Support platform

By designing an adjustable support platform, the existing photovoltaic equipment construction operation and maintenance platform has solved the shortcomings in stability, operation and safety, and achieved efficient, safe and convenient construction results that meet the construction needs of different scales.

CN223034486UActive Publication Date: 2025-06-27ARCTECH SOLAR HOLDING CO LTD
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Patent Information

Application Number
CN202422026920.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-21
Publication Date
2025-06-27
Estimated Expiration
2034-08-21

AI Technical Summary

Technical Problem

The existing photovoltaic equipment construction operation and maintenance platforms have shortcomings in terms of stability, operation convenience and safety, especially in ground and water construction, where the platform is prone to overturn, inconvenient operation and high safety risks.

Method used

An adjustable support platform is provided, including a pile foundation, a first support member and a second support member. The first support member can be detachably connected to the pile foundation and has an adjustable position. The second support member is connected to the first support member through a docking part to form a retractable walking platform to ensure the stability and safety of the operator.

Benefits of technology

The support platform can adapt to construction needs of different scales, improves construction efficiency and safety, reduces construction time and labor costs, and enhances the convenience of operations.

✦ 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 discloses a supporting platform which comprises a pile foundation, a first supporting piece and a second supporting piece, the first supporting piece is provided with a first butt joint part, and the second supporting piece is provided with a third butt joint part and a fourth butt joint part. The first supporting piece is detachably connected with the pile foundation, the adaptability of the supporting platform to different construction environments is ensured, meanwhile, the second supporting piece forms a walking platform for an operator, and a fourth butt joint part arranged on the second supporting piece is connected with a first butt joint part arranged on the first supporting piece, so that the second supporting piece is indirectly fixed to the pile foundation; the third butt joint parts are arranged in the length direction of the second supporting pieces, so that the multiple second supporting pieces can be adjustably connected, and the walking platform which can stretch out and draw back in the length direction is formed. According to the design, the construction efficiency is improved, the operation safety is enhanced, and meanwhile, great convenience and flexibility are provided for installation of photovoltaic equipment through rapid assembly and adjustment of modular assemblies.
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Description

Technical Field

[0001] This application relates to the technical field of photovoltaic equipment, and further relates to a support platform. Background Art

[0002] Currently, in the field of photovoltaic equipment installation, the design of the construction and operation and maintenance platform is crucial, which is directly related to the efficiency, safety and convenience of construction and operation and maintenance operations. In the prior art, the construction and operation and maintenance platform mainly faces the following problems:

[0003] For some ground construction and operation and maintenance platforms, the purlin bundling or hanging method is usually adopted, which has problems such as unstable footing, inconvenient operation and high risk of overturning. In addition, some use straight ladders or folding ladders, which have great limitations in use scenarios, insufficient stability, high safety risks and poor convenience. In addition, for some water surface construction and operation and maintenance platforms, they are often bulky, have limited positions and cannot be adjusted, which brings many inconveniences to the operation. Summary of the Utility Model

[0004] In view of the above technical problems, the purpose of this application is to provide a support platform that can adapt to construction requirements of different scales and effectively solves the problems of poor stability and inconvenient operation of the platform in the prior art.

[0005] To achieve the above purpose, this application provides a support platform, including:

[0006] Pile foundation;

[0007] The first support member, having a first docking portion, is detachably connected to the pile foundation, so that its position relative to the pile foundation is adjustable;

[0008] The second support member is used to form a walking platform for operators to build photovoltaic equipment, having a third docking portion and a fourth docking portion, and the fourth docking portion is connected to the first docking portion to make the second support member relatively fixed to the first support member;

[0009] Wherein, the third docking portion is arranged along the length direction of the second support member to realize adjustable connection between multiple second support members, so that the walking platform formed by multiple second support members can be telescoped along the length direction.

[0010] In some embodiments, the first support member is further provided with a second docking portion, and the support platform further includes an auxiliary support member. One end of the auxiliary support member is detachably connected to the pile foundation, and the other end is connected to the second docking portion for auxiliary support.

