Composite floor splicing structure

By introducing splicing and limiting components into composite flooring, combined with pin locking, the problem of the flooring being difficult to disassemble individually in the prior art is solved, enabling convenient floor replacement and improving maintenance efficiency.

CN223767087UActive Publication Date: 2026-01-06NANTONG JUKE NEW MATERIAL TECH CO LTD
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Patent Information

Application Number
CN202520272015.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-20
Publication Date
2026-01-06
Estimated Expiration
2035-02-20

AI Technical Summary

Technical Problem

The existing splicing structure of composite flooring makes it inconvenient to disassemble individual floorboards, leading to increased maintenance costs and time.

Method used

The system employs splicing and limiting components, including a first storage hole, limiting posts, and springs, combined with a locking pin design, to enable the detachable splicing of the flooring.

Benefits of technology

It enables easy removal of individual floorboards, avoiding the need to remove the entire area's flooring and reducing maintenance costs and time.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a composite floor splicing structure, and relates to the technical field of floor splicing, the composite floor splicing structure comprises a floor body, a first bending piece and a second bending piece, the first bending piece is arranged on one side of the floor body, the second bending piece is arranged on the other side of the floor body, a first storage hole is formed in the floor body, and a second storage hole is formed in the floor body. First limiting clamping columns are slidably connected to the interiors of the first storage holes correspondingly, first springs are arranged between the first limiting clamping columns and the first storage holes correspondingly, and a plurality of first limiting holes matched with the first limiting clamping columns in shape and specification are formed in the side, away from the floor body, of the first bending piece; according to the spliced floor, the splicing assembly and the limiting assembly are arranged, so that the effect of splicing a plurality of floor bodies is achieved, and a single floor body can be detached as needed, so that replacement is completed.
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Description

Technical Field

[0001] This utility model relates to the field of floor splicing technology, specifically a composite floor splicing structure. Background Technology

[0002] Composite flooring is a modern floor decoration material. It is made of multiple layers of different materials, bonded and pressed through special processes, and has high stability, durability and decorative effect. The composite floor splicing structure is a structure in which several composite floorboards are spliced ​​together.

[0003] The patent document with announcement number CN222276039U describes a type of interlocking solid wood composite flooring. The described solution utilizes a combination of a first buckle and a second buckle. When splicing two adjacent composite flooring bodies, the interlocking of the first and second buckles facilitates the limiting of the relative position between the adjacent composite flooring bodies, preventing large gaps between them. At the same time, the gap between the first and second buckles forms a maze shape, preventing dust from falling smoothly through the first and second buckles.

[0004] While the aforementioned technology allows for splicing, it is not convenient to remove individual floorboards. If a floorboard has scratches, damage, bulges, water stains, or other problems, and is not designed for easy disassembly, then a large number of floorboards in the entire area need to be removed to address the local problem, which will increase maintenance costs and time. If the floorboard latches or edges are damaged, other parts may also be damaged. Summary of the Invention

[0005] The purpose of this invention is to provide a composite flooring splicing structure to solve the problem in the prior art that it is inconvenient to remove individual floorboards.

[0006] To achieve the above objectives, this utility model provides the following technical solution:

[0007] A composite flooring splicing structure, comprising:

[0008] Floor body;

[0009] The first bending member is located on one side of the floor body;

[0010] The second bending member is located on the other side of the floor body;

[0011] It also includes a splicing assembly for splicing the first bent piece. The splicing assembly includes a plurality of first storage holes. The plurality of first storage holes are all opened inside the floor body on the side away from the first bent piece. A first limiting post is slidably connected inside the plurality of first storage holes. A first spring is provided between the first limiting post and the first storage hole. A plurality of first limiting holes adapted to the shape and specifications of the first limiting post are opened on the side of the first bent piece away from the floor body.

[0012] The first bending member is provided with a limiting component to limit the second bending member, and both sides of the floor body are provided with locking components to lock the floor body.

[0013] Based on the above technical solutions, this utility model also provides the following optional technical solutions:

[0014] In one alternative: the limiting component includes a plurality of second storage holes, all of which are opened inside the first bending member, and a second limiting post is slidably connected inside each of the plurality of second storage holes. A second spring is provided between the second limiting post and the second storage hole. A plurality of second limiting holes with shapes and specifications adapted to the second limiting post are opened on the side of the second bending member close to the floor body.

[0015] In one alternative: the locking assembly includes two pins, both of which are located on one side of the floor body, and a third limiting hole adapted to the shape and specifications of the pins is also provided on the side of the floor body away from the pins.

[0016] In one alternative: the floor body and the second bending member are provided with silicone pads at their bottoms, the floor body and the first bending member are provided with sound insulation layers at their tops, the sound insulation layers are provided with waterproof layers at their tops, and the waterproof layers are provided with wear-resistant layers at their tops.

