Auxiliary device for installing photovoltaic panel support and assembly
By designing photovoltaic panel brackets and component installation auxiliary devices suitable for irregular terrain, the safety hazards and low efficiency of traditional platforms have been solved, achieving a safe and efficient construction solution.
Patent Information
- Application Number
- CN202423245075.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-27
- Publication Date
- 2025-12-05
- Estimated Expiration
- 2034-12-27
AI Technical Summary
When installing photovoltaic panel supports and components in hilly, mountainous, forested, swampy, and desert areas, traditional high-altitude work platforms pose safety hazards, have low construction efficiency, and cannot meet environmental protection requirements.
Design an auxiliary device, including a frame and planks, which are connected to pre-formed column components by bolts or ropes to form an adjustable operating platform that can adapt to irregular terrain and ensure construction safety and efficiency.
We provide safe and efficient photovoltaic brackets and module installation, adapting to changes in ground topography, simplifying the installation and dismantling process, improving construction efficiency, and meeting environmental protection requirements.
Smart Images

Figure CN223634316U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to photovoltaic panel installation technical field, more specifically, the utility model relates to a kind of auxiliary device for photovoltaic panel support and component installation. BACKGROUND
[0002] At present, with the establishment of national low-carbon environmental protection goal, the promotion to new energy industry is more and more great, for the protection of basic farmland and forest land, photovoltaic power generation project will be more and more arranged in marsh, desert, hilly area and other areas, but in the process of photovoltaic panel support and component installation, these areas are not convenient to set up floor type operation platform, i.e. auxiliary device, due to the environmental protection requirements of state or local government, it also does not have the conditions of large area site leveling and hardening, when installing photovoltaic support and component in hilly area, forest land, marsh, desert and other areas, floor type scaffold or mobile scaffold, escalator and other traditional climbing operation platform have very big safety hidden trouble, low construction efficiency and other adverse conditions due to factors such as soft foundation and uneven elevation of ground, so another measure is needed to solve the problems of personnel safety, device installation and removal, low efficiency and other problems in the process of photovoltaic support and component installation, by setting up safe and efficient operation platform, i.e. auxiliary device, the influence of ground topography on construction operation is offset. SUMMARY
[0003] An object of the utility model is to provide a kind of auxiliary device for photovoltaic panel support and component installation, which is used to assist the installation of photovoltaic support and component in topography area with soft foundation, irregular change of elevation and other unsuitable conditions for directly setting up operation platform on original ground, with the advantages of high safety, high efficiency, convenient installation and removal, strong applicability and the like.
[0004] In order to solve the above technical problems, the utility model provides an auxiliary device for photovoltaic panel support and component installation, which comprises a plurality of frame bodies corresponding to each formed column member and a jumping plate arranged between the plurality of frame bodies, the frame body comprises a platform cross arm and a connecting piece for fixing the platform cross arm to the formed column member, the connecting piece is arranged on the formed column member, the platform cross arm is arranged on the connecting piece, the platform cross arm extends horizontally along the formed column member, and the jumping plate is an existing purlin, which is arranged in multiple roots in the transverse direction, and each purlin extends in the longitudinal direction and is arranged on multiple platform cross arms.
[0005] Preferably, the platform cross arm and the purlin are fixed by bolt connection or rope binding.
[0006] Preferably, when the formed column member is a single column, the corresponding connecting member of the frame body comprises a main column and a diagonal brace, the main column is bolted to the pile of the single column by a hoop, the platform cross arm is fixedly connected to the main column, and the two ends of the diagonal brace are fixedly connected to the main column and the platform cross arm respectively.
[0007] Preferably, the platform cross arm on the main column is provided with two, which are arranged in an upper and lower staggered manner, and the diagonal brace is also provided with two corresponding.
[0008] Preferably, when the formed column member is a double column, the corresponding connecting member of the frame body comprises two platform hooks, the upper ends of the two platform hooks are respectively hung in the adjusting holes reserved in the inclined beams above the double column, and the two ends of the two platform hooks are respectively connected to the two sides of the platform cross arm.
