Assembled floor tile system

By using a modular floor tile system, an upper base plate, a lower base plate, and connectors are used to replace cement mortar, achieving a stable connection between the tiles and the base plate. This solves the problems of long construction period and unstable quality in traditional floor tile construction, and realizes efficient, stable floor paving and environmentally friendly construction.

CN223706981UActive Publication Date: 2025-12-23JINAN DUOPINMAO CONSTRUCTION ENGINEERING DECORATION CO LTD
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Patent Information

Application Number
CN202520038437.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-08
Publication Date
2025-12-23
Estimated Expiration
2035-01-08

AI Technical Summary

Technical Problem

Traditional tile installation is time-consuming and costly, and the cement mortar layer is prone to hollowing, resulting in weak tile adhesion and difficulty in ensuring installation quality.

Method used

The system adopts a modular floor tile system, using an upper base plate, a lower base plate, and connectors to replace cement mortar. The first, second, and third connectors achieve a stable connection between the tiles and the base plate, limiting displacement. C-shaped inserts, long strip blocks, and limiting holes are used for positioning and assembly.

Benefits of technology

It shortens the construction period, reduces costs, improves laying quality and stability, reduces construction waste, conforms to the concept of green development, and is easy to disassemble and maintain.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223706981U_ABST
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Abstract

A split mounting type floor tile system is formed by splicing and connecting a plurality of floor tile units, each floor tile unit comprises a tile body, an upper bottom plate and a lower bottom plate which are connected with one another, and three components in each floor tile unit are stably connected through a first connecting piece and a second connecting piece; the floor tile units are connected in a limiting mode through the third connecting pieces, an efficient and stable splicing structure is formed, traditional cement mortar does not need to be relied on, the construction period is greatly shortened, the construction cost is reduced, meanwhile, the laying precision and stability are improved, and the quality problem caused by displacement or falling of floor tiles is avoided. Meanwhile, due to the fact that the split mounting type design is adopted, a single floor tile unit is easy to disassemble and replace, later maintenance and upgrading are facilitated, and compared with a traditional cement mortar laying mode, the split mounting type floor tile system reduces generation of construction waste and is beneficial to environmental protection.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a ceramic tile technical field, specifically a kind of assembled floor tile system. BACKGROUND

[0002] Floor tile, usually simply referred to as floor tile, is a kind of decorative material widely used in building ground, and the construction of traditional floor tile needs to use cement, sand and other decoration building materials, and the cement mortar is daubed on the already leveled rough ground as adhesive, and after laying floor tile, it is re-leveled, and the overall construction period is long, the cost is high, the construction operation is complex, and the daubed cement mortar layer is easy to produce hollow, which leads to the displacement or falling of the floor tile due to the unstable adhesion of the floor tile, and the laying quality of the floor tile cannot be guaranteed. SUMMARY

[0003] The utility model aims at providing an assembled floor tile system, which uses upper and lower bottom plates to replace cement mortar as connecting components, realizes stable assembly connection between floor tile and ground, reduces cost and construction period, guarantees laying quality, and solves the problems in the prior art.

