Wall brick dry hanging structure

By introducing a moving and rotating mechanism into the dry-hanging structure of wall bricks, and using a drive motor to control the threaded rod and slider, the distance and angle between the wall brick panel and the wall can be flexibly adjusted, which solves the problems of insufficient applicability and aesthetics in the existing technology, and improves construction efficiency and decorative effect.

CN223853750UActive Publication Date: 2026-01-30ZHEJIANG HUAYUE ARCHITECTURE DESIGN CO LTD
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Patent Information

Application Number
CN202520102111.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-16
Publication Date
2026-01-30
Estimated Expiration
2035-01-16

AI Technical Summary

Technical Problem

Existing dry-hanging wall tile structures are difficult to flexibly adjust the spacing and angle between the wall and the wall tiles when facing uneven walls or special angle decoration needs, which affects applicability and aesthetics.

Method used

The rectangular mounting frame is used to move and rotate between itself and the wall. Combined with a T-shaped slider and a drive motor, the wall tile panel can be flexibly adjusted. The distance and angle between the wall tile panel and the wall can be adjusted by controlling the movement of the threaded rod and the slider through the drive motor.

Benefits of technology

It enables flexible adjustment of the spacing and angle between the wall tiles and the wall, improving the applicability and aesthetics of construction, meeting diverse decoration needs, and increasing construction efficiency.

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    Figure CN223853750U_ABST
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Abstract

The utility model discloses a wall brick dry hanging structure, which belongs to the field of building decoration and comprises a wall body, a rectangular mounting frame is arranged at one end of the wall body, a plurality of wall brick plates are assembled at one end of the rectangular mounting frame, and a moving mechanism for moving the rectangular mounting frame is arranged between the wall body and the rectangular mounting frame. A rotating mechanism used for rotating the rectangular mounting frame is arranged at the top between the wall body and the rectangular mounting frame, and T-shaped sliding blocks are fixed to the four end corners of the ends, close to the T-shaped sliding blocks, of the wall brick plates correspondingly, so that the distance between the wall body and the wall brick plates can be flexibly adjusted according to actual requirements, and different wall body conditions and decoration design requirements are met; the angle of the wall brick plate can be adjusted according to design requirements, diversified decoration requirements are met, and the construction efficiency and attractiveness are remarkably improved especially in decoration of the wall brick plate needing a specific angle.
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Description

Technical Field

[0001] This utility model relates to the field of building decoration, and more specifically, to a dry-hanging structure for wall bricks. Background Technology

[0002] Dry-hanging wall tile structure is a commonly used wall decoration installation technology that has been widely used in building construction. The dry-hanging technology separates the wall tiles from the wall, leaves a certain gap, and connects them through a special structure. It can effectively improve the decorative effect of the wall surface and avoid problems such as falling off and cracking in the traditional wet-laying method. It has the advantages of quick construction, convenient maintenance and structural stability.

[0003] For example, patent (CN214995519U) discloses an easy-to-construct dry-hanging structure for wall tiles, which solves the problem that the dry-hanging structure of marble ceramic tiles requires opening hanging grooves on the wall tiles. However, the wall tiles are thin and fragile, and directly opening grooves or drilling holes on the wall tiles will reduce the strength of the wall tiles, making the wall tiles prone to cracking.

[0004] When using the above technology, the following technical problems were found in the existing technology: the spacing between the wall and the wall bricks is usually fixed. When the wall surface is uneven or the design requires the wall bricks to be presented at a special angle, the existing dry-hanging structure is difficult to meet the diverse decoration needs and affects the applicability of the dry-hanging structure in special wall environments. Therefore, we designed a wall brick dry-hanging structure to provide another technical solution to the above technical problems. Utility Model Content

[0005] 1. Technical problems to be solved

[0006] To address the problems existing in the prior art, the purpose of this utility model is to provide a dry-hanging structure for wall tiles, which allows the spacing between the wall and the wall tile panels to be flexibly adjusted according to actual needs, adapting to different wall conditions and decorative design requirements, and allowing the angle of the wall tile panels to be adjusted according to design requirements, thus meeting diverse decorative needs.

