Wall structure for engaging tiles
By designing a fixed frame and snap-fit components, the problem of inconvenient maintenance in existing snap-fit tile methods is solved, enabling quick installation and disassembly, improving the convenience of tile installation and maintenance, and reducing the risk of damage.
Patent Information
- Application Number
- CN202311058486.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-08-21
- Publication Date
- 2026-02-10
- Estimated Expiration
- 2043-08-21
AI Technical Summary
The existing method of using snap-fit tiles is inconvenient during repair and installation, especially when one tile is damaged, other tiles need to be removed, which is time-consuming and may damage more tiles. In addition, the construction is complicated and expensive.
The design employs a fixed frame and locking components. The locking components include mounting posts, magnetic rings, locking elements, and elastic elements. Through the cooperation of the magnetic rings and locking elements, the tiles can be flexibly locked and disassembled. Magnets are used to control the locking state, simplifying the maintenance process.
It provides a flexible and reliable connection method, enabling quick installation and removal of tiles, improving the convenience of installation and maintenance, reducing the risk of tile damage, and lowering maintenance costs.
Smart Images

Figure CN117211485B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of building technology, and more particularly to a wall structure for locking ceramic tiles. Background Technology
[0002] Tiles are widely used for wall and floor decoration due to their wear-resistant and corrosion-resistant properties. Traditionally, tile installation mainly relies on two methods.
[0003] The first method is to use cement to adhere the tiles to the wall or floor. While this method is strong and reliable, the cement takes a long time to dry, and care must be taken during installation to ensure the tiles are neatly arranged.
[0004] The second method involves using a steel frame to secure the tiles to the wall. This method is more flexible and convenient than the cement method, improving construction efficiency. However, existing methods have limitations. Specifically, the tiles are directly and securely installed into the mounting slots of the steel frame. Therefore, if one tile breaks, the others need to be removed and replaced. This process is not only time-consuming but may also damage more tiles, making the entire repair process quite complex and expensive.
[0005] Therefore, how to solve these problems in the existing snap-fit method to achieve more convenient and economical tile installation and maintenance has become a technical challenge that urgently needs to be solved in this field. Summary of the Invention
[0006] The purpose of this invention is to provide a wall structure for locking ceramic tiles, so as to solve the problem of difficult tile repair and installation during the installation process based on the locking method.
[0007] According to one aspect of the present invention, a wall structure for engaging ceramic tiles is provided, the wall structure for engaging ceramic tiles comprising:
[0008] The wall has a mounting surface;
[0009] A fixed frame is provided on the mounting surface, and a locking groove is provided on the side of the fixed frame away from the mounting surface;
[0010] The installation unit is equipped with a locking component, and the installation unit has a mounting slot for locking the tile;
[0011] The engaging component can engage with the engaging groove in a direction perpendicular to the mounting surface, or disengage from the engaging groove.
[0012] In at least one embodiment of this application, the engaging groove is provided with an engaging cavity, and the mounting unit has a mating surface that fits against the mounting surface;
[0013] The engagement assembly includes:
[0014] Mounting posts are provided on the mating surface;
[0015] A magnetic chuck is fitted onto the mounting post and can move along the axis of the mounting post;
[0016] The engaging component has one end rotatably connected to the mounting post and the other end rotatably connected to the magnetic chuck.
[0017] An elastic element is located between the magnetic chuck and the contact surface;
[0018] The elastic element moves along the axis of the mounting post to push the magnetic chuck to move along the axis of the mounting post, thereby engaging or disengaging the engaging member from the engaging cavity.
[0019] In at least one embodiment of this application, the mounting post includes an abutting end and a connecting end connected to the abutting end;
[0020] The abutting end is provided with a first rotating post, which passes through one end of the engaging member;
[0021] The magnetic chuck is provided with a second rotating post on the side near the abutting end, and the second rotating post passes through the end of the engaging member away from the first rotating post;
[0022] The engaging member has an abutting arc surface, which is used to engage with the engaging groove.
[0023] In at least one embodiment of this application, the engaging member includes:
[0024] The locking rod has one end rotatably connected to the end of the mounting post away from the mating surface, and the other end has an abutting arc surface;
[0025] The rotating rod has one end rotatably connected to the middle of the locking rod, and the other end rotatably connected to the magnetic chuck.
[0026] In at least one embodiment of this application, the engaging groove has an abutting surface that abuts against the abutting arc surface.
