An integrated paving device and construction method for stadium running tracks

By setting up a reciprocating mechanism for the synchronously moving cutting plate and blocking plate, combined with half-gear control, the problem of uneven distribution of the mixture in the hopper was solved, achieving uniformity and neatness of the plastic track paving, and improving the paving quality.

CN121345005BActive Publication Date: 2026-03-06NINGBO DAHONGYING UNIV
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Patent Information

Application Number
CN202511906313.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-12-17
Publication Date
2026-03-06
Estimated Expiration
2045-12-17

AI Technical Summary

Technical Problem

In the construction of plastic running tracks, existing pavers result in uneven distribution of the mixture in the hopper, leading to irregular paving edges. Furthermore, the friction and adhesion of the rectangular discharge chute cause uneven material discharge, forming a wavy structure.

Method used

The cutting plate and blocking plate with synchronous motion are driven by a reciprocating mechanism and combined with half gear meshing control to realize the segmented cutting and uniform feeding of the mixture in the trough. The cooperation of the mixing component and the pusher plate ensures that the density of the mixture in the trough is uniformly distributed.

Benefits of technology

It achieves uniform material distribution and neat paving edges during the paving process. Through secondary compaction by the overlay roller and cutting by the edge trimming mechanism, it ensures improved paving quality of the plastic track.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention discloses an integrated paving device and method for stadium running tracks, relating to the application field of road construction pavers. It includes a hopper and a walking system. An installation frame is mounted on the outside of the hopper, and a mixing component is rotatably connected inside. A first driving device is located at the top of the installation frame, drivingly connected to the mixing component and the walking system. A material chute is located at the bottom of the hopper, and a cutting plate and a blocking plate are movably installed inside the chute. Both the cutting plate and the blocking plate are driven by a reciprocating mechanism. This invention uses synchronously moving cutting and blocking plates to segmentally cut the mixture in the chute, allowing for more uniform material distribution and density distribution after filling. Segmented material distribution further ensures more uniform discharge from the chute, resulting in neater paved edges.
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Description

Technical Field

[0001] This invention relates to the field of road construction pavers, specifically to an integrated paving device and construction method for stadium tracks. Background Technology

[0002] Plastic track pavers are core engineering equipment used for the construction of plastic tracks. They are specifically designed to spread plastic track raw materials such as polyurethane mixtures and EPDM colored granule mixtures evenly on a pre-set base, and complete processes such as leveling, compaction, and slurry raising to ultimately form a plastic surface layer with uniform thickness, a smooth surface, and the required density. Their core value is to replace manual labor and achieve efficient and precise large-scale paving operations.

[0003] When using a paver, the plastic mixture is poured into the paver's hopper by hand or a loader. The bottom of the hopper has a rectangular discharge chute, and a mixing shaft is installed inside the hopper. The paver's drive system can control the movement of the paver and simultaneously drive the mixing shaft in the hopper to rotate. Because the plastic mixture is highly viscous, the mixing shaft can prevent it from hardening and solidifying in a short time. When the plastic mixture falls to the ground through the rectangular discharge chute, the paving slab following closely behind the paver vibrates, spreading the fallen plastic mixture evenly on the ground, so that it adheres to the ground at a certain thickness. After a section is paved, the edges of the track are immediately trimmed with special tools to remove excess material and ensure that the edges are straight and neat.

[0004] In practical applications, after paving, the edges of the track often appear uneven. This is because the paver's hopper is usually a rectangular metal hopper. When the mixture is poured into the hopper manually or by a loader, the mixture is unevenly distributed within the hopper. Typically, the mixture is more concentrated in the middle of the hopper than on the sides. Using a mixing shaft can make the mixture distribution more even, but the traditional straight rod mixing shaft is not very effective. Therefore, some pavers in the current technology also use a double-helix mixing shaft to improve the distribution of the mixture. However, the rotation speed of the double helix needs to be controlled in real time by the operator based on experience to avoid uneven distribution of the mixture in the hopper.