[0011] In some embodiments, the connecting end face of the first support member includes a first end face and a second end face, and the extending directions of the first end face and the second end face are arranged at a predetermined angle;

[0012] The first docking portion is disposed on the first end face, and the second docking portion is disposed on the second end face. When the first support member and the second support member are connected, the second support member abuts against the first end face. When the first support member and the auxiliary support member are connected, the auxiliary support member abuts against the second end face.

[0013] In some embodiments, the first docking portion includes a plurality of first adjustment holes arranged along the length direction of the first end face. The first support member can be connected to the second support member through the first adjustment holes, and the plurality of first adjustment holes are used to provide different connection positions of the second support member relative to the first support member;

[0014] and / or,

[0015] The second docking portion includes a plurality of second adjustment holes arranged along the length direction of the second end face. The first support member can be connected to the auxiliary support member through the second adjustment holes, and the plurality of second adjustment holes are used to provide different connection positions of the auxiliary support member relative to the first support member.

[0016] In some embodiments, the second support member includes a top plate and two side plates arranged parallel to each other. The two side plates are respectively vertically connected to opposite side edges of the top plate. The top plate is used to form the surface of the walking platform, and the third docking portion is correspondingly arranged on each side plate;

[0017] A extension plate is connected to the free end of each side plate, and the fourth docking portion is correspondingly arranged on each extension plate.

[0018] In some embodiments, the fourth docking portion includes a plurality of fourth adjustment holes arranged along the length direction of the extension plate. The second support member can be fixedly connected to the first support member through the fourth adjustment holes, and the plurality of fourth adjustment holes are used to provide different connection positions of the first support member relative to the second support member.

[0019] In some embodiments, each third docking portion includes a plurality of third adjustment holes arranged along the length direction of the corresponding side plate;

[0020] The number of the second support members is at least two, and adjacent two second support members are sleeved, so that at least part of the third adjustment holes on the two second support members overlap, and a connecting member is arranged through the overlapping third adjustment holes, so as to fix the two second support members.

[0021] In some embodiments, among the plurality of second support members, some of the second support members have a C-shaped cross-section, and the remaining second support members have a U-shaped cross-section. The second support members with a C-shaped cross-section and the second support members with a U-shaped cross-section are sequentially overlapped and connected, and at least part of the second support members with a C-shaped cross-section are sleeved inside the second support members with a U-shaped cross-section;

[0022] Among them, in the second support member with a C-shaped cross-section, the two extension plates extend simultaneously in the direction towards the central axis of the corresponding second support member;

[0023] In the second support member with a U-shaped cross-section, the two extension plates extend simultaneously in the direction away from the central axis of the second support member.

[0024] In some embodiments, the support platform further includes a pull rope and a pull rope hole. The pull rope hole is located on the first support member at the end of the support platform. One end of the pull rope passes through the pull rope hole, and the other end is fixed to a carrier, thereby assisting in fixing the support platform;

[0025] And / or, an anti-slip structure is provided on the upper surface of the second support member;

[0026] And / or, the support platform further includes a safety rope provided at the upper end of the second support member.

[0027] In some embodiments, the support platform further includes a hoop, which is detachably connected to the pile foundation, and at least one connection end is provided on the outer periphery of the hoop. The connection end is used to connect the first support member or the auxiliary support member.

[0028] Compared with the prior art, a support platform provided by the present application has the following beneficial effects:

[0029] 1. In the present application, first, the first support member can achieve detachable connection with the pile foundation and its position is adjustable, increasing the adaptability to different construction environments and reducing the dependence on specific construction sites. Second, the second support member is docked with the first support member through the fourth docking portion, ensuring the stability and safety of the operator on the platform. Moreover, through the third docking portion provided along the length direction, the telescopic function of the platform is realized, enabling the platform to flexibly adjust its length according to construction requirements and effectively expanding the operation range. In addition, a continuous operation platform can be formed between multiple second support members, improving the construction efficiency. Especially in large-scale photovoltaic equipment installation projects, it can significantly reduce the construction time and labor costs.

