No-splash floor tiles

By designing hollow cavities, limiting strip grooves, permeable hole blocking structures and anti-slip protrusions in the landscape floor tiles, the problem of water accumulation in floor tiles is solved, convenient installation and efficient splash resistance are achieved, and the compressive resistance and connection strength of the bricks are enhanced.

CN116065438BActive Publication Date: 2025-09-05WUHAN UNIV OF TECH
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Patent Information

Application Number
CN202310234328.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-03-13
Publication Date
2025-09-05
Estimated Expiration
2043-03-13

AI Technical Summary

Technical Problem

The existing landscape floor tiles are prone to accumulate water and splash out when under pressure, affecting pedestrians. The existing technology is costly and inconvenient to construction, which cannot effectively solve the problem of brick sinking caused by heavy objects rolling.

Method used

A floor tiles without splashing are designed. The hollow inside the brick body is a housing cavity, and a limit strip and a limit groove are set to connect. The permeable hole is connected to the slot hole. The obstruction structure is set on the permeable hole. The anti-slip protrusion and the flange of the baffle prevent water from splashing out. The accommodating cavity is a semispherical structure to enhance stability.

Benefits of technology

It can effectively store and divert accumulated water to prevent splashing, improve pedestrian convenience, have a simple structure and be easy to install, enhance the compression resistance and connection strength of the bricks, and reduce construction complexity.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to the technical field of road pavement floor tile structures, and specifically refers to a non-splashing floor tile. It comprises a brick body; the brick body is a square platform structure, the brick body has a receiving cavity, a first limiting strip is provided on both sides of the brick body, and a first limiting groove corresponding to the first limiting strip is provided on the other two sides of the brick body; slots are provided around the receiving cavity, the bottom of the receiving cavity is closed, and a plurality of water-permeable holes connected to the space above the floor tile are provided on the top; the lower end face of the first limiting strip is not lower than the top of the receiving cavity, the first limiting strip is a horizontal strip structure with the same length as the side of the brick body, and the adjacent brick bodies are connected as a whole through the engagement of the first limiting strip and the first limiting groove; the upper surface of the brick body is arranged with a blocking structure for intercepting the water outflowing from the water-permeable hole to prevent the water from splashing upward and around. The floor tile of the present application has a simple structure, is easy to install and use, can effectively prevent the splashing problem caused by water accumulation on the ground, and greatly facilitates the passage of pedestrians.
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Description

Technical Field

[0001] The invention relates to the technical field of road pavement floor tile structures, in particular to a non-splashing floor tile. Background Art

[0002] Landscape paving tiles are a commonly used engineering material in landscape design and construction. They are mainly used in large-scale paving projects such as squares and sidewalks. The bricks are generally regular planes with a length and width of approximately 20 to 30 cm and a thickness of approximately 3 to 5 cm. When used, they are directly laid on a sand and gravel cushion layer with cement mortar. However, due to automobile rolling or soil and rock settlement under the cushion layer, the cushion layer of conventional paving tiles is easily compressed and deformed, causing water to accumulate in the cushion layer. When the tiles are compressed, the water accumulated between the tiles and the cushion layer will splash out from the gaps between the tiles. The splashed water will wet pedestrians' clothing, affecting their walking and senses. The existing technology solves the problem of water splashing on landscape paving tiles by means of technical means such as raising the bottom floor, adding splash blocks and water retaining surfaces. However, most of these methods are subject to high costs and inconvenient construction conditions. They also fail to solve the problem of easy damage caused by rolling over by heavy objects such as cars, and cannot solve the problem of landscape brick units sinking due to vertical force. Therefore, they are not suitable for pedestrian spaces such as squares, sidewalks, and landscape roads that are mainly used by people.

