Mounting frame for mounting photovoltaic bracket on sloping field

By designing a photovoltaic bracket mount with adjustable height and angle, the problem of difficulty in installing photovoltaic panels on slopes and mountains is solved, and construction safety and efficiency are improved.

CN223168267UActive Publication Date: 2025-07-29CHINA HYDROPOWER ELEVENTH ENG BUREAU (ZHENGZHOU) CO LTD +1
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Patent Information

Application Number
CN202422171712.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-05
Publication Date
2025-07-29
Estimated Expiration
2034-09-05

AI Technical Summary

Technical Problem

It is difficult for existing photovoltaic brackets to adjust the angle according to the terrain slope on slopes and mountains, making it difficult to maintain a level in the installation of photovoltaic panels, increasing construction difficulty and safety risks.

Method used

A mounting frame including a base plate, pillar, positioning column and tow table is designed. The pillars can adjust the height, and the tow table can adjust the angle and area. Multiple tow tables are connected through the connecting plate, and the positioning frame is fixed to the ground to achieve horizontal adjustment of the frame body and height adaptation.

Benefits of technology

The angle and height of the mounting frame are adjusted according to the terrain, which improves construction safety and convenience, increases construction efficiency, and makes the structure detachable and easy to transport.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223168267U_ABST
Patent Text Reader

Abstract

A mounting frame for mounting a photovoltaic support on a sloping field comprises a bottom plate, grooves are formed in the four corners of the top of the bottom plate respectively, supporting columns are arranged in the grooves through rotating shafts, positioning columns are arranged between the supporting columns and the bottom plate in a limiting mode, and a dragging table is detachably arranged on the tops of the four supporting columns. Limiting grooves are symmetrically formed in the bottoms of the four extending corners of the dragging table correspondingly, and connecting plates are detachably arranged in the limiting grooves. Compared with the prior art, the angle can be adjusted according to the terrain gradient, so that the dragging table is kept horizontal, a worker stands on the dragging table to work during construction and cannot be influenced by the inclination of the ground, and the construction safety is improved; the supporting columns can adjust the height of the dragging table, and the practicability of the device is improved; the mounting frame can be used for connecting the dragging table together through the connecting plate, so that the area of the dragging table is adjusted, and the construction convenience is improved; according to the utility model, the photovoltaic support can be installed more quickly and stably, and the construction efficiency is greatly improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of photovoltaic installation facilities, in particular to an installation frame for installing a photovoltaic bracket on a slope land. Background Art

[0002] At present, photovoltaic panel projects are generally carried out in sparsely populated areas, especially on slopes and mountains. However, due to the inclined ground, there is more soil, fallen leaves and gravel on slopes and mountains. When installing a photovoltaic panel bracket, it is more troublesome and complex, bringing difficulties to construction workers. Therefore, generally, an installation platform or an installation frame needs to be built to facilitate the installation of the photovoltaic panel bracket by construction workers. The structures of the existing installation platforms or installation frames are relatively fixed and not convenient for adjusting the angle according to the terrain slope, making it difficult to keep the photovoltaic panel horizontal during the installation process. Therefore, how to make an installation frame for installing a photovoltaic bracket on a slope land that can solve the problems of the existing technology has become a technical problem to be solved. Summary of the Utility Model

[0003] Based on the above technical problems, the utility model provides an installation frame for installing a photovoltaic bracket on a slope land to solve the problems existing in the above background art.

[0004] In view of this, the utility model provides an installation frame for installing a photovoltaic bracket on a slope land, which includes: a bottom plate, grooves are respectively arranged at four corners of the top of the bottom plate, a support column is arranged in the groove through a rotating shaft, a positioning column can be arranged between the support column and the bottom plate for limiting, a drag platform is detachably arranged at the top of the four support columns, limiting grooves are symmetrically arranged at the bottom of the four corners of the outer extension of the drag platform, and a connecting plate is detachably arranged in the limiting groove.