[0030] 2. In this application, the auxiliary support member provided can improve the stability of the overall structure and reduce the shaking of the support platform during operation. At the same time, the auxiliary support member is detachably connected to the pile foundation, enabling it to be flexibly adjusted under different conditions.

[0031] 3. In this application, by providing the second support members in C-shape and U-shape, two different support structure options are provided, which can be selected according to specific construction requirements and the layout of the photovoltaic equipment, increasing the flexibility of the design. The C-shaped support member is more suitable as the main load-bearing component due to the inward extension of the extension plate; while the U-shaped support member has the extension plate extending outward, which is more suitable for providing additional working space or auxiliary support. BRIEF DESCRIPTION OF THE DRAWINGS

[0032] The above characteristics, technical features, advantages and their implementation manners of this application will be further described below in a clear and understandable manner in combination with the drawings in the preferred embodiments.

[0033] Figure 1 is a schematic diagram of the overall structure of the support platform in an embodiment of this application;

[0034] Figure 2 is a schematic diagram of the partial structure in an embodiment of this application;

[0035] Figure 3 is a schematic diagram of the partial structure in another perspective in an embodiment of this application;

[0036] Figure 4 is a schematic diagram of the structure of the first support member in an embodiment of this application;

[0037] Figure 5 is a schematic diagram of the first structure of the second support member in an embodiment of this application;

[0038] Figure 6 is a schematic diagram of the second structure of the second support member in an embodiment of this application;

[0039] Figure 7 is a schematic diagram of the structure of the hoop in an embodiment of this application.

[0040] Reference numerals in the drawings: first support member 1; first end face 101; second end face 102; first docking portion 11; first adjustment hole 110; second docking portion 12; second adjustment hole 120; guy rope hole 130; second support member 2; top plate 201; side plate 202; extension plate 203; third docking portion 21; third adjustment hole 210; fourth docking portion 22; fourth adjustment hole 220; auxiliary support member 3; pile foundation 4; hoop 5; connection end 50; half hoop 51; adjusting nut 52; screw rod 53; pin 6; safety rope 7. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0041] To more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will describe the specific implementation manners of the present application with reference to the accompanying drawings. Obviously, the accompanying drawings in the following description are only some embodiments of the present application. For those of ordinary skill in the art, without creative efforts, other drawings can be obtained based on these drawings, and other implementation manners can also be obtained.

[0042] To make the drawings concise, only the parts related to the application are schematically shown in each drawing, and they do not represent the actual structure of the product. Additionally, to make the drawings concise and easy to understand, for components with the same structure or function in some drawings, only one of them is schematically shown, or only one of them is labeled. In this document, "one" not only means "only this one", but also can mean "more than one" situation.

[0043] It should also be further understood that the term "and / or" used in the description of the present application and the appended claims refers to any combination and all possible combinations of one or more of the associated listed items, and includes these combinations.

[0044] In this document, it should be noted that unless otherwise clearly specified and limited, the terms "install", "connect", and "couple" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, and it can be the communication inside two components. For those of ordinary skill in the art, the specific meanings of the above terms in the present application can be understood according to specific situations.

[0045] In the description of the present application, it should be understood that the orientation or positional relationships indicated by the terms "center", "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential", etc. are based on the orientation or positional relationships shown in the accompanying drawings. It is only for the convenience of describing the present application and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation. Therefore, it should not be construed as a limitation to the present application.

[0046] In addition, in the description of the present application, the terms "first", "second", etc. are only used for distinguishing descriptions, and cannot be understood as indicating or implying relative importance.

[0047] In the field of photovoltaic equipment installation, the design of the construction and operation and maintenance platform plays a crucial role in ensuring the efficiency, safety, and convenience of operations. However, existing construction and operation and maintenance platforms, whether on the ground or on water, have significant limitations and safety hazards. Ground construction and operation and maintenance platforms are often built by bundling purlins or hanging and lifting methods. This method not only has poor stability, unstable footholds, but also inconvenient operation and a high risk of overturning. In addition, the straight ladders or step ladders used have large scene limitations, cannot provide sufficient stability and safety, and are also less convenient. For water surface construction and operation and maintenance platforms, they are usually large in volume, fixed in position, and not easy to move. This not only limits the operation scope but also poses specific requirements for the water level of the water body and is not suitable for multi-point operations.

