Shock-absorbing floor tile for interior decoration

By building a shock-absorbing cavity into the floor tiles, using a curved spring plate and film bag design, combined with a rubber pad and adhesive layer, the problem of poor shock absorption in the existing technology is solved, achieving better shock absorption and health care effects, and reducing noise and weight.

CN115749196BActive Publication Date: 2025-10-03ANHUI YONGYE MUNICIPAL ENG CO LTD
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Patent Information

Application Number
CN202211472414.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-11-23
Publication Date
2025-10-03
Estimated Expiration
2042-11-23

AI Technical Summary

Technical Problem

In the prior art, the shock absorption effect of floor tiles mainly depends on the deformation of the rubber structure, which has limited effect and makes it difficult to achieve efficient shock absorption and noise control.

Method used

The structure consists of an upper brick body and a lower brick body, with a built-in shock-absorbing cavity. It utilizes the elastic deformation of the first curved spring plate and the second curved spring plate, combined with the design of the film capsule and negative ion powder, and supported by the rubber pad and the adhesive layer to achieve structural shock absorption and health care functions.

Benefits of technology

It achieves better shock absorption effect. Through elastic deformation and the release of negative ion powder, the shock absorption performance of floor tiles is enhanced, and it has health care functions while reducing noise and weight.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention provides a shock-absorbing floor tile for indoor decoration, which relates to the technical field of flooring, and includes an upper brick body and a lower brick body. The upper brick body is arranged above the lower brick body, and half grooves are provided at the bottom of the upper brick body and the top of the lower brick body. Two groups of the half grooves form a shock-absorbing cavity. A first arc-shaped spring plate and a second arc-shaped spring plate are provided inside the shock-absorbing cavity. The first arc-shaped spring plates are provided in multiple groups at equal intervals, and the arc surface of the first arc-shaped spring plate is supported under the upper brick body, and the second arc-shaped spring plate is clamped between the two groups of the first arc-shaped spring plates. The present invention forms a floor tile as a whole through the upper brick body and the lower brick body, and a shock-absorbing cavity is built in the whole. The first arc-shaped spring plate is used for support, and the second arc-shaped spring plate is used for staggered support. When a user steps on the floor, a certain drop is created by the rubber pad, and the first arc-shaped spring plate and the second arc-shaped spring plate are elastically deformed to achieve a shock-absorbing effect, thereby achieving structural shock absorption and better effect.
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Description

Technical Field

[0001] The present invention relates to the technical field of flooring, in particular to a shock-absorbing floor tile for indoor decoration. Background Art

[0002] Floor tiles are a kind of floor decoration material, also called floor tiles. There are wooden floor tiles and clay floor tiles. They come in a variety of sizes, specifications and shapes. They are strong, pressure-resistant and wear-resistant. Some of them have decorative effects after being glazed. They are mostly used for the ground and floors of public buildings and civil buildings.

[0003] In the prior art, for example, authorization announcement number CN 214062226 U discloses “a wear-resistant, non-slip, and shock-absorbing floor tile”, and specifically discloses that: a rubber-like structure passing through the end of the tile body achieves a cushioning and shock-absorbing effect, while the lower opening can be clamped to the lower plate, and the internal hollow of the lower plate can be filled with drying powder. When the lower plate is clamped to the bottom of the body, the plate holes can be used to uniformly dry the outside, thereby improving the protective effect of its end. However, in the above-mentioned technology and the prior art, shock absorption is generally achieved by adding a rubber structure and utilizing the material of the rubber itself for shock absorption. This deformation effect is limited and the shock absorption effect is poor. Therefore, the present invention proposes a shock-absorbing floor tile for interior decoration to solve the problems existing in the prior art. Summary of the Invention

[0004] In response to the above problems, the present invention proposes a shock-absorbing floor tile for interior decoration. The shock-absorbing floor tile for interior decoration has a certain height difference through a rubber pad, and plays a shock-absorbing role through the elastic deformation of the first arc-shaped spring plate and the second arc-shaped spring plate, which has a structural shock-absorbing effect and better effect.