[0027] In at least one embodiment of this application, the locking rod has a groove in the middle and a rotating part located in the groove;
[0028] One end of the rotating rod is housed in the groove and is rotatably connected to the rotating part.
[0029] In at least one embodiment of this application, the number of engaging components on a single mounting unit is at least three, and the three engaging components are arranged in a triangular pattern.
[0030] In at least one embodiment of this application, one of the engaging components is located at the corner of the fixed frame, and the other two engaging components are located on the adjacent sides of the corner of the fixed frame.
[0031] In at least one embodiment of this application, the abutting end is provided with abutting surface, which can abut against the locking rod.
[0032] In at least one embodiment of this application, the mounting unit has a placement surface on the side away from the mounting surface;
[0033] The placement surface is used to place a magnet to attract the engaging component, thereby disengaging the engaging component from the engaging groove.
[0034] Implementing the embodiments of the present invention will have the following beneficial effects:
[0035] In this embodiment, the wall structure for locking tiles first involves installing a fixed frame on the mounting surface of the wall. Then, the mounting unit is locked into the locking groove of the fixed frame using a locking assembly. The tile is then installed in the corresponding position using the mounting slot on the mounting unit. If the tile position needs adjustment, it can be flexibly adjusted or removed using the locking assembly. The locking assembly engages with or disengages from the locking groove in a direction perpendicular to the mounting surface. This provides a flexible and reliable connection method, allowing for quick installation and disassembly, enhancing ease of use. Attached Figure Description
[0036] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0037] Figure 1 This is a schematic diagram of a wall structure for locking ceramic tiles according to an embodiment of the present invention;
[0038] Figure 2 for Figure 1 A partial structural decomposition diagram;
[0039] Figure 3 for Figure 2 A cross-sectional view of the fixed frame and the assembled installation unit in the middle;
[0040] Figure 4for Figure 3 A schematic diagram of the installation unit.
[0041] Wherein: 100, wall structure for mounting ceramic tiles; 110, wall; 110a, mounting surface;
[0042] 120, Fixed frame; 120a, Engaging groove; 120b, Engaging cavity; 120c, Abutment surface;
[0043] 130. Mounting unit; 131. Engaging assembly; 1311. Mounting post; 13111. Abutting end; 13112. Connecting end; 13113. First rotating post; 13114. Second rotating post; 13115. Abutting arc surface; 1312. Magnetic suction ring; 1313. Engaging component; 13131. Engaging rod; 13132. Rotating rod; 131a. Groove; 132. Mounting slot; 130a. Contact surface; 133. Elastic element; 134. Rotating part; 131b. Holding surface; 131c. Placement surface. Detailed Implementation
[0044] To facilitate understanding of the present invention, a more complete description will be given below with reference to the accompanying drawings. Preferred embodiments of the invention are shown in the drawings. However, the invention can be implemented in many different forms and is not limited to the embodiments described herein. Rather, these embodiments are provided to provide a thorough and complete understanding of the disclosure of the invention.
[0045] It should be noted that when a component is said to be "fixed to" another component, it can be directly attached to the other component or there may be an intervening component. When a component is said to be "connected to" another component, it can be directly connected to the other component or there may be an intervening component. The terms "vertical," "horizontal," "left," "right," and similar expressions used in this document are for illustrative purposes only.
[0046] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention pertains. The terminology used herein in the description of the invention is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention. The term "and / or" as used herein includes any and all combinations of one or more of the associated listed items.
[0047] Please refer to Figures 1-3 One embodiment of the present invention provides a wall structure for locking ceramic tiles. The wall structure 100 for locking ceramic tiles in this embodiment includes:
[0048] Wall 110 has mounting surface 110a;
[0049] A fixing frame 120 is disposed on the mounting surface 110a, and the fixing frame 120 is provided with a locking groove 120a on the side away from the mounting surface 110a;
[0050] The mounting unit 130 is provided with a locking component 131, and the mounting unit 130 has a mounting slot 132 for locking the ceramic tile;
[0051] The engaging component 131 can engage with the engaging groove 120a in a direction perpendicular to the mounting surface 110a, or disengage from the engaging groove 120a.
