Rural environment-friendly brick paving and landscape reconstruction device with rainwater collection function
By incorporating structures such as arc-shaped grooves, cavities, water holes, and threaded pipes into the brickwork of rural landscape roads, combined with sprinkler and switching components, the problem of rainwater collection in rural landscape roads has been solved. This enables effective collection and reuse of rainwater, prevents road damage, cleans impurities inside the arc-shaped grooves, and maintains the stability of the road structure.
Patent Information
- Application Number
- CN202511329513.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-17
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2045-09-17
AI Technical Summary
The existing brick and stone paving of rural landscape roads cannot effectively collect rainwater, making the roads easily damaged. In addition, traditional drainage channels are difficult to set up, resulting in poor rainwater collection and reuse capabilities.
Design a rural environmentally friendly paving brick with rainwater harvesting function. By setting arc grooves, cavities, water holes, threaded pipes and rubber strips on the brick body, combined with water sprinkler components and switching components, rainwater can be collected, stored and reused. This includes the combined use of threaded pipe connection, rubber strip splicing, water sprinkler components and switching components.
It effectively collects rainwater, prevents road damage, enables rainwater reuse and watering functions, cleans impurities inside the arc-shaped groove, and maintains the stability of the road structure.
Smart Images

Figure CN120867163B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present disclosure relates to the technical field of rainwater collection, and particularly relates to a rural environment-friendly brick paving and landscape reconstruction device with rainwater collection function. BACKGROUND
[0002] Rural landscape roads are mostly paved with bricks, and different bricks can be used to pave rural roads with different patterns. In the prior art, the problem of the road paved with bricks is that rainwater cannot be collected, and after seeping into the ground, the underground structure is easily damaged, resulting in easy damage to the rural road.
[0003] In the prior art, the common way of collecting rainwater on the landscape road is to guide the rainwater to the surrounding green plants through the drainage groove and the drainage groove, so as to realize the collection, treatment, utilization, micro-saline water and other similar water collection, treatment and recycling. However, for the road formed by the splicing of stone bricks, the drainage groove is not easy to set, and the rainwater collection and recycling capacity is poor. SUMMARY
[0004] The present disclosure aims to at least partially solve one of the technical problems in the related art.
[0005] To this end, the purpose of the present disclosure is to provide a rural environment-friendly brick paving and landscape reconstruction device with rainwater collection function.
[0006] To achieve the above purpose, the present disclosure provides a rural environment-friendly brick paving and landscape reconstruction device with rainwater collection function, comprising: a plurality of brick bodies, the plurality of brick bodies are spliced and installed, arc-shaped grooves are equally arranged on the top of the brick body, and cavities are arranged on the bottom of the brick body, a drain groove is arranged on the bottom of the arc-shaped groove, and the drain groove is communicated with the cavity, water holes are arranged on the top of the two sides of the cavity of the brick body; a threaded pipe is installed on the outside of the water hole, and the same threaded pipe is installed between the water holes of adjacent brick bodies; a rubber strip is installed on the two sides of the spliced brick body, a ring-shaped water cavity is arranged in the rubber strip, a screw hole is arranged on the side of the rubber strip corresponding to the position of the threaded pipe, the threaded pipe is screwed into the screw hole, and the threaded pipe penetrates into the ring-shaped water cavity; a watering assembly, the watering assembly comprises a collecting box, the collecting box is installed at the bottom of the rubber strip, a water tank is arranged on the outside of the collecting box, a ring pipe is fixedly installed on the top of the collecting box, and the two sides of the ring pipe are fixedly connected with the two ends of the collecting box, a plurality of spray heads are equally arranged on the surface of the ring pipe, a water pump is installed in the collecting box and connected with the ring pipe, and a fence plate is fixedly arranged at the top end in the collecting box; a switching assembly, the switching assembly comprises a baffle, the bottom of the fence plate is provided with the baffle, the protrusions on the baffle correspond to the notches of the fence plate, a first connecting frame is fixedly arranged on the top of the baffle close to the inner wall of the collecting box, and the first connecting frame slides out of the fence plate and the collecting box.
[0007] Optionally, the bottom of the rubber strip is fixed with a conveying channel, two connecting ports are fixed on one side of the conveying channel towards the collecting box, the two connecting ports penetrate into the inside of the collecting box, the two connecting ports are located at the top and bottom of the fence plate, the top of the conveying channel is in communication with the inside of the annular water cavity, and a plug plate is slidingly inserted between the two connecting ports; wherein the two ends of the plug plate are alternately slidingly inserted into the inside of the two connecting ports, one end of the plug plate penetrating into the inside of the connecting port blocks the connecting port, and the other end of the plug plate opens the connecting port.
[0008] Optionally, the water spraying assembly further comprises a water inlet pipe, a drain pipe, a connecting channel, a box door, and a water overflow groove; wherein the outer side of the water tank is provided with the drain pipe, the outer surface of the water tank on the other side of the drain pipe is provided with the water inlet pipe, the inner wall of the collecting box on the side close to the water tank is provided with the water overflow groove, the water overflow groove is close to the bottom of the fence plate, the outer side of the collecting box on the water overflow groove is fixed with the connecting channel, and the other side of the connecting channel is fixedly connected with the water tank; the drain pipe discharges water in the inside of the water tank into an underground pipeline, the water inlet pipe is connected with an external water source and sends water into the inside of the water tank, and the connecting channel is internally provided with a water pump; when the blocking frame is combined with the fence plate, the water pump in the connecting channel pumps the stored water in the water tank into the inside of the collecting box and reversely sends the water back into the inside of the brick body through the conveying channel.
