Slope protection paving equipment for river regulation

By designing a slope protection paving equipment for river channel management, the safety risks and manual operation problems in the slope protection paving process are solved, and automated slope protection brick paving and grass seed filling are realized, which improves work efficiency and safety.

CN119980942AInactive Publication Date: 2025-05-13HUBEI MUHUA WATER SAVING TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202510069653.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-01-16
Publication Date
2025-05-13
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

During the river management process, slope protection paving poses a great safety risk, and the existing technology still requires manual paving and turf paving, which is inconvenient to operate and has safety hazards.

Method used

A slope protection paving equipment for river channel management is designed, including a horizontal first floor and a second floor. The equipment is moved intermittently through a moving mechanism to realize the row-by-row paving of slope protection bricks. The equipment is equipped with a storage tank, a liquid storage tank, a conveying component, a transfer component, a clamping mechanism and a water jet pipe. Through the coordinated work of these components, the paving of slope protection bricks and the filling of grass seeds are automatically completed.

Benefits of technology

It improves the efficiency and safety of slope protection paving, reduces manual operations, realizes automated paving and turf filling, and reduces operational risks.

✦ Generated by Eureka AI based on patent content.

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Abstract

The slope protection paving equipment comprises a first bottom plate, a second bottom plate, a conveying assembly, a bidirectional moving mechanism and a moving seat, the first bottom plate is provided with a transferring assembly and a first clamping mechanism, and the second bottom plate is provided with a liquid storage tank and connected with a water spraying pipe; according to the slope protection brick paving equipment, the paving equipment intermittently moves through the first bottom plate, the second bottom plate and the moving mechanism, slope protection bricks are paved row by row, and in the paving process, the inner groove holes of all slope protection piles are filled with a mixture of grass seeds and nutrient soil through the seed filling assembly, so that the paving efficiency is improved, and the paving efficiency is improved. The slope protection paving efficiency is improved, and the safety of operators is improved; through cooperation of the transferring assembly, the first clamping mechanism and the conveying assembly, slope protection bricks are transferred and fed; water or a nutrient solution and the like in the liquid storage tank can be sprayed out through the water spraying pipe and the spraying head through the pump body and the pipeline so as to irrigate grass seeds and the like.
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Description

Technical Field

[0001] The invention relates to the technical field of river channel regulation, and in particular to a slope protection paving device for river channel regulation. Background Art

[0002] During the river management process, structures such as slope protection will be set up on both sides of the river to provide protection for both sides of the river. In order to prevent the slopes from being eroded and causing collapse, various paving and planting can also be carried out on the slopes to improve the stability of the slope protection and the ecological effect.

[0003] When paving the slope protection, a combination of slope protection bricks and turf is often used. The slope protection bricks have a variety of structural shapes, and hexagonal structures are one of the most common structures. When paving hexagonal slope protection bricks, they are generally paved manually, and the operators are on the inclined slope and close to the river, so there are greater safety risks during the paving process.

[0004] The patent publication number is CN217298794U, which is a device for laying grass bricks for slope protection. Its structure mainly includes a mobile platform, a storage box and a conveying structure. The conveying structure is provided with a sorting structure and a placing structure. The mobile platform is provided with a placing groove, and the vibration is driven by a vibrating member. By setting the sorting structure, the grass bricks placed in the storage box are sorted, so that the grass bricks are laid on the slope protection ground in a single layer sequence through the placing groove for manual installation.

[0005] The above device can realize the transportation and loading of grass bricks and reduce some manual operations, but the grass bricks still need to be manually laid to the corresponding positions, and after the grass bricks are laid, the turf needs to be laid manually, which is inconvenient to operate and has safety risks.

[0006] Based on this, the present invention designs a slope protection paving equipment for river management to solve the above problems. Summary of the invention

[0007] The purpose of the present invention is to provide a slope protection paving equipment for river management to solve the problems raised in the above background technology.

[0008] To achieve the above object, the present invention provides the following technical solutions:

[0009] A slope protection paving equipment for river channel management, comprising a horizontal first bottom plate and a second bottom plate, wherein the second bottom plate is located obliquely below the first bottom plate, and a movement mechanism is provided at the bottom of the first bottom plate and the second bottom plate;

[0010] A material storage trough is provided on the top of the first bottom plate, a liquid storage tank is provided on the top of the second bottom plate, and a conveying assembly is provided on one side of the material storage trough and the liquid storage tank, and a transfer assembly is provided above the top of the conveying assembly, a first material clamping mechanism is connected to one side of the bottom of the transfer assembly through a first hydraulic telescopic rod, and a loading assembly is provided in the material storage trough;

[0011] A bidirectional moving mechanism is provided between the first bottom plate and the second bottom plate, and a moving seat is connected through the bidirectional moving mechanism. Two second hydraulic telescopic rods are provided on the moving seat on one side close to the conveying assembly. The bottom ends of the second hydraulic telescopic rods pass through the moving seat and are jointly connected with a second clamping mechanism.

[0012] A seed filling component is provided on the side of the moving seat away from the conveying component, and a water spray pipe is provided on the bottom of the two-way moving mechanism on the side close to the seed filling component. A plurality of nozzles are evenly arranged at the bottom of the water spray pipe. One end of the water spray pipe is connected to a pipeline and a pump body, and the pump body is located inside the liquid storage tank.

[0013] Preferably, the first clamping mechanism and the second clamping mechanism both include a cylindrical adjustment box, and the top of the adjustment box of the first clamping mechanism is connected to the first hydraulic telescopic rod, and the bottom is evenly provided with six outer clamping plates along the circumferential direction, and the top of the adjustment box of the second clamping mechanism is connected to the two second hydraulic telescopic rods, and the bottom is evenly provided with six inner clamping plates along the circumferential direction;

[0014] A hexagonal fixed column is provided at the center of the inner cavity of the adjustment box, and six elastic guide structures are evenly provided on the outside of the fixed column, and the bottoms of the six elastic guide structures are commonly connected to a rotation adjustment component. A guide groove is provided at the bottom of the adjustment box corresponding to the position of each elastic guide structure, and the guide groove is arranged along the radial direction. The bottom end of the elastic guide structure passes through the corresponding guide groove, and the bottom end of the elastic structure of the first clamping mechanism is fixedly connected to the top end of the outer clamping plate, and the bottom end of the elastic structure of the second clamping mechanism is fixedly connected to the top end of the inner clamping plate.

