Waterproof photovoltaic tile convenient to splice

By using a snap-fit ​​method and snap-fit ​​mechanism design, the problem of cumbersome splicing of existing waterproof photovoltaic tiles has been solved, enabling convenient installation and disassembly of photovoltaic tiles and improving splicing efficiency.

CN223942630UActive Publication Date: 2026-02-24LIAONING YILIAN CONSTRUCTION ENGINEERING CO LTD
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Patent Information

Application Number
CN202423296157.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-31
Publication Date
2026-02-24
Estimated Expiration
2034-12-31

AI Technical Summary

Technical Problem

Existing waterproof photovoltaic tiles, which are easy to splice, require cumbersome bolt and nut or welding methods during splicing, resulting in inconvenient installation and disassembly and reduced splicing efficiency.

Method used

It adopts a snap-fit ​​method for splicing, and achieves simple snap-fit ​​fixation by combining fixed posts, circular blocks, arc grooves, inserts and strip slots, combined with the design of sliding grooves, sliding plates, inserts, telescopic rods and springs, and locks in place by the cooperation of internal threaded cylinders and threaded rods.

Benefits of technology

It enables convenient installation and disassembly of photovoltaic tiles, improves splicing efficiency, and simplifies the splicing process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a waterproof photovoltaic tile convenient to splice. The waterproof photovoltaic tile comprises a photovoltaic tile and a splicing mechanism, the splicing mechanism comprises fixing columns, circular blocks, arc-shaped grooves, inserting strips and strip-shaped inserting grooves, the fixing columns are fixedly connected to the front sides and the rear sides of the right ends of the photovoltaic tiles respectively, the circular blocks are arranged on the front sides and the rear sides of the upper ends of the photovoltaic tiles respectively, the arc-shaped grooves are formed in the circular blocks respectively, and the outer surfaces of the fixing columns are slidably connected with the inner walls of the adjacent arc-shaped grooves respectively. The waterproof photovoltaic tile convenient to splice comprises a splicing mechanism, the splicing mechanism comprises a plurality of photovoltaic tiles, insertion strips are arranged at the right ends of the photovoltaic tiles, strip-shaped insertion grooves are formed in the left ends of the photovoltaic tiles, the insertion strips and the strip-shaped insertion grooves are installed in a matched mode, the splicing mechanism further comprises sliding grooves, sliding plates, insertion blocks and insertion holes, and the front-back symmetrical sliding grooves are formed in the insertion strips. Splicing is carried out in a simple clamping mode, mounting and dismounting are convenient, and the splicing efficiency of the photovoltaic tiles is improved.
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Description

Technical Field

[0001] This utility model relates to the field of waterproof photovoltaic tiles that are easy to splice, specifically a waterproof photovoltaic tile that is easy to splice. Background Technology

[0002] Waterproof photovoltaic tiles are a type of building material that integrates photovoltaic power generation and waterproofing. Based on traditional photovoltaic tiles, they have been enhanced with waterproofing performance, which can effectively prevent rainwater and snowmelt from seeping into the interior of the building. At the same time, they convert solar energy into electrical energy, providing green energy for the building. In residential buildings, waterproof photovoltaic tiles can replace traditional tiles, providing electricity to the family while effectively waterproofing the building.

[0003] The existing waterproof photovoltaic tiles that are easy to splice are assembled by placing the first photovoltaic tile in the predetermined position, picking up the second photovoltaic tile and gently inserting it with its protrusion aligned with the groove of the first photovoltaic tile, and then fixing the two photovoltaic tiles by bolts, nuts or welding.

[0004] Existing waterproof photovoltaic tiles that are easy to splice have the following problems: when splicing waterproof photovoltaic tiles, the splicing method of bolts and nuts or welding is relatively cumbersome, inconvenient for installation and disassembly, and reduces the splicing efficiency of photovoltaic tiles. Therefore, we propose a waterproof photovoltaic tile that is easy to splice. Utility Model Content

[0005] The technical problem to be solved by this utility model is to overcome the existing defects and provide a waterproof photovoltaic tile that is easy to splice. When splicing the waterproof photovoltaic tile, it is spliced ​​by a simple snap-fit ​​method, which is convenient for installation and disassembly, improves the splicing efficiency of photovoltaic tiles, and can effectively solve the problems in the background art.