[0004] The utility model solves its technical problem adopts the technical scheme that a kind of assembled ground brick system, including the ground brick unit of a plurality of assembled connections, each ground brick unit includes the brick body, upper bottom plate and lower bottom plate arranged from top to bottom, wherein the side surface of brick body and the side surface of upper bottom plate are provided with a plurality of first connecting pieces, first connecting piece can limit horizontal, vertical displacement between brick body and upper bottom plate, upper bottom plate and lower bottom plate are provided with a plurality of second connecting pieces, second connecting piece can limit horizontal, vertical displacement between upper bottom plate and lower bottom plate, the outer periphery of lower bottom plate is equipped with boss, the bottom of upper bottom plate is equipped with recess that is matched with boss, the boss in lower bottom plate of adjacent ground brick unit is provided with third connecting piece, third connecting piece can limit horizontal, vertical displacement between lower bottom plate in adjacent ground brick unit.The first connecting piece is C type insert, C type insert includes vertical board, the same side position of vertical board upper end and lower end is fixed with the horizontally arranged plug rod, the side surface of brick body is provided with the first insertion slot matched with plug rod, the side surface of upper bottom plate is provided with the second insertion slot matched with plug rod, the side surface of brick body and upper bottom plate between first insertion slot and second insertion slot is provided with vertical slot matched with vertical board, C type insert can be inserted between the side surface of brick body and the side surface of upper bottom plate.The first connecting piece includes vertical board, the upper end and lower end of vertical board are provided with through hole, through hole is provided with detachable plug post, the side surface of brick body is provided with the first insertion slot matched with plug post, the side surface of upper bottom plate is provided with the second insertion slot matched with plug post, the side surface of brick body and upper bottom plate between first insertion slot and second insertion slot is provided with vertical slot matched with vertical board, first connecting piece can be inserted between the side surface of brick body and the side surface of upper bottom plate.The second connecting piece includes the long strip clamping block of being provided on the top surface of lower bottom plate, the bottom surface of upper bottom plate is provided with the long strip clamping groove matched with long strip clamping block, wherein the long strip clamping block includes rectangular block, the upper portion of rectangular block is equipped with two groups of triangle block that can extrude close, the width of two groups of triangle block is greater than the width of rectangular block, the long strip clamping groove includes the rectangular slot matched with rectangular block and the trapezoidal slot communicated with rectangular slot, trapezoidal slot is matched with two groups of triangle block, and two groups of triangle block can be deformed and enter trapezoidal slot through rectangular slot under extrusion.The third connecting piece includes the limiting hole of being provided on boss, the limiting hole of adjacent ground brick unit is uniformly arranged, and limiting block is installed in corresponding two limiting holes, and the length of limiting block is greater than the thickness of one boss and less than the thickness of two bosses.The top surface of lower bottom plate is equipped with a plurality of bosses, and the bottom surface of upper bottom plate is provided with positioning slot matched with boss.The boss includes square protrusion, trapezoidal protrusion is arranged at the four edge positions of square protrusion, and boss is arranged at intervals with second connecting piece.It further includes the skirting line shielding system of being provided on the outermost periphery ground brick unit, and the skirting line shielding system includes the mounting plate that can be fixed on wall surface, and the upper side of mounting plate is equipped with detachable cooperation skirting line plate, and the skirting line plate is located on the upper side of the brick body of outermost periphery ground brick unit.

[0005] The positive effect of the utility model lies in: the utility model discloses a kind of assembled floor tile system, it is connected by a plurality of floor tile units, each floor tile unit includes mutually connected tile body, upper bottom plate and lower bottom plate, the stable connection between the three components in floor tile unit is realized by first connecting piece and second connecting piece, the limiting connection between floor tile units is realized by third connecting piece, form efficient and stable assembled structure, without relying on traditional cement mortar, greatly shorten construction period, reduce construction cost, improve the accuracy and stability of laying at the same time, avoid the quality problem that floor tile generates due to displacement or drop-off. Meanwhile, due to the adoption of assembled design, single floor tile unit is easy to disassemble and replace, convenient for later maintenance and upgrading, compared with traditional cement mortar laying mode, the assembled floor tile system of the utility model reduces the generation of construction waste, is conducive to environmental protection. Meanwhile, its efficient construction mode also reduces energy consumption, meets the green, sustainable development concept of modern building. BRIEF DESCRIPTION OF DRAWINGS

[0006] Figure 1 It is the structure schematic drawing of the utility model;

[0007] Figure 2 It is the structure schematic drawing of a group of floor tile units;

[0008] Figure 3 It is the structure schematic drawing of tile body;

[0009] Figure 4 It is the structure schematic drawing of upper bottom plate;

[0010] Figure 5 It is the structure schematic drawing of lower bottom plate;

[0011] Figure 6 It is the structure schematic drawing of first connecting piece between tile body and upper bottom plate;

[0012] Figure 7 It is the structure schematic drawing of another first connecting piece between tile body and upper bottom plate;

[0013] Figure 8 It is the structure schematic drawing of second connecting piece between upper bottom plate and lower bottom plate;

[0014] Figure 9 It is the structure schematic drawing of third connecting piece between adjacent floor tile units;

[0015] Figure 10 It is the structure schematic drawing of protruding block and second connecting piece arranged on lower bottom plate;

[0016] Figure 11 It is the structure schematic drawing of the utility model setting toe cover system. DETAILED DESCRIPTION

[0017] The utility model discloses a kind of assembled floor tile systems, as shown in Figures 1-5 It includes a plurality of assembled and connected floor tile units, each floor tile unit includes brick 1 arranged from top to bottom, upper bottom plate 2 and lower bottom plate 3, upper bottom plate 2 and lower bottom plate 3 can replace traditional cement mortar to realize the paving of floor tile, and maintain the stability of overall paving, and use upper bottom plate 2 and lower bottom plate 3 to assemble and connect on the already leveled rough ground, without the need for leveling operation again, which also improves the paving efficiency of floor tile to a certain extent.

