Anti-ultraviolet weather-resistant rubber floor

By setting up passive drainage cover components in the rubber floor, the elastic drainage cover plate and drainage storage holes are used to accelerate the water circulation, and the slipping problem caused by the slow drainage speed of existing UV-resistant rubber floors is solved, and rapid drainage and safe walking are achieved.

CN223135570UActive Publication Date: 2025-07-22DALIAN GAOKE FLAME RETARDANT RUBBER
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Patent Information

Application Number
CN202421740105.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-23
Publication Date
2025-07-22
Estimated Expiration
2034-07-23

AI Technical Summary

Technical Problem

The surface drainage speed of existing UV-resistant rubber floors is slow, resulting in severe water on the surface area when it rains and pedestrians are prone to slip.

Method used

Passive drainage cover assembly is provided in the rubber floor, including an elastic drainage cover plate and drainage storage hole, which accelerates the water circulation through pedestrian trampling, forming rapid sinking and exhaust channels.

Benefits of technology

The lower discharge speed of the surface of rubber flooring is greatly improved, avoiding the problem of pedestrians slipping and ensuring safety.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223135570U_ABST
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Abstract

The utility model relates to the technical field of uvioresistant and weather-resistant rubber floors, in particular to an uvioresistant and weather-resistant rubber floor. According to the technical scheme, the anti-ultraviolet weather-resistant rubber floor comprises a composite rubber floor assembly and further comprises a passive drainage cover assembly. A passive drainage cover assembly is arranged at the upper end of the center of the composite rubber floor assembly. When a pedestrian walks, the pedestrian steps on the passive drainage cover assembly, so that the extrusion hemisphere of the elastic drainage cover plate extrudes water collected in the drainage water storage hole through the drainage groove, the flowing speed of water in the porous water permeable brick layer is increased, the sinking and discharging speed of water flow on the UV anti-ultraviolet weather-resistant rubber layer is increased, and the water drainage effect is improved. And the problem that pedestrians slip due to accumulation of water above the UV anti-ultraviolet weather-resistant rubber layer is greatly avoided.
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Description

Technical Field

[0001] The utility model belongs to the technical field of anti-ultraviolet and weather-resistant rubber floors, and particularly relates to an anti-ultraviolet and weather-resistant rubber floor. Background Art

[0002] The anti-ultraviolet and weather-resistant rubber floor is a new type of building material, mainly used for outdoor ground laying. This kind of floor has good wear resistance, impact resistance and weather resistance, can be used in various harsh climate conditions, and can also prevent the growth of mold and bacteria, which is very beneficial to human health. However, some existing anti-ultraviolet and weather-resistant rubber floors have the problem of slow drainage speed on the upper surface, which makes it easy to slip when walking on the floor, especially in rainy weather. This is because the pore structure on the surface of these floors is not developed enough, and it is difficult for water to drain quickly, thus forming ponding on the floor surface. Content of the Utility Model

[0003] In order to overcome the problem that the existing anti-ultraviolet and weather-resistant rubber floor has serious ponding on its upper surface in rainy weather and is easy to slip when pedestrians walk on it because of the slow drainage speed on its upper surface.

[0004] The technical solution of the utility model is: an anti-ultraviolet and weather-resistant rubber floor, including a composite rubber floor component, and also including a passive drainage cover component; the passive drainage cover component is arranged at the center upper end of the composite rubber floor component; the composite rubber floor component includes a UV anti-ultraviolet and weather-resistant rubber layer, a ceramic tile layer, a porous permeable brick layer, a drainage cover installation groove, drainage and water storage holes, positioning columns, and drainage grooves. The drainage and water storage holes connect the drainage grooves and the porous permeable brick layer, thus forming a channel for the water above the UV anti-ultraviolet and weather-resistant rubber layer to sink and drain out, greatly improving the drainage speed of the water above the UV anti-ultraviolet and weather-resistant rubber layer.

[0005] Preferably, when pedestrians step on the passive drainage cover component while walking, the extrusion hemisphere of the elastic drainage cover presses down the water collected in the drainage and water storage holes through the drainage grooves, thereby accelerating the water flow speed in the porous permeable brick layer, and further accelerating the sinking and drainage speed of the water flow on the UV anti-ultraviolet and weather-resistant rubber layer, greatly avoiding the problem of pedestrians slipping caused by the accumulation of water above the UV anti-ultraviolet and weather-resistant rubber layer, and solving the problem that the existing anti-ultraviolet and weather-resistant rubber floor has serious ponding on its upper surface in rainy weather and is easy to slip when pedestrians walk on it because of the slow drainage speed on its upper surface.

