Water-permeable brick with splicing positioning structure

CN224704943UActive Publication Date: 2026-09-01WEISHAN AOMA URBAN CONSTR NEW MATERIAL CO LTD
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Patent Information

Application Number
CN202522614351.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-12-10
Publication Date
2026-09-01
Estimated Expiration
2035-12-10

AI Technical Summary

Technical Problem

[0004]本实用新型的目的是为了解决现有技术中存在现有的透水砖安装时通常依靠简单的榫卯结构或直接平铺,在长期使用过程中,在受到外力的作用下,容易发生移位、翘曲或沉降,导致铺装面不平整,影响使用安全和美观的缺点,而提出的一种带拼接定位结构的透水砖

Benefits of technology

通过设置定位结构、辅助结构,让砖体之间实现了机械互锁,当B定位块或辅助块可精确滑入相邻砖体的对应槽中,可以降低了砖体在水平方向上发生位移的概率,提高了铺装整体的稳定性和平整度以及铺装效率,并且多种定位模块(如土字型、T字型)的组合使用,使得铺装方案极为灵活,能轻松应对直线、转角、边界等多种复杂铺装场景。

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Abstract

The utility model relates to water permeable brick technical field especially a kind of water permeable brick with splicing positioning structure, including two water permeable brick bodies, two earth-shaped placement grooves are equipped in water permeable brick body lower side, water permeable brick body front and rear sides are equipped with A positioning groove, water permeable brick body left and right sides are equipped with two B positioning grooves and two C positioning grooves, two C positioning grooves are located between two B positioning grooves, A positioning groove, B positioning groove and C positioning groove are communicated with earth-shaped placement groove, positioning structure and auxiliary structure can be installed in water permeable brick body lower side, skeleton structure is filled in water permeable brick body interior. By setting positioning structure, auxiliary structure, realize mechanical interlock between brick body, when B positioning block or auxiliary block can be accurately slid into the corresponding groove of adjacent brick body, the probability that brick body occurs displacement in horizontal direction can be reduced, the stability and flatness of paving whole are improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of permeable bricks, in particular to a permeable brick with a splicing positioning structure. Background Art

[0002] Permeable brick is an environmentally friendly porous material, which is mainly made of concrete by mixing river sand, cement and water, and then adding a permeable agent. Its color depends on the added pigment. It has been widely used in urban roads, squares, parking lots and other places, and can effectively alleviate urban waterlogging and replenish groundwater.

[0003] When existing permeable bricks are installed, they usually rely on a simple tenon-and-mortise structure or are directly laid flat. During long-term use, under the action of external forces, they are prone to displacement, warping or settlement, resulting in uneven paving surfaces and affecting use safety and aesthetics. Therefore, we propose a permeable brick with a splicing positioning structure to solve the above problems. Utility Model Content

[0004] The purpose of the utility model is to provide a permeable brick with a splicing positioning structure to solve the disadvantage in the prior art that when existing permeable bricks are installed, they usually rely on a simple tenon-and-mortise structure or are directly laid flat, and during long-term use, under the action of external forces, they are prone to displacement, warping or settlement, resulting in uneven paving surfaces and affecting use safety and aesthetics.

[0005] In order to achieve the above purpose, the utility model adopts the following technical solution: A permeable brick with a splicing positioning structure is designed, comprising two permeable brick bodies. Two I-shaped placement grooves are provided on the lower side of the permeable brick body. A-positioning grooves are provided on both the front and rear sides of the permeable brick body, and two B-positioning grooves and two C-positioning grooves are provided on both the left and right sides of the permeable brick body. The two C-positioning grooves are located between the two B-positioning grooves. The A-positioning grooves, B-positioning grooves and C-positioning grooves communicate with the I-shaped placement grooves. A positioning structure and an auxiliary structure can be installed on the lower side of the permeable brick body, and a framework structure is filled inside the permeable brick body.

[0006] Preferably, the framework structure comprises a connecting ring and four C-shaped supporting frameworks. Four sliding holes are provided at both the left and right ends of the upper side of the connecting ring. A-positioning blocks are fixedly connected to both ends of the C-shaped supporting framework, and the A-positioning blocks can slide inside the sliding holes.

[0007] By adopting the above structure, the framework structure can support the permeable brick body, making the overall permeable brick more stable and reliable.

[0008] Preferably, three connecting strips are fixedly connected to the inner side of the connecting ring.

[0009] By adopting the above structure, the connecting strip plays a supporting and positioning role for the connecting ring, allowing the connecting ring to better support and position multiple C-shaped support frames, making the whole structure more stable.