[0003] To address the aforementioned technical issues, a Chinese invention patent, CN108374300A, entitled "A Splash-Proof, Pressure-Resistant Landscape Paving Tile and Construction Method," proposes a floor tile structure comprising a brick body, a rainwater collection hole extending through the upper surface of the brick body, and a water seepage hole extending through the lower surface of the brick body. The upper and lower surfaces are centrally symmetrical and proportionally scaled polygonal structures, and the longitudinal cross-section of the brick body is an isosceles trapezoidal structure with a smaller upper portion and a larger lower portion. Staggered reinforcement ribs are arranged within the brick body, dividing the interior of the brick body into a plurality of cavities for placing plant fillers. Adjacent cavities are connected by water-permeable holes provided in the reinforcement ribs. Tenons are centrally symmetrically provided on the front and rear sides of the brick body, and mortises are centrally symmetrically provided on the left and right sides of the brick body, interlocking the tenons with the mortises. The tenons are inserted into the mortises to interlock adjacent bricks. This floor tile structure utilizes a three-dimensional interlocking design between two bricks with complementary shapes and structures, and is maintained by a serial plant root system, enhancing the brick body's resistance to weight and impact. However, during actual use, it was found that since the internal cavity of the brick body is filled with vegetation filler, the purpose is to grow plants and use the plant roots to connect in series. This structure can absorb accumulated water to a certain extent, but once the accumulated water exceeds the absorption capacity of the vegetation filler, the accumulated water between adjacent bricks may splash out during stepping, which will still cause trouble to pedestrians. In other words, the above-mentioned floor tiles can only eliminate splashing water to a certain extent, and cannot completely eliminate the problem of splashing water from floor tiles. Summary of the Invention

[0004] The purpose of the present invention is to solve the shortcomings of the above-mentioned background technology and provide a non-splashing floor tile.

[0005] The technical solution of the present invention is: a non-splashing floor tile, comprising a brick body; the brick body is a square platform structure, the interior of the brick body is hollow with a accommodating cavity for storing accumulated water, first limiting strips protruding outward in the horizontal direction are provided on both sides of the brick body, and first limiting grooves corresponding to the first limiting strips are provided on the other two sides of the brick body; slots connected to the accommodating cavities of adjacent brick bodies are provided around the accommodating cavity, the bottom of the accommodating cavity is closed and a plurality of water-permeable holes connected to the space above the floor tile are provided on the top; the lower end face of the first limiting strip is not lower than the top of the accommodating cavity, the first limiting strip is a horizontal strip structure with the same length as the side of the brick body, and the adjacent brick bodies are connected as a whole through the bite of the first limiting strip and the first limiting groove; the upper surface of the brick body is arranged with a blocking structure to intercept water outflowing from the water-permeable hole to prevent the water from splashing upward and around.

[0006] According to a non-splashing floor tile provided in the present application, the upper surface of the brick body is a spherical concave structure with a concave middle and convex surroundings, and a plurality of water-permeable holes are arranged in the middle position of the upper surface of the brick body.

[0007] According to a non-splashing floor tile provided in the present application, a plurality of anti-slip protrusions are evenly distributed on the upper surface of the brick body; the anti-slip protrusions are strip structures or boss structures vertically protruding from the upper surface of the brick body, and the upper surfaces of the plurality of anti-slip protrusions on the upper surface of the brick body are flush.

[0008] According to the non-splashing floor tile provided by the present application, the multiple water-permeable holes are distributed in the gaps between adjacent anti-slip protrusions.

[0009] According to a non-splashing floor tile provided by the present application, the blocking structure includes a baffle; the baffle is a horizontal sheet structure fixed on multiple anti-slip protrusions in the middle of the upper surface of the brick body, and the baffle covers all the water holes below. The parts of the baffle that extend beyond the water holes are bent vertically downward to form a flange that intercepts splashing water to the surroundings; a gap is left between the lower end of the flange and the upper surface of the brick body.

[0010] According to a non-splashing floor tile provided in the present application, a plurality of rubber bolts are provided on the lower end surface of the baffle; screw holes corresponding to the rubber bolts are provided on the multiple anti-slip protrusions corresponding to the baffle on the upper surface of the brick body; the rubber bolts are vertically squeezed into the corresponding screw holes to detachably fix the baffle on the anti-slip protrusions.

[0011] According to the non-splashing floor tile provided by the present application, the accommodating cavity is a hemispherical cavity structure with the spherical surface facing upward.

[0012] According to the non-splashing floor tile provided by the present application, the slot is located at the bottom of the accommodating cavity.