[0009] Optionally, the switching assembly further comprises an electric push rod and a second connecting frame; wherein the outer wall of the collecting box is fixedly provided with the electric push rod, the elongated end of the electric push rod is fixedly connected with the first connecting frame, the collecting box is provided with a moving gap corresponding to the position where the first connecting frame moves, the elongated end of the electric push rod is fixedly provided with the second connecting frame at the bottom of the first connecting frame, and the second connecting frame is fixedly connected with the side surface of the plug plate; the elongated end of the electric push rod pushes the top of the plug plate to be inserted into the inside of the upper connecting port, the upper end connecting port of the conveying channel is blocked, the lower end connecting port of the conveying channel is opened, and the blocking frame moves upwards along the elongated end of the electric push rod to block the gap of the fence plate.
[0010] Optionally, the brick body further comprises: a flat plate, a spring telescopic plate, a moving plate, a pull rope, a reset spring; wherein the top of the arc-shaped groove is fixed with a flat plate, the middle bottom of the flat plate is rotatably installed with a spring telescopic plate through a rotating shaft, and the elongated end of the spring telescopic plate is in sliding contact with the arc-shaped groove, the vertical surface of one end of the brick body is provided with a moving cavity, and the moving plate is slidably installed in the moving cavity of the brick body, the rotating shaft of the spring telescopic plate penetrates into the moving cavity and is rotatably installed with a second connecting rod, the other end of the second connecting rod is rotatably installed with a first connecting rod, and the bottom of the first connecting rod is rotatably connected with the moving plate; the moving plate moves up and down along the moving cavity to drive the first connecting rod and the second connecting rod to rotate, the spring telescopic plate rotates along the inner wall of the arc-shaped groove under the rotation of the second connecting rod, and the flat plate is provided with notches on both sides of the top of the arc-shaped groove.
[0011] Optionally, the bottom of the moving plate is equidistantly fixed with a reset spring, the bottom of the reset spring is fixedly connected with the inner wall of the moving cavity, the two ends of the moving plate are fixed with pull ropes, and the pull ropes penetrate into the cavity from the top and are fixedly connected with the supporting plate; wherein the supporting plate moves downward after being pressed from the top, the moving plate moves reversely synchronously with the supporting plate through the pull ropes, and the supporting plate moves upward with the reset spring and the moving plate.
[0012] Optionally, the inner walls of the two sides of the cavity of the brick body are symmetrically fixed with vertical plates, the inner walls of the cavity of the brick body are fixed with sliding frames corresponding to the moving paths of the vertical plates, the vertical plates slide along the sliding frames, the bottom of the vertical plate is fixed with a lower protruding plate, and the upper end surface of the vertical plate is fixed with an upper protruding plate; wherein the upper protruding plate and the lower protruding plate are a certain distance apart, the supporting plate is in contact with the lower protruding plate to drive the vertical plate to slide downward along the sliding frame, and the supporting plate is in contact with the upper protruding plate to drive the vertical plate to slide upward along the sliding frame.
[0013] Optionally, the water holes on the two sides of the cavity are sealingly inserted with plug plates, and one-way valves are installed in the plug plates, a horizontal rod is fixed in the cavity of the brick body and located on the top of the plug plate, and the plug plate is slidingly sleeved on the horizontal rod; wherein the flow direction of the one-way valve in the plug plate is opposite to one side of the adjacent rubber strip.
[0014] Optionally, a rotating frame is rotatably installed on the top surface of the vertical plate through a rotating shaft, and the back surface of the plug plate is rotatably connected with the rotating frame through a rotating shaft; wherein when the vertical plate moves up and down together with the supporting plate, the rotating frame rotates to pull the plug plate to slide along the horizontal rod to open and close the water hole.
[0015] Optionally, a screw ring is slidably arranged in the water hole, a sealing ring is arranged in the middle of the threaded pipe, and the threaded pipe is threadedly inserted into the screw ring; wherein the two ends of the threaded pipe are threadedly inserted into the screw rings in the water holes of the adjacent brick bodies, the water holes of the adjacent brick bodies are communicated through the threaded pipe, and the middle sealing ring of the threaded pipe divides the threaded pipe into two sections, and the threaded pipes at the two ends of the sealing ring are rotatably connected with the sealing ring.
[0016] The technical scheme provided by the present disclosure can include the following beneficial effects:
[0017] 1. When two brick bodies are spliced, a threaded pipe is used to lock and connect with the screw rings of the two brick bodies, and the sealing ring in the middle of the threaded pipe can make the two sections of the threaded pipe rotate independently. The hollow interior of the threaded pipe allows the liquid in the cavity of the brick body to enter the interior of the other brick body through the water hole and the threaded pipe. This structure can cooperate with the natural collection of rainwater to collect and discharge excess rainwater to the rubber strips on both sides, and then send the rainwater into the collection box of the watering assembly to discharge the excess rainwater collected, thereby avoiding damage to the ground structure laid at the bottom of the brick body. The watering assembly can also be used to send the backflow water into the cavity of the brick body, thereby reversely driving the movement of the supporting plate in the brick body. Both methods can drive the spring expansion plate to rotate along the arc-shaped groove, thereby cleaning the arc-shaped groove and avoiding the blockage of the leakage groove caused by the accumulation of too much soil and impurities in the arc-shaped groove for a long time.