[0009] Preferably, the platform hook and the platform cross arm are connected through bolts, the platform hook is provided with a plurality of threaded areas in the height direction thereof, the threaded holes of the platform cross arm are passed through the threaded areas of different heights and are fixedly connected through nuts.
[0010] Preferably, the formed column member is provided with an existing purlin between the corresponding front column and the corresponding support rod to form an auxiliary operation platform.
[0011] The utility model at least includes following beneficial effects:
[0012] 1. The auxiliary device is used for assisting the installation of the photovoltaic support and assembly in the geomorphic area where the ground soft foundation, the irregular change of elevation and the like are not suitable for directly erecting the operation platform on the ground, so that the operation platform is not affected by the ground topography.
[0013] 2. The auxiliary device is connected with the formed column member through bolts, ropes and the like, so that the device is convenient and safe to assemble and disassemble, and the construction efficiency is improved significantly.
[0014] 3. The auxiliary device can be quickly disassembled and reinstalled at different heights through bolts, so that the device has wider applicability, the height of the platform cross arm can be adjusted according to the ground elevation, the changes in the ground topography are adapted, and the slope of the platform is as level as possible.
[0015] Other advantages, objects and features of the utility model will be embodied partly through the following description, and will be understood by those skilled in the art through research and practice of the utility model. DETAILED DESCRIPTION
[0016] Figure 1 It is a structural schematic view of the traditional operation platform before the improvement of the utility model;
[0017] Figure 2The auxiliary device is arranged on the single stand column in the horizontal assembly view of the utility model.
[0018] Figure 3 The auxiliary device is arranged on the single stand column in the longitudinal assembly view of the utility model.
[0019] Figure 4 The auxiliary device is arranged on the single stand column in the auxiliary device structure schematic view of the utility model.
[0020] Figure 5 The auxiliary device is arranged on the double stand column in the structure assembly view of the utility model.
[0021] Mark explanation:
[0022] 1, platform cross arm, 2, main stand column, 3, inclined brace, 4, hoop, 5, single stand column, 6, purlin, 7, platform hook, 8, inclined beam, 9, brace. Specific implementation mode
[0023] In order to better understand the purpose, structure and function of the utility model, the utility model will be further described in detail below in combination with the drawings, so that those skilled in the art can implement it according to the description.
[0024] It should be noted that in the description of the utility model, the terms "horizontal", "vertical", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer" and the like indicate the orientation or positional relationship shown in the drawings, which is only for the convenience of describing the utility model and simplifying the description, and does not indicate or imply that the device or element must have a particular orientation, structure and operation, therefore it cannot be understood as a limitation on the utility model.
[0025] The traditional slope operation platform is affected by the slope, is troublesome to install and disassemble, and has low work efficiency, as shown in Figure 1 The actual use time of the auxiliary device operation platform is very short, so the traditional operation platform is greatly limited.
[0026] As shown in Figures 2 to 5 The utility model provides an auxiliary device for photovoltaic panel support and component installation, provides two solutions, which are solution one: single stand column arrangement is adopted for pile foundation, and subsequent solution one, solution two: double stand column is adopted for pile foundation, and subsequent solution two.
[0027] Both solutions include a plurality of racks installed one-to-one corresponding to each formed column member and a jump board arranged between the plurality of racks. The rack includes a platform crosspiece 1 and a connecting piece for fixing the platform crosspiece to the formed column member, the connecting piece is arranged on the formed column member, the platform crosspiece 1 is arranged on the connecting piece, the platform crosspiece 1 extends horizontally along the formed column member, and the jump board is a existing purlin 6 arranged in multiple rows in a transverse direction, each existing purlin 6 extends in a longitudinal direction and is arranged on multiple platform crosspieces 1 to facilitate workers to stand at different positions for construction.