[0013] According to a non-splashing floor tile provided in the present application, a plurality of anti-slip blocks are provided on the lower surface of the tile body; the anti-slip blocks are block structures protruding vertically downward from the lower surface of the tile body.

[0014] According to a non-splashing floor tile provided in the present application, a second limiting strip is provided on the side of the brick body where the first limiting strip is arranged; the second limiting strip is located below the accommodating cavity, and the second limiting strip is a strip structure parallel to and equal in length to the first limiting strip; a second limiting groove is provided on the side of the brick body where the first limiting groove is arranged; the second limiting strip is embedded in the second limiting groove to connect adjacent brick bodies into one.

[0015] The advantages of the present application are as follows: 1. The floor tile of the present application has a receiving cavity in the middle position, which can store accumulated water to the greatest extent. In the case of a small amount of accumulated water, the accumulated water is stored in the receiving cavity. When the floor tile is stepped on, the accumulated water will only flow through the adjacent slots and will not splash out and affect pedestrians. In the case of a large amount of accumulated water, the accumulated water in the receiving cavity will overflow to the upper surface of the floor tile through the water-permeable holes. When the floor tile is stepped on, the accumulated water will only spray out through the water-permeable holes. The water-permeable holes are provided with a blocking structure, so the sprayed accumulated water is blocked and will not splash onto pedestrians. In addition, the structure of the first limiting strip and the first limiting groove is provided between adjacent floor tiles, which can effectively intercept the accumulated water rising from the bottom. The entire structure fully solves the problem of splashing water in existing floor tiles and improves the convenience of pedestrians.

[0016] 2. The upper surface of the floor tile of the present application has a concave structure in the middle. Under the action of gravity, the accumulated water on the upper surface of the floor tile will gather in the concave position in the middle. The concave position is provided with a water-permeable hole, which facilitates the accumulated water to quickly enter the accommodating cavity through the water-permeable hole. Even if the accumulated water in the accommodating cavity is squeezed out of the water-permeable hole, it can be quickly collected and returned to the accommodating cavity through the water-permeable hole.

[0017] 3. The present invention provides anti-skid protrusions on the upper surface of the floor tiles. The purpose of the anti-skid protrusions is to facilitate pedestrians walking. The raised strip-shaped structure or block-shaped structure enhances the friction force when pedestrians walk. In addition, the upper surface of the anti-skid protrusions is flush, so that the upper surface of the entire floor tile appears flat to pedestrians, but it does not affect the collection of accumulated water in the middle depression.

[0018] 4. The water holes of the present application are distributed between adjacent anti-slip protrusions. This arrangement facilitates the collection of accumulated water on the upper surface of the floor tiles. In addition, the upper ends of the water holes are blocked by anti-slip protrusions, which can prevent the water holes from being blocked by pedestrians.

[0019] 5. The present application provides a baffle on the upper surface of the floor tile, which covers the water permeable hole below. In addition to further preventing the water permeable hole from being blocked by pedestrians, it also prevents the problem of accumulated water in the cavity being squeezed and sprayed out. The baffle can block the accumulated water spraying upward, and the flange can block the accumulated water spraying in all directions, limiting the sprayed accumulated water to the range of the baffle and flange, and will not affect pedestrians.

[0020] 6. The baffle and flange structure of the present application are detachable structures. The baffle is fixed to the upper surface of the floor tile by squeezing rubber bolts into the screw holes on the anti-slip protrusions. The disassembly and installation method is extremely simple. If the baffle is damaged by pedestrians, it can be quickly disassembled and replaced with a new baffle structure, which is convenient to use.

[0021] 7. The accommodating cavity of the present application is a hemispherical cavity structure with the spherical surface facing upwards. This structure makes the upper part of the entire floor tile an arched structure, which has good structural stress resistance, high strength and is not easy to be damaged;

[0022] 8. The slots of the present application are located at the bottom of the accommodating cavity, which facilitates the flow of accumulated water between the accommodating cavities of adjacent floor tiles;

[0023] 9. The present application sets an anti-sliding block on the lower surface of the floor tile, which can stably fix the floor tile on the floor cushion layer, making the floor tile more stable and less likely to slip under force;

[0024] 10. The present application also provides a second limiting strip and a second limiting groove structure on the side of the brick body, which not only increases the connection strength of adjacent brick bodies, but also prevents the accumulated water on the lower surface of the floor tiles from splashing onto pedestrians through the gaps between adjacent floor tiles.