[0005] To achieve the objectives of the present invention, the present invention is implemented through the following technical solutions: a shock-absorbing floor tile for indoor decoration, comprising an upper brick body and a lower brick body, wherein the upper brick body is arranged above the lower brick body, and half grooves are provided at the bottom of the upper brick body and the top of the lower brick body, two groups of the half grooves forming a shock-absorbing cavity, a first curved spring plate and a second curved spring plate provided inside the shock-absorbing cavity, a plurality of groups of the first curved spring plates being arranged at equal intervals, and a curved surface of the first curved spring plate is supported under the upper brick body, and the second curved spring plate is clamped between two groups of the first curved spring plates, and a curved surface of the second curved spring plate is supported on the lower brick body;

[0006] Rubber pads are provided between both sides of the bottom of the upper brick body and both sides of the top of the lower brick body. The bottom of the lower brick body is provided with a bottom cushion layer, and the top of the upper brick body is provided with a finishing layer.

[0007] A further improvement is that a film capsule is provided inside the shock-absorbing cavity, and multiple groups of film capsules are provided, and each group of film capsules is provided between two groups of the second arc-shaped spring plates.

[0008] A further improvement is that: the outer side of the second arc-shaped spring plate is provided with spikes, and the spikes are used to pierce the film capsule, the interior of the film capsule is provided with negative ion powder, and the upper brick body is provided with micropores.

[0009] A further improvement is that filling cavities are provided on both sides of the bottom of the upper brick body and on both sides of the top of the lower brick body, and the filling cavities are trapezoidal, the upper brick body, the rubber pad and the lower brick body are bonded by a first adhesive layer, and the first adhesive layer is filled into the interior of the filling cavities.

[0010] A further improvement is that the lower brick body and the bottom cushion layer are bonded by a second adhesive layer, the first adhesive layer and the second adhesive layer are both halogen-free adhesives, and the coating amount of the first adhesive layer and the second adhesive layer is 300-450g / ㎡.

[0011] A further improvement is that first limiting protrusions are provided above both ends of the shock absorbing cavity, and there are multiple groups of first limiting protrusions, which are used to limit the two ends of the first arc-shaped spring plate.

[0012] A further improvement is that second limiting protrusions are provided below both ends of the shock absorbing cavity, and there are multiple groups of second limiting protrusions, which are used to limit the two ends of the second arc-shaped spring plate.

[0013] A further improvement is that the bottom cushion layer is one of a silent floor mat and cork, the upper brick body and the lower brick body are one of oak and elm, and the finishing layer is one of a PVC color film and a spray glaze film.

[0014] A further improvement is that a cavity is provided inside the lower brick body, and multiple groups of cavities are provided at equal intervals. A glue column is provided inside the bottom cushion layer, and the round head of the lower end of the glue column protrudes from the bottom cushion layer, and the upper end of the glue column extends to the inside of the cavity.

[0015] A further improvement is that both ends of the cavity and the shock-absorbing cavity are covered with waterproof cloth, and the waterproof cloth is fixed by adhesive.

[0016] The beneficial effects of the present invention are:

[0017] 1. The present invention forms a floor tile as a whole by an upper brick body and a lower brick body, and a shock-absorbing cavity is built in the whole. It is supported by a first arc-shaped spring plate and supported in an alternating manner by a second arc-shaped spring plate. When a user steps on the floor, a certain drop is created by the rubber pad. The elastic deformation of the first arc-shaped spring plate and the second arc-shaped spring plate plays a role of shock absorption, and the structural shock absorption has a better effect.

[0018] 2. When the present invention is in shock absorption, the second arc-shaped spring plate is deformed, so that the sharp thorns pierce the film capsule, which is conducive to releasing the negative ion powder inside. The negative ion powder is used to play a health-care role and has diversified functions.

[0019] 3. The present invention adopts a lightweight design through the cavity to reduce weight and reduce noise to a certain extent. It is supported on the ground by a soft bottom cushion layer to further reduce noise. The support of the rubber column increases friction on the bottom and elastically supports the cavity, which is conducive to further improving the shock absorption effect.

[0020] 4. The present invention covers the cavity and the shock-absorbing cavity with waterproof cloth to achieve waterproof effect. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] Figure 1 It is a structural schematic diagram of the present invention;

[0022] Figure 2 This is a schematic structural diagram of location A of the present invention;

[0023] Figure 3 Schematic diagram of the cavity of the present invention;

[0024] Figure 4 It is a schematic diagram of the waterproof cloth of the present invention.

