Fabricated dry floor tile mechanism

By using a support structure of keel and rubber pads in prefabricated dry floor tiles, the problems of low installation accuracy, vibration and noise are solved, and the precise positioning and quick replacement of floor tiles are achieved.

CN223593725UActive Publication Date: 2025-11-25SICHUAN PROVINCIAL ARCHITECTURAL DESIGN & RES INST
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202423195984.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-24
Publication Date
2025-11-25
Estimated Expiration
2034-12-24

AI Technical Summary

Technical Problem

Existing prefabricated dry floor tiles have problems such as low installation and positioning accuracy, easy vibration and structural noise, and difficulty in replacement after damage.

Method used

The structure adopts a support structure, including multiple keels and rubber pads. The keels form a filling cavity and are filled with foaming agent. The floor tiles are embedded in the tile grooves and are limited by convex plates. The rubber pads overlap with the keels to reduce vibration and noise. The floor tiles can be quickly replaced when damaged.

Benefits of technology

It improves the installation accuracy of floor tiles, reduces vibration and noise, simplifies the replacement process of floor tiles, and enhances the positioning and installation stability of floor tiles.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223593725U_ABST
    Figure CN223593725U_ABST
Patent Text Reader

Abstract

The utility model discloses an assembly type dry floor tile mechanism which comprises a supporting body, a plurality of rubber filler strips and a plurality of floor tiles, the supporting body comprises a plurality of keels, the keels are laid on the ground, a filling cavity is defined by the keels and used for being filled with foaming agents, all the filling cavities are spliced to form the layered supporting body, a plurality of caulking grooves are formed in the tops of the keels, and the rubber filler strips are embedded in the caulking grooves. Convex plates are vertically arranged in the length direction of the keels, so that all the convex plates of all the keels surrounding each filling cavity form a brick groove in a surrounding manner; the rubber filler strips are in one-to-one correspondence with the caulking grooves, and the bottoms of the rubber filler strips are embedded in the corresponding caulking grooves; the floor tiles correspond to the tile grooves one to one, the floor tiles are embedded in the corresponding tile grooves, and the bottom faces of the floor tiles are in lap joint with the corresponding keels through rubber filler strips. The assembly type dry floor tile can solve the problems that an existing assembly type dry floor tile is not high in assembly precision, vibration and structural noise are prone to being generated, and replacement is not easy after damage.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The utility model relates to ground decoration technical field, concretely relates to a kind of assembly type dry floor tile mechanism. BACKGROUND

[0002] Assembly type dry floor tile is a new ground laying technology, usually used in ground decoration of building, shopping mall, residence and the like. Unlike traditional wet laying (using cement mortar), assembly type dry floor tile is laid without glue and cement mortar. Its core feature is to connect or install floor tiles on base layer by mechanical device, thereby avoiding time, resources and drying period required for wet construction.

[0003] Existing assembly type dry floor tile has the following problems: (1) due to the absence of cement mortar, glue and other adhesive materials, vibration and structural noise are easily generated when stepped on; (2) installation positioning accuracy of floor tile is not high during assembly; (3) floor tile is not easy to replace after damage. UTILITY MODEL CONTENTS

[0004] The utility model aims to provide an assembly type dry floor tile mechanism, which can solve the problems of low assembly accuracy, easy vibration and structural noise generation and difficult replacement after damage of existing assembly type dry floor tile.

[0005] The utility model is implemented by the following technical solutions:

[0006] An assembly type dry floor tile mechanism includes a support body, which includes a plurality of keels. The keels are laid on the ground. A plurality of keels surrounds to form a filling cavity. The filling cavity is used to fill a foaming agent. All filling cavities are connected to form a layered support body. The top of the keel is provided with a plurality of embedding grooves. A vertical protruding plate is arranged along the length direction of the keel, so that all protruding plates of all keels surrounding each filling cavity surround to form a tile groove. A plurality of rubber pad strips are provided. The rubber pad strips correspond to the embedding grooves one by one. The bottom of the rubber pad strip is embedded in the corresponding embedding groove. A plurality of floor tiles are provided. The floor tiles correspond to the tile grooves one by one. The floor tiles are embedded in the corresponding tile grooves. The bottom surface of the floor tile is overlapped with the corresponding keel through the rubber pad strip.

[0007] Optionally, a plurality of injection holes are provided in the side wall of the keel. The inner end of the injection hole is communicated with the corresponding filling cavity.