[0006] To achieve the above objectives, this utility model provides the following technical solution: a waterproof photovoltaic tile that is easy to splice, comprising a photovoltaic tile and a splicing mechanism;

[0007] The splicing mechanism includes fixed columns, circular blocks, arc grooves, inserts, and strip slots. Fixed columns are fixedly connected to the front and rear sides of the right end of the photovoltaic tile. Circular blocks are provided on the front and rear sides of the upper end of the photovoltaic tile. Arc grooves are opened inside the circular blocks. The outer surface of the fixed columns is slidably connected to the inner wall of the adjacent arc grooves. Inserts are provided at the right end of the photovoltaic tile, and strip slots are opened at the left end of the photovoltaic tile. The inserts and strip slots are installed together. When splicing waterproof photovoltaic tiles, splicing is carried out by a simple snap-fit ​​method, which is convenient for installation and disassembly and improves the splicing efficiency of photovoltaic tiles.

[0008] Furthermore, the splicing mechanism also includes a sliding groove, a sliding plate, a plug, and a socket. The plug has a sliding groove with symmetrical front and back openings inside. A sliding plate is slidably connected inside the sliding groove. A plug is fixedly connected to the lower end of the sliding plate. The bottom wall of the strip slot has a socket with symmetrical front and back openings. The plugs are installed by cooperating with the vertically adjacent sockets to provide a snap-fit ​​connection.

[0009] Furthermore, the splicing mechanism also includes telescopic rods and springs. Telescopic rods are fixedly connected between the top wall of the sliding groove and the upper end of the vertically adjacent sliding plate, and springs are respectively sleeved on the outside of the telescopic rods to facilitate rebound.

[0010] Furthermore, the photovoltaic tile has a sliding groove at its rear end and a sliding strip at its front end. The sliding groove and the sliding strip are installed together to facilitate splicing.

[0011] Furthermore, the upper left side of the photovoltaic tile is provided with an internally threaded cylinder, and the internal thread of the internally threaded cylinder is connected to a threaded rod. A threaded hole is opened in the middle of the upper end of the insert, and the lower end of the threaded rod is connected to the internal thread of the threaded hole for fixing.

[0012] Furthermore, a dial is fixedly connected to the upper end of the threaded rod for easy fixation.

[0013] Furthermore, a locking bolt is threaded onto the edge of the dial, and the lower end of the locking bolt is fitted with the upper left side of the photovoltaic tile to provide locking.

[0014] Compared with the prior art, the beneficial effects of this utility model are as follows: This waterproof photovoltaic tile, which is easy to splice, has the following advantages:

[0015] Align the fixing post with the clearance hole at the top of the circular block, and insert the fixing post into the arc-shaped groove. The fixing post slides inside the arc-shaped groove. Align the two photovoltaic tiles so that the insert strip is inserted into the strip slot. When the insert strip is inserted into the strip slot, the insert block will retract into the sliding groove. When the insert block moves to the insertion hole, the insert block will be ejected by the sliding plate under the rebound action of the telescopic rod and the spring to insert into the insertion hole, thereby fixing the two photovoltaic tiles. When splicing waterproof photovoltaic tiles, a simple snap-fit ​​method is used for splicing, which is convenient for installation and disassembly and improves the splicing efficiency of photovoltaic tiles. Attached Figure Description

[0016] Figure 1 This is a schematic diagram of the structure of this utility model;

[0017] Figure 2 This is a cross-sectional structural diagram of the present invention;

[0018] Figure 3 This is an enlarged structural diagram of point A in this utility model;

[0019] Figure 4 This is an enlarged structural diagram of section B of the present invention.

[0020] In the diagram: 1. Photovoltaic tile, 2. Sliding groove, 3. Sliding strip, 4. Splicing mechanism, 401. Fixing column, 402. Circular block, 403. Arc groove, 404. Insert strip, 405. Strip slot, 406. Sliding groove, 407. Telescopic rod, 408. Spring, 409. Sliding plate, 410. Insert block, 411. Insert hole, 5. Internal threaded cylinder, 6. Threaded rod, 7. Dial wheel, 8. Locking bolt. Detailed Implementation

