CN211815303U - Gap water permeable brick with improved water drainage - Google Patents

Gap water permeable brick with improved water drainage Download PDF

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Publication number
CN211815303U
CN211815303U CN201922499973.5U CN201922499973U CN211815303U CN 211815303 U CN211815303 U CN 211815303U CN 201922499973 U CN201922499973 U CN 201922499973U CN 211815303 U CN211815303 U CN 211815303U
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water
brick body
brick
gap
drainage
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CN201922499973.5U
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俞裕东
廖伟荣
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Shenzhen Honghengxing Regeneration Technology Co ltd
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Shenzhen Honghengxing Regeneration Technology Co ltd
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Abstract

The utility model relates to an improve gap brick that permeates water of drainage, it includes the brick body, and one side of the brick body is provided with the bead that is used for the adjacent brick body of butt, and the quantity of bead is more than or equal to two, and one side definition that is provided with the bead on the brick body is the butt face, and the water drainage tank has been seted up to the butt face, and the water drainage tank link up the brick body, and the lower surface of the water drainage tank intercommunication brick body, and the water service mouth that the water supply flow passed is seted up to the bottom of bead. The convex edges on the brick bodies can be abutted against one side of the adjacent brick bodies, which is far away from the abutting surface, so that a gap is reserved between the two adjacent brick bodies. When weather rains, water can flow from the gaps into the soil below the water permeable bricks or flow away through the drainage grooves quickly. When the rainfall is large, the water entering the convex ribs of the adjacent brick bodies can flow into the drainage groove from the water through hole, so that the rainwater is prevented from being accumulated between the convex ribs. The utility model discloses the effect that improves drainage has.