[0005] Plastic mixtures have high viscosity, and the inner walls of the hoppers, especially the inner walls of the rectangular discharge troughs, easily adhere to the mixture. In the middle section of the rectangular discharge trough, clumps of mixture can fall directly in large chunks due to gravity. However, at both ends of the rectangular discharge trough, the mixture is obstructed due to friction and adhesion from the inner walls of the metal hoppers. In other words, although the double-helix mixing shaft can improve the distribution of the mixture and make the paving more uniform, the rectangular discharge trough can also cause uneven discharge of the mixture. Consequently, when the paving slab is vibrated during paving, the edges of the plastic layer will have a wavy structure and will not be neat. Summary of the Invention

[0006] Based on this, the purpose of the present invention is to provide an integrated paving device and construction method for stadium running tracks to solve the technical problems mentioned in the background.

[0007] To achieve the above objectives, the present invention provides the following technical solution: an integrated paving device for a sports track, comprising a hopper and a walking system. An installation frame is mounted on the outside of the hopper, and a mixing assembly is rotatably connected inside the hopper. A first driving device is provided at the top of the installation frame, drivingly connected to the mixing assembly and the walking system. A material drop trough is provided at the bottom of the hopper, and a cutting plate and a blocking plate are movably mounted inside the material drop trough. Both the cutting plate and the blocking plate are driven by a reciprocating mechanism. The reciprocating mechanism includes a connecting frame for fixing the cutting plate and the blocking plate. A guide rod is provided on the side of the connecting frame, and the side of the connecting frame rotates... The moving connection includes a first connecting rod, and the reciprocating mechanism also includes a first rotating disk rotatably disposed at the bottom of the mounting frame. The first rotating disk and the first connecting rod are rotatably connected. The two sets of reciprocating mechanisms are connected by a transmission mechanism. The transmission mechanism includes a first gear and a second gear. The first gear is connected to the first rotating disk that drives the blocking plate, and the second gear is connected to the first rotating disk that drives the cutting plate through a pulley assembly. The transmission mechanism also includes half gears distributed between the first gear and the second gear. The half gears are connected to a drive assembly, and a meshing clearance is maintained between the half gears and the first gear and the second gear. A paving mechanism is provided on the side of the mounting frame, and a cutting mechanism is provided at both ends of the paving mechanism.

[0008] By adopting the above technical solution, and by setting synchronously moving cutting plates and blocking plates to segmentally cut the mixture in the discharge chute, the mixture can be discharged more evenly in the discharge chute. Both the cutting plate and the blocking plate are driven and controlled by reciprocating mechanisms, and the two sets of reciprocating mechanisms are respectively connected to gears. The two sets of gears are driven and controlled by half gears. The tooth blocks of the half gears are distributed and a certain gap is maintained between the gears. In the initial state, "cutting plate open - blocking plate closed", and the two move synchronously back and forth. When the half gears mesh with the gears connected to the cutting plate, the cutting plate pauses briefly and then closes (at this time, the blocking plate is still in the closed state, thus the mixture...). The mixture falls and accumulates on the blocking plate. During the short pause, the mixture is pushed and squeezed by the mixing components, allowing it to fill the chute evenly. After the cutting plate closes, it cuts the mixture in the chute. When the half gear continues to rotate and meshes with the gear connected to the blocking plate, the blocking plate pauses briefly and then opens (at which time the cutting plate is closed), allowing the mixture in the chute to fall to the ground. This process is repeated to make the density distribution of the mixture more uniform after it fills the chute. Then, the mixture is discharged in sections to make the discharge from the chute more uniform, resulting in a neater edge for the paved mixture.

[0009] The present invention is further configured such that the stirring assembly includes a transmission shaft rotatably connected to the hopper, a plurality of stirring rods are provided outside the transmission shaft, and a plurality of pusher plates are provided outside the transmission shaft, the pusher plates being matched with the discharge chute.

[0010] Preferably, by setting multiple sets of pusher plates inside the mixing assembly, the rotation of the mixing assembly can push the mixture into the discharge trough through the pusher plates, so that the mixture filled in the discharge trough can be compressed, making the density distribution of the mixture more uniform, that is, the mixture falling from the discharge trough is more uniform.

