High-strength impact-resistant polymer stone-plastic floor

By installing a reinforcing frame and anti-warping components on the outside of the stone plastic flooring, and using mortar to solidify and reinforce the support structure, the problem of stone plastic flooring warping is solved, achieving high-strength sealing and stable connection.

CN224149083UActive Publication Date: 2026-04-21常州裕丰新材料科技有限公司
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
常州裕丰新材料科技有限公司
Filing Date
2025-05-19
Publication Date
2026-04-21

AI Technical Summary

Technical Problem

When stone plastic flooring is installed, the lack of sealing and a secure installation design on the outside can cause it to warp when humidity changes.

Method used

The system employs reinforced frames and anti-warping components, including anti-warping parts and reinforcement parts. By fitting a reinforced frame around the outside of the stone plastic flooring and applying mortar during installation to fix the support plate, fixing block, and limiting plate, the system utilizes the curing of the mortar layer to increase stability and further reinforces the connection through the design of filling holes and grooves.

Benefits of technology

This achieves a sealed and secure installation of the stone plastic flooring, preventing it from warping and enhancing its stability and connection strength.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a high-strength impact-resistant polymer stone-plastic floor which comprises a stone-plastic floor part. The reinforcing plate frame is arranged on the outer side of the stone-plastic floor piece in a sleeving mode, and a protruding plate is arranged in the center of the reinforcing plate frame; the anti-warping assembly comprises an anti-warping piece and a reinforcing piece installed in the center of the anti-warping piece, and the reinforcing piece comprises a supporting plate integrally connected with the anti-warping piece, a fixing block fixedly connected with the supporting plate and a limiting plate fixedly connected with the fixing block; through the designed reinforcing plate frame and the anti-warping assembly, the combination of the anti-warping piece and the reinforcing plate frame is reinforced by mortar and an adhesive, the anti-warping piece and the reinforcing plate frame are designed to be sealed and firm, and the purpose of sealing and reinforcing the periphery of the stone-plastic floor piece is achieved; the space between the limiting plate and a ground mortar layer is filled with the smeared mortar, when the mortar layer is solidified, the supporting plate, the fixing block and the limiting plate are reinforced, then the laying stability of the anti-warping piece is improved, and the anti-warping piece is prevented from loosening and warping.
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Description

Technical Field

[0001] This utility model belongs to the technical field of floor decoration panels, specifically relating to a high-strength, impact-resistant polymer stone-plastic floor. Background Technology

[0002] Stone plastic flooring is a commonly used type of floor decoration material. Its formal name is PVC sheet flooring, also known as stone plastic floor tiles. It is a polymer floor decoration material made of polyvinyl chloride (PVC) as the main raw material, with the addition of marble powder, additives, etc., and produced through processes such as plasticizing, calendering, heat treatment, coating, and die cutting. It has high strength and impact resistance, super wear resistance, and is lightweight. It can be used for decoration in various areas such as living room, bedroom, kitchen, and bathroom.

[0003] When laying stone plastic flooring on a room floor, mortar is usually applied to the ground first, and then the stone plastic flooring is laid. When the humidity in the room is too high, water molecules seep in through the gaps between adjacent stone plastic flooring, which can cause the stone plastic flooring to not bond firmly with the mortar, resulting in the stone plastic flooring lifting up. The outer side of the stone plastic flooring does not have a sealed and secure design, which is a shortcoming.

[0004] Existing stone plastic flooring has the problem that the outer side of the stone plastic flooring is not sealed and the installation design is not secure. To address this, this application proposes a high-strength, impact-resistant polymer stone plastic flooring. Utility Model Content

[0005] The purpose of this invention is to provide a high-strength, impact-resistant polymer stone-plastic flooring to solve the problem mentioned in the background art that the outer side of the stone-plastic flooring lacks a sealing and secure installation design.

[0006] To achieve the above objectives, this utility model provides the following technical solution: a high-strength, impact-resistant polymer stone-plastic flooring, comprising...

