Tiled plate
By setting rotatable positioning blocks and snap-fit holes on the flat paving board, the snap-fit assembly of adjacent boards is realized, which solves the problem of inaccurate positioning during the laying process and improves laying efficiency and decoration quality.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-26
- Publication Date
- 2026-04-07
AI Technical Summary
The existing flat slabs are easily affected by the workers' experience, diligence, and fatigue during the laying process, resulting in uneven spacing between adjacent slabs, non-parallel sides, and misalignment. In addition, the auxiliary leveling tools are cumbersome to use, which affects the laying efficiency.
Design a flat panel with horizontally rotatable positioning blocks and snap-fit holes at the bottom corners and matching snap-fit posts at the other three corners. Accurate positioning of adjacent panels can be achieved through snap-fit assembly, avoiding the need for leveling tools.
It improves the positioning accuracy between adjacent boards, reduces the impact of worker experience and fatigue on the laying quality, saves the time of assembling and disassembling leveling tools, and improves laying efficiency and decoration quality.
Smart Images

Figure CN224092898U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of building panels, and in particular to a flat panel. Background Technology
[0002] Currently, most floor slabs used for building floors (such as ceramic tiles, slate, or wood panels) are made into thin rectangular blocks. This means there are no structures binding adjacent slabs together. Therefore, floor slab installation relies heavily on the experience of the installers. Furthermore, the quality of the installation is easily affected by factors such as the installer's experience, diligence, and fatigue level. This results in issues such as excessively wide or narrow spacing between adjacent slabs, non-parallel sides, and misalignment, significantly impacting the overall quality of the building's finish.
[0003] Although leveling tools have emerged to assist in the installation of paving boards, it is still generally necessary to install leveling tools at corresponding corners of adjacent paving boards during installation, meaning two leveling tools are typically placed between adjacent paving boards. Since most paving boards have paving boards around their perimeter, at least eight leveling tools are usually installed around the outer edge of most paving boards. This not only takes considerable time to install the leveling tools but also requires significant time to remove them, which can negatively impact the efficiency of paving board installation.
[0004] Therefore, it is essential to redesign the structure of the flat panel. Utility Model Content
[0005] The purpose of this utility model is to solve the above-mentioned problems and shortcomings and provide a flat paving board that enables laying workers to quickly and accurately lay adjacent flat paving boards together. It not only helps to improve the quality of decoration, but also helps to improve laying efficiency. It has very high reliability and applicability.
[0006] The technical solution of this utility model is implemented as follows:
[0007] A flat panel is characterized by comprising a rectangular panel body, wherein a horizontally rotatable positioning block is provided at one corner of the bottom surface of the panel body, the positioning block has three vertically penetrating buckle holes, and the vertical center lines of the three buckle holes are rectangularly distributed with the rotation center line of the positioning block, and the three buckle holes can move from directly below the panel body to the lower side of the panel body as the positioning block rotates horizontally, and buckle posts matching the buckle holes are respectively provided at the other three corners of the bottom surface of the panel body.
[0008] Preferably, positioning grooves are provided on the four corners of the bottom surface of the plate body, and a positioning shaft that can rotate horizontally is vertically inserted on the positioning block, and the vertical center line of the positioning shaft is arranged in a rectangle with the vertical center line of the three buckle holes. The upper end of the positioning shaft is embedded in one of the positioning grooves, and the upper ends of the three buckle pins are embedded in the other three positioning grooves.
[0009] Preferably, the positioning shaft is detachably fitted into one of the positioning slots, and the upper ends of the three snap-fit posts are detachably fitted into the other three positioning slots.
[0010] Preferably, the positioning block has a vertical through hole, and the vertical center line of the through hole is rectangularly distributed with the vertical center lines of the three buckle holes. The through hole is a countersunk hole with a larger bottom and a smaller top. The lower end of the positioning shaft matches the through hole, and the upper end of the positioning shaft passes through the through hole and is embedded in the positioning groove, so that the lower end of the positioning shaft can be relatively horizontally rotatably embedded in the through hole.