Description

Gap water permeable brick with improved water drainage
Technical Field
The utility model belongs to the technical field of the technique of gap brick that permeates water and specifically relates to a gap brick that permeates water that improves drainage is related to.
Background
Many existing town roads are paved by waterproof materials such as cement concrete, asphalt, stone and the like. The hardened pavement has poor water permeability, influences the natural rainfall, the coordination between surface water and underground water, brings about the problems of urban desertification and heat island effect, and is not beneficial to urban water balance.
Among the prior art as the chinese utility model of grant bulletin number CN206070288U discloses a brick permeates water in sponge city, in the embodiment one of this patent, the arch-shaped groove has been seted up to the lower terminal surface of the brick body that permeates water, and the arch-shaped groove runs through two lateral walls dorsad of the brick body that permeates water, and the lateral wall of the brick body that permeates water is equipped with the arch. When the permeable bricks are laid, the arched grooves of the adjacent permeable bricks are communicated, and the bulges of the adjacent permeable bricks are contacted with the corresponding end surfaces, so that gaps exist between the adjacent permeable bricks, and water can rapidly flow into the soil below the permeable bricks from the gaps. If the rainfall is large, the arched groove not only has a drainage function, but also has a temporary water storage function.
The water permeable bricks in the above patents can increase the water permeability of the road surface after being paved into the road surface, but have certain defects. For example, in such a pavement, the projections of adjacent water permeable bricks contact the corresponding end surfaces, so that a receiving cavity is formed between the projections located in the middle of the water permeable bricks. When rainfall is great, rainwater is easy to accumulate in the accommodating cavity, and water in the accommodating cavity cannot be discharged through the arch-shaped groove in time due to poor connectivity between the accommodating cavity and the arch-shaped groove, so that the water drainage of the gap water permeable brick is affected.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing a gap brick that permeates water that improves drainage, it has the characteristics that drainage is good to exist not enough to prior art.
The above utility model discloses an above-mentioned utility model purpose can realize through following technical scheme:
the utility model provides an improve gap brick of permeating water of drainage, includes the brick body, one side of the brick body is provided with and is used for the butt adjacent the bead of the brick body, the quantity of bead is more than or equal to two, be provided with on the brick body one side definition of bead is the butt face, the water drainage tank has been seted up to the butt face, the water drainage tank link up the brick body, just the water drainage tank intercommunication the lower surface of the brick body, the water service mouth that the water supply flow passed is seted up to the bottom of bead.
By adopting the technical scheme, the convex edges on the brick bodies can be abutted against one side, far away from the abutting surfaces, of the adjacent brick bodies, so that a gap is reserved between the two adjacent brick bodies. When weather rains, water can flow from the gaps into the soil below the water permeable bricks or flow away through the drainage grooves quickly. When the rainfall is great, the water that gets into between the adjacent brick body bead can follow the limbers and flow to the water drainage tank to prevent that the rainwater from long-pending staying between the bead, improve the drainage of the brick that the gap permeates water.
Preferably, one side of the brick body, which is far away from the abutting surface, is defined as a locking surface, the locking surface is provided with an insertion block corresponding to the convex edge, the insertion block is provided with a clamping groove for accommodating the convex edge, and the convex edge is accommodated in the adjacent clamping groove.
By adopting the technical scheme, when a user lays the bricks, the convex edges can be arranged in the inserting blocks of the adjacent bricks, so that the user can align the bricks on one hand, and the installation efficiency of the bricks is improved; on the other hand, the bricks are relatively fixed through the matching of the convex edges and the clamping grooves, so that the road surface is more stable.
Preferably, the insertion block is provided with a communication port corresponding to the water passage port, and when the protruding edge is accommodated in the adjacent clamping groove, the communication port is communicated with the corresponding water passage port.
Through adopting above-mentioned technical scheme, prevent that the inserted block bottom from sheltering from the limbers, improve the efficiency that rivers go out the limbers to improve the drainage of gap permeable brick.
Preferably, a guide part is arranged on one surface, close to the clamping groove, of the convex rib, and the clamping groove is matched with the guide part.
Through adopting above-mentioned technical scheme, when the user assembled the brick body, can make the bead along the cell wall relative movement in joint groove with bead butt in the cell wall in joint groove under the guide effect of guide part to get into joint groove, work efficiency when promoting the user installation brick body.
Preferably, the number of the convex ribs is two, the two convex ribs are symmetrically distributed by taking the central axis of the brick body as a symmetry axis, and the length of the abutting surface is twice of the distance between the central points of the two convex ribs.
Through adopting above-mentioned technical scheme, when the user makes each brick body be the article font and arranges, the bead on the adjacent brick body still can hold in the joint groove that corresponds, has improved the flexibility of the equipment of the brick body.
Preferably, the upper surface of the insertion block is provided with a positioning groove, the upper part of the convex rib is provided with a positioning block corresponding to the positioning groove, and the lower surface of the positioning block is attached to the upper surface of the positioning groove.
Through adopting above-mentioned technical scheme, when the brick body takes place to become flexible, people easily make the brick body perk when stepping on the one end on the brick body, if there is ponding still can splash the pedestrian under the brick body. The constant head tank on the brick body accessible locating piece is fixed to the adjacent brick body to the removal of the restriction brick body in vertical side prevents the brick body perk, improves the stability on road surface.
Preferably, the cross section of the drainage channel is arched.
Through adopting above-mentioned technical scheme, improve the firm degree of the brick body.
Preferably, the upper surface of the brick body is provided with a plurality of groups of anti-skid bulges.
Through adopting above-mentioned technical scheme, the frictional force between the multiplicable user and the brick body when walking prevents that the user from slipping.
Preferably, a chamfered portion is provided on the top periphery side of the brick body.
Through adopting above-mentioned technical scheme, the rainwater that descends to brick body top week side can flow to the lateral wall of the brick body along chamfer portion, gets into in the clearance between each brick body for drainage efficiency.