[0005] Further, screw holes are arranged in the limiting grooves, two groups of bolts are detachably arranged at intervals on the connecting plate, and the connecting plate is fixed to the limiting groove through the bolts and the screw holes. The connecting plate is used to connect two adjacent drag platforms.

[0006] Further, positioning frames are rotatably arranged at the four corners of the bottom of the drag platform through hinges, pedals are arranged at the bottom of the positioning frames, and ground nails are arranged at both ends of the pedals.

[0007] Further, the support column includes a lower support column and an upper support column that can be telescopically adjusted and arranged inside the lower support column. A fixing pin is arranged on the side of the lower support column, a plurality of positioning holes are sequentially arranged on the side of the upper support column, and the fixing pin can be telescopically arranged in the positioning holes.

[0008] Further, the positioning columns are respectively rotatably connected to the bottom plate and the support columns through hinges. A plurality of bolt holes are sequentially arranged on the front surface of the lower support column. A positioning bolt is arranged on the hinge on the upper part of the positioning column, and the positioning bolt is detachably arranged in the bolt holes.

[0009] Further, the positioning column includes a lower column and an upper column that is telescopically adjustable and arranged inside the lower column. A fixing member is arranged on the front surface of the lower column. A plurality of positioning holes are sequentially arranged on the front surface of the upper column, and the fixing member is detachably arranged in the positioning holes.

[0010] Further, the positioning frame is a square column body with a telescopically adjustable length.

[0011] Further, the tops of the four support columns are respectively detachably arranged at the bottom of the drag platform through bolts and connecting plates.

[0012] The present utility model provides an installation frame for installing a photovoltaic bracket on a slope. Compared with the prior art, the present utility model has the following advantages:

[0013] 1. The present utility model can adjust the angle according to the terrain slope to keep the drag platform horizontal. During construction, workers stand on the drag platform to work without being affected by the ground inclination, increasing the construction safety.

[0014] 2. The support columns of the present utility model can adjust the height, and the height of the drag platform can be adjusted according to needs, which can more fittingly install the photovoltaic panel bracket, increasing the practicability of the device.

[0015] 3. The present utility model can connect the drag platforms together through the connecting plates and adjust the area size of the drag platform 4 according to needs, increasing the construction convenience.

[0016] 4. The structures of the present utility model are all detachable, which is convenient for transportation, disassembly and assembly; using the present utility model can install the photovoltaic bracket faster and more stably, greatly increasing the construction efficiency. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 Shows a three-dimensional view of the overall structure of the present utility model;

[0018] Figure 2 Shows a three-dimensional view of the bottom plate structure of the present utility model;

[0019] Figure 3 Shows a side view of the installation state of the present utility model;

[0020] Figure 4 Shows a three-dimensional view of the drag platform structure of the present utility model;

[0021] Figure 5 The three-dimensional view of the positioning post structure of the present utility model is shown;

[0022] In the figure: 1, bottom plate; 11, groove; 12, rotating shaft; 2, support pillar; 21, lower support pillar; 22, fixing pin; 23, upper support pillar; 24, positioning hole; 25, bolt hole; 26, positioning bolt; 3, positioning post; 4, towing platform; 41, limiting groove; 5, connecting plate; 6, positioning frame; 61, pedal; 62, ground nail. Specific embodiments

[0023] In order to more clearly understand the above-mentioned objects, features and advantages of the present utility model, the present utility model will be further described in detail below in conjunction with the accompanying drawings and specific embodiments.

[0024] In the following description, many specific details are set forth in order to fully understand the present utility model. However, the present utility model may also be implemented in other ways different from those described herein. Therefore, the protection scope of the present utility model is not limited by the content disclosed below.

[0025] The following is in conjunction with Figures 1 to 5 to further illustrate the technical solution of the present utility model.