[0018] 2. When rainwater initially enters the cavity, it does not flow out of the water hole at first. With the accumulation of rainwater, the supporting plate moves downward under the action of gravity, slides along the vertical plate, does not contact the lower protruding plate at first, and after moving a distance, the supporting plate is in extrusion contact with the lower protruding plate, pushes the vertical plate downward to slide along the sliding frame, rotates the rotating frame, and makes the blocking plate slide along the horizontal rod to open the water hole. At this time, the continued accumulation of rainwater in the cavity will move to both sides along the water holes on both sides until it accumulates in the rubber strips. When the water in the cavity is discharged, the supporting plate moves upward, and at first, it does not drive the vertical plate to move. After the rainwater in the cavity is basically discharged, the supporting plate is in extrusion contact with the upper protruding plate, pushes the vertical plate upward, and the blocking plate seals the water hole again. This is for the rainwater collection stage. For the case where it does not rain, soil and impurities will also accumulate in the arc-shaped groove. In order to avoid this problem, the watering assembly returns water, which spreads to all cavity interiors of the brick bodies through the one-way valves corresponding to the directions of the cavities and the blocking plates, thereby autonomously driving the movement of the supporting plate. The second method drives the spring expansion plate in the arc-shaped groove to rotate, thereby cleaning the impurities and soil in the arc-shaped groove.
[0019] 3. With the movement of the supporting plate being pressed, the moving plate is pulled to slide along the moving cavity by the pull rope, the spring telescopic plate is rotated by the rotation of the first connecting rod and the second connecting rod, the soil and impurities inside the arc-shaped groove are pushed out from the two side gaps of the flat plate, the arc-shaped groove is simply cleaned, the arc-shaped groove and the leakage groove are prevented from being blocked, the moving plate is reset by the reset spring after there is no pressure on the supporting plate, the first connecting rod and the second connecting rod are reversely rotated, the spring telescopic plate is reversely rotated, and the arc-shaped groove is cleaned again. Rainwater can be accumulated in the cavity, and the impurities inside the arc-shaped groove can be cleaned at the same time.
[0020] 4. The first connecting frame and the second connecting frame are moved by the electric push rod, the first connecting frame moves along the moving gap to avoid interference, the blocking frame moves inside the collecting box, the second connecting frame drives the insertion plate to move vertically, when the insertion plate is inserted into the upper end connecting port, the lower end connecting port is opened, the blocking frame blocks the fence plate to form a blocking plate, the water stored in the water tank is pressurized by the water pump in the water tank, and then is sent into the rubber strip through the connecting channel, the collecting box, the lower end connecting port and the conveying channel, and then reversely flushes the cavity inside the brick, and when the electric push rod drives the insertion plate and the blocking frame to move downward, it can be used for the stage of normally collecting rainwater, the rainwater sent from the upper end connecting port is filtered by the fence plate and then stored in the collecting box, and after a certain capacity is stored, it can be discharged into the water tank through the overflow groove.
[0021] 5. The water in the water tank can be discharged through the water inlet pipe and the drain pipe to avoid damaging the ground structure at the bottom of the brick, and water can also be injected into the water tank for reverse injection into the brick to prevent the arc-shaped groove from being blocked.
[0022] 6. The two ends of the rubber strip are also provided with universal connecting seats, which can facilitate the splicing and installation of multiple rubber strips, and are suitable for the laying of bricks. The rubber strip can deform to some extent and is suitable for laying on curved roads, maintains the stability of the spliced and installed bricks, and forms a whole structure with the brick water spraying assembly, which is convenient for unified arrangement.
[0023] Additional aspects and advantages of the present disclosure will be partially given in the following description, partially will become obvious from the following description, or will be understood by practicing the present disclosure. BRIEF DESCRIPTION OF DRAWINGS
[0024] The above and / or additional aspects and advantages of the present disclosure will become apparent and more readily appreciated from the following description of the embodiments, taken in conjunction with the accompanying drawings, in which:
[0025] Figure 1 is the overall structure schematic diagram of the rural environmental protection paving brick and landscape reconstruction device with rainwater collection function provided by an embodiment of the present disclosure;
[0026] Figure 2Is the embodiment of the present disclosure is proposed with rainwater collection function of rural environmental protection brick and landscape reconstruction device in the water spray assembly structure diagram;
[0027] Figure 3 Is the embodiment of the present disclosure is proposed with rainwater collection function of rural environmental protection brick and landscape reconstruction device in the collection box internal structure diagram;
[0028] Figure 4 Is the embodiment of the present disclosure is proposed with rainwater collection function of rural environmental protection brick and landscape reconstruction device in the brick and rubber strip separation diagram;
[0029] Figure 5 Is the embodiment of the present disclosure is proposed with rainwater collection function of rural environmental protection brick and landscape reconstruction device in the two brick body separation diagram;
[0030] Figure 6 Is the embodiment of the present disclosure is proposed with rainwater collection function of rural environmental protection brick and landscape reconstruction device in the threaded tube and water hole separation diagram;
[0031] Figure 7 Is the embodiment of the present disclosure is proposed with rainwater collection function of rural environmental protection brick and landscape reconstruction device in the arc slot internal structure diagram;
[0032] Figure 8 Is the embodiment of the present disclosure is proposed with rainwater collection function of rural environmental protection brick and landscape reconstruction device in the back structure diagram of brick body;
[0033] Figure 9 Is the embodiment of the present disclosure is proposed with rainwater collection function of rural environmental protection brick and landscape reconstruction device in the side wall structure diagram inside the brick body;
[0034] Figure 10 Is the embodiment of the present disclosure is proposed with rainwater collection function of rural environmental protection brick and landscape reconstruction device in the vertical plate and the supporting plate connection diagram;
[0035] As shown in the figure: 1, brick; 11, arc slot; 12, leakage groove; 13, water hole; 14, supporting plate; 15, spiral ring; 16, flat plate; 17, spring expansion plate; 18, moving plate; 19, pull rope; 110, reset spring; 111, first connecting rod; 112, second connecting rod; 113, vertical plate; 114, sliding frame; 115, rotating frame; 116, plug plate; 117, horizontal rod; 118, upper convex plate; 119, lower convex plate;
[0036] 2, sprinkling assembly; 21, collecting box; 22, ring pipe; 23, spray head; 24, water tank; 25, water inlet pipe; 26, water outlet pipe; 27, connecting passage; 28, box door; 29, fence plate; 210, blocking frame; 211, overflow groove;
[0037] 3, switching assembly; 31, electric push rod; 32, first connecting frame; 33, second connecting frame;
[0038] 4, rubber strip; 41, universal connecting seat; 42, annular water cavity; 43, conveying passage; 44, connecting port; 45, plug plate; 46, screw hole;
[0039] 5, threaded pipe; 51, sealing ring. DETAILED DESCRIPTION
[0040] Embodiments of the present disclosure are described in detail below with reference to the attached drawing figures, wherein the same or like reference numerals and letters throughout the drawings denote the same or functions elements. The embodiments described below are examples only, and are not to be construed as limiting the present disclosure. Rather, the embodiments of the present disclosure are intended to cover all modifications and variations of this disclosure that fall within the scope of the appended claims, along with their equivalents.
