Ceramic tile dry hanging structure

By combining the construction techniques of slotted hangers and back-bolted hangers, and using galvanized angle steel and inverted J-shaped dry-hanging brackets to connect with the inclined grooves on the back of the tiles, the problem of loose and falling tiles was solved, and the stability and overall flatness of the tiles were improved.

CN224161354UActive Publication Date: 2026-04-24CHINA CONSTR SEVENTH ENG DIVISION CORP LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
CHINA CONSTR SEVENTH ENG DIVISION CORP LTD
Filing Date
2025-04-15
Publication Date
2026-04-24

AI Technical Summary

Technical Problem

In existing methods of dry-hanging tiles, adhesive connections are subject to aging risks, and single grooved hangers or back bolt hangers can easily cause tiles to loosen and fall off, especially when the tiles are thin and the anchoring depth is insufficient.

Method used

The construction process combines slotted hangers and back-bolted hangers. The tiles are fixed with galvanized angle steel and connectors. The U-shaped groove and hook of the inverted J-shaped dry hanger are used to connect with the inclined groove on the back of the tile. The depth is adjusted by adjusting bolts, and the stability is improved by using expansion bolts.

Benefits of technology

Ensure the stability and overall flatness of the tiles, avoid loosening and failure of a single connection method, and improve the service life and installation stability of the tiles.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224161354U_ABST
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Abstract

The utility model discloses a ceramic tile dry hanging structure which comprises a bearing body, a ceramic tile, a connecting piece, an inverted-J-shaped dry hanging piece and galvanized angle steel. The connecting piece comprises a vertical section, a straight section fixed to the right center of the vertical section, a hook fixed to the left side of the bottom of the vertical section, and a straight convex beak fixed to the left side of the top of the vertical section. The galvanized angle steel is fixed to the bearing body, the straight section is horizontally fixed to the upper end of the galvanized angle steel through a bolt, the position, located on the galvanized angle steel, of the straight section can be adjusted left and right, and a U-shaped right-angle groove is formed in the top of the inner side of the inverted-J-shaped dry hanging piece. The problem that the anchoring depth is insufficient due to the fact that the ceramic tile is thin is solved, under the condition that one connecting mode is loosened and loses efficacy, the other connecting mode is used as a guarantee, and the stability of the dry hanging ceramic tile is greatly improved.
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Description

Technical Field

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

[0002] Dry-hanging tile installation, also known as air-hanging, is a new construction technique in wall decoration. This method involves directly suspending wall tiles from the wall or onto a wooden board using metal hangers, eliminating the need for grouting. The principle is to establish main load-bearing points on the structural body and then fix the tiles to the building using metal hangers to create a tiled feature wall.

[0003] Currently, the fasteners and tile fixing connections used in dry-hanging of ceramic tiles typically employ adhesive bonding, grooved fasteners, and back-bolt fasteners. Adhesive bonding is susceptible to temperature and humidity fluctuations, posing a risk of adhesive aging and compromising its lifespan. Because ceramic tiles are relatively thin (approximately 10-12mm), the thickness limits the anchoring depth of grooved and back-bolt fasteners when using the other two methods. Relying solely on one of these methods can result in small fixing points, making tiles prone to loosening and detachment later on. Utility Model Content

[0004] The purpose of this section is to outline some aspects of the embodiments of this utility model and to briefly introduce some preferred embodiments. Simplifications or omissions may be made in this section, as well as in the abstract and title of this application, to avoid obscuring the purpose of these documents; however, such simplifications or omissions should not be used to limit the scope of this utility model.

[0005] Therefore, the purpose of this utility model is to provide a dry-hanging structure for ceramic tiles to solve the problems mentioned in the background art, such as the risk of adhesive aging and the inability to guarantee service life of the existing dry-hanging methods for ceramic tiles, which use adhesive, grooved hangers and back bolt hangers. Also, if only one of these methods is used, the tiles may loosen and fall off later due to the small fixing point between the tile and the adhesive.

[0006] To achieve the above objectives, this utility model provides the following technical solution: a dry-hanging structure for ceramic tiles, comprising a load-bearing body, ceramic tiles, connectors, inverted J-shaped dry-hanging components, and galvanized angle steel;

[0007] The connector includes a vertical section, a straight section fixed to the right center of the vertical section, a hook fixed to the bottom left of the vertical section, and a straight convex beak fixed to the top left of the vertical section.

