Spliced stone-like brick
By designing the base plate, connecting components, and drainage mechanism of the interlocking imitation stone bricks, the problems of loose connections and blocked drainage channels in imitation stone bricks are solved, achieving stable connections and efficient drainage, and improving the overall stability and service life of the imitation stone bricks.
Patent Information
- Application Number
- CN202522440597.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-18
- Publication Date
- 2025-12-23
- Estimated Expiration
- 2035-11-18
AI Technical Summary
The existing imitation stone bricks have insufficient bonding strength, are prone to loosening and displacement, and are easily blocked in the drainage channels, affecting the smoothness of the road surface and the drainage effect, thus posing a safety hazard.
The structure adopts a spliced imitation stone brick structure, including a base plate, connecting components, imitation stone slabs, sand-proof components, and reinforcing blocks. Through the design of limiting holes and limiting posts, groove through holes, and drainage mechanisms, the imitation stone slabs and base plate are precisely positioned and firmly connected, and a continuous drainage channel is constructed to prevent impurities from clogging the system.
It improves the overall stability and pull-out resistance of imitation stone bricks, maintains long-term stable drainage performance, extends service life, ensures a flat and beautiful paved surface, enhances impact resistance, and avoids safety hazards.
Smart Images

Figure CN223706169U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to building material technical field, concretely is a spliced imitation stone brick. BACKGROUND
[0002] The imitation stone brick is a kind of building material widely used in square, sidewalk, garden and other pavement paving, is popular because it has the texture of natural stone and lower cost.The existing imitation stone brick paving mostly uses simple splicing mode, such as flat joint or single rabbet connection, and the connecting strength between brick bodies is insufficient.Under the action of long-term load and environmental factors, it is easy to produce problems such as loosening, displacement and warping, not only affects the flatness and aesthetics of pavement, but also has safety hazards.Therefore, how to optimize the splicing structure and effectively improve the overall stability and pullout resistance of the imitation stone brick after paving has become one of the technical problems to be solved in the field.
[0003] In addition, the drainage function of the traditional imitation stone brick pavement system mainly depends on the joint between the bricks to seep water.In actual use, road dust, soil and other small impurities are easy to enter and stay in the joint or the drainage channel at the bottom of the brick with rainwater, and long-term accumulation will cause channel blockage, making its drainage function significantly decline or even fail.This not only affects the road drainage effect in rainy days, but also accelerates the erosion of the base layer, shortens the overall service life of the pavement.
[0004] Therefore, how to effectively prevent impurities from blocking the drainage channel and maintain its long-term and stable drainage performance is another aspect that needs to be improved in the current imitation stone brick pavement technology. UTILITY MODEL CONTENTS
[0005] The utility model aims at providing a spliced imitation stone brick, which has the advantages of stable structure, firm connection, smooth drainage and difficulty in blocking, and solves the problems in the prior art.
[0006] To achieve the above-mentioned purpose, the utility model provides the following technical scheme:
[0007] A spliced imitation stone brick, comprising a base plate, a connecting assembly arranged at the upper end of the base plate, imitation stone plates arranged at both sides of the connecting assembly, a sand prevention assembly placed at the upper end of the connecting assembly, grooves arranged at both sides of the imitation stone plates and reinforcing blocks arranged at both ends of the base plate.
[0008] The imitation stone plate is in the shape of an I-beam, a first groove body is arranged at one end of the base plate, a plurality of first water flow grooves are arranged at the upper end of the base plate, and the first water flow grooves and the first groove body at the middle of the upper end of the base plate are interconnected.
[0009] The reinforcing block is provided with a drainage mechanism, and the drainage mechanism and the first groove body are interconnected.
[0010] Preferably, a plurality of limiting holes are formed through the upper end of the substrate, and a plurality of limiting columns are fixed to the lower end of the imitation stone plate.
[0011] Notably, the matching structure of the limiting hole and the limiting column can achieve accurate positioning and splicing of the imitation stone plate and the substrate, avoid transverse or longitudinal displacement of the imitation stone plate relative to the substrate during paving or use, and effectively ensure the overall flatness after paving.
