CN213571372U - Antiskid type view pavement brick that permeates water - Google Patents

Antiskid type view pavement brick that permeates water Download PDF

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Publication number
CN213571372U
CN213571372U CN202021329542.0U CN202021329542U CN213571372U CN 213571372 U CN213571372 U CN 213571372U CN 202021329542 U CN202021329542 U CN 202021329542U CN 213571372 U CN213571372 U CN 213571372U
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brick
brick body
water
water permeable
rainwater
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CN202021329542.0U
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Chinese (zh)
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王伯勛
周峻岭
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Shunde Polytechnic
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Shunde Polytechnic
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Abstract

The utility model relates to the technical field of urban facility construction, in particular to an anti-skid landscape footpath water permeable brick, which comprises a first brick body, a second brick body and an anti-skid prism, wherein the edges of two sides of the first brick body are provided with grooves, and the edges of the other two sides are provided with clamping blocks; the second brick body is fixedly arranged above the first brick body and is positioned on the same central axis with the first brick body, and the side edge of the second brick body is of a concave structure bent towards the center; the lower surface of the second brick body is provided with a water chute; the anti-skidding prism is arranged on the upper surface of the second brick body. The utility model provides an antiskid type view pavement brick that permeates water not only can make the rainwater permeate into the soil horizon under the brick that permeates water, can also prevent effectively that the rainwater from gathering on the brick top layer that permeates water with the region beyond rainwater water conservancy diversion to the view pavement.

