Roof photovoltaic tile assembly structure

By designing the roof photovoltaic tile module structure and using the combination of slides and connecting seats, the flexible installation and fixing of photovoltaic tile is achieved, solving the problems of installation troubles and low efficiency in the existing technology, adapting to different roof layouts, and improving installation efficiency.

CN222996473UActive Publication Date: 2025-06-17ZHEJIANG TIANEN SOLAR ENERGY TECH
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Patent Information

Application Number
CN202421874626.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-05
Publication Date
2025-06-17
Estimated Expiration
2034-08-05

AI Technical Summary

Technical Problem

The existing roof photovoltaic tile installation method is more troublesome and requires more installation tools. The installation efficiency is not high, and it is difficult to adapt to different roof layouts.

Method used

A roof photovoltaic tile assembly structure is designed, including a substrate, a slide, a connecting seat and a plug block. The connecting seat and a limit hole are provided in the slide. The position of the photovoltaic tile can be adjusted through the sliding of the connecting seat and is fixed in the limit hole through the movement of the plug block, adapting to different roof layouts.

Benefits of technology

This structure simplifies the installation process of photovoltaic tile, improves installation efficiency, can easily adapt to different roof layouts, and reduces the use of installation tools.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of roof photovoltaic tile installation, in particular to a roof photovoltaic tile assembly structure which comprises a base plate used for being fixed to a roof, a sliding way is arranged on the base plate, a connecting base is connected into the sliding way in a sliding mode, and a plurality of limiting holes are formed in the sliding way at intervals in the length direction of the sliding way. The connecting seat is used for fixing the photovoltaic tile, and the connecting seat is provided with an inserting block used for being inserted into the limiting hole. Compared with the prior art, the base plate has the following effects that during installation, the base plate is integrally installed on a roof, the connecting bases are arranged in the sliding ways, the specific positions of the photovoltaic tiles can be adjusted through sliding of the connecting bases, and after the photovoltaic tiles move to the proper positions, the photovoltaic tiles are correspondingly inserted into the limiting holes through movement of the inserting blocks to be fixed; the device can adapt to different roof layouts, and is convenient to use.
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Description

Technical Field

[0001] This application relates to the technical field of roof photovoltaic tile installation, and particularly to a structure of a roof photovoltaic tile assembly. Background Art

[0002] With the development of photovoltaic power generation technology, buildings have become an important carrier for photovoltaic tile installation. For example, photovoltaic tiles are installed at flat positions on the roof. At the current stage, during the installation process, the substrate is welded to the installation frame on the roof. This installation method is rather troublesome and requires a lot of installation tools, which is not conducive to improving the installation efficiency. Summary of the Utility Model

[0003] In order to facilitate the installation of photovoltaic tiles on the roof, this application provides a structure of a roof photovoltaic tile assembly.

[0004] A structure of a roof photovoltaic tile assembly provided by this application adopts the following technical solution: A structure of a roof photovoltaic tile assembly includes a substrate for fixing on the roof. A slideway is arranged on the substrate. A connecting seat is slidably connected in the slideway. A plurality of limiting holes are arranged at intervals along the length direction in the slideway. The connecting seat is used for fixing the photovoltaic tile. An insertion block for inserting into the limiting hole is arranged on the connecting seat.

[0005] By adopting the above technical solution, during installation, first install the substrate as a whole on the roof. By arranging the connecting seat in the slideway, the specific position of the photovoltaic tile can be adjusted by the sliding of the connecting seat. When the photovoltaic tile moves to a suitable position, it is fixed by the movement of the insertion block corresponding to be inserted into the limiting hole, which can adapt to different roof layouts and is relatively convenient.

[0006] Preferably, a driving member for driving the insertion block to insert into the limiting hole along a direction perpendicular to the slideway is arranged on the connecting seat.

[0007] Preferably, the driving member includes a rotating gear rotatably connected to the connecting seat. A part of the insertion block has a tooth groove cooperating with the rotating gear.

[0008] Preferably, a first notch is axially formed on the rotating gear. A second notch is formed on the connecting seat. The first notch and the second notch are combined to form a complete cylinder, and a limiting column is inserted therein to limit the movement of the rotating gear.

[0009] Preferably, the depth of the first notch along the axial direction is less than the axial distance of the rotating gear.

[0010] Preferably, an avoidance groove extending along the length direction is arranged on the slideway.

[0011] Preferably, the limiting posts will protrude from the surface of the connecting seat and be lower than the upper surface of the slideway at the same time. The limiting posts are located in the avoidance grooves.

[0012] In summary, the present application includes at least one of the following beneficial technical effects:

[0013] 1. By arranging a connecting seat in the slideway, the specific position of the photovoltaic tile can be adjusted by the sliding of the connecting seat. After the photovoltaic tile moves to a suitable position, it is inserted into the limiting hole correspondingly through the movement of the inserting block to form a fixation, which can be adapted to different roof layouts and is relatively convenient.

[0014] 2. After driving the inserting block to move, by inserting it into the limiting post, the rotation of the rotating gear can be restricted to maintain the fixing effect of the connecting seat. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 is a schematic structural diagram of the present application;

[0016] Figure 2 is a partial cross-sectional view of the present application;

[0017] Figure 3 is a partial exploded schematic diagram of the present application.