[0012] Preferably, the connecting assembly includes a bottom block placed on the upper end of the substrate, a limiting block fixed to the upper end of the bottom block, a plurality of second grooves formed through one end of the limiting block, a plurality of first through holes formed through one side of the limiting block, and a top block fixed to the upper end of the limiting block. The bottom block, the limiting block, and the top block form an integrated structure, and the upper end of the integrated structure is formed with a second water flow groove corresponding to the first water flow groove.
[0013] Notably, the connecting assembly adopts an integrated structure of the bottom block, the limiting block, and the top block, which can significantly improve the structural strength and carrying capacity of the connecting assembly, avoid collapse or damage of the splicing part caused by loose connection of the split type assembly, prolong the service life of the imitation stone brick, and ensure the size fit between the bottom block, the limiting block, and the top block. The adaptability with the substrate and the imitation stone plate is ensured, and the second water flow groove is correspondingly arranged with the first water flow groove to form a continuous drainage channel, which can quickly guide the water on the surface of the substrate into the water flow system for drainage, preventing water accumulation from causing corrosion to the substrate and the connecting assembly.
[0014] Notably, a plurality of second through holes are formed through the inner wall of the groove at equal intervals, and the second through holes correspond to the first through holes.
[0015] Notably, the second through holes of the groove inner wall correspond to the first through holes of the limiting block, which can form a through connection channel on one hand, facilitating the insertion of connecting members such as bolts and pins, achieving stable connection between adjacent imitation stone plates and the connecting assembly, effectively limiting the lateral displacement of the imitation stone plate, improving the overall structure of the spliced whole, and avoiding the imitation stone plate from becoming larger or misaligned due to external forces. On the other hand, the through channel can serve as an auxiliary drainage path, allowing water on the surface of the imitation stone plate to quickly flow into the lower water flow groove through the second through holes and the first through holes when it seeps into the groove, further enhancing the drainage effect of the structure.
[0016] Preferably, the drainage mechanism includes a plurality of second insertion blocks fixed to the reinforcing block near the substrate at equal intervals, a fourth water flow groove formed through the second insertion block near the substrate, and a fifth water flow groove formed through one side of the reinforcing block. The fifth water flow groove and the fourth water flow groove are interconnected, and the side wall of the second insertion block and the inner wall of the first groove body are attached.
[0017] Notably, the fitting structure of the second plug block and the first groove body in the drainage mechanism can realize the close butt joint of the reinforcing block and the base plate, avoid the gap between the two connections, and prevent the structure from loosening. At the same time, the second plug block can effectively support the end of the base plate, enhance the bending resistance of the end of the base plate, and prevent the base plate from deforming and damaging due to stress concentration at the end. The intercommunication design of the fourth water flow groove and the fifth water flow groove, combined with the communication relationship with the first groove body, builds a complete drainage path from the middle to the end of the base plate. The accumulated water in the first water flow groove can be quickly introduced into the fifth water flow groove through the first groove body and the fourth water flow groove for drainage, completely solving the problem of accumulated water at the connection between the base plate and the reinforcing block, reducing the erosion of water to the base plate and the reinforcing block, and prolonging the service life of the product. At the same time, the setting of the reinforcing block also improves the impact resistance of the whole stone-like brick, widening its application scenarios.
[0018] Notably, the upper end surface of the stone-like plate is flush with the upper end surface of the reinforcing block, and the lower end surface of the base plate is flush with the lower end surface of the reinforcing block.
[0019] Notably, the upper end surface of the stone-like plate is flush with the upper end surface of the reinforcing block, which can ensure that the surface of the stone-like brick is flat after paving, improving the regularity and aesthetics of the overall decorative appearance, meeting the appearance requirements of stone-like bricks as decorative building materials, and avoiding the risk of tripping due to uneven end surfaces, improving the safety of use.