[0025] The floor tiles of the present application have a simple structure and are easy to install and use. They can effectively prevent splashing caused by water accumulation on the ground, greatly facilitate the passage of pedestrians, and have great promotion value. BRIEF DESCRIPTION OF THE DRAWINGS

[0026] Figure 1 : Schematic diagram of the cross section of the brick body of this application;

[0027] Figure 2 : Schematic diagram of the interconnected structure of bricks in this application;

[0028] Figure 3 : Schematic diagram of the top surface of the brick body of the present application (without baffles and flange structures);

[0029] Figure 4 : Schematic diagram of the top surface of the brick body of the present application (blocking piece and flange structure);

[0030] Figure 5 : A cross-sectional diagram of the brick body of the present application located at the slot;

[0031] Among them: 1—brick body; 2—accommodating cavity; 3—first limiting strip; 4—first limiting groove; 5—slot hole; 6—water permeable hole; 7—anti-slip protrusion; 8—blocking piece; 9—flange; 10—rubber bolt; 11—screw hole; 12—anti-sliding block; 13—second limiting strip; 14—second limiting groove. DETAILED DESCRIPTION

[0032] The embodiments of the present invention are described in detail below, wherein the same or similar reference numerals throughout represent the same or similar elements or elements having the same or similar functions. The embodiments described below with reference to the accompanying drawings are exemplary and are intended to be used to explain the present invention, but are not to be construed as limiting the present invention.

[0033] In the description of the present invention, it should be understood that the terms "longitudinal", "transverse", "length", "width", "thickness", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside" and the like to indicate orientations or positional relationships based on the orientations or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be understood as limiting the present invention.

[0034] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of the technical features being referred to. Thus, a feature specified as "first" or "second" may explicitly or implicitly include one or more of the features. In the description of the present invention, "plurality" means at least two, such as two, three, etc., unless otherwise specifically defined.

[0035] The present invention will be further described in detail below with reference to the accompanying drawings and specific embodiments.

[0036] like Figures 1 to 5 As shown, the present application relates to a floor tile structure laid on a square or a sidewalk, which can prevent water from splashing and will not affect the passage of pedestrians.

[0037] Specifically, the floor tiles of the present application include a brick body 1, which is a square platform structure and can be a rectangular parallelepiped or a cube. The appropriate shape can be selected according to actual needs. The interior of the brick body 1 is hollow with a storage cavity 2 for storing accumulated water. The storage cavity 2 is used to store accumulated water. When accumulated water enters the lower surface of the floor tile through the gap between adjacent floor tiles, this accumulated water can be stored through the storage cavity 2. The bottom of the storage cavity 2 is closed and the top is provided with a plurality of water holes 6 connected to the space above the brick body 1. The water holes 6 have two functions: one is to facilitate the entry of water on the upper surface of the brick body into the storage cavity 2, and the other is to facilitate the drainage of accumulated water in the storage cavity 2. When there is accumulated water in the area where the floor tiles are laid, it can enter the storage cavity 2 through the water holes 6 to avoid the accumulation of water on the surface of the floor tiles. When the accumulated water on the surface of the brick body 1 disappears, the accumulated water remaining in the storage cavity 2 can be discharged through the water holes 6 by evaporation. The accommodating cavity 2 is surrounded by slots 5 that are connected to the accommodating cavity 2 of the adjacent brick body 1. That is to say, the accommodating cavities 2 are interconnected, and the accumulated water in the accommodating cavity 2 can flow in the accommodating cavity 2. As long as a diversion facility is set at the edge of the floor tile laying, the accumulated water in the accommodating cavity 2 can be quickly and completely discharged.