[0041] As Figure 1 , Figure 2 , Figure 3 , Figure 5 and Figure 6As shown, the embodiment of the present disclosure provides a rural environmental protection brick with rainwater collection function and landscape reconstruction device, which comprises: a plurality of brick bodies 1, a plurality of said brick bodies 1 are spliced and installed, arc-shaped grooves 11 are equidistantly arranged on the top of the brick body 1, and a cavity is arranged at the bottom of the brick body 1, a leakage groove 12 is arranged at the bottom of the arc-shaped groove 11, and the leakage groove 12 is communicated with the cavity, and water holes 13 are arranged at the top of the two sides of the cavity of the brick body 1; a threaded pipe 5 is arranged outside the water hole 13, and the same threaded pipe 5 is arranged between the water holes 13 of adjacent brick bodies 1; rubber strips 4 are arranged on the two sides of the spliced brick bodies 1, an annular water cavity 42 is arranged in the rubber strip 4, screw holes 46 are arranged on the side of the rubber strip 4 corresponding to the position of the threaded pipe 5, the threaded pipe 5 is screwed into the screw hole 46, and the threaded pipe 5 penetrates into the annular water cavity 42; a watering assembly 2, the watering assembly 2 comprises a collecting box 21, the collecting box 21 is installed at the bottom of the rubber strip 4, a water tank 24 is arranged outside the collecting box 21, a ring pipe 22 is fixedly installed at the top of the collecting box 21, and the two sides of the ring pipe 22 are fixedly connected with the two ends of the collecting box 21, a plurality of spray heads 23 are equidistantly arranged on the surface of the ring pipe 22, a water pump is arranged in the collecting box 21 and connected with the ring pipe 22, and a fence plate 29 is fixedly arranged at the top end in the collecting box 21; a switching assembly 3, the switching assembly 3 comprises a blocking frame 210, the bottom of the fence plate 29 is provided with the blocking frame 210, the convex strip on the blocking frame 210 corresponds to the notch of the fence plate 29, a first connecting frame 32 is fixedly arranged at the top of the inner wall of the collecting box 21 close to the blocking frame 210, and the first connecting frame 32 slides out of the fence plate 29 and the collecting box 21.
[0042] It should be noted that the brick body 1 is spliced and installed on the rural road, connected and installed through the rubber strip 4, when it rains, the rainwater is collected in the cavity of the brick body 1 and enters the watering assembly 2, the surrounding planting area is watered through the ring pipe 22 and the spray head 23, and the output direction of the watering assembly 2 can be changed through the switching assembly 3, and the backwashing of the brick body 1 can be realized.
[0043] As shown in Figure 2 and Figure 3 the bottom of the rubber strip 4 is fixedly provided with a conveying channel 43, two connecting ports 44 are fixedly arranged on the side of the conveying channel 43 facing the collecting box 21, the two connecting ports 44 penetrate into the collecting box 21, the two connecting ports 44 are located at the top and bottom of the fence plate 29, the top of the conveying channel 43 is communicated with the inside of the annular water cavity 42, and a plug plate 45 is slidably inserted between the two connecting ports 44;
[0044] The two ends of the plug plate 45 are alternately inserted into the interiors of the two connecting ports 44, and the end of the plug plate 45 inserted into the interior of the connecting port 44 blocks the connecting port 44, and the other end of the plug plate 45 opens the connecting port 44.
[0045] It should be noted that the two ends of the rubber strip 4 are also provided with universal connecting seats 41, which can facilitate the splicing and installation of multiple rubber strips 4 and are suitable for the paving of the brick body 1. The rubber strip 4 can be deformed to some extent and is suitable for the paving of curved roads, maintains the stability of the brick body 1 after splicing and installation, and forms an integral structure with the watering assembly 2, facilitating unified arrangement.