[0020] Preferably, the sand prevention assembly includes a sand prevention block placed on the upper end of the top block, a plurality of third water flow grooves through the upper end of the sand prevention block, and at least two first plug blocks fixed to the lower end of the sand prevention block. The first plug block is matched with the second water flow groove.
[0021] Notably, the matching structure of the first plug block and the second water flow groove in the sand prevention assembly can realize the precise positioning and installation of the sand prevention block and the top block of the connecting assembly, prevent the sand prevention block from shifting due to external forces during use, and ensure the stability of the sand prevention function. The sand prevention block can effectively block external sand, stones and debris from entering the third water flow groove below and the internal connecting assembly, avoid sand and stones from blocking the drainage channel and affecting the drainage effect, prevent the connecting assembly from being worn by debris, protect the internal structure, and prolong the service life of the connecting assembly. The opening of the plurality of third water flow grooves realizes the sand prevention function while not blocking the water flow path, ensures that rainwater can flow smoothly through the third water flow groove into the second water flow groove below, and meets the dual requirements of sand prevention and drainage.
[0022] Preferably, the sand prevention assembly includes an installation box placed on the upper end of the top block and a gravel block filled in the installation box. The lower end of the installation box is throughly provided with a plurality of hole bodies for drainage.
[0023] It is worth noting that the sand control component adopts a structure that combines an installation box with crushed stone blocks. The installation box can be quickly placed on the top of the block, making assembly convenient. The installation box can effectively restrain the crushed stone blocks, preventing them from scattering and being lost, thus ensuring the integrity of the sand control structure. The gaps between the crushed stone blocks can both prevent larger sand and gravel particles from entering the connecting components and water flow channels below, thus playing a sand control role, and allow water to flow smoothly, achieving a balance between sand control and drainage.
[0024] Compared with the prior art, the beneficial effects of this utility model are as follows:
[0025] 1. By setting up the matching structure of connecting components, limiting holes and limiting posts, and the corresponding cooperation between the second through hole in the groove and the first through hole of the limiting block, the precise positioning and firm connection of the imitation stone slab and the base plate are realized. The connecting components adopt an integrated molding design, which enhances their own structural strength and load-bearing capacity and avoids loosening at the splicing point. At the same time, by inserting connecting parts (such as pins or bolts), the adjacent bricks can be further reinforced, effectively limiting lateral displacement, solving the loosening and warping problems that are easy to occur in the existing technology, and improving the overall stability and pull-out resistance after paving.
[0026] 2. By setting up a first water flow channel, a second water flow channel, a drainage mechanism, and a sand-proof component, a continuous drainage channel is constructed. Water flows from the surface of the imitation stone slab through the third water flow channel or hole of the sand-proof component into the second water flow channel of the connecting component, and then is quickly discharged through the first water flow channel, the first channel of the base plate, the fourth water flow channel and the fifth water flow channel of the drainage mechanism. The sand-proof component can effectively block sand, dirt and other impurities from entering the drainage channel, prevent blockage, maintain long-term stable drainage performance, avoid water accumulation and erosion of the base layer, and extend the service life of the pavement.
[0027] 3. By aligning the upper surface of the imitation stone slab with the upper surface of the reinforcing block, and the lower surface of the substrate with the lower surface of the reinforcing block, the surface flatness and aesthetics after paving are ensured, avoiding safety hazards caused by height differences. The reinforcing block and the substrate are tightly connected through the second insert of the drainage mechanism, enhancing the end bending resistance and overall impact resistance. The sand-proof component combines sand-proofing and drainage functions, further optimizing the practicality and durability of the structure and broadening its applicable scenarios. Attached Figure Description
[0028] Figure 1 The diagram shown is a three-dimensional structural schematic of this utility model;
[0029] Figure 2 The diagram shown is a three-dimensional structural schematic of the connecting component of this utility model;
[0030] Figure 3 The diagram shows a three-dimensional disassembled structure of the substrate and the imitation stone slab of this utility model.
[0031] Figure 4 The connection assembly of the utility model is shown in the perspective enlarged configuration schematic view.
[0032] Figure 5 The top block of the utility model is shown in the perspective configuration schematic view.