[0007] 2. Technical Solution

[0008] To solve the above problems, the present invention adopts the following technical solution.

[0009] A dry-hanging wall tile structure includes a wall body, a rectangular mounting frame at one end of the wall body, a plurality of wall tile panels at one end of the rectangular mounting frame, a moving mechanism for moving the rectangular mounting frame between the wall body and the rectangular mounting frame, and a rotating mechanism for rotating the rectangular mounting frame at the top between the wall body and the rectangular mounting frame.

[0010] Furthermore, each of the four corners of the wall tile panel near the T-shaped slider is fixed with a T-shaped slider, and the inside of the rectangular mounting frame is provided with a T-shaped limiting groove adapted to the T-shaped slider. The wall tile panel and the rectangular mounting frame are fitted together with a gap through the T-shaped slider and the T-shaped limiting groove.

[0011] Furthermore, the moving mechanism includes a horizontal rectangular frame. A horizontal rectangular frame is fixed at the middle position of one end of the wall. A first drive motor is bolted to one side of the horizontal rectangular frame. A first horizontal threaded rod is fixed to the output end of the first drive motor. A second horizontal threaded rod is fixed to the side of the first horizontal threaded rod away from the first drive motor. Horizontal sliders are threaded to the outer sides of both the first and second horizontal threaded rods. A horizontal rotating column is rotatably connected to one end of the horizontal slider. A U-shaped mounting bracket is rotatably connected to one end of the horizontal rotating column. An arc-shaped connecting block is rotatably connected to one end of the U-shaped mounting bracket via a pin. The arc-shaped connecting block is close to one end of the rectangular mounting frame and is fixedly connected to the rectangular mounting frame.

[0012] Furthermore, the first transverse threaded rod and the second transverse threaded rod have opposite thread directions, and a partition is rotatably connected to the connection between the first transverse threaded rod and the second transverse threaded rod via a bearing. The partition is close to one end of the transverse rectangular frame and is fixedly connected to the transverse rectangular frame.

[0013] Furthermore, a dovetail slider is fixed inside the horizontal rectangular frame, and a dovetail groove is provided inside the horizontal slider. The horizontal rectangular frame and the horizontal slider are slidably connected through the setting of the dovetail slider and the dovetail groove.

[0014] Furthermore, the rotating mechanism includes a vertical rectangular frame, one end of which is near the wall and fixedly connected to the wall. A second drive motor is bolted to the top of the vertical rectangular frame, and a vertical threaded rod is fixed to the output end of the second drive motor. A vertical lifting plate is threaded to the outer side of the vertical threaded rod. A vertical rotating column is rotatably connected to one end of the vertical lifting plate, and one end of the vertical rotating column is rotatably connected to the rectangular mounting frame via a pin.

[0015] Furthermore, a vertical groove is provided inside the vertical rectangular frame, and the vertical lifting plate is located inside the vertical groove and is slidably connected to the vertical rectangular frame through the setting of the vertical groove.

[0016] 3. Beneficial effects

[0017] Compared with existing technologies, the advantages of this utility model are:

[0018] This solution, through a series of designs, allows the spacing between the wall and the wall tiles to be flexibly adjusted according to actual needs, adapting to different wall conditions and decorative design requirements, improving the applicability and convenience of construction, and enabling the angle of the wall tiles to be adjusted according to design requirements to meet diverse decorative needs. In particular, it significantly improves construction efficiency and aesthetics in wall tile decoration that requires a specific angle. Attached Figure Description

[0019] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0020] Figure 2 This is a schematic diagram of the structure of the wall and wall brick panel of this utility model;

[0021] Figure 3 This is a schematic diagram of the wall tile panel and rectangular mounting frame of this utility model;

[0022] Figure 4 This is a schematic diagram of the rectangular mounting frame and T-shaped slider of this utility model;

[0023] Figure 5 This is a schematic diagram of the structure of the horizontal rectangular frame and the first drive motor of this utility model;

[0024] Figure 6 This is a schematic diagram of the internal structure of the horizontal rectangular frame of this utility model;

[0025] Figure 7 This is a schematic diagram of the internal structure of the vertical rectangular frame of this utility model.