[0052] In this embodiment, a fixed frame 120 is first installed on the mounting surface 110a of the wall 110. Then, the mounting unit 130 is engaged into the engaging groove 120a of the fixed frame 120 using the engaging assembly 131. The tile is then installed into the corresponding position using the mounting slot 132 on the mounting unit 130. If the tile position needs to be adjusted, it can be flexibly adjusted or removed using the engaging assembly 131. The engaging assembly 131 engages with or disengages from the engaging groove 120a in a direction perpendicular to the mounting surface 110a. This provides a flexible and reliable connection method, allowing for quick installation and disassembly, and enhancing ease of use.
[0053] It should be noted that the wall 110 has a surface for installing tiles, namely the mounting surface 110a. This wall 110 can be an interior or exterior wall of a building, a floor, or other surface that needs to be decorated.
[0054] A fixing frame 120 is provided on the mounting surface 110a. This fixing frame 120 is a structure for supporting and fixing the tile. On one side of the fixing frame 120, that is, the side away from the mounting surface 110a, there is a locking groove 120a. The function of this locking groove 120a is to accommodate the locking component 131 mentioned later, so that the tile can be engaged or disengaged from the frame.
[0055] Each unit mounted on the frame includes a mounting unit 130. This mounting unit 130 has an internal engaging component 131 and mounting slots 132 on its surface for engaging the tile. The mounting slots 132 allow the tile to be accurately engaged onto the mounting unit 130.
[0056] The engaging component 131 can be engaged or disengaged in a direction perpendicular to the mounting surface 110a. The tile can be easily inserted into the mounting slot 132, where the engaging component 131 ensures it is securely fixed, or it can be removed from the mounting slot 132 for maintenance or replacement.
[0057] The fixed frame 120 is installed on the wall 110 in a one-piece molding manner.
[0058] The wall structure 110 for KAHO tiles is particularly suitable for locations requiring a high degree of customization and flexibility. Whether for home renovations, commercial space design, or temporary exhibition setups, this structure offers a fast, economical, and reliable solution.
[0059] For example:
[0060] Suitable for commercial buildings, retail stores, and other locations requiring rapid installation and maintenance.
[0061] Suitable for public places such as hospitals and schools that require frequent maintenance.
[0062] In at least one embodiment of this application, the engaging groove 120a is provided with an engaging cavity 120b, and the mounting unit 130 has a mating surface 130a that is mated to the mounting surface 110a.
[0063] The engagement component 131 includes:
[0064] Mounting post 1311 is provided on the mating surface 130a;
[0065] A magnetic chuck 1312 is fitted onto the mounting post 1311 and can move along the axis of the mounting post 1311;
[0066] The engaging component 1313 has one end rotatably connected to the mounting post 1311 and the other end rotatably connected to the magnetic chuck 1312;
[0067] Elastic element 133 is located between the magnetic ring 1312 and the contact surface 130a;
[0068] The elastic element 133 moves along the axis of the mounting post 1311 to push the magnetic chuck 1312 to move along the axis of the mounting post 1311, thereby engaging or disengaging the engaging member 1313 from the engaging cavity 120b.
[0069] Please refer to Figures 1-3 In this embodiment, during the installation process, the tile is first snapped into the mounting slot 132, and then the tile is fixed to the fixed frame 120 by the snapping component 131 on the mounting unit 130; the snapping component 131 snaps into the snapping slot 120a.
[0070] Card engagement process:
[0071] When the engaging assembly 131 is aligned with the engaging groove 120a, the elastic element 133 is in the released state (i.e., its original length). As the engaging assembly 131 is gradually received into the engaging groove 120a, the engaging member 1313 first abuts against the inner wall of the engaging groove 120a and is subjected to a force in the direction of the axis of the mounting post 1311. Under the action of the force, the engaging member 1313 moves towards the axis of the mounting post 1311, so that the engaging member 1313 fits against the mounting post 1311, pushing the magnetic chuck 1312 towards the contact surface 130a, so that the elastic element 133 is compressed.
[0072] As the engaging member 1313 is housed within the engaging cavity 120b, it is released. Under the elastic force of the elastic element 133, the elastic element 133 pushes the magnetic suction ring 1312 away from the contact surface 130a, thereby causing the engaging member 1313 to open. At this point, the open engaging member 1313 engages with the engaging cavity 120b, forming a contact. This allows the tile to be fixedly connected to the fixed frame 120 via the engaging assembly 131.