[0017] In one alternative: a plurality of first storage holes and a plurality of second storage holes are alternately arranged.

[0018] In one alternative: the pin and the third limiting hole are on the same horizontal line.

[0019] In one alternative: the first bent component and the second bent component have matching shapes and specifications.

[0020] In one alternative: the ends of both the first limiting pin and the second limiting pin are arc-shaped.

[0021] Compared with the prior art, the beneficial effects of this utility model are as follows:

[0022] This utility model achieves the effect of splicing several floor panels by setting splicing components and limiting components. It can also disassemble individual floor panels when needed to complete the replacement, thus avoiding the situation where a large number of floor panels in the entire area need to be removed because they cannot be disassembled individually, thereby increasing maintenance costs and time. Attached Figure Description

[0023] Figure 1 This is a schematic diagram of the structure of this utility model.

[0024] Figure 2 This is a cross-sectional view of the structure of the second bending component of this utility model.

[0025] Figure 3 This is a cross-sectional view of the floor body of this utility model.

[0026] Figure 4 This is a cross-sectional view of the structure of the first bending component of this utility model.

[0027] The components are as follows: 100, floor body; 200, first bending component; 300, second bending component; 401, first storage hole; 402, first limiting post; 403, first spring; 404, first limiting hole; 501, second storage hole; 502, second limiting post; 503, second spring; 504, second limiting hole; 601, pin; 602, third limiting hole; 701, silicone pad; 702, sound insulation layer; 703, waterproof layer; 704, wear-resistant layer. Detailed Implementation

[0028] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments.

[0029] In one embodiment, such as Figures 1-4As shown, a composite flooring splicing structure includes: a flooring body 100, a first bending member 200, a second bending member 300, and a splicing assembly. The first bending member 200 is disposed on one side of the flooring body 100, and the second bending member 300 is disposed on the other side of the flooring body 100. The splicing assembly includes a plurality of first storage holes 401, each of which is located inside the flooring body 100 on the side away from the first bending member 200. A first limiting post 402 is slidably connected inside each of the first storage holes 401. A first spring 403 is provided between each of the first limiting post 402 and the first storage hole 401. A first bending member 200 is located on the side away from the flooring body 100. There are several first limiting holes 404 that are adapted to the shape and specifications of the first limiting pin 402. The first bending member 200 is provided with a limiting component for limiting the second bending member 300. Both sides of the floor body 100 are provided with locking components for locking the floor body 100. By placing the first bending member 200 inside the second bending member 300, as the first bending member 200 continues to descend, it squeezes the first limiting pin 402, and then squeezes the first spring 403, so that the first limiting pin 402 moves inside the first receiving hole 401. When the first limiting pin 402 reaches the first limiting hole 404, it will rebound under the action of the first spring 403, and thus reach the first limiting hole 404.

[0030] In one embodiment, such as Figure 2 and Figure 4 As shown, the limiting component includes a plurality of second storage holes 501, all of which are opened inside the first bending member 200. A second limiting post 502 is slidably connected inside each of the second storage holes 501. A second spring 503 is provided between each of the second limiting post 502 and the second storage hole 501. A plurality of second limiting holes 504, matching the shape and specifications of the second limiting post 502, are opened on the side of the second bending member 300 near the floor body 100. The movement of the first bending member 200 not only squeezes the first limiting post 402 but also squeezes the second limiting post 502 when in contact with the second bending member 300, thereby squeezing the second spring 503. This causes the second limiting post 502 to move inside the second storage hole 501. When the second limiting post 502 reaches the second limiting hole 504, it rebounds under the action of the second spring 503, thus reaching the second limiting hole 504.

[0031] In one embodiment, such as Figure 1 and Figure 2As shown, the locking assembly includes two pins 601, both of which are located on one side of the floor body 100. The floor body 100 also has a third limiting hole 602 on the side away from the pins 601, which is adapted to the shape and specifications of the pins 601. The locking is further achieved by inserting the pins 601 into the third limiting hole 602.

[0032] In one embodiment, such as Figure 1 and Figure 2 As shown, the floor body 100 and the second bending member 300 are provided with a silicone pad 701 at the bottom, the floor body 100 and the first bending member 200 are provided with a sound insulation layer 702 at the top, the sound insulation layer 702 is provided with a waterproof layer 703 at the top, and the waterproof layer 703 is provided with a wear-resistant layer 704 at the top. The silicone pad 701 can add elastic material support points at the bottom of the floor body 100, so that it can generate elastic deformation according to the changes in the height of the ground, thereby filling the unevenness of the ground. The sound insulation layer 702 can absorb and disperse vibration and reduce the transmission of noise. The waterproof layer 703 can prevent liquid from penetrating into the interior of the floor or causing stains. The wear-resistant layer 704 can prevent the surface of the floor body 100 from being damaged by frequent stepping or furniture movement.

