Ceramic tile paving tool for building construction

By designing a tile laying fixture with support rods, side rods, and clamping rods forming a clamping cavity, combined with suction cups to hold the edges of the tiles, the problem of uneven tile laying is solved, and construction efficiency and grout consistency are improved.

CN224149107UActive Publication Date: 2026-04-21GUANGDONG CONSTR & INSTALLATION ENG GRP CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
GUANGDONG CONSTR & INSTALLATION ENG GRP CO LTD
Filing Date
2025-05-13
Publication Date
2026-04-21

AI Technical Summary

Technical Problem

Existing tile installation auxiliary structures are not convenient for clamping the edges of tiles during the tiling process, resulting in uneven tile laying, increased workload for grout sealing, and reduced construction efficiency.

Method used

A tile laying fixture for building construction has been designed, including a prefabricated platform, fixture components and connecting components. The fixture is formed by support rods, side rods, splicing rods and clamping rods to form a clamping cavity. Combined with suction cups, the edges of the tiles are clamped to ensure that the tiles are laid neatly.

Benefits of technology

It effectively avoids uneven tile laying, reduces the workload of grout sealing, improves construction efficiency, and enhances the tile laying effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of building construction, in particular to a ceramic tile paving tool for building construction, which comprises a prefabricated table, a ceramic tile body, a tool component and a connecting component, the tile body is connected to the prefabricated table. The tool assembly is connected to the periphery of the tile body. The tool assembly comprises a supporting rod, a side rod, a moving groove, a moving block, a supporting frame, a moving piece, a splicing rod and a clamping rod. The two ends of the supporting rod are connected with the side rods respectively, the side rods are provided with moving grooves, the moving grooves are connected with the moving blocks, the moving blocks are connected with the supporting frames, the two supporting frames are connected through the moving pieces, the splicing rods correspond to the side rods one to one, the splicing rods are connected into the moving grooves through the supporting frames, and the splicing rods are connected with the clamping rods. According to the tile paving tool for building construction, the edge side of a tile body is clamped, the situation that tiles are paved irregularly is avoided, meanwhile, the problem that tile seam beautifying intervals are different due to the fact that the tiles are paved irregularly is solved, and the using effect of the tile paving tool for building construction is improved.
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Description

Technical Field

[0001] This utility model relates to the field of building construction technology, and in particular to a tile laying tool for building construction. Background Technology

[0002] Bricks are a type of acid- and alkali-resistant building or decorative material made from refractory metal oxides and semi-metal oxides through grinding, mixing, pressing, glazing, and sintering. Their raw materials are mostly clay and quartz sand, mixed and compressed at high temperatures, resulting in high hardness. Tiles are very common in home decoration and are one of the main building materials. Meanwhile, "construction equipment" refers to the general term for various auxiliary equipment and tools used in building construction.

[0003] Chinese patent CN218205541U discloses a tile installation auxiliary structure, including a guide rod and a limiting member fixedly mounted at one end of the guide rod. The limiting member is in contact with the side of several adjacent tiles near the wall. A clamping member is provided on the guide rod, moving along its axial direction. The clamping member has a vertical clamping surface that is in contact with the surface of several adjacent tiles. Several suction cups are provided around the clamping member, and each suction cup is adsorbed onto the surface of several adjacent tiles. An adjustment component is provided on each suction cup to drive it to move radially along the guide rod. This invention, by setting a cross-shaped support plate and several closely spaced suction cups, can adjust the width of the gap between adjacent tiles to be uniform. Sealant is filled into the gap, ensuring the tile's airtightness, thereby enhancing the heat insulation and sound insulation effect of the decorative panel.

[0004] While existing tile installation aids have solved the suction cup problem, they make it difficult to clamp the edges of the tiles during installation. This can lead to uneven installation and inconsistent grout spacing during manual tile handling, increasing the workload of grout finishing after installation and reducing the efficiency of tile installation. Utility Model Content

[0005] To address the problems existing in the background technology, a tile laying tool for building construction is proposed.

