Auxiliary supporting platform for photovoltaic module installation

By designing an auxiliary support platform for photovoltaic module installation, the platform utilizes the friction between the support base and the lifting base to fix the photovoltaic support column, thus solving the problems of inconvenience and safety risks in carrying photovoltaic panels during installation and achieving convenient installation and height adjustment.

CN223867614UActive Publication Date: 2026-02-03ZHEJIANG DATANG INTERNATIONAL RENEWABLE POWER CO LTD
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Patent Information

Application Number
CN202520442932.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-14
Publication Date
2026-02-03
Estimated Expiration
2035-03-14

AI Technical Summary

Technical Problem

The installation of existing photovoltaic panels requires working at heights. Using scaffolding and ladders is inconvenient to carry and poses safety risks on uneven ground, and adjusting the height is difficult.

Method used

An auxiliary support platform for photovoltaic module installation has been designed, including a support base, a lifting base and rollers. It is fixed to the photovoltaic bracket column by friction through the cooperation of rubber plate and guide groove, allowing for height adjustment and convenient installation.

Benefits of technology

It achieves convenient installation and height adjustment, avoiding inconvenience in carrying and safety risks, and is suitable for various sites, especially when used on uneven ground where it is more stable.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an auxiliary supporting platform for installing a photovoltaic module. At present, climbing operation tools are inconvenient to carry, scaffolds and ladders are easy to lose balance due to uneven ground of an installation site, safety problems are easy to cause, and height adjustment is troublesome. A rubber plate is arranged on the lower portion of the supporting seat, a lifting seat is connected to the outer side of the supporting seat in a sliding mode, roller shafts are arranged on the outer side of the supporting seat and the outer side of the lifting seat, a stand column is clamped between the rubber plate and the roller shafts, the roller shafts are clamped in a guide groove and a bottom groove, and the guide groove is of an L-shaped structure formed by connecting a transverse groove in the lower portion and a vertical groove in the upper portion. The upper portion of the vertical groove inclines towards one side of the sliding groove, a rubber plate is arranged on the lower portion of the supporting seat, and the lifting seat moves upwards along the supporting seat to drive the roller shaft to move upwards. The auxiliary support is used for installing the photovoltaic module.
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Description

Technical Field

[0001] This utility model relates to the photovoltaic field, and in particular to an auxiliary support platform for photovoltaic module installation. Background Technology

[0002] During the installation of photovoltaic panels, it is often necessary to work at height. Currently, scaffolding and ladders are used for such work. These tools are inconvenient to carry, and the scaffolding and ladders are prone to losing balance due to uneven ground at the installation site, which can easily cause safety problems. In addition, adjusting the height is also quite troublesome. Utility Model Content

[0003] This utility model addresses the aforementioned shortcomings of the existing technology by providing an auxiliary support platform for photovoltaic module installation that is attached to the support column of a photovoltaic bracket, is easy to install and carry, has convenient height adjustment, is not limited by the site, and poses no safety risks.

[0004] To achieve the above objectives, the present invention adopts the following technical solution:

[0005] An auxiliary support platform for photovoltaic module installation includes a support base, a rubber plate at the lower part of the support base, a lifting seat slidably connected to the outside of the support base, rollers on the outside of the support base and the lifting seat, and a column inserted between the rubber plate and the rollers.

[0006] The support base has two symmetrical side plates on one side, and the distance between the two side plates is equal to the width of the column. Each side plate has a sliding groove on its outer side, and a lifting seat is provided in the sliding groove. The lifting seat is a rectangular frame frame with an opening on the front side. The lifting seat has sliders inside on both sides, and the sliders on both sides are slidably connected to the sliding grooves on both sides.

[0007] The aforementioned auxiliary support platform for photovoltaic module installation includes a guide groove extending through both sides of the side plate. The guide groove is an L-shaped structure formed by connecting a lower horizontal groove and an upper vertical groove. The upper part of the vertical groove is inclined towards the sliding groove side. The lower part of the lifting seat has two symmetrical bottom grooves on both sides. The roller shaft is engaged in the guide groove and the bottom groove on both sides. The rubber roller on the outside of the roller shaft is in contact with the column.

[0008] The auxiliary support platform for photovoltaic module installation has a vertical plate at the lower part of the side plate, and a rubber plate is fixedly connected inside the vertical plate.

[0009] The aforementioned auxiliary support platform for photovoltaic module installation has one or more slots on the outer side of the support base, and a support plate is placed on the slots.