[0007] Stone plastic flooring components;

[0008] A reinforcing plate frame is fitted onto the outside of the stone plastic flooring component, and a protruding plate is provided at the center of the reinforcing plate frame;

[0009] An anti-warping component includes an anti-warping element and a reinforcing element installed at the center of the anti-warping element. The reinforcing element includes a support plate integrally connected to the anti-warping element, a fixing block fixedly connected to the support plate, and a limiting plate fixedly connected to the fixing block. The limiting plate has a recessed groove at its center. The surface of the anti-warping element has a filling groove, and the inner surface of the anti-warping element has a filling hole.

[0010] Preferably, the surface of the anti-warping component has an installation groove that mates with the reinforcing plate frame, the filling groove is connected to the installation groove, and a square groove is formed at the center of the inner surface of the anti-warping component, and the support plate is installed in the square groove.

[0011] Preferably, the support plate has a frame structure, the limiting plate is flush with the inner surface of the anti-warping component, and a flow gap is formed between the limiting plate and the support plate.

[0012] Preferably, the convex plate mates with the corresponding groove, the stone-plastic flooring component is embedded inside the surface of the reinforcing frame, and the surfaces of the stone-plastic flooring component and the reinforcing frame on the same side are flush.

[0013] Preferably, the reinforcing plate frame is embedded inside the anti-warping component, the surfaces of the reinforcing plate frame and the anti-warping component on the same side are flush, and the outer surface of the reinforcing plate frame is in contact with the inner surface of the anti-warping component.

[0014] Preferably, the filling hole is an hourglass shape composed of symmetrical funnels, and the diameter of the filling hole is wide at both ends and narrow at the middle.

[0015] Preferably, locking rivets a are provided on the outer surface of the reinforcing frame.

[0016] Compared with the prior art, the beneficial effects of this utility model are:

[0017] 1. In this utility model, the reinforced frame and anti-warping component are designed to strengthen the bond between the anti-warping component and the reinforced frame with mortar and adhesive. The anti-warping component and the reinforced frame serve as a sealing and firming design to achieve the purpose of sealing and reinforcing the periphery of the stone plastic flooring component.

[0018] 2. In this utility model, by designing the reinforcing components, mortar is applied to the outside of the limiting plate, so that the applied mortar fills the space between the limiting plate and the ground mortar layer. When the mortar layer is cured, the supporting plate, fixing block and limiting plate are reinforced, thereby increasing the stability of the anti-warping component and preventing the anti-warping component from loosening and warping. Attached Figure Description

[0019] Figure 1 This is a schematic diagram of the structure of this utility model;

[0020] Figure 2 This is a schematic diagram of the main structure of the anti-warping component of this utility model;

[0021] Figure 3 This is a three-dimensional structural diagram of the anti-warping component of this utility model;

[0022] Figure 4 This is a three-dimensional structural diagram of the reinforced plate frame of this utility model;

[0023] Figure 5 This is a cross-sectional structural diagram of the anti-warping component of this utility model;

[0024] In the diagram: 1. Stone plastic flooring component; 2. Reinforcing frame; 3. Anti-warping component; 4. Support plate; 5. Limiting plate; 6. Fixing block; 21. Protruding plate; 31. Filling groove; 32. Filling hole; 51. Groove. Detailed Implementation