[0011] The present invention is further configured such that a control console is provided on the top of the mounting frame, the control console being used to control the paver to perform the mixture paving operation.

[0012] Preferably, a control console is used to control the operation of the paver.

[0013] The present invention is further configured such that the paving mechanism is movably mounted below the mounting frame by means of a first guide column, the paving mechanism includes a movable frame movably mounted with the first guide column, the top of the movable frame is rotatably connected to a first threaded rod, and the first threaded rod is threadedly connected to the mounting frame.

[0014] Preferably, by setting a first threaded rod, the height of the paving mechanism can be adjusted by rotating the first threaded rod, thereby controlling the thickness of the paving mixture.

[0015] The present invention is further configured such that a second rotating disk is rotatably connected to the bottom of the first threaded rod, the second rotating disk is connected to a second driving device, and a second connecting rod is rotatably connected to the bottom of the second rotating disk.

[0016] Preferably, by setting a second rotating disk, the second connecting rod and the second rotating disk are eccentrically connected, so that the second driving device can drive the paving slab to reciprocate to pave the mixture.

[0017] The invention is further configured such that a lower hanging arm is provided at the bottom of the movable frame, a paving plate is movably installed at the bottom of the lower hanging arm, the paving plate is rotatably connected to a second connecting rod, and a pressing roller is rotatably connected to the bottom of the movable frame.

[0018] Preferably, the paving plate is installed by setting a lower hanging arm, and then the paving plate can be driven to move left and right by a structure such as a second connecting rod and a second rotating disc to pave the mixture.

[0019] The present invention is further configured such that the two sets of trimming mechanisms are movably mounted on both sides of the movable frame by setting limiting guide rails. Each trimming mechanism includes a movable plate movably mounted with the limiting guide rails. A second threaded rod is rotatably connected to the side of the movable plate, and the second threaded rod is threadedly connected to the movable frame.

[0020] Preferably, by setting a second threaded rod, the position of the movable frame can be adjusted by rotating the second threaded rod, thereby achieving the purpose of adjusting the position of the cutting mechanism.

[0021] The invention is further configured such that an arc-shaped guide plate is movably mounted on the bottom of the movable plate via a second guide post, and a spring is sleeved on the outside of the second guide post, and a dividing wheel is rotatably connected to the side of the arc-shaped guide plate.

[0022] Preferably, the edges of the laid mixture are cut by setting a dividing wheel, and the waste is guided by an arc-shaped guide plate to facilitate the collection of waste by workers.

[0023] A construction method for an integrated track paving device for stadiums includes the following steps:

[0024] S1: First, the staff pours the mixture into the hopper, and then controls the first drive device through the control console to start the walking system to move the paver. At the same time, the first drive device drives the mixing component to rotate. The mixing component mixes the mixture in the hopper and pushes the mixture into the chute through the pusher plate of the mixing component.

[0025] S2: At the same time, the transmission mechanism drives the two sets of reciprocating mechanisms to run synchronously, so that the cutting plate and the blocking plate move left and right synchronously. The cutting plate and the blocking plate move left and right synchronously to cut the mixture entering the discharge chute, so that the mixture is filled and then divided into sections and dropped to the ground.

[0026] S3: Then the second drive device is started to drive the second rotating disk to rotate. The rotation of the second rotating disk drives the paving plate to move back and forth, so as to spread the mixture that falls on the ground evenly. At the same time, the covering roller rolls to roll and compact the paved mixture a second time. The edge cutting mechanism can cut the edge of the paved mixture to make the edge more neat.