[0011] Preferably, at least one first adhesive groove is provided on the upper end of the positioning shaft.
[0012] Preferably, the positioning block is a horizontally arranged rectangular plate.
[0013] Preferably, at least one second adhesive groove is provided on the upper end of the buckle post.
[0014] Preferably, the lower end of the snap-fit post includes a plurality of vertically extending snap-fit springs, each snap-fit spring being arranged in a circular array around the vertical center line of the snap-fit post, with the fastening part on each snap-fit spring located on its lower outer wall. The snap-fit hole includes an insertion hole for inserting the snap-fit spring and a fastening ring groove for fastening the fastening part. The insertion hole is vertically opened through the positioning block, and the fastening ring groove is opened on the lower opening edge of the positioning block.
[0015] Preferably, the flat panel further includes a positioning strip, and positioning holes for inserting buckles are respectively provided at both ends of the positioning strip.
[0016] Preferably, the bottom surface of the positioning block and the bottom surfaces of the three snap-fit posts are located in the same horizontal plane.
[0017] The beneficial effects of this utility model are as follows: On the flat board, a positioning block that can rotate horizontally is provided on one of the corners of the bottom surface of the board body, and three vertical through-holes are provided on the positioning block. In addition, on the other three corners of the bottom surface of the board body, there are plug posts that match the plug holes. This design allows adjacent planks to be accurately positioned together during installation by interlocking the snap-fit posts with corresponding snap-fit holes on the positioning blocks. This reduces the impact of factors such as worker experience, work diligence, and fatigue on the installation quality. It not only prevents excessively wide or narrow spacing between adjacent planks but also ensures greater parallelism between their sides and significantly reduces the likelihood of misalignment. Furthermore, it eliminates the need for leveling tools, saving time on their installation and removal. This design enables installers to quickly and accurately place adjacent planks together, improving both the quality of the installation and the overall efficiency of the installation process.
[0018] By employing a horizontally rotatable installation method for the positioning blocks, when the paving board is laid to a lower corner, the positioning blocks are positioned below the paving board itself, preventing them from interfering with the laying of the paving board. This allows the paving board to better meet actual usage requirements. The use of snap-fit holes and snap-fit posts enables snap-fit assembly, ensuring a stable and reliable assembly between the snap-fit posts and the positioning blocks. This results in a reliable structure for the paving board. Therefore, this paving board exhibits very high reliability and applicability. Attached Figure Description
[0019] Figure 1 This is one of the three-dimensional structural diagrams of the flat panel in this utility model.
[0020] Figure 2 This is the second schematic diagram of the three-dimensional structure of the flat plate in this utility model.
[0021] Figure 3 This is a schematic diagram of the disassembled structure of the flat plate in this utility model.
[0022] Figure 4 This is a three-dimensional structural diagram of the positioning shaft in this utility model.
[0023] Figure 5 This is a three-dimensional structural diagram of the insert buckle post in this utility model.
[0024] Figure 6 This is a three-dimensional structural diagram of the positioning block in this utility model.
[0025] Figure 7 This is a three-dimensional structural diagram of the positioning strip in this utility model.
[0026] Figure 8This is a structural diagram of the present invention in its laid-out state. Detailed Implementation
[0027] like Figures 1 to 3 As shown, the present invention provides a flat panel comprising a rectangular panel body 1. A horizontally rotatable positioning block 2 is provided on one corner of the bottom surface of the panel body 1, with the positioning block 2 positioned directly below the panel body 1. The positioning block 2 has three vertically penetrating buckle holes 21, with the vertical center lines of the three buckle holes 21 arranged in a rectangular pattern with the rotation center line of the positioning block 2. The three buckle holes 21 can move from directly below the panel body 1 to the lower side of the panel body 1 as the positioning block 2 rotates horizontally. Buckle posts 3 matching the buckle holes 21 are provided on the other three corners of the bottom surface of the panel body 1.