[0008] Optionally, all the keels include a plurality of female keels and a plurality of male keels, and all the female keels include a plurality of standard keels and a plurality of edge keels; the standard keel is in the shape of a horizontally arranged strip, two sides of the width direction of the standard keel are symmetrically provided with splicing sides, the middle of the top of the standard keel is provided with the protruding plate along the length direction, and two embedding grooves are symmetrically formed along the length direction on both sides of the protruding plate of the top of the standard keel; the edge keel is in the shape of a horizontally arranged strip, and the length of the edge keel is the same as that of the standard keel, one side of the width direction of the edge keel is the splicing side, and the other side is provided with a vertical plane, the embedding groove is formed along the length direction on the middle of the top of the edge keel, and the protruding plate is arranged along the length direction on the side of the top of the edge keel close to the vertical plane; the male keel is in the shape of a horizontally arranged strip, two ends of the length direction of the male keel are provided with splicing ends, the splicing ends can be spliced with any one of the splicing sides, the protruding plate is arranged along the length direction on the middle of the top of the male keel, and two embedding grooves are symmetrically formed along the length direction on both sides of the protruding plate of the top of the male keel.

[0009] Optionally, the splicing side is in the shape of a U, and the splicing end of the male keel can be inserted into the splicing side to form the filling cavity in the shape of a rectangular frame.

[0010] Optionally, the bottom of the keel is rotatably connected with a leveling bolt; a plurality of adjusting holes are vertically and penetratively formed in the keel, and the adjusting holes correspond to the leveling bolts one by one and are located directly above the corresponding leveling bolts.

[0011] Optionally, the keel is provided with a hollow cavity along the length direction, and both ends of the hollow cavity penetrate through the keel.

[0012] Optionally, the hollow cavity is a cuboid cavity, the long side and the width side of the hollow cavity are arranged on a horizontal plane, and the height side is vertically arranged.

[0013] Optionally, the embedding groove is formed above the hollow cavity; the rubber pad strip includes an embedding part and a limiting part, both the embedding part and the limiting part are in the shape of a cuboid plate, the shape of the embedding part matches that of the embedding groove, the limiting part is located on the top of the embedding part, and the width of the limiting part is greater than that of the embedding part, so that both sides of the width direction of the limiting part can be arranged on the top surface of the keel.

[0014] Optionally, a fitting gap is reserved between the side of the limiting part close to the adjacent protruding plate and the protruding plate in the width direction of the limiting part.

[0015] Optionally, the height of the top of the protruding plate is higher than the height of the top of the limiting part and lower than the height of the top of the floor tile, so as to form a filling gap between the adjacent two floor tiles.

[0016] Compared with the prior art, the present application has the following advantages and beneficial effects:

[0017] The assembly type dry type floor tile mechanism has the advantages that the installation height of the floor tile is raised by the support body, so that the problem of vibration and structural noise caused by direct contact between the floor tile and the ground is preliminarily reduced; the support body is formed by a plurality of keels, so that the support body with a proper size can be formed by adaptive splicing according to the size of the long field during paving; the support body is formed by a plurality of keels, so that the problem of vibration and structural noise caused by direct contact between the floor tile and the ground is further reduced; the vibration and structural noise caused by direct contact between the floor tile and the ground are further avoided by the rubber pad strip embedded in the groove and the floor tile paved on the top surface of the rubber pad strip; the paving position of the floor tile is accurately positioned and limited by the convex plate, the brick groove formed by the convex plate and the limitation of the paving of the floor tile; and when the floor tile is damaged, the damaged floor tile can be removed and replaced with a new one, so that the damaged floor tile can be easily replaced. BRIEF DESCRIPTION OF DRAWINGS

[0018] The accompanying drawings, which are included to provide a further understanding of the embodiments of the present application and constitute a part of the application, illustrate embodiments of the present application and do not constitute a limitation to the embodiments of the present application. In the drawings:

[0019] Figure 1 A schematic view of the assembly type dry type floor tile mechanism provided by the embodiments of the present application;

[0020] Figure 2 A schematic view of the filling cavity of the assembly type dry type floor tile mechanism provided by the embodiments of the present application;

[0021] Figure 3 A schematic view of the male keel and the female keel of the assembly type dry type floor tile mechanism provided by the embodiments of the present application when the male keel and the female keel are inserted;

[0022] Figure 4 A schematic view of the standard keel of the assembly type dry type floor tile mechanism provided by the embodiments of the present application;

[0023] Figure 5 A schematic view of the edge keel of the assembly type dry type floor tile mechanism provided by the embodiments of the present application;

[0024] Figure 6The utility model discloses a schematic diagram of the public keel of the assembled dry type floor tile mechanism.