[0038] To facilitate the connection of adjacent bricks 1, the present invention provides first limiting strips 3 protruding horizontally outward on both sides of the brick 1. First limiting grooves 4 corresponding to the first limiting strips 3 are provided on the other two sides of the brick 1. The lower end surface of the first limiting strip 3 is no lower than the top of the accommodating cavity 2. The first limiting strip 3 is a horizontal strip structure that is the same length as the side of the brick 1 in which it is located. Adjacent bricks 1 are connected integrally through the first limiting strip 3 and the first limiting groove 4. The first limiting strip 3 is a strip structure that is the same length as the side of the brick 1. After the first limiting strip 3 is engaged with the first limiting groove 4, water below the first limiting strip 3 is difficult to splash out through the gap between the first limiting strip 3 and the first limiting groove 4. Water below the first limiting strip 3 can only enter the accommodating cavity 2, and water within the accommodating cavity 2 can only flow out through the water-permeable holes 6 or the slots 5. In other words, water will not splash out of the gap between adjacent bricks 1.

[0039] To prevent water from spraying out of the water holes 6 from wetting pedestrians' shoes or pants, a barrier structure is arranged on the upper surface of the brick body 1 to intercept the water from the water holes 6 and prevent it from splashing upward and around. When the water in the accommodating cavity 2 is full and cannot be discharged outward through the slots 5, the accumulated water will be discharged through the water holes 6 above. When the accumulated water sprays out of the water holes 6 due to the force of footsteps, it will be blocked by the barrier structure and will not splash around or upward.

[0040] During the use of the floor tiles of the present application, when a small amount of water accumulates on the road surface formed by the paving of the floor tiles, the accumulated water will first enter the accommodating cavity 2 through the water permeable holes 6, then flow in the accommodating cavity 2, and gradually transfer to the diversion device at the edge of the floor tiles through the slots 5 for discharge; when a large amount of water accumulates on the road surface formed by the paving of the floor tiles, the accumulated water completely fills the accommodating cavity 2, and when stepped on, the accumulated water will be sprayed out from the water permeable holes 6, and the sprayed accumulated water will be intercepted by the blocking structure and still remain on the upper surface of the brick body 1, and finally enter the accommodating cavity 2 through the water permeable holes 6 until the accumulated water in the accommodating cavity 2 is discharged to the point where it can no longer be sprayed out through the water permeable holes 6.

[0041] In a further embodiment of the present application, the structure of the brick body 1 is optimized. Figures 1 and 2 As shown, the upper surface of the brick body 1 of this embodiment is a spherical concave structure with a concave center and convex surroundings. A plurality of water-permeable holes 6 are arranged in the middle of the upper surface of the brick body 1 .

[0042] The middle of the upper surface of the brick body 1 is concave, which facilitates the water accumulated on the upper surface of the brick body 1 to quickly enter the accommodating cavity 2 through the water-permeable hole 6 at the concave position. In most cases (unless the amount of accumulated water is increased to exceed the volume of the accommodating cavity 2), the upper surface of the brick body 1 will not retain water and is always dry.

[0043] In some other embodiments of the present application, this embodiment further optimizes the structure of the brick body 1, specifically, Figures 1 to 4 As shown, a plurality of anti-slip protrusions 7 are evenly distributed on the upper surface of the brick body 1. The anti-slip protrusions 7 are strip structures or boss structures vertically protruding from the upper surface of the brick body 1. The upper surfaces of the plurality of anti-slip protrusions 7 on the upper surface of the brick body 1 are flush.

[0044] The anti-skid protrusions 7 can increase the frictional resistance between the soles of pedestrians and the upper surface of the brick body 1, thus preventing slipping. In addition, the upper surface of the anti-skid protrusions 7 is flush, which is equivalent to the pedestrian feeling that the upper surface of the brick body 1 is flat and will not affect pedestrian walking. However, the water collection capacity of the concave position in the middle of the upper surface of the brick body 1 is better than that of the flat surface.

[0045] In some embodiments of the present application, the arrangement position of the water-permeable hole 6 is optimized. Specifically, Figure 3 As shown, the plurality of water holes 6 of this embodiment are distributed in the gaps between adjacent anti-slip protrusions 7. The water holes 6 are located between adjacent anti-slip protrusions 7. Due to the blocking effect of the anti-slip protrusions 7, foreign objects carried by pedestrians on the ground will not fall directly into the water holes 6, thus avoiding the problem of clogging of the water holes 6.