[0015] Preferably, the elastic guide structure includes a guide shaft fixed between the side wall of the fixed column and the inner wall of the adjusting box, the guide shaft is arranged along the radial direction of the adjusting box, and a spring block is slidably sleeved on the guide shaft, one end of the spring block is connected to the side wall of the fixed column through a spring, the bottom of the spring block is slidably connected to the bottom surface of the inner cavity of the adjusting box, and the top is rotatably connected to an adjusting wheel, and the adjusting wheel is correspondingly connected to the rotating adjusting assembly, a protrusion is fixed in the middle of the bottom end of the spring block, the protrusion is slidably connected to the guide groove, and the bottom ends of multiple protrusions are respectively fixedly connected to the outer clamping plate and the inner clamping plate at corresponding positions.

[0016] Preferably, the rotation adjustment assembly includes a rotating ring plate rotatably connected to the upper part of the inner cavity of the adjustment box, a fixed gear ring is provided on the top of the rotating ring plate, a driving gear is meshed on one side of the fixed gear ring, the driving gear is rotatably connected to the top of the adjustment box and is connected to a motor, six telescopic adjustment rods are evenly arranged along the circumferential direction at the bottom of the rotating ring plate, and the telescopic adjustment rods are in contact with the adjustment wheels at corresponding positions, a first rotating shaft is fixed to one end of the telescopic adjustment rod, and a second rotating shaft is fixed to the other end, and the bottom end of the first rotating shaft is rotatably connected to the bottom surface of the inner cavity of the adjustment box, and the top end of the second rotating shaft is rotatably connected to the bottom surface of the rotating ring plate;

[0017] The telescopic adjustment rod of the first material clamping mechanism is located on the outer side of the adjustment wheel, and the telescopic adjustment rod of the second material clamping mechanism is located on the inner side of the adjustment wheel.

[0018] Preferably, the telescopic adjustment rod includes a rotating cylinder and a rotating rod slidably connected to the rotating cylinder, and the inner end of the rotating rod is connected to the inner cavity end of the rotating cylinder through a spring, the end of the rotating cylinder is fixedly connected to the first rotating shaft, the end of the rotating rod extends out of the rotating cylinder and is fixedly connected to the second rotating shaft, and the outer side surface of the rotating cylinder contacts the wheel surface of the adjusting wheel at the corresponding position.

[0019] Preferably, the bidirectional moving mechanism includes a transverse moving assembly and a longitudinal moving assembly connected to both sides of the transverse moving assembly, the moving seat is installed on the top of the transverse moving assembly, the first support plate and the second support plate are fixed to both sides of the top of the first base plate, the third support plate and the fourth support plate are fixed to both sides of the top of the second base plate, and the second support plate and the fourth support plate are located on the outside of the conveying assembly, the top and bottom ends of one of the longitudinal moving assemblies are rotatably connected to the first support plate and the third support plate, respectively, and the water pipe is fixed to the bottom of the longitudinal moving assembly, the top and bottom ends of the other longitudinal moving assembly are rotatably connected to the second support plate and the fourth support plate, respectively, and are located above the outside of the conveying assembly.

[0020] Preferably, the longitudinal movement assembly includes an inclined rotating frame, a water spray pipe is fixed to the bottom of one of the rotating frames, rotating shafts are respectively fixed at both ends of the rotating frame, and are rotatably connected to the first support plate and the third support plate through the rotating shafts respectively, a moving groove is provided in the rotating frame, the moving groove is slidably connected to the moving block, a rotating screw is threadedly connected in the moving block, and the rotating screw is rotatably connected to the moving groove, a transmission cavity is provided at one end of the rotating frame, the end of the rotating screw extends into the transmission cavity and is fixed with a first bevel gear, a transmission bevel gear ring is fixed on the shaft section of the rotating shaft located in the transmission cavity, the transmission gear ring is meshed with the first bevel gear, and the other end is meshed with a second bevel gear, and the second bevel gear is connected to a motor.

[0021] Preferably, the transverse movement assembly includes a fixed screw fixed symmetrically and parallel between the two moving blocks, a threaded barrel is threadedly connected to the fixed screw, two fixed blocks are symmetrically provided at the bottom of the moving seat corresponding to the position of each fixed screw, and the threaded barrel is rotatably connected to the corresponding two fixed blocks, a worm gear is fixed to the middle of the threaded barrel, a worm is meshed with each other on the worm gears on both sides, and the worm is rotatably connected to the bottom of the moving seat, a third bevel gear is fixed to the middle of the worm, a fourth bevel gear is meshed with one side of the third bevel gear, and the fourth bevel gear is connected to a motor.

[0022] Preferably, the transfer assembly includes a fixed frame fixed to the upper inner side of the fourth support plate, the fixed frame is provided with a motor, the bottom end of the output shaft of the motor passes through the fixed frame and is fixed with a transfer plate, and the first hydraulic telescopic rod is installed on the transfer plate, an arc-shaped slide groove is fixed to the bottom of the fixed frame, the center of the arc-shaped slide groove coincides with the center of the motor output shaft, and an arc-shaped opening is provided in the middle of the bottom of the arc-shaped slide groove, a wheel frame is fixed to the corresponding position of the top of the transfer plate, the top of the wheel frame passes through the arc-shaped opening and extends into the interior of the arc-shaped slide groove, and pulleys are symmetrically arranged on both sides of the top of the wheel frame and are rotatably connected, and the pulleys are in contact with the bottom of the inner cavity of the arc-shaped slide groove.

[0023] Preferably, two triangular reinforcing plates are symmetrically fixed between the top of the fixing frame and the fourth supporting plate, and a reinforcing rod is fixed between the bottom of the fixing frame and the end of the arc-shaped sliding groove.

[0024] Preferably, the seed filling assembly includes a storage barrel fixed on a movable seat, a discharge pipe is fixed in the middle of the bottom of the storage barrel, a valve is provided in the discharge pipe, a motor is fixed in the middle of the top of the storage barrel, the motor is connected to a stirring shaft, the stirring shaft is located in the storage barrel and is fixed with stirring blades.

[0025] Preferably, the conveying assembly includes a conveying trough parallel to the rotating frame, a plurality of conveying rollers are evenly arranged and rotatably connected in the conveying trough, a conveyor belt is commonly provided on the plurality of conveying rollers, and one of the conveying rollers located at the side is connected to a motor, two connecting plates are symmetrically fixed to the top of both side edges of the conveying trough, a connecting shaft is fixed to the top of the connecting plate, two connecting shafts located on one side of the conveying trough are rotatably connected to the side walls of the material storage trough and the liquid storage tank, respectively, and the two connecting shafts on the other side are rotatably connected to the second support plate and the fourth support plate, respectively, and the connecting shaft located at the fourth support plate is coaxially fixed to the rotating shaft on the rotating frame.