[0026] The first embodiment is as Figures 1 to 5 shown: An installation frame for installing a photovoltaic bracket on a slope, which includes: a bottom plate 1, grooves 11 are respectively arranged at the four corners of the top of the bottom plate 1, support pillars 2 are arranged upward through rotating shafts 12 in the grooves 11, positioning posts 3 can be limitedly arranged between the relative inner sides of the support pillars 2 and the bottom plate 1 respectively, a towing platform 4 is detachably arranged at the top of the four support pillars 2, limiting grooves 41 are symmetrically arranged at the bottoms of the four corners of the outer extension of the towing platform 4, and a connecting plate 5 is detachably arranged in the limiting grooves 41.

[0027] Screw holes are arranged in the limiting grooves 41, two groups of bolts are detachably arranged at intervals on the connecting plate 5, the connecting plate 5 is fixed to the limiting grooves 41 through the bolts and the screw holes, and the connecting plate 5 is used to connect two adjacent towing platforms 4. Hinges are respectively rotatably arranged at the four corners of the bottom of the towing platform 4 with positioning frames 6, pedals 61 are arranged at the bottoms of the positioning frames 6, and ground nails 62 are arranged at both ends of the pedals 61.

[0028] The described support column 2 includes a lower support column 21 and an upper support column 23 which is telescopically adjustable and arranged inside the lower support column 21. A fixing pin 22 is arranged on the side of the lower support column 21. A plurality of positioning holes 24 are sequentially arranged on the side of the upper support column 23. The fixing pin 22 is telescopically arranged inside the positioning holes 24. The positioning columns 3 are respectively rotatably connected to the bottom plate 1 and the support column 2 through hinges. A plurality of bolt holes 25 are sequentially arranged on the front of the lower support column 21. A positioning bolt 26 is arranged on the hinge on the upper part of the positioning column 3. The positioning bolt 26 is detachably arranged inside the bolt holes 25.

[0029] The described positioning column 3 includes a lower column and an upper column which is telescopically adjustable and arranged inside the lower column. A fixing member is arranged on the front of the lower column. A plurality of positioning holes are sequentially arranged on the front of the upper column. The fixing member is detachably arranged inside the positioning holes. The positioning frame 6 is a square column body with a telescopically adjustable length. The tops of the four support columns 2 are respectively detachably arranged at the bottom of the towing platform 4 through bolts and connecting plates.

[0030] During the use process: All structures of the present utility model are detachable, which is convenient for transportation, disassembly and assembly. Among them, grooves 11 are arranged at the four corners of the bottom plate 1. There are rotatable rotating shafts 12 inside the grooves 11. The support columns 2 are welded on the rotating shafts 12. The support columns 2 can be telescopically adjusted in height. And there are positioning columns 3 on the inner side surfaces of the support columns 2. The positioning columns 3 can also be telescopically adjusted in length. One end of the positioning column 3 is connected to the support column 2 through a bolt, and the other end is fixedly connected to the bottom plate 1. And the connection positions are all hinge connections, which can make the positioning column 3 rotate. When the support column 2 adjusts the angle, it is convenient for the positioning column 3 to rotate and adjust.

[0031] The tops of the four support columns 2 are fixed with a towing platform 4 through bolts and connecting plates. Limit grooves 41 are opened at the four corners of the towing platform 4. Screw holes are opened inside the limit grooves 41. One end of the connecting plate 5 can be placed into the limit groove 41, and then fixed through a bolt. Then the other end of the connecting plate 5 is also placed into the limit groove 41 of another towing platform 4, so that the connecting plate 5 can be fixedly connected to different towing platforms 4, enabling multiple towing platforms 4 to be connected together, so that the installation frame can increase the quantity and expand the area according to requirements. Among them, the towing platform 4 uses a hollow design to reduce the weight.