[0027] In summary, the present invention has the following main beneficial effects:

[0028] This invention uses a synchronously moving cutting plate and a blocking plate to segmentally cut the mixture in the discharge trough, allowing for more uniform discharge of the mixture. Both the cutting plate and the blocking plate are driven by reciprocating mechanisms, which are connected to gears. These gears are driven by half-gears, with a certain gap maintained between the tooth blocks of the half-gears and between the gears. Initially, the cutting plate is open and the blocking plate is closed, with both moving synchronously. When the half-gears mesh with the gears connected to the cutting plate, the cutting plate pauses briefly before closing (at this time, the blocking plate is still closed, allowing the mixture to fall). (Accumulated on the blocking plate), the mixture is briefly paused, allowing it to be pushed and squeezed by the mixing components, filling the chute evenly. After the cutting plate closes, it cuts the mixture in the chute. When the half gear continues to rotate and meshes with the gear connected to the blocking plate, the blocking plate pauses briefly and then opens (at which time the cutting plate is closed), allowing the mixture in the chute to fall to the ground. This process is repeated, making the density distribution of the mixture more uniform after filling the chute. Then, the mixture is discharged in sections, making the discharge from the chute more uniform, thus making the edges of the paved mixture neater.

[0029] This invention improves the uniformity of the paved mixture by installing a pressure roller behind the paving slab and using the roller to perform secondary compaction. The pressure roller has edge-cutting mechanisms at both ends to cut the edges of the paved mixture, improving its neatness. The distance between the two edge-cutting mechanisms is adjustable, allowing for control of the paving width during the installation of the plastic track. The edge-cutting mechanism mainly includes an arc-shaped guide plate and a dividing wheel. The dividing wheel has a boss structure, and its arc-shaped surface connects with the arc-shaped guide plate. When the dividing wheel rolls and cuts the paved mixture, it is first guided by the arc-shaped surface and then by the arc-shaped guide plate, allowing workers to collect excess mixture. Both the arc-shaped guide plate and the dividing wheel are equipped with springs, enabling the dividing wheel to adapt to uneven surfaces during movement. The springs' restoring action allows the dividing wheel to cut the mixture as close to the ground as possible, improving the cutting effect on excess mixture. Attached Figure Description

[0030] Figure 1 This is a schematic diagram of the overall structure of the present invention;

[0031] Figure 2 This is a schematic diagram showing the connection between the first driving device, the stirring assembly, and the walking system of the present invention;

[0032] Figure 3 This is a schematic diagram of the stirring assembly structure of the present invention;

[0033] Figure 4This is a schematic diagram of the reciprocating mechanism distribution of the present invention;

[0034] Figure 5 This is a schematic diagram of the reciprocating mechanism structure of the present invention;

[0035] Figure 6 This is a schematic diagram showing the distribution of the cutting plate, blocking plate, and discharge chute of the present invention;

[0036] Figure 7 This is a schematic diagram of the transmission mechanism distribution of the present invention;

[0037] Figure 8 This is a schematic diagram showing the distribution of the pulley assembly in the transmission mechanism of the present invention;

[0038] Figure 9 For the present invention Figure 8 Enlarged view of point A in the image;

[0039] Figure 10 This is a schematic diagram of the paving mechanism structure of the present invention;

[0040] Figure 11 This is a schematic diagram of the paving slab distribution of the paving mechanism of the present invention;

[0041] Figure 12 For the present invention Figure 11 Enlarged view of point B in the image;

[0042] Figure 13 This is a side view of the cutting mechanism of the present invention.

[0043] Explanation of reference numerals in the attached figures:

[0044] 1. Hopper; 2. Mounting frame; 3. First drive unit; 4. Mixing assembly; 401. Drive shaft; 402. Mixing rod; 403. Pusher plate; 5. Control console; 6. Discharge chute; 7. Cutting plate; 8. Blocking plate; 9. Reciprocating mechanism; 901. Connecting frame; 902. Guide rod; 903. First connecting rod; 904. First rotating disk; 10. Transmission mechanism; 1001. First gear; 1002. Second gear; 1003. Pulley assembly; 1004. Half gear; 11. Walking system ; 12. First guide post; 13. Paving mechanism; 1301. Movable frame; 1302. First threaded rod; 1303. Second rotating disk; 1304. Second drive device; 1305. Second connecting rod; 1306. Lower hanging arm; 1307. Paving plate; 1308. Overlapping roller; 14. Limiting guide rail; 15. Edge trimming mechanism; 1501. Moving plate; 1502. Second threaded rod; 1503. Second guide post; 1504. Spring; 1505. Arc-shaped guide plate; 1506. Dividing wheel. Detailed Implementation

[0045] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain the present invention, and should not be construed as limiting the present invention.

