Wear-resistant rubber floor

By applying wear-resistant ceramic coatings on rubber floors and combining the design of storage components and auxiliary components, the problem of easy wear and tear on rubber floors is solved, significantly improving wear resistance and service life and improving user experience.

CN222847732UActive Publication Date: 2025-05-09DALIAN GAOKE FLAME RETARDANT RUBBER
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Patent Information

Application Number
CN202421854345.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-01
Publication Date
2025-05-09
Estimated Expiration
2034-08-01

AI Technical Summary

Technical Problem

The existing rubber floor is prone to wear and tear during long-term use, and has a short service life, which affects the pedestrian experience.

Method used

A wear-resistant rubber floor is designed, using wear-resistant ceramic coating as the wear-resistant layer, and storage components and auxiliary components are provided in the floor. The storage components include a maintenance agent storage box, a conveying pipeline and an auxiliary cavity. The auxiliary components are passed through the staggered distribution of conveying pipelines and communication grooves. The auxiliary cavity is used to squeeze the maintenance agent outflow and maintain the floor surface.

Benefits of technology

The wear resistance of rubber floors is significantly improved through the design of wear-resistant layers, and the settings of storage components and auxiliary components facilitate timely maintenance of floor surfaces, extend the service life and improve the user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a wear-resistant rubber floor, and relates to the technical field of rubber floors. The technical problems that an existing rubber floor is seriously abraded in the long-term use process and is short in service life are solved. According to the technical scheme, the wear-resistant rubber floor comprises a rubber floor body and further comprises an anti-skid bottom mat, protrusions, a wear-resistant layer, a storage assembly and an auxiliary assembly. According to the wear-resistant rubber floor, by arranging the wear-resistant layer, the surface of the rubber floor can be effectively prevented from being abraded and scratched due to long-time use, a curing agent can be conveniently provided for the rubber floor body through the storage assembly, the surface of the floor can be cured in time through the auxiliary assembly, and compared with a traditional wear-resistant mode, the wear-resistant rubber floor has the advantages that the service life is prolonged; the floor has good wear resistance and damage resistance, and therefore it is ensured that the floor can provide reliable durability and good use experience in long-term use.
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Description

Technical Field

[0001] This utility model relates to the field of rubber flooring technology, specifically to a wear-resistant rubber flooring. Background Art

[0002] Rubber flooring is made of natural rubber and other synthetic rubbers. Visually, it features bright and vibrant colors and a soft, rubber-like texture, making it suitable for sports and widely used in various settings. However, existing rubber flooring suffers from drawbacks in practical use. Due to its simple structure, it offers good elasticity but poor wear resistance, especially in areas with high foot traffic, resulting in a short lifespan and significantly impacting the user experience. Utility Model Content

[0003] The purpose of this invention is to provide a wear-resistant rubber flooring to solve the problem mentioned in the background art that existing rubber flooring is prone to severe wear and has a short service life during long-term use.

[0004] To achieve the above objectives, this utility model provides the following technical solution: a wear-resistant rubber floor, comprising a rubber floor body, and further comprising an anti-slip pad, a protrusion, a wear-resistant layer, a storage component, and an auxiliary component; the lower end of the rubber floor body is connected to the anti-slip pad, the upper end of the rubber floor body is provided with a protrusion, the upper end of the rubber floor body is connected to the wear-resistant layer, the inner side of the rubber floor body is provided with a storage component, and the right side of the storage component is connected to the auxiliary component.

[0005] Preferably, the wear-resistant layer can effectively prevent wear and scratches on the surface of the rubber flooring caused by long-term use. The storage component facilitates the application of maintenance agents to the main body of the rubber flooring, and the auxiliary component enables timely maintenance of the flooring surface.

[0006] Preferably, the cross-section of the protrusion is semi-circular and the protrusions are evenly distributed. By setting several protrusions on the main body of the rubber floor, the surface contact area can be increased, thereby improving the overall anti-slip performance.

[0007] Preferably, the wear-resistant layer uses a wear-resistant ceramic coating, which has the advantage of high wear resistance, thereby preventing wear and scratches on the surface of the rubber flooring due to long-term use.

[0008] Preferably, the storage component includes a maintenance agent storage tank, a liquid inlet, and a sealing piston. The maintenance agent storage tank is located on the inner side of the rubber floor body, and the liquid inlet is located at the lower end of the maintenance agent storage tank. The sealing piston is connected to the inner side of the liquid inlet and is engaged with the liquid inlet. By engaging or disengaging the sealing piston into the liquid inlet, it is convenient to add rubber maintenance agent to the maintenance agent storage tank according to the usage situation.