Description

Antiskid type view pavement brick that permeates water
Technical Field
The utility model relates to a city facility construction technical field specifically discloses an antiskid type view pavement brick that permeates water.
Background
The water permeable brick is a new environment-friendly building material product which is produced for solving the problem of hardening of the surface of the city, creating a high-quality natural living environment and maintaining the ecological balance of the city. The water permeable brick has good water permeability and air permeability, can enable rainwater to rapidly permeate into the ground, replenish soil water and underground water, keep soil humidity, improve the survival conditions of urban ground plants and soil microorganisms, can absorb water and heat, adjust the temperature and the humidity of local space of the ground surface, have great effects on adjusting urban microclimate and relieving urban heat island effect, can reduce urban drainage and flood control pressure, has good effect on preventing pollution of public water areas and treating sewage, and enables roads not to accumulate water.
Most of the existing water permeable bricks enable rainwater to permeate into soil below the bricks, but when rainfall is large, the water absorption capacity of a surface soil layer is easy to reach saturation, and at the moment, sewage is easy to accumulate on the surface layers of the water permeable bricks to influence walking.
SUMMERY OF THE UTILITY MODEL
The utility model provides an antiskid type view pavement brick that permeates water not only can make the rainwater permeate into the soil horizon under the brick that permeates water, can also effectively prevent that the rainwater from gathering on the brick top layer that permeates water in the region beyond the rainwater water conservancy diversion that unnecessary gathers to the view pavement.
The utility model provides an antiskid type view pavement brick that permeates water, include:
the first brick body is of a square structure, grooves are formed in the edges of two sides of the first brick body, and clamping blocks matched with the grooves are arranged on the edges of the other two sides of the first brick body;
the second brick body is fixedly arranged above the first brick body and is positioned on the same central axis with the first brick body, and the side edges of the second brick body are both of concave structures bent towards the center; a plurality of water chutes are formed in the lower surface of the second brick body at intervals;
the anti-skid prisms are arranged on the upper surface of the second brick body at intervals;
when the permeable bricks are spliced, the clamping blocks on the first brick bodies can be clamped in the grooves on the adjacent first brick bodies.
Preferably, the size of the latch is smaller than the size of the groove.
Preferably, the second brick body is vertically provided with a water leakage hole in a penetrating mode, and the water leakage hole is communicated with the water guide groove.
Preferably, the top ends of the water leakage holes and the two ends of the water chute are provided with separation nets.
Preferably, a plurality of fixing piles are vertically arranged on the lower surface of the first brick body.
Preferably, the second brick body is of a quadrilateral structure, and the vertex angle of the second brick body is flush with the vertex angle of the first brick body.
Contrast prior art, the beneficial effects of the utility model are that:
the utility model provides an antiskid type view pavement brick that permeates water, the side of the second brick body is the interior concave type structure that bends towards the center, and when a plurality of bricks that permeate water splice, rainwater can gather in the dead slot structure that the adjacent second brick body surrounds and slowly permeate into the soil layer under the brick that permeates water; the lower surface of the second brick body is provided with the water guide groove, rainwater accumulated in the empty groove structure can be guided to regions outside the landscape footpath through the water guide groove, such as non-walking regions of bushes, lawns and the like, and the influence on walking caused by accumulation of rainwater on the surface layer of the permeable brick when the rainfall is too large is effectively prevented.
Drawings
FIG. 1 is a schematic structural view of a non-slip landscape footpath water permeable brick provided in example 1;
FIG. 2 is a schematic view of the splicing of the non-slip landscape footpath water permeable bricks provided in example 1;
FIG. 3 is another schematic structural diagram of the anti-skid landscape footpath water permeable brick provided in example 2;
fig. 4 is a schematic splicing view of another structure of the anti-skid landscape footpath water permeable brick provided in embodiment 2.
Description of reference numerals: 100. a first brick body; 101. a groove; 102. a clamping block; 103. fixing the pile; 200. a second brick body; 201. a water chute; 202. a water leakage hole; 300. an anti-slip prism.
Detailed Description
In the following, an embodiment of the present invention will be described in detail with reference to the drawings, but it should be understood that the scope of the present invention is not limited by the embodiment.
In the description of the present invention, it should be understood that the terms "center", "longitudinal", "upper", "lower", "top", "bottom", "inner", "outer", "axial", "radial", "circumferential", and the like indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings, and are only for convenience of describing technical aspects of the present invention and simplifying the description, but do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and thus, should not be construed as limiting the present invention.
Example 1
With reference to fig. 1-2, the anti-slip landscape footpath water permeable brick provided by the embodiment of the present invention comprises a first brick body 100, a second brick body 200 and an anti-slip prism 300;
the first brick body 100 is a square structure, wherein the edges of two sides are provided with grooves 101, and the edges of the other two sides are provided with clamping blocks 102 matched with the grooves 101; when a plurality of water permeable bricks are spliced, the fixture block 102 on the first brick body 100 can be clamped in the groove 101 on the adjacent first brick body 100; the splicing mode can prevent accumulated water in the gap from splashing out to influence walking due to the looseness of the water permeable bricks during walking;
the second brick body 200 is fixedly arranged above the first brick body 100 and is positioned on the same central axis with the first brick body 100, namely the centers of the first brick body 100 and the second brick body 200 are arranged in a superposition way, and the side edges of the second brick body 200 are both of concave structures which are bent towards the center; a plurality of water chutes 201 are arranged on the lower surface of the second brick body 200 at intervals;
when a plurality of water permeable bricks are spliced, because the side edges of the second brick bodies 200 are of an inward concave structure, an empty groove structure can be enclosed between the adjacent second brick bodies 200, rainwater can be accumulated in the empty groove structure, and because the first brick bodies 100 below the adjacent second brick bodies 200 are spliced, gaps are reserved between the spliced water permeable bricks, and the gaps can allow rainwater to downwards permeate into soil surface layers below the water permeable bricks; in addition, as the lower surface of the second brick body 200 is provided with the water chute 201, rainwater accumulated in the empty chute structure can be drained through the high water chute 201 and flows to landscape footpaths such as shrubs, lawns and other non-walking areas, so that the rainwater is effectively prevented from accumulating on the surface layer of the permeable brick to influence walking;
the anti-skid prisms 300 are arranged on the upper surface of the second brick body 200 at intervals to play an anti-skid role;
further, when a plurality of water permeable bricks are spliced, in order to enable rainwater to easily permeate into the ground surface layer, the size of the fixture block 102 is smaller than that of the groove 101, so that a gap between adjacent water permeable bricks can be increased when the water permeable bricks are connected, and rainwater can permeate conveniently.
Furthermore, the second brick body 200 is provided with a water leakage hole 202 in a penetrating manner, the water leakage hole 202 is communicated with the water chute 201, and the water leakage hole 202 can provide a containing cavity for rainwater, so that rainwater accumulation on the surface layer of the water permeable brick is reduced, and rainwater inflow into the ground or the water chute 201 is accelerated.
Furthermore, in order to prevent sundries such as leaves, silt and the like from entering the water leakage holes 202 and the water chute 201 and affecting the water permeation effect of the water permeable brick, the top ends of the water leakage holes 202 and the two ends of the water chute 201 are respectively provided with a separation net which can isolate the sundries from entering the water leakage holes 202 and the water chute 201.
Further, in order to strengthen the steadiness that the brick that permeates water was laid, at the vertical a plurality of spud piles 103 that are equipped with of first brick body 100 lower surface, spud pile 103 can stretch into the soil horizon and lay sand bed, cement layer etc. effectively prevents to permeate water the brick not hard up.
Example 2
With reference to fig. 3-4, the difference from the above embodiment is that:
the second brick body 200 is the quadrilateral structure, and the apex angle of the second brick body 200 flushes the setting with the apex angle of the first brick body 100, and this kind of design can reduce the size of the dead slot that encloses between the adjacent second brick body 200, prevents because the dead slot is too big, influences the walking.
The above disclosure is only for a few specific embodiments of the present invention, however, the present invention is not limited to the embodiments, and any changes that can be considered by those skilled in the art shall fall within the protection scope of the present invention.