[0006] Preferably, a UV anti-ultraviolet and weather-resistant rubber layer is arranged at the upper end of the ceramic tile layer, and the UV anti-ultraviolet and weather-resistant rubber layer is adhesively fixed to the ceramic tile layer; a porous permeable brick layer is arranged at the lower end of the ceramic tile layer, and the porous permeable brick layer is fixed to the ceramic tile layer.

[0007] Preferably, a drain cover plate installation groove is provided inside the center of the UV ultraviolet-resistant weatherproof rubber layer, and the drain cover plate installation groove is integrally formed with the UV ultraviolet-resistant weatherproof rubber layer.

[0008] Preferably, a drain and water storage hole is vertically penetrated inside the centers of the ceramic tile layer and the porous permeable brick layer, and the drain and water storage hole is integrally formed with the ceramic tile layer and the porous permeable brick layer. Moreover, the diameter of the drain and water storage hole is smaller than that of the drain cover plate installation groove, and the axis of the drain and water storage hole is the same as that of the drain cover plate installation groove.

[0009] Preferably, positioning columns are provided around the upper end surface of the drain and water storage hole, and the positioning columns are integrally formed with the ceramic tile layer.

[0010] Preferably, the passive drain cover assembly includes an elastic drain cover plate, an extrusion hemispherical groove, an extrusion hemisphere, and a positioning connection groove. An elastic drain cover plate is provided above the drain cover plate installation groove, and the elastic drain cover plate is a rubber disc structure with elasticity and ultraviolet resistance and weather resistance. An extrusion hemispherical groove is provided inside the center of the lower end surface of the elastic drain cover plate, and the extrusion hemispherical groove is integrally formed with the elastic drain cover plate. An extrusion hemisphere is provided inside the extrusion hemispherical groove, and the extrusion hemisphere is fixedly connected to the extrusion hemispherical groove. When a pedestrian steps on the passive drain cover assembly while walking, the extrusion hemisphere of the elastic drain cover plate presses down the water collected in the drain and water storage hole through the drain groove, thereby accelerating the water flow rate inside the porous permeable brick layer, and further accelerating the sinking and external drainage speed of the water flow on the UV ultraviolet-resistant weatherproof rubber layer, greatly avoiding the problem of pedestrians slipping caused by the accumulation of water above the UV ultraviolet-resistant weatherproof rubber layer.

[0011] Preferably, positioning connection grooves are provided around the extrusion hemisphere, and the positioning connection grooves are integrally formed with the elastic drain cover plate. Moreover, the positioning columns are inserted into the inside of the positioning connection grooves for connection. The connection between the positioning connection grooves and the elastic drain cover plate realizes the fixation of the passive drain cover assembly on the composite rubber floor assembly.

[0012] The beneficial effects of the present utility model:

[0013] 1. In the existing anti-ultraviolet and weather-resistant rubber floor, due to the slow drainage speed on its upper surface, serious water accumulation occurs on its surface in rainy weather, and pedestrians are prone to slip when walking on it. By stepping on the passive drainage cover assembly with feet when pedestrians walk, the extrusion hemisphere of the elastic drainage cover plate presses down the water accumulated in the drainage storage hole through the drainage groove, thereby accelerating the water flow rate in the multi-porous permeable brick layer, and further accelerating the sinking and external drainage speed of the water flow on the UV anti-ultraviolet and weather-resistant rubber layer, greatly avoiding the problem of pedestrians slipping caused by water accumulation above the UV anti-ultraviolet and weather-resistant rubber layer; solving the problem that in the existing anti-ultraviolet and weather-resistant rubber floor, due to the slow drainage speed on its upper surface, serious water accumulation occurs on its surface in rainy weather, and pedestrians are prone to slip when walking on it.

[0014] 2. Through the setting of the drainage storage holes, the drainage storage holes connect the drainage grooves and the multi-porous permeable brick layer, thereby forming a channel for the water above the UV anti-ultraviolet and weather-resistant rubber layer to sink and be externally drained, greatly improving the downward drainage speed of the water above the UV anti-ultraviolet and weather-resistant rubber layer. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 Shown is an overall three-dimensional structural schematic diagram of an anti-ultraviolet and weather-resistant rubber floor of the present utility model;

[0016] Figure 2 Shown is a three-dimensional structural schematic diagram of a composite rubber floor assembly of an anti-ultraviolet and weather-resistant rubber floor of the present utility model;

[0017] Figure 3 Shown is a bottom three-dimensional structural schematic diagram of a passive drainage cover assembly of an anti-ultraviolet and weather-resistant rubber floor of the present utility model;

[0018] Figure 4 Shown is an enlarged schematic diagram of the structure at A of an anti-ultraviolet and weather-resistant rubber floor of the present utility model.