[0046] The embodiments of the present invention will now be described.

[0047] Please see Figures 1-13 An integrated paving device for a sports track includes a hopper 1 and a walking system 11. The walking system 11 includes front and rear wheels. A mounting frame 2 is installed on the outside of the hopper 1, and a mixing assembly 4 is rotatably connected inside the hopper 1. A first driving device 3 is provided on the top of the mounting frame 2, and the first driving device 3 is movably connected to the mixing assembly 4. The first driving device consists of a drive motor and a speed regulating gear set, which can drive the mixing assembly 4 to rotate. The first driving device 3 is movably connected to the walking system 11. A material drop trough 6 is provided at the bottom of the hopper 1, and a cutting plate 7 and a blocking plate 8 are movably installed inside the material drop trough 6. Both the cutting plate 7 and the blocking plate 8 are driven by a reciprocating mechanism 9. The reciprocating mechanism 9 is used to drive the cutting plate 7 and the blocking plate 8 to move synchronously left and right. The reciprocating mechanism 9 includes a connecting frame 901 for fixing the cutting plate 7 and the blocking plate 8. A guide rod 902 is provided on the side of the connecting frame 901. The guide rod 902 is slidably installed with the mounting frame 2, and a first connecting rod 9 is rotatably connected to the side of the connecting frame 901. 03. The reciprocating mechanism 9 also includes a first rotating disk 904 rotatably disposed at the bottom of the mounting frame 2. The first rotating disk 904 and the first connecting rod 903 are rotatably connected. The two sets of reciprocating mechanisms 9 are connected by a transmission mechanism 10. The transmission mechanism 10 includes a first gear 1001 and a second gear 1002. The first gear 1001 is connected to the first rotating disk 904 that drives the blocking plate 8. The second gear 1002 is connected to the first rotating disk 904 that drives the cutting plate 7 through a pulley assembly 1003. The transmission mechanism 10 also includes a half gear 1004 distributed between the first gear 1001 and the second gear 1002. The half gear 1004 is connected to a drive assembly. It can also be connected by a transmission assembly, such as a bevel gear set, a pulley set, and a speed regulating gear set of the first drive device 3. The half gear 1004 maintains a meshing gap with the first gear 1001 and the second gear 1002. A paving mechanism 13 is provided on the side of the mounting frame 2. Both ends of the paving mechanism 13 are provided with edge cutting mechanisms 15.

[0048] Please refer to the above embodiments for further details. Figure 3 and Figure 6The mixing assembly 4 includes a drive shaft 401 rotatably connected to the hopper 1. Multiple sets of mixing rods 402 are provided on the outside of the drive shaft 401, and multiple sets of pusher plates 403 are provided on the outside of the drive shaft 401. The pusher plates 403 are matched with the discharge trough 6. By providing multiple sets of pusher plates 403 in the mixing assembly 4, the rotation of the mixing assembly 4 can push the mixture into the discharge trough 6 through the pusher plates 403, so that the mixture filled in the discharge trough 6 can be compressed, making the density distribution of the mixture more uniform, that is, the mixture falling from the discharge trough 6 is more uniform.

[0049] Please refer to the above embodiments for further details. Figure 1 The top of the mounting frame 2 is equipped with a control console 5, which is used to control the paver to carry out the mixture paving operation. The control console 5 is used to control the operation of the paver.

[0050] Please refer to the above embodiments for further details. Figure 10 and Figure 11 The paving mechanism 13 is movably mounted below the mounting frame 2 via a first guide post 12. The paving mechanism 13 includes a movable frame 1301 movably mounted to the first guide post 12. A first threaded rod 1302 is rotatably connected to the top of the movable frame 1301. The first threaded rod 1302 is threadedly connected to the mounting frame 2. By setting the first threaded rod 1302, the height of the paving mechanism 13 can be adjusted by rotating the first threaded rod 1302, thereby controlling the thickness of the paving mixture.