[0008] The galvanized angle steel is fixed to the bearing body. The straight section is horizontally fixed to the upper end of the galvanized angle steel by bolts, and the position of the straight section on the galvanized angle steel can be adjusted left and right. The inner top of the inverted J-shaped dry-hanging component has a U-shaped right-angle groove, and the U-shaped right-angle groove is fastened to the upper part of the straight protrusion and the vertical section. An adjusting bolt for adjusting the fastening depth of the inverted J-shaped dry-hanging component to the straight protrusion is provided on the top of the inverted J-shaped dry-hanging component. A back bolt is connected between the left vertical section plane of the inverted J-shaped dry-hanging component and the tile. The hook is inverted and fastened to the right back of the tile.

[0009] As a preferred embodiment of the dry-hanging structure of ceramic tiles described in this utility model, a positioning groove adapted to a hook is pre-cut on the back right side of the ceramic tile, and the angle between the hook and the positioning groove is °.

[0010] As a preferred embodiment of the dry-hanging structure of ceramic tiles described in this utility model, a bolt hole groove adapted to the back bolt is pre-opened on the right side back of the ceramic tile, and an installation hole corresponding to the back bolt is also opened at the center of the vertical section of the inverted J-shaped dry-hanging component.

[0011] The upper center of the vertical section also has a clearance window to facilitate the installation of the back bolt, which is an expansion bolt.

[0012] As a preferred embodiment of the dry-hanging structure for ceramic tiles described in this utility model, the top horizontal end of the inverted J-shaped dry-hanging component also has an adjusting screw hole that matches the thread of the adjusting bolt, and the screw end of the adjusting screw hole abuts against the top surface of the flat convex beak.

[0013] As a preferred embodiment of the dry-hanging structure for ceramic tiles described in this utility model, the straight section has a straight waist-shaped hole extending in the left and right directions at its center, and the bottom of the straight section is connected to the galvanized angle steel by fastening bolts. The galvanized angle steel and the load-bearing body are also fixedly connected by fastening bolts.

[0014] Compared with the prior art, the beneficial effects of this utility model are as follows: During installation, the galvanized angle steel and connectors are fixed in place according to the layout requirements using fastening bolts. Straight waist-shaped holes are used to adjust the overall flatness of the tiles, ensuring that adjacent tiles are coplanar. This is simple and practical. Then, the U-shaped right-angle groove of the inverted J-shaped dry-hanging component is initially inserted into the upper part of the vertical section of the connector. Subsequently, the hook is inverted and embedded into the positioning groove on the back of the tile. A drill is used to drive the back bolt into the bolt hole groove on the vertical surface of the inverted J-shaped dry-hanging component and the back of the tile. The fastening depth of the dry-hanging component is then adjusted by adjusting the bolts. This ensures that if one connection method fails to anchor properly due to processing errors, the other connection method will remain in place. In summary, this dry-hanging tile structure uses a construction process combining slotted hangers and back bolt hangers, overcoming the problem of insufficient anchoring depth caused by the thinness of the tiles themselves. If one connection method becomes loose and fails, the other connection method provides a backup, greatly improving the stability of the dry-hanging tiles. Attached Figure Description

[0015] Figure 1 This is a schematic diagram of the overall side sectional structure of the dry-hanging structure of ceramic tiles according to this utility model;

[0016] Figure 2 This is a schematic diagram of the connector and the inverted J-shaped dry-hanging component of this utility model.

[0017] In the diagram: 100, bearing; 200, ceramic tile; 2001, positioning groove; 2002, bolt hole groove; 300, connector; 310, vertical section; 3101, clearance window; 320, straight section; 3201, straight waist-shaped hole; 330, hook; 340, straight protruding beak; 400, inverted J-shaped dry-hanging component; 4001, mounting hole; 4002, adjusting screw hole; 500, galvanized angle steel; 600, fastening bolt; 700, back bolt; 800, adjusting bolt. Detailed Implementation

[0018] To make the above-mentioned objectives, features and advantages of this utility model more apparent and understandable, the specific embodiments of this utility model will be described in detail below with reference to the accompanying drawings.