[0010] Preferably, the C-shaped support frame has an upward-facing opening and is integrally formed with the A-positioning blocks at both ends.

[0011] Preferably, the positioning structure includes a T-shaped support block, a support strip on the rear side of the T-shaped support block, and a T-shaped support block on the rear side of the support strip. The support strip, the T-shaped support block, and the T-shaped support block can slide inside the T-shaped placement groove. A positioning block B is fixedly connected to the three upper ends of the T-shaped support block, the two upper ends of the support strip, and the five upper ends of the T-shaped support block. The positioning block B can slide inside the positioning groove A, the positioning groove B, or the positioning groove C.

[0012] By adopting the above structure, the positioning structure can be of multiple types and can be installed on the underside of the permeable bricks for the installation and combination of multiple permeable bricks, thus improving the convenience of permeable brick installation.

[0013] Preferably, the auxiliary structure includes a second T-shaped support block, a second support strip on the rear side of the second T-shaped support block, and a second T-shaped support block on the rear side of the second support strip. The second support strip, the second T-shaped support block, and the second T-shaped support block can slide inside the T-shaped placement groove. An auxiliary block is fixedly connected to three ends of the second T-shaped support block, two ends of the second support strip, and five ends of the second T-shaped support block. The auxiliary block can slide inside the A positioning groove, the B positioning groove, or the C positioning groove.

[0014] By adopting the above structure, the auxiliary structure and positioning structure are of various types, which can be installed on the permeable bricks to fill the underside of the permeable bricks and ensure the overall structure of the permeable bricks. If necessary, the positioning structure can be used to allow multiple permeable bricks to be quickly assembled.

[0015] The permeable brick with a splicing and positioning structure proposed in this utility model has the following advantages: By setting up positioning and auxiliary structures, mechanical interlocking is achieved between the bricks. When the B positioning block or auxiliary block can slide precisely into the corresponding groove of the adjacent brick, the probability of the brick shifting in the horizontal direction can be reduced, improving the overall stability, flatness and paving efficiency of the paving. Furthermore, the combined use of multiple positioning modules (such as the T-shaped and T-shaped) makes the paving scheme extremely flexible and can easily cope with various complex paving scenarios such as straight lines, corners and boundaries.

[0016] By setting up a skeleton structure, a high-strength spatial support network is formed, thereby creating a stable stress frame inside the brick body. This evenly distributes external pressure, reduces stress concentration, and allows the permeable brick to maintain high porosity while also having good compressive and impact resistance. Attached Figure Description

[0017] Figure 1 This is a schematic diagram of the front three-dimensional structure of a permeable brick with a splicing and positioning structure proposed in this utility model; Figure 2 This is a schematic diagram of the lower three-dimensional structure of a permeable brick with a splicing and positioning structure proposed in this utility model; Figure 3 The present utility model proposes Figure 1 A magnified three-dimensional structural diagram of a portion of area A in the middle; Figure 4 This is a schematic diagram of the separation and explosion structure of a permeable brick with a splicing and positioning structure proposed in this utility model; Figure 5 The present utility model proposes Figure 4 A magnified three-dimensional structural diagram of a portion of area B in the middle section; Figure 6 The present utility model proposes Figure 4 A magnified three-dimensional structural diagram of a portion of the central C region.

[0018] In the diagram: 1. Permeable brick body; 2. T-shaped placement groove; 3. Positioning groove A; 4. Positioning groove B; 5. Positioning groove C; 6. Positioning structure; 61. T-shaped support block one; 62. Support strip one; 63. T-shaped support block one; 64. Positioning block B; 7. Auxiliary structure; 71. T-shaped support block two; 72. Support strip two; 73. T-shaped support block two; 74. Auxiliary block; 8. Skeleton structure; 81. Connecting ring; 82. C-shaped support skeleton; 83. Positioning block A; 84. Connecting strip. Detailed Implementation

[0019] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments.