[0051] Please refer to the above embodiments for further details. Figure 10 and Figure 11 The bottom of the first threaded rod 1302 is rotatably connected to the second rotating disk 1303, the second rotating disk 1303 is connected to the second driving device 1304, and the bottom of the second rotating disk 1303 is rotatably connected to the second connecting rod 1305. By setting the second rotating disk 1303, the second connecting rod 1305 and the second rotating disk 1303 are eccentrically rotatably connected, and the second driving device 1304 can drive the paving plate 1307 to reciprocate to pave the mixture.

[0052] Please refer to the above embodiments for further details. Figure 10 and Figure 11 The bottom of the movable frame 1301 is provided with a lower hanging arm 1306, and a paving plate 1307 is movably installed at the bottom of the lower hanging arm 1306. The paving plate 1307 is rotatably connected to the second connecting rod 1305, and a covering roller 1308 is rotatably connected to the bottom of the movable frame 1301. By setting the lower hanging arm 1306 to movably install the paving plate 1307, the paving plate 1307 can be driven to move left and right through the second connecting rod 1305, the second rotating disk 1303 and other structures to pave the mixture.

[0053] Please refer to the above embodiments for further details. Figure 12 and Figure 13 Two sets of trimming mechanisms 15 are movably mounted on both sides of the movable frame 1301 via limiting guide rails 14. Each trimming mechanism 15 includes a movable plate 1501 movably mounted to the limiting guide rails 14. A second threaded rod 1502 is rotatably connected to the side of the movable plate 1501. The second threaded rod 1502 is threadedly connected to the movable frame 1301. By setting the second threaded rod 1502, rotating the second threaded rod 1502 can adjust the position of the movable frame 1301, thereby achieving the purpose of adjusting the position of the trimming mechanism 15.

[0054] Please refer to the above embodiments for further details. Figure 12 and Figure 13 An arc-shaped guide plate 1505 is movably mounted on the bottom of the movable plate 1501 via a second guide post 1503, and a spring 1504 is sleeved on the outside of the second guide post 1503. A dividing wheel 1506 is rotatably connected to the side of the arc-shaped guide plate 1505. The dividing wheel 1506 cuts the edge of the laid mixture, and the arc-shaped guide plate 1505 guides the waste material so that workers can collect the waste material.

[0055] A construction method for an integrated track paving device for stadiums includes the following steps:

[0056] S1: First, the staff pours the mixture into the hopper 1, and then controls the first drive device 3 to start the walking system 11 to move the paver through the control console 5. At the same time, the first drive device 3 drives the mixing component 4 to rotate. The mixing component 4 mixes the mixture in the hopper 1 and pushes the mixture into the discharge chute 6 through the push plate 403 of the mixing component 4.

[0057] S2: At the same time, the transmission mechanism 10 drives the two sets of reciprocating mechanisms 9 to run synchronously, so that the cutting plate 7 and the blocking plate 8 move left and right synchronously. The cutting plate 7 and the blocking plate 8 move left and right synchronously to cut the mixture entering the discharge chute 6, so that the mixture is filled and then divided into sections and dropped to the ground.

[0058] S3: Then the second drive device 1304 is started to drive the second rotating disk 1303 to rotate. The rotation of the second rotating disk 1303 drives the paving plate 1307 to move back and forth, so as to spread the mixture falling on the ground evenly. At the same time, the covering roller 1308 rolls to roll and compact the paved mixture a second time. The edge cutting mechanism 15 can cut the edge of the paved mixture to make its edge more neat.