[0033] Figure 6 The first embodiment of the sand prevention assembly of the utility model is shown in the perspective configuration schematic view.
[0034] Figure 7 The second embodiment of the sand prevention assembly of the utility model is shown in the perspective configuration schematic view.
[0035] Figure 8 The groove of the utility model is shown in the perspective configuration schematic view.
[0036] Figure 9 The reinforcing block of the utility model is shown in the perspective configuration schematic view.
[0037] Reference signs: 1, base plate; 101, first groove body; 102, limiting hole; 103, first water flow groove; 2, connection assembly; 201, bottom block; 202, limiting block; 203, second groove body; 204, first through hole; 205, top block; 206, second water flow groove; 3, sand prevention assembly; 301, sand prevention block; 302, third water flow groove; 303, first insertion block; 304, mounting box; 305, gravel block; 4, stone-imitating plate; 401, limiting column; 5, reinforcing block; 501, second insertion block; 502, fourth water flow groove; 503, fifth water flow groove; 6, groove; 7, second through hole. DETAILED DESCRIPTION
[0038] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.
[0039] In order to solve the problems of insufficient connection strength between the bricks, displacement, and the drainage channel being easily blocked by impurities, leading to the decline of the drainage function, the following technical solutions are given. Please refer to Figures 1-9 ;
[0040] The application discloses a spliced stone-like brick which comprises a base plate 1, a connecting assembly 2 arranged on the upper end of the base plate 1, stone-like plates 4 arranged on both sides of the connecting assembly 2, a sandproof assembly 3 arranged on the upper end of the connecting assembly 2, grooves 6 arranged on both sides of the stone-like plates 4 and reinforcing blocks 5 arranged on both ends of the base plate 1.
[0041] The stone-like plate 4 is in the shape of an I-shaped beam, the first groove body 101 is arranged on one end of the base plate 1, the first water flow groove 103 is arranged on the upper end of the base plate 1, and the first water flow groove 103 and the first groove body 101 in the middle of the upper end of the base plate 1 are communicated.
[0042] The reinforcing block 5 is provided with a drainage mechanism, and the drainage mechanism and the first groove body 101 are communicated.
[0043] In use, the base plate 1 is placed on the ground, the connecting assembly 2 is placed on the upper end of the base plate 1, the two stone-like plates 4 are placed on both sides of the connecting assembly 2, and the sandproof assembly 3 is placed on the upper end of the connecting assembly 2, so that the sandproof assembly 3 is located between the two stone-like plates 4, the sandproof assembly 3 is used for blocking dust and sand in water flow, water on the upper end of the stone-like plate 4 flows into the inside of the first groove body 101 through the sandproof assembly 3 and the connecting assembly 2, and then is discharged from the reinforcing block 5 to the outside through the drainage mechanism.
[0044] In the embodiment, the upper end of the base plate 1 is provided with a plurality of limiting holes 102, the lower end of the stone-like plate 4 is fixedly connected with a plurality of limiting columns 401, and the limiting columns 401 and the limiting holes 102 are matched.
[0045] In the embodiment, the connecting assembly 2 comprises a bottom block 201 placed on the upper end of the base plate 1, a limiting block 202 fixedly connected to the upper end of the bottom block 201, a plurality of second groove bodies 203 arranged on one end of the limiting block 202, a plurality of first through holes 204 arranged on one side of the limiting block 202 and a top block 205 fixedly connected to the upper end of the limiting block 202, the bottom block 201, the limiting block 202 and the top block 205 form an integrated structure, the upper end of the integrated structure is provided with a second water flow groove 206, and the second water flow groove 206 corresponds to the first water flow groove 103.
[0046] In the embodiment, a plurality of second through holes 7 are arranged on the inner wall of the groove 6 at equal intervals, and the second through holes 7 correspond to the first through holes 204.