[0026] The loading assembly includes multiple loading rollers that are evenly arranged and rotatably connected to the lower part of the inner cavity of the storage tank. A loading belt is commonly provided on the multiple loading rollers, and one of the loading rollers located at the side is connected to a motor. Multiple rows of stacked slope protection bricks are placed on the loading rollers and the loading belt.

[0027] Compared with the prior art, the present invention has the following beneficial effects:

[0028] 1. The present invention enables the paving equipment to move intermittently through the first bottom plate, the second bottom plate and the motion mechanism, so that the paving equipment can perform paving operations on the slope protection bricks row by row, and during the paving process, the inner slot of each slope protection pile is filled with a mixture of grass seeds and nutrient soil through the seed filling component, replacing manual paving of turf, improving the slope protection paving efficiency, and improving the safety of operators;

[0029] 2. The present invention stores the slope protection bricks through the storage trough, and enables the slope protection bricks to approach the transfer component through the loading component, so that the transfer component and the first clamping mechanism cooperate to load the bricks to the conveying component, and the slope protection bricks are transferred through the conveying component to realize the loading operation of paving;

[0030] 3. When the present invention is paving the next row of slope protection bricks, the water spray pipe is located at the previous row of slope protection bricks, and the water or nutrient solution in the liquid storage tank can be sprayed out through the water spray pipe and the nozzle through the pump body and the pipeline to water the grass seeds. BRIEF DESCRIPTION OF THE DRAWINGS

[0031] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings required for describing the embodiments are briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without creative work.

[0032] Figure 1 It is a schematic diagram of the structure of the present invention;

[0033] Figure 2 It is a structural schematic diagram of the fixing frame of the present invention;

[0034] Figure 3 for Figure 2 Schematic diagram of the structure at A in the middle;

[0035] Figure 4 for Figure 2 Schematic diagram of the structure at B in the middle;

[0036] Figure 5 It is a schematic diagram of the top structure of the mobile seat of the present invention;

[0037] Figure 6 It is a structural schematic diagram of the moving block of the present invention;

[0038] Figure 7 It is a schematic diagram of the end structure of the rotating screw of the present invention;

[0039] Figure 8 It is a structural schematic diagram of the regulating box of the present invention;

[0040] Fig. 9 for Figure 8 Schematic diagram of the structure at C in the middle;

[0041] Fig.10 It is a schematic diagram of the position of the adjusting rod in the first clamping mechanism of the present invention;

[0042] Fig.11 It is a structural schematic diagram of the adjusting rod of the present invention;

[0043] Fig.12 It is a schematic diagram of the bottom structure of the mobile seat of the present invention;

[0044] Fig.13 It is a structural schematic diagram of the threaded barrel of the present invention;

[0045] Fig.14 It is a schematic diagram of the position of the adjusting rod in the second clamping mechanism of the present invention;

[0046] Fig.15 It is a structural schematic diagram of the arc chute of the present invention.

[0047] In the accompanying drawings, the components represented by the reference numerals are listed as follows:

[0048] 100-first bottom plate, 101-second bottom plate, 102-storage tank, 103-first support plate, 104-second support plate, 105-liquid storage tank, 106-third support plate, 107-fourth support plate, 108-feeding belt, 109-feeding roller;

[0049] 200-fixed frame, 201-reinforcement plate, 202-transfer plate, 203-first hydraulic telescopic rod, 204-arc slide, 205-reinforcement rod, 206-wheel frame, 207-pulley;

[0050] 300-rotating frame, 301-moving groove, 302-rotating screw, 303-moving block, 304-fixed screw, 305-spraying pipe, 306-rotating shaft, 307-transmission bevel gear ring, 308-first bevel gear, 309-second bevel gear;

[0051] 400- conveying assembly, 401- conveying trough, 402- conveying belt, 403- conveying roller, 404- connecting plate, 405- connecting shaft;

[0052] 500-moving seat, 501-storage barrel, 502-second hydraulic telescopic rod, 503-discharging pipe, 504-fixed block, 505-threaded barrel, 506-worm gear, 507-worm, 508-third bevel gear, 509-fourth bevel gear;

[0053] 600-first clamping mechanism, 601-adjusting box, 602-outer clamping plate, 603-inner clamping plate, 604-fixing column, 605-guide shaft, 606-spring block, 607-adjusting wheel;

[0054] 700 - rotating ring plate, 701 - fixed gear ring, 702 - driving gear, 703 - telescopic adjustment rod, 704 - rotating cylinder, 705 - rotating rod, 706 - first rotating shaft, 707 - second rotating shaft. DETAILED DESCRIPTION

[0055] The technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative work are within the scope of protection of the present invention.

[0056] Embodiment 1

[0057] Please refer to the accompanying drawings, the present invention provides a technical solution:

[0058] A slope protection paving equipment for river channel management, comprising a horizontal first bottom plate 100 and a second bottom plate 101, wherein the second bottom plate 101 is located obliquely below the first bottom plate 100, and the bottoms of the first bottom plate 100 and the second bottom plate 101 are both provided with a motion mechanism, so that the first bottom plate 100 and the second bottom plate 101 can be driven by the corresponding motion mechanism to move along the top and bottom of the slope protection respectively, wherein the motion mechanism can be selected from a suitable structure in the prior art, and the present application does not improve it;

[0059] A material storage trough 102 is provided on the top of the first bottom plate 100, a liquid storage tank 105 is provided on the top of the second bottom plate 101, and a conveying assembly 400 is provided on one side of the material storage trough 102 and the liquid storage tank 105, and a transfer assembly is provided above the top of the conveying assembly 400, and a first material clamping mechanism 600 is connected to one side of the bottom of the transfer assembly through a first hydraulic telescopic rod 203, and a loading assembly is provided in the material storage trough 102;

[0060] A bidirectional moving mechanism is provided between the first base plate 100 and the second base plate 101, and a moving seat 500 is connected through the bidirectional moving mechanism. Two second hydraulic telescopic rods 502 are provided on the moving seat 500 on one side close to the conveying assembly 400. The bottom ends of the second hydraulic telescopic rods 502 pass through the moving seat 500 and are jointly connected to a second material clamping mechanism.