[0028] On the flat panel, a horizontally rotatable positioning block 2 is provided on one corner of the bottom surface of the panel body 1, and three vertical through-holes 21 are provided on the positioning block 2. In addition, on the other three corners of the bottom surface of the panel body 1, there are corresponding fastening posts 3 that match the fastening holes 21. This design allows adjacent planks to be accurately positioned together during installation by interlocking the snap-fit posts 3 with the snap-fit holes 21 on the positioning blocks 2. This reduces the impact of factors such as worker experience, work diligence, and fatigue on the installation quality. It not only prevents the spacing between adjacent planks from being too wide or too narrow, but also improves the parallelism of the sides of adjacent planks and greatly reduces the chance of misalignment. Furthermore, it eliminates the need for leveling tools, saving time on their installation and removal. This plank design allows installers to quickly and accurately lay adjacent planks together, improving both the quality of the installation and the efficiency of the installation process.
[0029] By employing a horizontally rotatable installation method for the positioning block 2, when the paving board is laid to the lower corner of the wall, the positioning block 2 is positioned below the board body 1, preventing it from interfering with the laying of the paving board. This allows the paving board to better meet actual usage requirements. The use of snap-fit holes 21 and snap-fit posts 3 enables snap-fit assembly, ensuring a stable and reliable assembly between the snap-fit posts 3 and the positioning block 2. This results in a reliable structure for the paving board. Therefore, this paving board possesses very high reliability and applicability.
[0030] like Figure 2 and Figure 3As shown, positioning grooves 11 are respectively provided on the four corners of the bottom surface of the board body 1. A positioning shaft 22 capable of rotating relatively horizontally is vertically inserted through the positioning block 2, and the vertical center line of the positioning shaft 22 is arranged in a rectangle with the vertical center lines of the three snap-fit holes 21. The upper end of the positioning shaft 22 is embedded in one of the positioning grooves 11, and the upper ends of the three snap-fit posts 3 are embedded in the other three positioning grooves 11. This can improve the accuracy and stability of the installation and positioning of the positioning block 2 and the three snap-fit posts 3, thereby helping to further improve the applicability of the flat board.
[0031] The board body 1 can be made of ceramic tile, stone slab or wood board, etc. The positioning groove 11 is formed together with the board body 1 during the forming process or opened later, so as to meet the needs of actual manufacturing and use.
[0032] The positioning shaft 22 is detachably fitted into one of the positioning slots 11, and the upper ends of the three snap-fit posts 3 are detachably fitted into the other three positioning slots 11. This detachable fitting allows users to easily adjust the positions of the positioning blocks 2 and snap-fit posts 3, or increase or decrease their number, according to actual installation needs. This facilitates meeting a wider range of usage requirements and further improves the applicability of the flat panel. Furthermore, this design allows for separate packaging of the panel body 1, positioning blocks 2, and three snap-fit posts 3. By stacking the panel body 1 together, the overall packaged volume is reduced, thus improving storage and transportation convenience.
[0033] like Figures 2 to 4 , Figure 6 As shown, the positioning block 2 has a vertically penetrating hole 23, with the vertical center line of the hole 23 and the vertical center lines of the three snap-fit holes 21 arranged in a rectangle. The hole 23 is a countersunk hole, larger at the bottom and smaller at the top. The lower end of the positioning shaft 22 matches the hole 23, and the upper end of the positioning shaft 22 passes through the hole 23 and is embedded in the positioning groove 11, allowing the lower end of the positioning shaft 22 to be relatively horizontally rotatable within the hole 23. This not only gives the positioning shaft 22 and the positioning block 2 a simple and reliable structure, but also makes the assembly of the positioning shaft 22 and the positioning block 2 very stable, thereby helping to further improve the reliability and applicability of the flat panel.