[0046] In a further embodiment of the present application, the above-mentioned blocking structure is optimized. Specifically, Figures 1 and 2As shown, the blocking structure of this embodiment includes a baffle 8, which is a horizontal sheet structure fixed on multiple anti-slip protrusions 7 in the middle of the upper surface of the brick body 1. The baffle 8 covers all the water-permeable holes 6 below. The parts of the baffle 8 that extend beyond the water-permeable holes 6 are bent vertically downward to form a flange 9 that intercepts splashing water around. A gap is left between the lower end of the flange 9 and the upper surface of the brick body 1.

[0047] The baffle 8 and the flange 9 are equivalent to a cover covering the water permeable hole 6. The accumulated water sprayed from the water permeable hole 6 is intercepted by the baffle 8 and the flange 9 and will not splash upward or around. In the case of extreme water accumulation, it will not cause pedestrians' shoes and pants to get wet.

[0048] In a further embodiment of the present application, the above-mentioned structures of the baffle 8 and the flange 9 are optimized. Figures 1 and 2 As shown, in this embodiment, the baffle 8 and flange 9 on the surface of the brick body 1 are designed to be detachable. A plurality of rubber bolts 10 are provided on the lower end surface of the baffle 8, and screw holes 11 corresponding to the rubber bolts 10 are provided on the plurality of anti-slip protrusions 7 on the upper surface of the brick body 1 corresponding to the baffle 8. The rubber bolts 10 are vertically squeezed into the corresponding screw holes 11 to detachably fix the baffle 8 on the anti-slip protrusion 7.

[0049] The baffle 8 and the flange 9 are of a detachable structure. When the baffle 8 and the flange 9 are damaged by wear or other reasons, the damaged baffle 8 and the flange 9 can be directly removed and then replaced with a new baffle 8 and the flange 9. This removal and replacement method is very simple. The damaged baffle 8 and the flange 9 can be removed by simply prying out the rubber bolt 10 from the screw hole 11. When replacing the baffle 8 and the flange 9, just align the rubber bolt 10 with the screw hole 11 to stably fix the baffle 8 and the flange 9 on the corresponding anti-slip protrusion 7.

[0050] In some embodiments of the present application, the accommodating cavity 2 is a hemispherical cavity structure with the spherical surface facing upward. This structure makes the portion of the brick body 1 above the accommodating cavity 2 an arched structure. The arched structure has good force resistance, and the brick body 1 can withstand greater pressure without damage. This hemispherical accommodating cavity 2 has a large volume and can store a large amount of accumulated water.

[0051] In addition, the slots 5 of this embodiment are located at the bottom of the accommodating cavities 2, which facilitates the flow of accumulated water in adjacent accommodating cavities 2. The flow of accumulated water is less obstructed and is discharged more quickly.

[0052] In other embodiments of the present application, a plurality of anti-slip blocks 12 are provided on the lower surface of the tile body 1. The anti-slip blocks 12 are block-shaped structures that protrude vertically downward from the lower surface of the tile body 1. The anti-slip blocks 12 are raised block-shaped structures that can be easily inserted into the floor cushion during installation, thereby improving the stability of the floor tiles and preventing them from slipping easily.

[0053] In the preferred embodiment of the present application, the structure of the brick body 1 is optimized. Figures 1 and 2 As shown, the brick body 1 is provided with a second limiting strip 13 on the side where the first limiting strip 3 is arranged. The second limiting strip 13 is located below the accommodating cavity 2. The second limiting strip 13 is a strip structure parallel to and equal in length to the first limiting strip 3. The brick body 1 is provided with a second limiting groove 14 on the side where the first limiting groove 4 is arranged. The second limiting strip 13 is embedded in the second limiting groove 14 to connect the adjacent brick bodies 1 into one.

[0054] The first limiting strip 3 and the second limiting strip 13 are arranged relative to each other, and are respectively placed on the upper and lower sides of the accommodating cavity 2. The first limiting strip 3 and the first limiting groove 4 can prevent the accumulated water below the first limiting strip 3 from spraying out from the gap between adjacent brick bodies 1. The second limiting strip 13 and the second limiting groove 14 can restrict the accumulated water below the second limiting strip 13 from entering the gap between adjacent brick bodies 1. The first limiting strip 3 and the second limiting strip 13 are used together to prevent the problem of accumulated water splashing out from the gap between adjacent brick bodies 1. In addition, the first limiting strip 3 and the second limiting strip 13 can conveniently connect adjacent brick bodies 1 into one, and the assembly method is extremely simple.