[0061] A seed filling assembly is provided on the side of the movable seat 500 away from the conveying assembly 400, and a water spray pipe 305 is provided on the bottom of the two-way movable mechanism on the side close to the seed filling assembly. A plurality of nozzles are evenly arranged at the bottom of the water spray pipe 305. One end of the water spray pipe 305 is connected to a pipeline and a pump body, and the pump body is located inside the liquid storage tank 105.

[0062] When paving the slope protection, the first base plate 100 is located on the horizontal plane of the top of the slope protection and contacts the top of the slope protection through a moving mechanism, and the second base plate 101 is located on the horizontal plane of the bottom of the slope protection and contacts the bottom of the slope protection through a moving mechanism, so that the first base plate 100 and the second base plate 101 drive their upper structures to move intermittently along the slope protection through the moving mechanism. Each time it moves, the position of the paving equipment is switched, so that the paving equipment can pave the slope protection bricks row by row, and during the paving process, the inner slot hole of each slope protection pile is filled with a mixture of grass seeds and nutrient soil through the seed filling component, replacing manual paving of turf, thereby improving the slope protection paving efficiency and improving the safety of operators.

[0063] During the period when the first bottom plate 100 and the second bottom plate 101 stop moving, a row of slope protection bricks are paved on the slope protection surface;

[0064] When paving the slope protection bricks, the loading assembly in the storage trough 102 is stacked with multiple slope protection bricks at different horizontal positions, and the side close to the conveying assembly 400 is set as a transfer position. The first telescopic rod and the first clamping mechanism 600 are moved to the top of the transfer position through the transfer assembly, and the first hydraulic telescopic rod 203 is used to move the first clamping mechanism 600 down to the slope protection bricks, and then the first clamping mechanism 600 is used to clamp and position the slope protection bricks, and then the first telescopic rod and the transfer assembly cooperate to make the first clamping mechanism 600 drive the slope protection bricks to move to the conveying assembly 400, and after the first clamping mechanism 600 is separated from the slope protection bricks, the conveying assembly 400 is used to transport the slope protection bricks to the position of the moving seat 500.

[0065] When paving begins, the slope protection brick moves to the moving seat 500, and the moving seat 500 drives the second clamping mechanism to move horizontally to the top of the slope protection brick through the bidirectional moving mechanism, and the inner slot of the slope protection brick is clamped and fixed by the second clamping mechanism, and then the second clamping mechanism moves back horizontally to position the slope protection brick at the paving position, and the second hydraulic telescopic rod 502 moves it downward to contact and press the slope protection surface, and after paving is completed, the second clamping mechanism is out of contact with the slope protection brick and moves back upward;

[0066] Start the bidirectional moving mechanism again so that the moving seat 500 drives the second clamping mechanism and the seed filling assembly to move horizontally. The second clamping mechanism is located at the conveying assembly 400 to pick up materials. At the same time, the seed filling assembly fills the mixture of grass seeds and nutrient soil into the inner groove holes of the slope protection bricks. Then the bidirectional moving mechanism drives the moving seat 500 to move horizontally back to its original position and move vertically at the same time, so that the second clamping mechanism and the slope protection bricks can move to the next paving position in the same column for paving operations.

[0067] In the subsequent paving, the above process is repeated to complete the paving of a row of slope protection bricks, and the slope protection surface is paved row by row during the gap movement of the first base plate 100 and the second base plate 101 along the length direction of the slope protection; wherein, when paving the next row of slope protection bricks, the water spray pipe 305 is located at the previous row of slope protection bricks, and the water or nutrient solution in the liquid storage tank 105 can be sprayed out through the water spray pipe 305 and the nozzle through the pump body and the pipeline to water the grass seeds, etc.

[0068] The first clamping mechanism 600 and the second clamping mechanism both include a cylindrical adjustment box 601, and the top of the adjustment box 601 of the first clamping mechanism 600 is connected to the first hydraulic telescopic rod 203, and six outer clamping plates 602 are evenly arranged at the bottom along the circumferential direction; the top of the adjustment box 601 of the second clamping mechanism is connected to the two second hydraulic telescopic rods 502, and six inner clamping plates 603 are evenly arranged at the bottom along the circumferential direction;

[0069] A hexagonal fixed column 604 is provided at the center of the inner cavity of the adjustment box 601, and six elastic guide structures are evenly provided on the outer side of the fixed column 604, and the bottoms of the six elastic guide structures are commonly connected to a rotating adjustment component, and the bottom of the adjustment box 601 is provided with a guide groove corresponding to the position of each elastic guide structure, and the guide groove is arranged along the radial direction. The bottom end of the elastic guide structure passes through the corresponding guide groove, and the bottom end of the elastic structure of the first clamping mechanism 600 is fixedly connected to the top end of the outer clamping plate 602, and the bottom end of the elastic structure of the second clamping mechanism is fixedly connected to the top end of the inner clamping plate 603.

[0070] When taking out the slope protection bricks in the storage tank 102, the first clamping mechanism 600 is moved to the slope protection bricks in the storage tank 102 through the transfer assembly and the second hydraulic telescopic rod 502, and the six outer clamping plates 602 are located outside the slope protection bricks. Then, through the cooperation of the rotation adjustment assembly and the elastic guide structure, the six outer clamping plates 602 are moved inward at the same time to clamp and fix the slope protection bricks, so that the slope protection bricks can be transferred to the conveying assembly 400;

[0071] When the second clamping mechanism transfers the slope protection bricks on the conveying component 400, the six inner clamping plates 603 are located in the inner groove holes of the slope protection bricks. By rotating the adjustment component and the elastic guide structure, the six inner clamping plates 603 are moved outward at the same time to clamp and fix the inner side edges of the slope protection bricks, thereby transferring the slope protection bricks to the paving position. During the paving process, the inner clamping plates 603 are located on the inner side of the slope protection bricks to avoid contact with adjacent slope protection bricks and affect the paving operation.

[0072] Among them, the elastic guide structure includes a guide shaft 605 fixed between the side wall of the fixed column 604 and the inner wall of the adjustment box 601, the guide shaft 605 is arranged along the radial direction of the adjustment box 601, and a spring block 606 is slidably sleeved on the guide shaft 605, one end of the spring block 606 is connected to the side wall of the fixed column 604 through a spring, the bottom of the spring block 606 is slidably connected to the bottom surface of the inner cavity of the adjustment box 601, and the top is rotatably connected with an adjusting wheel 607, and the adjusting wheel 607 is correspondingly connected to the rotating adjustment component, a protrusion is fixed in the middle of the bottom end of the spring block 606, the protrusion is slidably connected in the guide groove, and the bottom ends of multiple protrusions are respectively fixedly connected to the outer clamping plate 602 and the inner clamping plate 603 at corresponding positions.