[0028] All the formed column members are arranged in multiple rows in a longitudinal direction, and a plurality of corresponding platform crosspieces are arranged in multiple rows in a longitudinal direction. Each existing purlin connects multiple platform crosspieces to form a photovoltaic panel support and an auxiliary operation platform for installing components. Multiple existing purlins are arranged in multiple rows to facilitate workers to stand at different positions for construction.
[0029] In the above two solutions, the platform crosspiece 1 and the purlin 6 are connected by bolts or tied by ropes, that is, the two are detachably connected. Since the existing purlin is used as the jump board between the platform racks, the purlin needs to be used alternately to avoid excessive deformation and formal use, so the connection mode is set to facilitate installation and removal.
[0030] In the first solution, as shown in Figures 2 to 4 When the formed column member is a single column, the connecting piece of the rack includes a main column 2 and an inclined brace 3. The main column is bolted to the pile of the single column 5 by a clamp 4. The platform crosspiece is fixedly connected to the main column. The inclined brace is fixedly connected to the main column and the platform crosspiece at both ends. The main column 2 is bolted to the pile of the single column by the clamp, and the height of the rack can be adjusted according to the top elevation of the pile foundation to adapt to the changes in terrain and ensure that the platform slope is as level as possible. The main column, the inclined brace and the platform crosspiece form a triangular stable support.
[0031] In the first solution, two platform crosspieces are arranged on the main column, and the upper and lower platform crosspieces are arranged in an interlaced manner. Two inclined braces are also arranged correspondingly. The photovoltaic panel is installed in a diagonal direction, and different adaptive auxiliary platforms need to be set for different heights. Therefore, the lower platform crosspiece is arranged on the lower side, and the higher platform crosspiece is arranged on the higher side. The main column is provided with a plurality of clamps according to its height, and a corresponding inclined brace is arranged for each platform crosspiece.
[0032] In the second solution, when the formed column member is a double column, the connecting piece of the rack includes two platform hooks 7, the upper ends of which are respectively hung in the adjustment holes reserved in the upper inclined beams 8 of the double columns, and the two ends of the two platform hooks are respectively connected to the two sides of the platform crosspiece 1.
[0033] In scheme two, the platform hooks and the platform crosspieces are connected by bolts, the platform hooks (including front hooks and rear hooks) are provided with a plurality of threaded areas along the height direction thereof, or can be provided with threaded areas, the threaded areas of different heights are passed through the threaded holes of the platform crosspieces and are fixedly connected by nuts, the height of the platform crosspieces is adjusted according to the ground elevation to adapt to the changes of the terrain, and the slope of the platform is ensured to be as horizontal as possible.
[0034] In scheme two, the distance between the front column top support and the assembly and the ground is not high, the existing purlin is fixedly arranged between the front column and the corresponding support rod 9 of the formed column member to form an auxiliary operation platform, and the existing column and support rod are used to erect the operation platform to meet the installation requirements. The front refers to the lower side of photovoltaic installation, and the rear refers to the higher side of photovoltaic installation.
[0035] According to the industry development, at present, the foundation of the photovoltaic support is generally in the form of a pile foundation, so the following two ways can be used to erect the auxiliary device operation platform:
[0036] 1. For a single column, an operation platform is anchored on the single column pile body. A square steel prefabricated frame body, a platform crosspiece and a hoop matched with the pile body are fixedly connected, a purlin is used to erect a jump board between the platform frame bodies, and the operation platform is combined; the pile body and the hoop are connected by bolts, the hoop and the square steel are connected by welding, and the purlin and the frame body are connected by bolts.
[0037] Main control points of the single column photovoltaic support and assembly installation pile body anchoring operation platform:
[0038] (1) Four operation platform frame bodies should be provided for each group of photovoltaic support and assembly installation;
[0039] (2) The installation height of the operation platform frame body can be appropriately adjusted according to the top elevation of the pile foundation to adapt to the changes of the terrain, and the slope of the platform is ensured to be as horizontal as possible;
[0040] (3) The existing purlin is used as the jump board between the platform frame bodies; the purlin needs to be used alternately to avoid excessive deformation and formal use; the purlin and the platform crosspiece are firmly bound by a rope;
[0041] (4) The operation platform can be used after the strength of the pile foundation concrete meets the requirements.