[0020] Reference Figure 1-6 A permeable brick with a splicing and positioning structure includes two permeable brick bodies 1, and the permeable brick body 1 is filled with a skeleton structure 8. The skeleton structure 8 includes a connecting ring 81 and four C-shaped support frames 82. Three connecting strips 84 are fixedly connected to the inner side of the connecting ring 81. The connecting strips 84 support and position the connecting ring 81, making its shape more stable. This allows the connecting ring 81 to better support and position the multiple C-shaped support frames 82, resulting in greater overall stability. Each C-shaped support frame 82 has an A-positioning block 83 fixedly connected to both ends. The opening of the C-shaped support frame 82 faces upwards, and the C-shaped support frame 82 and its two ends of the A-positioning blocks 83 are integrally formed. The upward-facing opening facilitates water permeability. The connecting ring 81 has four sliding holes on both the left and right sides of its upper side. The A positioning block 83 can slide inside the sliding holes. During the processing of the permeable brick, the A positioning block 83 is slid into the sliding hole on the connecting ring 81, so that the connecting ring 81, the A positioning block 83 and the C-shaped support frame 82 form a frame as a whole. Then, the material of the corresponding material is wrapped around the frame to form the permeable brick body 1. At this time, the frame will fill the permeable brick body 1, so that the frame can support the permeable brick, making the permeable brick more stable as a whole, and allowing the permeable brick to withstand greater pressure. The permeable brick body 1 has two T-shaped placement grooves 2 on the lower side. The permeable brick body 1 has A positioning grooves 3 on both the front and rear sides. The permeable brick body 1 has two B positioning grooves 4 and two C positioning grooves 5 on both the left and right sides. The two C positioning grooves 5 are located between the two B positioning grooves 4. The A positioning grooves 3, B positioning grooves 4 and C positioning grooves 5 are connected to the T-shaped placement grooves 2. A positioning structure 6 can be installed on the lower side of the permeable brick body 1; Positioning structure 6 includes a T-shaped support block 61, a support strip 62 on the rear side of the T-shaped support block 61, and a T-shaped support block 63 on the rear side of the support strip 62. The support strip 62, the T-shaped support block 63, and the T-shaped support block 61 can slide inside the T-shaped placement groove 2. Positioning blocks 64 are fixedly connected to three ends of the T-shaped support block 63, two ends of the support strip 62, and five ends of the T-shaped support block 61. Positioning blocks 64 can slide in positioning grooves A and B. Inside the C-positioning groove 5, the T-shaped support block 61 and five B-positioning blocks 64 form a positioning structure that can cover half of the permeable brick. Support strip 62 and B-positioning blocks 64, as well as T-shaped support block 63 and B-positioning blocks 64, form two positioning structures to cover half of the permeable brick. The positioning structure formed by T-shaped support block 63 and B-positioning blocks 64 is used for installation at the lower end of the permeable brick, while the positioning structure formed by support strip 62 and B-positioning blocks 64 is used for installation in the middle of the lower side of the permeable brick. This is done according to requirements. For a single or half permeable brick, the positioning structure of the T-shaped support block 61 can be used. For an end piece, the positioning structure of the T-shaped support block 63 should be used. When removing a permeable brick from one end, the positioning structure of the T-shaped support block 61 and the support strip 62 should be used together. If the T-shaped support block 61 is unavailable, the T-shaped support block 63 and the support strip 62 can be used in combination. When installing multiple permeable bricks, the positioning structure should be installed under the permeable bricks. The two B positioning blocks 64 will slide into the A positioning groove 3, B positioning groove 4 or C positioning groove 5 around the permeable brick body 1, so that the B positioning blocks 64 will play a positioning role for the permeable brick body 1, and multiple permeable bricks can be quickly spliced ​​together. The multiple B positioning grooves 4 and C positioning grooves 5 on both sides of the permeable brick body 1 can allow multiple permeable bricks to be installed in an alternating manner, which improves the installation efficiency of permeable bricks, and will fill the grooves on the permeable bricks, thereby providing support for the permeable bricks and making the permeable bricks more stable after being laid. An auxiliary structure 7 can be installed on the underside of the permeable brick body 1; Auxiliary structure 7 includes a second T-shaped support block 71, a second support strip 72 on the rear side of the second T-shaped support block 71, and a second T-shaped support block 73 on the rear side of the second support strip 72. The second support strip 72, the second T-shaped support block 73, and the second T-shaped support block 71 can slide inside the second T-shaped placement groove 2. Auxiliary blocks 74 are fixedly connected to three ends of the second T-shaped support block 73, two ends of the second support strip 72, and five ends of the second T-shaped support block 71. Auxiliary blocks 74 can slide inside positioning groove A 3, positioning groove B 4, or positioning groove C 5. The auxiliary structure 7 is almost identical to the positioning structure 6, except that the auxiliary block 74 and the B positioning block 64 are different. In the positioning structure 6, the B positioning block 64 can slide into the groove of two permeable bricks installed together, while the auxiliary block 74 can only slide into the groove of the corresponding permeable brick. However, the B positioning block 64 and the B positioning block 64 and the auxiliary block 74 can all form a whole and slide into the groove. The T-shaped support block 71 and five auxiliary blocks 74 form a filling auxiliary structure that can cover half of the permeable brick. The support strip 72 and auxiliary blocks 74, as well as the T-shaped support block 73 and auxiliary blocks 74, form two filling auxiliary structures to cover half of the permeable brick. The usage is the same as that of the positioning structure 6. They are mostly installed on the permeable bricks at the edge. In conjunction with the positioning structure 6, they can play a positioning role, fill the permeable brick, reduce the probability of interference, and facilitate installation.