[0026] Explanation of the labels in the diagram:

[0027] 1. Wall; 2. Wall tile panel; 3. Rectangular mounting frame; 4. Horizontal rectangular frame; 5. Vertical rectangular frame; 6. T-shaped slider; 7. First drive motor; 8. Second drive motor; 9. First horizontal threaded rod; 10. Second horizontal threaded rod; 11. Horizontal slider; 12. Horizontal rotating column; 13. U-shaped mounting bracket; 14. Arc-shaped connecting block; 15. Vertical threaded rod; 16. Vertical lifting plate; 17. Vertical rotating column. Detailed Implementation

[0028] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of the present utility model without creative effort are within the protection scope of the present utility model.

[0029] Example:

[0030] Please see Figure 1-7 A dry-hanging wall brick structure includes a wall body 1, a rectangular mounting frame 3 is provided at one end of the wall body 1, a plurality of wall brick panels 2 are assembled at one end of the rectangular mounting frame 3, a moving mechanism for moving the rectangular mounting frame 3 is provided between the wall body 1 and the rectangular mounting frame 3, and a rotating mechanism for rotating the rectangular mounting frame 3 is provided at the top between the wall body 1 and the rectangular mounting frame 3.

[0031] T-shaped sliders 6 are fixed at all four corners of the wall tile panel 2 near one end of the T-shaped slider 6. The rectangular mounting frame 3 has a T-shaped limiting groove that matches the T-shaped slider 6 inside. The wall tile panel 2 and the rectangular mounting frame 3 are fitted together by the T-shaped slider 6 and the T-shaped limiting groove. The T-shaped slider 6 can slide into the interior of the rectangular mounting frame 3, so that the wall tile panel 2 can be installed at one end of the rectangular mounting frame 3.

[0032] The moving mechanism includes a horizontal rectangular frame 4. The horizontal rectangular frame 4 is fixed at the middle of one end of the wall 1. A first drive motor 7 is bolted to one side of the horizontal rectangular frame 4. A first horizontal threaded rod 9 is fixed to the output end of the first drive motor 7. A second horizontal threaded rod 10 is fixed to the side of the first horizontal threaded rod 9 away from the first drive motor 7. A horizontal slider 11 is threaded to the outer side of both the first horizontal threaded rod 9 and the second horizontal threaded rod 10. A horizontal rotating column 12 is rotatably connected to one end of the horizontal slider 11. A U-shaped mounting bracket 13 is rotatably connected to one end of the horizontal rotating column 12. An arc-shaped connecting block 14 is rotatably connected to one end of the U-shaped mounting bracket 13 via a pin. The arc-shaped connecting block 14 is close to one end of the rectangular mounting frame 3 and is fixedly connected to the rectangular mounting frame 3.

[0033] The threads of the first transverse threaded rod 9 and the second transverse threaded rod 10 have opposite directions. A partition is rotatably connected to the connection between the first transverse threaded rod 9 and the second transverse threaded rod 10 via a bearing. The partition is close to one end of the transverse rectangular frame 4 and is fixedly connected to the transverse rectangular frame 4. By setting the threads of the first transverse threaded rod 9 and the second transverse threaded rod 10 to have opposite directions, the rotation of the first transverse threaded rod 9 and the second transverse threaded rod 10 causes the two transverse sliders 11 to move in opposite directions. The partition makes the connection between the first transverse threaded rod 9 and the second transverse threaded rod 10 more stable and prevents the connection between the first transverse threaded rod 9 and the second transverse threaded rod 10 from completely collapsing.