[0018] Description of the reference numerals: 100, substrate; 111, slideway; 112, connecting seat; 113, limiting hole; 114, rotating gear; 115, inserting block; 116, first notch; 117, second notch; 120, limiting post; 121, avoidance groove. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0019] The present application will be further described in detail below with reference to the accompanying drawings.

[0020] A roof photovoltaic tile assembly structure, referring to Figure 1 , includes a substrate 100 for fixing on a roof. A slideway 111 is provided on the substrate 100. A plurality of slideways 111 are arranged at intervals. In the figure, a part of the substrate 100 and one of the slideways 111 are used as a schematic illustration. A connecting seat 112 is slidably connected in the slideway 111. The connecting seat 112 is used for fixing the photovoltaic tile.

[0021] The middle of the slideway 111 is recessed. Both sides of the connecting seat 112 are inserted into the slideway 111. At the same time, a plurality of limiting holes 113 are arranged at intervals along the length direction in the slideway 111. An inserting block 115 for inserting into the limiting hole 113 is provided on the connecting seat 112.

[0022] Referring to Figure 2 、 Figure 3, a driving member for driving the insertion block 115 to insert into the limiting hole 113 along a direction perpendicular to the slideway 111 is arranged on the connecting seat 112. The driving member includes a rotating gear 114 rotatably connected to the connecting seat 112, and a part of the insertion block 115 has a tooth groove for cooperating with the rotating gear 114. The rotating gear 114 is embedded in the connecting seat 112, and an avoidance groove 121 along the length direction is provided on the slideway 111, so that the end of the rotating gear 114 can be kept exposed during the movement. When the insertion block 115 is aligned with the limiting hole 113, the rotating gear 114 rotates, and in cooperation with the tooth groove, the insertion block 115 slides and its end is embedded into the limiting hole 113.

[0023] In order to rotate better, a hexagonal slot is opened at the end of the rotating gear 114 for facilitating the insertion of a tool. At the same time, in order to better observe the mating relationship between the insertion block 115 and the limiting hole 113, in this embodiment, the limiting hole 113 is arranged to be through on one side of the slideway 111, so that it can be seen from the other side whether the limiting hole 113 and the insertion block 115 are completely aligned, which is convenient for fixing.

[0024] At the same time, in order to fix the position of the rotating gear 114 after rotation and synchronously fix the insertion block 115, a first notch 116 is axially opened on the rotating gear 114, and a second notch 117 is provided on the connecting seat 112. The first notch 116 and the second notch 117 are combined to form a complete cylinder, and a limiting column 120 is inserted therein to limit the movement of the rotating gear 114. Since the outer wall of the rotating gear 114 itself also has a tooth groove, in this embodiment, the depth of the first notch 116 along the axial direction is less than the axial distance of the rotating gear 114. In this way, it will not affect the cooperation between the rotating gear 114 and the insertion block 115, and at the same time, it can also play a circumferential limiting effect when the limiting column 120 is inserted.

[0025] The limiting column 120 will protrude from the surface of the connecting seat 112 for easy extraction, and at the same time, it is lower than the upper surface of the slideway 111, and the whole will be located in the avoidance groove 121.

[0026] The embodiments of this specific implementation manner are all preferred embodiments of this application, and do not limit the protection scope of this application accordingly. Therefore, all equivalent changes made according to the structure, shape, and principle of this application should be covered within the protection scope of this application.

Claims

1. A rooftop photovoltaic tile assembly structure, comprising a substrate (100) for fixing on a roof, characterized in that: The base plate (100) is provided with a slideway (111), a connecting seat (112) is slidably connected in the slideway (111), a plurality of limiting holes (113) are arranged at intervals in the slideway (111) along its length direction, the connecting seat (112) is used to fix the photovoltaic tile, and an insert (115) is provided on the connecting seat (112) for being inserted into the limiting hole (113).

2. A rooftop photovoltaic tile assembly structure according to claim 1, characterized in that: The connection seat (112) is provided with a driving member for driving the insert block (115) to be inserted into the limiting hole (113) along a direction perpendicular to the slideway (111).

3. A rooftop photovoltaic tile assembly structure according to claim 2, characterized in that: The driving member comprises a rotating gear (114) rotatably connected to the connecting seat (112), and a portion of the insert block (115) has a tooth groove that matches the rotating gear (114).

4. A rooftop photovoltaic tile assembly structure according to claim 3, characterized in that: The rotating gear (114) has a first notch (116) opened in the axial direction, and the connecting seat (112) has a second notch (117), the first notch (116) and the second notch (117) being combined to form a complete cylindrical shape, into which a limiting column (120) is inserted to limit the movement of the rotating gear (114).

5. A rooftop photovoltaic tile assembly structure according to claim 4, characterized in that: The depth of the first notch (116) along the axial direction is smaller than the distance of the rotating gear (114) along the axial direction.

6. A rooftop photovoltaic tile assembly structure according to claim 5, characterized in that: The slideway (111) is provided with an avoidance groove (121) extending along the length direction.

7. A rooftop photovoltaic tile assembly structure according to claim 6, characterized in that: The limiting column (120) will protrude from the surface of the connecting seat (112) and will also be lower than the upper surface of the slideway (111). The limiting column (120) is located in the avoidance groove (121).