[0046] As shown in Figure 2 , Figure 3 and Figure 4 , in some embodiments, the watering assembly 2 further comprises:
[0047] the water inlet pipe 25, the drain pipe 26, the connecting channel 27, the box door 28, and the overflow groove 211;
[0048] The outer side of the water tank 24 is provided with the drain pipe 26, the outer surface of the water tank 24 on the other side of the drain pipe 26 is provided with the water inlet pipe 25, the inner wall of the collecting box 21 close to one side of the water tank 24 is provided with the overflow groove 211, the overflow groove 211 is close to the bottom of the fence plate 29, the connecting channel 27 is fixed on the outer side of the overflow groove 211 of the collecting box 21, and the other side of the connecting channel 27 is fixedly connected with the water tank 24.
[0049] The drain pipe 26 drains the water in the water tank 24 into the underground pipeline, and the water inlet pipe 25 is connected with an external water source and sends water into the water tank 24.
[0050] The water pump in the connecting channel 27 pumps the water in the water tank 24 into the collecting box 21 when the blocking frame 210 and the fence plate 29 are combined, and the water is reversely sent back into the brick body 1 through the conveying channel 43.
[0051] It should be noted that the rainwater in the water tank 24 can be drained through the water inlet pipe 25 and the drain pipe 26, which avoids damaging the ground structure at the bottom of the brick body 1, and water can also be injected into the water tank 24 for reverse injection into the brick body 1 to clean the interior of the arc-shaped groove 11. The fence plate 29 can be cleaned by opening the box door 28.
[0052] As shown in Figure 3 , in some embodiments, the switching assembly 3 further comprises:
[0053] The electric push rod 31 and the second connecting frame 33.
[0054] The outer wall of the collecting box 21 is fixed with an electric push rod 31, the elongated end of the electric push rod 31 is fixedly connected with a first connecting frame 32, the collecting box 21 is provided with a moving gap corresponding to the moving position of the first connecting frame 32, the elongated end of the electric push rod 31 is fixed with a second connecting frame 33 at the bottom of the first connecting frame 32, and the second connecting frame 33 is fixedly connected with the side surface of the plug plate 45;
[0055] The elongated end of the electric push rod 31 pushes the top of the plug plate 45 to insert into the upper connecting port 44, the upper end connecting port 44 of the conveying channel 43 is blocked, and the lower end connecting port 44 of the conveying channel 43 is opened, and the blocking frame 210 moves upwards along with the elongated end of the electric push rod 31 to block the gap of the fence plate 29.
[0056] It should be noted that the first connecting frame 32 and the second connecting frame 33 are moved by the electric push rod 31, the first connecting frame 32 moves along the moving gap to avoid interference, the blocking frame 210 moves along the inside of the collecting box 21, the plug plate 45 moves vertically along with the second connecting frame 33, when the plug plate 45 inserts into the upper end connecting port 44, the lower end connecting port 44 is opened, the blocking frame 210 blocks the fence plate 29 to form a blocking plate, the water stored in the water tank 24 is pressurized by the water pump in the water tank 24, and then is sent into the rubber strip 4 through the connecting channel 27, the collecting box 21, the lower end connecting port 44 and the conveying channel 43, and then the cavity inside the brick body 1 is backwashed, when the plug plate 45 and the blocking frame 210 move downwards along with the electric push rod 31, the rainwater sent from the upper end connecting port 44 is filtered by the fence plate 29 and stored in the collecting box 21, and after a certain capacity is stored, the rainwater can be discharged into the water tank 24 through the overflow groove 211.
[0057] As shown in Figure 7 、 Figure 8 、 Figure 9 and Figure 10 , in some embodiments, the brick body 1 further comprises:
[0058] a flat plate 16, a spring telescopic plate 17, a moving plate 18, a pull rope 19, and a reset spring 110;
[0059] The top of the arc-shaped groove 11 is fixed with a plane plate 16, the middle bottom of the plane plate 16 is rotatably installed with a spring expansion plate 17 through a rotating shaft, and the elongated end of the spring expansion plate 17 is in sliding contact with the arc-shaped groove 11. The vertical surface of one end of the brick body 1 is provided with a moving cavity, and the moving plate 18 is slidably installed in the moving cavity of the brick body 1. The rotating shaft of the spring expansion plate 17 penetrates into the moving cavity and is rotatably installed with a second connecting rod 112. The other end of the second connecting rod 112 is rotatably installed with a first connecting rod 111, and the bottom of the first connecting rod 111 is rotatably connected with the moving plate 18. The moving plate 18 moves up and down along the moving cavity to drive the first connecting rod 111 and the second connecting rod 112 to rotate. The spring expansion plate 17 rotates along the inner wall of the arc-shaped groove 11 under the rotation of the second connecting rod 112. The plane plate 16 is provided with notches on both sides of the top of the arc-shaped groove 11. The bottom of the moving plate 18 is equidistantly fixed with a return spring 110, and the bottom of the return spring 110 is fixedly connected with the inner wall of the moving cavity. The moving plate 18 is fixed with a pull rope 19 at both ends, and the pull rope 19 penetrates into the cavity from the top and is fixedly connected with the supporting plate 14.
[0060] It should be noted that the moving of the supporting plate 14 under extrusion drives the moving plate 18 to slide along the moving cavity through the pull rope 19. Through the rotation of the first connecting rod 111 and the second connecting rod 112, the spring expansion plate 17 is driven to rotate, and the soil and impurities in the arc-shaped groove 11 are pushed out from the notches on both sides of the plane plate 16. The arc-shaped groove 11 is simply cleaned, and the arc-shaped groove 11 and the leakage groove 12 are prevented from being blocked. After there is no pressure above the supporting plate 14, the return spring 110 drives the moving plate 18 to reset, so that the first connecting rod 111 and the second connecting rod 112 are reversely rotated, the spring expansion plate 17 is reversely rotated, and the arc-shaped groove 11 is cleaned again. Rainwater can be accumulated in the cavity, and the impurities in the arc-shaped groove 11 can be cleaned at the same time.