To sum up, the utility model discloses a beneficial technological effect does:
1. the utility model prevents rainwater from staying between the ribs, and improves the drainage of the gap permeable brick;
2. the utility model makes the road surface more stable;
3. the utility model provides the high flexibility of brick body equipment.
Drawings
FIG. 1 is a schematic view showing a structure of a joint surface of a gap water permeable brick for improving drainage.
Fig. 2 is a schematic structural view of a locking surface of a gap water permeable brick for improving drainage.
FIG. 3 is a schematic diagram of a structure of a brick-shaped array.
FIG. 4 is a schematic view of a delta arrangement of bricks.
In the figure, 1, a brick body; 11. chamfering the corner; 2. anti-skid projections; 3. a rib; 31. a guide portion; 32. positioning blocks; 33. a water inlet; 4. inserting a block; 41. a clamping groove; 42. positioning a groove; 43. a communication port; 5. a water discharge tank; A. an abutting surface; B. and (4) locking surfaces.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings.
Referring to fig. 1 and 2, for the utility model discloses an improve gap brick that permeates water of drainage, including the brick body 1, the whole of the brick body 1 is the cuboid. One side of the brick body 1 is defined as an abutting surface A, and the side of the brick body 1 away from the abutting surface A is positioned as a locking surface B.
The upper surface of the brick body 1 is cast and formed with a plurality of groups of anti-skid protrusions 2, the cross sections of the anti-skid protrusions 2 are waist-shaped, and the anti-skid protrusions 2 are distributed at intervals and are parallel to the abutting surfaces A.
Two convex edges 3 are formed on the abutting surface A in a casting mode, the convex edges 3 are long in strip shape, and the convex edges 3 are distributed in the thickness direction of the brick body 1. The two sides of the convex edge 3 far away from one side of the brick body 1 are provided with guide parts 31, and the guide parts 31 incline towards the brick body 1 in an arc shape in the direction from the central axis of the convex edge 3 to the central axis of the convex edge 3. The two convex edges 3 are symmetrically distributed along the central axis of the brick body 1, and the length of the abutting surface A is twice of the distance between the centers of the two convex edges 3.
Two inserting blocks 4 are formed on the locking surface B in a casting mode, the positions of the two inserting blocks 4 correspond to the convex edges 3 respectively, clamping grooves 41 are formed in one sides, far away from the brick body 1, of the inserting blocks 4, the clamping grooves 41 are matched with the convex edges 3, the groove bottoms of the clamping grooves 41 are matched with the guide portions 31, and the convex edges 3 can be contained in the clamping grooves 41.
Referring to fig. 3 and 4, when a user sequentially paves the brick body 1 in a field shape, the two convex edges 3 can be respectively installed in the corresponding insertion blocks 4 on the adjacent locking surfaces B and are matched with the clamping grooves 41 through the convex edges 3 in a buckling manner; when the user makes each brick body 1 be the delta arrangement, the convex edge 3 on the adjacent brick body still can be accommodated in corresponding joint groove 41. On one hand, the structure is convenient for a user to align the brick body 1; on the other hand, the movement between the brick bodies 1 can be limited, so that the road surface is more stable.
Referring to fig. 1 and 2, when the user assembles the brick body 1, the rib 3 can abut against the groove wall of the clamping groove 41, and under the guiding action of the guiding portion 31, the rib 3 relatively moves along the groove wall of the clamping groove 41, so as to enter the clamping groove 41, thereby improving the working efficiency when the user installs the brick body 1.
Two positioning blocks 32 are molded on two sides of the upper part of the convex edge 3, and the upper surfaces of the positioning blocks 32 are flush with the upper surface of the convex edge 3. The upper surface of the insert block 4 is provided with a positioning groove 42, and the positioning groove 42 is matched with the positioning block 32. The positioning block 32 is accommodated in the positioning groove 42 of the adjacent insertion block 4, when the brick body 1 tilts upwards, the insertion block 4 abuts against the positioning block 32, and the positioning block 32 exerts opposite forces on the adjacent brick body 1 through the insertion block 4, so that the adjacent brick body 1 is not easy to loosen.
The abutting surface A is provided with a drainage groove 5, and the longitudinal section of the drainage groove 5 is arched. The drainage channel 5 is positioned between the two convex edges 3, and the drainage channel 5 penetrates through the locking surface B and is communicated with the lower surface of the brick body 1.
The combination of the convex edges 3 and the inserting blocks 4 enables gaps to be reserved among the brick bodies 1, and when weather and rain happen, water can rapidly flow into the soil below the water permeable bricks from the gaps or flow away through the drainage grooves 5, so that the water permeability of the road surface is improved.
The periphery of the top of the brick body 1 is provided with a chamfer part 11, and the section of the chamfer part 11 is arc-shaped. Rainwater falling to the top edge of the brick body 1 can flow to the side wall of the brick body 1 along the smooth part and enter the gaps among the brick bodies 1, so that the drainage efficiency is improved.
The lower surface of the rib 3 is provided with a water through opening 33, the water through opening 33 is arc-shaped and penetrates through two sides of the rib 3, and the water through opening 33 inclines upwards in the direction from the brick body 1 to the direction close to the brick body 1. The lower surface of the inserting block 4 is provided with a communicating opening 43, the communicating opening 43 is arc-shaped and penetrates through two sides of the convex rib 3, and the communicating opening 43 inclines upwards in the direction from being far away from the brick body 1 to being close to the brick body 1.
The water entering between the rib 3 and the insert 4 can flow to the adjacent drainage channel 5 through the water passage port 33 and the communication port 43, and rainwater is prevented from being accumulated between the bricks 1.
The implementation principle of the embodiment is as follows: the convex edge 3 on the brick body 1 can abut against one side of the adjacent brick body 1 far away from the abutting surface A, so that a gap is reserved between the two adjacent brick bodies 1. When weather rains, water can flow quickly from the gaps into the ground below the water permeable bricks or away through the drainage channels 5. When the rainfall is large, the water entering the convex edges 3 of the adjacent brick bodies 1 can flow to the drainage groove 5 from the water through opening 33, so that the rainwater is prevented from being accumulated between the convex edges 3, and the drainage of the gap permeable brick is improved.
The embodiment of this specific implementation mode is the preferred embodiment of the present invention, not limit according to this the utility model discloses a protection scope, so: all equivalent changes made according to the structure, shape and principle of the utility model are covered within the protection scope of the utility model.