[0048] This application aims to solve the above problems. Referring to the attached drawings of the specification Figure 1 , a support platform provided by this application can improve construction efficiency, reduce safety risks, and enhance the convenience of operations, enabling the support platform to adapt to changing construction and operation and maintenance conditions and environments and providing certain support for the walking or standing of operators.

[0049] Referring to the attached drawings of the specification Figures 1 to 3 , a support platform provided by this application includes a first support member 1 and a second support member 2. A first docking portion 11 is provided on the first support member 1, and a third docking portion 21 and a fourth docking portion 22 are provided on the second support member 2.

[0050] Among them, the first support member 1 is detachably connected to the pile foundation 4, realizing flexible adjustment of the support position to adapt to different construction environments and requirements. The second support member 2 constitutes a platform for operators to walk. The fourth docking portion 22 provided on the second support member 2 is connected to the first docking portion 11 provided on the first support member 1, ensuring the stability and safety of the platform.

[0051] More importantly, the third docking portion 21 is arranged along the length direction of the second support member 2. When multiple second support members 2 are connected, the second support member 2 can be telescoped along the length direction through the provided third docking portion 21, realizing the adjustable length of the platform to adapt to different scales of construction operations.

[0052] In this embodiment, through this design, the support platform provides a stable and adjustable operation environment, greatly improving the construction and operation and maintenance efficiency and safety. Operators can safely and conveniently carry out the construction and operation and maintenance work of photovoltaic equipment on the walking platform. At the same time, the telescopic characteristics of the support platform allow it to adapt to different construction length requirements, increasing the flexibility of use.

[0053] Based on the content in this embodiment, the third docking part 21 can be understood as a setting that allows adjustable connection between the second support members 2. Specifically, the component for realizing this function can be a slide rail system or other types of telescopic connection methods. During telescopic connection, the third docking part 21 must ensure sufficient connection strength and stability to support the load of the upper walking platform.

[0054] In some embodiments, taking the third docking part 21 as a slide rail system as an example, one end of the second support member 2 is equipped with a slider that can slide on the slide rail of another second support member 2. The movement of the slider can be controlled manually to achieve precise adjustment of the length. Once adjusted to the appropriate position, a locking mechanism such as screw locking or a quick clamping system is used to ensure that the second support member 2 is stably fixed in place, preventing any loosening or displacement during construction and operation and maintenance.

[0055] It should be noted that in this embodiment, there are no specific restrictions on the settings of the first docking part 11, the fourth docking part 22, etc. The docking parts on the first support member 1 and the second support member 2 can adopt many designs, such as adopting a quick connection mechanism, such as a screw buckle or a snap design, to achieve faster assembly and disassembly. In addition, the docking part can be designed with a locking mechanism to ensure connection stability during construction.

[0056] At the same time, the pile foundations 4 usually exist in the form of one row or multiple rows. The support platform of the present application can adapt to different numbers of pile foundations 4 by flexibly adjusting the numbers of the first support member 1 and the second support member 2, and realize the construction of a unilateral or bilateral walking platform. (Only a unilateral walking platform is shown in the appendix) Figure 1 in which only a unilateral walking platform is shown

[0057] For example, in the case where construction operations are only required on one side, a unilateral walking platform can be constructed only to reduce material usage and construction costs. And in the case where operations are required on both sides simultaneously, a bilateral walking platform can be constructed to improve construction and operation and maintenance efficiency. Moreover, as described above: the first support member 1 is detachably connected to the pile foundation 4, so that construction workers can quickly adjust the position of the first support member 1 according to the specific position and spacing of the pile foundation 4, and achieve precise control of the position of the support platform. The second support member 2 realizes telescoping in the length direction through the third docking part 21, so that the walking platform can be expanded or contracted along the arrangement direction of the pile foundations 4 to adapt to construction areas of different lengths.

[0058] Optionally, the upper surface of the second support member 2, that is, the working area of the walking platform, can be designed with raised textures, patterns or other forms of anti-slip structures to effectively prevent slipping accidents caused by wet or stained ground by increasing the surface friction coefficient.