[0033] In one embodiment, such as Figure 1 , Figure 2 , Figure 3 and Figure 4 As shown, a plurality of first storage holes 401 and a plurality of second storage holes 501 are staggered to avoid the first limiting post 402 and the second limiting post 502 from overlapping.

[0034] In one embodiment, such as Figure 1 and Figure 2 As shown, the pin 601 and the third limiting hole 602 are on the same horizontal line, which makes it easy to insert the pin 601 into the third limiting hole 602.

[0035] In one embodiment, such as Figure 1 and Figure 2 As shown, the first bending member 200 and the second bending member 300 are compatible in shape and size, which facilitates the fitting of the first bending member 200 and the second bending member 300 together.

[0036] In one embodiment, such as Figure 3 and Figure 4 As shown, the ends of the first limiting pin 402 and the second limiting pin 502 are both arc-shaped, which facilitates squeezing the first limiting pin 402 and the second limiting pin 502.

[0037] The above embodiment discloses a composite flooring splicing structure. When splicing the flooring body 100, a first bending member 200 is placed inside a second bending member 300. As the first bending member 200 descends, it presses against a first limiting post 402, which in turn presses against a first spring 403. This causes the first limiting post 402 to move inside the first receiving hole 401. When the first limiting post 402 reaches the first limiting hole 404, it rebounds under the action of the first spring 403, thus reaching the first limiting hole 404 and limiting the first bending member 200. The movement of the first bending member 200 will not only squeeze the first limiting post 402, but also squeeze the second limiting post 502 when it comes into contact with the second bending member 300, thereby squeezing the second spring 503. This will cause the second limiting post 502 to move inside the second receiving hole 501. When the second limiting post 502 reaches the second limiting hole 504, it will rebound under the action of the second spring 503, thus reaching the second limiting hole 504, thereby fitting the first bending member 200 and the second bending member 300 together. The locking can also be further achieved by inserting the pin 601 into the third limiting hole 602.

[0038] The above description is merely a specific embodiment of this application, but the scope of protection of this application is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the technical scope disclosed in this application should be included within the scope of protection of this application. Therefore, the scope of protection of this application should be determined by the scope of the claims.

Claims

1. A composite floor splicing structure, comprising: a floor body (100); a first bending piece (200) arranged on one side of the floor body (100); a second bending piece (300) arranged on the other side of the floor body (100); characterized in that it further comprises a splicing assembly for splicing the first bending piece (200), the splicing assembly comprising a plurality of first receiving holes (401) each arranged in the interior of the side of the floor body (100) away from the first bending piece (200), each of the first receiving holes (401) being slidably connected with a first limiting clamping column (402), and each of the first limiting clamping column (402) and the first receiving hole (401) being provided with a first spring (403), and the side of the first bending piece (200) away from the floor body (100) being provided with a plurality of first limiting holes (404) matching the shape and size of the first limiting clamping column (402); the first bending piece (200) being provided with a limiting assembly for limiting the second bending piece (300), and the floor body (100) being provided with a locking assembly for locking the floor body (100) on both sides.

2. The composite floor splicing structure according to claim 1, wherein, the limiting assembly comprising a plurality of second receiving holes (501) each arranged in the interior of the first bending piece (200), each of the second receiving holes (501) being slidably connected with a second limiting clamping column (502), and each of the second limiting clamping column (502) and the second receiving hole (501) being provided with a second spring (503), and the side of the second bending piece (300) close to the floor body (100) being provided with a plurality of second limiting holes (504) matching the shape and size of the second limiting clamping column (502).

3. The composite floor splicing structure according to claim 1, wherein the locking assembly comprising two latches (601) each arranged on one side of the floor body (100), and the side of the floor body (100) away from the latches (601) being further provided with third limiting holes (602) matching the shape and size of the latches (601).

4. The composite floor splicing structure according to claim 1, wherein the floor body (100) and the second bending piece (300) being provided with silica gel pads (701) at the bottom, the floor body (100) and the first bending piece (200) being provided with sound insulation layers (702) at the top, the sound insulation layers (702) being provided with waterproof layers (703) at the top, and the waterproof layers (703) being provided with wear-resistant layers (704) at the top.

5. The composite floor splicing structure according to claim 2, wherein the plurality of first receiving holes (401) and the plurality of second receiving holes (501) being staggered.

6. The composite floor splicing structure according to claim 3, wherein the latches (601) and the third limiting holes (602) being on the same horizontal line.

7. The composite floor panel according to claim 1, wherein, the first bending piece (200) and the second bending piece (300) matching in shape and size.

8. The composite floor splicing structure according to claim 2, wherein the end of the first limiting clamping column (402) and the end of the second limiting clamping column (502) each being arc-shaped.

Citation Information

Patent Citations

  • Splicing type solid wood composite floor

    CN222276039U