[0009] Preferably, the auxiliary components include a first delivery pipe and a second delivery pipe. The first delivery pipe is connected to the right side of the maintenance agent storage tank, and the second delivery pipe is connected to the right side of the first delivery pipe. The first delivery pipe and the second delivery pipe are arranged in a crisscross pattern. The connection between the first delivery pipe and the second delivery pipe allows for the rapid delivery of maintenance agent from the maintenance agent storage tank.

[0010] Preferably, the auxiliary component also includes a connecting groove, and the connecting groove is provided at the intersection of the first delivery pipeline and the second delivery pipeline, so that the maintenance agent can be easily delivered into the connecting groove at each node through the delivery pipeline.

[0011] Preferably, the auxiliary component also includes an auxiliary cavity. The upper end of the connecting groove is provided with an auxiliary cavity. The cross-section of the auxiliary cavity is elliptical. Through the extrusion deformation of the auxiliary cavity, the internal maintenance agent can be squeezed out to maintain the surface.

[0012] Compared with the prior art, the beneficial effects of the present invention are:

[0013] 1. This wear-resistant rubber flooring effectively prevents wear and scratches on the surface of the rubber flooring due to long-term use by setting a wear-resistant layer. It also has a storage component to facilitate the application of maintenance agents to the main body of the rubber flooring, and an auxiliary component to provide timely maintenance for the flooring surface. Compared with traditional wear-resistant methods, this flooring has good wear resistance and damage resistance, thus ensuring that it can provide reliable durability and a good user experience in long-term use.

[0014] 2. This wear-resistant rubber flooring features a maintenance agent storage tank within the flooring and utilizes intersecting first and second delivery pipes for rapid delivery of the maintenance agent. Furthermore, multiple auxiliary chambers within the flooring allow for compression when the floor is stepped on, facilitating the outflow of the maintenance agent and thus maintaining the floor surface, reducing wear, and extending its overall service life. Attached Figure Description

[0015] Figure 1 This is a schematic diagram of the three-dimensional structure of the utility model;

[0016] Figure 2 This is a schematic diagram of the disassembled structure of this utility model;

[0017] Figure 3 This is a cross-sectional view of the present utility model. Figure 1 ;

[0018] Figure 4 This is a cross-sectional view of the present utility model. Figure 2 .

[0019] In the diagram: 1. Main body of rubber flooring; 2. Anti-slip pad; 3. Raised surface; 4. Wear-resistant layer; 5. Storage component; 6. Auxiliary component; 501. Maintenance agent storage tank; 502. Liquid inlet; 503. Sealing piston; 601. First delivery pipeline; 602. Second delivery pipeline; 603. Connecting groove; 604. Auxiliary cavity. DETAILED DESCRIPTION

[0020] See also Figure 1-3 This utility model provides a technical solution: a wear-resistant rubber flooring, including a rubber flooring body 1, and further including an anti-slip pad 2, protrusions 3, a wear-resistant layer 4, a storage component 5, and an auxiliary component 6; the lower end of the rubber flooring body 1 is connected to the anti-slip pad 2, the upper end of the rubber flooring body 1 is provided with protrusions 3, the upper end of the rubber flooring body 1 is connected to the wear-resistant layer 4, the inner side of the rubber flooring body 1 is provided with the storage component 5, and the right side of the storage component 5 is connected to the auxiliary component 6. The wear-resistant layer 4 effectively prevents wear and scratches on the surface of the rubber flooring caused by long-term use. The storage component 5 facilitates the application of a maintenance agent to the rubber flooring body 1, and the auxiliary component 6 enables timely maintenance of the flooring surface. The protrusions 3 have a semi-circular cross-section and are evenly distributed. By providing several protrusions 3 on the rubber floor body 1, the surface contact area can be increased, thereby improving the overall anti-slip performance. The wear-resistant layer 4 is made of wear-resistant ceramic coating, which has the advantage of high wear resistance, thus preventing wear and scratches on the surface of the rubber floor due to long-term use. The storage component 5 includes a maintenance agent storage tank 501, a liquid inlet 502, and a sealing piston 503. The maintenance agent storage tank 501 is provided on the inner side of the rubber floor body 1. The liquid inlet 502 is provided at the lower end of the maintenance agent storage tank 501. The sealing piston 503 is connected to the inner side of the liquid inlet 502. The sealing piston 503 is engaged with the liquid inlet 502. By engaging or disengaging the sealing piston 503 into the liquid inlet 502, it is convenient to add rubber maintenance agent to the maintenance agent storage tank 501 according to the usage.