[0061] The top of the supporting plate 14 is pressed to move downward, the moving plate 18 is synchronously moved reversely through the pull rope 19 and the push plate, and the supporting plate 14 is moved upward with the reset spring 110 and the moving plate 18; the vertical plate 113 is symmetrically fixed on the inner wall of the cavity of the brick body 1, the sliding frame 114 is fixed on the inner wall of the cavity of the brick body 1 corresponding to the moving path of the vertical plate 113, and the vertical plate 113 slides along the inside of the sliding frame 114, the lower convex plate 119 is fixed at the bottom of the vertical plate 113, and the upper convex plate 118 is fixed on the upper end surface of the vertical plate 113; there is a certain distance between the upper convex plate 118 and the lower convex plate 119, the supporting plate 14 contacts with the lower convex plate 119 to drive the vertical plate 113 to slide downward along the sliding frame 114, and the supporting plate 14 contacts with the upper convex plate 118 to drive the vertical plate 113 to slide upward along the sliding frame 114. The plug plate 116 is sealingly inserted in the water hole 13 on both sides of the cavity, a one-way valve is installed in the inside of the plug plate 116, the horizontal rod 117 is fixed on the top of the plug plate 116 in the inside of the cavity of the brick body 1, and the top of the plug plate 116 is slidingly sleeved on the horizontal rod 117; wherein the flow direction of the one-way valve in the plug plate 116 is opposite to one side of the adjacent rubber strip 4. The rotating shaft is rotatably installed on the top surface of the vertical plate 113, and the back of the plug plate 116 is rotatably connected with the rotating shaft and the rotating frame 115; wherein when the vertical plate 113 moves up and down with the supporting plate 14, the rotating frame 115 rotates to pull the plug plate 116 to slide along the horizontal rod 117 to open and close the water hole 13.
[0062] It needs to be explained that the cavity water hole 13 of the brick body 1 close to the rubber strip 4 is not provided with a blocking plate 116, and the water hole 13 of the brick body 1 in the middle is provided with a blocking plate 116. The function of the blocking plate 116 is to block the water hole 13 in the normal state. When the rainwater initially enters the cavity, it will not flow out from the water hole 13 at the first time. With the accumulation of rainwater, the gravity will move the supporting plate 14 downward. The supporting plate 14 slides downward along the vertical plate 113. At the beginning, the supporting plate 14 does not contact the lower protruding plate 119. After moving a distance, the supporting plate 14 is in extrusion contact with the lower protruding plate 119, which pushes the vertical plate 113 downward along the sliding frame 114. The rotating frame 115 rotates, the blocking plate 116 slides along the cross bar 117, and the water hole 13 is opened. At this time, the rainwater in the cavity continues to accumulate and moves to the inside of the rubber strip 4 along the water hole 13 on both sides. When the water in the cavity is discharged, the supporting plate 14 moves upward. At the beginning, it will not move the vertical plate 113. After the rainwater in the cavity is basically discharged, the supporting plate 14 is in extrusion contact with the upper protruding plate 118, which pushes the vertical plate 113 upward. The blocking plate 116 blocks the water hole 13 again. This is for the rainwater collection stage. When it does not rain, the arc-shaped groove 11 will also accumulate soil and impurities. In order to avoid this problem, the water is returned through the watering assembly 2, and the water spreads to all the cavities inside the brick body 1 through the one-way valve corresponding to the direction of the cavity and the blocking plate 116 of the brick body 1, thereby automatically driving the movement of the supporting plate 14. The second way drives the spring expansion plate 17 in the arc-shaped groove 11 to rotate, and cleans the impurities and soil in the arc-shaped groove 11.
[0063] The inside of the water hole 13 is slidably provided with a screw ring 15, and the middle of the threaded pipe 5 is provided with a sealing ring 51. The threaded pipe 5 is threadedly inserted into the inside of the screw ring 15.
[0064] The two ends of the threaded pipe 5 are threadedly inserted into the screw ring 15 in the water hole 13, the water holes 13 of adjacent brick bodies 1 are communicated through the threaded pipe 5, the middle sealing ring 51 of the threaded pipe 5 divides the threaded pipe 5 into two sections, and the threaded pipes 5 at both ends of the sealing ring 51 are rotatably connected with the sealing ring 51.
[0065] It should be noted that when splicing the two brick bodies 1, a threaded pipe 5 is locked and connected with the screw rings 15 of the two brick bodies 1, the two sections of the threaded pipe 5 can be rotated separately through the sealing ring 51 in the middle of the threaded pipe 5, the threaded pipe 5 is hollow, so that the liquid in the cavity of the brick body 1 can enter the inside of the other brick body 1 through the water hole 13 and the threaded pipe 5, and the structure can collect and discharge the excess rainwater to the two sides of the rubber strip 4 when collecting rainwater naturally, and then send the rainwater into the collecting box 21 of the watering assembly 2, so as to discharge the excess rainwater and avoid damaging the ground structure laid at the bottom of the brick body 1. The reverse flow of the watering assembly 2 can also be used to send the water into the cavity in the brick body 1, so as to drive the movement of the supporting plate 14 in the brick body 1 in the reverse direction, and both of the two ways can drive the spring expansion plate 17 to rotate along the inside of the arc-shaped groove 11, so as to clean the arc-shaped groove 11 and avoid the arc-shaped groove 11 being blocked by too much soil and impurities accumulated in the arc-shaped groove 11 for a long time.