[0006] This utility model proposes a tile laying fixture for building construction, including: a prefabrication platform, a tile body, fixture components, and connecting components;

[0007] The ceramic tile body is attached to the prefabrication platform;

[0008] The tooling components are connected to the outer periphery of the tile body;

[0009] The tooling components include support rods, side rods, sliding grooves, sliding blocks, support frames, moving parts, splicing rods, and clamping rods;

[0010] The two ends of the support rod are connected to the side rods respectively. The side rods are provided with moving grooves. The moving grooves are connected to moving blocks. The moving blocks are connected to the support frame, so that the two support frames are connected by moving parts. The splicing rod and the side rods correspond one to one. The splicing rod is connected to the moving groove through the support frame. The splicing rod is connected to the clamping rod.

[0011] And the connecting components are connected to the tooling components.

[0012] Preferably, the support rod, two side rods, two splicing rods, and clamping rod are installed to form a clamping cavity, the tile body is connected to the clamping cavity, and the inner walls of the support rod, two side rods, two splicing rods, and clamping rod are all connected with protective pads.

[0013] Preferably, the movable component includes a sleeve, a mounting rod, an electrically telescopic column, and a base;

[0014] The sleeve is connected to the outer perimeter of the connection end of the two support frames. The sleeve is connected to the mounting rod, the mounting rod is connected to the electric telescopic column, and the electric telescopic column is connected to the support rod through the base.

[0015] Preferably, the two support frames are each connected to a connecting seat, and the connecting seat is provided with a through hole and connected to a connecting component.

[0016] Preferably, the connecting components include a mounting bracket, a cylinder, an adjusting rod, a connecting rod, a positioning post, a support rod, and a suction cup;

[0017] The mounting bracket connects to the cylinder, the cylinder drive end is connected to the adjusting rod, the lower end of the adjusting rod passes through the opening and is connected to the connecting rods on both sides, and the connecting rods and the positioning pins correspond one to one;

[0018] The positioning post slides through the through hole and connects to the support rod, which is connected to the suction cup, which is then attached to the tile body.

[0019] Preferably, the mounting bracket is connected to the connecting seat at both ends and is detachably connected; the opening is provided on the mounting bracket.

[0020] Compared with the prior art, the present invention has the following beneficial technical effects:

[0021] This invention places the tile body to be laid on a prefabrication platform, and connects the support rods, side rods, splicing rods, and clamping rods of the operating tooling components to the tile body, thereby clamping the edge side of the tile body. This, combined with the suction cups of the connecting components, prevents uneven tile laying and avoids inconsistent grout spacing caused by uneven tile laying. This reduces the workload of grout finishing after tile laying, improves tile laying efficiency, and enhances the effectiveness of tile laying tools used in construction. Attached Figure Description

[0022] Figure 1This is a schematic diagram of the overall structure of this utility model;

[0023] Figure 2 This is a schematic diagram of the prefabrication platform structure in this utility model;

[0024] Figure 3 This is a schematic diagram of the tooling component structure in this utility model;

[0025] Figure 4 This is a schematic diagram of the connecting component structure in this utility model.

[0026] Reference numerals: 1. Precast platform; 2. Tile body; 3. Support rod; 301. Side rod; 302. Moving groove; 303. Moving block; 304. Support frame; 305. Sleeve; 306. Mounting rod; 307. Electric telescopic column; 308. Base; 309. Splicing rod; 310. Clamping rod; 311. Protective pad; 312. Connecting seat; 4. Connecting assembly; 401. Mounting frame; 402. Cylinder; 403. Adjusting rod; 404. Connecting rod; 405. Positioning column; 406. Support rod; 407. Suction cup. Detailed Implementation

[0027] The specific embodiments of this disclosure will be described in detail below with reference to the accompanying drawings. It should be understood that the specific embodiments described herein are for illustration and explanation only and are not intended to limit this disclosure.