[0032] Positioning frames 6 should be arranged at the four corners of the bottom of the towing platform 4. The positioning frames 6 are connected to the towing platform 4 through hinges, enabling the positioning frames 6 to rotate. The column bodies of the positioning frames 6 are square column bodies with a telescopically adjustable length. Pedals 61 are welded at the bottom. Ground nails 62 are installed at both ends of the pedals 61, and the ground nails 62 can be fixed on the ground to make the whole fixed.

[0033] The support column 2 includes two ends. The bottom is the lower support column 21. There is a fixing pin 22 on the side of the lower support column 21. The top of the lower support column 21 has a telescopic upper support column 23. There are multiple positioning holes 24 on the side of the upper support column 23. The fixing pin 22 can pass through the positioning holes 24 to fix the upper support column 23. At the same time, there are multiple bolt holes 25 on the front of the lower support column 21. There is a positioning bolt 26 on the connecting hinge at the end of the positioning column 3. The positioning bolt 26 can fix the bolt holes 25.

[0034] The present utility model provides an installation frame for installing a photovoltaic bracket on a sloping land, which can adjust the angle according to different terrains, so that the whole frame body always remains horizontal, and the frame body can adjust the height according to requirements, facilitating construction workers to stand on it to install the photovoltaic panel bracket, and multiple installation frames can be connected together for use, having strong practicability.

[0035] The above are only the preferred embodiments of the present utility model and are not used to limit the present utility model. For those skilled in the art, the present utility model can have various changes and modifications. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present utility model shall be included within the protection scope of the present utility model.

Claims

1. An installation frame for installing a photovoltaic bracket on a slope, characterized in that: Bottom plate, grooves are respectively arranged at the four corners of the top of the bottom plate, pillars are arranged in the grooves through rotating shafts, positioning columns can be arranged between the pillars and the bottom plate in a limited way, a drag platform is detachably arranged at the top of the four pillars, limiting grooves are symmetrically arranged at the bottoms of the four corners of the outer extension of the drag platform, and connecting plates are detachably arranged in the limiting grooves.

2. The mounting frame for the sloping ground-mounted photovoltaic support according to claim 1, characterized in that: Screw holes are arranged in the limiting grooves, two groups of bolts are detachably arranged at intervals on the connecting plates, the connecting plates are fixed to the limiting grooves through the bolts and the screw holes, and the connecting plates are used for connecting two adjacent drag platforms.

3. The mounting frame for a sloping photovoltaic support according to claim 2, characterized in that: Positioning frames are rotatably arranged at the four corners of the bottom of the drag platform through hinges, pedals are arranged at the bottoms of the positioning frames, and ground nails are arranged at both ends of the pedals.

4. The mounting frame for the sloping ground-mounted photovoltaic support according to claim 3, characterized in that: The pillar includes a lower pillar and an upper pillar which is telescopically adjustable and arranged in the lower pillar. A fixing pin is arranged on the side of the lower pillar, a plurality of positioning holes are sequentially arranged on the side of the upper pillar, and the fixing pin is telescopically arranged in the positioning holes.

5. The mounting frame for a sloping photovoltaic support according to claim 4, characterized in that: The positioning columns are respectively rotatably connected to the bottom plate and the pillars through hinges. A plurality of bolt holes are sequentially arranged on the front of the lower pillar. A positioning bolt is arranged on the hinge at the upper part of the positioning column, and the positioning bolt is detachably arranged in the bolt holes.

6. The mounting frame for the sloping land-mounted photovoltaic support according to claim 5, wherein: The positioning column includes a lower column and an upper column which is telescopically adjustable and arranged in the lower column. A fixing piece is arranged on the front of the lower column, a plurality of position holes are sequentially arranged on the front of the upper column, and the fixing piece is detachably arranged in the position holes.

7. The mounting frame for a sloping photovoltaic support according to claim 6, characterized in that: The positioning frame is a square column body with a telescopically adjustable length.

8. The mounting frame for installing a photovoltaic support on a slope according to claim 7, characterized in that: The tops of the four pillars are respectively detachably arranged at the bottom of the drag platform through bolts and connecting plates.