[0025] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0026] Please see Figures 1 to 5 This utility model provides a technical solution: a high-strength, impact-resistant polymer stone-plastic flooring, comprising a stone-plastic flooring component 1; a reinforcing frame 2 sleeved on the outside of the stone-plastic flooring component 1, the reinforcing frame 2 having a protruding plate 21 at its center, the reinforcing frame 2 and the protruding plate 21 being fixed by bolts, the reinforcing frame 2 and the stone-plastic flooring component 1 being bonded by adhesive and further reinforced by rivets, the stone-plastic flooring component 1, the reinforcing frame 2, and the protruding plate 21 being pre-treated as an integral part; an anti-warping component, comprising an anti-warping element 3 and an anti-warping element installed at the center of the anti-warping element 3. The reinforcement components include a support plate 4 integrally connected to the anti-warping component 3, a fixing block 6 fixedly connected to the support plate 4, and a limiting plate 5 fixedly connected to the fixing block 6. During the installation of the stone-plastic flooring component 1, a mortar layer is first applied to the ground. Then, the anti-warping component 3 is neatly laid on the mortar layer. Next, mortar is applied to the outer side of the limiting plate 5, filling the perimeter of the fixing block 6. The applied mortar fills the space between the limiting plate 5 and the mortar layer, and the applied mortar is in contact with the mortar layer applied to the ground. When the mortar layer hardens, the reinforcing support plate 4, fixing block 6, and limiting plate 5 are reinforced to increase the stability of the anti-warping component 3 and prevent it from loosening and warping. The limiting plate 5 has a recessed groove 51 at its center, and the surface of the anti-warping component 3 has a filling groove 31. The inner surface of the anti-warping component 3 has a filling hole 32, into which mortar can be applied to further reinforce the anti-warping component 3. When the stone plastic floor component 1 is laid as a whole with the reinforcing plate frame 2 and the protruding plate 21, adhesive is applied to the groove 51. The reinforcing frame 2 and the protruding plate 21 are embedded inside the anti-warping component 3. The protruding plate 21 is embedded inside the limiting plate 5. The protruding plate 21 is in contact with the adhesive. Then, waterproof sealing adhesive is filled into the filling groove 31 to increase the sealing and stability of the connection between the anti-warping component 3 and the reinforcing frame 2, thereby reinforcing the stone plastic floor component 1 and preventing the stone plastic floor component 1 from warping. The anti-warping component 3 and the reinforcing frame 2 in this application are made of high-strength and impact-resistant polymer materials, such as flooring materials composed of PVC, stone powder and glass fiber layers.

[0027] In this embodiment, the surface of the anti-warping component 3 is provided with an installation groove that cooperates with the reinforcing plate frame 2. The reinforcing plate frame 2 is embedded in the installation groove. The reinforcing plate frame 2 and the anti-warping component 3 are combined and connected. The filling groove 31 is connected to the installation groove. A square groove is provided at the center of the inner surface of the anti-warping component 3. The support plate 4 is installed in the square groove. Mortar can be filled into the square groove to reinforce the support plate 4.

[0028] In this embodiment, the support plate 4 is a frame structure, the limiting plate 5 is flush with the inner surface of the anti-warping component 3, and a flow gap is formed between the limiting plate 5 and the support plate 4. When mortar is filled into the square groove, the mortar passes through the flow gap and fills the space between the limiting plate 5 and the mortar layer applied to the ground, thus reinforcing the support plate 4 and the limiting plate 5.

[0029] In this embodiment, the convex plate 21 cooperates with the corresponding groove 51. When the reinforcing plate frame 2 is embedded in the anti-warping component 3, the convex plate 21 is embedded inside the groove 51, the stone plastic floor component 1 is embedded inside the surface of the reinforcing plate frame 2, the surfaces of the stone plastic floor component 1 and the reinforcing plate frame 2 on the same side are flush, the stone plastic floor component 1 and the reinforcing plate frame 2 are combined and connected, the reinforcing plate frame 2 is embedded inside the anti-warping component 3, the surfaces of the reinforcing plate frame 2 and the anti-warping component 3 on the same side are flush, and the outer surface of the reinforcing plate frame 2 is in contact with the inner surface of the anti-warping component 3.

[0030] In this embodiment, the filling hole 32 is an hourglass shape composed of symmetrical funnels, and the diameter of the two ends of the filling hole 32 is wide and the diameter of the middle position is narrow. Applying mortar into the filling hole 32 further reinforces the anti-warping component 3. The large contact area of ​​the conical surface on the inner surface of the filling hole 32 can increase the area of ​​firm bonding and increase the firmness.

[0031] In this embodiment, locking rivets a are provided on the outer surface of the reinforcing plate frame 2, and the reinforcing plate frame 2 and the stone plastic floor component 1 are reinforced by locking rivets a.

[0032] Working principle and usage process of this utility model:

[0033] During the installation of the stone plastic flooring component 1, the reinforcing frame 2 is bonded to the stone plastic flooring component 1 with glue and further reinforced by rivets. The stone plastic flooring component 1, the reinforcing frame 2 and the protruding plate 21 are pre-treated as an integral part.