[0059] In one embodiment, asFigure 2 and Figure 3 As shown in Figure 3 , the first support member 1 is further provided with a second docking portion 12, and the second docking portion 12 provides an additional connection point to adapt to complex construction environments and force conditions. Specifically, the support platform further includes an auxiliary support member 3, and the design of the auxiliary support member 3 further improves the structure of the support platform. One end of the auxiliary support member 3 is detachably connected to the pile foundation 4, and the other end is connected to the second docking portion 12 of the first support member 1. This connection method forms a stable triangular support structure, significantly improving the load-bearing capacity and stability of the support platform.

[0060] It can be understood that in this embodiment, the detachable connection characteristic of the auxiliary support member 3 enables construction personnel to flexibly adjust the quantity and position of the auxiliary support member 3 according to specific construction requirements and the layout of the pile foundation 4, realizing the rapid deployment and adjustment of the support platform. In addition, the connection method and materials of the auxiliary support member 3 can also be customized as needed to meet higher load-bearing capacities and environmental adaptabilities.

[0061] Furthermore, the connecting end face of the first support member 1 includes two different working faces, as Figure 4 shown, that is, the first end face 101 and the second end face 102. The extension directions of these two end faces form a preset angle, usually a right angle. And the first docking portion 11 and the second docking portion 12 in the above embodiment are respectively arranged on the two end faces, thus realizing a more flexible connection method.

[0062] The first docking portion 11 arranged on the first end face 101 is mainly used for connecting with the second support member 2, while the second docking portion 12 arranged on the second end face 102 is mainly used for connecting with the auxiliary support member 3. When the second support member 2 is connected to the first end face 101, it directly abuts against the first docking portion 11 to form a stable connection. Similarly, the auxiliary support member 3 abuts against the second docking portion 12 through its end to provide additional support force. This design not only improves the stability of the connection but also increases the load-bearing capacity and adaptability of the entire structure.

[0063] In one embodiment, as Figure 4 shown, the first docking portion 11 includes a plurality of first adjustment holes 110 arranged along the length direction of the first end face 101. The second support member 2 is connected to the first support member 1 through these adjustment holes, enabling the second support member 2 to be positioned in the length direction of the first end face 101 according to actual needs, so as to adapt to different installation requirements of the walking platform, and being able to achieve more precise and personalized construction to meet specific construction requirements.

[0064] Meanwhile, as can be seen from the above content, the fourth docking portion 22 on the second support member 2 can achieve diversified connection methods with the first adjustment holes 110 on the first support member 1. In the simplest case, the fourth docking portion 22 can be connected to a single first adjustment hole 110. Similarly, in order to improve the stability of the walking platform or disperse the load, the fourth docking portion 22 can be connected to two or more first adjustment holes 110 simultaneously. This connection method enhances the stability and load-bearing capacity of the overall structure by increasing the contact points. That is to say, at the construction site, the number of first adjustment holes 110 on the first support member 1 is fixed, but the connection method of the fourth docking portion 22 can be adjusted according to actual needs, enabling construction workers to select the most suitable connection scheme based on factors such as the characteristics of the construction site.

[0065] In addition, in this embodiment, due to the provision of multiple first adjustment holes 110, more connection points are provided for the second support member 2, thereby reducing the risk caused by the failure of a single connection point and enhancing the safety of the entire support platform.

[0066] In another embodiment, similar to the above embodiment, the second docking portion 12 on the first support member 1 also adopts a similar design. Specifically, the second docking portion 12 includes a plurality of second adjustment holes 120 arranged along the length direction of the second end face 102. The first support member 1 is connected to the auxiliary support member 3 through the second adjustment holes 120, providing high flexibility and adaptability in height adjustment. The auxiliary support member 3 can be selectively connected to one or more second adjustment holes 120 as needed, so that the auxiliary support member 3 can switch between different second adjustment holes 120 according to different construction requirements to achieve different support configurations and layouts.