[0066] In the description of the present disclosure, the terms "first", "second", and the like are only for descriptive purposes, and cannot be understood as indicating or implying relative importance. In addition, in the description of the present disclosure, the meaning of "a plurality of" is two or more, unless otherwise stated.
[0067] Any process or method descriptions in flow charts or otherwise described herein, represent code modules, segments, or portions of code which include one or more executable instructions for performing specific logic functions or steps in the process, and the flow of these process steps can be understood as a description of the operation of the modules, segments or portions of code, and the preferred embodiments of the present disclosure include additional implementations in which the order of execution is different, additional functions are incorporated, or some functions are eliminated, and the scope of the present disclosure includes these additional implementations.
[0068] In the description of the present disclosure, the description of the terms "one embodiment", "some embodiments", "example", "specific example", or "some examples" means that the specific features, structures, materials or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present disclosure. In the present specification, the illustrative description of the above terms does not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner.
[0069] Although the embodiments of the present disclosure have been shown and described above, it can be understood that the above embodiments are exemplary and cannot be understood as limiting the present disclosure, and those skilled in the art can make changes, modifications, replacements and variations to the above embodiments within the scope of the present disclosure.
Claims
1. A rural environment-friendly paving tile and landscape reconstruction device with rainwater collection function, characterized in that, Include: A plurality of brick bodies (1), a plurality of said brick bodies (1) are spliced and installed, the top of said brick body (1) is equidistantly provided with an arc-shaped groove (11), and the bottom of said brick body (1) is provided with a cavity, the bottom of said arc-shaped groove (11) is provided with a leakage groove (12), and the leakage groove (12) is communicated with the cavity, and the top of the two sides of said cavity is provided with a water hole (13); Threaded pipe (5), the outer side of said water hole (13) is provided with a threaded pipe (5), and a same threaded pipe (5) is installed between the water holes (13) of adjacent said brick bodies (1); Rubber strip (4), the two sides of a plurality of said brick bodies (1) spliced are provided with rubber strips (4), the inside of said rubber strip (4) is provided with an annular water cavity (42), the side of said rubber strip (4) facing said brick body (1) is provided with a threaded hole (46) at the position corresponding to said threaded pipe (5), said threaded pipe (5) is threadedly inserted into said threaded hole (46), and said threaded pipe (5) penetrates into said annular water cavity (42); Water spraying assembly (2), said water spraying assembly (2) comprises a collecting box (21), said collecting box (21) is installed at the bottom of said rubber strip (4), the outer side of said collecting box (21) is provided with a water tank (24), the top of said collecting box (21) is fixedly provided with a ring pipe (22), and the two sides of said ring pipe (22) are fixedly connected with the two ends of said collecting box (21), a plurality of said ring pipes (22) are equidistantly installed on the surface of said ring pipe (22), a water pump is installed in said collecting box (21) and connected with said ring pipe (22), a fence plate (29) is fixedly arranged at the top of said collecting box (21); Switching assembly (3), said switching assembly (3) comprises a baffle (210), said fence plate (29) is provided with a baffle (210) at the bottom, the convex strip on said baffle (210) corresponds to the notch of said fence plate (29), a first connecting frame (32) is fixedly arranged at the top of the inner wall of said collecting box (21) close to said baffle (210), and said first connecting frame (32) slides through said fence plate (29) and said collecting box (21); The bottom of said rubber strip (4) is fixedly provided with a conveying channel (43), two connecting ports (44) are fixedly arranged on the side of said conveying channel (43) facing said collecting box (21), two said connecting ports (44) penetrate into said collecting box (21), two said connecting ports (44) are located at the top and bottom of said fence plate (29), the top of said conveying channel (43) is communicated with the inside of said annular water cavity (42), and a plug plate (45) is slidably inserted between two said connecting ports (44); Wherein, the two ends of said plug plate (45) are alternately slidably inserted into the inside of two said connecting ports (44), and one end of said plug plate (45) penetrating into said connecting port (44) blocks said connecting port (44), and the other end of said plug plate (45) opens said connecting port (44); Said switching assembly (3) further comprises: Electric push rod (31), second connecting frame (33); The outer wall of the collecting box (21) is fixed with an electric push rod (31), the extension end of the electric push rod (31) is fixedly connected with a first connecting frame (32), the collecting box (21) is provided with a moving gap corresponding to the moving position of the first connecting frame (32), the extension end of the electric push rod (31) is fixed with a second connecting frame (33) at the bottom of the first connecting frame (32), and the second connecting frame (33) is fixedly connected with the side of the plugboard (45); The extension end of the electric push rod (31) pushes the top of the plugboard (45) to insert into the upper connecting port (44), the upper end connecting port (44) of the conveying channel (43) is blocked, the lower end connecting port (44) of the conveying channel (43) is opened, and the blocking frame (210) moves upwards along the extension end of the electric push rod (31) to block the gap of the fence plate (29).