[0034] When laying stone plastic flooring component 1, first apply a mortar layer to the ground;

[0035] Then, lay the anti-warping component 3 neatly on the mortar layer;

[0036] Then, mortar is applied to the inside of the anti-warping component 3 and the outside of the limiting plate 5, so that the applied mortar fills the periphery of the fixing block 6, the applied mortar fills the space between the limiting plate 5 and the mortar layer, and the applied mortar is in contact with the mortar layer applied on the ground.

[0037] When the mortar layer hardens, the support plate 4, fixing block 6 and limiting plate 5 are reinforced to increase the stability of the anti-warping component 3 and prevent the anti-warping component 3 from loosening and warping.

[0038] Apply mortar into the filling hole 32 to further reinforce the anti-warping component 3. The large contact area of ​​the conical surface on the inner surface of the filling hole 32 can increase the area for strong bonding and increase the firmness.

[0039] When the stone plastic flooring component 1 is laid as a whole with the reinforcing frame 2 and the convex plate 21, the adhesive is applied to the groove 51, the reinforcing frame 2 and the convex plate 21 are embedded in the anti-warping component 3, the convex plate 21 is embedded in the limiting plate 5, and the convex plate 21 is in contact with the adhesive.

[0040] Then, waterproof sealing adhesive is filled into the filling groove 31 to increase the sealing and stability of the connection between the anti-warping component 3 and the reinforcing frame 2, thereby reinforcing the stone plastic floor component 1 and preventing the stone plastic floor component 1 from warping.

[0041] In summary: The exterior of the stone plastic flooring features an enhanced sealing and robust installation design. The anti-warping component 3 and the reinforcing frame 2 serve as a sealing and robust design. As the applied mortar cures, the combination of the anti-warping component 3 and the reinforcing frame 2 achieves sealing and reinforcement around the stone plastic flooring component 1.

[0042] Although embodiments of the present invention have been shown and described (see the detailed description above), it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A high-strength, impact-resistant polymer stone-plastic flooring, characterized in that: include Stone-plastic flooring components (1); A reinforcing plate frame (2) is fitted on the outside of the stone plastic flooring component (1), and a protruding plate (21) is provided at the center of the reinforcing plate frame (2); The anti-warping component includes an anti-warping part (3) and a reinforcing part installed at the center of the anti-warping part (3). The reinforcing part includes a support plate (4) integrally connected to the anti-warping part (3), a fixing block (6) fixedly connected to the support plate (4), and a limiting plate (5) fixedly connected to the fixing block (6). The limiting plate (5) has a recessed groove (51) at its center. The surface of the anti-warping part (3) has a filling groove (31), and the inner surface of the anti-warping part (3) has a filling hole (32).

2. The high-strength impact-resistant polymer stone plastic floor board according to claim 1, characterized in that: The surface of the anti-warping component (3) is provided with an installation groove that matches the reinforcing plate frame (2). The filling groove (31) is connected to the installation groove. A square groove is provided at the center of the inner surface of the anti-warping component (3). The support plate (4) is installed in the square groove.

3. The high-strength impact-resistant polymer stone plastic floor board of claim 1, wherein: The support plate (4) has a frame structure, the limiting plate (5) is flush with the inner surface of the anti-warping component (3), and a flow gap is formed between the limiting plate (5) and the support plate (4).

4. The high-strength impact-resistant polymer stone plastic floor board of claim 1, wherein: The convex plate (21) cooperates with the corresponding groove (51), the stone plastic floor component (1) is embedded in the interior of the surface of the reinforcing plate frame (2), and the surfaces of the stone plastic floor component (1) and the reinforcing plate frame (2) on the same side are flush.

5. The high-strength impact-resistant polymer stone plastic floor board of claim 1, wherein: The reinforcing frame (2) is embedded inside the anti-warping component (3). The surfaces of the reinforcing frame (2) and the anti-warping component (3) on the same side are flush. The outer surface of the reinforcing frame (2) is in contact with the inner surface of the anti-warping component (3).

6. The high-strength impact-resistant polymer stone plastic floor board of claim 1, wherein: The filling hole (32) is an hourglass shape composed of symmetrical funnels, and the diameter of the filling hole (32) is wide at both ends and narrow in the middle.

7. The high-strength impact-resistant polymer stone plastic floor board of claim 1, wherein: Locking rivets a are provided on the outer surface of the reinforced frame (2).