[0019] The reference signs in the drawings are: 1. Composite rubber floor assembly; 2. Passive drainage cover assembly; 101. UV anti-ultraviolet and weather-resistant rubber layer; 102. Ceramic tile layer; 103. Multi-porous permeable brick layer; 104. Drainage cover plate installation groove; 105. Drainage storage hole; 106. Positioning column; 107. Drainage groove; 201. Elastic drainage cover plate; 202. Extrusion hemisphere groove; 203. Extrusion hemisphere; 204. Positioning connection groove. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0020] The present utility model will be further described below with reference to the drawings and embodiments.

[0021] Please refer to Figures 1-4, embodiments provided by the present utility model: an anti-ultraviolet and weather-resistant rubber floor, comprising a composite rubber floor assembly 1, and further comprising a passive drainage cover assembly 2; a passive drainage cover assembly 2 is arranged at the upper end of the center of the composite rubber floor assembly 1; the composite rubber floor assembly 1 comprises a UV anti-ultraviolet and weather-resistant rubber layer 101, a ceramic tile layer 102, a porous permeable brick layer 103, a drainage cover plate installation groove 104, a drainage and water storage hole 105, a positioning column 106, and a drainage groove 107. The UV anti-ultraviolet and weather-resistant rubber layer 101 is arranged at the upper end of the ceramic tile layer 102, and the UV anti-ultraviolet and weather-resistant rubber layer 101 is adhesively and fixedly connected to the ceramic tile layer 102; the porous permeable brick layer 103 is arranged at the lower end of the ceramic tile layer 102, and the porous permeable brick layer 103 is fixedly connected to the ceramic tile layer 102. A drainage cover plate installation groove 104 is arranged inside the center of the UV anti-ultraviolet and weather-resistant rubber layer 101, and the drainage cover plate installation groove 104 is integrally formed with the UV anti-ultraviolet and weather-resistant rubber layer 101. A drainage and water storage hole 105 is vertically penetrated inside the center of the ceramic tile layer 102 and the porous permeable brick layer 103, and the drainage and water storage hole 105 is integrally formed with the ceramic tile layer 102 and the porous permeable brick layer 103. And the diameter of the drainage and water storage hole 105 is smaller than that of the drainage cover plate installation groove 104, and the axis of the drainage and water storage hole 105 is consistent with that of the drainage cover plate installation groove 104. Positioning columns 106 are arranged around the upper end surface of the drainage and water storage hole 105, and the positioning columns 106 are integrally formed with the ceramic tile layer 102.

[0022] Please refer to Figures 1-4 , in this embodiment, the passive drainage cover assembly 2 comprises an elastic drainage cover plate 201, an extrusion hemispherical groove 202, an extrusion hemisphere 203, and a positioning connection groove 204; an elastic drainage cover plate 201 is arranged above the drainage cover plate installation groove 104, and the elastic drainage cover plate 201 is an elastic anti-ultraviolet and weather-resistant rubber disc structure; an extrusion hemispherical groove 202 is arranged inside the center of the lower end surface of the elastic drainage cover plate 201, and the extrusion hemispherical groove 202 is integrally formed with the elastic drainage cover plate 201; an extrusion hemisphere 203 is arranged inside the extrusion hemispherical groove 202, and the extrusion hemisphere 203 is fixedly connected to the extrusion hemispherical groove 202; positioning connection grooves 204 are arranged around the extrusion hemisphere 203, and the positioning connection grooves 204 are integrally formed with the elastic drainage cover plate 201, and the positioning columns 106 are inserted into the positioning connection grooves 204 for connection.

[0023] When working, by stepping on the passive drainage cover assembly 2 when pedestrians walk, the extrusion hemispheres 203 of the elastic drainage cover plate 201 press down and extrude the water gathered in the drainage storage holes 105 through the drainage grooves 107, thereby accelerating the water flow rate in the porous permeable brick layer 103, and further accelerating the sinking and external drainage rate of the water flow on the UV-resistant and weather-resistant rubber layer 101, greatly avoiding the problem of pedestrians slipping caused by the accumulation of water above the UV-resistant and weather-resistant rubber layer 101; solving the problem of the existing anti-ultraviolet and weather-resistant rubber floor that, due to the slow drainage speed on its upper surface, causes serious water accumulation on its surface in rainy environments and pedestrians are prone to slip when walking on it.