[0067] It can be understood that similar to the first adjustment holes 110 in the above content, the setting of the second adjustment holes 120 here provides connection methods for the auxiliary support member 3 and multiple second adjustment holes 120, increasing the redundancy of the structure, reducing the risk caused by the failure of a single connection point, and improving the stability and safety of the entire structure. In addition, when the auxiliary support member 3 is connected to different second adjustment holes 120, due to its detachable connection setting, its position on the pile foundation 4 can also be changed accordingly. This change in position can be used to optimize the load distribution of the support platform and improve the stability and adaptability of the structure.

[0068] Furthermore, as Figure 4As shown, a drawstring hole 130 is provided on the first support member 1 at the end of the support platform. The drawstring hole 130 is used in cooperation with a drawstring (not shown in the figure). In the usage scenario, one end of the drawstring is fixed in the drawstring hole 130, and the other end is fixed to a carrier through an anchor. The carrier can be the ground or an object relatively fixed to the ground. By connecting the support platform to the anchor through the drawstring and utilizing the tension of the drawstring, the support platform is firmly fixed to the ground or a designated location, thereby improving the stability of the entire structure. On the other hand, through the fixation of the drawstring and the anchor, the risk of the support platform shifting or overturning during construction is reduced.

[0069] In one embodiment, as Figure 5 and Figure 6 shown, the second support member 2 includes a top plate 201 and two parallel side plates 202. The top plate 201 forms a platform surface for operators to walk and work on. The two side plates 202 are respectively vertically connected to the opposite side edges of the top plate 201. A third docking portion 21 is provided on each side plate 202, such that multiple second support members 2 can be connected to each other through these docking portions to form a continuous walking platform.

[0070] Specifically, at the free end of each side plate 202, an extension plate 203 is connected. A fourth docking portion 22 is provided on the extension plate 203, which is used to realize the connection between the second support member 2 and the first support member 1. Through the fourth docking portion 22, the second support member 2 can be firmly fixed on the first support member 1 to form a stable support.

[0071] Among them, the fourth docking portion 22 includes a plurality of fourth adjustment holes 220 arranged along the length direction of the extension plate 203. Thus, the second support member 2 is connected to the first support member 1 through the fourth adjustment holes 220. The plurality of fourth adjustment holes 220 provide flexibility for construction workers to select different connection points, and the relative position between the first support member 1 and the second support member 2 can be quickly adjusted according to the actual construction layout and requirements.

[0072] In addition, one row or multiple rows of fourth adjustment holes 220 can be provided on each extension plate 203. Setting one row of fourth adjustment holes 220 on each extension plate 203 (as shown in the attached figure) provides a basic position adjustment function, enabling the first support member 1 to be adjusted in position along the length direction of the extension plate 203. Setting multiple rows of fourth adjustment holes 220 on the extension plate 203 significantly increases the connection flexibility, enabling the first support member 1 to be adjusted not only in position along the length direction of the extension plate 203 but also in its width direction. At the same time, this situation also provides more connection points, increasing the stability and safety of the structure.

[0073] Specifically, as shown in the figure, a part of the fourth adjustment holes 220 on the extension plate 203 and a part of the first adjustment holes 110 on the first support member 1 are in relative positions. At the relative hole positions, components such as bolts and nuts are used to fasten this position, thereby realizing the relative fixation of the first support member 1 and the second support member 2.

[0074] In one embodiment, the third docking portion 21 includes a plurality of third adjustment holes 210 arranged along the length direction of the side plate 202. Before the two second support members 2 are fixedly connected, they are sleeved, and at least part of their third adjustment holes 210 overlap, enabling an operator to insert a connecting member, such as a pin 6 or other similar parts, through the overlapping third adjustment holes 210 to complete the fixation between the two second support members 2.

[0075] Reference can be made to the appended Figure 2 and Figure 6 the specification. Using the pin 6 to connect the second support member 2 not only simplifies the installation process but also ensures the stability and reliability of the structure. As a simple and effective connecting member, the pin 6 can bear a certain load, preventing the second support member 2 from shifting or loosening during use, thereby ensuring the safety of construction workers and the continuity of operations. In addition, the pin 6 connection allows for quick adjustment when needed to adapt to different construction requirements or respond to on-site changes, improving the flexibility and efficiency of construction.