[0018] Wherein the side surface of brick 1 and the side surface of upper bottom plate 2 are provided with a plurality of first connecting pieces, the first connecting pieces can limit the horizontal and vertical displacement between brick 1 and upper bottom plate 2, upper bottom plate 2 and lower bottom plate 3 are provided with a plurality of second connecting pieces, the second connecting pieces can limit the horizontal and vertical displacement between upper bottom plate 2 and lower bottom plate 3, and the positioning and assembling connection between the three components in the floor tile unit is realized through the first connecting pieces and the second connecting pieces.

[0019] The outer periphery of the lower bottom plate 3 is provided with a boss 4, the bottom of the upper bottom plate 2 is provided with a groove 5 matched with the boss 4, the boss 4 in the lower bottom plate 3 in the adjacent floor tile unit is provided with a third connecting piece, the third connecting piece can limit the horizontal and vertical displacement between the lower bottom plates 3 in adjacent floor tile units, and the positioning and assembling between adjacent floor tile units is realized through the third connecting piece.

[0020] Wherein the first connecting piece, the second connecting piece and the third connecting piece can be existing threaded connecting piece, pin connecting piece, wedge connecting piece, key connecting piece, etc., and the material can be plastic, rubber, ceramic, etc., which can realize the assembling connection of brick 1, upper bottom plate 2 and lower bottom plate 3 in each floor tile unit, and the positioning and assembling connection between adjacent floor tile units.

[0021] Further, in order to facilitate the dismounting and connecting of the first connecting piece between brick 1 and upper bottom plate 2, as shown in Figure 6 The first connecting piece is a C-shaped plug-in part, which is integrally formed, and includes a vertical plate 6, and a horizontally arranged plug rod 7 is fixedly arranged on the same side of the upper and lower ends of the vertical plate 6.

[0022] The side of the brick body 1 is provided with a first insertion slot 8 matched with the insertion rod 7, the side of the upper bottom plate 2 is provided with a second insertion slot 9 matched with the insertion rod 7, the side of the brick body 1 and the upper bottom plate 2 between the first insertion slot 8 and the second insertion slot 9 is provided with a vertical slot 10 matched with the vertical plate 6, the C-shaped insert can completely enter the first insertion slot 8, the second insertion slot 9 and the vertical slot 10, and is matched and inserted between the side of the brick body 1 and the side of the upper bottom plate 2, so as to avoid leaving a large gap between adjacent floor tile units, and enable the brick body 1 and the upper bottom plate 2 of adjacent floor tile units to be positioned and assembled in contact with each other.

[0023] The C-shaped insert realizes the positioning and assembly between the brick body 1 and the upper bottom plate 2, the two insertion rods 7 respectively enter the first insertion slot 8 and the second insertion slot 9, and the matched vertical plate 6 and the vertical slot 10 further limit the vertical displacement and the movement in the horizontal direction.

[0024] In addition, another structure of the first connecting piece can also be as shown in Figure 7 The side of the brick body 1 is provided with a first insertion slot 8 matched with the insertion rod 7, the side of the upper bottom plate 2 is provided with a second insertion slot 9 matched with the insertion rod 7, the side of the brick body 1 and the upper bottom plate 2 between the first insertion slot 8 and the second insertion slot 9 is provided with a vertical slot 10 matched with the vertical plate 6, the C-shaped insert can completely enter the first insertion slot 8, the second insertion slot 9 and the vertical slot 10, and is matched and inserted between the side of the brick body 1 and the side of the upper bottom plate 2, so as to avoid leaving a large gap between adjacent floor tile units, and enable the brick body 1 and the upper bottom plate 2 of adjacent floor tile units to be positioned and assembled in contact with each other.

[0025] The first connecting piece is provided in a split manner, when installing, after the brick body 1 and the upper bottom plate 2 are assembled, the vertical plate 11 can be placed into the vertical slot 10 assembled, at this time, the through holes at the upper and lower ends of the vertical plate 11 correspond to the first insertion slot 8 and the second insertion slot 9, and then the insertion rod 12 is assembled into the through hole in the vertical plate 11.

[0026] The C-shaped insert provided in an integrated manner is more easily disassembled, and the first connecting piece provided in a split manner is convenient for storage and replacement of damaged parts, thereby effectively reducing the production cost. Different designs of the first connecting piece not only enhance the stability of the connection, but also provide multiple assembly options, which are convenient for adapting to different scenes and needs, and increase the applicability and flexibility of the product.