[0073] When the rotating adjustment component moves, it drives the adjustment wheel 607 to move, and then the spring block 606 drives the inner clamping plate 603 or the outer clamping plate 602 to move, thereby realizing the position adjustment of the inner clamping plate 603 and the outer clamping plate 602 and the clamping positioning with the slope protection bricks. When the positioning of the slope protection bricks is cancelled, the rotating adjustment component returns to its original position, and the spring block 606 and other structures return the inner clamping plate 603 and the outer clamping plate 602 under the return action of the spring and the guiding action of the guide shaft 605.

[0074] Among them, the rotation adjustment component includes a rotating ring plate 700 rotatably connected to the upper part of the inner cavity of the adjustment box 601, a fixed gear ring 701 is provided on the top of the rotating ring plate 700, and a driving gear 702 is meshed on one side of the fixed gear ring 701. The driving gear 702 is rotatably connected to the top of the adjustment box 601 and is connected to a motor. Six telescopic adjustment rods 703 are evenly arranged along the circumferential direction at the bottom of the rotating ring plate 700, and the telescopic adjustment rods 703 are in contact with the adjustment wheels 607 at corresponding positions. A first rotating shaft 706 is fixed to one end of the telescopic adjustment rod 703, and a second rotating shaft 707 is fixed to the other end. The bottom end of the first rotating shaft 706 is rotatably connected to the bottom surface of the inner cavity of the adjustment box 601, and the top end of the second rotating shaft 707 is rotatably connected to the bottom surface of the rotating ring plate 700.

[0075] The telescopic adjustment rod 703 of the first clamping mechanism 600 is located on the outside of the adjustment wheel 607 , and the telescopic adjustment rod 703 of the second clamping mechanism is located on the inside of the adjustment wheel 607 .

[0076] When adjusting the positions of the multiple outer clamping plates 602 or the multiple inner clamping plates 603, the rotating ring plate 700 is driven by the drive of the motor and the transmission of the driving gear 702 and the fixed gear ring 701, and the rotating ring plate 700 drives one end of the adjusting telescopic rod to move through the second rotating shaft 707, so that the adjusting telescopic rod rotates around the first rotating shaft 706, and during the rotation process, the adjusting telescopic rod automatically expands and contracts to adapt to the change in the relative position of the first rotating shaft 706 and the second rotating shaft 707;

[0077] When adjusting the position of the outer clamping plate 602, the adjustment telescopic rod is rotated inward relative to the first rotating shaft 706, so that the adjustment wheel 607, the spring and the outer clamping plate 602 and other structures are pushed inward by adjusting the telescopic rod, and multiple outer clamping plates 602 move inward at the same time to clamp and fix the six outer sides of the slope protection brick, thereby realizing the outer clamping positioning of the slope protection brick;

[0078] When adjusting the position of the inner clamping plate 603, the adjusting telescopic rod is rotated outward relative to the first rotating shaft 706, so that the adjusting wheel 607, the spring and the inner clamping plate 603 and other structures are pushed outward by adjusting the telescopic rod. Multiple inner clamping plates 603 are located inside the slope protection brick and move outward at the same time to clamp and fix the six inner sides of the slope protection brick, thereby realizing the inner clamp positioning of the slope protection brick.

[0079] Among them, the telescopic adjustment rod 703 includes a rotating cylinder 704 and a rotating rod 705 slidably connected to the rotating cylinder 704, and the inner end of the rotating rod 705 is connected to the inner cavity end of the rotating cylinder 704 through a spring, the end of the rotating cylinder 704 is fixedly connected to the first rotating shaft 706, the end of the rotating rod 705 extends out of the rotating cylinder 704 and is fixedly connected to the second rotating shaft 707, and the outer side surface of the rotating cylinder 704 contacts the wheel surface of the adjusting wheel 607 at the corresponding position. During the movement of the telescopic adjustment rod 703, the rotating rod 705 slides relative to the rotating cylinder 704, thereby automatically adapting to the change in the relative position of the first rotating shaft 706 and the second rotating shaft 707, and pushing the adjusting wheel 607 to move through the rotating cylinder 704 to achieve position adjustment of the inner splint 603 or the outer splint 602.

[0080] Embodiment 2

[0081] The structure of this embodiment is basically the same as that of the first embodiment, except that the bidirectional moving mechanism includes a transverse moving assembly and a longitudinal moving assembly connected to both sides of the transverse moving assembly, the moving seat 500 is installed on the top of the transverse moving assembly, the first support plate 103 and the second support plate 104 are fixed to both sides of the top of the first base plate 100, the third support plate 106 and the fourth support plate 107 are fixed to both sides of the top of the second base plate 101, and the second support plate 104 and the fourth support plate 107 are located on the outside of the conveying assembly 400, the top and bottom ends of one of the longitudinal moving assemblies are rotatably connected to the first support plate 103 and the third support plate 106, and the water spray pipe 305 is fixed to the bottom of the longitudinal moving assembly, the top and bottom ends of the other longitudinal moving assembly are rotatably connected to the second support plate 104 and the fourth support plate 107, and are located above the outside of the conveying assembly 400.

[0082] When paving the slope protection bricks, the second clamping mechanism is moved to the conveying component 400 to pick up materials through the transverse movement component, and then the second clamping mechanism is driven by the longitudinal movement component to move the slope protection bricks to the paving position and perform paving operations. Each time paving is completed, the transverse movement component drives the moving seat 500 to move horizontally, so that the filling component moves to the slope protection bricks just paved, and discharges the mixture of grass seeds and nutrient soil so that the grass seeds can be filled into the center of the slope protection bricks. At the same time, the second clamping mechanism moves to the conveying component 400 to pick up materials again. Therefore, through the cooperation of the two-way moving mechanism, the second clamping mechanism and the filling component can sequentially pave and fill multiple slope protection bricks in the same column.