[0076] Furthermore, as Figure 5 and Figure 6 shown, the second support member 2 adopts a C-shaped and a U-shaped cross-section design. Through different configurations of the extension plate 203, diverse support effects are achieved. In the second support member 2 with a C-shaped cross-section, the two extension plates 203 extend towards the central axis direction, forming an inward support structure; while in the second support member 2 with a U-shaped cross-section, the extension plate 203 extends away from the central axis direction, forming an outward support structure. In different situations, the appropriate type of support member can be selected according to actual needs to achieve the optimal support effect.

[0077] Among them, the second support members 2 with C-shaped and U-shaped cross-sections can be used independently or in combination, providing diverse support structure options. Reference can be made to the appended Figure 2 the specification. In one embodiment, the second support members 2 with C-shaped and U-shaped cross-sections are used alternately, realizing an efficient and stable connection structure. Specifically, two adjacent second support members 2 cooperate with each other with different cross-sectional shapes, and their side plates 202 are in contact with each other, forming a tight structure. At the same time, since the extension plates 203 are arranged in opposite directions, the support member with a C-shaped cross-section is located inside the support member with a U-shaped cross-section, making the space utilization more reasonable, avoiding conflicts with each other, and ensuring the stability and continuity of the overall structure.

[0078] In one embodiment, a plurality of hoops 5 are used to fix the support member in this application to the pile foundation 4. At least one connection end 50 is provided on the outer periphery of the hoop 5 for connecting the first support member 1 or the auxiliary support member 3. At the same time, the hoop 5 is designed with a detachable connection, enabling it to be reused at different construction stages or different positions, improving the construction efficiency and reducing the cost.

[0079] Specifically, as shown in the figure, one end of the first support member 1 and the auxiliary support member 3 are connected, and the other ends are respectively fixed to the pile foundation 4 through the hoops 5, thereby forming a bottom support for the second support member 2 and ensuring that the second support member 2 can safely bear the weight of the operators and related operating equipment.

[0080] In addition, reference can be made to the attached Figure 7 to the specification. In this case, two connection ends 50 are provided on the outer periphery of the hoop 5. This design enables two first support members 1 or two auxiliary support members 3 to be connected to one hoop 5 at the same time, thereby cooperating to form a bilateral walking platform and improving the adaptability of the overall structure.

[0081] In one embodiment, based on the content of the above embodiment, the hoop 5 includes two half-hoops 51 and a locking assembly. One end of the two half-hoops 51 is hingedly connected through a rotating member, allowing them to approach each other to form a ring as needed or move away from each other to release the ring structure. When the two half-hoops 51 approach and form a ring through the hinge shaft, the two half-hoops 51 can surround the pile foundation 4 and be locked through the locking assembly.

[0082] More specifically, the locking assembly includes an adjusting nut 52 and a screw rod 53. One end of the screw rod 53 is rotatably connected to the free end of one of the half-hoops 51, and the other end is threadedly connected to the adjusting nut 52. By adjusting the position of the adjusting nut 52 on the screw rod 53, the adjusting nut 52 can be tightened against the other half-hoop 51, thereby realizing the locking of the two half-hoops 51 and ensuring that the hoop 5 is firmly fixed on the pile foundation 4.

[0083] In one embodiment, as Figure 1 shown, the support platform further includes a safety rope 7. The safety rope 7 is located above the second support member 2 and is connected to the pile foundation 4 for workers to hold when installing or overhauling, further improving the installability of the support platform.

[0084] It should be noted that the above embodiments can be freely combined as needed. The above are only the preferred embodiments of this application. It should be pointed out that for those of ordinary skill in the art in this technical field, without departing from the principle of this application, several improvements and refinements can still be made, and these improvements and refinements should also be regarded as the protection scope of this application.