[0024] Next, the drainage storage holes 105 connect the drainage grooves 107 and the porous permeable brick layer 103, thereby forming a channel for the water above the UV-resistant and weather-resistant rubber layer 101 to sink and be externally drained, greatly improving the downward drainage rate of the water above the UV-resistant and weather-resistant rubber layer 101.

[0025] Through the above steps, by stepping on the passive drainage cover assembly 2 when pedestrians walk, the extrusion hemispheres 203 of the elastic drainage cover plate 201 press down and extrude the water gathered in the drainage storage holes 105 through the drainage grooves 107, thereby accelerating the water flow rate in the porous permeable brick layer 103, and further accelerating the sinking and external drainage rate of the water flow on the UV-resistant and weather-resistant rubber layer 101, greatly avoiding the problem of pedestrians slipping caused by the accumulation of water above the UV-resistant and weather-resistant rubber layer 101, and avoiding the problem of the existing anti-ultraviolet and weather-resistant rubber floor that, due to the slow drainage speed on its upper surface, causes serious water accumulation on its surface in rainy environments and pedestrians are prone to slip when walking on it.

[0026] The above has described the embodiments of the present invention in detail with reference to the accompanying drawings. However, the present invention is not limited to the above embodiments. Within the scope of knowledge possessed by those skilled in the art, various changes can be made without departing from the purpose of the present invention.

Claims

1. An anti-ultraviolet and weather-resistant rubber floor, comprising a composite rubber floor assembly (1), characterized in that: It also includes a passive drainage cover assembly (2); the passive drainage cover assembly (2) is arranged at the upper center of the composite rubber floor assembly (1); the composite rubber floor assembly (1) includes a UV-resistant and weather-resistant rubber layer (101), a ceramic tile layer (102), a porous permeable brick layer (103), a drainage cover plate installation groove (104), a drainage and water storage hole (105), a positioning column (106), and a drainage groove (107).

2. The anti-ultraviolet and weather-resistant rubber floor according to claim 1, characterized in that: The UV-resistant and weather-resistant rubber layer (101) is arranged at the upper end of the ceramic tile layer (102), and the UV-resistant and weather-resistant rubber layer (101) is adhesively fixed to the ceramic tile layer (102); the porous permeable brick layer (103) is arranged at the lower end of the ceramic tile layer (102), and the porous permeable brick layer (103) is fixedly connected to the ceramic tile layer (102).

3. An anti-ultraviolet and weather-resistant rubber floor according to claim 2, characterized in that: The drainage cover plate installation groove (104) is arranged inside the center of the UV-resistant and weather-resistant rubber layer (101), and the drainage cover plate installation groove (104) is integrally formed with the UV-resistant and weather-resistant rubber layer (101).

4. The anti-ultraviolet and weather-resistant rubber floor according to claim 1, characterized in that: The drainage and water storage hole (105) is vertically penetrated through the centers of the ceramic tile layer (102) and the porous permeable brick layer (103), and the drainage and water storage hole (105) is integrally formed with the ceramic tile layer (102) and the porous permeable brick layer (103), and the diameter of the drainage and water storage hole (105) is smaller than that of the drainage cover plate installation groove (104), and the axis of the drainage and water storage hole (105) is consistent with that of the drainage cover plate installation groove (104).

5. The anti-ultraviolet and weather-resistant rubber floor according to claim 4, wherein: Positioning columns (106) are arranged around the upper end surface of the drainage and water storage hole (105), and the positioning columns (106) are integrally formed with the ceramic tile layer (102).

6. The anti-ultraviolet weather-resistant rubber floor according to claim 4, characterized in that: The passive drainage cover assembly (2) includes an elastic drainage cover plate (201), an extrusion hemispherical groove (202), an extrusion hemisphere (203), and a positioning connection groove (204); the elastic drainage cover plate (201) is arranged above the drainage cover plate installation groove (104), and the elastic drainage cover plate (201) is a rubber disc structure with elasticity and UV resistance and weather resistance; the extrusion hemispherical groove (202) is arranged inside the center of the lower end surface of the elastic drainage cover plate (201), and the extrusion hemispherical groove (202) is integrally formed with the elastic drainage cover plate (201); the extrusion hemisphere (203) is arranged inside the extrusion hemispherical groove (202), and the extrusion hemisphere (203) is fixedly connected to the extrusion hemispherical groove (202).

7. The anti-ultraviolet and weather-resistant rubber floor according to claim 6, characterized in that: Positioning connection grooves (204) are arranged around the extrusion hemisphere (203), and the positioning connection grooves (204) are integrally formed with the elastic drainage cover plate (201), and the positioning columns (106) are inserted into the positioning connection grooves (204) for connection.