[0083] Preferably, the longitudinal movement assembly includes an inclined rotating frame 300, a water spray pipe 305 is fixed to the bottom of one of the rotating frames 300, and rotating shafts 306 are respectively fixed at both ends of the rotating frame 300, and are rotatably connected to the first support plate 103 and the third support plate 106 through the rotating shafts 306 respectively. A moving groove 301 is provided in the rotating frame 300, and the moving groove 301 is slidably connected to the moving block 303. The moving block 303 is threadedly connected with a rotating screw 302, and the rotating screw 302 is rotatably connected to the moving groove 301. A transmission cavity is provided at one end of the rotating frame 300, and the end of the rotating screw 302 extends into the transmission cavity and is fixed with a first bevel gear 308. A transmission bevel gear ring 307 is fixed on the shaft section of the rotating shaft 306 located in the transmission cavity, and the transmission gear ring is meshed with the first bevel gear 308, and the other end is meshed with a second bevel gear 309, and the second bevel gear 309 is connected to a motor.

[0084] When the slope protection bricks are paved, the rotating screw 302 is rotated through the drive of the motor and the transmission of the first bevel gear 308, the transmission bevel gear ring 307 and the second bevel gear 309, thereby driving the moving block 303, the transverse movement assembly and the moving seat 500 to move, so that the second clamping mechanism on the moving seat 500 moves to the paving position of the slope protection bricks, and the slope protection bricks on the second clamping mechanism are installed on the slope protection surface. In the same way, the moving seat 500 can move along the longitudinal movement assembly to install the slope protection bricks on the same column one by one.

[0085] Preferably, the transverse movement assembly includes a fixed screw 304 that is symmetrically and parallely fixed between the two moving blocks 303, and a threaded barrel 505 is threadedly connected to the fixed screw 304. Two fixed blocks 504 are symmetrically provided at the bottom of the moving seat 500 corresponding to the position of each fixed screw 304, and the threaded barrel 505 is rotatably connected to the corresponding two fixed blocks 504. A worm gear 506 is fixed to the middle of the threaded barrel 505, and a worm 507 is meshed together on the worm gears 506 on both sides, and the worm 507 is rotatably connected to the bottom of the moving seat 500, a third bevel gear 508 is fixed to the middle of the worm gear 507, a fourth bevel gear 509 is meshed on one side of the third bevel gear 508, and the fourth bevel gear 509 is connected to a motor.

[0086] After the movable seat 500 is longitudinally moved to the paving position and the slope protection bricks are paved, the worm 507 is rotated through the drive of the motor and the transmission of the third bevel gear 508 and the fourth bevel gear 509, and then the two threaded cylinders 505 are rotated at the same time through the transmission of the worm 507 and the worm wheel 506, and the fixed block 504 is driven to move the movable seat 500 along the fixed screw 304, so as to adjust the position of the movable seat 500, so that the second clamping mechanism moves to the conveying component 400, and the seed filling component moves to the slope protection bricks just paved, and then the slope protection bricks on the conveying component 400 are clamped and taken out by the second clamping mechanism, and the mixture of grass seeds and nutrient soil is unloaded and filled by the seed filling component.

[0087] Embodiment 3

[0088] The structure of this embodiment is basically the same as that of the second embodiment, except that the transfer assembly includes a fixed frame 200 fixed to the upper inner side of the fourth support plate 107, a motor is provided on the fixed frame 200, the bottom end of the output shaft of the motor passes through the fixed frame 200, and a transfer plate 202 is fixed thereto, and a first hydraulic telescopic rod 203 is installed on the transfer plate 202, an arc-shaped slide groove 204 is fixed to the bottom of the fixed frame 200, the center of the arc-shaped slide groove 204 coincides with the center of the motor output shaft, and an arc-shaped opening is provided in the middle of the bottom of the arc-shaped slide groove 204, a wheel frame 206 is fixed to the corresponding position of the top of the transfer plate 202, the top of the wheel frame 206 passes through the arc-shaped opening and extends into the interior of the arc-shaped slide groove 204, and pulleys 207 are symmetrically arranged on both sides of the top of the wheel frame 206 and are rotatably connected, and the pulleys 207 are in contact with the bottom of the inner cavity of the arc-shaped slide groove 204.

[0089] When the slope protection bricks in the storage trough 102 are transferred, the first clamping mechanism 600 clamps the slope protection bricks in the storage trough 102, and drives the transfer plate 202 to rotate through the motor, thereby driving the first hydraulic telescopic rod 203 and the first clamping mechanism 600 to rotate to the top of the conveying component 400, thereby realizing the transfer of the slope protection bricks; when the transfer plate 202 drives the first hydraulic telescopic rod 203 and the first clamping mechanism 600 to rotate, the pulley 207 moves along the bottom of the inner cavity of the arc-shaped slide groove 204, and provides support for the first clamping mechanism 600 and other structures, thereby improving position stability.

[0090] Preferably, two triangular reinforcing plates 201 are symmetrically fixed between the top of the fixing frame 200 and the fourth support plate 107, and a reinforcing rod 205 is fixed between the bottom of the fixing frame 200 and the end of the arc-shaped slide groove 204. The positional stability of the fixing frame 200 and the arc-shaped slide groove 204 is improved by providing the reinforcing plates 201 and the reinforcing rods 205.

[0091] Embodiment 4

[0092] The structure of this embodiment is basically the same as that of the first embodiment, except that the seed filling assembly includes a storage barrel 501 fixed on a movable seat 500, a discharge pipe 503 is fixed in the middle of the bottom of the storage barrel 501, a valve is provided in the discharge pipe 503, a motor is fixed in the middle of the top of the storage barrel 501, the motor is connected to a stirring shaft, the stirring shaft is located in the storage barrel 501, and a stirring blade is fixed thereon.

[0093] When the movable seat 500 drives the storage barrel 501 to move to the slope protection brick after paving, the discharge pipe 503 is located at the center of the slope protection brick, and the valve is opened to allow the mixture of grass seeds and nutrient soil in the storage barrel 501 to fall into the slope protection brick along the discharge pipe 503, thereby realizing the slope protection brick filling operation; when the material in the storage barrel 501 is used up, grass seeds and nutrient soil are added again, and then the stirring shaft and stirring blades are driven by the motor to fully mix them for subsequent use.

[0094] Embodiment 5

[0095] The structure of this embodiment is basically the same as that of the first embodiment, except that the conveying assembly 400 includes a conveying trough 401 parallel to the rotating frame 300, and a plurality of conveying rollers 403 are evenly arranged and rotatably connected in the conveying trough 401. A conveyor belt 402 is commonly provided on the plurality of conveying rollers 403, and one of the conveying rollers 403 located at the side is connected to a motor, and two connecting plates 404 are symmetrically fixed to the top of both side edges of the conveying trough 401, and a connecting shaft 405 is fixed to the top of the connecting plate 404, and the two connecting shafts 405 located on one side of the conveying trough 401 are rotatably connected to the side walls of the material storage trough 102 and the liquid storage tank 105, respectively, and the two connecting shafts 405 on the other side are rotatably connected to the second support plate 104 and the fourth support plate 107, respectively, and the connecting shaft 405 located at the fourth support plate 107 is coaxially fixed to the rotating shaft 306 on the rotating frame 300.