Claims (6)

1. The utility model provides an antiskid type view pavement brick that permeates water, its characterized in that includes:
the first brick body (100) is of a square structure, grooves (101) are formed in the edges of two sides, and clamping blocks (102) matched with the grooves (101) are arranged in the edges of the other two sides;
the second brick body (200) is fixedly arranged above the first brick body (100) and is positioned on the same central axis with the first brick body (100), and the side edge of the second brick body (200) is of a concave structure bent towards the center; a plurality of water chutes (201) are arranged on the lower surface of the second brick body (200) at intervals;
the anti-skid prisms (300) are arranged on the upper surface of the second brick body (200) at intervals;
when the water permeable bricks are spliced, the fixture blocks (102) on the first brick bodies (100) can be clamped in the grooves (101) on the adjacent first brick bodies (100).
2. The antiskid landscape footpath water permeable brick according to claim 1, wherein the size of the fixture block (102) is smaller than that of the groove (101).
3. The antiskid landscape footpath water permeable brick according to claim 1, wherein the second brick body (200) is vertically provided with water leakage holes (202) in a penetrating way, and the water leakage holes (202) are communicated with the water chute (201).
4. The non-slip landscape footpath water permeable brick according to claim 3, wherein the top ends of the water leakage holes (202) and the two ends of the water chute (201) are provided with a separation net.
5. The antiskid landscape footpath water permeable brick according to claim 1, wherein a plurality of fixing piles (103) are vertically arranged on the lower surface of the first brick body (100).
6. The non-slip landscape footpath water permeable brick according to claim 1, wherein the second brick body (200) is of a quadrilateral structure, and the top angle of the second brick body (200) is flush with the top angle of the first brick body (100).
CN202021329542.0U 2020-07-08 2020-07-08 Antiskid type view pavement brick that permeates water Active CN213571372U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021329542.0U CN213571372U (en) 2020-07-08 2020-07-08 Antiskid type view pavement brick that permeates water

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021329542.0U CN213571372U (en) 2020-07-08 2020-07-08 Antiskid type view pavement brick that permeates water

Publications (1)

Publication Number Publication Date
CN213571372U true CN213571372U (en) 2021-06-29

Family

ID=76551745

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202021329542.0U Active CN213571372U (en) 2020-07-08 2020-07-08 Antiskid type view pavement brick that permeates water

Country Status (1)

Country Link
CN (1) CN213571372U (en)

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