[0010] In the aforementioned auxiliary support platform for photovoltaic module installation, when the column is circular, the vertical plate and rubber plate are arc-shaped structures, and the axial cross-section of the rubber roller is circular to accommodate the circular column. Beneficial effects

[0011] 1. In this utility model, the roller shaft is secured in a guide groove and a bottom groove. The guide groove is an L-shaped structure formed by connecting a lower horizontal groove and an upper vertical groove. The upper part of the vertical groove slopes towards the sliding groove side. A rubber plate is provided at the bottom of the support base. The lifting seat moves upward along the support base, driving the roller shaft to move upward. The column is secured between the roller shaft and the rubber plate. The pressure between the rubber plate and the column generates friction. This friction fixes the device and the column. When the outside of the support base is pressed, the pressure and friction between the rubber plate and the column increase. If there is a downward tendency between the support base and the column, the inclined vertical groove makes the support base and the column hold each other more tightly, and the pressure and friction between the support base and the rubber plate are even greater. The increased friction fixes the device and the column. This device is installed on the column at any height, and the height can be adjusted at any time during use. It is small in size, easy to carry, not limited by site, and does not pose the safety risks associated with using scaffolding and ladders on uneven ground. Attached Figure Description

[0012] Figure 1 This is an installation diagram of the present invention;

[0013] Figure 2 This is a schematic diagram of the structure of this utility model;

[0014] Figure 3 This is a schematic diagram of the support structure;

[0015] Figure 4 This is a side view of the support base;

[0016] Figure 5 This is a schematic diagram of the lifting seat mechanism;

[0017] Figure 6 This is a schematic diagram of the roller structure;

[0018] In the diagram: 1. Photovoltaic bracket; 2. Support plate; 3. Column; 4. Roller; 5. Rubber plate; 6. Lifting seat; 7. Support seat; 8. Side plate; 9. Guide groove; 10. Slide groove; 11. Vertical plate; 12. Slot; 13. Horizontal groove; 14. Vertical groove; 15. Slider; 16. Handle; 17. Bottom groove; 18. Rubber roller. Detailed Implementation

[0019] Reference Figures 1-6 An auxiliary support platform for photovoltaic module installation includes a support base 7, a lifting base 6, a roller 4, and a rubber plate 5, such as... Figure 3As described, the support base 7 has two symmetrical side plates 8 on one side, and the distance between the two side plates 8 is equal to the width of the column 3 of the photovoltaic bracket 1. Each side plate 8 has a sliding groove 10 on its outer side, and a lifting seat 6 is provided in the sliding groove 10. Figure 5 The lifting seat 6 is a rectangular frame frame with an opening on the front. The lifting seat 6 has sliders 15 inside on both sides, and the sliders 15 on both sides are slidably connected to the slide grooves 10 on both sides.

[0020] The side plate 8 has a guide groove 9 that runs through both sides of the side plate 8. The guide groove 9 is an L-shaped structure formed by the connection of the lower horizontal groove 13 and the upper vertical groove 14. The upper part of the vertical groove 14 is inclined towards the sliding groove 10. The lower part of the lifting seat 6 has two symmetrical bottom grooves 17 on both sides. The roller 4 is stuck in the guide groove 9 and the bottom groove 17 on both sides. The rubber roller 18 on the outside of the roller 4 is in contact with the column 3. The bottom grooves 17 on both sides can prevent the roller 4 from tilting when it moves up and down along the vertical groove 14, so that the roller 4 and the support seat 7 cannot hold the support seat 7 tightly.

[0021] The lower part of the side plate 8 is provided with a vertical plate 11, and a rubber plate 5 is fixedly connected inside the vertical plate 11. The support base 7 and the rubber plate 5 can be fixed to the support base 7 by adhesive or screws.

[0022] One or more slots 12 are provided on the outside of the support base 7, and a support plate 2 is placed on the slot 12 for the operator to step on.

[0023] When the column 3 is circular, the vertical plate 11 and the rubber plate 5 are provided with an arc-shaped structure with the same diameter as the column 3, and the axial section of the rubber roller 18 is also designed to be a circular structure with the same diameter as the column 3, so as to ensure that the circular column 3 can be held tightly.