[0096] When the transfer assembly transfers the slope protection bricks in the storage trough 102 to the conveyor belt 402, the conveyor roller 403 and the conveyor belt 402 are driven by the motor to move, so that the slope protection bricks move accordingly and are transported to the transverse movement assembly so that they can be picked up and paved by the second clamping mechanism on the movable seat 500.

[0097] The loading assembly includes a plurality of loading rollers 109 that are evenly arranged and rotatably connected to the lower part of the inner cavity of the storage tank 102. A loading belt 108 is commonly provided on the plurality of loading rollers 109, and one of the loading rollers 109 located at the side is connected to a motor. Multiple rows of stacked slope protection bricks are placed on the loading rollers 109 and the loading belt 108.

[0098] The position on the loading belt 108 close to the conveying assembly 400 is set as the transfer position. Through the cooperation of the first clamping mechanism 600 and the first hydraulic telescopic rod 203, a row of slope protection bricks at the transfer position are transferred and conveyed one by one. Each time a row of slope protection bricks is transferred, the loading roller 109 and the loading belt 108 are driven by the motor to move so that the slope protection bricks on them move to the transfer position, so that multiple rows of slope protection bricks can move to the transfer position in turn to perform the transfer operation, thereby reducing manual operation.

[0099] In the description of this specification, the description with reference to the terms "one embodiment", "example", "specific example", etc. means that the specific features, structures, materials or characteristics described in conjunction with the embodiment or example are included in at least one embodiment or example of the present invention. In this specification, the schematic representation 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.

[0100] The preferred embodiments of the present invention disclosed above are only used to help illustrate the present invention. The preferred embodiments do not describe all the details in detail, nor do they limit the invention to only specific implementation methods. Obviously, many modifications and changes can be made according to the content of this specification. This specification selects and specifically describes these embodiments in order to better explain the principles and practical applications of the present invention, so that those skilled in the art can understand and use the present invention well. The present invention is limited only by the claims and their full scope and equivalents.

Claims

1. A slope protection paving equipment for river channel management, comprising a horizontal first bottom plate (100) and a second bottom plate (101), wherein the second bottom plate (101) is located obliquely below the first bottom plate (100), and a movement mechanism is provided at the bottom of the first bottom plate (100) and the second bottom plate (101), characterized in that: A material storage trough (102) is provided on the top of the first bottom plate (100), a liquid storage tank (105) is provided on the top of the second bottom plate (101), and a conveying assembly (400) is provided on one side of the material storage trough (102) and the liquid storage tank (105), and a transfer assembly is provided above the top of the conveying assembly (400), and a first material clamping mechanism (600) is connected to one side of the bottom of the transfer assembly via a first hydraulic telescopic rod (203), and a loading assembly is provided in the material storage trough (102); A bidirectional moving mechanism is provided between the first bottom plate (100) and the second bottom plate (101), and a moving seat (500) is connected via the bidirectional moving mechanism. Two second hydraulic telescopic rods (502) are provided on the moving seat (500) on one side close to the conveying assembly (400). The bottom ends of the second hydraulic telescopic rods (502) pass through the moving seat (500) and are jointly connected to a second material clamping mechanism. A seed filling assembly is provided on the side of the movable seat (500) away from the conveying assembly (400), and a water spray pipe (305) is provided at the bottom of the bidirectional movable mechanism on the side close to the seed filling assembly, and a plurality of spray heads are evenly arranged at the bottom of the water spray pipe (305), one end of the water spray pipe (305) is connected to a pipeline and a pump body, and the pump body is located inside the liquid storage tank (105).

2. The slope protection paving equipment for river management according to claim 1 is characterized in that: The first material clamping mechanism (600) and the second material clamping mechanism both comprise a cylindrical adjustment box (601), and the top of the adjustment box (601) of the first material clamping mechanism (600) is connected to the first hydraulic telescopic rod (203), and the bottom is evenly provided with six outer clamping plates (602) along the circumferential direction, and the top of the adjustment box (601) of the second material clamping mechanism is connected to two second hydraulic telescopic rods (502), and the bottom is evenly provided with six inner clamping plates (603) along the circumferential direction; A hexagonal fixed column (604) is provided at the center of the inner cavity of the adjustment box (601), and six elastic guide structures are evenly arranged on the outer side of the fixed column (604), and the bottoms of the six elastic guide structures are commonly connected to a rotation adjustment component. The bottom of the adjustment box (601) is provided with a guide groove corresponding to the position of each elastic guide structure, and the guide groove is arranged along the radial direction. The bottom end of the elastic guide structure passes through the corresponding guide groove, and the bottom end of the elastic structure of the first clamping mechanism (600) is fixedly connected to the top end of the outer clamping plate (602), and the bottom end of the elastic structure of the second clamping mechanism is fixedly connected to the top end of the inner clamping plate (603).

3. The slope protection paving equipment for river management according to claim 2 is characterized in that: The elastic guide structure includes a guide shaft (605) fixed between the side wall of the fixed column (604) and the inner wall of the adjustment box (601), the guide shaft (605) is arranged along the radial direction of the adjustment box (601), and a spring block (606) is slidably sleeved on the guide shaft (605), one end of the spring block (606) is connected to the side wall of the fixed column (604) through a spring, the bottom of the spring block (606) is slidably connected to the bottom surface of the inner cavity of the adjustment box (601), and the top is rotatably connected to an adjustment wheel (607), and the adjustment wheel (607) is correspondingly connected to the rotation adjustment component, a protrusion is fixed in the middle of the bottom end of the spring block (606), the protrusion is slidably connected to the guide groove, and the bottom ends of multiple protrusions are respectively fixedly connected to the outer clamping plate (602) and the inner clamping plate (603) at corresponding positions.