[0028] Example 1

[0029] like Figure 1 - Figure 4 As shown, this utility model proposes a tile laying fixture for building construction, comprising: a prefabrication platform 1, a tile body 2, a fixture assembly, and a connecting assembly 4; the tile body 2 is connected to the prefabrication platform 1; the fixture assembly is connected to the periphery of the tile body 2; the fixture assembly includes a support rod 3, a side rod 301, a moving groove 302, a moving block 303, a support frame 304, a moving component, a splicing rod 309, and a clamping rod 310; the two ends of the support rod 3 are respectively connected to the side rod 301, the side rod 301 is provided with a moving groove 302, the moving groove 302 is connected to the moving block 303, the moving block 303 is connected to the support frame 304, so that the two support frames 304 are connected by the moving component, and the splicing rod 309 corresponds one-to-one with the side rod 301, the splicing rod 309 is connected in the moving groove 302 through the support frame 304, and the splicing rod 309 is connected to the clamping rod 310; the connecting assembly 4 is connected to the fixture assembly. By using the tooling components and connecting components 4 together, uneven tile laying can be avoided, as well as the problem of inconsistent grout spacing caused by uneven tile laying. This reduces the workload of grout finishing after tile laying, improves the efficiency of tile laying, and enhances the effectiveness of tile laying tools used in building construction.

[0030] To further explain, the support rod 3, two side rods 301, two splicing rods 309, and clamping rod 310 are installed to form a clamping cavity, in which the tile body 2 is connected. Protective pads 311 are connected to the inner walls of the support rod 3, two side rods 301, two splicing rods 309, and clamping rod 310. The protective pads 311 facilitate the protection of the tile body 2, improving the practicality of the tooling components.

[0031] Further explanation: The movable component includes a sleeve 305, a mounting rod 306, an electric telescopic column 307, and a base 308. The sleeve 305 is connected to the periphery of the connecting ends of the two support frames 304. The sleeve 305 is connected to the mounting rod 306, and the mounting rod 306 is connected to the electric telescopic column 307. The electric telescopic column 307 is connected to the support rod 3 via the base 308. The two support frames 304 are respectively connected to connecting seats 312, which have through holes and are connected to connecting components 4. The splicing rod 309 connects to the support frame 304. The support frame 304 can be adjusted in position via the sleeve 305, mounting rod 306, and electric telescopic column 307, which in turn drives the clamping rod 310 to adjust, facilitating the clamping of the tile body 2 and improving the coordination of the components of the tooling assembly.

[0032] Example 2

[0033] like Figure 4 As shown, the present invention proposes a tile laying tool for building construction. Based on the above embodiments, this embodiment also details the specific components of the connecting component 4 and the way they are fitted together.

[0034] Further explanation: The connecting component 4 includes a mounting bracket 401, a cylinder 402, an adjusting rod 403, a connecting rod 404, a positioning post 405, a support rod 406, and a suction cup 407. The mounting bracket 401 is connected to the cylinder 402. The driving end of the cylinder 402 is connected to the adjusting rod 403. The lower end of the adjusting rod passes through the opening and is connected to the connecting rod 404 on both sides. The connecting rod 404 and the positioning post 405 correspond one-to-one. The positioning post 405 slides through the through hole and is connected to the support rod 406. The support rod 406 is connected to the suction cup 407, and the suction cup 407 is connected to the tile body 2. Both ends of the mounting bracket 401 are connected to the connecting seat 312 and are detachably connected. The opening is set on the mounting bracket 401. The mounting bracket 401 and the connecting seat 312 are connected by flange bolts, allowing the mounting bracket 401 to connect to the tooling assembly. The cylinder 402 is activated, causing the adjusting rod 403 to move downwards. The adjusting rod 403 drives the connecting rod 404, which in turn drives the positioning post 405. The positioning post 405 slides through the through hole, driving the support rod 406. The support rod 406 drives the suction cup 407, which then adheres to the tile body 2. The cylinder 402 is then deactivated, increasing the stability of the tile body 2 during installation. After the tile body 2 is laid, the cylinder 402 is activated again, causing the adjusting rod 403 to move upwards and reset, thus disengaging the suction cup 407 from the tile body 2. This facilitates the use of the tooling assembly for tile laying.