[0073] Disassembly process:
[0074] When an external magnet is brought close to the engaging assembly 131, the magnetic ring 1312 moves towards the magnet under its influence. This causes the magnetic ring 1312 to move along the axis of the mounting post 1311 towards the mating surface 130a. At this point, under the force, the engaging member 1313 moves towards the axis of the mounting post 1311, causing it to contract. The elastic element 133 is compressed, and the contracted diameter of the engaging member 1313 is smaller than the minimum diameter of the engaging groove 120a. The tile can then be removed by taking the engaging assembly 131 out of the engaging groove 120a along the axis of the mounting post 1311.
[0075] Using the disassembly method described in this solution, if one tile is damaged, the replacement tile can be completed simply by disassembling the locking assembly 131 using an external magnet. In contrast, existing methods require removing each tile individually for installation, which is highly inconvenient.
[0076] It should be noted that the mounting post 1311 is cylindrical; the magnetic ring 1312 is a ring made of a magnetic material, such as iron, nickel, cobalt, etc.
[0077] The elastic element 133 is a spring.
[0078] The mounting unit 130 can fit snugly against the mounting surface 110a on the wall 110, ensuring the stability of the overall structure and the secure installation of the tiles.
[0079] Mounting post 1311 is fixed on the mating surface 130a of mounting unit 130, providing a stable support point for the tile.
[0080] The magnetic chuck 1312 is a ring-shaped component that can be fitted onto the mounting post 1311. It can move along the axis of the mounting post 1311, allowing the engaging assembly 131 to engage or disengage in a direction perpendicular to the mounting surface 110a.
[0081] The engaging member 1313 connects the mounting post 1311 and the magnetic chuck 1312. One port is connected to the mounting post 1311, and the other port is connected to the magnetic chuck 1312, forming a rotatable connection. This allows the magnetic chuck 1312 to move along the axis of the mounting post 1311 through the rotational movement of the engaging member 1313.
[0082] The elastic element 133 is a component located between the magnetic chuck 1312 and the mating surface 130a. Its presence generates a certain elastic force, which can push the magnetic chuck 1312 to move in a specific direction.
[0083] In at least one embodiment of this application, the mounting post 1311 includes an abutment end 13111 and a connection end 13112 connected to the abutment end 13111;
[0084] The abutting end 13111 is provided with a first rotating post 13113, and the first rotating post 13113 passes through one end of the engaging member 1313;
[0085] The magnetic chuck 1312 is provided with a second rotating post 13114 on the side near the abutting end 13111. The second rotating post 13114 passes through the end of the engaging member 1313 away from the first rotating post 13113.
[0086] The engaging member 1313 is provided with an abutting arc surface 13115, which is used to engage with the engaging groove 120a.
[0087] Please refer to Figures 1-3 In this embodiment, firstly, the engaging assembly 131 is aligned with the engaging groove 120a. At this time, the elastic member 133 is in the released state, i.e., its original length.
[0088] As the engaging component 131 is gradually inserted into the engaging groove 120a, one side of the engaging component 1313 will abut against the inner wall of the engaging groove 120a.
[0089] When the elastic element 133 is subjected to force, it begins to move along the axis of the mounting post 1311, pushing the magnetic ring 1312 toward the mating surface 130a, thereby compressing the elastic element 133.
[0090] Due to the force, the engaging member 1313 moves toward the axis of the mounting post 1311, making it fit against the mounting post 1311. At the same time, the pushing of the engaging member 1313 also drives the movement of the magnetic ring 1312.
[0091] As the engaging member 1313 continues to be inserted into the engaging groove 120a, the engaging member 1313 is gradually housed within the engaging groove 120a.
[0092] As the engaging member 1313 is fully received into the engaging groove 120a, the elastic member 133 is continuously compressed, pushing the magnetic ring 1312 toward one side of the engaging groove 120a.
[0093] When the engaging member 1313 is fully inserted into the engaging groove 120a, the engaging member 1313 abuts against the inner wall of the engaging groove 120a, and the abutting arc surface 13115 of the engaging member 1313 forms a tight connection with the abutting surface 120c of the engaging groove 120a.
[0094] A first rotating post 13113 is provided on the abutting end 13111, and the first rotating post 13113 passes through one end of the engaging member 1313. This allows the engaging member 1313 to rotate under the support of the first rotating post 13113.
[0095] The magnetic chuck 1312 has a second rotating post 13114 on the side near the abutment end 13111, which passes through the other end of the engaging member 1313. The second rotating post 13114 allows the engaging member 1313 to rotate around the center of the magnetic chuck 1312.