Claims (9)

1. The utility model provides an improve permeable to water brick in gap of drainage, includes the brick body (1), its characterized in that: one side of the brick body (1) is provided with and is used for the butt adjacent bead (3) of the brick body (1), the quantity of bead (3) is more than or equal to two, be provided with on the brick body (1) one side definition of bead (3) is butt face (A), water drainage tank (5) have been seted up to butt face (A), water drainage tank (5) link up the brick body (1), just water drainage tank (5) intercommunication the lower surface of the brick body (1), water service mouth (33) that the water supply flow passed are seted up to the bottom of bead (3).
2. The gap water permeable brick with improved water drainage property of claim 1, wherein: one side of the brick body (1) far away from the abutting surface (A) is defined as a locking surface (B), the locking surface (B) is provided with an inserting block (4) corresponding to the convex rib (3), the inserting block (4) is provided with a clamping groove (41) used for accommodating the convex rib (3), and the convex rib (3) is accommodated in the adjacent clamping groove (41).
3. The gap water permeable brick with improved water drainage property of claim 2, wherein: the insertion block (4) is provided with a communication port (43) corresponding to the water passing port (33), and when the convex rib (3) is accommodated in the adjacent clamping groove (41), the communication port (43) is communicated with the corresponding water passing port (33).
4. The gap water permeable brick with improved water drainage property of claim 2, wherein: the rib (3) is close to one side of the clamping groove (41) is provided with a guide part (31), and the clamping groove (41) is matched with the guide part (31).
5. The gap water permeable brick with improved water drainage property of claim 2, wherein: the number of the convex edges (3) is two, the convex edges (3) are symmetrically distributed by taking the central axis of the brick body (1) as a symmetry axis, and the length of the abutting surface (A) is twice of the distance between the central points of the convex edges (3).
6. The gap water permeable brick with improved water drainage property of claim 5, wherein: the upper surface of the inserting block (4) is provided with a positioning groove (42), the upper part of the convex rib (3) is provided with a positioning block (32) corresponding to the positioning groove (42), and the lower surface of the positioning block (32) is attached to the upper surface of the positioning groove (42).
7. The gap water permeable brick with improved water drainage property of claim 1, wherein: the section of the drainage groove (5) is arched.
8. The gap water permeable brick with improved water drainage property of claim 1, wherein: the upper surface of the brick body (1) is provided with a plurality of groups of anti-skid projections (2).
9. The gap water permeable brick with improved water drainage property of claim 1, wherein: the periphery of the top of the brick body (1) is provided with a chamfer part (11).
CN201922499973.5U 2019-12-31 2019-12-31 Gap water permeable brick with improved water drainage Active CN211815303U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201922499973.5U CN211815303U (en) 2019-12-31 2019-12-31 Gap water permeable brick with improved water drainage

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201922499973.5U CN211815303U (en) 2019-12-31 2019-12-31 Gap water permeable brick with improved water drainage

Publications (1)

Publication Number Publication Date
CN211815303U true CN211815303U (en) 2020-10-30

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CN201922499973.5U Active CN211815303U (en) 2019-12-31 2019-12-31 Gap water permeable brick with improved water drainage

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112609526A (en) * 2020-12-12 2021-04-06 深圳市宝安湾建筑废弃物循环利用有限公司 Assembled ecological self-drainage runoff foundation block

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112609526A (en) * 2020-12-12 2021-04-06 深圳市宝安湾建筑废弃物循环利用有限公司 Assembled ecological self-drainage runoff foundation block

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