[0025] Figure 7 The utility model discloses a schematic diagram of the rubber pad strip of the assembled dry type floor tile mechanism.

[0026] Figure 8 The utility model discloses a sectional view schematic diagram of the standard keel of the assembled dry type floor tile mechanism.

[0027] Markings in the drawing and corresponding component names:

[0028] 10-keel, 101-injection hole, 102-adjusting hole, 11-embedded groove, 12-protruding plate, 13-standard keel, 14-edge keel, 15-hollow cavity, 16-leveling bolt, 17-public keel, 20-rubber pad strip, 21-embedded part, 22-limiting part, 30-floor tile. DETAILED DESCRIPTION

[0029] In order to make the purpose, technical scheme and advantage of the utility model more clearly, the utility model is further explained in detail below by combining with examples and drawings, and the illustrative embodiment and the explanation of the utility model are only used for explaining the utility model, and do not serve as the limitation of the utility model.

[0030] EMBODIMENT

[0031] Please refer to Figures 1 to 8 The utility model provides a kind of assembled dry type floor tile mechanism, including support body, the support body includes multiple keels 10, the keel 10 is laid on ground, multiple the keel 10 is surrounded and is formed a filling cavity, the filling cavity is used to fill foaming agent, all the filling cavity is spliced and is formed the support body of layer, the top of the keel 10 is provided with several embedded grooves 11, and protruding plate 12 is vertically along the length direction of the keel 10 is equipped, so that all the protruding plate 12 of all the keel 10 surrounding each filling cavity is surrounded and is formed a tile groove;Second including multiple rubber pad strips 20, the rubber pad strip 20 is one-to-one with the embedded groove 11, the bottom of the rubber pad strip 20 is embedded in corresponding embedded groove 11;Third includes multiple floor tiles 30, the floor tile 30 is one-to-one with the tile groove, the floor tile 30 is embedded in corresponding tile groove, and the bottom surface of the floor tile 30 is overlapped with corresponding keel 10 by the rubber pad strip 20.

[0032] The assembly type dry floor tile mechanism provided by the embodiment preliminarily reduces the problem that vibration and structural noise are easily generated when the floor tile 30 directly contacts the ground by setting the support body to raise the installation height of the floor tile 30, so that the floor tile 30 indirectly contacts the ground; the support body includes a plurality of keels 10, which are adapted to be spliced according to the size of the long field when laid to form a support body with a proper size, and the plurality of keels 10 are arranged to form a filling cavity, so that the filling cavity is spliced to form a layered support body, and a foaming agent can be filled in the filling cavity to further reduce the problem that vibration and structural noise are easily generated when the floor tile 30 directly contacts the ground; a plurality of embedding grooves 11 are formed in the top of the keel 10, and the rubber pad strip 20 is arranged, so that the bottom of the rubber pad strip 20 is embedded in the embedding groove 11, and the floor tile 30 is laid on the top surface of the rubber pad strip 20, so as to further avoid the problem that vibration and structural noise are easily generated when the floor tile 30 directly contacts the ground; the protruding plate 12 is arranged on the top of the keel 10, the protruding plate 12 is arranged to form a tile groove, the laying of the floor tile 30 is limited by the tile groove, so that the floor tile 30 can only be embedded in the corresponding tile groove, so as to accurately position and limit the laying position of the floor tile 30, and when the floor tile 30 is damaged, the damaged floor tile 30 only needs to be pried off and replaced with a new floor tile 30, and the process only needs to be installed and positioned by the protruding plate 12 to quickly install, and the adjacent floor tile 30 will not be affected when disassembled, effectively solving the problem that the damaged floor tile 30 is not easy to replace.

[0033] In order to facilitate the filling of the foaming agent into the filling cavity, a plurality of injection holes 101 are formed in the side wall of the keel 10, and the inner end of the injection hole 101 is in communication with the corresponding filling cavity.

[0034] When installed, the foaming agent can be injected into the filling cavity through the injection hole 101 after the keel 10, the rubber pad strip 20 and the floor tile 30 are installed, so that the foaming agent can fully fill the filling cavity.