Claims

1. A support platform, characterized in that: include: Pile foundation; A first support member having a first docking portion, wherein the first support member is detachably connected to the pile foundation so that its position relative to the pile foundation is adjustable; A second support member, used to form a walking platform for operators to build photovoltaic equipment, having a third docking portion and a fourth docking portion, wherein the fourth docking portion is connected to the first docking portion, so that the second support member is relatively fixed to the first support member; The third docking portion is arranged along the length direction of the second support member, and is used to achieve an adjustable connection between the plurality of second support members, so that the walking platform formed by the plurality of second support members can be extended and retracted along the length direction.

2. The support platform according to claim 1, characterized in that: The first support member is also provided with a second docking portion, and the support platform further comprises an auxiliary support member, one end of the auxiliary support member is detachably connected to the pile foundation, and the other end is connected to the second docking portion for auxiliary support.

3. The support platform according to claim 2, characterized in that: The connecting end surface of the first support member includes a first end surface and a second end surface, and the extension directions of the first end surface and the second end surface are arranged at a predetermined angle; The first docking portion is arranged on the first end surface, and the second docking portion is arranged on the second end surface, so that when the first support member and the second support member are connected, the second support member abuts against the first end surface, and when the first support member and the auxiliary support member are connected, the auxiliary support member abuts against the second end surface.

4. The support platform according to claim 3, characterized in that: The first docking portion includes a plurality of first adjustment holes arranged along the length direction of the first end surface, the first support member can be connected to the second support member through the first adjustment holes, and the plurality of first adjustment holes are used to provide different connection positions of the second support member relative to the first support member; and / or, The second docking portion includes a plurality of second adjustment holes arranged along the length direction of the second end surface, and the first support member can be connected to the auxiliary support member through the second adjustment holes. The plurality of second adjustment holes are used to provide different connection positions of the auxiliary support member relative to the first support member.

5. The support platform according to any one of claims 1 to 4, characterized in that: The second support member includes a top plate and two side plates arranged in parallel with each other, the two side plates are respectively vertically connected to two opposite sides of the top plate, the top plate is used to form the surface of the walking platform, and each of the side plates is correspondingly provided with the third docking portion; The free end of each of the side panels is connected to an extension panel, and each of the extension panels is correspondingly provided with the fourth docking portion.

6. The support platform according to claim 5, characterized in that: The fourth docking portion includes a plurality of fourth adjustment holes arranged along the length direction of the extension plate, and the second support member can be fixedly connected to the first support member through the fourth adjustment holes. The plurality of fourth adjustment holes are used to provide different connection positions of the first support member relative to the second support member.

7. The support platform according to claim 6, characterized in that: Each of the third docking portions includes a plurality of third adjustment holes arranged along the length direction of the corresponding side plate; The number of the second support members is at least two, and two adjacent second support members are arranged in a sleeve-connected manner so that the third adjustment holes on the two second support members at least partially overlap, so that a connecting member is arranged through the overlapping third adjustment holes, thereby fixing the two second support members.

8. The support platform according to claim 7, characterized in that: Among the plurality of second support members, some of the second support members are C-shaped cross-sections, and the remaining second support members are I-shaped cross-sections, the second support members with C-shaped cross-sections and the second support members with I-shaped cross-sections are overlapped and connected in sequence, and at least part of the second support members with C-shaped cross-sections are sleeved on the inner side of the second support members with I-shaped cross-sections; Wherein, in the second support member having a C-shaped cross section, the two extension plates simultaneously extend in a direction toward the central axis of the corresponding second support member; In the second support member having a cross-shaped cross section, the two extension plates simultaneously extend in a direction away from the central axis of the second support member.

9. The support platform according to claim 1, characterized in that: The support platform further includes a drawstring and a drawstring hole, wherein the drawstring hole is located on the first support member at the end of the support platform, one end of the drawstring passes through the drawstring hole, and the other end is fixed to a carrier, thereby auxiliary fixing the support platform; and / or, The upper surface of the second support member is provided with an anti-slip structure; And / or, the support platform also includes a safety rope arranged at the upper end of the second support member.

10. The support platform according to claim 2, characterized in that: Also includes: The hoop is detachably connected to the pile foundation, and the outer periphery of the hoop is provided with at least one connecting end, and the connecting end is used to connect the first supporting member or the auxiliary supporting member.