[0059] In practical operation, the present invention works as follows: First, the operator needs to rotate the first threaded rod 1302 to adjust the height of the paving plate 1307 of the paving mechanism 13, thereby adjusting the paving thickness of the mixture. At the same time, the operator rotates the second threaded rod 1502 to adjust the position of the moving plate 1501, thereby adjusting the width of the two sets of cutting mechanisms 15 on the cutting edge of the mixture. Then, the operator needs to prepare the mixture and add the prepared mixture into the hopper 1. The operator starts the paver through the control console 5. The first drive device 3 drives the mixing assembly 4 to rotate. The mixing rod 402 of the mixing assembly 4 plays a mixing role in the mixture, while the pusher plate 403 of the mixing assembly 4 plays a pushing role in the mixture, so that the mixture enters the discharge chute 6.

[0060] Next, the drive assembly is activated to rotate the half gear 1004. After a brief pause, the half gear 1004 engages with the second gear 1002. During this brief pause, the blocking plate 8 is in a closed state, allowing the material chute 6 to be filled with sufficient mixture. The second gear 1002 drives the reciprocating mechanism 9 connected to the cutting plate 7 via the pulley assembly 1003, causing the cutting plate 7 to move laterally from an open state to a closed state, thereby cutting the mixture in the material chute 6. Subsequently, the half gear 1004 engages with the first gear 1001, which drives the reciprocating mechanism 9 connected to the blocking plate 8, causing the blocking plate 8 to move laterally from a closed state to an open state. The cut mixture in the material chute 6 then falls to the ground. This process is repeated, allowing the mixture in the hopper 1 to be filled, cut in segments, and continuously fall to the ground.

[0061] As the paver moves, the second drive unit 1304 drives the second rotating disk 1303 to rotate. The second rotating disk 1303 pulls the paving plate 1307 to slide left and right within the lower hanging arm 1306 via the second connecting rod 1305, thereby allowing the paving plate 1307 to move, roll, and pave the fallen mixture. The covering roller 1308 rotates to roll the paved mixture again, improving its flatness. Meanwhile, the dividing wheel 1506 of the edge cutting mechanism 15 is in contact with the ground under the reset action of the spring 1504. The dividing wheel 1506 rolls to cut the edge of the paved mixture, improving its edge neatness. The excess part of the mixture is cut off and distributed on both sides by the guide plate 1505 for easy collection by workers.

[0062] Although embodiments of the present invention have been shown and described, these specific embodiments are merely explanations of the invention and are not intended to limit it. The specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples. After reading this specification, those skilled in the art may make modifications, substitutions, and variations to the embodiments as needed without departing from the principles and spirit of the invention, but such modifications, substitutions, and variations are protected by patent law as long as they are within the scope of the claims of the present invention.

Claims

1. A sports track integrated laying construction device, comprising a hopper (1) and a walking system (11), characterized in that: The hopper (1) is externally provided with a mounting frame (2), and the inside of the hopper (1) is rotatably connected with a stirring assembly (4); the top of the mounting frame (2) is provided with a first driving device (3), the first driving device (3) and the stirring assembly (4) are drivingly connected, and the first driving device (3) and a walking system (11) are drivingly connected; the bottom of the hopper (1) is provided with a discharging chute (6), and the inside of the discharging chute (6) is movably provided with a cutting plate (7) and a blocking plate (8); the cutting plate (7) and the blocking plate (8) are driven by a reciprocating mechanism (9) arranged; the reciprocating mechanism (9) comprises a connecting frame (901) for fixing the cutting plate (7) and the blocking plate (8); the side of the connecting frame (901) is provided with a guide rod (902), and the side of the connecting frame (901) is rotatably connected with a first connecting rod (903); the reciprocating mechanism (9) further comprises a first rotating disc (904) rotatably arranged at the bottom of the mounting frame (2); the first rotating disc (904) and the first connecting rod (903) are rotatably connected; two groups of reciprocating mechanisms (9) are drivingly connected through a transmission mechanism (10); the transmission mechanism (10) comprises a first gear (1001) and a second gear (1002); the first gear (1001) is connected with the first rotating disc (904) driving the blocking plate (8); the second gear (1002) is connected with the first rotating disc (904) driving the cutting plate (7) through a belt pulley assembly (1003); and the transmission mechanism (10) further comprises a half gear (1004) distributed between the first gear (1001) and the second gear (1002); the half gear (1004) is connected with a driving assembly; the half gear (1004) and the first gear (1001) and the second gear (1002) are kept with a meshing gap; the side of the mounting frame (2) is provided with a paving mechanism (13); the two ends of the paving mechanism (13) are provided with edge cutting mechanisms (15).