[0021] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0022] Please see Figure 1-4 This embodiment provides a technical solution: a waterproof photovoltaic tile that is easy to splice, including a photovoltaic tile 1 and a splicing mechanism 4. The rear end of the photovoltaic tile 1 is provided with a sliding groove 2, and the front end of the photovoltaic tile 1 is provided with a sliding strip 3. The sliding groove 2 and the sliding strip 3 are installed together. The upper left side of the photovoltaic tile 1 is provided with an internal threaded cylinder 5. The internal thread of the internal threaded cylinder 5 is connected to a threaded rod 6. The upper middle part of the insert 404 is provided with a threaded hole. The lower end of the threaded rod 6 is connected to the internal thread of the threaded hole. The upper end of the threaded rod 6 is fixedly connected with a dial wheel 7. The edge of the dial wheel 7 is threadedly connected with a locking bolt 8. The lower end of the locking bolt 8 is... Installed in conjunction with the upper left side of the photovoltaic tile 1, the rotating wheel 7 will drive the threaded rod 6 to move downward inside the internal thread of the inner threaded cylinder 5. Then, the lower end of the threaded rod 6 will be threadedly connected to the threaded hole at the upper end of the insert 404. Next, the locking bolt 8 will be threaded into the threaded hole on the rotating wheel 7, so that the locking bolt 8 is pressed against the left side of the upper end of the photovoltaic tile 1, and the rotating wheel 7 will be locked and fixed, so that the fixing effect of the two photovoltaic tiles 1 is better. When splicing the front and back, the sliding strip 3 of one photovoltaic tile 1 will be slid laterally into the sliding groove 2 of the other photovoltaic tile 1.

[0023] Splicing mechanism 4: It includes a fixing post 401, a circular block 402, an arc groove 403, an insert 404, and a strip slot 405. The fixing post 401 is fixedly connected to the front and rear sides of the right end of the photovoltaic tile 1. The circular block 402 is provided on the front and rear sides of the upper end of the photovoltaic tile 1. The circular block 402 has an arc groove 403 opened inside. The outer surface of the fixing post 401 is slidably connected to the inner wall of the adjacent arc groove 403. The right end of the photovoltaic tile 1 is provided with an insert 404, and the left end of the photovoltaic tile 1 is provided with a strip slot 405. The insert 404 and the strip slot 405 are connected. For installation purposes, the splicing mechanism 4 also includes a sliding groove 406, a sliding plate 409, an insert block 410, and an insertion hole 411. The insert strip 404 has symmetrically arranged sliding grooves 406 inside. Sliding plates 409 are slidably connected inside the sliding grooves 406. Insert blocks 410 are fixedly connected to the lower ends of the sliding plates 409. The bottom wall of the strip slot 405 has symmetrically arranged insertion holes 411. Insert blocks 410 are installed in conjunction with vertically adjacent insertion holes 411. The splicing mechanism 4 also includes a telescopic rod 407 and a spring 408. The top wall of the sliding groove 406 is vertically adjacent to the spring 411. Telescopic rods 407 are fixedly connected to the upper ends of sliding plates 409 respectively. Springs 408 are sleeved on the outside of telescopic rods 407 respectively. When splicing photovoltaic tiles, the worker holds two photovoltaic tiles 1, then aligns the fixing post 401 on the right end of one photovoltaic tile 1 with the upper end of the clearance hole on the upper end of the circular block 402 on the upper end of the other photovoltaic tile 1. Then, the fixing post 401 is inserted into the arc groove 403. The fixing post 401 will slide inside the arc groove 403 until the fixing post 401 slides to the lower end of the arc groove 403. Then, the two photovoltaic tiles 1 are joined together. Insertion strip 404 of one photovoltaic tile 1 is inserted into the strip slot 405 of another photovoltaic tile 1. When insertion strip 404 is inserted into the strip slot 405, insertion block 410 will retract into the sliding groove 406 under the pressure of the bottom wall of the strip slot 405. Then insertion strip 404 continues to move into the strip slot 405. When insertion block 410 moves to the upper end of insertion hole 411, insertion block 410 will be ejected by sliding plate 409 under the rebound action of telescopic rod 407 and spring 408 to insert into insertion hole 411, thereby fixing the two photovoltaic tiles 1.