[0027] Further, in order to realize the positioning and assembly connection between the upper bottom plate 2 and the lower bottom plate 3, as shown in Figure 8As shown, the second connecting piece includes a long strip clamping block arranged on the top surface of the lower bottom plate 3, and a long strip clamping groove matched with the long strip clamping block is arranged on the bottom surface of the upper bottom plate 2, wherein the long strip clamping block includes a rectangular block 13, and two groups of triangular blocks 14 are arranged on the upper part of the rectangular block 13 and can be extruded to be close to each other, and the width of the two groups of triangular blocks 14 is greater than the width of the rectangular block 13, and a gap is left between the two groups of triangular blocks 14.

[0028] The long strip clamping groove includes a rectangular groove 15 matched with the rectangular block 13, and a trapezoidal groove 16 communicated with the rectangular groove 15, and the trapezoidal groove 16 is matched with the two groups of triangular blocks 14, and the two groups of triangular blocks 14 can be deformed to pass through the rectangular groove 15 and enter the trapezoidal groove 16 under extrusion. After the long strip clamping block is matched and enters the long strip clamping groove, the positioning and limiting of the upper bottom plate 2 and the lower bottom plate 3 in the vertical and horizontal directions are realized through the limiting of the rectangular block 13 by the rectangular groove 15 and the limiting of the triangular block 14 by the trapezoidal groove 16, and during installation, the upper bottom plate 2 only needs to be forced downward, so that the long strip clamping block is elastically deformed and enters the long strip clamping groove.

[0029] Further, in order to realize the positioning and assembly connection between the ground brick units, as shown in Figure 9 As shown, the third connecting piece includes a limiting hole 17 arranged on the boss 4, and the limiting holes 17 of adjacent ground brick units are arranged one by one, and a limiting block 18 is matched and installed in the corresponding two limiting holes 17, and the length of the limiting block 18 is greater than the thickness of one boss 4 and less than the thickness of two bosses 4, so that the limiting block 18 located in the limiting hole 17 can realize the connection between the adjacent two bosses 4 and avoid that the too long limiting block 18 protrudes out of the limiting hole 17 to affect the positioning and connection between the upper bottom plate 2 and the lower bottom plate 3.

[0030] The structure of the boss 4 and the groove 5 matched between the upper bottom plate 2 and the lower bottom plate 3 also seals and positions the limiting hole 17, so as to avoid the disengagement of the limiting block 18 inside, and during installation, the lower bottom plate 3 at the bottom can be laid first, then the limiting block 18 is installed in the limiting hole 17 at the corresponding position, the connection between all the lower bottom plates 3 at the bottom is realized, and then the upper bottom plate 2 is buckled on the lower bottom plate 3.

[0031] The design of the boss 4 on the lower bottom plate 3 and the groove 5 on the upper bottom plate 2, and the cooperation of the limiting hole 17 and the limiting block 18 in the third connecting piece effectively limit the horizontal and vertical displacement between the ground brick units, so that the assembled ground is flat and stable, and is not easy to deform during long-term use.

[0032] Further, as shown in Figure 10As shown, the top surface of the lower bottom plate 3 is provided with a plurality of protrusions 19, and the bottom surface of the upper bottom plate 2 is provided with positioning grooves 20 matched with the protrusions 19.

[0033] The design of the protrusions 19 and the positioning grooves 20 further enhances the horizontal positioning performance between the upper bottom plate 2 and the lower bottom plate 3 in the floor tile unit, especially the combination of the square protrusions and the trapezoidal protrusions of the protrusions, which not only facilitates installation and positioning, but also effectively resists external forces, improving the stability and durability of the overall structure.

[0034] Further, in order to realize vertical limiting of the overall assembled floor tile system and to shield the assembly gap between the floor tiles and the wall surface, a skirting shielding system is arranged on the outermost floor tile unit, which comprises Figure 11 As shown, the skirting shielding system comprises a mounting plate 21 fixed on the wall surface, and a skirting line plate 22 detachably matched with the upper side of the mounting plate 21. The skirting line plate 22 is located on the upper side of the tile body 1 of the outermost floor tile unit. Since the floor tile units are assembled into a whole, the skirting line plate 22 located at the outermost position can limit all floor tiles in the height direction, and the addition of the skirting shielding system can shield the gap near the wall surface and enhance the overall aesthetics and practicability.

[0035] The assembled floor tile system comprises a plurality of floor tile units connected and assembled, realizes stable assembly and connection between the floor tiles and the ground, and ensures the connection stability and precision of the floor tile units and between the units through the arrangement of the first connecting member, the second connecting member and the third connecting member. The system does not need to rely on traditional cement mortar, greatly shortens the construction period, reduces the construction cost, and improves the paving quality. In addition, the arrangement of the skirting shielding system further improves the overall aesthetics. The assembled floor tile system has the advantages of easy disassembly, convenient maintenance and upgrading, and meets the green and sustainable development concept of modern buildings.