[0034] A dovetail slider is fixed inside the horizontal rectangular frame 4, and a dovetail groove is opened inside the horizontal slider 11. The horizontal rectangular frame 4 and the horizontal slider 11 are slidably connected by the dovetail slider and the dovetail groove. The dovetail slider and the dovetail groove enable the horizontal slider 11 to slide horizontally better inside the horizontal rectangular frame 4, thereby enabling the dovetail slider to guide the movement trajectory of the horizontal slider 11.

[0035] Here, the operation of the first drive motor 7 enables the first transverse threaded rod 9 and the second transverse threaded rod 10 to rotate. The rotation of the first transverse threaded rod 9 and the second transverse threaded rod 10 enables the transverse slider 11 to slide laterally inside the transverse rectangular frame 4. The lateral sliding of the two transverse sliders 11 enables the U-shaped mounting bracket 13 to move through the transverse rotating column 12. The movement of the U-shaped mounting bracket 13 enables the arc-shaped connecting block 14 to move, thereby enabling the rectangular mounting frame 3 to move.

[0036] The rotating mechanism includes a vertical rectangular frame 5. One end of the vertical rectangular frame 5 is close to the wall 1 and is fixedly connected to the wall 1. A second drive motor 8 is bolted to the top of the vertical rectangular frame 5. A vertical threaded rod 15 is fixed to the output end of the second drive motor 8. A vertical lifting plate 16 is threaded to the outer side of the vertical threaded rod 15. A vertical rotating column 17 is rotatably connected to one end of the vertical lifting plate 16. One end of the vertical rotating column 17 is rotatably connected to the rectangular mounting frame 3 through a pin.

[0037] The vertical rectangular frame 5 has a vertical sliding groove inside. The vertical lifting plate 16 is located inside the vertical sliding groove and is slidably connected to the vertical rectangular frame 5 through the setting of the vertical sliding groove. Through the setting of the vertical sliding groove, the vertical lifting plate 16 can slide vertically inside the vertical rectangular frame 5 and guide the movement trajectory of the vertical lifting plate 16.

[0038] Here, the operation of the second drive motor 8 enables the vertical threaded rod 15 to rotate. The rotation of the vertical threaded rod 15 enables the vertical lifting plate 16 to slide vertically inside the vertical rectangular frame 5. The vertical sliding of the vertical lifting plate 16 enables the rectangular mounting frame 3 to rotate through the vertical rotating column 17. The rectangular mounting frame 3 can rotate with the U-shaped mounting bracket 13 and the arc-shaped connecting block 14 as the center.

[0039] In use: the operation of the first drive motor 7 enables the first transverse threaded rod 9 and the second transverse threaded rod 10 to rotate. The rotation of the first transverse threaded rod 9 and the second transverse threaded rod 10 enables the transverse slider 11 to slide laterally inside the transverse rectangular frame 4. The lateral sliding of the two transverse sliders 11 enables the U-shaped mounting bracket 13 to move through the transverse rotating column 12. The movement of the U-shaped mounting bracket 13 enables the arc-shaped connecting block 14 to move, thereby enabling the rectangular mounting frame 3 to move.

[0040] The operation of the second drive motor 8 enables the vertical threaded rod 15 to rotate. The rotation of the vertical threaded rod 15 enables the vertical lifting plate 16 to slide vertically inside the vertical rectangular frame 5. The vertical sliding of the vertical lifting plate 16 enables the rectangular mounting frame 3 to rotate through the vertical rotating column 17. The rectangular mounting frame 3 can rotate with the U-shaped mounting bracket 13 and the arc-shaped connecting block 14 as the center.

[0041] When the first drive motor 7 and the second drive motor 8 are in operation, the distance between the wall tile 2 and the wall 1 can be adjusted. When the second drive motor 8 is in operation alone, the rectangular mounting frame 3 can be angled, thereby allowing the wall tile 2 to be angled.