[0025] Among them: 1. Upper brick body; 2. Lower brick body; 3. Shock-absorbing cavity; 4. First arc-shaped spring plate; 5. Second arc-shaped spring plate; 6. Rubber pad; 7. Bottom cushion layer; 8. Finishing layer; 9. Film capsule; 10. Negative ion powder; 11. Filling cavity; 12. First adhesive layer; 13. Second adhesive layer; 14. First limiting convex point; 15. Second limiting convex point; 16. Cavity; 17. Rubber column; 18. Waterproof cloth. DETAILED DESCRIPTION

[0026] In order to deepen the understanding of the present invention, the present invention will be further described in detail below with reference to the examples. The examples are only used to explain the present invention and do not constitute a limitation on the scope of protection of the present invention.

[0027] Example 1

[0028] according to Figure 1 、 2 As shown in Figures 3 and 4, this embodiment provides a shock-absorbing floor tile for interior decoration, comprising an upper brick body 1 and a lower brick body 2. The upper brick body 1 is arranged above the lower brick body 2, and half grooves are provided at the bottom of the upper brick body 1 and the top of the lower brick body 2. Two groups of half grooves form a shock-absorbing cavity 3. A first arc-shaped spring plate 4 and a second arc-shaped spring plate 5 are provided inside the shock-absorbing cavity 3. The first arc-shaped spring plates 4 are provided in multiple groups at equal intervals, and the arc surface of the first arc-shaped spring plates 4 is supported under the upper brick body 1. The second arc-shaped spring plates 5 are clamped between the two groups of the first arc-shaped spring plates 4, and the arc surface of the second arc-shaped spring plates 5 is supported on the lower brick body 2.

[0029] Rubber pads 6 are provided between both sides of the bottom of the upper brick body 1 and both sides of the top of the lower brick body 2. The bottom of the lower brick body 2 is provided with a bottom padding layer 7, and the top of the upper brick body 1 is provided with a finishing layer 8. During use, the upper brick body 1 and the lower brick body 2 form a floor tile as a whole, and a shock-absorbing cavity 3 is built into the whole. The first curved spring plate 4 is used for support, and the second curved spring plate 5 is used for staggered support. When a user steps on the floor, the rubber pads 6 create a certain height difference. The elastic deformation of the first curved spring plate 4 and the second curved spring plate 5 plays a role in shock absorption, which has a better structural shock absorption effect.

[0030] The shock-absorbing cavity 3 is equipped with multiple sets of thin film capsules 9, each of which is positioned between two sets of the second curved spring plates 5. The outer surfaces of the second curved spring plates 5 are provided with spikes designed to puncture the capsules 9. Negative ion powder 10 is contained within the capsules 9, and the upper brick body 1 is provided with micropores. During shock absorption, the second curved spring plates 5 deform, causing the spikes to puncture the capsules 9, facilitating the release of the negative ion powder 10 from the micropores. This utilizes the negative ion powder 10 to provide health benefits, providing diverse functions. Negative ions are beneficial to human health, and negative air ions primarily exert their biological effects by acting on the enzyme system of organisms, thus benefiting human health.

[0031] Filling cavities 11 are provided on both sides of the bottom of the upper brick body 1 and on both sides of the top of the lower brick body 2. The filling cavities 11 are trapezoidal in shape. The upper brick body 1, the adhesive pad 6, and the lower brick body 2 are bonded together by a first adhesive layer 12, which is filled into the filling cavities 11. The trapezoidal filling cavities 11 allow the first adhesive layer 12 to bond more tightly.

[0032] The lower brick body 2 and the bottom cushion layer 7 are bonded together by a second adhesive layer 13. Both the first adhesive layer 12 and the second adhesive layer 13 are made of halogen-free adhesive, and the coating amount of the first adhesive layer 12 and the second adhesive layer 13 is 300-450g / ㎡. Halogen-free adhesive is environmentally friendly and pollution-free.

[0033] A plurality of first limiting bumps 14 are provided above both ends of the interior of the shock-absorbing chamber 3. These first limiting bumps 14 are used to limit the ends of the first curved spring plate 4. A plurality of second limiting bumps 15 are provided below both ends of the interior of the shock-absorbing chamber 3. These second limiting bumps 15 are used to limit the ends of the second curved spring plate 5. During use, the first and second limiting bumps 14, 15 limit the first and second curved spring plates 4, 5, to prevent them from falling out of the shock-absorbing chamber 3.