[0035] In order to further explain the specific shape of the keel 10, all the keels 10 include several female keels and several male keels 17, all the female keels include several standard keels 13 and several edge keels 14; the standard keel 13 is horizontally arranged in strip shape, the two sides of the width direction of the standard keel 13 are symmetrically arranged splicing sides, the top middle part of the standard keel 13 is provided with the convex plate 12 along the length direction, and two embedding grooves 11 are symmetrically arranged along the length direction on both sides of the top of the standard keel 13; the edge keel 14 is horizontally arranged in strip shape, and the length of the edge keel 14 is the same as the length of the standard keel 13, one side of the width direction of the edge keel 14 is the splicing side, and the other side is arranged as a vertical plane, the embedding groove 11 is arranged along the length direction on the top middle part of the edge keel 14, and the convex plate 12 is arranged along the length direction on the side of the top of the edge keel 14 close to the vertical plane; the male keel 17 is horizontally arranged in strip shape, the two ends of the length direction of the male keel 17 are arranged as splicing ends, the splicing ends can be spliced with any one of the splicing sides, the convex plate 12 is arranged along the length direction on the top middle part of the male keel 17, and two embedding grooves 11 are symmetrically arranged along the length direction on both sides of the top of the male keel 17.

[0036] By arranging the standard keel 13 and the edge keel 14, the main body of the support body is spliced by the standard keel 13, and the edge of the support body in contact with the wall body is spliced by the edge keel 14.

[0037] In order to further explain the specific structure of the splicing of the male keel 17 and the female keel, the splicing side is in the shape of a square, and the splicing end of the male keel 17 can be inserted into the splicing side to form a rectangular frame-shaped filling cavity.

[0038] In this embodiment, two male keels 17 and two female keels are used to form a rectangular frame-shaped filling cavity by surrounding and inserting, and in other embodiments, structures such as triangles and regular hexagons can also be formed by surrounding.

[0039] In order to adjust the support body according to the flatness of the ground, the bottom of the keel 10 is rotatably connected with a leveling bolt 16; the keel 10 is vertically and throughly provided with a plurality of adjustment holes 102, the adjustment holes 102 correspond to the leveling bolts 16 one by one and are located directly above the corresponding leveling bolts 16.

[0040] During adjustment, the screwdriver is inserted through the adjustment hole 102, and the corresponding keel 10 can be lifted or lowered by rotating the leveling bolt 16 with the screwdriver, so as to adjust the height of the support body.

[0041] In order to further avoid shock and provide a space for pipes or cables, the keel 10 is provided with a hollow cavity 15 along the length direction, and the two ends of the hollow cavity 15 penetrate through the keel 10.

[0042] Preferably, the hollow cavity 15 is a cuboid cavity, the long side and the wide side of the hollow cavity 15 are arranged on the horizontal plane, and the high side is arranged vertically.

[0043] In order to further explain the specific structure of the rubber pad strip 20, the embedding groove 11 is arranged above the hollow cavity 15; the rubber pad strip 20 comprises an embedding part 21 and a limiting part 22, both of which are cuboid plates, the shape of the embedding part 21 matches the shape of the embedding groove 11, the limiting part 22 is located at the top of the embedding part 21, and the width of the limiting part 22 is greater than the width of the embedding part 21, so that the two sides of the limiting part 22 in the width direction can be arranged on the top surface of the keel 10.

[0044] By arranging the embedding part 21, the rubber pad strip 20 is embedded in the embedding groove 11, and the horizontal direction of the rubber pad strip 20 is limited; by arranging the limiting part 22, the limiting part 22 is supported on the top surface of the keel 10, and the vertical direction of the rubber pad strip 20 is limited.

[0045] In order to cope with the elastic deformation of the structure during use, the side of the limiting part 22 close to the adjacent convex plate 12 in the width direction is provided with an assembly gap between the convex plate 12.

[0046] In order to avoid the convex plate 12 protruding higher than the floor tile 30 to form an obstacle, the height of the top of the convex plate 12 is higher than the height of the top surface of the limiting part 22 and lower than the height of the top surface of the floor tile 30, so as to form a filling gap between the two adjacent floor tiles 30.

[0047] By arranging the filling gap, the filling gap is filled with sealant to avoid dust accumulation in the gap.

[0048] During assembly, the spliced public keel 17 and the standard keel 13 are laid according to the ground conditions, then the edge keel 14 is used to flatten the edge, then the rubber pad strip 20 is installed in the embedding groove 11, then the floor tile 30 is laid, the foaming agent is filled in the filling cavity, and finally the sealant is filled between the laid floor tiles 30.

[0049] The above specific embodiments further explain the purpose, technical scheme and beneficial effects of the present application, and it should be understood that the above is only a specific embodiment of the present application and is not used to limit the protection scope of the present application, and any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.