[0042] 2. For a double column, a suspension operation platform is provided. A silk rod with a diameter of not less than 14 mm is used as a hanging rod to form a platform hook, a C-shaped groove steel with a hole is used as a platform crosspiece, and an existing purlin is used as a jump board to form an operation platform, and all connection points are connected by bolts.
[0043] Main control points of the double column photovoltaic support and assembly installation suspension operation platform:
[0044] (1) Each group of photovoltaic support and assembly installation should be equipped with 4 pairs of operating platform support;
[0045] (2) The lower 1 / 2, 1 / 3 area of the front and rear platform hooks are processed into threads, connected with the cross arm by matched nuts, and the height of the cross arm can be adjusted according to the ground elevation to adapt to the changes of the terrain, so as to ensure that the platform slope is as level as possible;
[0046] (3) The bolt connection is used between the purline and the platform cross arm; the hook is hung on the inclined beam by using the reserved adjusting hole of the inclined beam;
[0047] (4) The existing purline is used as the jump plate between the platform frame bodies; the purline needs to be used alternately to avoid excessive deformation and formal use;
[0048] (5) The front stand top bracket and the assembly are not high from the ground, and the existing stand and inclined support can be used to set up the operating platform to meet the installation requirements;
[0049] (6) The operating platform can be used after the support stand and the inclined beam are installed.
[0050] It can be understood that the utility model is described through some embodiments, and those skilled in the art know that various changes or equivalent replacements can be made to these features and embodiments without departing from the spirit and scope of the utility model. Although the embodiments of the utility model have been disclosed as above, it is not limited to the application listed in the specification and the embodiments, and it can be fully applied to various fields suitable for the utility model. For those skilled in the art, other modifications can be easily realized, and therefore the utility model is not limited to specific details and the figures shown and described herein without departing from the general concept defined by the claims and the equivalent range.
Claims
1. An auxiliary device for photovoltaic panel support and assembly installation, characterized by, The platform includes a plurality of frame bodies corresponding to each formed column member and a plurality of jumpers arranged between the frame bodies, the frame body includes a platform crossbeam and a connecting piece for fixing the platform crossbeam to the formed column member, the connecting piece is arranged on the formed column member, the platform crossbeam is arranged on the connecting piece, the platform crossbeam extends horizontally along the formed column member, and the jumper is a conventional purlin, a plurality of purlins are arranged in the transverse direction, and each purlin extends in the longitudinal direction and is arranged on the platform crossbeam.
2. The auxiliary device for photovoltaic panel support and assembly installation of claim 1, wherein, The platform crossbeam and the purlin are fixed by bolt connection or by rope binding.
3. The device according to claim 1, wherein, When the formed column member is a single column, the corresponding connecting piece of the frame body includes a main column and a diagonal brace, the main column is bolted to the pile of the single column by a hoop, and the platform crossbeam is fixed to the main column.
4. The device according to claim 3, wherein, The platform crossbeam on the main column is arranged in two, and the diagonal brace is also arranged in two.
5. The device according to claim 1, wherein, When the formed column member is a double column, the corresponding connecting piece of the frame body includes two platform hooks, the upper ends of the two platform hooks are respectively hung in the adjusting holes reserved in the upper inclined beams of the double columns, and the two ends of the two platform hooks are respectively connected to the two sides of the platform crossbeam.
6. The auxiliary device for photovoltaic panel support and assembly installation of claim 5, wherein, The platform hook and the platform crossbeam are connected by bolts, the platform hook is arranged with a plurality of threaded areas in the height direction, the threaded areas are arranged in the threaded holes of the platform crossbeam, and the platform hook is fixed by nuts.
7. The auxiliary device for photovoltaic panel support and assembly installation of claim 5, wherein, The auxiliary operation platform is formed by arranging the conventional purlin between the corresponding front column of the formed column member and the corresponding support rod.