[0024] The working principle of the waterproof photovoltaic tile that is easy to splice provided by this utility model is as follows: When splicing the photovoltaic tiles, the worker holds two photovoltaic tiles 1 in his hand, and then aligns the fixing post 401 at the right end of one photovoltaic tile 1 with the upper end of the clearance hole at the upper end of the circular block 402 at the upper end of the other photovoltaic tile 1. Then, the fixing post 401 is inserted into the arc groove 403. The fixing post 401 will slide inside the arc groove 403 until the fixing post 401 slides to the lower end of the arc groove 403. Then, the two photovoltaic tiles 1 are aligned so that the insert 404 of one photovoltaic tile 1 is inserted into the strip slot 405 of the other photovoltaic tile 1. When the insert 404 is inserted into the strip slot 405, the insert block 410 will retract into the sliding groove 406 under the pressure of the bottom wall of the strip slot 405. Then, the insert 404 continues to slide into the strip slot 405. The internal movement of slot 405: When the insert block 410 moves to the upper end of the insertion hole 411, the insert block 410 will be ejected by the sliding plate 409 under the rebound action of the telescopic rod 407 and the spring 408 to insert into the insertion hole 411, thereby fixing the two photovoltaic tiles 1. Then, by rotating the dial wheel 7, the rotation of the dial wheel 7 will drive the threaded rod 6 to move downward inside the internal thread of the internal threaded cylinder 5, thereby connecting the lower end of the threaded rod 6 with the threaded hole at the upper end of the insert strip 404. Then, the locking bolt 8 will be threaded into the threaded hole on the dial wheel 7, so that the locking bolt 8 is pressed against the left side of the upper end of the photovoltaic tile 1, and the dial wheel 7 will be locked and fixed, so that the fixing effect of the two photovoltaic tiles 1 is better. When splicing the front and back, the sliding strip 3 of one photovoltaic tile 1 will be slid laterally into the sliding groove 2 of the other photovoltaic tile 1.

[0025] The above description is merely an embodiment of this utility model and does not limit the patent scope of this utility model. Any equivalent structural or procedural transformations made based on the content of this utility model specification and drawings, or direct or indirect applications in other related technical fields, are similarly included within the patent protection scope of this utility model.

Claims

1. A waterproof photovoltaic tile that is easy to assemble, characterized in that: Includes photovoltaic tiles (1) and splicing mechanism (4); The splicing mechanism (4) includes a fixed column (401), a circular block (402), an arc groove (403), an insert (404), and a strip slot (405). The front and rear sides of the right end of the photovoltaic tile (1) are fixedly connected to the fixed column (401). The front and rear sides of the upper end of the photovoltaic tile (1) are respectively provided with a circular block (402). The inside of the circular block (402) is provided with an arc groove (403). The outer surface of the fixed column (401) is slidably connected to the inner wall of the adjacent arc groove (403). The right end of the photovoltaic tile (1) is provided with an insert (404). The left end of the photovoltaic tile (1) is provided with a strip slot (405). The insert (404) and the strip slot (405) are installed together.

2. The waterproof photovoltaic tile that is easy to splice according to claim 1, characterized in that: The splicing mechanism (4) further includes a sliding groove (406), a sliding plate (409), a plug (410), and a socket (411). The insert (404) has a sliding groove (406) with symmetrical front and back. The sliding plate (409) is slidably connected inside the sliding groove (406). The lower end of the sliding plate (409) is fixedly connected to the plug (410). The bottom wall of the strip slot (405) has a socket (411) with symmetrical front and back. The plug (410) is installed in conjunction with the vertically adjacent socket (411).

3. The waterproof photovoltaic tile that is easy to splice according to claim 2, characterized in that: The splicing mechanism (4) also includes a telescopic rod (407) and a spring (408). The top wall of the sliding groove (406) and the upper end of the vertically adjacent sliding plate (409) are respectively fixedly connected with the telescopic rod (407), and the telescopic rod (407) is respectively fitted with a spring (408).

4. The waterproof photovoltaic tile that is easy to splice according to claim 1, characterized in that: The photovoltaic tile (1) has a sliding groove (2) at its rear end and a sliding strip (3) at its front end. The sliding groove (2) and the sliding strip (3) are installed together.

5. The waterproof photovoltaic tile that is easy to splice according to claim 1, characterized in that: The photovoltaic tile (1) has an internally threaded cylinder (5) on the upper left side. The internal threaded cylinder (5) is connected to a threaded rod (6) by a thread. The upper middle part of the insert (404) has a threaded hole, and the lower end of the threaded rod (6) is connected to the internal thread of the threaded hole.

6. The waterproof photovoltaic tile that is easy to splice according to claim 5, characterized in that: A dial (7) is fixedly connected to the upper end of the threaded rod (6).

7. A waterproof photovoltaic tile that is easy to splice according to claim 6, characterized in that: The edge of the dial (7) is threaded with a locking bolt (8), and the lower end of the locking bolt (8) is fitted with the upper left side of the photovoltaic tile (1).