[0047] In the embodiment, the drainage mechanism comprises a plurality of second plug blocks 501 fixedly connected to one end of the reinforcing block 5 close to the base plate 1, a fourth water flow groove 502 arranged on one end of the second plug block 501 close to the base plate 1 and a fifth water flow groove 503 arranged on one side of the reinforcing block 5, the fifth water flow groove 503 and the fourth water flow groove 502 are communicated, and the side wall of the second plug block 501 is attached to the inner wall of the first groove body 101.
[0048] In this embodiment, specifically: the upper surface of the imitation stone slab 4 is flush with the upper surface of the reinforcing block 5, and the lower surface of the substrate 1 is flush with the lower surface of the reinforcing block 5.
[0049] Example 1: In this example, the sand control component 3 specifically includes a sand control block 301 placed on the top of the top block 205, multiple third water flow channels 302 penetrating through the top of the sand control block 301, and at least two first inserts 303 fixed to the bottom of the sand control block 301. The first inserts 303 are adapted to the second water flow channels 206. This structure achieves precise positioning and fixation of the sand control block 301 through the insertion and cooperation of the first inserts 303 and the second water flow channels 206. The sand control block 301 can effectively prevent sand and gravel and other impurities from falling directly into the second water flow channels 206 below. While the multiple third water flow channels 302 play the role of sand control, they also ensure that the water flow can pass smoothly without forming water accumulation. This effectively combines sand control and drainage functions, and the structure is regular, making it easy to install and maintain.
[0050] Example 2: In this example, specifically: the sand control component 3 includes an installation box 304 placed on the top of the top block 205 and gravel blocks 305 filled inside the installation box 304. The lower end of the installation box 304 has multiple holes for drainage. This structure uses the installation box 304 to constrain the gravel blocks 305, forming a stable filter layer. The natural gaps between the gravel blocks 305 can effectively intercept larger particles of impurities, while providing numerous meandering but unobstructed infiltration channels for water flow. Its filtration performance is excellent and it is not easily completely blocked. The holes at the bottom of the installation box 304 further assist in drainage. This structure has a natural drainage path, stronger anti-clogging ability, and relatively low manufacturing cost.
[0051] Working principle: When in use, first place the base plate 1 on the ground to ensure the flatness of the lower end of the base plate 1. Then place the bottom block 201 of the connecting component 2 at the center of the upper end of the base plate 1, so that the second water flow channel 206 of the connecting component 2 is aligned with the first water flow channel 103 of the base plate 1. Then place the two imitation stone plates 4 on both sides of the connecting component 2 respectively. The positioning is achieved by inserting the limiting post 401 at the lower end of the imitation stone plate 4 into the limiting hole 102 at the upper end of the base plate 1. At the same time, the groove 6 on the side of the imitation stone plate 4 abuts against the limiting block 202 of the connecting component 2. The second through hole 7 in the groove 6 corresponds to the first through hole 204 on the limiting block 202.
[0052] Next, place the sandproof component 3 on the top block 205 at the upper end of the connecting component 2, with the sandproof component 3 located between the two imitation stone slabs 4;
[0053] The sand prevention block 301 of the sand prevention assembly 3 is fixed by the first plug block 303 in the second water flow groove 206 in Embodiment 1, and the mounting box 304 of the sand prevention assembly 3 forms a filter layer by the internally filled gravel block 305 in Embodiment 2, when the water flow passes through the upper end of the stone-imitated plate 4, the water body will first be filtered by the third water flow groove 302 of the sand prevention assembly 3 or the hole body of the mounting box 304, and then the water flow enters the second water flow groove 206 of the connecting assembly 2 and flows downward into the first groove body 101 through the first water flow groove 103 directly below, part of the water flow flows into the first groove body 101 of the base plate 1 through the second through hole 7 of the stone-imitated plate 4 and the first through hole 204 of the connecting assembly 2, after the water flow is collected in the first groove body 101, it is guided to the reinforcing block 5 through the fourth water flow groove 502 of the drainage mechanism, and finally it is discharged outward from the reinforcing block 5 through the fifth water flow groove 503, so that the efficient drainage and sand prevention functions are realized, and the lower end surfaces of the base plate 1 and the reinforcing block 5 are kept flush during the whole process, so that the stability is ensured, and the upper end surfaces of the stone-imitated plate 4 and the reinforcing block 5 are flush, so that the unified decoration effect is formed.