[0021] In the description of this patent, it should be noted that the terms "center," "upper," "lower," "left," "right," "vertical," "horizontal," "inner," and "outer," etc., indicating the orientation or positional relationship, are based on the orientation or positional relationship shown in the accompanying drawings and are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation on this utility model; the terms "first," "second," and "third" are used for descriptive purposes only and should not be construed as indicating or implying relative importance; furthermore, unless otherwise explicitly specified and limited, the terms "installed," "connected," and "linked" should be interpreted broadly, for example, they can be fixed connections, detachable connections, or integral connections; they can be mechanical connections or electrical connections; they can be direct connections or indirect connections through an intermediate medium; they can be internal connections between two components. For those skilled in the art, the specific meaning of the above terms in this patent can be understood according to the specific circumstances.

[0022] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.

Claims

1. A permeable brick with a splicing and positioning structure, comprising two permeable brick bodies (1), characterized in that, Two I-shaped placement grooves (2) are provided on the lower side of the permeable brick body (1), A positioning grooves (3) are respectively provided on the front side and the rear side of the permeable brick body (1), two B positioning grooves (4) and two C positioning grooves (5) are respectively provided on the left side and the right side of the permeable brick body (1), the two C positioning grooves (5) are located between the two B positioning grooves (4), the A positioning grooves (3), the B positioning grooves (4) and the C positioning grooves (5) are in communication with the I-shaped placement grooves (2), a positioning structure (6) and an auxiliary structure (7) can be installed on the lower side of the permeable brick body (1), a framework structure (8) is filled inside the permeable brick body (1), the framework structure (8) comprises a connecting ring (81) and four C-shaped supporting frameworks (82), four sliding holes are respectively provided at the left and right ends of the upper side of the connecting ring (81), two ends of each C-shaped supporting framework (82) are fixedly connected with A positioning blocks (83), and the A positioning blocks (83) can slide inside the sliding holes.

2. The permeable brick with a splicing and positioning structure according to claim 1, characterized in that, Three connecting strips (84) are fixedly connected to the inner side of the connecting ring (81).

3. A permeable brick with a splicing and positioning structure according to claim 1, characterized in that, The opening of the C-shaped supporting framework (82) faces upward, and the C-shaped supporting framework (82) and the A positioning blocks (83) at the two ends of the C-shaped supporting framework (82) are integrally formed.

4. A permeable brick with a splicing and positioning structure according to claim 1, characterized in that, The positioning structure (6) comprises a first I-shaped supporting block (61), a first supporting strip (62) is provided at the rear side of the first I-shaped supporting block (61), a first T-shaped supporting block (63) is provided at the rear side of the first supporting strip (62), the first supporting strip (62), the first T-shaped supporting block (63) and the first I-shaped supporting block (61) can slide inside the I-shaped placement grooves (2), B positioning blocks (64) are fixedly connected at three ends of the first T-shaped supporting block (63), two ends of the first supporting strip (62) and five ends of the first I-shaped supporting block (61), and the B positioning blocks (64) can slide inside the A positioning grooves (3), the B positioning grooves (4) or the C positioning grooves (5).

5. A permeable brick with a splicing and positioning structure according to claim 1, characterized in that, The auxiliary structure (7) comprises a second I-shaped supporting block (71), a second supporting strip (72) is provided at the rear side of the second I-shaped supporting block (71), a second T-shaped supporting block (73) is provided at the rear side of the second supporting strip (72), the second supporting strip (72), the second T-shaped supporting block (73) and the second I-shaped supporting block (71) can slide inside the I-shaped placement grooves (2), auxiliary blocks (74) are fixedly connected at three ends of the second T-shaped supporting block (73), two ends of the second supporting strip (72) and five ends of the second I-shaped supporting block (71), and the auxiliary blocks (74) can slide inside the A positioning grooves (3), the B positioning grooves (4) or the C positioning grooves (5).