[0034] like Figure 4 As shown, at least one first adhesive groove 221 is provided on the upper end of the positioning shaft 22. The first adhesive groove 221 can be provided on the outer circumferential surface and / or top surface of the positioning shaft 22. This ensures that there is sufficient adhesive between the outer wall of the positioning shaft 22 and the hole wall of the positioning groove 11 when the positioning shaft 22 is fixed by adhesive bonding, thereby ensuring the stability and reliability of the installation and positioning.
[0035] like Figures 1 to 3 , Figure 6 As shown, the positioning block 2 is a horizontally arranged rectangular plate. Such a positioning block 2 is very simple and reliable, which not only facilitates manufacturing but also helps to perform a reliable positioning function.
[0036] like Figure 5 As shown, at least one second adhesive groove 31 is provided on the upper end of the buckle post 3. The second adhesive groove 31 can be provided on the outer circumferential surface and / or top surface of the buckle post 3. This ensures that there is sufficient adhesive between the outer wall of the buckle post 3 and the hole wall of the positioning groove 11 when the buckle post 3 is fixed by adhesive bonding, thereby ensuring the stability and reliability of the installation positioning.
[0037] like Figure 2 , Figure 3 , Figure 5 and Figure 6 As shown, the lower end of the snap-fit post 3 includes several vertically extending snap-fit spring pieces 32. Each snap-fit spring piece 32 is arranged in a circular array around the vertical center line of the snap-fit post 3, with the fastening portion 321 on each snap-fit spring piece 32 located on its lower outer wall. The snap-fit hole 21 includes an insertion hole 211 for inserting the snap-fit spring piece 32 and a fastening ring groove 212 for fastening the fastening portion 321. The insertion hole 211 vertically penetrates the positioning block 2, and the fastening ring groove 212 is located on the lower edge of the positioning block 2. This snap-fit post 3 is very simple and reliable, which not only facilitates manufacturing and snap-fitting but also ensures high reliability. Furthermore, even when the snap-fit post 3 is not inserted into the snap-fit hole 21, it enhances the edge and corner adhesion of the board body 1, thereby further improving the reliability and applicability of the flat panel.
[0038] like Figures 1 to 3 , Figure 7 and Figure 8 As shown, the flat panel also includes a positioning strip 4, with positioning holes 41 at both ends for the insertion of the snap-on posts 3. The two positioning holes 41 of the positioning strip 4 allow the snap-on posts 3 on two adjacent panel bodies 1 to be inserted, which enables positioning by the positioning strip 4 when there is no positioning block 2 between adjacent panel bodies 1, thereby helping to further improve the reliability and applicability of the flat panel.
[0039] like Figure 6 and Figure 7 As shown, in the actual manufacturing process, the positioning hole 41 and the buckle hole 21 adopt the same hole shape structure, and the positioning strip 4 and the positioning block 2 have the same thickness, so as to meet the requirements of arbitrary combination and assembly.
[0040] like Figure 1 , Figure 2 and Figure 8As shown, when the buckle post 3 is inserted into one of the positioning holes 41 on the positioning strip 4, the positioning strip 4 can rotate horizontally on the buckle post 3. This allows the other positioning hole 41 on the positioning strip 4 to swing to the corresponding buckle post 3 position through rotation adjustment, thereby facilitating the fulfillment of more usage needs.
[0041] like Figure 2 As shown, the bottom surface of the positioning block 2 and the bottom surfaces of the three snap-fit posts 3 are located on the same horizontal plane. This ensures that the stacked packaging is very flat and stable when the packaging is laid out, which helps to improve the quality of the stacked packaging.
[0042] The positioning block 2, positioning shaft 22, and snap-fit post 3 are all made of plastic, such as HIPS plastic structure, HDPE plastic structure, or LDPE plastic structure. This not only facilitates molding and manufacturing but also helps to meet the normal thermal expansion and contraction requirements of the board body 1, thereby helping to further improve the applicability of the flat board.