[0096] The engaging component 1313 has an abutting arc surface 13115 on one side, which is used to engage with the engaging groove 120a on the wall 110. This engaging groove 120a is located on one side of the fixing frame 120 and is used to fix the tiles.
[0097] It should be further explained that the locking assembly 131 has three locking members 1313 at equal angles. When locking, the three locking members 1313 lock with the locking cavity 120b at the same time to fix the tile more firmly and make the force more even.
[0098] In at least one embodiment of this application, the engaging member 1313 includes:
[0099] The locking rod 13131 has one end rotatably connected to the end of the mounting post 1311 away from the contact surface 130a, and the other end has an abutting arc surface 13115.
[0100] The rotating rod 13132 is rotatably connected at one end to the middle of the locking rod 13131, and rotatably connected at the other end to the magnetic chuck 1312.
[0101] In this embodiment, during the engagement process, the engagement rod 13131 of the engagement assembly 131 is first rotatably connected to one end of the mounting post 1311, and then abuts against the engagement groove 120a by the action of force.
[0102] Meanwhile, the rotating rod 13132 is rotatably connected to the middle of the locking rod 13131, connecting the magnetic chuck 1312 to the locking member 1313, ensuring synchronous movement between the locking member 1313 and the magnetic chuck 1312.
[0103] This ensures a firm connection between the engaging component 1313 and the engaging groove 120a, while also accommodating minor deviations during the engaging process, thus guaranteeing the accuracy and stability of the installation.
[0104] One end of the engaging rod 13131 is rotatably connected to the end of the mounting post 1311 away from the mating surface 130a. This allows the engaging rod 13131 to rotate around the rotatable connection point, thereby realizing the dynamic movement of the engaging component 1313.
[0105] The other end of the engaging rod 13131 has an abutting arc surface 13115 for abutting against the engaging groove 120a. When engaging is complete, this abutting arc surface 13115 forms a tight connection with the abutting surface 120c of the engaging groove 120a, ensuring a firm fixation between the engaging member 1313 and the engaging groove 120a.
[0106] The rotating connection point of the locking rod 13131 serves as a fulcrum, enabling the locking component 1313 to have a certain degree of elasticity during locking and disengaging, thus making it easier to adapt to changes in the locking groove 120a.
[0107] It should be noted that one end of the locking rod 13131 is an arc surface, and the locking rod 13131 is rod-shaped, which facilitates contact with the inner wall of the locking cavity 120b. The diameter of the locking cavity 120b is the maximum diameter inside the locking groove 120a; the rotating rod 13132 is rod-shaped.
[0108] In at least one embodiment of this application, the engaging groove 120a has an abutting surface 120c that abuts against the abutting arc surface 13115.
[0109] In at least one embodiment of this application, the locking rod 13131 has a groove 131a in the middle, and the locking rod 13131 has a rotating part 134, which is located in the groove 131a;
[0110] One end of the rotating rod 13132 is housed in the groove 131a and is rotatably connected to the rotating part 134.
[0111] Please refer to Figures 1-3 In this embodiment, the tight fit between the abutting surface 120c and the abutting arc surface 13115 ensures the precise positioning of the engaging member 1313 in the engaging groove 120a, avoiding unnecessary offset or shaking.
[0112] When the engaging member 1313 rotates to abut against the engaging groove 120a, the friction and interlocking between the abutting surface 120c and the abutting arc surface 13115 ensures a stable connection between the engaging member 1313 and the engaging groove 120a, providing a good fixing effect.
[0113] The groove 131a and the rotating part 134 provide the locking rod 13131 with a fixed axis of rotation during locking and unlocking, thereby improving the motion stability of the locking member 1313 and preventing unnecessary deviation.
[0114] The rotating rod 13132 is rotatably connected to the middle of the locking rod 13131, connecting the magnetic ring 1312 and the locking member 1313 together, ensuring the synchronous movement of the two, thereby realizing the stable movement and contact of the locking member 1313.
[0115] In at least one embodiment of this application, the number of the engaging components 131 on a single mounting unit 130 is at least three, and the three engaging components 131 are arranged in a triangular pattern.
[0116] Please refer to Figures 1-4 In this embodiment, by placing the three engaging components 131 in a triangular arrangement on the fixed frame 120, the tiles can be stably fixed to the wall 110. This distribution effectively disperses the load, avoids single-point load bearing, provides more uniform support, and thus enhances the stability of the overall structure.
