the surrounding plate (33), the two ends of the surrounding plate (33) along the first direction are a first end and a second end respectively, and the first end and the second end respectively extend to the two ends of the abutting edge (321) along the first direction; When the two working platforms (3) are connected to each other, the two abutting edges (321) abut against each other, the first ends of the two surrounding plates (33) are connected to each other, and the second ends of the two surrounding plates (33) are connected to each other to form an operation space for accommodating workers.

4. The photovoltaic racking mount platform of claim 3, wherein, The first end of the two surrounding plates (33) is provided with a first lap joint ring (351), and the second end of the two surrounding plates (33) is provided with a second lap joint ring (352); When the two working platforms (3) are connected, the two first lap joint rings (351) can be coaxially arranged, and a fastener is arranged in the coaxial two first lap joint rings (351) to connect the two first ends to each other; the two second lap joint rings (352) are coaxially arranged, and a fastener is arranged in the coaxial two second lap joint rings (352) to connect the two second ends to each other.

5. The photovoltaic racking mount platform of claim 4, wherein, The hoop (11) is connected with a vertical rod (21) on each side along the first direction, and the vertical rod (21) is used for abutting with the surface side of the pipe pile (4); The edge of the working platform (3) close to each other is provided with a notch for avoiding the vertical rod (21), so that a part of the vertical rod (21) can be on the top side of the working surface; And / or, a containing box (22) is connected to the top side of the hoop (11), and the containing box (22) is arranged on the top side of the support frame (2), so that when the two work platforms (3) are connected, the containing box (22) is on the top side of the work surface.

6. The photovoltaic racking mount platform of claim 2, wherein, At least one of the support rods (34) is arranged on the side of the ladder (1) along the first direction and is detachably connected to the ladder (1).

7. The photovoltaic mount installation platform of claim 2, wherein, The ladder (1) comprises two ladder body parts (12), the two ladder body parts (12) are oppositely arranged along the second direction, the top of each of the two ladder body parts (12) is detachably connected to the hoop (11), the two work platforms (3) are respectively arranged in vertical direction relative to the two ladder body parts (12), and the entrance and exit (31) is arranged opposite to the top of one of the ladder body parts (12).

8. The photovoltaic racking mount platform of claim 1, wherein, The support rod (34) comprises a plurality of telescopic sections arranged in sequence, and each adjacent two telescopic sections are slidably connected, so that each adjacent two telescopic sections can approach or move away from each other. Each adjacent two telescopic sections are provided with a limiting structure, and each adjacent two telescopic sections can be limitedly matched with the limiting structure, so as to limit the relative sliding of each adjacent two telescopic sections.

9. The photovoltaic racking mount platform of claim 1, wherein, The bottom side of each work platform (3) is provided with a clamping groove (322), and the support rod (34) is clamped and connected with the clamping groove (322).

10. The photovoltaic racking mount platform of claim 1, wherein, The two work platforms (3) are provided with a reinforcing rib (36), and the reinforcing rib (36) is detachably connected with the two work platforms (3).