[0034] The bottom cushion layer 7 is a silent floor mat, the upper brick body 1 and the lower brick body 2 are both made of oak, and the finishing layer 8 is a PVC color film. The soft bottom cushion layer 7 is supported on the ground to further reduce noise, and the PVC color film increases the aesthetics of the floor.

[0035] Example 2

[0036] according to Figure 1 、 2 As shown in Figures 3 and 4, this embodiment proposes a shock-absorbing floor tile for interior decoration, comprising an upper brick body 1 and a lower brick body 2. The upper brick body 1 is arranged above the lower brick body 2, and half grooves are provided at the bottom of the upper brick body 1 and the top of the lower brick body 2. Two groups of half grooves form a shock-absorbing cavity 3. A first arc-shaped spring plate 4 and a second arc-shaped spring plate 5 are provided inside the shock-absorbing cavity 3. The first arc-shaped spring plates 4 are provided in multiple groups at equal intervals, and the arc-shaped surfaces of the first arc-shaped spring plates 4 are supported under the upper brick body 1. The second arc-shaped spring plates 5 are clamped between the two groups of the first arc-shaped spring plates 4, and the arc-shaped surfaces of the second arc-shaped spring plates 5 are supported on the lower brick body 2.

[0037] Rubber pads 6 are provided between both sides of the bottom of the upper brick body 1 and both sides of the top of the lower brick body 2. The bottom of the lower brick body 2 is provided with a bottom padding layer 7, and the top of the upper brick body 1 is provided with a finishing layer 8. During use, the upper brick body 1 and the lower brick body 2 form a floor tile as a whole, and a shock-absorbing cavity 3 is built into the whole. The first curved spring plate 4 is used for support, and the second curved spring plate 5 is used for staggered support. When a user steps on the floor, the rubber pads 6 create a certain height difference. The elastic deformation of the first curved spring plate 4 and the second curved spring plate 5 plays a role in shock absorption, which has a better structural shock absorption effect.

[0038] The interior of the lower brick body 2 is provided with a cavity 16, and multiple groups of cavities 16 are equidistantly spaced. Rubber columns 17 are provided within the bottom cushion layer 7, with the rounded lower ends of the columns 17 protruding from the bottom cushion layer 7, and the upper ends of the columns 17 extend into the interior of the cavities 16. The lightweight design achieved through the cavities 16 reduces weight and reduces noise to a certain extent. The support of the soft bottom cushion layer 7 on the ground further reduces noise. The support of the columns 17 increases friction on the bottom and elastically supports the cavities 16, which further enhances the shock absorption effect.

[0039] Both ends of the cavity 16 and the shock absorbing cavity 3 are covered with waterproof cloth 18, and the waterproof cloth 18 is fixed by adhesive. The waterproof cloth 18 covers the cavity 16 and the shock absorbing cavity 3 to play a waterproof role.

[0040] The present invention comprises an upper brick body 1 and a lower brick body 2, forming a floor tile assembly. A shock-absorbing cavity 3 is built into the assembly, supported by a first curved spring plate 4 and staggered by a second curved spring plate 5. When a user steps on the floor, a certain height difference is created by the rubber pad 6. The elastic deformation of the first and second curved spring plates 4 and 5 provides shock absorption, achieving structural shock absorption and achieving better results. Furthermore, during shock absorption, the second curved spring plate 5 deforms, causing the spikes to pierce the film capsule 9, facilitating the release of the negative ion powder 10 inside. The negative ion powder 10 provides health benefits and diversifies the functionality. Furthermore, the present invention utilizes a lightweight design through the cavity 16, reducing weight and reducing noise. The soft base layer 7 supports the floor, further reducing noise. The support of the rubber column 17 increases friction on the bottom and elastically supports the cavity 16, further enhancing the shock absorption effect. Furthermore, the present invention covers the cavity 16 and the shock-absorbing cavity 3 with a waterproof cloth 18, providing a waterproof effect.