2. The sports track integrated laying construction device according to claim 1, characterized in that: The stirring assembly (4) comprises a transmission shaft (401) rotatably connected with the hopper (1); the outside of the transmission shaft (401) is provided with a plurality of stirring rods (402); and the outside of the transmission shaft (401) is provided with a plurality of pushing plates (403); the pushing plates (403) are matched with the discharging chute (6).

3. The sports track integrated laying construction device according to claim 1, characterized in that: The top of the mounting frame (2) is provided with a control console (5) for controlling the paving machine to perform the mixed material paving operation.

4. The sports track integrated laying construction device according to claim 1, characterized in that: The paving mechanism (13) is movably arranged below the mounting frame (2) through a first guide column (12); the paving mechanism (13) comprises a movable frame (1301) movably arranged with the first guide column (12); the top of the movable frame (1301) is rotatably connected with a first threaded rod (1302); the first threaded rod (1302) is threadedly connected with the mounting frame (2).

5. The sports track integrated laying construction device according to claim 4, characterized in that: The bottom of the first threaded rod (1302) is rotatably connected with a second rotating disc (1303); the second rotating disc (1303) is connected with a second driving device (1304); the bottom of the second rotating disc (1303) is rotatably connected with a second connecting rod (1305).

6. The sports track integrated laying construction device according to claim 5, characterized in that: The bottom of the movable frame (1301) is provided with a lower hanging arm (1306), the bottom of the lower hanging arm (1306) is movably installed with a paving plate (1307), the paving plate (1307) is rotationally connected with the second connecting rod (1305), and the bottom of the movable frame (1301) is rotationally connected with a covering roller (1308).

7. The sports track integrated laying construction device according to claim 1, characterized in that: The two sets of edge cutting mechanisms (15) are movably installed on the two sides of the movable frame (1301) through the limiting guide rails (14), the edge cutting mechanism (15) comprises a moving plate (1501) movably installed with the limiting guide rail (14), the side surface of the moving plate (1501) is rotationally connected with a second threaded rod (1502), and the second threaded rod (1502) is threadedly connected with the movable frame (1301).

8. The sports track integrated laying construction device according to claim 7, characterized in that: The bottom of the moving plate (1501) is movably installed with an arc-shaped guide plate (1505) through the second guide column (1503), the outer portion of the second guide column (1503) is sleeved with a spring (1504), and the side surface of the arc-shaped guide plate (1505) is rotationally connected with a segmentation wheel (1506).

9. A construction method of a sports field and track integrated laying construction device, characterized by The process of using the sports field runway integrated paving construction device according to any one of claims 1-8 comprises the following steps: S1: first, the staff pours the mixture into the hopper (1), then controls the first driving device (3) to start the walking system (11) to move the paving machine through the control panel (5), the first driving device (3) simultaneously drives the stirring assembly (4) to rotate, the stirring assembly (4) stirs the mixture in the hopper (1), and the mixture is pushed into the feeding chute (6) through the pushing plate (403) of the stirring assembly (4); S2: at the same time, the transmission mechanism (10) works to drive the two sets of reciprocating mechanisms (9) to synchronously operate, so that the cutting plate (7) and the blocking plate (8) synchronously move left and right, the cutting plate (7) and the blocking plate (8) synchronously move left and right to cut the mixture entering the feeding chute (6), so that the mixture is filled and then segmented and falls to the ground; S3: then, the second driving device (1304) is started to drive the second rotating disc (1303) to rotate, the second rotating disc (1303) is rotated to drive the paving plate (1307) to reciprocate, the mixture falling to the ground is uniformly paved, the covering roller (1308) is rolled to perform secondary rolling and pressing on the paved mixture, and the edge cutting mechanism (15) can cut the edges of the paved mixture, so that the edges are more neat. ​

Citation Information

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