[0019] Secondly, this utility model is described in detail with reference to the schematic diagrams. When describing the embodiments of this utility model, for ease of explanation, the cross-sectional views showing the device structure may be partially enlarged, not according to the usual scale. Furthermore, the schematic diagrams are merely examples and should not limit the scope of protection of this utility model. In addition, in actual manufacturing, the three-dimensional spatial dimensions of length, width, and depth should be included.

[0020] To make the objectives, technical solutions, and advantages of this utility model clearer, the embodiments of this utility model will be described in further detail below with reference to the accompanying drawings.

[0021] Figures 1-2 The diagram shown is a complete structural schematic of a dry-hanging structure for ceramic tiles according to this utility model. Please refer to [link / reference]. Figures 1-2 This embodiment of a dry-hanging structure for ceramic tiles includes a support body 100, ceramic tiles 200, connectors 300, inverted J-shaped dry-hanging components 400, and galvanized angle steel 500. The connector 300 includes a vertical section 310, a horizontal section 320 fixed to the right center of the vertical section 310, a hook 330 fixed to the bottom left side of the vertical section 310, and a horizontal protruding beak 340 fixed to the top left side of the vertical section 310. The galvanized angle steel 500 is fixed to the support body 100, and the horizontal section 320 is horizontally fixed to the upper end of the galvanized angle steel 500 by bolts. Furthermore, the position of the straight section 320 on the galvanized angle steel 500 can be adjusted left and right. The inner top of the inverted J-shaped dry-hanging component 400 has a U-shaped right-angle groove, and the U-shaped right-angle groove is fastened to the upper part of the straight protrusion 340 and the vertical section 310. An adjusting bolt 800 is provided on the top of the inverted J-shaped dry-hanging component 400 for adjusting the fastening depth of the inverted J-shaped dry-hanging component 400 to the straight protrusion 340. A back bolt 700 is connected between the left vertical section plane of the inverted J-shaped dry-hanging component 400 and the tile 200. The hook 330 is invertedly fastened to the back right side of the tile 200.

[0022] The right side of the tile 200 has a pre-cut positioning groove 2001 that matches the hook 330. The angle between the hook 330 and the positioning groove 2001 is 45°. This 45° angle facilitates standardized specifications and customized processing. The positioning groove 2001 is pre-drilled and uniformly machined before leaving the factory. The right side of the tile 200 also has a pre-cut bolt hole groove 2002 that matches the back bolt 700. The vertical section of the inverted J-shaped dry-hanging component 400 also has a corresponding mounting hole 4001 at its center. Furthermore, the upper center of the vertical section 310 has a clearance window 3101 for convenient installation of the back bolt 700. The back bolt 700 uses expansion bolts. The bolt hole groove 2002 and the positioning inclined groove 2001 are the same and are pre-drilled and uniformly machined before leaving the factory. It can be understood that the setting of the avoidance window 3101 makes it convenient for the staff to drill and install the back bolt 700. The expansion bolt has a more secure characteristic after being installed with the tile 200, preventing loosening in subsequent use. The top horizontal end of the inverted J-shaped dry hanging component 400 also has an adjusting screw hole 4002 that matches the thread of the adjusting bolt 800, and the screw end of the adjusting screw hole 4002 abuts against the top surface of the flat convex beak 340. The straight section 320 has a straight, waist-shaped hole 3201 extending laterally at its center. A fastening bolt 600 connects the bottom of the straight section 320 to the galvanized angle steel 500. The galvanized angle steel 500 and the support body 100 are also fixedly connected by the fastening bolt 600. It can be understood that the straight, waist-shaped hole 3201 can be used to adjust the flatness of the tile surface, which is beneficial for a more neat installation of the tiles 200. Furthermore, it should be noted that the lateral length of the galvanized angle steel 500, connector 300, and inverted J-shaped dry-hanging component 400 is not limited to that shown in the illustration of this embodiment and can be customized according to actual needs. The number of fastening bolts 600 and other connectors is also not limited. Specifically, in this embodiment, during installation, the galvanized angle steel 500 and connector 300 are fixed in place according to the layout requirements using the fastening bolt 600, and the straight, waist-shaped hole 3201 is used to... Adjust the overall flatness of tile 200 to ensure that adjacent tiles are coplanar, which is simple and practical. Then, the U-shaped right-angle groove of the inverted J-shaped dry-hanging component 400 is initially engaged on the upper part of the vertical section 310 of the connector 300. Subsequently, the hook 300 is inverted and embedded into the positioning groove 2001 on the back of the tile 200. The back bolt 700 is driven into the vertical surface of the inverted J-shaped dry-hanging component 400 and the bolt hole groove 2002 on the back of the tile 200 using a drill gun. Then, the fastening depth of the dry-hanging component is adjusted by adjusting the bolt 800. This ensures that if one of the two connection methods is not anchored properly due to processing errors, the two connection methods can be ensured. In summary, this tile dry-hanging structure adopts a construction process that combines grooved hangers and back bolt hangers, which overcomes the problem of insufficient anchoring depth caused by the thinness of the tiles themselves. In case one connection method becomes loose and fails, there is another connection method as a guarantee, which greatly improves the stability of dry-hanging tiles.