Claims

1. A fabricated dry tile floor mechanism, characterized by, The application relates to a support body, which comprises a plurality of keels (10) laid on the ground, a plurality of the keels (10) surrounding a filling cavity for filling foaming agent, all the filling cavities being spliced to form a layered support body, the top of the keel (10) being provided with a plurality of embedding grooves (11), and a vertical flange (12) being arranged along the length direction of the keel (10) so that all the flanges (12) of all the keels (10) surrounding each filling cavity surround a brick groove; a plurality of rubber pad strips (20) corresponding to the embedding grooves (11), the bottom of the rubber pad strip (20) being embedded in the corresponding embedding groove (11); and a plurality of floor tiles (30) corresponding to the brick groove, the floor tile (30) being embedded in the corresponding brick groove, and the bottom surface of the floor tile (30) being overlapped with the corresponding keel (10) through the rubber pad strip (20). The side wall of the keel (10) is provided with a plurality of injection holes (101) penetrating through the side wall, and the inner end of the injection hole (101) is communicated with the corresponding filling cavity. All the keels (10) comprise a plurality of female keels and a plurality of male keels (17), all the female keels comprise a plurality of standard keels (13) and a plurality of edge keels (14), the standard keel (13) is horizontally arranged in a strip shape, the width direction of the standard keel (13) is provided with symmetrically-arranged splicing sides, the middle part of the top of the standard keel (13) is provided with the flange (12) along the length direction, and two embedding grooves (11) are symmetrically arranged along the length direction on both sides of the top of the standard keel (13). The edge keel (14) is horizontally arranged in a strip shape, the length of the edge keel (14) is the same as that of the standard keel (13), one side of the width direction of the edge keel (14) is the splicing side, and the other side is a vertical plane, the middle part of the top of the edge keel (14) is provided with the embedding groove (11) along the length direction, and the flange (12) is arranged along the length direction on the side of the top of the edge keel (14) close to the vertical plane.

2. The assembled dry floor tile mechanism according to claim 1, wherein, The male keel (17) is horizontally arranged in a strip shape, the two ends of the length direction of the male keel (17) are provided with splicing ends, the splicing ends can be spliced with any one of the splicing sides, the middle part of the top of the male keel (17) is provided with the flange (12) along the length direction, and two embedding grooves (11) are symmetrically arranged along the length direction on both sides of the top of the male keel (17).

3. The assembled dry floor tile mechanism according to claim 2, wherein, The splicing side is in the shape of a Chinese character, the splicing end of the male keel (17) can be inserted into the splicing side to surround the rectangular frame-shaped filling cavity. The bottom of the keel (10) is rotatably connected with a leveling bolt (16). The keel (10) is vertically provided with a plurality of adjusting holes (102) penetrating through the keel (10), the adjusting hole (102) corresponds to the leveling bolt (16) and is located directly above the corresponding leveling bolt (16). ​ 4. The assembled dry floor tile mechanism according to claim 3, wherein, ​ 5. The assembled dry floor tile mechanism according to claim 1, wherein, ​ ​ 6. The assembled dry floor tile mechanism according to any one of claims 1-5, wherein, The keel (10) is hollowed in length direction, both ends of the hollow cavity (15) are through the keel (10).

7. The assembled dry floor tile mechanism according to claim 6, wherein, The hollow cavity (15) is a cuboid cavity, the long side and the wide side of the hollow cavity (15) are arranged on the horizontal plane, and the high side is arranged vertically.

8. The assembled dry floor tile mechanism according to claim 7, wherein, The embedding groove (11) is arranged above the hollow cavity (15); The rubber pad strip (20) comprises an embedding part (21) and a limiting part (22), both the embedding part (21) and the limiting part (22) are cuboid plates, the shape of the embedding part (21) is matched with the shape of the embedding groove (11), the limiting part (22) is located on the top of the embedding part (21), and the width of the limiting part (22) is greater than the width of the embedding part (21), so that the two sides of the limiting part (22) in the width direction can be arranged on the top surface of the keel (10).

9. The assembled dry floor tile mechanism according to claim 8, wherein, The side of the limiting part (22) close to the adjacent convex plate (12) in the width direction is reserved with an assembly gap from the convex plate (12).

10. The assembled dry floor tile mechanism according to claim 9, wherein, The height of the top of the convex plate (12) is higher than the height of the top of the limiting part (22) and lower than the height of the top of the floor tile (30), so as to form a filling gap between the two adjacent floor tiles (30).