[0054] It should be noted that the relational terms herein such as first and second and the like are used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any such actual relationship or order between such entities or actions. Moreover, the terms "comprises", "comprising", or any other variations thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but can include other elements not expressly listed or inherent to such process, method, article, or apparatus.
[0055] Although the embodiments of the present application have been shown and described, it should be understood by those skilled in the art that various changes, modifications, substitutions and variations can be made thereto without departing from the principles and spirit of the present application.
Claims
1. A tiled stone look tile, characterized in that: The utility model provides a sand prevention device for river bank, including substrate (1), set up the connecting component (2) of substrate (1) upper end, set up the stone board (4) of both sides of connecting component (2), place the sand prevention component (3) of connecting component (2) upper end, open the recess (6) of both sides of stone board (4) and set up the reinforcing block (5) of both ends of substrate (1), The stone board (4) is an I-shaped, one end of the substrate (1) is provided with equidistantly distributed first grooves (101), and the upper end of the substrate (1) is provided with a plurality of first water flow grooves (103), and the first water flow grooves (103) and the first grooves (101) at the middle of the upper end of the substrate (1) are communicated. The reinforcing block (5) is provided with a drainage mechanism, and the drainage mechanism and the first grooves (101) are communicated.
2. A tiled stone look brick according to claim 1, characterized in that: The upper end of the substrate (1) is provided with a plurality of limiting holes (102), the lower end of the stone board (4) is fixedly connected with a plurality of limiting columns (401), and the limiting columns (401) and the limiting holes (102) are matched.
3. The tiled stone look brick according to claim 1, wherein: The connecting component (2) comprises a bottom block (201) placed on the upper end of the substrate (1), a limiting block (202) fixedly connected to the upper end of the bottom block (201), a plurality of second grooves (203) provided through one end of the limiting block (202), a plurality of first through holes (204) provided through one side of the limiting block (202), and a top block (205) fixedly connected to the upper end of the limiting block (202), wherein the bottom block (201), the limiting block (202), and the top block (205) form an integrated structure, the upper end of the integrated structure is provided with a second water flow groove (206), and the second water flow groove (206) corresponds to the first water flow groove (103).
4. A tiled stone look brick according to claim 3, wherein: The inner wall of the recess (6) is provided with a plurality of equidistantly distributed second through holes (7), and the second through holes (7) correspond to the first through holes (204).
5. The tiled stone look brick of claim 1, wherein: The drainage mechanism comprises a plurality of equidistantly distributed second insertion blocks (501) fixedly connected to one end of the reinforcing block (5) close to the substrate (1), a fourth water flow groove (502) provided through one end of the second insertion block (501) close to the substrate (1), and a fifth water flow groove (503) provided through one side of the reinforcing block (5), wherein the fifth water flow groove (503) and the fourth water flow groove (502) are communicated, and the side wall of the second insertion block (501) is attached to the inner wall of the first grooves (101).
6. The tiled stone look brick of claim 1, wherein: The upper end surface of the stone board (4) is flush with the upper end surface of the reinforcing block (5), and the lower end surface of the substrate (1) is flush with the lower end surface of the reinforcing block (5).
7. A tiled stone look brick according to claim 3, wherein: The sand prevention component (3) comprises a sand prevention block (301) placed on the upper end of the top block (205), a plurality of third water flow grooves (302) provided through the upper end of the sand prevention block (301), and at least two first insertion blocks (303) fixedly connected to the lower end of the sand prevention block (301), wherein the first insertion blocks (303) are matched with the second water flow groove (206).
8. The tiled stone look brick according to claim 3, wherein: The sand prevention component (3) comprises an installation box (304) placed on the upper end of the top block (205) and a gravel block (305) filled in the installation box (304), and the lower end of the installation box (304) is provided with a plurality of hole bodies for drainage.