[0041] The basic principles, main features, and advantages of the present invention are shown and described above. Those skilled in the art should understand that the present invention is not limited to the foregoing embodiments. The foregoing embodiments and descriptions are merely illustrative of the principles of the present invention. Various changes and modifications may be made to the present invention without departing from the spirit and scope of the present invention. Such changes and modifications are intended to fall within the scope of the present invention. The scope of protection claimed in the present invention is defined by the appended claims and their equivalents.

Claims

1. A shock-absorbing floor tile for interior decoration, comprising an upper tile body (1) and a lower tile body (2), characterized in that: The upper brick body (1) is arranged above the lower brick body (2), and half grooves are provided at the bottom of the upper brick body (1) and the top of the lower brick body (2), and two groups of the half grooves form a shock-absorbing cavity (3), and a first arc-shaped spring plate (4) and a second arc-shaped spring plate (5) are provided inside the shock-absorbing cavity (3), and a plurality of groups of the first arc-shaped spring plates (4) are provided at equal intervals, and the arc-shaped surface of the first arc-shaped spring plates (4) is supported under the upper brick body (1), and the second arc-shaped spring plate (5) is clamped between the two groups of the first arc-shaped spring plates (4), and the arc-shaped surface of the second arc-shaped spring plate (5) is supported on the lower brick body (2); Rubber pads (6) are provided between the two sides of the bottom of the upper brick body (1) and the two sides of the top of the lower brick body (2); a bottom cushion layer (7) is provided on the bottom of the lower brick body (2); and a finishing layer (8) is provided on the top of the upper brick body (1); Both sides of the bottom of the upper brick body (1) and both sides of the top of the lower brick body (2) are provided with a filling cavity (11), and the filling cavity (11) is trapezoidal. The upper brick body (1), the adhesive pad (6) and the lower brick body (2) are bonded together by a first adhesive layer (12), and the first adhesive layer (12) is filled into the interior of the filling cavity (11); The lower brick body (2) and the bottom cushion layer (7) are bonded together via a second adhesive layer (13); the first adhesive layer (12) and the second adhesive layer (13) are both halogen-free adhesives, and the coating amount of the first adhesive layer (12) and the second adhesive layer (13) is 300-450 g / m2.

2. The shock-absorbing floor tile for interior decoration according to claim 1, characterized in that: A film capsule (9) is provided inside the shock-absorbing cavity (3), and a plurality of groups of film capsules (9) are provided, with each group of film capsules (9) being provided between two groups of the second arc-shaped spring plates (5).

3. The shock-absorbing floor tile for interior decoration according to claim 2, characterized in that: The outer side of the second arc-shaped spring plate (5) is provided with spikes, and the spikes are used to pierce the film capsule (9). The interior of the film capsule (9) is provided with negative ion powder (10), and the upper brick body (1) is provided with micropores.

4. The shock-absorbing floor tile for interior decoration according to claim 1, characterized in that: First limiting convex points (14) are provided above both ends of the interior of the shock-absorbing cavity (3), and a plurality of first limiting convex points (14) are provided. The first limiting convex points (14) are used to limit both ends of the first arc-shaped spring plate (4).

5. The shock-absorbing floor tile for interior decoration according to claim 4, characterized in that: Second limiting convex points (15) are provided below both ends of the interior of the shock absorbing cavity (3), and a plurality of second limiting convex points (15) are provided. The second limiting convex points (15) are used to limit the two ends of the second arc-shaped spring plate (5).

6. The shock-absorbing floor tile for interior decoration according to claim 1, characterized in that: The bottom cushion layer (7) is a soundproof floor mat or cork, the upper brick body (1) and the lower brick body (2) are both oak or elm, and the finishing layer (8) is a PVC color film or a spray glaze film.

7. The shock-absorbing floor tile for interior decoration according to any one of claims 1 to 6, characterized in that: A cavity (16) is provided inside the lower brick body (2), and a plurality of cavities (16) are provided at equal intervals. A glue column (17) is provided inside the bottom cushion layer (7), and the rounded lower end of the glue column (17) protrudes from the bottom cushion layer (7), and the upper end of the glue column (17) extends into the cavity (16).

8. The shock-absorbing floor tile for interior decoration according to claim 7, characterized in that: Both ends of the cavity (16) and the shock-absorbing cavity (3) are covered with waterproof cloth (18), and the waterproof cloth (18) is fixed by adhesive.

Citation Information

Patent Citations

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    CN207063410U

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