[0055] 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 above embodiments. The above 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 non-splashing floor tile, characterized by: The invention comprises a brick body (1); the brick body (1) is a square platform structure; a cavity (2) for storing accumulated water is left in the hollow inside the brick body (1); first limiting strips (3) protruding outward in the horizontal direction are provided on both sides of the brick body (1); first limiting grooves (4) corresponding to the first limiting strips (3) are provided on the other two sides of the brick body (1); slots (5) communicating with the cavity (2) of the adjacent brick body (1) are provided around the cavity (2); the bottom of the cavity (2) is closed. A plurality of water-permeable holes (6) communicating with the space above the brick body (1) are provided on the top; the lower end surface of the first limiting strip (3) is not lower than the top of the accommodating cavity (2); the first limiting strip (3) is a horizontal strip structure having the same length as the side of the brick body (1) in which it is located; adjacent brick bodies (1) are connected as a whole through the engagement of the first limiting strip (3) and the first limiting groove (4); a blocking structure is arranged on the upper surface of the brick body (1) to intercept water flowing out of the water-permeable holes (6) and prevent the water from splashing upward and around; The blocking structure includes a baffle (8); the baffle (8) is a horizontal sheet structure fixed on a plurality of anti-slip protrusions (7) in the middle of the upper surface of the brick body (1); the baffle (8) covers all the water-permeable holes (6) below; the portions of the baffle (8) that extend beyond the water-permeable holes (6) are bent vertically downward to form a flange (9) for intercepting splashing water; a gap is left between the lower end of the flange (9) and the upper surface of the brick body (1); A plurality of anti-sliding blocks (12) are provided on the lower surface of the brick body (1); the anti-sliding blocks (12) are block-shaped structures that protrude vertically downward from the lower surface of the brick body (1).

2. The anti-splash floor tile according to claim 1, characterized in that: The upper surface of the brick body (1) is a spherical concave structure with a concave center and convex peripheries. A plurality of water-permeable holes (6) are arranged in the middle of the upper surface of the brick body (1).

3. The anti-splash floor tile according to claim 2, characterized in that: The upper surface of the brick body (1) is evenly distributed with a plurality of anti-slip protrusions (7); the anti-slip protrusions (7) are strip structures or boss structures vertically protruding from the upper surface of the brick body (1), and the upper surfaces of the plurality of anti-slip protrusions (7) on the upper surface of the brick body (1) are flush.

4. The anti-splash floor tile according to claim 3, characterized in that: The plurality of water-permeable holes (6) are distributed in the gaps between adjacent anti-slip protrusions (7).

5. The anti-splash floor tile according to claim 1, characterized in that: The lower end surface of the baffle (8) is provided with a plurality of rubber bolts (10); screw holes (11) corresponding to the rubber bolts (10) are provided on the plurality of anti-slip protrusions (7) on the upper surface of the brick body (1) corresponding to the baffle (8); the rubber bolts (10) are vertically squeezed into the corresponding screw holes (11) to detachably fix the baffle (8) on the anti-slip protrusions (7).

6. The anti-splash floor tile according to claim 1, characterized in that: The accommodating cavity (2) is a hemispherical cavity structure with the spherical surface facing upwards.

7. The anti-splash floor tile according to claim 6, characterized in that: The slot (5) is located at the bottom of the accommodating cavity (2).

8. The anti-splash floor tile according to claim 1, characterized in that: The brick body (1) is provided with a second limiting strip (13) on the side where the first limiting strip (3) is arranged; the second limiting strip (13) is located below the accommodating cavity (2), and the second limiting strip (13) is a strip-shaped structure parallel to and equal in length to the first limiting strip (3); the brick body (1) is provided with a second limiting groove (14) on the side where the first limiting groove (4) is arranged; the second limiting strip (13) is embedded in the second limiting groove (14) to connect adjacent brick bodies (1) into one.

Citation Information

Patent Citations

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