[0023] Although the present invention has been described above with reference to embodiments, various modifications can be made and components can be replaced with equivalents without departing from the scope of the present invention. In particular, as long as there is no structural conflict, the features in the embodiments disclosed in this invention can be combined with each other in any way. The lack of an exhaustive description of these combinations in this specification is merely for the sake of brevity and resource conservation. Therefore, the present invention is not limited to the specific embodiments disclosed herein, but includes all technical solutions falling within the scope of the claims.

Claims

1. A dry-hanging structure for ceramic tiles, characterized in that, Includes a load-bearing body (100), ceramic tile (200), connector (300), inverted J-shaped dry-hanging component (400), and galvanized angle steel (500); The connector (300) includes a vertical section (310), a straight section (320) fixed at the right center of the vertical section (310), a hook (330) fixed at the bottom left of the vertical section (310), and a straight convex beak (340) fixed at the top left of the vertical section (310). The galvanized angle steel (500) is fixed on the bearing (100). The straight section (320) is horizontally fixed to the upper end of the galvanized angle steel (500) by bolts. The position of the straight section (320) on the galvanized angle steel (500) can be adjusted left and right. The inner top of the inverted J-shaped dry hanging part (400) has a U-shaped right angle groove. The U-shaped right angle groove is fastened to the upper part of the straight protrusion (340) and the vertical section (310). An adjusting bolt (800) for adjusting the fastening depth of the inverted J-shaped dry hanging part (400) to the straight protrusion (340) is provided on the top of the inverted J-shaped dry hanging part (400). A back bolt (700) is connected between the left vertical section plane of the inverted J-shaped dry hanging part (400) and the tile (200). The hook (330) is inverted and fastened to the right back of the tile (200).

2. The ceramic tile dry-hanging structure according to claim 1, characterized in that: The right back of the tile (200) is pre-cut with a positioning groove (2001) that is compatible with the hook (330), and the angle between the hook (330) and the positioning groove (2001) is 45°.

3. The ceramic tile dry-hanging structure according to claim 1, characterized in that: The back of the right side of the tile (200) is pre-drilled with a bolt hole groove (2002) that is compatible with the back bolt (700), and the vertical section of the inverted J-shaped dry hanging component (400) is also provided with an installation hole (4001) corresponding to the back bolt (700). The vertical section (310) also has a clearance window (3101) at the upper center to facilitate the installation of the back bolt (700), which is an expansion bolt.

4. The ceramic tile dry-hanging structure according to claim 1, characterized in that: The top horizontal end of the inverted J-shaped dry hanger (400) also has an adjusting screw hole (4002) that matches the thread of the adjusting bolt (800), and the screw end of the adjusting screw hole (4002) abuts against the top surface of the flat convex beak (340).

5. A dry-hanging structure for ceramic tiles according to claim 1, characterized in that: The straight section (320) has a straight waist-shaped hole (3201) extending from left to right at the center. The bottom of the straight section (320) is connected to the galvanized angle steel (500) by a fastening bolt (600). The galvanized angle steel (500) and the carrier (100) are also fixedly connected by the fastening bolt (600).