2. The rural environment-friendly tiling and landscape reconstruction device with rainwater collection function according to claim 1, characterized in that, The watering assembly (2) further comprises: a water inlet pipe (25), a drain pipe (26), a connecting channel (27), a box door (28), and an overflow groove (211); The outer side of the water tank (24) is provided with the drain pipe (26), the outer surface of the water tank (24) is provided with the water inlet pipe (25) on the other side of the drain pipe (26), the inner wall of the collecting box (21) near one side of the water tank (24) is provided with the overflow groove (211), the overflow groove (211) is near the bottom of the fence plate (29), the outer side of the collecting box (21) at the overflow groove (211) is fixedly provided with the connecting channel (27), and the other side of the connecting channel (27) is fixedly connected with the water tank (24); The drain pipe (26) drains the water in the water tank (24) into an underground pipeline, and the water inlet pipe (25) is connected with an external water source and sends water into the water tank (24); The connecting channel (27) is internally provided with a water pump, when the blocking frame (210) and the fence plate (29) are combined, the water pump in the connecting channel (27) pumps the water in the water tank (24) into the collecting box (21), and the water is reversely sent back into the brick body (1) through the conveying channel (43).
3. The rural environment-friendly tiling and landscape reconstruction device with rainwater collecting function according to claim 1, characterized in that, The brick body (1) further comprises: a plane plate (16), a spring telescopic plate (17), a moving plate (18), a pull rope (19), and a reset spring (110); The top of the arc-shaped groove (11) is fixedly provided with the plane plate (16), the middle bottom of the plane plate (16) is rotatably provided with the spring telescopic plate (17) through a rotating shaft, the extension end of the spring telescopic plate (17) is in sliding contact with the arc-shaped groove (11), the vertical surface of one end of the brick body (1) is provided with a moving cavity, the moving plate (18) is slidably arranged in the moving cavity of the brick body (1), the rotating shaft of the spring telescopic plate (17) penetrates into the moving cavity and is rotatably provided with a second connecting rod (112), the other end of the second connecting rod (112) is rotatably provided with a first connecting rod (111), and the bottom of the first connecting rod (111) is rotatably connected with the moving plate (18). The moving plate (18) moves up and down along the moving cavity to drive the first connecting rod (111) and the second connecting rod (112) to rotate, the spring telescopic plate (17) rotates along the inner wall of the arc-shaped groove (11) under the rotation of the second connecting rod (112), and the flat plate (16) is provided with notches on both sides of the top of the arc-shaped groove (11).
4. The rural environment-friendly tiling and landscape reconstruction device with rainwater collecting function according to claim 3, characterized in that, The bottom of the moving plate (18) is fixed with a reset spring (110) at equal intervals, the bottom of the reset spring (110) is fixedly connected with the inner wall of the moving cavity, and the two ends of the moving plate (18) are fixed with pull ropes (19), the pull ropes (19) penetrate into the cavity from the top and are fixedly connected with the supporting plate (14). The top of the supporting plate (14) moves downward after being pressed, the moving plate (18) moves reversely synchronously with the push plate through the pull ropes (19), and the supporting plate (14) moves upward along with the reset spring (110) and the moving plate (18).
5. The rural environment-friendly tiling and landscape reconstruction device with rainwater collecting function according to claim 4, characterized in that, The inner walls of the cavities on both sides of the brick body (1) are fixed with vertical plates (113) in a symmetrical manner, the inner walls of the cavities of the brick body (1) are fixed with sliding frames (114) corresponding to the moving paths of the vertical plates (113), the vertical plates (113) slide along the sliding frames (114), the bottom of the vertical plate (113) is fixed with a lower protruding plate (119), and the upper end surface of the vertical plate (113) is fixed with an upper protruding plate (118). The upper protruding plate (118) and the lower protruding plate (119) are a certain distance apart, the supporting plate (14) contacts the lower protruding plate (119) to drive the vertical plate (113) to slide downward along the sliding frame (114), and the supporting plate (14) contacts the upper protruding plate (118) to drive the vertical plate (113) to slide upward along the sliding frame (114).
6. The rural environment-friendly tiling and landscape reconstruction device with rainwater collecting function according to claim 5, characterized in that, The water holes (13) on both sides of the cavities are sealingly inserted with plug plates (116), one-way valves are mounted in the plug plates (116), the cavities of the brick body (1) are fixed with horizontal rods (117) on the top of the plug plates (116), and the plug plates (116) are slidingly sleeved on the horizontal rods (117); The flow direction of the one-way valves in the plug plates (116) is opposite to that of the rubber strips (4) on the same side.
7. The rural environment-friendly tiling and landscape reconstruction device with rainwater collecting function according to claim 6, characterized in that, The top surface of the vertical plate (113) is rotatably provided with a rotating frame (115) through a rotating shaft, and the back surface of the plug plate (116) is rotatably connected with the rotating frame (115) through a rotating shaft. When the vertical plate (113) moves up and down along with the supporting plate (14), the rotating frame (115) rotates to pull the plug plate (116) to slide along the horizontal rod (117) to open and close the water hole (13).
8. The rural environment-friendly tiling and landscape reconstruction device with rainwater collecting function according to claim 7, characterized in that, The inside of the water hole (13) is slidingly provided with a screw ring (15), the middle of the threaded pipe (5) is provided with a sealing ring (51), and the threaded pipe (5) is threadedly inserted into the screw ring (15). Two ends of the threaded pipe (5) are screwed into the screw ring (15) in the water hole (13), the water holes (13) of the adjacent brick bodies (1) are communicated through the threaded pipe (5), the middle sealing ring (51) of the threaded pipe (5) divides the threaded pipe (5) into two sections, and the threaded pipe (5) at two ends of the sealing ring (51) is rotationally connected with the sealing ring (51).
Citation Information
Patent Citations
Equipment for collecting and purifying rainwater and utilizing rainwater for greening in park
CN107401209A
Permeable floor tile for sponge city
CN210315105U