[0021] See also Figure 3-4In this embodiment, the auxiliary component 6 includes a first delivery pipe 601 and a second delivery pipe 602. The first delivery pipe 601 is connected to the right side of the maintenance agent storage tank 501, and the second delivery pipe 602 is connected to the right side of the first delivery pipe 601. The first delivery pipe 601 and the second delivery pipe 602 are crisscrossed. The connection between the first delivery pipe 601 and the second delivery pipe 602 facilitates the rapid delivery of maintenance agent in the maintenance agent storage tank 501. The auxiliary component 6 also includes a connecting groove 603. A connecting groove 603 is provided at the intersection of the first delivery pipe 601 and the second delivery pipe 602. The delivery pipe facilitates the delivery of maintenance agent into the connecting groove 603 at each node. The auxiliary component 6 also includes an auxiliary cavity 604. An auxiliary cavity 604 is provided at the upper end of the connecting groove 603. The cross-section of the auxiliary cavity 604 is elliptical. The extrusion deformation of the auxiliary cavity 604 facilitates the extrusion of the maintenance agent inside for surface maintenance.

[0022] When using the wear-resistant rubber flooring of this technical solution, the first conveying pipe 601 and the second conveying pipe 602 are connected to facilitate the rapid delivery of the maintenance agent in the maintenance agent storage box 501 from the connecting groove 603 into the auxiliary cavity 604.

[0023] Then, when people step on the rubber floor, their feet will directly contact the wear layer 4. The wear layer 4 can initially prevent the surface from being worn. Then, due to the weight of the human body and the elasticity of the rubber floor body 1, the protrusion 3 will descend and squeeze the auxiliary cavity 604, so that the maintenance agent stored in the auxiliary cavity 604 will be discharged from the upper port of the protrusion 3, thus maintaining the wear layer 4 and further reducing the surface wear rate.

[0024] Through the above steps, the wear-resistant layer 4 first improves the wear resistance of the rubber floor surface, then the storage component 5 facilitates the application of a protective agent to the rubber floor body 1, and finally the auxiliary component 6 enables timely maintenance of the floor surface to protect the rubber floor.

[0025] Although embodiments of the present invention have been shown and described, 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 wear-resistant rubber floor, comprising a rubber floor main body (1), characterized in that: The invention also comprises an anti-skid bottom pad (2), a protrusion (3), a wear-resistant layer (4), a storage component (5), and an auxiliary component (6); the lower end of the rubber floor main body (1) is connected to the anti-skid bottom pad (2), the upper end of the rubber floor main body (1) is provided with a protrusion (3), the upper end of the rubber floor main body (1) is connected to the wear-resistant layer (4), the inner side of the rubber floor main body (1) is provided with a storage component (5), and the right side of the storage component (5) is connected to the auxiliary component (6).

2. The wear-resistant rubber floor according to claim 1, characterized in that: The cross section of the protrusion (3) is a semicircular structure, and the protrusions (3) are distributed at equal intervals.

3. The wear-resistant rubber floor according to claim 1, characterized in that: The wear-resistant layer (4) adopts wear-resistant ceramic coating.

4. The wear-resistant rubber floor according to claim 1, characterized in that: The storage assembly (5) comprises a maintenance agent storage box (501), a liquid inlet (502), and a sealing piston (503). The maintenance agent storage box (501) is arranged on the inner side of the rubber floor main body (1). The liquid inlet (502) is arranged on the lower end of the maintenance agent storage box (501). The inner side of the liquid inlet (502) is connected to the sealing piston (503). The sealing piston (503) is engaged with the liquid inlet (502).

5. The wear-resistant rubber floor according to claim 1, characterized in that: The auxiliary component (6) comprises a first delivery pipeline (601) and a second delivery pipeline (602). The right side of the maintenance agent storage box (501) is connected to the first delivery pipeline (601), and the right side of the first delivery pipeline (601) is connected to the second delivery pipeline (602). The first delivery pipeline (601) and the second delivery pipeline (602) are arranged in a crisscross pattern.

6. The wear-resistant rubber floor according to claim 1, characterized in that: The auxiliary component (6) further comprises a connecting groove (603), and the connecting groove (603) is provided at the intersection of the first conveying pipeline (601) and the second conveying pipeline (602).

7. The wear-resistant rubber floor according to claim 6, characterized in that: The auxiliary component (6) further comprises an auxiliary cavity (604). The upper end of the communicating groove (603) is provided with the auxiliary cavity (604). The cross section of the auxiliary cavity (604) is an elliptical structure.