[0042] The above description is merely a preferred embodiment of this utility model; however, the protection scope of this utility model is not limited thereto. Any equivalent substitutions or modifications made by those skilled in the art within the technical scope disclosed in this utility model, based on the technical solution and its improved concept, should be included within the protection scope of this utility model.

Claims

1. A wall tile dry hanging structure, characterized in that: The utility model provides a wall body (1) one end is provided with rectangular mounting frame (3), rectangular mounting frame (3) one end is equipped with a plurality of wall brick board (2), wall body (1) with rectangular mounting frame (3) between the mobile mechanism for rectangular mounting frame (3) movement is provided, and the top between wall body (1) and rectangular mounting frame (3) is provided with the rotating mechanism for rectangular mounting frame (3) rotation.

2. The wall tile dry hanging structure according to claim 1, characterized in that: The four corners of the wall brick board (2) near the T-shaped slider (6) are fixed with T-shaped sliders (6), and the inside of the rectangular mounting frame (3) is provided with T-shaped limiting grooves matched with the T-shaped sliders (6). The wall brick board (2) and the rectangular mounting frame (3) are gap-connected through the T-shaped sliders (6) and the T-shaped limiting grooves.

3. The wall tile dry hanging structure according to claim 1, characterized in that: The mobile mechanism comprises a transverse rectangular frame (4), the middle position of one end of the wall body (1) is fixed with the transverse rectangular frame (4), one side of the transverse rectangular frame (4) is bolted with a first driving motor (7), the output end of the first driving motor (7) is fixed with a first transverse threaded rod (9), the side, away from the first driving motor (7), of the first transverse threaded rod (9) is fixed with a second transverse threaded rod (10), the outer sides of the first transverse threaded rod (9) and the second transverse threaded rod (10) are threadedly connected with transverse sliders (11), one end of the transverse slider (11) is rotatably connected with a transverse rotating column (12), one end of the transverse rotating column (12) is rotatably connected with a U-shaped mounting rack (13), one end of the U-shaped mounting rack (13) is rotatably connected with an arc-shaped connecting block (14) through a pin shaft, and the end, close to the rectangular mounting frame (3), of the arc-shaped connecting block (14) is fixedly connected with the rectangular mounting frame (3).

4. The wall tile dry hanging structure according to claim 3, characterized in that: The screw rotation directions of the first transverse threaded rod (9) and the second transverse threaded rod (10) are opposite, a partition plate is rotatably connected to the connection between the first transverse threaded rod (9) and the second transverse threaded rod (10) through a bearing, and the end, close to the transverse rectangular frame (4), of the partition plate is fixedly connected with the transverse rectangular frame (4).

5. The wall tile dry hanging structure according to claim 3, characterized in that: The inside of the transverse rectangular frame (4) is fixed with a dovetail slider, the inside of the transverse slider (11) is provided with a dovetail sliding groove, and the transverse rectangular frame (4) and the transverse slider (11) are slidingly connected through the setting of the dovetail slider and the dovetail sliding groove.

6. The wall tile dry hanging structure according to claim 1, characterized in that: The rotating mechanism comprises a vertical rectangular frame (5), the end, close to the wall body (1), of the vertical rectangular frame (5) is fixedly connected with the wall body (1), the top of the vertical rectangular frame (5) is bolted with a second driving motor (8), the output end of the second driving motor (8) is fixed with a vertical threaded rod (15), the outer side of the vertical threaded rod (15) is threadedly connected with a vertical lifting plate (16), one end of the vertical lifting plate (16) is rotatably connected with a vertical rotating column (17), and one end of the vertical rotating column (17) is rotatably connected with the rectangular mounting frame (3) through a pin shaft.

7. The dry hanging structure of a wall brick according to claim 6, characterized in that: The vertical rectangular frame (5) is internally provided with a vertical sliding groove, and the vertical lifting plate (16) is located in the vertical sliding groove and is in sliding connection with the vertical rectangular frame (5) through the vertical sliding groove.

Citation Information

Patent Citations

  • Wall brick dry hanging structure easy to construct

    CN214995519U