[0024] When using this device, first, insert the column 3 into the side plates 8 on both sides. The lifting seat 6 naturally rests on the upper part of the support seat 7. At this time, the guide groove 9 and the bottom groove 17 are aligned. Push the roller 4 along the guide groove 9 and the slide groove 10 into the bottom of the transverse groove 13. Hold the handles 16 on both sides of the lifting seat 6 and push the lifting seat 6 upward. The roller 4 slides from the transverse groove 13 into the vertical groove 14 under the action of the lifting seat 6. Since the vertical groove 14 is inclined to the slide groove 10, when the roller 4 moves upward, the rubber roller 18 will clamp the column 3. Friction is generated between the rubber plate 5 and the column 3. The device is fixed on the column 3. Install the device on multiple columns 3 in this way, with the installation height being the same. Then, install the support plate 2 in the corresponding slots 12 of multiple support seats 7. When the operator stands When the support plate 2 is in place, the outer side of the support seat 7 is under force, the pressure between the rubber plate 5 and the column 3 will increase, and the friction between the rubber plate 5 and the column 3 will be greater. If the rubber plate 5 slides down under force, the inclination of the vertical groove 14 will make the rubber roller 18 fit closer to the column 3, and the support seat 7 will hug the column 3 more tightly. The pressure between the rubber plate 5 and the column 3 will be greater, and the friction between the rubber plate 5 and the column 3 will be greater, so that the device will be stably fixed on the column 3. After use, hold the handles 16 on both sides of the lifting seat 6 and press down, or tap the handles 16 on both sides downward. The lifting seat 6 will drive the roller 4 to move down along the support seat 7. When the lifting seat 6 moves to the lower part, the inclination of the vertical groove 14 will cause the rubber roller 18 to detach from the column 3. Remove the roller 4, and then the device can be removed from the column 3.

[0025] The roller 4 is engaged in the guide groove 9 and the bottom groove 17. The guide groove 9 is an L-shaped structure formed by the interconnection of the lower transverse groove 13 and the upper vertical groove 14. The upper part of the vertical groove 14 is inclined towards the slide groove 10. The support base 7 is provided with a rubber plate 5 at the bottom. The lifting seat 6 moves upward along the support base 7, which drives the roller 4 to move upward. The column 3 is engaged between the roller 4 and the rubber plate 5. The pressure between the rubber plate 5 and the column 3 generates friction. The friction fixes the device and the column 3. When the outside of the support base 7 is pressed, the rubber plate 5... The increased pressure and friction between the support base 7 and the column 3, and the tendency for the support base 7 to slide down the column 3, the inclined vertical groove 14 makes the support base 7 and the column 3 hold each other more tightly, and the pressure and friction between the support base 7 and the rubber plate 5 are greater. The increased friction will fix the device and the column. The device is installed on the column 3 at any height and can be adjusted at any time during use. It is small in size, easy to carry, not limited by the site, and does not pose the safety risks of using scaffolding and ladders on uneven ground.

Claims

1. An auxiliary support platform for photovoltaic module installation, characterized in that: Its components include a support base, a rubber plate at the bottom of the support base, a lifting seat slidably connected to the outside of the support base, rollers on the outside of the support base and the lifting seat, and a column inserted between the rubber plate and the rollers. The support base has two symmetrical side plates on one side, and the distance between the two side plates is equal to the width of the column. Each side plate has a sliding groove on its outer side, and a lifting seat is provided in the sliding groove. The lifting seat is a rectangular frame frame with an opening on the front side. The lifting seat has sliders inside on both sides, and the sliders on both sides are slidably connected to the sliding grooves on both sides.

2. The auxiliary support platform for photovoltaic module installation according to claim 1, characterized in that: The side plate is provided with a guide groove that runs through both side plates. The guide groove is an L-shaped structure formed by connecting the lower horizontal groove and the upper vertical groove. The upper part of the vertical groove is inclined to the sliding groove side. The lower part of the lifting seat is provided with two symmetrical bottom grooves on both sides. The roller shaft is stuck in the guide groove and the bottom groove on both sides. The rubber roller on the outside of the roller shaft is in contact with the column.

3. The auxiliary support platform for photovoltaic module installation according to claim 2, characterized in that: The lower part of the side plate is provided with a vertical plate, and a rubber plate is fixedly connected inside the vertical plate.

4. The auxiliary support platform for photovoltaic module installation according to claim 3, characterized in that: The support base has one or more slots on its outer side, and a support plate is placed on the slots.

5. The auxiliary support platform for photovoltaic module installation according to claim 4, characterized in that: When the column is circular, the vertical plate and rubber plate are arc-shaped structures, and the axial cross-section of the rubber roller is circular to accommodate the circular column.