[0043] like Figure 8 As shown, during actual installation, a positioning block 2 can accurately and stably position the corners of four board bodies 1 together. When there is a positioning block 2 on the corresponding corner of two adjacent board bodies 1 located at the bottom corner, the two board bodies 1 are positioned together using the positioning block 2. When there is no positioning block 2 on the corresponding corner of two adjacent board bodies 1 located at the bottom corner, the two board bodies 1 are positioned together using the positioning strip 4. This can meet the needs of normal installation and use, and it enables the installers to quickly and accurately lay adjacent flat boards together, which not only improves the quality of decoration, but also improves the efficiency of installation.
Claims
1. A flat panel, characterized in that: The plate includes a rectangular plate body (1). A horizontally rotatable positioning block (2) is provided on one corner of the bottom surface of the plate body (1). The positioning block (2) has three vertically penetrating buckle holes (21). The vertical center lines of the three buckle holes (21) are arranged in a rectangular shape with the rotation center line of the positioning block (2). The three buckle holes (21) can move from directly below the plate body (1) to the side below the plate body (1) as the positioning block (2) rotates horizontally. Buckle posts (3) that match the buckle holes (21) are provided on the other three corners of the bottom surface of the plate body (1).
2. The flat slab according to claim 1, characterized in that: The plate body (1) has positioning grooves (11) on its four corners. The positioning block (2) has a positioning shaft (22) that can rotate horizontally. The vertical center line of the positioning shaft (22) and the vertical center line of the three buckle holes (21) are arranged in a rectangle. The upper end of the positioning shaft (22) is embedded in one of the positioning grooves (11), and the upper ends of the three buckle pins (3) are embedded in the other three positioning grooves (11).
3. The flat slab according to claim 2, characterized in that: The positioning shaft (22) is detachably fitted into one of the positioning slots (11), and the upper ends of the three snap pins (3) are detachably fitted into the other three positioning slots (11).
4. The flat slab according to claim 2, characterized in that: The positioning block (2) has a vertical through hole (23) and the vertical center line of the through hole (23) is arranged in a rectangle with the vertical center line of the three buckle holes (21). The through hole (23) is a countersunk hole with a larger bottom and a smaller top. The lower end of the positioning shaft (22) matches the through hole (23). The upper end of the positioning shaft (22) passes through the through hole (23) and is embedded in the positioning groove (11). The lower end of the positioning shaft (22) can be embedded in the through hole (23) with relative horizontal rotation.
5. The flat slab according to claim 2, characterized in that: At least one first adhesive groove (221) is provided on the upper end of the positioning shaft (22).
6. The flat tread according to any one of claims 1 to 5, characterized in that: The positioning block (2) is a horizontally arranged rectangular plate.
7. The flat slab according to claim 2, characterized in that: At least one second adhesive groove (31) is provided on the upper end of the buckle post (3).
8. The flat veneer according to claim 1, 2, or 7, characterized in that: The lower end of the buckle post (3) includes several vertically extending buckle springs (32). Each buckle spring (32) is arranged in a circular array around the vertical center line of the buckle post (3), and the fastening part (321) on each buckle spring (32) is located on its lower outer wall. The buckle hole (21) includes a plugging hole (211) for the buckle spring (32) to be inserted and a fastening ring groove (212) for the fastening part (321) to be fastened. The plugging hole (211) is opened vertically through the positioning block (2), and the fastening ring groove (212) is opened on the lower hole edge of the positioning block (2).
9. The flat slab according to claim 1, characterized in that: It also includes a positioning strip (4), and the two ends of the positioning strip (4) are respectively provided with positioning holes (41) for inserting the buckle post (3) into the buckle.
10. The flat slab according to claim 1, characterized in that: The bottom surface of the positioning block (2) and the bottom surfaces of the three buckle pins (3) are located on the same horizontal plane.