[0035] The working principle of this utility model is as follows: When using the tile laying fixture for building construction, the tile body 2 to be laid is first placed on the prefabrication platform 1. The worker picks up the fixture components by hand, so that the support rod 3 and the two side rods 301 are connected to the outside of the tile body 2. The electric telescopic column 307 is activated. The drive end of the electric telescopic column 307 moves the installation rod 306. The installation rod 306 drives the sleeve 305. The sleeve 305 drives the support frame 304. The support frame 304 drives the splicing rod 309. The splicing rod 309 drives the clamping rod 310 to move to the other side of the tile body 2, so that the support rod 3 and the two side rods 301 clamp the outer edge of the tile body 2, so that the tile body 2 is clamped in the clamping cavity. The worker moves the fixture components by hand and moves the tile body 2 to the sand and mortar for laying. The distance between the tile body 2 and other tiles is separated by the support rod 3, the side rods 301 and the clamping rod 310, so that the distance between the tile bodies 2 is the same and the grout is uniform, which facilitates the improvement of the tile laying effect.

[0036] The embodiments of the present invention have been described in detail above with reference to the accompanying drawings. However, the present invention is not limited thereto. Various changes can be made within the scope of knowledge possessed by those skilled in the art without departing from the spirit of the present invention.

Claims

1. A tile laying fixture for building construction, characterized in that, include: Prefabrication platform (1); The ceramic tile body (2) is attached to the prefabrication platform (1); Tooling components are connected to the periphery of the tile body (2); The tooling assembly includes a support rod (3), a side rod (301), a moving groove (302), a moving block (303), a support frame (304), a moving part, a splicing rod (309), and a clamping rod (310). The two ends of the support rod (3) are respectively connected to the side rod (301). The side rod (301) is provided with a moving groove (302). The moving groove (302) is connected to the moving block (303). The moving block (303) is connected to the support frame (304), so that the two support frames (304) are connected by the moving parts. The splicing rod (309) and the side rod (301) correspond one to one. The splicing rod (309) is connected in the moving groove (302) through the support frame (304). The splicing rod (309) is connected to the clamping rod (310). And connecting component (4), which is connected to tooling component.

2. The ceramic tile laying tool according to claim 1, wherein The support rod (3), two side rods (301), two splicing rods (309) and clamping rod (310) are installed to form a clamping cavity. The tile body (2) is connected to the clamping cavity, and the inner walls of the support rod (3), two side rods (301), two splicing rods (309) and clamping rod (310) are all connected to protective pads (311).

3. The ceramic tile laying tool according to claim 2, wherein The movable component includes a sleeve (305), a mounting rod (306), an electric telescopic column (307), and a base (308); The sleeve (305) is connected to the outer periphery of the connection end of the two support frames (304). The sleeve (305) is connected to the mounting rod (306). The mounting rod (306) is connected to the electric telescopic column (307). The electric telescopic column (307) is connected to the support rod (3) through the base (308).

4. The tile laying fixture for building construction according to claim 3, characterized in that, Two support frames (304) are respectively connected to connecting seats (312), and the connecting seats (312) are provided with through holes and connected to connecting components (4).

5. The ceramic tile laying tool according to claim 4, wherein The connecting assembly (4) includes a mounting bracket (401), a cylinder (402), an adjusting rod (403), a connecting rod (404), a positioning post (405), a support rod (406), and a suction cup (407). The mounting bracket (401) is connected to the cylinder (402), the driving end of the cylinder (402) is connected to the adjusting rod (403), the lower end of the adjusting rod passes through the opening and is connected to the connecting rod (404) on both sides respectively, and the connecting rod (404) and the positioning column (405) correspond one to one; The positioning post (405) slides through the through hole and is connected to the support rod (406). The support rod (406) is connected to the suction cup (407), and the suction cup (407) is connected to the tile body (2).

6. The tile laying tool according to claim 5, wherein The mounting bracket (401) is connected to the connecting seat (312) at both ends and is detachably connected; the opening is provided on the mounting bracket (401).

Citation Information

Patent Citations

  • Ceramic tile installation auxiliary structure

    CN218205541U