[0117] The triangularly distributed locking components 131 can evenly distribute stress on the wall 110, reducing the risk of tile deformation. This helps prevent shrinkage and expansion of the wall 110 material due to temperature changes, humidity fluctuations, and other factors, thereby reducing the risk of tile loosening or cracking.
[0118] In at least one embodiment of this application, one of the engaging components 131 is located at the corner of the fixed frame 120, and the other two engaging components 131 are located on the adjacent sides of the corner of the fixed frame 120.
[0119] In this embodiment, the corners of the fixing frame 120 are typically the corners of the decorative area, and tiles installed in these corners are often more susceptible to external forces. By installing the locking components 131 at these corners, the corner tiles can be more effectively stabilized, preventing them from loosening or falling off.
[0120] Two additional locking components 131 are installed on adjacent sides of the corners of the fixed frame 120, providing uniform support in different directions. This uniform support helps prevent the decorative material from deforming or shifting in different directions, maintaining a stable decorative effect.
[0121] The triangular layout provides more support points, making the locking member 1313 more stable within the locking groove 120a. This helps prevent the tiles from loosening due to external forces, ensuring their secure fixation to the wall 110.
[0122] Please refer to Figures 1-4 In practical applications, the three engaging components 1313 are inserted into the corresponding mounting slots 132, making them tightly connected to the wall 110 fixing frame 120. The combined design of the mounting post 1311, magnetic ring 1312, engaging rod 13131, and rotating rod 13132 of the engaging component 1313 ensures the stable insertion and engagement of the engaging assembly 131.
[0123] When tiles need to be replaced or maintained, the external magnet can be used to attract the engaging component 131, disengaging it from the engaging groove 120a. Because the three engaging components 1313 provide fixing points in different directions, this design makes tile removal more even and convenient.
[0124] In at least one embodiment of this application, the abutting end 13111 is provided with an abutting surface 131b, which can abut against the locking rod 13131.
[0125] Please refer to Figures 1-4 In this embodiment, when the engaging member 1313 is fully inserted into the engaging groove 120a, the engaging member 1313 abuts against the inner wall of the engaging groove 120a, and the abutting arc surface 13115 of the engaging member 1313 forms a tight connection with the abutting surface 120c of the engaging groove 120a.
[0126] At this time, the abutting surface 131b abuts against the locking rod 13131 to prevent the locking rod 13131 from continuing to rotate away from the mating surface 130a. The locking rod 13131, the mounting post 1311 and the rotating rod 13132 form a right-angled triangle to form a dead point position, so that the locking effect of the locking assembly 131 is better.
[0127] The supporting surface 131b is an arc surface that protrudes towards the contact surface 130a.
[0128] In at least one embodiment of this application, the mounting unit 130 has a placement surface 131c on the side away from the mounting surface 110a;
[0129] The placement surface 131c is used to place a magnet to attract the engaging component 131, thereby disengaging the engaging component 131 from the engaging groove 120a.
[0130] Please refer to Figures 1-4 In this embodiment, the magnet on the placement surface 131c can quickly attract the engaging component 131 when needed, separating it from the engaging groove 120a. This makes the maintenance and replacement of tiles more convenient, requiring no heavy force or special tools, thus improving the maintainability of the wall structure 110.
[0131] Using a magnet to attract the engaging component 131 and disengage it from the engaging groove 120a reduces direct contact between the engaging component 131 and the engaging groove 120a, thereby reducing the risk of damage to the decorative material during maintenance and replacement.
[0132] By controlling the attraction of the magnet, the connection state between the locking assembly 131 and the locking groove 120a can be easily controlled. This allows for more flexible operation when it is necessary to adjust or replace the tiles.
[0133] In practical applications, when maintenance or replacement of tiles is required, the engaging component 131 is attracted and separated from the engaging groove 120a by placing a magnet on the placement surface 131c of the mounting unit 130 away from the mounting surface 110a. This can be achieved through external operation without disassembling the entire wall structure 110.
[0134] During maintenance and replacement, the magnetic attraction can be adjusted according to the actual situation to ensure that the connection between the engaging assembly 131 and the engaging groove 120a meets the requirements. This can ensure a secure connection of the decorative material while reducing the risk of damage.