[0036] The assembled floor tile system has the characteristics of efficient and stable assembly structure, flexible and diverse connection form, precise positioning and displacement prevention design, enhanced structural strength and stability, convenient maintenance and expansion, and environmental protection and energy saving, and provides a new solution for modern building floor decoration, and has broad market application prospect and social and economic value.

[0037] The technical scheme of the present application is not limited to the scope of the embodiments described in the present application. The technical content not described in detail in the present application is known technology.

Claims

1. A modular floor tile system, characterized in that: The system includes several assembled and connected floor tile units. Each floor tile unit includes a brick body (1), an upper base plate (2), and a lower base plate (3) arranged from top to bottom. Several first connectors are provided between the side of the brick body (1) and the side of the upper base plate (2). The first connectors can restrict the horizontal and vertical displacement between the brick body (1) and the upper base plate (2). Several second connectors are provided between the upper base plate (2) and the lower base plate (3). The second connectors can restrict the horizontal and vertical displacement between the upper base plate (2) and the lower base plate (3). The lower base plate (3) has a boss (4) on its outer periphery. The bottom of the upper base plate (2) has a groove (5) that matches the boss (4). A third connector is provided in the boss (4) of the lower base plate (3) in adjacent floor tile units. The third connector can restrict the horizontal and vertical displacement between the lower base plates (3) in adjacent floor tile units.

2. The modular floor tile system according to claim 1, characterized in that: The first connector is a C-type plug-in. The C-type plug-in includes a vertical plate (6). Horizontally arranged insert rods (7) are fixed on the same side of the upper and lower ends of the vertical plate (6). A first slot (8) that cooperates with the insert rods (7) is opened on the side of the brick body (1). A second slot (9) that cooperates with the insert rods (7) is opened on the side of the upper base plate (2). A vertical groove (10) that cooperates with the vertical plate (6) is opened on the side of the brick body (1) and the upper base plate (2) between the first slot (8) and the second slot (9). The C-type plug-in can be inserted between the side of the brick body (1) and the side of the upper base plate (2).

3. The modular floor tile system according to claim 1, characterized in that: The first connector includes a vertical plate (11), with through holes at the upper and lower ends of the vertical plate (11). A detachable insert (12) is installed in the through hole. A first slot (8) that mates with the insert (12) is opened on the side of the brick (1). A second slot (9) that mates with the insert (12) is opened on the side of the upper base plate (2). A vertical groove (10) that mates with the vertical plate (11) is opened on the side of the brick (1) and the upper base plate (2) between the first slot (8) and the second slot (9). The first connector can be inserted between the side of the brick (1) and the side of the upper base plate (2).

4. The modular floor tile system according to claim 1, characterized in that: The second connector includes a long strip block on the top surface of the lower base plate (3) and a long strip slot on the bottom surface of the upper base plate (2) that cooperates with the long strip block. The long strip block includes a rectangular block (13). The upper part of the rectangular block (13) is provided with two sets of triangular blocks (14) that can be squeezed together. The width of the two sets of triangular blocks (14) is greater than the width of the rectangular block (13). The long strip slot includes a rectangular groove (15) that cooperates with the rectangular block (13) and a trapezoidal groove (16) that communicates with the rectangular groove (15). The trapezoidal groove (16) cooperates with the two sets of triangular blocks (14). Under compression, the two sets of triangular blocks (14) can deform and enter the trapezoidal groove (16) through the rectangular groove (15).

5. The modular floor tile system according to claim 1, characterized in that: The third connector includes a limiting hole (17) opened on the boss (4). The limiting holes (17) of adjacent floor tile units are arranged in a corresponding manner. A limiting block (18) is installed in the corresponding two limiting holes (17). The length of the limiting block (18) is greater than the thickness of one boss (4) and less than the thickness of two bosses (4).

6. The modular floor tile system according to claim 1, characterized in that: The bottom plate (3) has several protrusions (19) on its top surface, and the bottom plate (2) has a positioning groove (20) that matches the protrusions (19) on its bottom surface.

7. The assembled floor tile system according to claim 6, characterized in that: The protrusion (19) includes a square protrusion, and trapezoidal protrusions are provided on all four sides of the square protrusion. The protrusion (19) and the second connector are arranged at intervals.

8. The modular floor tile system according to claim 1, characterized in that: It also includes a skirting board system set on the outermost floor tile unit, the skirting board system including a mounting plate (21) that can be fixed to the wall, and a skirting board (22) that can be detached and fitted on the upper side of the mounting plate (21), the skirting board (22) being located on the upper side of the brick body (1) of the outermost floor tile unit.