4. The slope protection paving equipment for river management according to claim 3 is characterized in that: The rotation adjustment assembly comprises a rotating ring plate (700) rotatably connected to the upper part of the inner cavity of the adjustment box (601); a fixed gear ring (701) is provided at the top of the rotating ring plate (700); a driving gear (702) is meshed on one side of the fixed gear ring (701); the driving gear (702) is rotatably connected to the top of the adjustment box (601) and is connected to a motor; six telescopic adjustment rods (703) are evenly arranged at the bottom of the rotating ring plate (700) along the circumferential direction, and the telescopic adjustment rods (703) are in contact with the adjustment wheels (607) at corresponding positions; a first rotating shaft (706) is fixed at one end of the telescopic adjustment rod (703) and a second rotating shaft (707) is fixed at the other end; the bottom end of the first rotating shaft (706) is rotatably connected to the bottom surface of the inner cavity of the adjustment box (601), and the top end of the second rotating shaft (707) is rotatably connected to the bottom surface of the rotating ring plate (700); The telescopic adjustment rod (703) of the first material clamping mechanism (600) is located on the outside of the adjustment wheel (607), and the telescopic adjustment rod (703) of the second material clamping mechanism is located on the inside of the adjustment wheel (607).

5. The slope protection paving equipment for river management according to claim 1 is characterized in that: The bidirectional moving mechanism comprises a transverse moving assembly and a longitudinal moving assembly connected to both sides of the transverse moving assembly, the moving seat (500) is installed on the top of the transverse moving assembly, the first support plate (103) and the second support plate (104) are fixed to both sides of the top of the first bottom plate (100), the third support plate (106) and the fourth support plate (107) are fixed to both sides of the top of the second bottom plate (101), and the second support plate (104) and the fourth support plate (107) are located on the outside of the conveying assembly (400), the top and bottom ends of one of the longitudinal moving assemblies are rotatably connected to the first support plate (103) and the third support plate (106), and the water spray pipe (305) is fixed to the bottom of the longitudinal moving assembly, and the top and bottom ends of the other longitudinal moving assembly are rotatably connected to the second support plate (104) and the fourth support plate (107), and are located above the outside of the conveying assembly (400).

6. The slope protection paving equipment for river management according to claim 5 is characterized in that: The longitudinal movement assembly comprises an inclined rotating frame (300), and rotating shafts (306) are respectively fixed at both ends of the rotating frame (300), and are rotatably connected to the first support plate (103) and the third support plate (106) through the rotating shafts (306), and a moving groove (301) is provided in the rotating frame (300), and the moving groove (301) is slidably connected to the moving block (303), and the moving block (303) is threadedly connected with a rotating screw (302), and the rotating screw (302) is connected to the moving block (303). The rod (302) is rotatably connected to the moving groove (301); a transmission cavity is provided at one end of the rotating frame (300); the end of the rotating screw (302) extends into the transmission cavity and is fixed with a first bevel gear (308); a transmission bevel gear ring (307) is fixed on the shaft section of the rotating shaft (306) located in the transmission cavity; the transmission gear ring is meshed with the first bevel gear (308) and the other end is meshed with a second bevel gear (309); the second bevel gear (309) is connected to a motor.

7. The slope protection paving equipment for river management according to claim 6 is characterized in that: The transverse movement assembly comprises a fixed screw (304) which is symmetrically and parallelly fixed between two moving blocks (303); a threaded barrel (505) is threadedly connected to the fixed screw (304); two fixed blocks (504) are symmetrically provided at the bottom of the moving seat (500) corresponding to the position of each fixed screw (304); and the threaded barrel (505) is rotatably connected to the corresponding two fixed blocks (504); a worm gear (506) is fixed to the middle of the threaded barrel (505); a worm (507) is meshed with the worm gears (506) on both sides; and the worm gear (507) is rotatably connected to the bottom of the moving seat (500); a third bevel gear (508) is fixed to the middle of the worm gear (507); a fourth bevel gear (509) is meshed with one side of the third bevel gear (508); and the fourth bevel gear (509) is connected to a motor.

8. The slope protection paving equipment for river management according to claim 5 is characterized by: The transfer assembly comprises a fixed frame (200) fixed to the upper inner side of the fourth support plate (107), a motor is arranged on the fixed frame (200), the bottom end of the output shaft of the motor passes through the fixed frame (200), and a transfer plate (202) is fixed thereto, and a first hydraulic telescopic rod (203) is installed on the transfer plate (202), an arc-shaped slide groove (204) is fixed at the bottom of the fixed frame (200), and an arc-shaped opening is arranged in the middle of the bottom of the arc-shaped slide groove (204), a wheel frame (206) is fixed at a corresponding position on the top of the transfer plate (202), the top end of the wheel frame (206) passes through the arc-shaped opening and extends into the interior of the arc-shaped slide groove (204), and pulleys (207) are symmetrically arranged on both sides of the top of the wheel frame (206) and are rotatably connected, and the pulleys (207) are in contact with the bottom of the inner cavity of the arc-shaped slide groove (204).

9. The slope protection paving equipment for river management according to claim 1 is characterized in that: The seed filling assembly comprises a material storage barrel (501) fixed on a movable seat (500), a feed discharge pipe (503) is fixed in the middle of the bottom of the material storage barrel (501), a valve is provided in the feed discharge pipe (503), a motor is fixed in the middle of the top of the material storage barrel (501), the motor is connected to a stirring shaft, the stirring shaft is located in the material storage barrel (501), and a stirring blade is fixed to the stirring shaft.

10. The slope protection paving equipment for river management according to claim 6, characterized in that: The conveying assembly (400) comprises a conveying trough (401) parallel to the rotating frame (300), a plurality of conveying rollers (403) are evenly arranged and rotatably connected in the conveying trough (401), a conveying belt (402) is commonly provided on the plurality of conveying rollers (403), and one of the conveying rollers (403) located at the side is connected to a motor, two connecting plates (404) are symmetrically fixed to the top of both sides of the conveying trough (401), a connecting shaft (405) is fixed to the top of the connecting plate (404), the two connecting shafts (405) located on one side of the conveying trough (401) are rotatably connected to the side walls of the material storage trough (102) and the liquid storage tank (105), respectively, the two connecting shafts (405) on the other side are rotatably connected to the second support plate (104) and the fourth support plate (107), respectively, and the connecting shaft (405) located at the fourth support plate (107) is coaxially fixed to the rotating shaft (306) on the rotating frame (300); The loading assembly comprises a plurality of loading rollers (109) which are evenly arranged and rotatably connected to the lower part of the inner cavity of the storage tank (102); a loading belt (108) is commonly provided on the plurality of loading rollers (109); one of the loading rollers (109) located at the side is connected to a motor; and a plurality of rows of stacked slope protection bricks are placed on the loading rollers (109) and the loading belt (108).

Citation Information

Patent Citations

  • Slope protection grass planting brick laying device

    CN217298794U