[0135] Accordingly, a wall structure 100 for engaging ceramic tiles is provided, the wall structure 110 for engaging ceramic tiles comprising:
[0136] Wall 110 has mounting surface 110a;
[0137] A fixing frame 120 is disposed on the mounting surface 110a, and the fixing frame 120 is provided with a locking groove 120a on the side away from the mounting surface 110a;
[0138] The mounting unit 130 is provided with a locking component 131, and the mounting unit 130 has a mounting slot 132 for locking the ceramic tile;
[0139] The engaging component 131 can engage with the engaging groove 120a in a direction perpendicular to the mounting surface 110a, or disengage from the engaging groove 120a.
[0140] In this embodiment, a fixed frame 120 is first installed on the mounting surface 110a of the wall 110. Then, the mounting unit 130 is engaged into the engaging groove 120a of the fixed frame 120 using the engaging assembly 131. The tile is then installed into the corresponding position using the mounting slot 132 on the mounting unit 130. If the tile position needs to be adjusted, it can be flexibly adjusted or removed using the engaging assembly 131. The engaging assembly 131 engages with or disengages from the engaging groove 120a in a direction perpendicular to the mounting surface 110a. This provides a flexible and reliable connection method, allowing for quick installation and disassembly, and enhancing ease of use.
[0141] The embodiments described above are merely illustrative of several implementations of the present invention, and while the descriptions are specific and detailed, they should not be construed as limiting the scope of the patent application. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of the present invention, and these all fall within the scope of protection of the present invention. Therefore, the scope of protection of this patent should be determined by the appended claims.
Claims
1. A wall structure for locking ceramic tiles, characterized in that, The wall structure for engaging the ceramic tiles includes: The wall has a mounting surface; A fixed frame is provided on the mounting surface, and a locking groove is provided on the side of the fixed frame away from the mounting surface; The installation unit is equipped with a locking component, and the installation unit has a mounting slot for locking the tile; The engaging component can engage with the engaging groove in a direction perpendicular to the mounting surface, or disengage from the engaging groove. The engaging groove is provided with an engaging cavity, and the mounting unit has a fitting surface that fits against the mounting surface; The engagement assembly includes: Mounting posts are provided on the mating surface; A magnetic chuck is fitted onto the mounting post and can move along the axis of the mounting post; The engaging component has one end rotatably connected to the mounting post and the other end rotatably connected to the magnetic chuck. An elastic element is located between the magnetic chuck and the contact surface; The elastic element moves along the axis of the mounting post to push the magnetic chuck to move along the axis of the mounting post, thereby causing the engaging member to engage or disengage from the engaging cavity. The mounting post includes an abutting end and a connecting end connected to the abutting end; The abutting end is provided with a first rotating post, which passes through one end of the engaging member; The magnetic chuck is provided with a second rotating post on the side near the abutting end, and the second rotating post passes through the end of the engaging member away from the first rotating post; The engaging member has an abutting arc surface, which is used to engage with the engaging groove.
2. The wall structure for locking ceramic tiles according to claim 1, characterized in that, The engaging component includes: The locking rod has one end rotatably connected to the end of the mounting post away from the mating surface, and the other end has an abutting arc surface; The rotating rod has one end rotatably connected to the middle of the locking rod, and the other end rotatably connected to the magnetic chuck.
3. The wall structure for locking ceramic tiles according to claim 2, characterized in that, The engaging groove has an abutting surface that abuts against the abutting arc surface.
4. The wall structure for engaging ceramic tiles according to claim 2, characterized in that, The locking rod has a groove in the middle and a rotating part located in the groove. One end of the rotating rod is housed in the groove and is rotatably connected to the rotating part.
5. The wall structure for engaging ceramic tiles according to claim 1, characterized in that, The number of engaging components on a single mounting unit is at least three, and the three engaging components are arranged in a triangular pattern.
6. The wall structure for engaging ceramic tiles according to claim 5, characterized in that, One of the engagement components is located at the corner of the fixed frame, and the other two engagement components are located on the two adjacent sides of the corner of the fixed frame.
7. The wall structure for engaging ceramic tiles according to claim 4, characterized in that, The abutting end is provided with abutting surface, which can abut against the locking rod.
8. The wall structure for engaging ceramic tiles according to claim 1, characterized in that, The mounting unit has a placement surface on the side away from the mounting surface; The placement surface is used to place a magnet to attract the engaging component, thereby disengaging the engaging component from the engaging groove.
Citation Information
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